ATTINY2313-20PU中文资料

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AP1231_中文版

AP1231_中文版


∆VIN •VOUT
IOUT=30 mA
负载稳定度
∆VOUT 2
VIN=VOUT(S)+1.0 V 1.0 mA ≤IOUT ≤100 mA

输出电压
∆VOUT
VIN=VOUT(S)+1.0 V, IOUT=10 mA

温度系数*4
∆Ta •VOUT
-40°C ≤ Ta ≤85°C
工作消耗电流
ISS1
● SOT25
Wuxi Chipown INC .
- 7-
Chipown
● USP-6B
AP1231
Wuxi Chipown INC .
- 8-
VIN=VOUT(S)+1.0 V

输入电压
VIN
——
2.0
纹波抑制率
|PSRR|
VIN=VOUT(S)+1.0 V,f=10 kHz

Vrip=0.5 Vrms, IOUT=50 mA
短路电流 CE 最小高电平
Ishort VCEH
VIN=VOUT(S)+1.0 V,

ON/OFF 端子为 ON,VOUT=0 V
不超过输出晶体管的电流容量,内置了过载电流保护电路、短路保护电路。因采用SOT-25,USP-6B
等小型封装,故可高密度安装。
■ 产品特点
可选择输出电压
可以在 1.5~5.0V 的范围内选择,步进为 0.1 V
输出电压精度高
可达±2.0% 精度
输入输出压差低 高纹波抑制比
300 mV 典型值(输出为 3.0V 的产品, IOUT=100mA 时) 70dB (10 kHz)

ATSTK520;中文规格书,Datasheet资料

ATSTK520;中文规格书,Datasheet资料

STK520 .............................................................................................. User GuideSTK520 User Guide 3Table of ContentsSection 1Introduction............................................................................................1-2Section 2Using the STK520 Top Module.............................................................2-42.1Connecting the STK520 to the STK500 Starter Kit..................................2-42.1.1Placing an AT90PWM3 on the STK520.............................................2-42.1.2Placing an AT90PWM2 on the STK520.............................................2-52.2Programming the AVR..............................................................................2-72.2.1In-System Programming....................................................................2-72.2.2High-voltage Programming................................................................2-82.3JTAGICE mkII Connector.........................................................................2-92.4STK520 Jumpers, Leds & Test Points....................................................2-112.5DALI Interface.........................................................................................2-122.6Potentiometer.........................................................................................2-13Section 3Troubleshooting Guide........................................................................3-14Section 4Technical Specifications......................................................................4-16Section 5Technical Support ...............................................................................5-17Section 6Complete Schematics .........................................................................6-20IntroductionSection 1IntroductionThe STK520 board is a top module designed to add AT90PWM family support to theSTK500 development board from Atmel Corporation.The STK520 includes connectors and hardware allowing full utilization of the new fea-tures of the AT90PWM, while the Zero Insertion Force (ZIF) socket allows easy to use ofSO24 & SO32 packages for prototyping.This user guide acts as a general getting started guide as well as a complete technicalreference for advanced users.Notice that in this guide, the word AVR is used to refer to the target component(AT90PWM2, AT90PWM3...)Figure 1-1. STK520 Top Module for STK500Introduction1.1Features STK520 is a New Member of the Successful STK500 Starter Kit Family.Supports the AT90PWM2 & AT90PWM3.DALI Hardware Interface.Supported by AVR Studio® 4.Zero Insertion Force Socket for SO24 & SO32 Packages.High Voltage Parallell Programming.Serial Programming.DALI Peripherals can be Disconnected from the Device.6 Pin Connector for On-chip Debugging using JTAG MKII Emulator.Potentiometer for the Demo Application.Quick Reference to all Switches and Jumpers in the Silk-Screen of the PCB.Using the STK520 Top Module Section 2Using the STK520 Top Module2.1Connecting the STK520 to theSTK500 Starter Kit Connect the STK520 to the STK500 expansion header 0 and 1. It is important that the top module is connected in the correct orientation as shown in Figure 2-1. The EXPAND0 written on the STK520 top module should match the EXPAND0 written beside the expansion header on the STK500 board.Figure 2-1. Connecting STK520 to the STK500 BoardNote:Connecting the STK520 with wrong orientation may damage the board.2.1.1Placing anAT90PWM3 on theSTK520The STK520 contains both a ZIF socket for a SO32 package. Care should be taken so that the device is mounted with the correct orientation. Figure 2-2 shows the location of pin1 for the ZIF socket.Using the STK520 Top ModuleFigure 2-2. Pin1 on ZIF SocketCaution: Do not mount an AT90PWM3 on the STK520 at the same time as an AVR ismounted on the STK500 board or at the same time as an AT90PWM2 is mounted on theSTK520 board. None of the devices might work as intended.2.1.2Placing anAT90PWM2 on theSTK520The STK520 contains both a ZIF socket for a SO24 package. Care should be taken so that the device is mounted with the correct orientation. Figure 2-2 shows the location of pin1 for the ZIF socket.Figure 2-3. Pin1 on ZIF SocketPIN1PIN1Using the STK520 Top Module Caution: Do not mount an AT90PWM2 on the STK520 at the same time as an AVR is mounted on the STK500 board or at the same time as an AT90PWM3 is mounted on the STK520 board. None of the devices might work as intended.Using the STK520 Top Module2.2Programming theAVR The AVR (AT90PWM2, AT90PWM3...) can be programmed using both SPI and High-voltage Parallel Programming. This section will explain how to connect the programming cables to successfully use one of these two modes. The AVR Studio STK500 software is used in the same way as for other AVR partsNote:The AT90PWM3 also support Self Programming, See AVR109 application note for more information on this topic.2.2.1In-SystemProgramming Figure 2-4. In-System ProgrammingTo program the AT90PWM3 using ISP Programming mode, connect the 6-wire cable between the ISP6PIN connector on the STK500 board and the ISP connector on the STK520 board as shown in Figure 2-4. The device can be programmed using the Serial Programming mode in the AVR Studio4 STK500 software.Note:See STK500 User Guide for information on how to use the STK500 front-end software for ISP Programming.Using the STK520 Top Module2.2.2High-voltageProgramming Figure 2-5. High-voltage (Parallel) ProgrammingTo program the AVR using High-voltage (Parallel) Programming, connect the PROGC-TRL to PORTD and PROGDATA to PORTB on the STK500 as shown in Figure 2-5. Make sure that the TOSC-switch is placed in the XTAL position.As described in the STK500 User Guide (jumper settings), mount the BSEL2 jumper in order to High-voltage Program the ATmega devices. This setting also applies to High-voltage Programming of the AVR.The device can now be programmed using the High-voltage Programming mode in AVR Studio STK500 software.Note:See the STK500 User Guide for information on how to use the STK500 front-end software in High-voltage Programming mode.Note:For the High-voltage Programming mode to function correctly, the target voltage must be higher than 4.5V.Using the STK520 Top Module2.3JTAGICE mkIIConnector See the following document :“JTAGICE mkII Quick Start Guide” which purpose is “Connecting to a target board with the AVR JTAGICE mkII”.This note explains which signals are required for ISP and which signals are required for debugWIRE.Figure 2-6 shows how to connect the JTAGICE mkII probe on the STK520 board. Figure 2-6. Connecting JTAG ICE to the STK520The ISP connector is used for the AT90PWM3 built-in debugWire interface. The pin out of the connector is shown in Table 2-1 and is compliant with the pin out of the JTAG ICE available from Atmel. Connecting a JTAG ICE to this connector allows On-chip Debug-ging of the AT90PWM3.More information about the JTAG ICE and On-chip Debugging can be found in the AVR JTAG ICE User Guide, which is available at the Atmel web site, .分销商库存信息: ATMELATSTK520。

C2310中文资料

C2310中文资料
元器件交易网
C2310
Typical Applications
PCS Base Stations Land Mobile Radio Cellular Telephony Radio in the Local Loop
TCXO
Features
EFC Standard Standard Surface Mount Package Low Phase Noise option Low Profile STO50; STO50S3; STO50S3-01
v.2005-12-15 · page 1 of 5 Vectron international GmbH & Co. KG Landstrasse D-74924 Neckarbischofsheim Germany +49-07268-801-0 tel +49-07268-801-281 fax Vectron Asia Pacific Sales Office 1F-2F, No 8 Workshop, No 308 Fenju Road, WaiGaoQiao Free Trade Zone, Pudong, Shanghai, P.R. China 200131 +86 21 5048 0777 tel. +86 21 5048 1881 fax
Parameter Initial tolerance vs. supply voltage change vs. load change vs aging /15 Years overall tolerance
Typ
Note: * Stratum 3 per GR-1244-CORE: <±4.6 ppm for all causes and 20 years aging,Holdover: <±0.37 ppm over 24 hours (Code: D287 & B287)

ATTINY2313-20MU资料

ATTINY2313-20MU资料

Features•Utilizes the AVR® RISC Architecture•AVR – High-performance and Low-power RISC Architecture –120 Powerful Instructions – Most Single Clock Cycle Execution –32 x 8 General Purpose Working Registers–Fully Static Operation–Up to 20 MIPS Throughput at 20 MHz•Data and Non-volatile Program and Data Memories–2K Bytes of In-System Self Programmable FlashEndurance 10,000 Write/Erase Cycles–128 Bytes In-System Programmable EEPROMEndurance: 100,000 Write/Erase Cycles–128 Bytes Internal SRAM–Programming Lock for Flash Program and EEPROM Data Security •Peripheral Features–One 8-bit Timer/Counter with Separate Prescaler and Compare Mode–One 16-bit Timer/Counter with Separate Prescaler, Compare and Capture Modes –Four PWM Channels–On-chip Analog Comparator–Programmable Watchdog Timer with On-chip Oscillator–USI – Universal Serial Interface–Full Duplex USART•Special Microcontroller Features–debugWIRE On-chip Debugging–In-System Programmable via SPI Port–External and Internal Interrupt Sources–Low-power Idle, Power-down, and Standby Modes–Enhanced Power-on Reset Circuit–Programmable Brown-out Detection Circuit–Internal Calibrated Oscillator•I/O and Packages–18 Programmable I/O Lines–20-pin PDIP, 20-pin SOIC, 20-pad QFN/MLF•Operating Voltages–1.8 - 5.5V (ATtiny2313V)–2.7 - 5.5V (ATtiny2313)•Speed Grades–ATtiny2313V: 0 - 4 MHz @ 1.8 - 5.5V, 0 - 10 MHz @ 2.7 - 5.5V–ATtiny2313: 0 - 10 MHz @ 2.7 - 5.5V, 0 - 20 MHz @ 4.5 - 5.5V•Typical Power Consumption–Active Mode1 MHz, 1.8V: 230 µA32 kHz, 1.8V: 20 µA (including oscillator)–Power-down Mode< 0.1 µA at 1.8V 8-bit Microcontroller2ATtiny2313/V2543IS–AVR–04/06Pin ConfigurationsFigure 1. Pinout ATtiny2313OverviewThe ATtiny2313 is a low-power CMOS 8-bit microcontroller based on the AVR enhanced RISC architecture. By executing powerful instructions in a single clock cycle,the ATtiny2313 achieves throughputs approaching 1 MIPS per MHz allowing the system designer to optimize power consumption versus processing speed.3ATtiny2313/V2543IS–AVR–04/06Block DiagramFigure 2. Block Diagram4ATtiny2313/V2543IS–AVR–04/06The AVR core combines a rich instruction set with 32 general purpose working registers.All the 32 registers are directly connected to the Arithmetic Logic Unit (ALU), allowing two independent registers to be accessed in one single instruction executed in one clock cycle. The resulting architecture is more code efficient while achieving throughputs up to ten times faster than conventional CISC microcontrollers.The ATtiny2313 provides the following features: 2K bytes of In-System Programmable Flash, 128 bytes EEPROM, 128 bytes SRAM, 18general purpose I/O lines, 32 general purpose working registers, a single-wire Interface for On-chip Debugging, two flexible Timer/Counters with compare modes, internal and external interrupts, a serial program-mable USART, Universal Serial Interface with Start Condition Detector, a programmable Watchdog Timer with internal Oscillator, and three software selectable power saving modes. The Idle mode stops the CPU while allowing the SRAM, Timer/Counters, and interrupt system to continue functioning. The Power-down mode saves the register con-tents but freezes the Oscillator, disabling all other chip functions until the next interrupt or hardware reset. In Standby mode, the crystal/resonator Oscillator is running while the rest of the device is sleeping. This allows very fast start-up combined with low-power consumption.The device is manufactured using Atmel’s high density non-volatile memory technology.The On-chip ISP Flash allows the program memory to be reprogrammed In-System through an SPI serial interface, or by a conventional non-volatile memory programmer.By combining an 8-bit RISC CPU with In-System Self-Programmable Flash on a mono-lithic chip, the Atmel ATtiny2313 is a powerful microcontroller that provides a highly flexible and cost effective solution to many embedded control applications.The ATtiny2313 AVR is supported with a full suite of program and system development tools including: C Compilers, Macro Assemblers, Program Debugger/Simulators, In-Cir-cuit Emulators, and Evaluation kits.5ATtiny2313/V2543IS–AVR–04/06Pin DescriptionsVCC Digital supply voltage.GNDGround.Port A (PA2..PA0)Port A is a 3-bit bi-directional I/O port with internal pull-up resistors (selected for each bit). The Port A output buffers have symmetrical drive characteristics with both high sink and source capability. As inputs, Port A pins that are externally pulled low will source current if the pull-up resistors are activated. The Port A pins are tri-stated when a reset condition becomes active, even if the clock is not running.Port A also serves the functions of various special features of the ATtiny2313 as listed on page 53.Port B (PB7..PB0)Port B is an 8-bit bi-directional I/O port with internal pull-up resistors (selected for each bit). The Port B output buffers have symmetrical drive characteristics with both high sink and source capability. As inputs, Port B pins that are externally pulled low will source current if the pull-up resistors are activated. The Port B pins are tri-stated when a reset condition becomes active, even if the clock is not running.Port B also serves the functions of various special features of the ATtiny2313 as listed on page 53.Port D (PD6..PD0)Port D is a 7-bit bi-directional I/O port with internal pull-up resistors (selected for each bit). The Port D output buffers have symmetrical drive characteristics with both high sink and source capability. As inputs, Port D pins that are externally pulled low will source current if the pull-up resistors are activated. The Port D pins are tri-stated when a reset condition becomes active, even if the clock is not running.Port D also serves the functions of various special features of the ATtiny2313 as listed on page 56.Reset input. A low level on this pin for longer than the minimum pulse length will gener-ate a reset, even if the clock is not running. The minimum pulse length is given in Table 15 on page 34. Shorter pulses are not guaranteed to generate a reset. The Reset Input is an alternate function for PA2 and dW.XTAL1Input to the inverting Oscillator amplifier and input to the internal clock operating circuit.XTAL1 is an alternate function for PA0.XTAL2Output from the inverting Oscillator amplifier. XTAL2 is an alternate function for PA1.ResourcesA comprehensive set of development tools, application notes and datasheets are avail-able for downloadon /avr.6ATtiny2313/V2543IS–AVR–04/06Register SummaryAddressNameBit 7Bit 6Bit 5Bit 4Bit 3Bit 2Bit 1Bit 0Page0x3F (0x5F)SREG I T H S V N Z C 70x3E (0x5E)Reserved ––––––––0x3D (0x5D)SPL SP7SP6SP5SP4SP3SP2SP1SP0100x3C (0x5C)OCR0B Timer/Counter0 – Compare Register B780x3B (0x5B)GIMSK INT1INT0PCIE –––––600x3A (0x5A)EIFR INTF1INTF0PCIF –––––620x39 (0x59)TIMSK TOIE1OCIE1A OCIE1B –ICIE1OCIE0B TOIE0OCIE0A 79, 1100x38 (0x58)TIFR TOV1OCF1A OCF1B –ICF1OCF0B TOV0OCF0A 790x37 (0x57)SPMCSR –––CTPB RFLB PGWRT PGERS SELFPRGEN1560x36 (0x56)OCR0A Timer/Counter0 – Compare Register A780x35 (0x55)MCUCR PUD SM1SE SM0ISC11ISC10ISC01ISC00530x34 (0x54)MCUSR ––––WDRF BORF EXTRF PORF 370x33 (0x53)TCCR0B FOC0A FOC0B ––WGM02CS02CS01CS00770x32 (0x52)TCNT0Timer/Counter0 (8-bit)780x31 (0x51)OSCCAL –CAL6CAL5CAL4CAL3CAL2CAL1CAL0250x30 (0x50)TCCR0A COM0A1COM0A0COM0B1COM0B0––WGM01WGM00740x2F (0x4F)TCCR1A COM1A1COM1A0COM1B1COM1BO ––WGM11WGM101050x2E (0x4E)TCCR1B ICNC1ICES1–WGM13WGM12CS12CS11CS101080x2D (0x4D)TCNT1H Timer/Counter1 – Counter Register High Byte 1090x2C (0x4C)TCNT1L Timer/Counter1 – Counter Register Low Byte 1090x2B (0x4B)OCR1AH Timer/Counter1 – Compare Register A High Byte 1090x2A (0x4A)OCR1AL Timer/Counter1 – Compare Register A Low Byte 1090x29 (0x49)OCR1BH Timer/Counter1 – Compare Register B High Byte 1100x28 (0x48)OCR1BL Timer/Counter1 – Compare Register B Low Byte1100x27 (0x47)Reserved ––––––––0x26 (0x46)CLKPR CLKPCE–––CLKPS3CLKPS2CLKPS1CLKPS0270x25 (0x45)ICR1H Timer/Counter1 - Input Capture Register High Byte 1100x24 (0x44)ICR1L Timer/Counter1 - Input Capture Register Low Byte1100x23 (0x43)GTCCR –––––––PSR10820x22 (ox42)TCCR1C FOC1A FOC1B ––––––1090x21 (0x41)WDTCSR WDIF WDIE WDP3WDCE WDE WDP2WDP1WDP0420x20 (0x40)PCMSK PCINT7PCINT6PCINT5PCINT4PCINT3PCINT2PCINT1PCINT0620x1F (0x3F)Reserved ––––––––0x1E (0x3E)EEAR –EEPROM Address Register 150x1D (0x3D)EEDR EEPROM Data Register160x1C (0x3C)EECR ––EEPM1EEPM0EERIE EEMPE EEPE EERE 160x1B (0x3B)PORTA –––––PORTA2PORTA1PORTA0580x1A (0x3A)DDRA –––––DDA2DDA1DDA0580x19 (0x39)PINA –––––PINA2PINA1PINA0580x18 (0x38)PORTB PORTB7PORTB6PORTB5PORTB4PORTB3PORTB2PORTB1PORTB0580x17 (0x37)DDRB DDB7DDB6DDB5DDB4DDB3DDB2DDB1DDB0580x16 (0x36)PINB PINB7PINB6PINB5PINB4PINB3PINB2PINB1PINB0580x15 (0x35)GPIOR2General Purpose I/O Register 2200x14 (0x34)GPIOR1General Purpose I/O Register 1200x13 (0x33)GPIOR0General Purpose I/O Register 0200x12 (0x32)PORTD –PORTD6PORTD5PORTD4PORTD3PORTD2PORTD1PORTD0580x11 (0x31)DDRD –DDD6DDD5DDD4DDD3DDD2DDD1DDD0580x10 (0x30)PIND –PIND6PIND5PIND4PIND3PIND2PIND1PIND0580x0F (0x2F)USIDR USI Data Register1450x0E (0x2E)USISR USISIF USIOIF USIPF USIDC USICNT3USICNT2USICNT1USICNT01460x0D (0x2D)USICR USISIE USIOIE USIWM1USIWM0USICS1USICS0USICLK USITC 1470x0C (0x2C)UDR UART Data Register (8-bit)1300x0B (0x2B)UCSRA RXC TXC UDRE FE DORUPE U2X MPCM 1300x0A (0x2A)UCSRB RXCIE TXCIE UDRIE RXEN TXENUCSZ2RXB8TXB81320x09 (0x29)UBRRL UBRRH[7:0]1340x08 (0x28)ACSR ACD ACBG ACO ACI ACIE ACIC ACIS1ACIS01500x07 (0x27)Reserved ––––––––0x06 (0x26)Reserved ––––––––0x05 (0x25)Reserved ––––––––0x04 (0x24)Reserved ––––––––0x03 (0x23)UCSRC –UMSEL UPM1UPM0USBSUCSZ1UCSZ0UCPOL1330x02 (0x22)UBRRH ––––UBRRH[11:8]1340x01 (0x21)DIDR ––––––AIN1D AIN0D 1510x00 (0x20)Reserved––––––––7ATtiny2313/V2543IS–AVR–04/06Note:1.For compatibility with future devices, reserved bits should be written to zero if accessed. Reserved I/O memory addressesshould never be written.2.I/O Registers within the address range 0x00 - 0x1F are directly bit-accessible using the SBI and CBI instructions. In theseregisters, the value of single bits can be checked by using the SBIS and SBIC instructions.3.Some of the status flags are cleared by writing a logical one to them. Note that, unlike most other AVRs, the CBI and SBIinstructions will only operate on the specified bit, and can therefore be used on registers containing such status flags. The CBI and SBI instructions work with registers 0x00 to 0x1F only.4.When using the I/O specific commands IN and OUT , the I/O addresses 0x00 - 0x3F must be used. When addressing I/ORegisters as data space using LD and ST instructions, 0x20 must be added to these addresses.8ATtiny2313/V2543IS–AVR–04/06Instruction Set SummaryMnemonicsOperandsDescriptionOperation Flags#ClocksARITHMETIC AND LOGIC INSTRUCTIONSADD Rd, Rr Add two RegistersRd ← Rd + RrZ,C,N,V,H 1ADC Rd, Rr Add with Carry two Registers Rd ← Rd + Rr + C Z,C,N,V,H 1ADIW Rdl,K Add Immediate to Word Rdh:Rdl ← Rdh:Rdl + K Z,C,N,V,S 2SUB Rd, Rr Subtract two RegistersRd ← Rd - Rr Z,C,N,V,H 1SUBI Rd, K Subtract Constant from Register Rd ← Rd - K Z,C,N,V,H 1SBC Rd, Rr Subtract with Carry two Registers Rd ← Rd - Rr - C Z,C,N,V,H 1SBCI Rd, K Subtract with Carry Constant from Reg.Rd ← Rd - K - C Z,C,N,V,H 1SBIW Rdl,K Subtract Immediate from Word Rdh:Rdl ← Rdh:Rdl - K Z,C,N,V,S 2AND Rd, Rr Logical AND RegistersRd ← Rd • Rr Z,N,V 1ANDI Rd, K Logical AND Register and Constant Rd ← Rd • K Z,N,V 1OR Rd, Rr Logical OR RegistersRd ← Rd v RrZ,N,V 1ORI Rd, K Logical OR Register and Constant Rd ← Rd v KZ,N,V 1EOR Rd, Rr Exclusive OR Registers Rd ← Rd ⊕ Rr Z,N,V 1COM Rd One’s Complement Rd ← 0xFF − Rd Z,C,N,V 1NEG Rd Two’s Complement Rd ← 0x00 − Rd Z,C,N,V,H 1SBR Rd,K Set Bit(s) in Register Rd ← Rd v K Z,N,V 1CBR Rd,K Clear Bit(s) in Register Rd ← Rd • (0xFF - K)Z,N,V 1INC Rd Increment Rd ← Rd + 1Z,N,V 1DEC Rd DecrementRd ← Rd − 1 Z,N,V 1TST Rd Test for Zero or Minus Rd ← Rd • Rd Z,N,V 1CLR Rd Clear Register Rd ← Rd ⊕ Rd Z,N,V 1SER Rd Set Register Rd ← 0xFF None 1BRANCH INSTRUCTIONSRJMP kRelative Jump PC ← PC + k + 1None 2IJMP Indirect Jump to (Z)PC ← Z None 2RCALL kRelative Subroutine Call PC ← PC + k + 1None 3ICALL Indirect Call to (Z)PC ←Z None 3RET Subroutine Return PC ← STACK None 4RETI Interrupt Return PC ← STACKI 4CPSE Rd,Rr Compare, Skip if Equal if (Rd = Rr) PC ← PC + 2 or 3None 1/2/3CP Rd,Rr CompareRd − Rr Z, N,V,C,H 1 CPC Rd,Rr Compare with CarryRd − Rr − C Z, N,V,C,H 1CPI Rd,K Compare Register with Immediate Rd − KZ, N,V,C,H 1SBRC Rr, b Skip if Bit in Register Cleared if (Rr(b)=0) PC ← PC + 2 or 3 None 1/2/3SBRS Rr, b Skip if Bit in Register is Set if (Rr(b)=1) PC ← PC + 2 or 3None 1/2/3SBIC P, b Skip if Bit in I/O Register Cleared if (P(b)=0) PC ← PC + 2 or 3 None 1/2/3SBIS P, b Skip if Bit in I/O Register is Set if (P(b)=1) PC ← PC + 2 or 3None 1/2/3BRBS s, k Branch if Status Flag Set if (SREG(s) = 1) then PC ←PC+k + 1None 1/2BRBC s, k Branch if Status Flag Cleared if (SREG(s) = 0) then PC ←PC+k + 1None 1/2BREQ k Branch if Equal if (Z = 1) then PC ← PC + k + 1None 1/2BRNE k Branch if Not Equal if (Z = 0) then PC ← PC + k + 1None 1/2BRCS k Branch if Carry Set if (C = 1) then PC ← PC + k + 1None 1/2BRCC k Branch if Carry Cleared if (C = 0) then PC ← PC + k + 1None 1/2BRSH k Branch if Same or Higher if (C = 0) then PC ← PC + k + 1None 1/2BRLO k Branch if Lower if (C = 1) then PC ← PC + k + 1None 1/2BRMI k Branch if Minus if (N = 1) then PC ← PC + k + 1None 1/2BRPL k Branch if Plusif (N = 0) then PC ← PC + k + 1None 1/2BRGE k Branch if Greater or Equal, Signed if (N ⊕ V= 0) then PC ← PC + k + 1None 1/2BRLT k Branch if Less Than Zero, Signed if (N ⊕ V= 1) then PC ← PC + k + 1None 1/2BRHS k Branch if Half Carry Flag Set if (H = 1) then PC ← PC + k + 1None 1/2BRHC k Branch if Half Carry Flag Cleared if (H = 0) then PC ← PC + k + 1None 1/2BRTS k Branch if T Flag Set if (T = 1) then PC ← PC + k + 1None 1/2BRTC k Branch if T Flag Cleared if (T = 0) then PC ← PC + k + 1None 1/2BRVS k Branch if Overflow Flag is Set if (V = 1) then PC ← PC + k + 1None 1/2BRVC k Branch if Overflow Flag is Cleared if (V = 0) then PC ← PC + k + 1None 1/2BRIE k Branch if Interrupt Enabled if ( I = 1) then PC ← PC + k + 1None 1/2BRID k Branch if Interrupt Disabled if ( I = 0) then PC ← PC + k + 1None 1/2BIT AND BIT-TEST INSTRUCTIONSSBI P,b Set Bit in I/O Register I/O(P,b) ←1None 2CBI P,b Clear Bit in I/O Register I/O(P,b) ←0None 2LSL Rd Logical Shift Left Rd(n+1) ← Rd(n), Rd(0) ← 0Z,C,N,V 1LSR Rd Logical Shift Right Rd(n) ← Rd(n+1), Rd(7) ← 0Z,C,N,V 1ROLRd Rotate Left Through CarryRd(0)←C,Rd(n+1)← Rd(n),C ←Rd(7)Z,C,N,V19ATtiny2313/V2543IS–AVR–04/06ROR Rd Rotate Right Through CarryRd(7)←C,Rd(n)← Rd(n+1),C ←Rd(0)Z,C,N,V 1ASR Rd Arithmetic Shift Right Rd(n) ← Rd(n+1), n=0..6Z,C,N,V 1SWAP Rd Swap Nibbles Rd(3..0)←Rd(7..4),Rd(7..4)←Rd(3..0)None 1BSET s Flag Set SREG(s) ← 1SREG(s)1BCLR s Flag ClearSREG(s) ← 0 SREG(s)1BST Rr, b Bit Store from Register to T T ← Rr(b)T 1BLD Rd, bBit load from T to Register Rd(b) ← T None 1SEC Set Carry C ←1C 1CLC Clear Carry C ← 0 C 1SEN Set Negative Flag N ← 1N 1CLN Clear Negative Flag N ← 0 N 1SEZ Set Zero Flag Z ←1Z 1CLZ Clear Zero Flag Z ← 0 Z 1SEI Global Interrupt Enable I ←1I 1CLI Global Interrupt Disable I ← 0 I 1SES Set Signed Test Flag S ← 1S 1CLS Clear Signed Test FlagS ← 0S 1SEV Set Twos Complement Overflow.V ← 1V 1CLV Clear Twos Complement Overflow V ← 0V 1SET Set T in SREG T ← 1T 1CLT Clear T in SREGT ← 0T 1SEH Set Half Carry Flag in SREG H ← 1H 1CLHClear Half Carry Flag in SREG H ← 0H 1DATA TRANSFER INSTRUCTIONS MOV Rd, Rr Move Between Registers Rd ← RrNone 1MOVW Rd, Rr Copy Register Word Rd+1:Rd ← Rr+1:Rr None 1LDI Rd, K Load Immediate Rd ←KNone 1LD Rd, X Load IndirectRd ← (X)None 2LD Rd, X+Load Indirect and Post-Inc.Rd ← (X), X ← X + 1None 2LD Rd, - X Load Indirect and Pre-Dec.X ← X - 1, Rd ← (X)None 2LD Rd, Y Load IndirectRd ← (Y)None 2LD Rd, Y+Load Indirect and Post-Inc.Rd ← (Y), Y ← Y + 1None 2LD Rd, - Y Load Indirect and Pre-Dec.Y ← Y - 1, Rd ← (Y)None 2LDD Rd,Y+q Load Indirect with Displacement Rd ← (Y + q)None 2LD Rd, Z Load IndirectRd ← (Z)None 2LD Rd, Z+Load Indirect and Post-Inc.Rd ← (Z), Z ← Z+1None 2LD Rd, -Z Load Indirect and Pre-Dec.Z ← Z - 1, Rd ← (Z)None 2LDD Rd, Z+q Load Indirect with Displacement Rd ← (Z + q)None 2LDS Rd, k Load Direct from SRAM Rd ← (k)None 2ST X, Rr Store Indirect(X) ← RrNone 2ST X+, Rr Store Indirect and Post-Inc.(X) ← Rr, X ← X + 1None 2ST - X, Rr Store Indirect and Pre-Dec.X ← X - 1, (X) ← Rr None 2ST Y, Rr Store Indirect(Y) ← RrNone 2ST Y+, Rr Store Indirect and Post-Inc.(Y) ← Rr, Y ← Y + 1None 2ST - Y, Rr Store Indirect and Pre-Dec.Y ← Y - 1, (Y) ← Rr None 2STD Y+q,Rr Store Indirect with Displacement (Y + q) ← Rr None 2ST Z, Rr Store Indirect(Z) ← RrNone 2ST Z+, Rr Store Indirect and Post-Inc.(Z) ← Rr, Z ← Z + 1None 2ST -Z, Rr Store Indirect and Pre-Dec.Z ← Z - 1, (Z) ← Rr None 2STD Z+q,Rr Store Indirect with Displacement (Z + q) ← Rr None 2STS k, RrStore Direct to SRAM (k) ← Rr None 2LPM Load Program Memory R0 ← (Z)None 3LPM Rd, Z Load Program MemoryRd ← (Z)None 3LPM Rd, Z+Load Program Memory and Post-Inc Rd ← (Z), Z ← Z+1None 3SPM Store Program Memory (Z) ← R1:R0None -IN Rd, P In Port Rd ←P None 1OUT P, Rr Out PortP ← Rr None 1PUSH Rr Push Register on Stack STACK ← Rr None 2POP Rd Pop Register from Stack Rd ← STACKNone 2MCU CONTROL INSTRUCTIONSNOP No Operation None1SLEEP Sleep(see specific descr. for Sleep function)None 1WDRWatchdog Reset(see specific descr. for WDR/timer)None 1BREAKBreakFor On-chip Debug OnlyNoneN/AMnemonicsOperandsDescriptionOperationFlags#Clocks10ATtiny2313/V2543IS–AVR–04/06Ordering InformationNote:1.This device can also be supplied in wafer form. Please contact your local Atmel sales office for detailed ordering informationand minimum quantities.2.Pb-free packaging alternative, complies to the European Directive for Restriction of Hazardous Substances (RoHS direc-tive).Also Halide free and fully Green.3.For Speed vs. V CC, see Figure 82 on page 181 and Figure 83 on page 181.Speed (MHz)(3)Power SupplyOrdering Code Package (1)Operation Range10 1.8 - 5.5VA Ttiny2313V-10PI A Ttiny2313V-10PU (2)A Ttiny2313V-10SI A Ttiny2313V-10SU (2)A Ttiny2313V-10MU (2)20P320P320S 20S 20M1Industrial (-40°C to 85°C)20 2.7 - 5.5VA Ttiny2313-20PI A Ttiny2313-20PU (2)A Ttiny2313-20SI A Ttiny2313-20SU (2)A Ttiny2313-20MU (2)20P320P320S 20S 20M1Industrial (-40°C to 85°C)Package Type20P320-lead, 0.300" Wide, Plastic Dual Inline Package (PDIP)20S 20-lead, 0.300" Wide, Plastic Gull Wing Small Outline Package (SOIC)20M120-pad, 4 x 4 x 0.8 mm Body, Quad Flat No-Lead/Micro Lead Frame Package (MLF)11ATtiny2313/V2543IS–AVR–04/06Packaging Information20P312ATtiny2313/V2543IS–AVR–04/0620S13ATtiny2313/V2543IS–AVR–04/0620M114ATtiny2313/V2543IS–AVR–04/06ErrataThe revision in this section refers to the revision of the ATtiny2313 device.ATtiny2313 Rev B•Wrong values read after Erase Only operation •Parallel Programming does not work •Watchdog Timer Interrupt disabled•EEPROM can not be written below 1.9 volts1.Wrong values read after Erase Only operationAt supply voltages below 2.7 V, an EEPROM location that is erased by the Erase Only operation may read as programmed (0x00).Problem Fix/WorkaroundIf it is necessary to read an EEPROM location after Erase Only, use an Atomic Write operation with 0xFF as data in order to erase a location. In any case, the Write Only operation can be used as intended. Thus no special considerations are needed as long as the erased location is not read before it is programmed.2.Parallel Programming does not workParallel Programming is not functioning correctly. Because of this, reprogramming of the device is impossible if one of the following modes are selected: –In-System Programming disabled (SPIEN unprogrammed)–Reset Disabled (RSTDISBL programmed)Problem Fix/WorkaroundSerial Programming is still working correctly. By avoiding the two modes above, the device can be reprogrammed serially.3.Watchdog Timer Interrupt disabledIf the watchdog timer interrupt flag is not cleared before a new timeout occurs, the watchdog will be disabled, and the interrupt flag will automatically be cleared. This is only applicable in interrupt only mode. If the Watchdog is configured to reset the device in the watchdog time-out following an interrupt, the device works correctly.Problem fix / WorkaroundMake sure there is enough time to always service the first timeout event before a new watchdog timeout occurs. This is done by selecting a long enough time-out period.4.EEPROM can not be written below 1.9 voltsWriting the EEPROM at V CC below 1.9 volts might fail.Problem fix / WorkaroundDo not write the EEPROM when V CC is below 1.9 volts.ATtiny2313 Rev ARevision A has not been sampled.15ATtiny2313/V2543IS–AVR–04/06Datasheet Revision HistoryPlease note that the referring page numbers in this section are referred to this docu-ment. The referring revision in this section are referring to the document revision.Changes from Rev. 2514H-02/05 to Rev. 2514I-04/06Changes from Rev. 2514G-10/04 to Rev. 2514H-02/05Changes from Rev. 2514F-08/04 to Rev. 2514G-10/04Changes from Rev. 2514E-04/04 to Rev. 2514F-08/041.Updated typos.2.Updated Figure 1 on page 2.3Added “Resources” on page 6.4.Updated “Default Clock Source” on page 25.5.Updated “128 kHz Internal Oscillator” on page 30.6.Updated “Power Management and Sleep Modes” on page 337.Updated Table 3 on page 25,Table 13 on page 33, Table 14 on page 34,Table 19 on page 45, Table 31 on page 63, Table 79 on page 180.8.Updated “External Interrupts” on page 62.9.Updated “Bit 7..0 – PCINT7..0: Pin Change Enable Mask 7..0” on page 65.10.Updated “Bit 6 – ACBG: Analog Comparator Bandgap Select” on page 153.11.Updated “Calibration Byte” on page 164.12.Updated “DC Characteristics” on page 181.13.Updated “Register Summary” on page 6.14.Updated “Ordering Information” on page 10.15.Changed occurences of OCnA to OCFnA, OCnB to OCFnB and OC1x to OCF1x.1.Updated Table 6 on page 24, Table 15 on page 34, Table 68 on page 161and Table 80 on page 180.2.Changed CKSEL default value in “Default Clock Source” on page 22 to 8 MHz.3.Updated “Programming the Flash” on page 166, “Programming the EEPROM” on page 168 and “Enter Programming Mode” on page 164.4.Updated “DC Characteristics” on page 178.5.MLF option updated to “Quad Flat No-Lead/Micro Lead Frame (QFN/MLF)”1.Updated “Features” on page 1.2.Updated “Pinout ATtiny2313” on page 2.3.Updated “Ordering Information” on page 10.4.Updated “Packaging Information” on page 11.5.Updated “Errata” on page 14.1.Updated “Features” on page 1.2.Updated “Alternate Functions of Port B” on page 53.3.Updated “Calibration Byte” on page 161.16ATtiny2313/V2543IS–AVR–04/06Changes from Rev. 2514D-03/04 to Rev. 2514E-04/04Changes from Rev. 2514C-12/03 to Rev. 2514D-03/04Changes from Rev. 2514B-09/03 to Rev. 2514C-12/03Changes from Rev. 2514A-09/03 to Rev. 2514B-09/034.Moved Table 69 on page 161 and Table 70 on page 162 to “Page Size”on page 161.5.Updated “Enter Programming Mode” on page 164.6.Updated “Serial Programming Algorithm” on page 174.7.Updated Table 78 on page 175.8.Updated “DC Characteristics” on page 178.9.Updated “ATtiny2313 Typical Characteristics” on page 182.10.Changed occurences of PCINT15 to PCINT7, EEMWE to EEMPE and EEWE to EEPE in the document.1.Speed Grades changed - 12MHz to 10MHz - 24MHz to 20MHz2.Updated Figure 1 on page 2.3.Updated “Ordering Information” on page 10.4.Updated “Maximum Speed vs. V CC ” on page 181.5.Updated “ATtiny2313 Typical Characteristics” on page 182.1.Updated Table 2 on page 22.2.Replaced “Watchdog Timer” on page 39.3.Added “Maximum Speed vs. V CC ” on page 181.4.“Serial Programming Algorithm” on page 174 updated.5.Changed mA to µA in preliminary Figure 136 on page 208.6.“Ordering Information” on page 10 updated. MLF package option removed7.Package drawing “20P3” on page 11 updated.8.Updated C-code examples.9.Renamed instances of SPMEN to SELFPRGEN, Self Programming Enable.1.Updated “Calibrated Internal RC Oscillator” on page 24.1.Fixed typo from UART to USART and updated Speed Grades and Power Consumption Estimates in “Features” on page 1.2.Updated “Pin Configurations” on page 2.3.Updated Table 15 on page 34 and Table 80 on page 180.4.Updated item 5 in “Serial Programming Algorithm” on page 174.5.Updated “Electrical Characteristics” on page 178.6.Updated Figure 82 on page 181 and added Figure 83 on page 181.7.Changed SFIOR to GTCCR in “Register Summary” on page 6.8.Updated “Ordering Information” on page 10.9.Added new errata in “Errata” on page 14.2543IS–AVR–04/06© Atmel Corporation 2006. All rights reserved. Atmel ®, logo and combinations thereof, Everywhere You Are ®, AVR ®, AVR Studio ®, and others,are registered trademarks or trademarks of Atmel Corporation or its subsidiaries. Other terms and product names may be trademarks of others.Disclaimer: The information in this document is provided in connection with Atmel products. No license, express or implied, by estoppel or otherwise,to any intellectual property right is granted by this document or in connection with the sale of Atmel products. EXCEPT AS SET FORTH IN ATMEL ’S TERMS AND CONDI-TIONS OF SALE LOCATED ON ATMEL ’S WEB SITE, ATMEL ASSUMES NO LIABILITY WHATSOEVER AND DISCLAIMS ANY EXPRESS, IMPLIED OR STATUTORY WARRANTY RELATING TO ITS PRODUCTS INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTY OF MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE, OR NON-INFRINGEMENT. IN NO EVENT SHALL ATMEL BE LIABLE FOR ANY DIRECT, INDIRECT, CONSEQUENTIAL, PUNITIVE, SPECIAL OR INCIDEN-TAL DAMAGES (INCLUDING, WITHOUT LIMITATION, DAMAGES FOR LOSS OF PROFITS, BUSINESS INTERRUPTION, OR LOSS OF INFORMATION) ARISING OUT OF THE USE OR INABILITY TO USE THIS DOCUMENT, EVEN IF ATMEL HAS BEEN ADVISED OF THE POSSIBILITY OF SUCH DAMAGES. Atmel makes no representations or warranties with respect to the accuracy or completeness of the contents of this document and reserves the right to make changes to specifications and product descriptions at any time without notice. Atmel does not make any commitment to update the information contained herein. Unless specifically provided otherwise, Atmel products are not suitable for, and shall not be used in, automotive applications. Atmel’s products are not intended, authorized, or warranted for use as components in applications intended to support or sustain life.Atmel CorporationAtmel Operations2325 Orchard Parkway San Jose, CA 95131, USA Tel: 1(408) 441-0311Fax: 1(408) 487-2600Regional HeadquartersEuropeAtmel SarlRoute des Arsenaux 41Case Postale 80CH-1705 Fribourg SwitzerlandTel: (41) 26-426-5555Fax: (41) 26-426-5500AsiaRoom 1219Chinachem Golden Plaza 77 Mody Road Tsimshatsui East Kowloon Hong KongTel: (852) 2721-9778Fax: (852) 2722-1369Japan9F, Tonetsu Shinkawa Bldg.1-24-8 ShinkawaChuo-ku, Tokyo 104-0033JapanTel: (81) 3-3523-3551Fax: (81) 3-3523-7581Memory2325 Orchard Parkway San Jose, CA 95131, USA Tel: 1(408) 441-0311Fax: 1(408) 436-4314Microcontrollers2325 Orchard Parkway San Jose, CA 95131, USA Tel: 1(408) 441-0311Fax: 1(408) 436-4314La Chantrerie BP 7060244306 Nantes Cedex 3, France Tel: (33) 2-40-18-18-18Fax: (33) 2-40-18-19-60ASIC/ASSP/Smart CardsZone Industrielle13106 Rousset Cedex, France Tel: (33) 4-42-53-60-00Fax: (33) 4-42-53-60-011150 East Cheyenne Mtn. Blvd.Colorado Springs, CO 80906, USA Tel: 1(719) 576-3300Fax: 1(719) 540-1759Scottish Enterprise Technology Park Maxwell BuildingEast Kilbride G75 0QR, Scotland Tel: (44) 1355-803-000Fax: (44) 1355-242-743RF/AutomotiveTheresienstrasse 2Postfach 353574025 Heilbronn, Germany Tel: (49) 71-31-67-0Fax: (49) 71-31-67-23401150 East Cheyenne Mtn. Blvd.Colorado Springs, CO 80906, USA Tel: 1(719) 576-3300Fax: 1(719) 540-1759Biometrics/Imaging/Hi-Rel MPU/High Speed Converters/RF DatacomAvenue de Rochepleine BP 12338521 Saint-Egreve Cedex, France Tel: (33) 4-76-58-30-00Fax: (33) 4-76-58-34-80Literature Requests/literature。

BAP70-03_04中文资料

BAP70-03_04中文资料

2004 Feb 10
5
元器件交易网
Philips Semiconductors
Product specification
Silicon PIN diode
DATA SHEET STATUS LEVEL I DATA SHEET STATUS(1) Objective data PRODUCT STATUS(2)(3) Development DEFINITION
2004 Feb 10
2
元器件交易网
Philips Semiconductors
Product specification
Silicon PIN diode
CHARACTERISTICS Tj = 25 °C unless otherwise specified. SYMBOL VF IR Cd PARAMETER forward voltage reverse leakage current diode capacitance VR = 30 V VR = 0 V; f = 1 MHz VR = 1 V; f = 1 MHz VR = 5 V; f = 1 MHz VR = 20 V; f = 1 MHz rD diode forward resistance IF = 0.5 mA; f = 100 MHz IF = 1 mA; f = 100 MHz IF = 10 mA; f = 100 MHz IF = 100 mA; f = 100 MHz τL charge carrier life time when switched from IF = 10 mA to IR = 6 mA; RL = 100 Ω; measured at IR = 3 mA IF = 100 mA; f = 100 MHz CONDITIONS IF = 50 mA − 570 400 270 200 77 40 5.4 1.4 1.25 TYP. 0.9

A1203中文资料

A1203中文资料

A1203中⽂资料Continuous-time operation – Fast power-on time– Low noiseStable operation over full operating temperature range Reverse battery protectionSolid-state reliabilityFactory-programmed at end-of-line for optimum performance Robust EMC performance High ESD ratingRegulator stability without a bypass capacitorA1201, A1202, A1203 and A1204 Hall-effect bipolar switches are . The extensive on-board protection circuitry makes Continuous-Time Bipolar Switch FamilyFunctional Block DiagramVOUTTerminal ListName DescriptionNumberPackage LH Package UAVCC Connects power supply to chip 11VOUT Output from circuit 23GNDGround32Part Number Packing*MountingAmbient, T A B RP (Min)B OP (Max)A1201ELHLT-T 7-in. reel, 3000 pieces/reel 3-pin SOT23W surface mount –40oC to 85oC–5050A1201EUA-T Bulk, 500 pieces/bag 3-pin SIP through hole A1201LLHLT-T 7-in. reel, 3000 pieces/reel 3-pin SOT23W surface mount –40oC to 150oC A1201LUA-T Bulk, 500 pieces/bag 3-pin SIP through hole A1202ELHLT-T 7-in. reel, 3000 pieces/reel 3-pin SOT23W surface mount –40oC to 85oC–7575A1202EUA-T Bulk, 500 pieces/bag 3-pin SIP through hole A1202LLHLT-T 7-in. reel, 3000 pieces/reel 3-pin SOT23W surface mount –40oC to 150oC A1202LUA-T Bulk, 500 pieces/bag 3-pin SIP through hole A1203ELHLT-T 7-in. reel, 3000 pieces/reel 3-pin SOT23W surface mount –40oC to 85oC–9595A1203EUA-T Bulk, 500 pieces/bag 3-pin SIP through hole A1203LLHLT-T 7-in. reel, 3000 pieces/reel 3-pin SOT23W surface mount –40oC to 150oC A1203LUA-T Bulk, 500 pieces/bag 3-pin SIP through hole A1204ELHLT-T 7-in. reel, 3000 pieces/reel 3-pin SOT23W surface mount –40oC to 85oC–150150A1204EUA-T Bulk, 500 pieces/bag 3-pin SIP through hole A1204LLHLT-T 7-in. reel, 3000 pieces/reel 3-pin SOT23W surface mount –40oC to 150oCA1204LUA-TBulk, 500 pieces/bag3-pin SIP through hole*Contact Allegro for additional packing options.Product Selection GuideOPERATING CHARACTERISTICS over full operating voltage and ambient temperature ranges, unless otherwise noted Characteristic Symbol Test Conditions Min.Typ.Max.Units Electrical CharacteristicsSupply Voltage1V CC Operating, T J < 165°C 3.8–24V Output Leakage Current I OUTOFF V OUT = 24 V, B < B RP––10µA Output On Voltage V OUT(SAT)I OUT = 20 mA, B > B OP–215400mVPower-On Time2t PO Slew rate (dV CC/dt) < 2.5 V/µs, B > B OP + 5 G orB < B RP – 5 G––4µsOutput Rise Time3t r V CC = 12 V, R LOAD = 820 ?, C S = 12 pF––2µs Output Fall Time3t f V CC = 12 V, R LOAD = 820 ?, C S = 12 pF––2µsSupply Current I CCON B > B OP– 3.87.5mA I CCOFF B < B RP– 3.57.5mAReverse Battery Current I RCC V RCC = –30 V–––10mA Supply Zener Clamp Voltage V Z I CC = 10.5 mA; T A = 25°C32––V Supply Zener Current4I Z V Z = 32 V; T A = 25°C––10.5mA Magnetic Characteristics5Operate Point B OP A1201South pole adjacent to branded faceof device–401550G A1202–2675G A1203–2695G A1204–10042150GRelease Point B RP A1201North pole adjacent to branded faceof device–50–1540G A1202–75–26–G A1203–95–26–G A1204–150–40100GHysteresis B HYS A1201B OP – B RP53055G A12023052–G A12033052–G A12045082115G1 Maximum voltage must be adjusted for power dissipation and junction temperature, see Power Derating section.2 For V CC slew rates greater than 250 V/µs, and T A = 150°C, the Power-On Time can reach its maximum value.3 C S =oscilloscope probe capacitance.4 Maximum current limit is equal to the maximum I CC(max) + 22 mA.5 Magnetic flux density, B, is indicated as a negative value for north-polarity magnetic fields, and as a positive value for south-polarity magnetic fields. This so-called algebraic convention supports arithmetic comparison of north and south polarity values, where the relative strength of the field is indicated by the absolute value of B, and the sign indicates the polarity of the field (for example, a –100 G field and a 100 G field have equivalent strength, but opposite polarity).DEVICE QUALIFICATION PROGRAMContact Allegro for information.EMC (Electromagnetic Compatibility) REQUIREMENTSContact Allegro for information.THERMAL CHARACTERISTICS may require derating at maximum conditions, see application information CharacteristicSymbolTest ConditionsValue Units Package Thermal ResistanceR θJAPackage LH, minimum-K PCB (single layer, single-sided with copper limited to solder pads)110oC/W Package LH, low-K PCB (single layer, double-sided with 0.926 in 2 copper area)228oC/W Package UA, minimum-K PCB (single layer, single-sided with copper limited to solder pads)165oC/W678923451011121314151617181920212223242520406080100120140160180M a x i m u m A l l o w a b l e V C C (V )T=165oC;I =I Power Derating Curve V CC(min)V CC(max)100200300400500600700800900100011001200130014001500160017001800190020406080100120140160180Temperature (°C)P o w e r D i s s i p a t i o n ,P D (m W )Power Dissipation versus Ambient TemperatureCharacteristic DataFunctional DescriptionBipolar Device SwitchingThe devices of the A120X family provide highly sensitive switching for applications using magnetic fields of alternating polarities, such as ring magnets. There are three switching modes for bipolar devices, referred to as latch , unipolar switch , and negative switch . Mode is determined by the switchpoint charac-teristics of the individual device. The characteristic hysteresis, B HYS , of the device, is the difference in the relative magnetic strength and polarity of the switchpoints of the device. (Note that, in the following descriptions, a negative magnetic value indicates a north polarity field, and a positive magnetic value indicates a south polarity field. For a given value of magnetic strength, B X , the values –B X and B X indicate two fields of equal strength, but opposite polarity. B = 0 indicates the absence of a magnetic field.)Bipolar devices typically behave as latches. In this mode, magnetic fields of opposite polarity and equivalent strengths are needed to switch the output. When the magnetic fields are removed (B → 0) the device remains in the same state until a magnetic field of the opposite polarity and of sufficient strength causes it to switch. The hysteresis of latch mode behavior isshown in panel A of figure 1.In contrast to latching, when a device exhibits unipolar switch-ing, it only responds to a south magnetic field. The field must be of sufficient strength, > B OP , for the device to operate. When the field is reduced beyond the B RP level, the device switches back to the high state, as shown in panel B of figure 1. Devices exhibiting negative switch behavior operate in a similar but opposite manner. A north polarity field of sufficient strength, > B RP , (more north than B RP ) is required for operation, although the result is that V OUT switches high, as shown in panel C. WhenFigure 1. Bipolar Device Output Switching Modes. These behaviors can be exhibited when using a circuit such as that shown in panel D. Panel A displays the hysteresis when a device exhibits latch mode (note that the B HYS band incorporates B= 0), panel B shows unipolar switch behavior (the B HYS band is more positive than B = 0), and panel C shows negative switch behavior (the B HYS band is more negative than B = 0). Bipolar devices, such as the 120x family, can operate in any of the three modes.HYS V O U THYS HYSV OUT(SAT)CC(A)(B)(C)(D)the field is reduced beyond the B OP level, the device switches back to the low state.The typical output behavior of the A120x devices is latching. That is, switching to the low state when the magnetic field at the Hall sensor exceeds the operate point threshold, B OP . At this point, the output voltage is V OUT(SAT). When the magnetic field is reduced to below the release point threshold, B RP , the device output, V OUT , goes high. The values of the magnetic parameters are specified in the Magnetic Characteristics table, on page 3. Note that, as shown in figure 1, these switchpoints can lie in either north or south polarity ranges.The A120x family is designed to attain a small hysteresis, and thereby provide more sensitive switching. Although this means that true latching behavior cannot be guaranteed in all cases, proper switching can be ensured by use of both south and north magnetic fields, as in a ring magnet. The hysteresis of the A120x family allows clean switching of the output, even in the presence of external mechanical vibration and electrical noise.Bipolar devices adopt an indeterminate output state when pow-ered-on in the absence of a magnetic field or in a field that lies within the hysteresis band of the device.For more information on Bipolar switches, refer to Application Note 27705, Understanding Bipolar Hall Effect Sensors . CONTINUOUS-TIME BENEFITSContinuous-time devices, such as the A120x family, offer the fastest available power-on settling time and frequency response. Due to offsets generated during the IC packaging process, continuous-time devices typically require programming after packaging to tighten magnetic parameter distributions. In con-trast, chopper-stabilized switches employ an offset cancellation technique on the chip that eliminates these offsets without the need for after-packaging programming. The tradeoff is a longer settling time and reduced frequency response as a result of the chopper-stabilization offset cancellation algorithm.Figure 2. Continuous-Time Application, B < B RP .. This figure illustrates the use of a quick cycle for chopping V CC in order to conserve battery power. Position 1, power is applied to the device. Position 2, the output assumes the correct state at a time prior to the maximum Power-On Time, t PO(max). The case shown is where the correct output state is HIGH . Position 3, t PO(max) has elapsed. The device output is valid. Position 4, after the output is valid, a control unit reads the output. Position5, power is removed from the device.VV PO(max)The choice between continuous-time and chopper-stabilized designs is solely determined by the application. Battery manage-ment is an example where continuous-time is often required. In these applications, V CC is chopped with a very small duty cycle in order to conserve power (refer to figure 4). The duty cycleis controlled by the power-on time, t PO, of the device. Because continuous-time devices have the shorter power-on time, they are the clear choice for such applications.For more information on the chopper stabilization technique, refer to Technical Paper STP 97-10, Monolithic Magnetic Hall Sensor Using Dynamic Quadrature Offset Cancellation and Technical Paper STP 99-1, Chopper-Stabilized Amplifiers with a Track-and-Hold Signal Demodulator.ADDITIONAL APPLICATIONS INFORMATION Extensive applications information for Hall-effect sensors is available in:Hall-Effect IC Applications Guide, Application Note 27701 Hall-Effect Devices: Gluing, Potting, Encapsulating, Lead Welding and Lead Forming, Application Note 27703.1Soldering Methods for Allegro’s Products – SMT and Through-Hole, Application Note 26009All are provided in Allegro Electronic Data Book, AMS-702, and the Allegro Web site,/doc/407cd0b7c77da26925c5b0c1.html .Power Derating Power DeratingThe device must be operated below the maximum junction temperature of the device, T J(max). Under certain combinations of peak conditions, reliable operation may require derating sup-plied power or improving the heat dissipation properties of the application. This section presents a procedure for correlating factors affecting operating T J. (Thermal data is also available on the Allegro MicroSystems Web site.)The Package Thermal Resistance, RθJA, is a figure of merit sum-marizing the ability of the application and the device to dissipate heat from the junction (die), through all paths to the ambient air. Its primary component is the Effective Thermal Conductivity, K, of the printed circuit board, including adjacent devices and traces. Radiation from the die through the device case, RθJC, is relatively small component of RθJA. Ambient air temperature,T A, and air motion are significant external factors, damped by overmolding.The effect of varying power levels (Power Dissipation, P D), can be estimated. The following formulas represent the fundamental relationships used to estimate T J, at P D.P D = V IN× I IN (1)T = P D× RθJA(2)T J = T A + ?T (3)For example, given common conditions such as: T A= 25°C,V CC = 12 V, I CC = 4 mA, and RθJA = 140 °C/W, then:P D = V CC× I CC = 12 V × 4 mA = 48 mWT = P D× RθJA = 48 mW × 140 °C/W = 7°CT J = T A + ?T = 25°C + 7°C = 32°CA worst-case estimate, P D(max), represents the maximum allow-able power level (V CC(max), I CC(max)), without exceeding T J(max), at a selected RθJA and T A.Example: Reliability for V CC at T A =150°C, package UA, using minimum-K PCB.Observe the worst-case ratings for the device, specifically:RθJA =165°C/W, T J(max) =165°C, V CC(max) =24 V, andI CC(max) =7.5mA.Calculate the maximum allowable power level, P D(max). First, invert equation 3:T max = T J(max) – T A = 165°C–150°C = 15°CThis provides the allowable increase to T J resulting from internal power dissipation. Then, invert equation 2:P D(max) = ?T max ÷ RθJA = 15°C ÷ 165 °C/W = 91 mWFinally, invert equation 1 with respect to voltage:V CC(est) = P D(max) ÷ I CC(max) =91 mW ÷ 7.5 mA = 12.1 VThe result indicates that, at T A, the application and device can dissipate adequate amounts of heat at voltages ≤V CC(est). Compare V CC(est) to V CC(max). If V CC(est)≤ V CC(max), then reli-able operation between V CC(est) and V CC(max) requires enhanced RθJA. If V CC(est)≥ V CC(max), then operation between V CC(est) and V CC(max) is reliable under these conditions.Package LH, 3-Pin (SOT-23W)Package UA, 3-PinThe products described herein are manufactured under one or more of the following U.S. patents: 5,045,920; 5,264,783; 5,442,283; 5,389,889; 5,581,179; 5,517,112; 5,619,137; 5,621,319; 5,650,719; 5,686,894; 5,694,038; 5,729,130; 5,917,320; and other patents pending.Allegro MicroSystems, Inc. reserves the right to make, from time to time, such de p ar t ures from the detail spec i f i c a t ions as may be required to permit improvements in the per f or m ance, reliability, or manufactur-ability of its products. Before placing an order, the user is cautioned to verify that the information being relied upon is current.Allegro products are not authorized for use as critical components in life-support devices or sys t ems without express written approval.The in f or m a t ion in c lud e d herein is believed to be ac c u r ate and reliable. How e v e r, Allegro MicroSystems, Inc. assumes no re s pon s i b il i t y for its use; nor for any in f ringe m ent of patents or other rights of third parties which may result from its use.Copyright ? 2005, Allegro MicroSystems, Inc.。

Atmel改变命名规则的芯片型号对照表

Atmel改变命名规则的芯片型号对照表

A t m e l改变命名规则的芯片型号对照表乐享集团公司,写于2021年6月16日ATMLU对应ATMEL芯片:换代选型2011-04-25 23:57AT24C01BN-SH-B/T ATMEL ATMLU701 DIP AT24C01B-PU ATMELATMLU702 DIPATMEL ATMLU703 DIPAT24C02BN-SH-B/T ATMEL ATMLU704 DIP AT24C02B-PU ATMEL ATMLU705 DIPATMEL ATMLU706DIPAT24C04BN-SH-B ATMEL ATMLU707 DIP ATMELATMLU708 DIP ATMEL ATMLU709 DIP ATMEL ATMLU710 DIPATMEL ATMLU711 DIPATMEL ATMLU712 DIPATMEL ATMLU713 DIPATMEL ATMLU714 DIPATMELATMLU715 DIPATMEL ATMLU716 DIPAT24C16BN-SH-B ATMEL ATMLU717 DIPATMEL ATMLU718 DIPATMEL ATMLU719 DIPAT24C256BN-SH-T ATMEL ATMLU720 DIP AT24C256B-PU ATMEL ATMLU721 DIPAT24C256N-10SI18 ATMEL ATMLU722 DIP ATMEL ATMLU723 DIPATMEL ATMLU724 DIPAT24C32CN-SH-T ATMEL ATMLU725DIPATMEL ATMLU726 DIPAT24C512BN-SH25-B ATMEL ATMLU727 DIP AT24C512BN-SH-B ATMELATMLU728 DIPAT24C512B-PU25 ATMELATMLU729 DIPATMEL ATMLU730 DIPATMEL ATMLU731 DIPATMELATMLU732 DIPAT24C64CN-SH-B ATMELATMLU733 DIPAT24C64CN-SH-T ATMEL ATMLU734 DIPATMEL ATMLU735 DIPATMEL ATMLU736 DIPAT25DF041A-SH-B ATMEL ATMLU737DIPATMEL ATMLU738 DIPATMEL ATMLU739DIPAT26DF081A-SSU-SL965 ATMEL ATMLU740 DIP AT26DF081A-SU-SL965 ATMEL ATMLU741 DIP AT26DF161-SUATMEL ATMLU742DIPAT26DF321-SU ATMEL ATMLU743DIPAT27BV256-70JU ATMELATMLU744 DIPAT27C010-70PUATMEL ATMLU745 DIPAT27C040-70PU ATMEL ATMLU746DIPAT27C256R-70PU ATMEL ATMLU748DIP AT27C512R-70JU ATMELATMLU749 DIP AT28BV256-20TU ATMEL ATMLU750 DIP AT28C256-15PU ATMEL ATMLU751 DIP AT28C64B-15JU ATMEL ATMLU752 DIP AT28C64B-15PU ATMEL ATMLU801 DIP AT28C64B-15SUATMELATMLU802 DIPAT29C010A-70JU ATMEL ATMLU803 DIP AT29C020-90JU ATMELATMLU804 DIP AT29C020-90TU ATMEL ATMLU805 DIP AT29C040A-90JU ATMEL ATMLU806 DIP AT29C040A-90TU ATMEL ATMLU807DIP AT29LV020-10TUATMEL ATMLU808 DIP AT29LV040A-15JU ATMEL ATMLU809 DIP AT29LV512-12JUATMELATMLU810 DIP AT45DB021B-SU ATMEL ATMLU811DIP AT45DB041D-SU ATMEL ATMLU812 DIP AT45DB081D-SU ATMELATMLU813 DIP AT45DB161D-SU ATMEL ATMLU814 DIP AT45DB161D-TU ATMEL ATMLU815DIP AT45DB321D-SU ATMEL ATMLU816 DIP AT45DB321D-TU ATMEL ATMLU817 DIPAT47BV163A-70TU ATMEL ATMLU819 DIPAT49BV040B-JU ATMEL ATMLU820 DIPAT49BV322DT-70TU ATMEL ATMLU821 DIP AT49BV512-90TU ATMEL ATMLU822 DIPAT73C213 ATMEL ATMLU823 DIPAT76C112 ATMEL ATMLU824 DIPAT76C120H-MU1-JZ208 ATMEL ATMLU825 DIP AT80251G2D-SLSUM ATMEL ATMLU826 DIP AT80C32X2-3CSUM ATMEL ATMLU827 DIPAT80C32X2-RLTUM ATMEL ATMLU828 DIPAT80C32X2-SLSUM ATMEL ATMLU829 DIPAT83C24-TISIL ATMEL ATMLU830 DIPAT88SC0104C-SU ATMEL ATMLU831 DIPAT88SC153-10SU ATMEL ATMLU832 DIPAT89C2051-12PU ATMEL ATMLU833 DIPAT89C2051-12SU ATMEL ATMLU834 DIPAT89C2051-24PU ATMEL ATMLU835 DIPAT89C2051-24SU ATMEL ATMLU836 DIPAT89C4051-24PU ATMEL ATMLU837 DIPAT89C4051-24SU ATMEL ATMLU838 DIPAT89C5131A-S3SUM ATMEL ATMLU839 DIP AT89C51AC2-RLTUM ATMEL ATMLU840 DIPAT89C51CC01CA-RLTUM ATMEL ATMLU841 DIP AT89C51CC01CA-SLSUM ATMEL ATMLU842 DIP AT89C51CC01UA-RLTUM ATMEL ATMLU843 DIP AT89C51CC01UA-SLSUM ATMEL ATMLU844 DIP AT89C51ED2-RDTUM ATMEL ATMLU845 DIP AT89C51ED2-RLTUM ATMEL ATMLU846 DIP AT89C51ED2-SLSUM ATMEL ATMLU847 DIP AT89C51ED2-SMSUM ATMEL ATMLU848 DIP AT89C51RB2-3CSUM ATMEL ATMLU849 DIP AT89C51RB2-RLTUM ATMEL ATMLU850 DIP AT89C51RB2-SLSUM ATMEL ATMLU851 DIP AT89C51RC2-3CSUM ATMEL ATMLU852 DIP AT89C51RC-24JU ATMEL ATMLU901 DIPAT89C51RC-24PU ATMEL ATMLU902 DIPAT89C51RC2-RLTUM ATMEL ATMLU903 DIP AT89C51RC2-SLSUM ATMEL ATMLU904 DIP AT89C51RD2-RLTUM ATMEL ATMLU905 DIP AT89C51RD2-SLRUM ATMEL ATMLU906 DIP AT89C51RD2-SLSUM ATMEL ATMLU907 DIP AT89C51-24PC ATMEL ATMLU908 DIPAT89C51-24PI ATMEL ATMLU909 DIPAT89C52-24JI ATMEL ATMLU910 DIPAT89C52-24PI ATMEL ATMLH701 SOPAT89C55WD-24AU ATMEL ATMLH702 SOP AT89C55WD-24JU ATMEL ATMLH703 SOP AT89C55WD-24PU ATMEL ATMLH704 SOP AT89LS52-16JU ATMEL ATMLH705 SOPAT89LS52-16PU ATMEL ATMLH706 SOPAT89LV51-12AI ATMEL ATMLH707 SOPAT89S51-24AU ATMEL ATMLH708 SOPAT89S51-24PU ATMEL ATMLH709 SOPAT89S52-24AU ATMEL ATMLH710 SOPAT89S52-24JU ATMEL ATMLH711 SOPAT89S52-24PU ATMEL ATMLH712 SOPAT89S54-3CSIM ATMEL ATMLH713 SOPAT89S54-SLSIM ATMEL ATMLH714 SOPAT89S58-SLSIM ATMEL ATMLH715 SOPAT89S8253-24AU ATMEL ATMLH716 SOP AT89S8253-24JU ATMEL ATMLH717 SOP AT89S8253-24PU ATMEL ATMLH718 SOP AT90CAN128-16AU ATMEL ATMLH719 SOP AT90CAN32-16AU ATMEL ATMLH720 SOP AT91M40800-33AU ATMEL ATMLH721 SOP AT91M55800A-33AU ATMEL ATMLH722 SOP AT91RM9200-CJ-002 ATMEL ATMLH723 SOP AT91RM9200-QU-002 ATMEL ATMLH724 SOPAT91SAM7S256-AU-001 ATMEL ATMLH725 SOP AT91SAM7S321-AU ATMEL ATMLH726 SOPAT91SAM7S32-AU-001 ATMEL ATMLH727 SOP AT91SAM7S64-AU-001 ATMEL ATMLH728 SOP AT91SAM7SE32-AU ATMEL ATMLH729 SOPAT91SAM7X256-AU ATMEL ATMLH730 SOPAT91SAM9260-CJ ATMEL ATMLH731 SOPAT91SAM9260-EK ATMEL ATMLH732 SOPAT91SAM9261-EK ATMEL ATMLH733 SOPAT91SAM9261S-CU ATMEL ATMLH734 SOPAT91SAM9263-CU ATMEL ATMLH735 SOPAT91SAM7X-EK ATMEL ATMLH736 SOPAT91SAM-ICE ATMEL ATMLH737 SOPATMEL ATMLH738 SOPATMEL ATMLH739 SOPAT93C46DN-SH-B ATMEL ATMLH740 SOPAT93C46D-TH-T ATMEL ATMLH741 SOPATMEL ATMLH742 SOPATMEL ATMLH743 SOPAT93C66A-10PU27 ATMEL ATMLH744 SOPATMEL ATMLH745 SOPATMEL ATMLH746 SOPATAVRDRAGON ATMEL ATMLH747 SOPATAVRISP2 ATMEL ATMLH748 SOPATF1502AS-15JC44 ATMEL ATMLH749 SOP ATF1508AS-15AC100 ATMEL ATMLH750 SOP ATF1508AS-15JC84 ATMEL ATMLH751 SOP ATF16V8B-15JU ATMEL ATMLH752 SOP ATF16V8B-15PC ATMEL ATMLH801 SOP ATF16V8B-15PU ATMEL ATMLH802 SOP ATF16V8BQL-15JC ATMEL ATMLH803 SOP ATF20V8B-15JC ATMEL ATMLH804 SOP ATJTAGICE2 ATMEL ATMLH805 SOP ATMEGA1280V-8AU ATMEL ATMLH806 SOP ATMEGA128-16AU ATMEL ATMLH807 SOP ATMEGA128L-8AU ATMEL ATMLH808 SOP ATMEGA16-16AU ATMEL ATMLH809 SOP ATMEGA16-16PU ATMEL ATMLH810 SOP ATMEGA162-16PU ATMEL ATMLH811 SOP ATMEGA162V-8AU ATMEL ATMLH812 SOP ATMEGA168-20AU ATMEL ATMLH813 SOP ATMEGA168-20MU ATMEL ATMLH814 SOP ATMEGA168-20PU ATMEL ATMLH815 SOP ATMEGA168V-10AU ATMEL ATMLH816 SOP ATMEGA169P-16AU ATMEL ATMLH817 SOP ATMEGA169PV-8AU ATMEL ATMLH818 SOPATMEGA169V-8AU ATMEL ATMLH819 SOP ATMEGA16L-8AU ATMEL ATMLH820 SOP ATMEGA16L-8PU ATMEL ATMLH821 SOP ATMEGA32-16AU ATMEL ATMLH822 SOP ATMEGA32-16PU ATMEL ATMLH823 SOP ATMEGA325V-8MU ATMEL ATMLH824 SOP ATMEGA32L-8AU ATMEL ATMLH825 SOP ATMEGA32L-8PU ATMEL ATMLH826 SOP ATMEGA48-20AU ATMEL ATMLH827 SOP ATMEGA48V-10AU ATMEL ATMLH828 SOP ATMEGA48V-10PU ATMEL ATMLH829 SOP ATMEGA48V-10MU ATMEL ATMLH830 SOP ATMEGA640V-8AU ATMEL ATMLH831 SOP ATMEGA64-16AU ATMEL ATMLH832 SOP ATMEGA64L-8AU ATMEL ATMLH833 SOP ATMEGA8-16AU ATMEL ATMLH834 SOP ATMEGA8-16PU ATMEL ATMLH835 SOP ATMEGA8515-16AU ATMEL ATMLH836 SOP ATMEGA8515-16JU ATMEL ATMLH837 SOP ATMEGA8515-16PU ATMEL ATMLH838 SOP ATMEGA8515L-8JU ATMEL ATMLH839 SOP ATMEGA8535-16JI ATMEL ATMLH840 SOP ATMEGA8535-16JU ATMEL ATMLH841 SOPATMEGA8535-16PU ATMEL ATMLH842 SOP ATMEGA8535L-8AU ATMEL ATMLH843 SOP ATMEGA8535L-8JU ATMEL ATMLH844 SOP ATMEGA8535L-8PU ATMEL ATMLH845 SOP ATMEGA88-20AU ATMEL ATMLH846 SOP ATMEGA88-20MU ATMEL ATMLH847 SOP ATMEGA88-20PU ATMEL ATMLH848 SOP ATMEGA88V-10AU ATMEL ATMLH849 SOP ATMEGA88V-10MU ATMEL ATMLH850 SOP ATMEGA88V-10PU ATMEL ATMLH851 SOP ATMEGA8L-8AU ATMEL ATMLH852 SOP ATMEGA8L-8PU ATMEL ATMLH901 SOP ATTINY11L-2SU ATMEL ATMLH902 SOP ATTINY13-20SU ATMEL ATMLH903 SOP ATTINY13V-10PU ATMEL ATMLH904 SOP ATTINY13V-10SSU ATMEL ATMLH905 SOP ATTINY13V-10SU ATMEL ATMLH906 SOP ATTINY15L-1PU ATMEL ATMLH907 SOP ATTINY2313-20PU ATMEL ATMLH908 SOP ATTINY2313-20SU ATMEL ATMLH909 SOP ATTINY2313V-10PU ATMEL ATMLH910 SOP AT24C01BN-SH-B/T ATMEL ATMLU701 DIP AT24C01B-PI ATMEL ATMLU702 DIPAT24C02BN-SH-B/T ATMEL ATMLU704 DIP AT24C02B-PI ATMEL ATMLU705 DIPATMEL ATMLU706 DIPAT24C04BN-SH-B ATMEL ATMLU707 DIP ATMEL ATMLU708 DIPATMEL ATMLU709 DIPATMEL ATMLU710 DIPATMEL ATMLU711 DIPATMEL ATMLU712 DIPATMEL ATMLU713 DIPATMEL ATMLU714 DIPATMEL ATMLU715 DIPATMEL ATMLU716 DIPAT24C16BN-SH-B ATMEL ATMLU717 DIP ATMEL ATMLU718 DIPATMEL ATMLU719 DIPAT24C256BN-SH-T ATMEL ATMLU720 DIP AT24C256B-PI ATMEL ATMLU721 DIPAT24C256N-10SI18 ATMEL ATMLU722 DIP ATMEL ATMLU723 DIPATMEL ATMLU724 DIPAT24C32CN-SH-T ATMEL ATMLU725 DIPAT24C512BN-SH25-B ATMEL ATMLU727 DIP AT24C512BN-SH-B ATMEL ATMLU728 DIPAT24C512B-PI25 ATMEL ATMLU729 DIPATMEL ATMLU730 DIPATMEL ATMLU731 DIPATMEL ATMLU732 DIPAT24C64CN-SH-B ATMEL ATMLU733 DIPAT24C64CN-SH-T ATMEL ATMLU734 DIPATMEL ATMLU735 DIPATMEL ATMLU736 DIPAT25DF041A-SH-B ATMEL ATMLU737 DIPATMEL ATMLU738 DIPATMEL ATMLU739 DIPAT26DF081A-SSI-SL965 ATMEL ATMLU740 DIP AT26DF081A-SI-SL965 ATMEL ATMLU741 DIP AT26DF161-SI ATMEL ATMLU742 DIPAT26DF321-SI ATMEL ATMLU743 DIPAT27BV256-70JI ATMEL ATMLU744 DIPAT27C010-70PI ATMEL ATMLU745 DIPAT27C040-70PI ATMEL ATMLU746 DIPAT27C256R-70JI ATMEL ATMLU747 DIPAT27C256R-70PI ATMEL ATMLU748 DIPAT28BV256-20TI ATMEL ATMLU750 DIP AT28C256-15PI ATMEL ATMLU751 DIP AT28C64B-15JI ATMEL ATMLU752 DIP AT28C64B-15PI ATMEL ATMLU801 DIP AT28C64B-15SI ATMEL ATMLU802 DIP AT29C010A-70JI ATMEL ATMLU803 DIP AT29C020-90JI ATMEL ATMLU804 DIP AT29C020-90TI ATMEL ATMLU805 DIP AT29C040A-90JI ATMEL ATMLU806 DIP AT29C040A-90TI ATMEL ATMLU807 DIP AT29LV020-10TI ATMEL ATMLU808 DIP AT29LV040A-15JI ATMEL ATMLU809 DIP AT29LV512-12JI ATMEL ATMLU810 DIP AT45DB021B-SI ATMEL ATMLU811 DIP AT45DB041D-SI ATMEL ATMLU812 DIP AT45DB081D-SI ATMEL ATMLU813 DIP AT45DB161D-SI ATMEL ATMLU814 DIP AT45DB161D-TI ATMEL ATMLU815 DIP AT45DB321D-SI ATMEL ATMLU816 DIP AT45DB321D-TI ATMEL ATMLU817 DIP AT45DB642D-TI ATMEL ATMLU818 DIP AT47BV163A-70TI ATMEL ATMLU819 DIPAT49BV322DT-70TI ATMEL ATMLU821 DIP AT49BV512-90TI ATMEL ATMLU822 DIPAT73C213 ATMEL ATMLU823 DIPAT76C112 ATMEL ATMLU824 DIPAT76C120H-MI1-JZ208 ATMEL ATMLU825 DIP AT80251G2D-SLSIM ATMEL ATMLU826 DIP AT80C32X2-3CSIM ATMEL ATMLU827 DIPAT80C32X2-RLTIM ATMEL ATMLU828 DIPAT80C32X2-SLSIM ATMEL ATMLU829 DIPAT83C24-TISIL ATMEL ATMLU830 DIPAT88SC0104C-SI ATMEL ATMLU831 DIPAT88SC153-10SI ATMEL ATMLU832 DIPAT89C2051-12PI ATMEL ATMLU833 DIPAT89C2051-12SI ATMEL ATMLU834 DIPAT89C2051-24PI ATMEL ATMLU835 DIPAT89C2051-24SI ATMEL ATMLU836 DIPAT89C4051-24PI ATMEL ATMLU837 DIPAT89C4051-24SI ATMEL ATMLU838 DIPAT89C5131A-S3SIM ATMEL ATMLU839 DIP AT89C51AC2-RLTIM ATMEL ATMLU840 DIP AT89C51CC01CA-RLTIM ATMEL ATMLU841 DIP AT89C51CC01CA-SLSIM ATMEL ATMLU842 DIPAT89C51CC01IA-RLTIM ATMEL ATMLU843 DIP AT89C51CC01IA-SLSIM ATMEL ATMLU844 DIP AT89C51ED2-RDTIM ATMEL ATMLU845 DIP AT89C51ED2-RLTIM ATMEL ATMLU846 DIP AT89C51ED2-SLSIM ATMEL ATMLU847 DIP AT89C51ED2-SMSIM ATMEL ATMLU848 DIP AT89C51RB2-3CSIM ATMEL ATMLU849 DIP AT89C51RB2-RLTIM ATMEL ATMLU850 DIP AT89C51RB2-SLSIM ATMEL ATMLU851 DIP AT89C51RC2-3CSIM ATMEL ATMLU852 DIP AT89C51RC-24JI ATMEL ATMLU901 DIPAT89C51RC-24PI ATMEL ATMLU902 DIPAT89C51RC2-RLTIM ATMEL ATMLU903 DIP AT89C51RC2-SLSIM ATMEL ATMLU904 DIP AT89C51RD2-RLTIM ATMEL ATMLU905 DIP AT89C51RD2-SLRIM ATMEL ATMLU906 DIP AT89C51RD2-SLSIM ATMEL ATMLU907 DIP AT89C51-24PC ATMEL ATMLU908 DIPAT89C51-24PI ATMEL ATMLU909 DIPAT89C52-24JI ATMEL ATMLU910 DIPAT89C52-24PI ATMEL ATMLH701 SOPAT89C55WD-24AI ATMEL ATMLH702 SOPAT89C55WD-24JI ATMEL ATMLH703 SOPAT89C55WD-24PI ATMEL ATMLH704 SOPAT89LS52-16JI ATMEL ATMLH705 SOPAT89LS52-16PI ATMEL ATMLH706 SOPAT89LV51-12AI ATMEL ATMLH707 SOPAT89S51-24AI ATMEL ATMLH708 SOPAT89S51-24PI ATMEL ATMLH709 SOPAT89S52-24AI ATMEL ATMLH710 SOPAT89S52-24JI ATMEL ATMLH711 SOPAT89S52-24PI ATMEL ATMLH712 SOPAT89S54-3CSIM ATMEL ATMLH713 SOPAT89S54-SLSIM ATMEL ATMLH714 SOPAT89S58-SLSIM ATMEL ATMLH715 SOPAT89S8253-24AI ATMEL ATMLH716 SOPAT89S8253-24JI ATMEL ATMLH717 SOPAT89S8253-24PI ATMEL ATMLH718 SOPAT90CAN128-16AI ATMEL ATMLH719 SOPAT90CAN32-16AI ATMEL ATMLH720 SOPAT91M40800-33AI ATMEL ATMLH721 SOPAT91M55800A-33AI ATMEL ATMLH722 SOP AT91RM9200-CJ-002 ATMEL ATMLH723 SOP AT91RM9200-QI-002 ATMEL ATMLH724 SOP AT91SAM7S256-AI-001 ATMEL ATMLH725 SOP AT91SAM7S321-AI ATMEL ATMLH726 SOPAT91SAM7S64-AI-001 ATMEL ATMLH728 SOP AT91SAM7SE32-AI ATMEL ATMLH729 SOP AT91SAM7X256-AI ATMEL ATMLH730 SOP AT91SAM9260-CJ ATMEL ATMLH731 SOPAT91SAM9260-EK ATMEL ATMLH732 SOPAT91SAM9261-EK ATMEL ATMLH733 SOPAT91SAM9261S-CI ATMEL ATMLH734 SOP AT91SAM9263-CI ATMEL ATMLH735 SOPAT91SAM7X-EK ATMEL ATMLH736 SOPAT91SAM-ICE ATMEL ATMLH737 SOPATMEL ATMLH738 SOPATMEL ATMLH739 SOPAT93C46DN-SH-B ATMEL ATMLH740 SOPAT93C46D-TH-T ATMEL ATMLH741 SOPATMEL ATMLH742 SOPATMEL ATMLH743 SOPAT93C66A-10PI27 ATMEL ATMLH744 SOPATMEL ATMLH745 SOPATMEL ATMLH746 SOPATAVRDRAGON ATMEL ATMLH747 SOP ATAVRISP2 ATMEL ATMLH748 SOPATF1502AS-15JC44 ATMEL ATMLH749 SOPATF1508AS-15JC84 ATMEL ATMLH751 SOP ATF16V8B-15JI ATMEL ATMLH752 SOP ATF16V8B-15PC ATMEL ATMLH801 SOP ATF16V8B-15PI ATMEL ATMLH802 SOP ATF16V8BQL-15JC ATMEL ATMLH803 SOP ATF20V8B-15JC ATMEL ATMLH804 SOP AT JTAGICE MKII ATMEL ATMLH805 SOP ATMEGA1280V-8AI ATMEL ATMLH806 SOP ATMEGA128-16AI ATMEL ATMLH807 SOP ATMEGA128L-8AI ATMEL ATMLH808 SOP ATMEGA16-16AI ATMEL ATMLH809 SOP ATMEGA16-16PI ATMEL ATMLH810 SOP ATMEGA162-16PI ATMEL ATMLH811 SOP ATMEGA162V-8AI ATMEL ATMLH812 SOP ATMEGA168-20AI ATMEL ATMLH813 SOP ATMEGA168-20MI ATMEL ATMLH814 SOP ATMEGA168-20PI ATMEL ATMLH815 SOP ATMEGA168V-10AI ATMEL ATMLH816 SOP ATMEGA169P-16AI ATMEL ATMLH817 SOP ATMEGA169PV-8AI ATMEL ATMLH818 SOP ATMEGA169V-8AI ATMEL ATMLH819 SOP ATMEGA16L-8AI ATMEL ATMLH820 SOPATMEGA16L-8PI ATMEL ATMLH821 SOP ATMEGA32-16AI ATMEL ATMLH822 SOP ATMEGA32-16PI ATMEL ATMLH823 SOP ATMEGA325V-8MI ATMEL ATMLH824 SOP ATMEGA32L-8AI ATMEL ATMLH825 SOP ATMEGA32L-8PI ATMEL ATMLH826 SOP ATMEGA48-20AI ATMEL ATMLH827 SOP ATMEGA48V-10AI ATMEL ATMLH828 SOP ATMEGA48V-10PI ATMEL ATMLH829 SOP ATMEGA48V-10MI ATMEL ATMLH830 SOP ATMEGA640V-8AI ATMEL ATMLH831 SOP ATMEGA64-16AI ATMEL ATMLH832 SOP ATMEGA64L-8AI ATMEL ATMLH833 SOP ATMEGA8-16AI ATMEL ATMLH834 SOP ATMEGA8-16PI ATMEL ATMLH835 SOP ATMEGA8515-16AI ATMEL ATMLH836 SOP ATMEGA8515-16JI ATMEL ATMLH837 SOP ATMEGA8515-16PI ATMEL ATMLH838 SOP ATMEGA8515L-8JI ATMEL ATMLH839 SOP ATMEGA8535-16JI ATMEL ATMLH840 SOP ATMEGA8535-16JI ATMEL ATMLH841 SOP ATMEGA8535-16PI ATMEL ATMLH842 SOP ATMEGA8535L-8AI ATMEL ATMLH843 SOPATMEGA8535L-8JI ATMEL ATMLH844 SOP ATMEGA8535L-8PI ATMEL ATMLH845 SOP ATMEGA88-20AI ATMEL ATMLH846 SOP ATMEGA88-20MI ATMEL ATMLH847 SOP ATMEGA88-20PI ATMEL ATMLH848 SOP ATMEGA88V-10AI ATMEL ATMLH849 SOP ATMEGA88V-10MI ATMEL ATMLH850 SOP ATMEGA88V-10PI ATMEL ATMLH851 SOP ATMEGA8L-8AI ATMEL ATMLH852 SOP ATMEGA8L-8PI ATMEL ATMLH901 SOP ATTINY11L-2SI ATMEL ATMLH902 SOP ATTINY13-20SI ATMEL ATMLH903 SOP ATTINY13V-10PI ATMEL ATMLH904 SOP ATTINY13V-10SSI ATMEL ATMLH905 SOP ATTINY13V-10SI ATMEL ATMLH906 SOP ATTINY15L-1PI ATMEL ATMLH907 SOP ATTINY2313-20PI ATMEL ATMLH908 SOP ATTINY2313-20SI ATMEL ATMLH909 SOP ATTINY2313V-10PI ATMEL ATMLH910 SOP AT17LV010-10PI 1000 ATMEL0007AT17LV256-10JI 1000 ATMEL0008AT17LV256-10PC 1000 ATMEL0009AT17LV256-10PI 1000 ATMEL0010AT17LV512-10PC 1000 ATMEL0011 AT17LV512-10PC 1000 ATMEL0012 AT17LV512A-10PI 1000 ATMEL0013 AT17LV65-10PI 1000 ATMEL0014 AT22V10-15DC 1000 ATMEL0015 AT22V10-15JC 1000 ATMEL0016 AT22V10-15KC 1000 ATMEL0017 AT22V10-20DC 1000 ATMEL0018 AT22V10-20JC 1000 ATMEL0019 AT22V10-25DC 1000 ATMEL0020 AT22V10-25JC 1000 ATMEL0021 AT22V10-25JI 1000 ATMEL0022 AT22V10-25KC 1000 ATMEL0023 AT22V10-35DC 1000 ATMEL0024 AT22V10-35JC 1000 ATMEL0025 AT22V10-35KC 1000 ATMEL0026 AT22V10-35PC 1000 ATMEL0027 AT22V10L-20PC 1000 ATMEL0028 AT22V10L-25DC 1000 ATMEL0029 AT22V10L-25JC 1000 ATMEL0030 AT22V10L-25JI 1000 ATMEL0031 AT22V10L-35DC 1000 ATMEL0032 AT24C01-10PC 1000 ATMEL0033AT24C01-10PI 1000 ATMEL00351000 ATMEL0036AT24C01-10SC 1000 ATMEL0037 AT24C01A-10PC 8000 ATMEL0038 AT24C01A-10SC 8000 ATMEL0039 8000 ATMEL00408000 ATMEL06018000 ATMEL0041AT24C01BN-SH-B 8000 ATMEL0042 AT24C01BN-SH-T 8000 ATMEL0043 AT24C01B-PU 8000 ATMEL0602AT24C01B-TH-B 8000 ATMEL0044 AT24C01B-TH-T 8000 ATMEL0045 AT24C01BTSU-T 8000 ATMEL0603 AT24C01BU3-UU-T 8000 ATMEL0604 AT24C01B-W-11 8000 ATMEL0046 AT24C01BY6-YH-T 8000 ATMEL0047 8000 ATMEL0048AT24C02-10PC 8000 ATMEL00498000 ATMEL00508000 ATMEL00518000 ATMEL00528000 ATMEL01018000 ATMEL01028000 ATMEL01038000 ATMEL06068000 ATMEL01048000 ATMEL06078000 ATMEL01058000 ATMEL01068000 ATMEL01078000 ATMEL01088000 ATMEL01098000 ATMEL06088000 ATMEL01108000 ATMEL01118000 ATMEL0112 8000 ATMEL0113 8000 ATMEL01148000 ATMEL06098000 ATMEL06108000 ATMEL01158000 ATMEL01168000 ATMEL01178000 ATMEL06118000 ATMEL06138000 ATMEL01188000 ATMEL01198000 ATMEL01208000 ATMEL06148000 ATMEL06158000 ATMEL01218000 ATMEL01228000 ATMEL01238000 ATMEL06168000 ATMEL06178000 ATMEL01248000 ATMEL0125AT24C16-10PI 8000 ATMEL0126 8000 ATMEL0127AT24C164-10PC 8000 ATMEL0128 8000 ATMEL0129AT24C164-10PI 8000 ATMEL0130 AT24C164-10SC 8000 ATMEL0131 8000 ATMEL01328000 ATMEL01338000 ATMEL01348000 ATMEL01368000 ATMEL01378000 ATMEL0138AT24C16N-SC 8000 ATMEL0139 8000 ATMEL01408000 ATMEL01418000 ATMEL01428000 ATMEL01438000 ATMEL01448000 ATMEL01458000 ATMEL0146AT24C256-10PC 8000 ATMEL0147 8000 ATMEL01488000 ATMEL01498000 ATMEL01508000 ATMEL01518000 ATMEL01528000 ATMEL0201AT24C32-10PC 8000 ATMEL0202 AT24C32- 8000 ATMEL02038000 ATMEL02048000 ATMEL02058000 ATMEL0207AT24C32N-SC 8000 ATMEL0208AT24C32W-10SI 8000 ATMEL02098000 ATMEL02108000 ATMEL06188000 ATMEL02118000 ATMEL02128000 ATMEL02138000 ATMEL02148000 ATMEL06198000 ATMEL02158000 ATMEL02168000 ATMEL02178000 ATMEL02188000 ATMEL02198000 ATMEL06208000 ATMEL02208000 ATMEL0221AT24C64-SC 8000 ATMEL0222AT24RF08CN 1000 ATMEL0223。

Almel ATtiny13 微 控制器 说明书

Almel ATtiny13 微 控制器 说明书

产品特性•高性能、低功耗的 8位AVR®微处理器•高级RISC结构–120条指令 – 大多数指令执行时间为单个时钟周期–32 个8位通用工作寄存器–全静态工作–工作于20 MHz时性能高达20 MIPS•非易失性程序和数据存储器–1K字节的系统内可编程Flash擦写寿命: 10,000次–64字节的系统内可编程EEPROM擦写寿命: 100,000次–64字节的片内SRAM–可以对锁定位进行编程以及实现EEPROM数据的加密•外设特点–一个具有独立预分频器的8位定时器/计数器及两条PWM通道–含有片内参考电压的4路10位ADC控制器–具有独立片内振荡器的可编程看门狗定时器–片内模拟比较器•特殊的处理器特点–片内调试系统–通过SPI端口在系统内可编程–片内/片外中断源–低功耗空闲模式、噪声抑制模式、省电模式–增强型上电复位–可编程的掉电检测–片内标定振荡器•I/O和封装–8引脚PDIP/SOIC: 6可编程 I/O线•工作电压:–ATtiny13V:1.8 - 5.5V–ATtiny13:2.7 - 5.5V•速度等级–ATtiny13V: 0 - 4 MHz @ 1.8 - 5.5V, 0 - 10 MHz @ 2.7 - 5.5V–ATtiny13: 0 - 10 MHz @ 2.7 - 5.5V, 0 - 20 MHz @ 4.5 - 5.5V•工业级温度范围•低功耗–正常模式:1 MHz, 1.8V: 240µA–掉电模式:< 0.1µA at 1.8V引脚配置Figure 1. ATtiny13芯片引脚2ATtiny132535D–AVR–04/04综述ATtiny13是基于增强的AVR RISC 结构的低功耗8位CMOS 微控制器。

由于其先进的指令集以及单时钟周期指令执行时间,ATtiny13的数据吞吐率高达1MIPS /MHz ,从而可以缓减系统在功耗和处理速度之间的矛盾。

Atmel 改变命名规则地芯片型号对照表

Atmel 改变命名规则地芯片型号对照表

ATMLU对应ATMEL芯片:换代选型2011-04-25 23:57AT24C01BN-SH-B/T ATMEL ATMLU701 DIP AT24C01B-PU ATMEL ATMLU702 DIPAT24C02B-10PU-1.8 ATMEL ATMLU703 DIPAT24C02BN-SH-B/T ATMEL ATMLU704 DIP AT24C02B-PU ATMEL ATMLU705 DIPAT24C04-10PU-2.7 ATMEL ATMLU706 DIP AT24C04BN-SH-B ATMEL ATMLU707 DI PAT24C04N-10SU-2.7 ATMEL ATMLU708 DIPAT24C08A-10PU-2.7 ATMEL ATMLU709 DIPAT24C08A-10TU-2.7 ATMEL ATMLU710 DIPAT24C08AN-10SU-2.7 ATMEL ATMLU711 DIPAT24C128-10PU-2.7 ATMEL ATMLU712 DIPAT24C128N-10SU-2.7-SL383 ATMEL ATMLU713 DIPAT24C16A-10PU-2.7 ATMEL ATMLU714 DIPAT24C16A-10TI-1.8 ATMEL ATMLU715 DIP AT24C16AN-10SU-2.7 ATMEL ATMLU716 DIPAT24C16BN-SH-B ATMEL ATMLU717 DIP AT24C256B-10PU-1.8 ATMEL ATMLU718 DIPAT24C256BN-10SU-1.8 ATMEL ATMLU719DIPAT24C256BN-SH-T ATMEL ATMLU720 DIPAT24C256B-PU ATMELATMLU721 DIPAT24C256N-10SI18 ATMEL ATMLU722 DIPAT24C32A-10PU-2.7 ATMEL ATMLU723 DIPAT24C32AN-10SU-2.7 ATMEL ATMLU724 DIPAT24C32CN-SH-T ATMEL ATMLU72 5 DIPAT24C512-10PU-2.7 ATMEL ATMLU726 DIPAT24C512BN-SH25-B ATMEL ATMLU727 DIPAT24C512BN-SH-B ATMEL ATMLU728 DIP29 DIPAT24C512N-10SU-2.7 ATMEL ATMLU730 DIPAT24C64A-10PU-2.7 ATMEL ATMLU731 DIPAT24C64AN-10SU-2.7 ATMEL ATMLU732 DIPAT24C64CN-SH-B ATMEL ATMLU7 33 DIPAT24C64CN-SH-T ATMEL ATMLU73 4 DIPAT25128A-10PU-2.7 ATMEL ATMLU735 DIPAT25256AN-10SU-2.7 ATMEL ATMLU736 DIPAT25DF041A-SH-B ATMEL ATMLU737 DIPAT25F1024AN-10SU-2.7-SL383 ATMELATMLU738 DIPAT25F512AN-10SU-2.7-SL383 ATMELATMLU739 DIPAT26DF081A-SSU-SL965 ATMELATMLU740 DIPAT26DF081A-SU-SL965 ATME L ATMLU741 DIPAT26DF161-SUATMEL ATMLU742 DIPAT26DF321-SU ATMELATMLU743 DIPAT27BV256-70JU ATMEL ATMLU744 DIPAT27C010-70PU ATMEL ATMLU74 5 DIPAT27C040-70PU ATMEL ATMLU746DIPAT27C256R-70JU ATMEL ATMLU747DIPAT27C256R-70PU ATMEL ATMLU748DIPAT27C512R-70JU ATMEL ATMLU749 DIPAT28BV256-20TU ATMEL ATMLU750 DIPDIPAT28C64B-15JU ATMEL ATMLU752 DIPAT28C64B-15PU ATMEL ATMLU801 DIPAT28C64B-15SU ATMEL ATMLU802 DIPAT29C010A-70JU ATMEL ATMLU803 DIPAT29C020-90JU ATMEL ATMLU80 4 DIPAT29C020-90TU ATMEL ATMLU805 DIPAT29C040A-90JU ATMEL ATMLU806 DIPAT29C040A-90TU ATMEL ATMLU807DIPAT29LV020-10TU ATMEL ATMLU808 DIPAT29LV040A-15JU ATMEL ATMLU809 DIPAT29LV512-12JU ATMEL ATMLU810 DIPAT45DB021B-SU ATMEL ATMLU811 DIPAT45DB041D-SU ATMEL ATMLU812 DIPAT45DB081D-SU ATMEL ATMLU813DIPAT45DB161D-SU ATMEL ATMLU814 DIPAT45DB161D-TU ATMEL ATMLU815DIPAT45DB321D-SU ATMEL ATMLU816 DIPAT45DB321D-TU ATMEL ATMLU817 DIPAT45DB642D-TU ATMEL ATMLU818 DIPAT47BV163A-70TU ATMEL ATMLU819 DIPAT49BV040B-JU ATMEL ATMLU820 DIPAT49BV322DT-70TU ATMEL ATMLU821 DIPAT49BV512-90TU ATMEL ATMLU822 DIPAT73C213 ATMEL ATMLU823 DIPAT76C112 ATMEL ATMLU824 DIPAT76C120H-MU1-JZ208 ATMEL ATMLU825 DIPAT80251G2D-SLSUM ATMEL ATMLU826 DIP AT80C32X2-3CSUM ATMEL ATMLU827 DIPAT80C32X2-RLTUM ATMEL ATMLU828 DIPAT80C32X2-SLSUM ATMEL ATMLU829 DIPAT83C24-TISIL ATMEL ATMLU830 DIPAT88SC0104C-SU ATMEL ATMLU831 DIPAT88SC153-10SU ATMEL ATMLU832 DIPAT89C2051-12PU ATMEL ATMLU833 DIPAT89C2051-12SU ATMEL ATMLU834 DIPAT89C2051-24PU ATMEL ATMLU835 DIPAT89C2051-24SU ATMEL ATMLU836 DIPAT89C4051-24PU ATMEL ATMLU837 DIPAT89C4051-24SU ATMEL ATMLU838 DIPAT89C5131A-S3SUM ATMEL ATMLU839 DIP AT89C51AC2-RLTUM ATMEL ATMLU840 DIP AT89C51CC01CA-RLTUM ATMEL ATMLU841 DIP AT89C51CC01CA-SLSUM ATMEL ATMLU842 DIP AT89C51CC01UA-RLTUM ATMEL ATMLU843 DIP AT89C51CC01UA-SLSUM ATMEL ATMLU844 DIP AT89C51ED2-RDTUM ATMEL ATMLU845 DIP AT89C51ED2-RLTUM ATMEL ATMLU846 DIP AT89C51ED2-SLSUM ATMEL ATMLU847 DIP AT89C51ED2-SMSUM ATMEL ATMLU848 DIP AT89C51RB2-3CSUM ATMEL ATMLU849 DIP AT89C51RB2-RLTUM ATMEL ATMLU850 DIP AT89C51RB2-SLSUM ATMEL ATMLU851 DIP AT89C51RC2-3CSUM ATMEL ATMLU852 DIP AT89C51RC-24JU ATMEL ATMLU901 DIPAT89C51RC-24PU ATMEL ATMLU902 DIPAT89C51RC2-RLTUM ATMEL ATMLU903 DIP AT89C51RC2-SLSUM ATMEL ATMLU904 DIP AT89C51RD2-RLTUM ATMEL ATMLU905 DIP AT89C51RD2-SLRUM ATMEL ATMLU906 DIP AT89C51RD2-SLSUM ATMEL ATMLU907 DIP AT89C51-24PC ATMEL ATMLU908 DIPAT89C51-24PI ATMEL ATMLU909 DIPAT89C52-24JI ATMEL ATMLU910 DIPAT89C52-24PI ATMEL ATMLH701 SOPAT89C55WD-24AU ATMEL ATMLH702 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ATMEL0029AT22V10L-25JC 1000 ATMEL0030AT22V10L-25JI 1000 ATMEL0031AT22V10L-35DC 1000 ATMEL0032AT24C01-10PC 1000 ATMEL0033AT24C01-10PC2.5 1000 ATMEL0034 AT24C01-10PI 1000 ATMEL0035AT24C01-10PI2.5 1000 ATMEL0036 AT24C01-10SC 1000 ATMEL0037AT24C01A-10PC 8000 ATMEL0038AT24C01A-10SC 8000 ATMEL0039AT24C01A-10SI2.7 8000 ATMEL0040 AT24C01A-10SU-1.8V 8000 ATMEL0601 AT24C01A-10TI2.7 8000 ATMEL0041 AT24C01BN-SH-B 8000 ATMEL0042AT24C01BN-SH-T 8000 ATMEL0043AT24C01B-PU 8000 ATMEL0602AT24C01B-TH-B 8000 ATMEL0044AT24C01B-TH-T 8000 ATMEL0045AT24C01BTSU-T 8000 ATMEL0603AT24C01BU3-UU-T 8000 ATMEL0604 AT24C01B-W-11 8000 ATMEL0046AT24C01BY6-YH-T 8000 ATMEL0047 AT24C01N-10SC2.7 8000 ATMEL0048 AT24C02-10PC 8000 ATMEL0049AT24C02-10PC1.8 8000 ATMEL0050 AT24C02-10PI2.7 8000 ATMEL0051 AT24C02-10TI2.7 8000 ATMEL0052 AT24C02AN-10SU2.7 8000 ATMEL0605 AT24C02N-10SC1.8 8000 ATMEL0101 AT24C02N-10SI1.8 8000 ATMEL0102 AT24C04-10PI2.7 8000 ATMEL0103 AT24C04-10PU-2.7V 8000 ATMEL0606 AT24C04-10TI-2.7 8000 ATMEL0104 AT24C04-10TU-2.7 8000 ATMEL0607 AT24C04A-10TI-2.7 8000 ATMEL0105 AT24C04N-10SI1.8 8000 ATMEL0106 AT24C08-10PI2.7 8000 ATMEL0107 AT24C08A-10TI2.7 8000 ATMEL0108AT24C08AN-10SU2.7 8000 ATMEL0608 AT24C1024-10PI2.7 8000 ATMEL0110 AT24C1024W-10SI2.7 8000 ATMEL0111 AT24C11-10PI-1.8 8000 ATMEL0112 AT24C11-10PI-2.7 8000 ATMEL0113 AT24C11-10PI-2.7 8000 ATMEL0114 AT24C11-10PU-1.8 8000 ATMEL0609 AT24C11-10PU-2.7 8000 ATMEL0610 AT24C11-10TI-1.8 8000 ATMEL0115 AT24C11-10TI-2.7 8000 ATMEL0116 AT24C11-10TQ-2.7 8000 ATMEL0117 AT24C11-10TSU-1.8 8000 ATMEL0611 AT24C11-10TU-1.8 8000 ATMEL0612 AT24C11-10TU-2.7 8000 ATMEL0613 AT24C11N-10SI-1.8 8000 ATMEL0118 AT24C11N-10SI-2.7 8000 ATMEL0119 AT24C11N-10SQ-2.7 8000 ATMEL0120 AT24C11N-10SU-1.8 8000 ATMEL0614 AT24C11N-10SU-2.7 8000 ATMEL0615 AT24C11-W1.8-11 8000 ATMEL0121 AT24C11-W2.7-11 8000 ATMEL0122 AT24C128-10PI2.7 8000 ATMEL0123 AT24C128-10TU-1.8 8000 ATMEL0616 AT24C128-10TU-2.7 8000 ATMEL0617 AT24C128N-10SI1.8 8000 ATMEL0124 AT24C128N-10SI2.7 8000 ATMEL0125 AT24C16-10PI 8000 ATMEL0126AT24C16-10TC1.8 8000 ATMEL0127 AT24C164-10PC 8000 ATMEL0128AT24C164-10PC2.7 8000 ATMEL0129 AT24C164-10PI 8000 ATMEL0130AT24C164-10SC 8000 ATMEL0131AT24C164-10SI1.8 8000 ATMEL0132 AT24C164-10SI2.7 8000 ATMEL0133 AT24C164-10SI-2.7 8000 ATMEL0134 AT24C16A-10PI2.7 8000 ATMEL0135 AT24C16A-10TI1.8 8000 ATMEL0136 AT24C16AN-10SI1.8 8000 ATMEL0137 AT24C16AN-10SI2.7 8000 ATMEL0138 AT24C16N-SC 8000 ATMEL0139AT24C16N-SI2.7 8000 ATMEL0140AT24C21-10PC2.5 8000 ATMEL0141 AT24C21-10PC-2.5 8000 ATMEL0142AT24C21-10SI2.5 8000 ATMEL0144 AT24C21-SC2.5 8000 ATMEL0145AT24C256-10CI-2.7 8000 ATMEL0146 AT24C256-10PC 8000 ATMEL0147AT24C256-10PI2.7 8000 ATMEL0148 AT24C256-10TI2.7 8000 ATMEL0149 AT24C256N-10SI1.8 8000 ATMEL0150 AT24C256N-10SI2.7 8000 ATMEL0151 AT24C256T1-10TI2.7 8000 ATMEL0152 AT24C257N-10SC-2.7 8000 ATMEL0201 AT24C32-10PC 8000 ATMEL0202AT24C32-10PI2.7 8000 ATMEL0203 AT24C32A-10PI2.7 8000 ATMEL0204 AT24C32AN-10SI2.7 8000 ATMEL0205 AT24C32N-10SI1.8 8000 ATMEL0206 AT24C32N-10SI2.7 8000 ATMEL0207 AT24C32N-SC 8000 ATMEL0208AT24C32W-10SI 8000 ATMEL0209AT24C512-10PI2.7 8000 ATMEL0210 AT24C512-10PU-2.7V 8000 ATMEL0618 AT24C512-10TI2.7 8000 ATMEL0211 AT24C512-10UI-2.7 8000 ATMEL0212 AT24C512C1-10CI2.7 8000 ATMEL0213 AT24C512N-10SI2.7 8000 ATMEL0214 AT24C512N-10SU2.7 8000 ATMEL0619 AT24C512W-10SI2.7 8000 ATMEL0215 AT24C64-10PC2.7 8000 ATMEL0216 AT24C64-10TI2.7 8000 ATMEL0217 AT24C64A-10PI2.7 8000 ATMEL0218 AT24C64AN-10SI2.7 8000 ATMEL0219 AT24C64AN-10SU1.8 8000 ATMEL0620 AT24C64N-10SI1.8 8000 ATMEL0220 AT24C64N-10SI2.7 8000 ATMEL0221 AT24C64-SC 8000 ATMEL0222AT24RF08CN 1000 ATMEL0223。

ATTINY20-SSUR;中文规格书,Datasheet资料

ATTINY20-SSUR;中文规格书,Datasheet资料

Features•High Performance, Low Power AVR® 8-bit Microcontroller •Advanced RISC Architecture–112 Powerful Instructions – Most Single Clock Cycle Execution –16 x 8 General Purpose Working Registers–Fully Static Operation–Up to 12 MIPS Throughput at 12 MHz•Non-volatile Program and Data Memories–2K Bytes of In-System Programmable Flash Program Memory–128 Bytes Internal SRAM–Flash Write/Erase Cycles: 10,000–Data Retention: 20 Years at 85o C / 100 Years at 25o C•Peripheral Features–One 8-bit Timer/Counter with Two PWM Channels–One 16-bit Timer/Counter with Two PWM Channels–10-bit Analog to Digital Converter•8 Single-ended Channels–Programmable Watchdog Timer with Separate On-chip Oscillator–On-chip Analog Comparator–Master/Slave SPI Serial Interface–Slave TWI Serial Interface•Special Microcontroller Features–In-System Programmable–External and Internal Interrupt Sources–Low Power Idle, ADC Noise Reduction, Stand-by and Power-down Modes –Enhanced Power-on Reset Circuit–Internal Calibrated Oscillator•I/O and Packages–14-pin SOIC/TSSOP: 12 Programmable I/O Lines–15-ball UFBGA: 12 Programmable I/O Lines–20-pad VQFN: 12 Programmable I/O Lines•Operating Voltage:–1.8 – 5.5V•Programming Voltage:–5V•Speed Grade–0 – 4 MHz @ 1.8 – 5.5V–0 – 8 MHz @ 2.7 – 5.5V–0 – 12 MHz @ 4.5 – 5.5V•Industrial Temperature Range•Low Power Consumption–Active Mode:•200 µA at 1 MHz and 1.8V–Idle Mode:•25 µA at 1 MHz and 1.8V–Power-down Mode:•< 0.1 µA at 1.8V 8-bit Microcontrollerwith 2K BytesIn-System ProgrammableATtiny20Summary28235CS–AVR–06/12ATtiny201.Pin ConfigurationsFigure 1-1.Pinout of ATtiny201.1Pin Description1.1.1VCCSupply voltage.1.1.2GNDGround.Table 1-1.Pinout ATtiny20 in UFBGA.1234A PA5PA6PB2B PA4PA7PB1PB3C PA3PA2PA1PB0DPA0GNDGNDVCC1234567141312111098VCC(PCINT8/TPICLK/T0/CLKI) PB0(PCINT9/TPIDATA/MOSI/SDA/OC1A) PB1(PCINT11/RESET) PB3(PCINT10/INT0/MISO/OC1B/OC0A/CKOUT) PB2(PCINT7/SCL/SCK/T1/ICP1/OC0B/ADC7) PA7(PCINT6/SS/ADC6) PA6GNDPA0 (ADC0/PCINT0)PA1 (ADC1/AIN0/PCINT1)PA2 (ADC2/AIN1/PCINT2)PA3 (ADC3/PCINT3)PA4 (ADC4/PCINT4)PA5 (ADC5/PCINT5)SOIC/TSSOP12345VQFN15141312112019181716678910NOTEBottom pad should be soldered to ground.DNC: Do Not ConnectD N C D N C G N D V C C D N C PA7 (ADC7/OC0B/ICP1/T1/SCL/SCK/PCINT7)PB2 (CKOUT/OC0A/OC1B/MISO/INT0/PCINT10)PB3 (RESET/PCINT11)PB1 (OC1A/SDA/MOSI/TPIDATA/PCINT9)PB0 (CLKI/T0/TPICLK/PCINT8)D N C D N C D N C P A 5P A 6Pin 16: PA6 (ADC6/SS/PCINT6)Pin 17: PA5 (ADC5/PCINT5)(PCINT4/ADC4) PA4(PCINT3/ADC3) PA3(PCINT2/AIN1/ADC2) PA2(PCINT1/AIN0/ADC1) PA1(PCINT0/ADC0) PA038235CS–AVR–06/12ATtiny201.1.3RESETReset input. A low level on this pin for longer than the minimum pulse length will generate a reset, even if the clock is not running and provided the reset pin has not been disabled. The min-imum pulse length is given in Table 20-4 on page 175. Shorter pulses are not guaranteed to generate a reset.The reset pin can also be used as a (weak) I/O pin.1.1.4Port A (PA7:PA0)Port A is a 8-bit bi-directional I/O port with internal pull-up resistors (selected for each bit). The Port A output buffers have symmetrical drive characteristics with both high sink and source capability. As inputs, Port A pins that are externally pulled low will source current if the pull-up resistors are activated. The Port A pins are tri-stated when a reset condition becomes active,even if the clock is not running.Port A has alternate functions as analog inputs for the ADC, analog comparator and pin change interrupt as described in “Alternate Port Functions” on page 49.1.1.5Port B (PB3:PB0)Port B is a 4-bit bi-directional I/O port with internal pull-up resistors (selected for each bit). The Port B output buffers have symmetrical drive characteristics with both high sink and source capability except PB3 which has the RESET capability. To use pin PB3 as an I/O pin, instead of RESET pin, program (‘0’) RSTDISBL fuse. As inputs, Port B pins that are externally pulled low will source current if the pull-up resistors are activated. The Port B pins are tri-stated when a reset condition becomes active, even if the clock is not running.The port also serves the functions of various special features of the ATtiny20, as listed on page 39.48235CS–AVR–06/12ATtiny202.OverviewATtiny20 is a low-power CMOS 8-bit microcontroller based on the compact AVR enhanced RISC architecture. By executing powerful instructions in a single clock cycle, the ATtiny20achieves throughputs approaching 1 MIPS per MHz allowing the system designer to optimize power consumption versus processing speed.Figure 2-1.Block DiagramThe AVR core combines a rich instruction set with 16 general purpose working registers and system registers. All registers are directly connected to the Arithmetic Logic Unit (ALU), allowing two independent registers to be accessed in one single instruction executed in one clock cycle.58235CS–AVR–06/12ATtiny20The resulting architecture is compact and code efficient while achieving throughputs up to ten times faster than conventional CISC microcontrollers.ATtiny20 provides the following features:•2K bytes of in-system programmable Flash •128 bytes of SRAM•Twelve general purpose I/O lines •16 general purpose working registers•An 8-bit Timer/Counter with two PWM channels •A 16-bit Timer/Counter with two PWM channels •Internal and external interrupts •An eight-channel, 10-bit ADC•A programmable Watchdog Timer with internal oscillator •A slave two-wire interface•A master/slave serial peripheral interface •An internal calibrated oscillator•Four software selectable power saving modesThe device includes the following modes for saving power:•Idle mode: stops the CPU while allowing the timer/counter, ADC, analog comparator, SPI, TWI, and interrupt system to continue functioning•ADC Noise Reduction mode: minimizes switching noise during ADC conversions by stopping the CPU and all I/O modules except the ADC•Power-down mode: registers keep their contents and all chip functions are disabled until the next interrupt or hardware reset•Standby mode: the oscillator is running while the rest of the device is sleeping, allowing very fast start-up combined with low power consumption.The device is manufactured using Atmel’s high density non-volatile memory technology. The on-chip, in-system programmable Flash allows program memory to be re-programmed in-system by a conventional, non-volatile memory programmer.The ATtiny20 AVR is supported by a suite of program and system development tools, including macro assemblers and evaluation kits.68235CS–AVR–06/12ATtiny203.General Information3.1ResourcesA comprehensive set of drivers, application notes, data sheets and descriptions on development tools are available for download at /avr.3.2Code ExamplesThis documentation contains simple code examples that briefly show how to use various parts of the device. These code examples assume that the part specific header file is included before compilation. Be aware that not all C compiler vendors include bit definitions in the header files and interrupt handling in C is compiler dependent. Please confirm with the C compiler documen-tation for more details.3.3Capacitive Touch SensingAtmel QTouch Library provides a simple to use solution for touch sensitive interfaces on Atmel AVR microcontrollers. The QTouch Library includes support for QTouch ® and QMatrix ® acquisi-tion methods.Touch sensing is easily added to any application by linking the QTouch Library and using the Application Programming Interface (API) of the library to define the touch channels and sensors.The application then calls the API to retrieve channel information and determine the state of the touch sensor.The QTouch Library is free and can be downloaded from the Atmel website. For more informa-tion and details of implementation, refer to the QTouch Library User Guide – also available from the Atmel website.3.4Data RetentionReliability Qualification results show that the projected data retention failure rate is much less than 1 PPM over 20 years at 85°C or 100 years at 25°C.3.5DisclaimerTypical values contained in this datasheet are based on simulations and characterization of other AVR microcontrollers manufactured on the same process technology.78235CS–AVR–06/12ATtiny204.Register SummaryAddressNameBit 7Bit 6Bit 5Bit 4Bit 3Bit 2Bit 1Bit 0Page0x3F SREG ITHSVNZCPage 140x3E SPH Stack Pointer High Byte Page 130x3D SPL Stack Pointer Low Byte Page 130x3C CCP CPU Change Protection BytePage 130x3B RSTFLR ––––WDRF BORF EXTRF PORF Page 370x3A MCUCR ICSC01ICSC00–BODS SM2SM1SM0SE Pages 28, 410x39OSCCAL Oscillator Calibration BytePage 230x38Reserved ––––––––0x37CLKMSR ––––––CLKMS1CLKMS0Page 220x36CLKPSR ––––CLKPS3CLKPS2CLKPS1CLKPS0Page 220x35PRR –––PRTWIPRSPIPRTIM1PRTIM0PRADCPage 290x34QTCSR QTouch Control and Status RegisterPage 60x33NVMCMD ––NVM Command Page 1700x32NVMCSR NVMBSY –––––––Page 1710x31WDTCSR WDIF WDIE WDP3–WDE WDP2WDP1WDP0Page 350x30SPCR SPIE SPE DORD MSTR CPOL CPHA SPR1SPR0Page 1350x2F SPSR SPIF WCOL ––––SSPS SPI2X Page 1370x2E SPDR SPI Data RegisterPage 1370x2D TWSCRA TWSHE–TWDIE TWASIETWEN TWSIE TWPME TWSME Page 1460x2C TWSCRB –––––TWAA TWCMD[1.0]Page 1470x2B TWSSRA TWDIFTWASIFTWCHTWRATWCTWBETWDIRTWASPage 1480x2A TWSA TWI Slave Address Register Page 1500x29TWSAM TWI Slave Address Mask RegisterPage 1510x28TWSD TWI Slave Data RegisterPage 1500x27GTCCR TSM ––––––PSR Page 1070x26TIMSK ICE1–OCIE1B OCIE1A TOIE1OCIE0B OCIE0A TOIE0Pages 76, 1030x25TIFR ICF1–OCF1B OCF1A TOV1OCF0B OCF0A TOV0Pages 76, 1040x24TCCR1A COM1A1COM1A0COM1B1COM1B0––WGM11WGM10Page 990x23TCCR1B ICNC1ICES1–WGM13WGM12CS12CS11CS10Page 1010x22TCCR1C FOC1AFOC1B––––––Page 1020x21TCNT1H Timer/Counter1 – Counter Register High Byte Page 1020x20TCNT1L Timer/Counter1 – Counter Register Low Byte Page 1020x1F OCR1AH Timer/Counter1 – Compare Register A High Byte Page 1030x1E OCR1AL Timer/Counter1 – Compare Register A Low Byte Page 1030x1D OCR1BH Timer/Counter1 – Compare Register B High Byte Page 1030x1C OCR1BL Timer/Counter1 – Compare Register B Low Byte Page 1030x1B ICR1H Timer/Counter1 - Input Capture Register High Byte Page 1030x1A ICR1L Timer/Counter1 - Input Capture Register Low BytePage 1030x19TCCR0A COM0A1COM0A0COM0B1COM0B0––WGM01WGM00Page 710x18TCCR0B FOC0AFOC0B––WGM02CS02CS01CS00Page 740x17TCNT0Timer/Counter0 – Counter Register Page 750x16OCR0A Timer/Counter0 – Compare Register A Page 750x15OCR0B Timer/Counter0 – Compare Register BPage 760x14ACSRA ACD ACBG ACO ACI ACIE ACIC ACIS1ACIS0Page 1090x13ACSRB HSEL HLEV ACLP –ACCE ACME ACIRS1ACIRS0Page 1100x12ADCSRA ADEN ADSC ADATE ADIF ADIE ADPS2ADPS1ADPS0Page 1260x11ADCSRB VDEN VDPD ––ADLAR ADTS2ADTS1ADTS0Page 1270x10ADMUX –REFSREFENADC0ENMUX3MUX2MUX1MUX0Page 1240x0F ADCH ADC Conversion Result – High Byte Page 1250x0E ADCL ADC Conversion Result – Low BytePage 1250x0D DIDR0ADC7D ADC6D ADC5D ADC4D ADC3D ADC2D ADC1D ADC0D Page 1280x0C GIMSK ––PCIE1PCIE0–––INT0Page 410x0B GIFR ––PCIF1PCIF0–––INTF0Page 420x0A PCMSK1––––PCINT11PCINT10PCINT9PCINT8Page 430x09PCMSK0PCINT7PCINT6PCINT5PCINT4PCINT3PCINT2PCINT1PCINT0Page 430x08PORTCR ––––––BBMB BBMA Page 580x07PUEB ––––PUEB3PUEB2PUEB1PUEB0Page 580x06PORTB ––––PORTB3PORTB2PORTB1PORTB0Page 590x05DDRB ––––DDRB3DDRB2DDRB1DDRB0Page 590x04PINB ––––PINB3PINB2PINB1PINB0Page 590x03PUEA PUEA7PUEA6PUEA5PUEA4PUEA3PUEA2PUEA1PUEA0Page 580x02PORTA PORTA7PORTA6PORTA5PORTA4PORTA3PORTA2PORTA1PORTA0Page 580x01DDRA DDRA7DDRA6DDRA5DDRA4DDRA3DDRA2DDRA1DDRA0Page 580x00PINAPINA7PINA6PINA5PINA4PINA3PINA2PINA1PINA0Page 5888235CS–AVR–06/12ATtiny20Note:1.For compatibility with future devices, reserved bits should be written to zero if accessed. Reserved I/O memory addressesshould never be written.2.I/O Registers within the address range 0x00 - 0x1F are directly bit-accessible using the SBI and CBI instructions. In theseregisters, the value of single bits can be checked by using the SBIS and SBIC instructions.3.Some of the Status Flags are cleared by writing a logical one to them. Note that, unlike most other AVRs, the CBI and SBIinstructions will only operation the specified bit, and can therefore be used on registers containing such Status Flags. The CBI and SBI instructions work with registers 0x00 to 0x1F only.98235CS–AVR–06/12ATtiny205.Instruction Set SummaryMnemonicsOperandsDescriptionOperation Flags#ClocksARITHMETIC AND LOGIC INSTRUCTIONSADD Rd, Rr Add without Carry Rd ← Rd + RrZ,C,N,V,S,H 1ADC Rd, Rr Add with Carry Rd ← Rd + Rr + C Z,C,N,V,S,H 1SUB Rd, Rr Subtract without Carry Rd ← Rd - Rr Z,C,N,V,S,H 1SUBI Rd, K Subtract Immediate Rd ← Rd - K Z,C,N,V,S,H 1SBC Rd, Rr Subtract with CarryRd ← Rd - Rr - C Z,C,N,V,S,H 1SBCI Rd, K Subtract Immediate with Carry Rd ← Rd - K - C Z,C,N,V,S,H 1AND Rd, Rr Logical ANDRd ← Rd • Rr Z,N,V,S 1ANDI Rd, K Logical AND with Immediate Rd ← Rd • K Z,N,V,S 1OR Rd, Rr Logical ORRd ← Rd v Rr Z,N,V,S 1ORI Rd, K Logical OR with Immediate Rd ← Rd v K Z,N,V,S 1EOR Rd, Rr Exclusive OR Rd ← Rd ⊕ Rr Z,N,V,S 1COM Rd One’s Complement Rd ← $FF − Rd Z,C,N,V,S 1NEG Rd Two’s Complement Rd ← $00 − Rd Z,C,N,V,S,H 1SBR Rd,K Set Bit(s) in Register Rd ← Rd v K Z,N,V,S 1CBR Rd,K Clear Bit(s) in Register Rd ← Rd • ($FFh - K)Z,N,V,S 1INC Rd Increment Rd ← Rd + 1Z,N,V,S 1DEC Rd DecrementRd ← Rd − 1 Z,N,V,S 1TST Rd Test for Zero or Minus Rd ← Rd • Rd Z,N,V,S 1CLR Rd Clear Register Rd ← Rd ⊕ Rd Z,N,V,S 1SER Rd Set Register Rd ← $FF None 1BRANCH INSTRUCTIONSRJMP kRelative Jump PC ← PC + k + 1None 2IJMP Indirect Jump to (Z)PC(15:0) ← Z, PC(21:16) ← 0None 2RCALL kRelative Subroutine Call PC ← PC + k + 1None 3/4ICALL Indirect Call to (Z)PC(15:0) ← Z, PC(21:16) ← 0None 3/4RET Subroutine Return PC ← STACK None 4/5RETI Interrupt Return PC ← STACKI 4/5CPSE Rd,Rr Compare, Skip if Equal if (Rd = Rr) PC ← PC + 2 or 3None 1/2/3CP Rd,Rr CompareRd − Rr Z, C,N,V,S,H 1 CPC Rd,Rr Compare with Carry Rd − Rr − C Z, C,N,V,S,H 1CPI Rd,K Compare with Immediate Rd − KZ, C,N,V,S,H 1SBRC Rr, b Skip if Bit in Register Cleared if (Rr(b)=0) PC ← PC + 2 or 3 None 1/2/3SBRS Rr, b Skip if Bit in Register is Set if (Rr(b)=1) PC ← PC + 2 or 3None 1/2/3SBIC A, b Skip if Bit in I/O Register Cleared if (I/O(A,b)=0) PC ← PC + 2 or 3 None 1/2/3SBIS A, b Skip if Bit in I/O Register is Set if (I/O(A,b)=1) PC ← PC + 2 or 3None 1/2/3BRBS s, k Branch if Status Flag Set if (SREG(s) = 1) then PC ←PC+k + 1None 1/2BRBC s, k Branch if Status Flag Cleared if (SREG(s) = 0) then PC ←PC+k + 1None 1/2BREQ k Branch if Equal if (Z = 1) then PC ← PC + k + 1None 1/2BRNE k Branch if Not Equal if (Z = 0) then PC ← PC + k + 1None 1/2BRCS k Branch if Carry Set if (C = 1) then PC ← PC + k + 1None 1/2BRCC k Branch if Carry Cleared if (C = 0) then PC ← PC + k + 1None 1/2BRSH k Branch if Same or Higher if (C = 0) then PC ← PC + k + 1None 1/2BRLO k Branch if Lower if (C = 1) then PC ← PC + k + 1None 1/2BRMI k Branch if Minus if (N = 1) then PC ← PC + k + 1None 1/2BRPL k Branch if Plusif (N = 0) then PC ← PC + k + 1None 1/2BRGE k Branch if Greater or Equal, Signed if (N ⊕ V= 0) then PC ← PC + k + 1None 1/2BRLT k Branch if Less Than Zero, Signed if (N ⊕ V= 1) then PC ← PC + k + 1None 1/2BRHS k Branch if Half Carry Flag Set if (H = 1) then PC ← PC + k + 1None 1/2BRHC k Branch if Half Carry Flag Cleared if (H = 0) then PC ← PC + k + 1None 1/2BRTS k Branch if T Flag Set if (T = 1) then PC ← PC + k + 1None 1/2BRTC k Branch if T Flag Cleared if (T = 0) then PC ← PC + k + 1None 1/2BRVS k Branch if Overflow Flag is Set if (V = 1) then PC ← PC + k + 1None 1/2BRVC k Branch if Overflow Flag is Cleared if (V = 0) then PC ← PC + k + 1None 1/2BRIE k Branch if Interrupt Enabled if ( I = 1) then PC ← PC + k + 1None 1/2BRID k Branch if Interrupt Disabled if ( I = 0) then PC ← PC + k + 1None 1/2BIT AND BIT-TEST INSTRUCTIONSLSL Rd Logical Shift Left Rd(n+1) ← Rd(n), Rd(0) ← 0Z,C,N,V,H 1LSR Rd Logical Shift Right Rd(n) ← Rd(n+1), Rd(7) ← 0Z,C,N,V 1ROL Rd Rotate Left Through Carry Rd(0)←C,Rd(n+1)← Rd(n),C ←Rd(7)Z,C,N,V,H 1ROR Rd Rotate Right Through Carry Rd(7)←C,Rd(n)← Rd(n+1),C ←Rd(0)Z,C,N,V 1ASR Rd Arithmetic Shift Right Rd(n) ← Rd(n+1), n=0..6Z,C,N,V 1SWAP Rd Swap Nibbles Rd(3..0)←Rd(7..4),Rd(7..4)←Rd(3..0)None 1BSETs Flag SetSREG(s) ← 1SREG(s)1108235CS–AVR–06/12ATtiny20BCLR sFlag ClearSREG(s) ← 0SREG(s)1SBI A, b Set Bit in I/O Register I/O(A, b) ← 1None 1CBI A, b Clear Bit in I/O RegisterI/O(A, b) ← 0None 1BST Rr, b Bit Store from Register to T T ← Rr(b)T 1BLD Rd, bBit load from T to Register Rd(b) ← TNone 1SEC Set Carry C ← 1C 1CLC Clear Carry C ← 0C 1SEN Set Negative Flag N ← 1N 1CLN Clear Negative Flag N ← 0N 1SEZ Set Zero Flag Z ← 1Z 1CLZ Clear Zero Flag Z ← 0Z 1SEI Global Interrupt Enable I ← 1I 1CLI Global Interrupt Disable I ← 0I 1SES Set Signed Test Flag S ← 1S 1CLS Clear Signed Test FlagS ← 0 S 1SEV Set Two’s Complement Overflow.V ← 1V 1CLV Clear Two’s Complement Overflow V ← 0 V 1SET Set T in SREG T ← 1T 1CLT Clear T in SREGT ← 0T 1SEH Set Half Carry Flag in SREG H ← 1H1CLHClear Half Carry Flag in SREG H ← 0H 1DATA TRANSFER INSTRUCTIONS MOV Rd, Rr Copy Register Rd ← RrNone 1LDI Rd, K Load Immediate Rd ← KNone 1LD Rd, X Load IndirectRd ← (X)None 1/2LD Rd, X+Load Indirect and Post-Increment Rd ← (X), X ← X + 1None 2LD Rd, - X Load Indirect and Pre-Decrement X ← X - 1, Rd ← (X)None 2/3LD Rd, Y Load IndirectRd ← (Y)None 1/2LD Rd, Y+Load Indirect and Post-Increment Rd ← (Y), Y ← Y + 1None 2LD Rd, - Y Load Indirect and Pre-Decrement Y ← Y - 1, Rd ← (Y)None 2/3LD Rd, Z Load IndirectRd ← (Z)None 1/2LD Rd, Z+Load Indirect and Post-Increment Rd ← (Z), Z ← Z+1None 2LD Rd, -Z Load Indirect and Pre-Decrement Z ← Z - 1, Rd ← (Z)None 2/3LDS Rd, k Store Direct from SRAM Rd ← (k)None 1ST X, Rr Store Indirect(X) ← RrNone 1ST X+, Rr Store Indirect and Post-Increment (X) ← Rr, X ← X + 1None 1ST - X, Rr Store Indirect and Pre-Decrement X ← X - 1, (X) ← Rr None 2ST Y, Rr Store Indirect(Y) ← RrNone 1ST Y+, Rr Store Indirect and Post-Increment (Y) ← Rr, Y ← Y + 1None 1ST - Y, Rr Store Indirect and Pre-Decrement Y ← Y - 1, (Y) ← Rr None 2ST Z, Rr Store Indirect(Z) ← RrNone 1ST Z+, Rr Store Indirect and Post-Increment.(Z) ← Rr, Z ← Z + 1None 1ST -Z, Rr Store Indirect and Pre-Decrement Z ← Z - 1, (Z) ← Rr None 2STS k, Rr Store Direct to SRAM (k) ← Rr None 1IN Rd, A In from I/O Location Rd ← I/O (A)None 1OUT A, Rr Out to I/O Location I/O (A) ← Rr None 1PUSH Rr Push Register on Stack STACK ← Rr None 2POPRdPop Register from Stack Rd ← STACKNone 2MCU CONTROL INSTRUCTIONSBREAK Break (see specific descr. for Break)None 1NOP No Operation None 1SLEEP Sleep(see specific descr. for Sleep)None 1WDRWatchdog Reset(see specific descr. for WDR)None1MnemonicsOperandsDescriptionOperation Flags#Clocks分销商库存信息: ATMELATTINY20-SSUR。

Atmel芯片新命名型 对照表

Atmel芯片新命名型 对照表

AT24C01BN-SH-B/T ATMEL ATMLU701DIP AT24C01B-PU ATMEL ATMLU702DIP AT24C02B-10PU-1.8ATMEL ATMLU703DIP AT24C02BN-SH-B/T ATMEL ATMLU704DIP AT24C02B-PU ATMEL ATMLU705DIP AT24C04-10PU-2.7ATMEL ATMLU706DIP AT24C04BN-SH-B ATMEL ATMLU707DIP AT24C04N-10SU-2.7ATMEL ATMLU708DIP AT24C08A-10PU-2.7ATMEL ATMLU709DIP AT24C08A-10TU-2.7ATMEL ATMLU710DIP AT24C08AN-10SU-2.7ATMEL ATMLU711DIP AT24C128-10PU-2.7ATMEL ATMLU712DIP AT24C128N-10SU-2.7-SL383ATMEL ATMLU713DIP AT24C16A-10PU-2.7ATMEL ATMLU714DIP AT24C16A-10TI-1.8ATMEL ATMLU715DIP AT24C16AN-10SU-2.7ATMEL ATMLU716DIP AT24C16BN-SH-B ATMEL ATMLU717DIP AT24C256B-10PU-1.8ATMEL ATMLU718DIP AT24C256BN-10SU-1.8ATMEL ATMLU719DIP AT24C256BN-SH-T ATMEL ATMLU720DIP AT24C256B-PU ATMEL ATMLU721DIP AT24C256N-10SI18ATMEL ATMLU722DIP AT24C32A-10PU-2.7ATMEL ATMLU723DIP AT24C32AN-10SU-2.7ATMEL ATMLU724DIP AT24C32CN-SH-T ATMEL ATMLU725DIP AT24C512-10PU-2.7ATMEL ATMLU726DIP AT24C512BN-SH25-B ATMEL ATMLU727DIP AT24C512BN-SH-B ATMEL ATMLU728DIP AT24C512B-PU25ATMEL ATMLU729DIP AT24C512N-10SU-2.7ATMEL ATMLU730DIP AT24C64A-10PU-2.7ATMEL ATMLU731DIP AT24C64AN-10SU-2.7ATMEL ATMLU732DIP AT24C64CN-SH-B ATMEL ATMLU733DIP AT24C64CN-SH-T ATMEL ATMLU734DIP AT25128A-10PU-2.7ATMEL ATMLU735DIP AT25256AN-10SU-2.7ATMEL ATMLU736DIP AT25DF041A-SH-B ATMEL ATMLU737DIP AT25F1024AN-10SU-2.7-SL383ATMEL ATMLU738DIP AT25F512AN-10SU-2.7-SL383ATMEL ATMLU739DIP AT26DF081A-SSU-SL965ATMEL ATMLU740DIP AT26DF081A-SU-SL965ATMEL ATMLU741DIP AT26DF161-SU ATMEL ATMLU742DIP AT26DF321-SU ATMEL ATMLU743DIP AT27BV256-70JU ATMEL ATMLU744DIP AT27C010-70PU ATMEL ATMLU745DIP AT27C040-70PU ATMEL ATMLU746DIP AT27C256R-70JU ATMEL ATMLU747DIPAT27C256R-70PU ATMEL ATMLU748DIP AT27C512R-70JU ATMEL ATMLU749DIP AT28BV256-20TU ATMEL ATMLU750DIP AT28C256-15PU ATMEL ATMLU751DIP AT28C64B-15JU ATMEL ATMLU752DIP AT28C64B-15PU ATMEL ATMLU801DIP AT28C64B-15SU ATMEL ATMLU802DIP AT29C010A-70JU ATMEL ATMLU803DIP AT29C020-90JU ATMEL ATMLU804DIP AT29C020-90TU ATMEL ATMLU805DIP AT29C040A-90JU ATMEL ATMLU806DIP AT29C040A-90TU ATMEL ATMLU807DIP AT29LV020-10TU ATMEL ATMLU808DIP AT29LV040A-15JU ATMEL ATMLU809DIP AT29LV512-12JU ATMEL ATMLU810DIP AT45DB021B-SU ATMEL ATMLU811DIP AT45DB041D-SU ATMEL ATMLU812DIP AT45DB081D-SU ATMEL ATMLU813DIP AT45DB161D-SU ATMEL ATMLU814DIP AT45DB161D-TU ATMEL ATMLU815DIP AT45DB321D-SU ATMEL ATMLU816DIP AT45DB321D-TU ATMEL ATMLU817DIP AT45DB642D-TU ATMEL ATMLU818DIP AT47BV163A-70TU ATMEL ATMLU819DIP AT49BV040B-JU ATMEL ATMLU820DIP AT49BV322DT-70TU ATMEL ATMLU821DIP AT49BV512-90TU ATMEL ATMLU822DIP AT73C213ATMEL ATMLU823DIP AT76C112ATMEL ATMLU824DIP AT76C120H-MU1-JZ208ATMEL ATMLU825DIP AT80251G2D-SLSUM ATMEL ATMLU826DIP AT80C32X2-3CSUM ATMEL ATMLU827DIP AT80C32X2-RLTUM ATMEL ATMLU828DIP AT80C32X2-SLSUM ATMEL ATMLU829DIP AT83C24-TISIL ATMEL ATMLU830DIP AT88SC0104C-SU ATMEL ATMLU831DIP AT88SC153-10SU ATMEL ATMLU832DIP AT89C2051-12PU ATMEL ATMLU833DIP AT89C2051-12SU ATMEL ATMLU834DIP AT89C2051-24PU ATMEL ATMLU835DIP AT89C2051-24SU ATMEL ATMLU836DIP AT89C4051-24PU ATMEL ATMLU837DIP AT89C4051-24SU ATMEL ATMLU838DIP AT89C5131A-S3SUM ATMEL ATMLU839DIP AT89C51AC2-RLTUM ATMEL ATMLU840DIP AT89C51CC01CA-RLTUM ATMEL ATMLU841DIP AT89C51CC01CA-SLSUM ATMEL ATMLU842DIPAT89C51CC01UA-RLTUM ATMEL ATMLU843DIP AT89C51CC01UA-SLSUM ATMEL ATMLU844DIP AT89C51ED2-RDTUM ATMEL ATMLU845DIP AT89C51ED2-RLTUM ATMEL ATMLU846DIP AT89C51ED2-SLSUM ATMEL ATMLU847DIP AT89C51ED2-SMSUM ATMEL ATMLU848DIP AT89C51RB2-3CSUM ATMEL ATMLU849DIP AT89C51RB2-RLTUM ATMEL ATMLU850DIP AT89C51RB2-SLSUM ATMEL ATMLU851DIP AT89C51RC2-3CSUM ATMEL ATMLU852DIP AT89C51RC-24JU ATMEL ATMLU901DIP AT89C51RC-24PU ATMEL ATMLU902DIP AT89C51RC2-RLTUM ATMEL ATMLU903DIP AT89C51RC2-SLSUM ATMEL ATMLU904DIP AT89C51RD2-RLTUM ATMEL ATMLU905DIP AT89C51RD2-SLRUM ATMEL ATMLU906DIP AT89C51RD2-SLSUM ATMEL ATMLU907DIP AT89C51-24PC ATMEL ATMLU908DIP AT89C51-24PI ATMEL ATMLU909DIP AT89C52-24JI ATMEL ATMLU910DIP AT89C52-24PI ATMEL ATMLH701SOP AT89C55WD-24AU ATMEL ATMLH702SOP AT89C55WD-24JU ATMEL ATMLH703SOP AT89C55WD-24PU ATMEL ATMLH704SOP AT89LS52-16JU ATMEL ATMLH705SOP AT89LS52-16PU ATMEL ATMLH706SOP AT89LV51-12AI ATMEL ATMLH707SOP AT89S51-24AU ATMEL ATMLH708SOP AT89S51-24PU ATMEL ATMLH709SOP AT89S52-24AU ATMEL ATMLH710SOP AT89S52-24JU ATMEL ATMLH711SOP AT89S52-24PU ATMEL ATMLH712SOP AT89S54-3CSIM ATMEL ATMLH713SOP AT89S54-SLSIM ATMEL ATMLH714SOP AT89S58-SLSIM ATMEL ATMLH715SOP AT89S8253-24AU ATMEL ATMLH716SOP AT89S8253-24JU ATMEL ATMLH717SOP AT89S8253-24PU ATMEL ATMLH718SOP AT90CAN128-16AU ATMEL ATMLH719SOP AT90CAN32-16AU ATMEL ATMLH720SOP AT91M40800-33AU ATMEL ATMLH721SOP AT91M55800A-33AU ATMEL ATMLH722SOP AT91RM9200-CJ-002ATMEL ATMLH723SOP AT91RM9200-QU-002ATMEL ATMLH724SOP AT91SAM7S256-AU-001ATMEL ATMLH725SOP AT91SAM7S321-AU ATMEL ATMLH726SOP AT91SAM7S32-AU-001ATMEL ATMLH727SOPAT91SAM7S64-AU-001ATMEL ATMLH728SOP AT91SAM7SE32-AU ATMEL ATMLH729SOP AT91SAM7X256-AU ATMEL ATMLH730SOP AT91SAM9260-CJ ATMEL ATMLH731SOP AT91SAM9260-EK ATMEL ATMLH732SOP AT91SAM9261-EK ATMEL ATMLH733SOP AT91SAM9261S-CU ATMEL ATMLH734SOP AT91SAM9263-CU ATMEL ATMLH735SOP AT91SAM7X-EK ATMEL ATMLH736SOP AT91SAM-ICE ATMEL ATMLH737SOP AT93C46-10PU-2.7ATMEL ATMLH738SOP AT93C46-10SU-2.7ATMEL ATMLH739SOP AT93C46DN-SH-B ATMEL ATMLH740SOP AT93C46D-TH-T ATMEL ATMLH741SOP AT93C56A-10PU-2.7ATMEL ATMLH742SOP AT93C56A-10SU-2.7ATMEL ATMLH743SOP AT93C66A-10PU27ATMEL ATMLH744SOP AT93C66A-10SU-2.7ATMEL ATMLH745SOP AT93C66A-10SU-2.7-SL383ATMEL ATMLH746SOP ATAVRDRAGON ATMEL ATMLH747SOP ATAVRISP2ATMEL ATMLH748SOP ATF1502AS-15JC44ATMEL ATMLH749SOP ATF1508AS-15AC100ATMEL ATMLH750SOP ATF1508AS-15JC84ATMEL ATMLH751SOP ATF16V8B-15JU ATMEL ATMLH752SOP ATF16V8B-15PC ATMEL ATMLH801SOP ATF16V8B-15PU ATMEL ATMLH802SOP ATF16V8BQL-15JC ATMEL ATMLH803SOP ATF20V8B-15JC ATMEL ATMLH804SOP ATJTAGICE2ATMEL ATMLH805SOP ATMEGA1280V-8AU ATMEL ATMLH806SOP ATMEGA128-16AU ATMEL ATMLH807SOP ATMEGA128L-8AU ATMEL ATMLH808SOP ATMEGA16-16AU ATMEL ATMLH809SOP ATMEGA16-16PU ATMEL ATMLH810SOP ATMEGA162-16PU ATMEL ATMLH811SOP ATMEGA162V-8AU ATMEL ATMLH812SOP ATMEGA168-20AU ATMEL ATMLH813SOP ATMEGA168-20MU ATMEL ATMLH814SOP ATMEGA168-20PU ATMEL ATMLH815SOP ATMEGA168V-10AU ATMEL ATMLH816SOP ATMEGA169P-16AU ATMEL ATMLH817SOP ATMEGA169PV-8AU ATMEL ATMLH818SOP ATMEGA169V-8AU ATMEL ATMLH819SOP ATMEGA16L-8AU ATMEL ATMLH820SOP ATMEGA16L-8PU ATMEL ATMLH821SOP ATMEGA32-16AU ATMEL ATMLH822SOPATMEGA32-16PU ATMEL ATMLH823SOP ATMEGA325V-8MU ATMEL ATMLH824SOP ATMEGA32L-8AU ATMEL ATMLH825SOP ATMEGA32L-8PU ATMEL ATMLH826SOP ATMEGA48-20AU ATMEL ATMLH827SOP ATMEGA48V-10AU ATMEL ATMLH828SOP ATMEGA48V-10PU ATMEL ATMLH829SOP ATMEGA48V-10MU ATMEL ATMLH830SOP ATMEGA640V-8AU ATMEL ATMLH831SOP ATMEGA64-16AU ATMEL ATMLH832SOP ATMEGA64L-8AU ATMEL ATMLH833SOP ATMEGA8-16AU ATMEL ATMLH834SOP ATMEGA8-16PU ATMEL ATMLH835SOP ATMEGA8515-16AU ATMEL ATMLH836SOP ATMEGA8515-16JU ATMEL ATMLH837SOP ATMEGA8515-16PU ATMEL ATMLH838SOP ATMEGA8515L-8JU ATMEL ATMLH839SOP ATMEGA8535-16JI ATMEL ATMLH840SOP ATMEGA8535-16JU ATMEL ATMLH841SOP ATMEGA8535-16PU ATMEL ATMLH842SOP ATMEGA8535L-8AU ATMEL ATMLH843SOP ATMEGA8535L-8JU ATMEL ATMLH844SOP ATMEGA8535L-8PU ATMEL ATMLH845SOP ATMEGA88-20AU ATMEL ATMLH846SOP ATMEGA88-20MU ATMEL ATMLH847SOP ATMEGA88-20PU ATMEL ATMLH848SOP ATMEGA88V-10AU ATMEL ATMLH849SOP ATMEGA88V-10MU ATMEL ATMLH850SOP ATMEGA88V-10PU ATMEL ATMLH851SOP ATMEGA8L-8AU ATMEL ATMLH852SOP ATMEGA8L-8PU ATMEL ATMLH901SOP ATTINY11L-2SU ATMEL ATMLH902SOP ATTINY13-20SU ATMEL ATMLH903SOP ATTINY13V-10PU ATMEL ATMLH904SOP ATTINY13V-10SSU ATMEL ATMLH905SOP ATTINY13V-10SU ATMEL ATMLH906SOP ATTINY15L-1PU ATMEL ATMLH907SOP ATTINY2313-20PU ATMEL ATMLH908SOP ATTINY2313-20SU ATMEL ATMLH909SOP ATTINY2313V-10PU ATMEL ATMLH910SOP AT24C01BN-SH-B/T ATMEL ATMLU701DIP AT24C01B-PI ATMEL ATMLU702DIP AT24C02B-10PI-1.8ATMEL ATMLU703DIP AT24C02BN-SH-B/T ATMEL ATMLU704DIP AT24C02B-PI ATMEL ATMLU705DIP AT24C04-10PI-2.7ATMEL ATMLU706DIP AT24C04BN-SH-B ATMEL ATMLU707DIPAT24C04N-10SI-2.7ATMEL ATMLU708DIP AT24C08A-10PI-2.7ATMEL ATMLU709DIP AT24C08A-10TI-2.7ATMEL ATMLU710DIP AT24C08AN-10SI-2.7ATMEL ATMLU711DIP AT24C128-10PI-2.7ATMEL ATMLU712DIP AT24C128N-10SI-2.7-SL383ATMEL ATMLU713DIP AT24C16A-10PI-2.7ATMEL ATMLU714DIP AT24C16A-10TI-1.8ATMEL ATMLU715DIP AT24C16AN-10SI-2.7ATMEL ATMLU716DIP AT24C16BN-SH-B ATMEL ATMLU717DIP AT24C256B-10PI-1.8ATMEL ATMLU718DIP AT24C256BN-10SI-1.8ATMEL ATMLU719DIP AT24C256BN-SH-T ATMEL ATMLU720DIP AT24C256B-PI ATMEL ATMLU721DIP AT24C256N-10SI18ATMEL ATMLU722DIP AT24C32A-10PI-2.7ATMEL ATMLU723DIP AT24C32AN-10SI-2.7ATMEL ATMLU724DIP AT24C32CN-SH-T ATMEL ATMLU725DIP AT24C512-10PI-2.7ATMEL ATMLU726DIP AT24C512BN-SH25-B ATMEL ATMLU727DIP AT24C512BN-SH-B ATMEL ATMLU728DIP AT24C512B-PI25ATMEL ATMLU729DIP AT24C512N-10SI-2.7ATMEL ATMLU730DIP AT24C64A-10PI-2.7ATMEL ATMLU731DIP AT24C64AN-10SI-2.7ATMEL ATMLU732DIP AT24C64CN-SH-B ATMEL ATMLU733DIP AT24C64CN-SH-T ATMEL ATMLU734DIP AT25128A-10PI-2.7ATMEL ATMLU735DIP AT25256AN-10SI-2.7ATMEL ATMLU736DIP AT25DF041A-SH-B ATMEL ATMLU737DIP AT25F1024AN-10SI-2.7-SL383ATMEL ATMLU738DIP AT25F512AN-10SI-2.7-SL383ATMEL ATMLU739DIP AT26DF081A-SSI-SL965ATMEL ATMLU740DIP AT26DF081A-SI-SL965ATMEL ATMLU741DIP AT26DF161-SI ATMEL ATMLU742DIP AT26DF321-SI ATMEL ATMLU743DIP AT27BV256-70JI ATMEL ATMLU744DIP AT27C010-70PI ATMEL ATMLU745DIP AT27C040-70PI ATMEL ATMLU746DIP AT27C256R-70JI ATMEL ATMLU747DIP AT27C256R-70PI ATMEL ATMLU748DIP AT27C512R-70JI ATMEL ATMLU749DIP AT28BV256-20TI ATMEL ATMLU750DIP AT28C256-15PI ATMEL ATMLU751DIP AT28C64B-15JI ATMEL ATMLU752DIP AT28C64B-15PI ATMEL ATMLU801DIP AT28C64B-15SI ATMEL ATMLU802DIPAT29C010A-70JI ATMEL ATMLU803DIP AT29C020-90JI ATMEL ATMLU804DIP AT29C020-90TI ATMEL ATMLU805DIP AT29C040A-90JI ATMEL ATMLU806DIP AT29C040A-90TI ATMEL ATMLU807DIP AT29LV020-10TI ATMEL ATMLU808DIP AT29LV040A-15JI ATMEL ATMLU809DIP AT29LV512-12JI ATMEL ATMLU810DIP AT45DB021B-SI ATMEL ATMLU811DIP AT45DB041D-SI ATMEL ATMLU812DIP AT45DB081D-SI ATMEL ATMLU813DIP AT45DB161D-SI ATMEL ATMLU814DIP AT45DB161D-TI ATMEL ATMLU815DIP AT45DB321D-SI ATMEL ATMLU816DIP AT45DB321D-TI ATMEL ATMLU817DIP AT45DB642D-TI ATMEL ATMLU818DIP AT47BV163A-70TI ATMEL ATMLU819DIP AT49BV040B-JI ATMEL ATMLU820DIP AT49BV322DT-70TI ATMEL ATMLU821DIP AT49BV512-90TI ATMEL ATMLU822DIP AT73C213ATMEL ATMLU823DIP AT76C112ATMEL ATMLU824DIP AT76C120H-MI1-JZ208ATMEL ATMLU825DIP AT80251G2D-SLSIM ATMEL ATMLU826DIP AT80C32X2-3CSIM ATMEL ATMLU827DIP AT80C32X2-RLTIM ATMEL ATMLU828DIP AT80C32X2-SLSIM ATMEL ATMLU829DIP AT83C24-TISIL ATMEL ATMLU830DIP AT88SC0104C-SI ATMEL ATMLU831DIP AT88SC153-10SI ATMEL ATMLU832DIP AT89C2051-12PI ATMEL ATMLU833DIP AT89C2051-12SI ATMEL ATMLU834DIP AT89C2051-24PI ATMEL ATMLU835DIP AT89C2051-24SI ATMEL ATMLU836DIP AT89C4051-24PI ATMEL ATMLU837DIP AT89C4051-24SI ATMEL ATMLU838DIP AT89C5131A-S3SIM ATMEL ATMLU839DIP AT89C51AC2-RLTIM ATMEL ATMLU840DIP AT89C51CC01CA-RLTIM ATMEL ATMLU841DIP AT89C51CC01CA-SLSIM ATMEL ATMLU842DIP AT89C51CC01IA-RLTIM ATMEL ATMLU843DIP AT89C51CC01IA-SLSIM ATMEL ATMLU844DIP AT89C51ED2-RDTIM ATMEL ATMLU845DIP AT89C51ED2-RLTIM ATMEL ATMLU846DIP AT89C51ED2-SLSIM ATMEL ATMLU847DIP AT89C51ED2-SMSIM ATMEL ATMLU848DIP AT89C51RB2-3CSIM ATMEL ATMLU849DIPAT89C51RB2-RLTIM ATMEL ATMLU850DIP AT89C51RB2-SLSIM ATMEL ATMLU851DIP AT89C51RC2-3CSIM ATMEL ATMLU852DIP AT89C51RC-24JI ATMEL ATMLU901DIP AT89C51RC-24PI ATMEL ATMLU902DIP AT89C51RC2-RLTIM ATMEL ATMLU903DIP AT89C51RC2-SLSIM ATMEL ATMLU904DIP AT89C51RD2-RLTIM ATMEL ATMLU905DIP AT89C51RD2-SLRIM ATMEL ATMLU906DIP AT89C51RD2-SLSIM ATMEL ATMLU907DIP AT89C51-24PC ATMEL ATMLU908DIP AT89C51-24PI ATMEL ATMLU909DIP AT89C52-24JI ATMEL ATMLU910DIP AT89C52-24PI ATMEL ATMLH701SOP AT89C55WD-24AI ATMEL ATMLH702SOP AT89C55WD-24JI ATMEL ATMLH703SOP AT89C55WD-24PI ATMEL ATMLH704SOP AT89LS52-16JI ATMEL ATMLH705SOP AT89LS52-16PI ATMEL ATMLH706SOP AT89LV51-12AI ATMEL ATMLH707SOP AT89S51-24AI ATMEL ATMLH708SOP AT89S51-24PI ATMEL ATMLH709SOP AT89S52-24AI ATMEL ATMLH710SOP AT89S52-24JI ATMEL ATMLH711SOP AT89S52-24PI ATMEL ATMLH712SOP AT89S54-3CSIM ATMEL ATMLH713SOP AT89S54-SLSIM ATMEL ATMLH714SOP AT89S58-SLSIM ATMEL ATMLH715SOP AT89S8253-24AI ATMEL ATMLH716SOP AT89S8253-24JI ATMEL ATMLH717SOP AT89S8253-24PI ATMEL ATMLH718SOP AT90CAN128-16AI ATMEL ATMLH719SOP AT90CAN32-16AI ATMEL ATMLH720SOP AT91M40800-33AI ATMEL ATMLH721SOP AT91M55800A-33AI ATMEL ATMLH722SOP AT91RM9200-CJ-002ATMEL ATMLH723SOP AT91RM9200-QI-002ATMEL ATMLH724SOP AT91SAM7S256-AI-001ATMEL ATMLH725SOP AT91SAM7S321-AI ATMEL ATMLH726SOP AT91SAM7S32-AI-001ATMEL ATMLH727SOP AT91SAM7S64-AI-001ATMEL ATMLH728SOP AT91SAM7SE32-AI ATMEL ATMLH729SOP AT91SAM7X256-AI ATMEL ATMLH730SOP AT91SAM9260-CJ ATMEL ATMLH731SOP AT91SAM9260-EK ATMEL ATMLH732SOP AT91SAM9261-EK ATMEL ATMLH733SOP AT91SAM9261S-CI ATMEL ATMLH734SOPAT91SAM9263-CI ATMEL ATMLH735SOP AT91SAM7X-EK ATMEL ATMLH736SOP AT91SAM-ICE ATMEL ATMLH737SOP AT93C46-10PI-2.7ATMEL ATMLH738SOP AT93C46-10SI-2.7ATMEL ATMLH739SOP AT93C46DN-SH-B ATMEL ATMLH740SOP AT93C46D-TH-T ATMEL ATMLH741SOP AT93C56A-10PI-2.7ATMEL ATMLH742SOP AT93C56A-10SI-2.7ATMEL ATMLH743SOP AT93C66A-10PI27ATMEL ATMLH744SOP AT93C66A-10SI-2.7ATMEL ATMLH745SOP AT93C66A-10SI-2.7-SL383ATMEL ATMLH746SOP ATAVRDRAGON ATMEL ATMLH747SOP ATAVRISP2ATMEL ATMLH748SOP ATF1502AS-15JC44ATMEL ATMLH749SOP ATF1508AS-15AC100ATMEL ATMLH750SOP ATF1508AS-15JC84ATMEL ATMLH751SOP ATF16V8B-15JI ATMEL ATMLH752SOP ATF16V8B-15PC ATMEL ATMLH801SOP ATF16V8B-15PI ATMEL ATMLH802SOP ATF16V8BQL-15JC ATMEL ATMLH803SOP ATF20V8B-15JC ATMEL ATMLH804SOP AT JTAGICE MKII ATMEL ATMLH805SOP ATMEGA1280V-8AI ATMEL ATMLH806SOP ATMEGA128-16AI ATMEL ATMLH807SOP ATMEGA128L-8AI ATMEL ATMLH808SOP ATMEGA16-16AI ATMEL ATMLH809SOP ATMEGA16-16PI ATMEL ATMLH810SOP ATMEGA162-16PI ATMEL ATMLH811SOP ATMEGA162V-8AI ATMEL ATMLH812SOP ATMEGA168-20AI ATMEL ATMLH813SOP ATMEGA168-20MI ATMEL ATMLH814SOP ATMEGA168-20PI ATMEL ATMLH815SOP ATMEGA168V-10AI ATMEL ATMLH816SOP ATMEGA169P-16AI ATMEL ATMLH817SOP ATMEGA169PV-8AI ATMEL ATMLH818SOP ATMEGA169V-8AI ATMEL ATMLH819SOP ATMEGA16L-8AI ATMEL ATMLH820SOP ATMEGA16L-8PI ATMEL ATMLH821SOP ATMEGA32-16AI ATMEL ATMLH822SOP ATMEGA32-16PI ATMEL ATMLH823SOP ATMEGA325V-8MI ATMEL ATMLH824SOP ATMEGA32L-8AI ATMEL ATMLH825SOP ATMEGA32L-8PI ATMEL ATMLH826SOP ATMEGA48-20AI ATMEL ATMLH827SOP ATMEGA48V-10AI ATMEL ATMLH828SOP ATMEGA48V-10PI ATMEL ATMLH829SOPATMEGA48V-10MI ATMEL ATMLH830SOP ATMEGA640V-8AI ATMEL ATMLH831SOP ATMEGA64-16AI ATMEL ATMLH832SOP ATMEGA64L-8AI ATMEL ATMLH833SOP ATMEGA8-16AI ATMEL ATMLH834SOP ATMEGA8-16PI ATMEL ATMLH835SOP ATMEGA8515-16AI ATMEL ATMLH836SOP ATMEGA8515-16JI ATMEL ATMLH837SOP ATMEGA8515-16PI ATMEL ATMLH838SOP ATMEGA8515L-8JI ATMEL ATMLH839SOP ATMEGA8535-16JI ATMEL ATMLH840SOP ATMEGA8535-16JI ATMEL ATMLH841SOP ATMEGA8535-16PI ATMEL ATMLH842SOP ATMEGA8535L-8AI ATMEL ATMLH843SOP ATMEGA8535L-8JI ATMEL ATMLH844SOP ATMEGA8535L-8PI ATMEL ATMLH845SOP ATMEGA88-20AI ATMEL ATMLH846SOP ATMEGA88-20MI ATMEL ATMLH847SOP ATMEGA88-20PI ATMEL ATMLH848SOP ATMEGA88V-10AI ATMEL ATMLH849SOP ATMEGA88V-10MI ATMEL ATMLH850SOP ATMEGA88V-10PI ATMEL ATMLH851SOP ATMEGA8L-8AI ATMEL ATMLH852SOP ATMEGA8L-8PI ATMEL ATMLH901SOP ATTINY11L-2SI ATMEL ATMLH902SOP ATTINY13-20SI ATMEL ATMLH903SOP ATTINY13V-10PI ATMEL ATMLH904SOP ATTINY13V-10SSI ATMEL ATMLH905SOP ATTINY13V-10SI ATMEL ATMLH906SOP ATTINY15L-1PI ATMEL ATMLH907SOP ATTINY2313-20PI ATMEL ATMLH908SOP ATTINY2313-20SI ATMEL ATMLH909SOP ATTINY2313V-10PI ATMEL ATMLH910SOP AT17LV010-10PI1000ATMEL0007AT17LV256-10JI1000ATMEL0008AT17LV256-10PC1000ATMEL0009AT17LV256-10PI1000ATMEL0010AT17LV512-10PC1000ATMEL0011AT17LV512-10PC1000ATMEL0012AT17LV512A-10PI1000ATMEL0013AT17LV65-10PI1000ATMEL0014AT22V10-15DC1000ATMEL0015AT22V10-15JC1000ATMEL0016AT22V10-15KC1000ATMEL0017AT22V10-20DC1000ATMEL0018AT22V10-20JC1000ATMEL0019AT22V10-25DC1000ATMEL0020AT22V10-25JC1000ATMEL0021 AT22V10-25JI1000ATMEL0022 AT22V10-25KC1000ATMEL0023 AT22V10-35DC1000ATMEL0024 AT22V10-35JC1000ATMEL0025 AT22V10-35KC1000ATMEL0026 AT22V10-35PC1000ATMEL0027 AT22V10L-20PC1000ATMEL0028 AT22V10L-25DC1000ATMEL0029 AT22V10L-25JC1000ATMEL0030 AT22V10L-25JI1000ATMEL0031 AT22V10L-35DC1000ATMEL0032 AT24C01-10PC1000ATMEL0033 AT24C01-10PC2.51000ATMEL0034 AT24C01-10PI1000ATMEL0035 AT24C01-10PI2.51000ATMEL0036 AT24C01-10SC1000ATMEL0037 AT24C01A-10PC8000ATMEL0038 AT24C01A-10SC8000ATMEL0039 AT24C01A-10SI2.78000ATMEL0040 AT24C01A-10SU-1.8V8000ATMEL0601 AT24C01A-10TI2.78000ATMEL0041 AT24C01BN-SH-B8000ATMEL0042 AT24C01BN-SH-T8000ATMEL0043 AT24C01B-PU8000ATMEL0602 AT24C01B-TH-B8000ATMEL0044 AT24C01B-TH-T8000ATMEL0045 AT24C01BTSU-T8000ATMEL0603 AT24C01BU3-UU-T8000ATMEL0604 AT24C01B-W-118000ATMEL0046 AT24C01BY6-YH-T8000ATMEL0047 AT24C01N-10SC2.78000ATMEL0048 AT24C02-10PC8000ATMEL0049 AT24C02-10PC1.88000ATMEL0050 AT24C02-10PI2.78000ATMEL0051 AT24C02-10TI2.78000ATMEL0052 AT24C02AN-10SU2.78000ATMEL0605 AT24C02N-10SC1.88000ATMEL0101 AT24C02N-10SI1.88000ATMEL0102 AT24C04-10PI2.78000ATMEL0103 AT24C04-10PU-2.7V8000ATMEL0606 AT24C04-10TI-2.78000ATMEL0104 AT24C04-10TU-2.78000ATMEL0607 AT24C04A-10TI-2.78000ATMEL0105 AT24C04N-10SI1.88000ATMEL0106 AT24C08-10PI2.78000ATMEL0107 AT24C08A-10TI2.78000ATMEL0108AT24C08AN-10SI2.78000ATMEL0109 AT24C08AN-10SU2.78000ATMEL0608 AT24C1024-10PI2.78000ATMEL0110 AT24C1024W-10SI2.78000ATMEL0111 AT24C11-10PI-1.88000ATMEL0112 AT24C11-10PI-2.78000ATMEL0113 AT24C11-10PI-2.78000ATMEL0114 AT24C11-10PU-1.88000ATMEL0609 AT24C11-10PU-2.78000ATMEL0610 AT24C11-10TI-1.88000ATMEL0115 AT24C11-10TI-2.78000ATMEL0116 AT24C11-10TQ-2.78000ATMEL0117 AT24C11-10TSU-1.88000ATMEL0611 AT24C11-10TU-1.88000ATMEL0612 AT24C11-10TU-2.78000ATMEL0613 AT24C11N-10SI-1.88000ATMEL0118 AT24C11N-10SI-2.78000ATMEL0119 AT24C11N-10SQ-2.78000ATMEL0120 AT24C11N-10SU-1.88000ATMEL0614 AT24C11N-10SU-2.78000ATMEL0615 AT24C11-W1.8-118000ATMEL0121 AT24C11-W2.7-118000ATMEL0122 AT24C128-10PI2.78000ATMEL0123 AT24C128-10TU-1.88000ATMEL0616 AT24C128-10TU-2.78000ATMEL0617 AT24C128N-10SI1.88000ATMEL0124 AT24C128N-10SI2.78000ATMEL0125 AT24C16-10PI8000ATMEL0126 AT24C16-10TC1.88000ATMEL0127 AT24C164-10PC8000ATMEL0128 AT24C164-10PC2.78000ATMEL0129 AT24C164-10PI8000ATMEL0130 AT24C164-10SC8000ATMEL0131 AT24C164-10SI1.88000ATMEL0132 AT24C164-10SI2.78000ATMEL0133 AT24C164-10SI-2.78000ATMEL0134 AT24C16A-10PI2.78000ATMEL0135 AT24C16A-10TI1.88000ATMEL0136 AT24C16AN-10SI1.88000ATMEL0137 AT24C16AN-10SI2.78000ATMEL0138 AT24C16N-SC8000ATMEL0139 AT24C16N-SI2.78000ATMEL0140 AT24C21-10PC2.58000ATMEL0141 AT24C21-10PC-2.58000ATMEL0142 AT24C21-10SC2.58000ATMEL0143 AT24C21-10SI2.58000ATMEL0144 AT24C21-SC2.58000ATMEL0145AT24C256-10CI-2.78000ATMEL0146 AT24C256-10PC8000ATMEL0147 AT24C256-10PI2.78000ATMEL0148 AT24C256-10TI2.78000ATMEL0149 AT24C256N-10SI1.88000ATMEL0150 AT24C256N-10SI2.78000ATMEL0151 AT24C256T1-10TI2.78000ATMEL0152 AT24C257N-10SC-2.78000ATMEL0201 AT24C32-10PC8000ATMEL0202 AT24C32-10PI2.78000ATMEL0203 AT24C32A-10PI2.78000ATMEL0204 AT24C32AN-10SI2.78000ATMEL0205 AT24C32N-10SI1.88000ATMEL0206 AT24C32N-10SI2.78000ATMEL0207 AT24C32N-SC8000ATMEL0208 AT24C32W-10SI8000ATMEL0209 AT24C512-10PI2.78000ATMEL0210 AT24C512-10PU-2.7V8000ATMEL0618 AT24C512-10TI2.78000ATMEL0211 AT24C512-10UI-2.78000ATMEL0212 AT24C512C1-10CI2.78000ATMEL0213 AT24C512N-10SI2.78000ATMEL0214 AT24C512N-10SU2.78000ATMEL0619 AT24C512W-10SI2.78000ATMEL0215 AT24C64-10PC2.78000ATMEL0216 AT24C64-10TI2.78000ATMEL0217 AT24C64A-10PI2.78000ATMEL0218 AT24C64AN-10SI2.78000ATMEL0219 AT24C64AN-10SU1.88000ATMEL0620 AT24C64N-10SI1.88000ATMEL0220 AT24C64N-10SI2.78000ATMEL0221 AT24C64-SC8000ATMEL0222 AT24RF08CN1000ATMEL0223。

Atmel改变命名规则的芯片型号对照

Atmel改变命名规则的芯片型号对照

ATMLU对应ATMEL芯片:换代选型2011-04-25 23:57AT24C01BN-SH-B/T ATMEL ATMLU701 DIPAT24C01B-PU ATMEL ATMLU702 DIPAT24C02B-10PU-1.8 ATMEL ATMLU703 DIPAT24C02BN-SH-B/T ATMEL ATMLU704 DIPAT24C02B-PU ATMEL ATMLU705 DIPAT24C04-10PU-2.7 ATMEL ATMLU706 DIPAT24C04BN-SH-B ATMEL ATMLU707 DI PAT24C04N-10SU-2.7 ATMEL ATMLU708 DIPAT24C08A-10PU-2.7 ATMEL ATMLU709 DIPAT24C08A-10TU-2.7 ATMEL ATMLU710 DIPAT24C08AN-10SU-2.7 ATMEL ATMLU711 DIPAT24C128-10PU-2.7 ATMEL ATMLU712 DIPAT24C128N-10SU-2.7-SL383 ATMEL ATMLU713 DIPAT24C16A-10PU-2.7 ATMEL ATMLU714 DIPAT24C16A-10TI-1.8 ATMEL ATMLU715 DIP AT24C16AN-10SU-2.7 ATMEL ATMLU716 DIPAT24C16BN-SH-B ATMEL ATMLU717 DIP AT24C256B-10PU-1.8 ATMEL ATMLU718 DIPAT24C256BN-10SU-1.8 ATMEL ATMLU719DIPAT24C256BN-SH-T ATMEL ATMLU720 DIPAT24C256B-PU ATMELATMLU721 DIPAT24C256N-10SI18 ATMEL ATMLU722 DIPAT24C32A-10PU-2.7 ATMEL ATMLU723 DIPAT24C32AN-10SU-2.7 ATMEL ATMLU724 DIPAT24C32CN-SH-T ATMEL ATMLU72 5 DIPAT24C512-10PU-2.7 ATMEL ATMLU726 DIPAT24C512BN-SH25-B ATMEL ATMLU727 DIPAT24C512BN-SH-B ATMEL ATMLU728 DIPAT24C512B-PU25 ATMEL ATMLU7 29 DIPAT24C512N-10SU-2.7 ATMEL ATMLU730 DIPAT24C64A-10PU-2.7 ATMEL ATMLU731 DIPAT24C64AN-10SU-2.7 ATMEL ATMLU732 DIPAT24C64CN-SH-B ATMEL ATMLU7 33 DIPAT24C64CN-SH-T ATMEL ATMLU73 4 DIPAT25128A-10PU-2.7 ATMEL ATMLU735 DIPAT25256AN-10SU-2.7 ATMEL ATMLU736 DIPAT25DF041A-SH-B ATMEL ATMLU737 DIPAT25F1024AN-10SU-2.7-SL383 ATMELATMLU738 DIPAT25F512AN-10SU-2.7-SL383 ATMELATMLU739 DIPAT26DF081A-SSU-SL965 ATMELATMLU740 DIPAT26DF081A-SU-SL965 ATME L ATMLU741 DIPAT26DF161-SUATMEL ATMLU742 DIPAT26DF321-SU ATMELATMLU743 DIPAT27BV256-70JU ATMEL ATMLU744 DIPAT27C010-70PU ATMEL ATMLU74 5 DIPAT27C040-70PU ATMEL ATMLU746DIPAT27C256R-70JU ATMEL ATMLU747DIPAT27C256R-70PU ATMEL ATMLU748DIPAT27C512R-70JU ATMEL ATMLU749 DIPAT28BV256-20TU ATMEL ATMLU750 DIPAT28C256-15PU ATMEL ATMLU751 DIPAT28C64B-15JU ATMEL ATMLU752 DIPAT28C64B-15PU ATMEL ATMLU801 DIPAT28C64B-15SU ATMEL ATMLU802 DIPAT29C010A-70JU ATMEL ATMLU803 DIPAT29C020-90JU ATMEL ATMLU80 4 DIPAT29C020-90TU ATMEL ATMLU805 DIPAT29C040A-90JU ATMEL ATMLU806 DIPAT29C040A-90TU ATMEL ATMLU807DIPAT29LV020-10TU ATMEL ATMLU808 DIPAT29LV040A-15JU ATMEL ATMLU809 DIPAT29LV512-12JU ATMEL ATMLU810 DIPAT45DB021B-SU ATMEL ATMLU811 DIPAT45DB041D-SU ATMEL ATMLU812 DIPAT45DB081D-SU ATMEL ATMLU813 DIPAT45DB161D-SU ATMEL ATMLU814 DIPAT45DB161D-TU ATMEL ATMLU815 DIPAT45DB321D-SU ATMEL ATMLU816 DIPAT45DB321D-TU ATMEL ATMLU817 DIPAT45DB642D-TU ATMEL ATMLU818 DIPAT47BV163A-70TU ATMEL ATMLU819 DIPAT49BV040B-JU ATMEL ATMLU820 DIPAT49BV322DT-70TU ATMEL ATMLU821 DIPAT49BV512-90TU ATMEL ATMLU822 DIPAT73C213 ATMEL ATMLU823 DIPAT76C112 ATMEL ATMLU824 DIPAT76C120H-MU1-JZ208 ATMEL ATMLU825 DIPAT80251G2D-SLSUM ATMEL ATMLU826 DIPAT80C32X2-3CSUM ATMEL ATMLU827 DIPAT80C32X2-RLTUM ATMEL ATMLU828 DIPAT80C32X2-SLSUM ATMEL ATMLU829 DIPAT83C24-TISIL ATMEL ATMLU830 DIPAT88SC0104C-SU ATMEL ATMLU831 DIPAT88SC153-10SU ATMEL ATMLU832 DIPAT89C2051-12PU ATMEL ATMLU833 DIPAT89C2051-24PU ATMEL ATMLU835 DIPAT89C2051-24SU ATMEL ATMLU836 DIPAT89C4051-24PU ATMEL ATMLU837 DIPAT89C4051-24SU ATMEL ATMLU838 DIPAT89C5131A-S3SUM ATMEL ATMLU839 DIP AT89C51AC2-RLTUM ATMEL ATMLU840 DIP AT89C51CC01CA-RLTUM ATMEL ATMLU841 DIP AT89C51CC01CA-SLSUM ATMEL ATMLU842 DIP AT89C51CC01UA-RLTUM ATMEL ATMLU843 DIP AT89C51CC01UA-SLSUM ATMEL ATMLU844 DIP AT89C51ED2-RDTUM ATMEL ATMLU845 DIP AT89C51ED2-RLTUM ATMEL ATMLU846 DIP AT89C51ED2-SLSUM ATMEL ATMLU847 DIP AT89C51ED2-SMSUM ATMEL ATMLU848 DIP AT89C51RB2-3CSUM ATMEL ATMLU849 DIP AT89C51RB2-RLTUM ATMEL ATMLU850 DIP AT89C51RB2-SLSUM ATMEL ATMLU851 DIP AT89C51RC2-3CSUM ATMEL ATMLU852 DIP AT89C51RC-24JU ATMEL ATMLU901 DIPAT89C51RC-24PU ATMEL ATMLU902 DIPAT89C51RC2-RLTUM ATMEL ATMLU903 DIP AT89C51RC2-SLSUM ATMEL ATMLU904 DIPAT89C51RD2-SLRUM ATMEL ATMLU906 DIP AT89C51RD2-SLSUM ATMEL ATMLU907 DIP AT89C51-24PC ATMEL ATMLU908 DIPAT89C51-24PI ATMEL ATMLU909 DIPAT89C52-24JI ATMEL ATMLU910 DIPAT89C52-24PI ATMEL ATMLH701 SOPAT89C55WD-24AU ATMEL ATMLH702 SOP AT89C55WD-24JU ATMEL ATMLH703 SOP 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ATMEL0035AT24C01-10PI2.5 1000 ATMEL0036 AT24C01-10SC 1000 ATMEL0037AT24C01A-10PC 8000 ATMEL0038AT24C01A-10SC 8000 ATMEL0039AT24C01A-10SI2.7 8000 ATMEL0040 AT24C01A-10SU-1.8V 8000 ATMEL0601 AT24C01A-10TI2.7 8000 ATMEL0041 AT24C01BN-SH-B 8000 ATMEL0042AT24C01BN-SH-T 8000 ATMEL0043AT24C01B-PU 8000 ATMEL0602AT24C01B-TH-B 8000 ATMEL0044AT24C01B-TH-T 8000 ATMEL0045AT24C01BTSU-T 8000 ATMEL0603AT24C01BU3-UU-T 8000 ATMEL0604AT24C01BY6-YH-T 8000 ATMEL0047 AT24C01N-10SC2.7 8000 ATMEL0048 AT24C02-10PC 8000 ATMEL0049AT24C02-10PC1.8 8000 ATMEL0050 AT24C02-10PI2.7 8000 ATMEL0051 AT24C02-10TI2.7 8000 ATMEL0052 AT24C02AN-10SU2.7 8000 ATMEL0605 AT24C02N-10SC1.8 8000 ATMEL0101 AT24C02N-10SI1.8 8000 ATMEL0102 AT24C04-10PI2.7 8000 ATMEL0103 AT24C04-10PU-2.7V 8000 ATMEL0606 AT24C04-10TI-2.7 8000 ATMEL0104 AT24C04-10TU-2.7 8000 ATMEL0607 AT24C04A-10TI-2.7 8000 ATMEL0105 AT24C04N-10SI1.8 8000 ATMEL0106 AT24C08-10PI2.7 8000 ATMEL0107 AT24C08A-10TI2.7 8000 ATMEL0108 AT24C08AN-10SI2.7 8000 ATMEL0109 AT24C08AN-10SU2.7 8000 ATMEL0608 AT24C1024-10PI2.7 8000 ATMEL0110 AT24C1024W-10SI2.7 8000 ATMEL0111 AT24C11-10PI-1.8 8000 ATMEL0112AT24C11-10PI-2.7 8000 ATMEL0114 AT24C11-10PU-1.8 8000 ATMEL0609 AT24C11-10PU-2.7 8000 ATMEL0610 AT24C11-10TI-1.8 8000 ATMEL0115 AT24C11-10TI-2.7 8000 ATMEL0116 AT24C11-10TQ-2.7 8000 ATMEL0117 AT24C11-10TSU-1.8 8000 ATMEL0611 AT24C11-10TU-1.8 8000 ATMEL0612 AT24C11-10TU-2.7 8000 ATMEL0613 AT24C11N-10SI-1.8 8000 ATMEL0118 AT24C11N-10SI-2.7 8000 ATMEL0119 AT24C11N-10SQ-2.7 8000 ATMEL0120 AT24C11N-10SU-1.8 8000 ATMEL0614 AT24C11N-10SU-2.7 8000 ATMEL0615 AT24C11-W1.8-11 8000 ATMEL0121 AT24C11-W2.7-11 8000 ATMEL0122 AT24C128-10PI2.7 8000 ATMEL0123 AT24C128-10TU-1.8 8000 ATMEL0616 AT24C128-10TU-2.7 8000 ATMEL0617 AT24C128N-10SI1.8 8000 ATMEL0124 AT24C128N-10SI2.7 8000 ATMEL0125 AT24C16-10PI 8000 ATMEL0126AT24C164-10PC 8000 ATMEL0128AT24C164-10PC2.7 8000 ATMEL0129 AT24C164-10PI 8000 ATMEL0130AT24C164-10SC 8000 ATMEL0131AT24C164-10SI1.8 8000 ATMEL0132 AT24C164-10SI2.7 8000 ATMEL0133 AT24C164-10SI-2.7 8000 ATMEL0134 AT24C16A-10PI2.7 8000 ATMEL0135 AT24C16A-10TI1.8 8000 ATMEL0136 AT24C16AN-10SI1.8 8000 ATMEL0137 AT24C16AN-10SI2.7 8000 ATMEL0138 AT24C16N-SC 8000 ATMEL0139AT24C16N-SI2.7 8000 ATMEL0140 AT24C21-10PC2.5 8000 ATMEL0141 AT24C21-10PC-2.5 8000 ATMEL0142 AT24C21-10SC2.5 8000 ATMEL0143 AT24C21-10SI2.5 8000 ATMEL0144 AT24C21-SC2.5 8000 ATMEL0145AT24C256-10CI-2.7 8000 ATMEL0146 AT24C256-10PC 8000 ATMEL0147AT24C256-10PI2.7 8000 ATMEL0148 AT24C256-10TI2.7 8000 ATMEL0149AT24C256N-10SI2.7 8000 ATMEL0151 AT24C256T1-10TI2.7 8000 ATMEL0152 AT24C257N-10SC-2.7 8000 ATMEL0201 AT24C32-10PC 8000 ATMEL0202AT24C32-10PI2.7 8000 ATMEL0203 AT24C32A-10PI2.7 8000 ATMEL0204 AT24C32AN-10SI2.7 8000 ATMEL0205 AT24C32N-10SI1.8 8000 ATMEL0206 AT24C32N-10SI2.7 8000 ATMEL0207 AT24C32N-SC 8000 ATMEL0208AT24C32W-10SI 8000 ATMEL0209AT24C512-10PI2.7 8000 ATMEL0210 AT24C512-10PU-2.7V 8000 ATMEL0618 AT24C512-10TI2.7 8000 ATMEL0211 AT24C512-10UI-2.7 8000 ATMEL0212 AT24C512C1-10CI2.7 8000 ATMEL0213 AT24C512N-10SI2.7 8000 ATMEL0214 AT24C512N-10SU2.7 8000 ATMEL0619 AT24C512W-10SI2.7 8000 ATMEL0215 AT24C64-10PC2.7 8000 ATMEL0216 AT24C64-10TI2.7 8000 ATMEL0217 AT24C64A-10PI2.7 8000 ATMEL0218AT24C64AN-10SU1.8 8000 ATMEL0620 AT24C64N-10SI1.8 8000 ATMEL0220 AT24C64N-10SI2.7 8000 ATMEL0221 AT24C64-SC 8000 ATMEL0222AT24RF08CN 1000 ATMEL0223。

Atmel芯片

Atmel芯片

AT24C01BN-SH-B/T ATMEL ATMLU701DIP AT24C01B-PU ATMEL ATMLU702DIP AT24C02B-10PU-1.8ATMEL ATMLU703DIP AT24C02BN-SH-B/T ATMEL ATMLU704DIP AT24C02B-PU ATMEL ATMLU705DIP AT24C04-10PU-2.7ATMEL ATMLU706DIP AT24C04BN-SH-B ATMEL ATMLU707DIP AT24C04N-10SU-2.7ATMEL ATMLU708DIP AT24C08A-10PU-2.7ATMEL ATMLU709DIP AT24C08A-10TU-2.7ATMEL ATMLU710DIP AT24C08AN-10SU-2.7ATMEL ATMLU711DIP AT24C128-10PU-2.7ATMEL ATMLU712DIP AT24C128N-10SU-2.7-SL383ATMEL ATMLU713DIP AT24C16A-10PU-2.7ATMEL ATMLU714DIP AT24C16A-10TI-1.8ATMEL ATMLU715DIP AT24C16AN-10SU-2.7ATMEL ATMLU716DIP AT24C16BN-SH-B ATMEL ATMLU717DIP AT24C256B-10PU-1.8ATMEL ATMLU718DIP AT24C256BN-10SU-1.8ATMEL ATMLU719DIP AT24C256BN-SH-T ATMEL ATMLU720DIP AT24C256B-PU ATMEL ATMLU721DIP AT24C256N-10SI18ATMEL ATMLU722DIP AT24C32A-10PU-2.7ATMEL ATMLU723DIP AT24C32AN-10SU-2.7ATMEL ATMLU724DIP AT24C32CN-SH-T ATMEL ATMLU725DIP AT24C512-10PU-2.7ATMEL ATMLU726DIP AT24C512BN-SH25-B ATMEL ATMLU727DIP AT24C512BN-SH-B ATMEL ATMLU728DIP AT24C512B-PU25ATMEL ATMLU729DIP AT24C512N-10SU-2.7ATMEL ATMLU730DIP AT24C64A-10PU-2.7ATMEL ATMLU731DIP AT24C64AN-10SU-2.7ATMEL ATMLU732DIP AT24C64CN-SH-B ATMEL ATMLU733DIP AT24C64CN-SH-T ATMEL ATMLU734DIP AT25128A-10PU-2.7ATMEL ATMLU735DIP AT25256AN-10SU-2.7ATMEL ATMLU736DIP AT25DF041A-SH-B ATMEL ATMLU737DIP AT25F1024AN-10SU-2.7-SL383ATMEL ATMLU738DIP AT25F512AN-10SU-2.7-SL383ATMEL ATMLU739DIP AT26DF081A-SSU-SL965ATMEL ATMLU740DIP AT26DF081A-SU-SL965ATMEL ATMLU741DIP AT26DF161-SU ATMEL ATMLU742DIP AT26DF321-SU ATMEL ATMLU743DIP AT27BV256-70JU ATMEL ATMLU744DIP AT27C010-70PU ATMEL ATMLU745DIP AT27C040-70PU ATMEL ATMLU746DIP AT27C256R-70JU ATMEL ATMLU747DIPAT27C256R-70PU ATMEL ATMLU748DIP AT27C512R-70JU ATMEL ATMLU749DIP AT28BV256-20TU ATMEL ATMLU750DIP AT28C256-15PU ATMEL ATMLU751DIP AT28C64B-15JU ATMEL ATMLU752DIP AT28C64B-15PU ATMEL ATMLU801DIP AT28C64B-15SU ATMEL ATMLU802DIP AT29C010A-70JU ATMEL ATMLU803DIP AT29C020-90JU ATMEL ATMLU804DIP AT29C020-90TU ATMEL ATMLU805DIP AT29C040A-90JU ATMEL ATMLU806DIP AT29C040A-90TU ATMEL ATMLU807DIP AT29LV020-10TU ATMEL ATMLU808DIP AT29LV040A-15JU ATMEL ATMLU809DIP AT29LV512-12JU ATMEL ATMLU810DIP AT45DB021B-SU ATMEL ATMLU811DIP AT45DB041D-SU ATMEL ATMLU812DIP AT45DB081D-SU ATMEL ATMLU813DIP AT45DB161D-SU ATMEL ATMLU814DIP AT45DB161D-TU ATMEL ATMLU815DIP AT45DB321D-SU ATMEL ATMLU816DIP AT45DB321D-TU ATMEL ATMLU817DIP AT45DB642D-TU ATMEL ATMLU818DIP AT47BV163A-70TU ATMEL ATMLU819DIP AT49BV040B-JU ATMEL ATMLU820DIP AT49BV322DT-70TU ATMEL ATMLU821DIP AT49BV512-90TU ATMEL ATMLU822DIP AT73C213ATMEL ATMLU823DIP AT76C112ATMEL ATMLU824DIP AT76C120H-MU1-JZ208ATMEL ATMLU825DIP AT80251G2D-SLSUM ATMEL ATMLU826DIP AT80C32X2-3CSUM ATMEL ATMLU827DIP AT80C32X2-RLTUM ATMEL ATMLU828DIP AT80C32X2-SLSUM ATMEL ATMLU829DIP AT83C24-TISIL ATMEL ATMLU830DIP AT88SC0104C-SU ATMEL ATMLU831DIP AT88SC153-10SU ATMEL ATMLU832DIP AT89C2051-12PU ATMEL ATMLU833DIP AT89C2051-12SU ATMEL ATMLU834DIP AT89C2051-24PU ATMEL ATMLU835DIP AT89C2051-24SU ATMEL ATMLU836DIP AT89C4051-24PU ATMEL ATMLU837DIP AT89C4051-24SU ATMEL ATMLU838DIP AT89C5131A-S3SUM ATMEL ATMLU839DIP AT89C51AC2-RLTUM ATMEL ATMLU840DIP AT89C51CC01CA-RLTUM ATMEL ATMLU841DIP AT89C51CC01CA-SLSUM ATMEL ATMLU842DIPAT89C51CC01UA-RLTUM ATMEL ATMLU843DIP AT89C51CC01UA-SLSUM ATMEL ATMLU844DIP AT89C51ED2-RDTUM ATMEL ATMLU845DIP AT89C51ED2-RLTUM ATMEL ATMLU846DIP AT89C51ED2-SLSUM ATMEL ATMLU847DIP AT89C51ED2-SMSUM ATMEL ATMLU848DIP AT89C51RB2-3CSUM ATMEL ATMLU849DIP AT89C51RB2-RLTUM ATMEL ATMLU850DIP AT89C51RB2-SLSUM ATMEL ATMLU851DIP AT89C51RC2-3CSUM ATMEL ATMLU852DIP AT89C51RC-24JU ATMEL ATMLU901DIP AT89C51RC-24PU ATMEL ATMLU902DIP AT89C51RC2-RLTUM ATMEL ATMLU903DIP AT89C51RC2-SLSUM ATMEL ATMLU904DIP AT89C51RD2-RLTUM ATMEL ATMLU905DIP AT89C51RD2-SLRUM ATMEL ATMLU906DIP AT89C51RD2-SLSUM ATMEL ATMLU907DIP AT89C51-24PC ATMEL ATMLU908DIP AT89C51-24PI ATMEL ATMLU909DIP AT89C52-24JI ATMEL ATMLU910DIP AT89C52-24PI ATMEL ATMLH701SOP AT89C55WD-24AU ATMEL ATMLH702SOP AT89C55WD-24JU ATMEL ATMLH703SOP AT89C55WD-24PU ATMEL ATMLH704SOP AT89LS52-16JU ATMEL ATMLH705SOP AT89LS52-16PU ATMEL ATMLH706SOP AT89LV51-12AI ATMEL ATMLH707SOP AT89S51-24AU ATMEL ATMLH708SOP AT89S51-24PU ATMEL ATMLH709SOP AT89S52-24AU ATMEL ATMLH710SOP AT89S52-24JU ATMEL ATMLH711SOP AT89S52-24PU ATMEL ATMLH712SOP AT89S54-3CSIM ATMEL ATMLH713SOP AT89S54-SLSIM ATMEL ATMLH714SOP AT89S58-SLSIM ATMEL ATMLH715SOP AT89S8253-24AU ATMEL ATMLH716SOP AT89S8253-24JU ATMEL ATMLH717SOP AT89S8253-24PU ATMEL ATMLH718SOP AT90CAN128-16AU ATMEL ATMLH719SOP AT90CAN32-16AU ATMEL ATMLH720SOP AT91M40800-33AU ATMEL ATMLH721SOP AT91M55800A-33AU ATMEL ATMLH722SOP AT91RM9200-CJ-002ATMEL ATMLH723SOP AT91RM9200-QU-002ATMEL ATMLH724SOP AT91SAM7S256-AU-001ATMEL ATMLH725SOP AT91SAM7S321-AU ATMEL ATMLH726SOP AT91SAM7S32-AU-001ATMEL ATMLH727SOPAT91SAM7S64-AU-001ATMEL ATMLH728SOP AT91SAM7SE32-AU ATMEL ATMLH729SOP AT91SAM7X256-AU ATMEL ATMLH730SOP AT91SAM9260-CJ ATMEL ATMLH731SOP AT91SAM9260-EK ATMEL ATMLH732SOP AT91SAM9261-EK ATMEL ATMLH733SOP AT91SAM9261S-CU ATMEL ATMLH734SOP AT91SAM9263-CU ATMEL ATMLH735SOP AT91SAM7X-EK ATMEL ATMLH736SOP AT91SAM-ICE ATMEL ATMLH737SOP AT93C46-10PU-2.7ATMEL ATMLH738SOP AT93C46-10SU-2.7ATMEL ATMLH739SOP AT93C46DN-SH-B ATMEL ATMLH740SOP AT93C46D-TH-T ATMEL ATMLH741SOP AT93C56A-10PU-2.7ATMEL ATMLH742SOP AT93C56A-10SU-2.7ATMEL ATMLH743SOP AT93C66A-10PU27ATMEL ATMLH744SOP AT93C66A-10SU-2.7ATMEL ATMLH745SOP AT93C66A-10SU-2.7-SL383ATMEL ATMLH746SOP ATAVRDRAGON ATMEL ATMLH747SOP ATAVRISP2ATMEL ATMLH748SOP ATF1502AS-15JC44ATMEL ATMLH749SOP ATF1508AS-15AC100ATMEL ATMLH750SOP ATF1508AS-15JC84ATMEL ATMLH751SOP ATF16V8B-15JU ATMEL ATMLH752SOP ATF16V8B-15PC ATMEL ATMLH801SOP ATF16V8B-15PU ATMEL ATMLH802SOP ATF16V8BQL-15JC ATMEL ATMLH803SOP ATF20V8B-15JC ATMEL ATMLH804SOP ATJTAGICE2ATMEL ATMLH805SOP ATMEGA1280V-8AU ATMEL ATMLH806SOP ATMEGA128-16AU ATMEL ATMLH807SOP ATMEGA128L-8AU ATMEL ATMLH808SOP ATMEGA16-16AU ATMEL ATMLH809SOP ATMEGA16-16PU ATMEL ATMLH810SOP ATMEGA162-16PU ATMEL ATMLH811SOP ATMEGA162V-8AU ATMEL ATMLH812SOP ATMEGA168-20AU ATMEL ATMLH813SOP ATMEGA168-20MU ATMEL ATMLH814SOP ATMEGA168-20PU ATMEL ATMLH815SOP ATMEGA168V-10AU ATMEL ATMLH816SOP ATMEGA169P-16AU ATMEL ATMLH817SOP ATMEGA169PV-8AU ATMEL ATMLH818SOP ATMEGA169V-8AU ATMEL ATMLH819SOP ATMEGA16L-8AU ATMEL ATMLH820SOP ATMEGA16L-8PU ATMEL ATMLH821SOP ATMEGA32-16AU ATMEL ATMLH822SOPATMEGA32-16PU ATMEL ATMLH823SOP ATMEGA325V-8MU ATMEL ATMLH824SOP ATMEGA32L-8AU ATMEL ATMLH825SOP ATMEGA32L-8PU ATMEL ATMLH826SOP ATMEGA48-20AU ATMEL ATMLH827SOP ATMEGA48V-10AU ATMEL ATMLH828SOP ATMEGA48V-10PU ATMEL ATMLH829SOP ATMEGA48V-10MU ATMEL ATMLH830SOP ATMEGA640V-8AU ATMEL ATMLH831SOP ATMEGA64-16AU ATMEL ATMLH832SOP ATMEGA64L-8AU ATMEL ATMLH833SOP ATMEGA8-16AU ATMEL ATMLH834SOP ATMEGA8-16PU ATMEL ATMLH835SOP ATMEGA8515-16AU ATMEL ATMLH836SOP ATMEGA8515-16JU ATMEL ATMLH837SOP ATMEGA8515-16PU ATMEL ATMLH838SOP ATMEGA8515L-8JU ATMEL ATMLH839SOP ATMEGA8535-16JI ATMEL ATMLH840SOP ATMEGA8535-16JU ATMEL ATMLH841SOP ATMEGA8535-16PU ATMEL ATMLH842SOP ATMEGA8535L-8AU ATMEL ATMLH843SOP ATMEGA8535L-8JU ATMEL ATMLH844SOP ATMEGA8535L-8PU ATMEL ATMLH845SOP ATMEGA88-20AU ATMEL ATMLH846SOP ATMEGA88-20MU ATMEL ATMLH847SOP ATMEGA88-20PU ATMEL ATMLH848SOP ATMEGA88V-10AU ATMEL ATMLH849SOP ATMEGA88V-10MU ATMEL ATMLH850SOP ATMEGA88V-10PU ATMEL ATMLH851SOP ATMEGA8L-8AU ATMEL ATMLH852SOP ATMEGA8L-8PU ATMEL ATMLH901SOP ATTINY11L-2SU ATMEL ATMLH902SOP ATTINY13-20SU ATMEL ATMLH903SOP ATTINY13V-10PU ATMEL ATMLH904SOP ATTINY13V-10SSU ATMEL ATMLH905SOP ATTINY13V-10SU ATMEL ATMLH906SOP ATTINY15L-1PU ATMEL ATMLH907SOP ATTINY2313-20PU ATMEL ATMLH908SOP ATTINY2313-20SU ATMEL ATMLH909SOP ATTINY2313V-10PU ATMEL ATMLH910SOP AT24C01BN-SH-B/T ATMEL ATMLU701DIP AT24C01B-PI ATMEL ATMLU702DIP AT24C02B-10PI-1.8ATMEL ATMLU703DIP AT24C02BN-SH-B/T ATMEL ATMLU704DIP AT24C02B-PI ATMEL ATMLU705DIP AT24C04-10PI-2.7ATMEL ATMLU706DIP AT24C04BN-SH-B ATMEL ATMLU707DIPAT24C04N-10SI-2.7ATMEL ATMLU708DIP AT24C08A-10PI-2.7ATMEL ATMLU709DIP AT24C08A-10TI-2.7ATMEL ATMLU710DIP AT24C08AN-10SI-2.7ATMEL ATMLU711DIP AT24C128-10PI-2.7ATMEL ATMLU712DIP AT24C128N-10SI-2.7-SL383ATMEL ATMLU713DIP AT24C16A-10PI-2.7ATMEL ATMLU714DIP AT24C16A-10TI-1.8ATMEL ATMLU715DIP AT24C16AN-10SI-2.7ATMEL ATMLU716DIP AT24C16BN-SH-B ATMEL ATMLU717DIP AT24C256B-10PI-1.8ATMEL ATMLU718DIP AT24C256BN-10SI-1.8ATMEL ATMLU719DIP AT24C256BN-SH-T ATMEL ATMLU720DIP AT24C256B-PI ATMEL ATMLU721DIP AT24C256N-10SI18ATMEL ATMLU722DIP AT24C32A-10PI-2.7ATMEL ATMLU723DIP AT24C32AN-10SI-2.7ATMEL ATMLU724DIP AT24C32CN-SH-T ATMEL ATMLU725DIP AT24C512-10PI-2.7ATMEL ATMLU726DIP AT24C512BN-SH25-B ATMEL ATMLU727DIP AT24C512BN-SH-B ATMEL ATMLU728DIP AT24C512B-PI25ATMEL ATMLU729DIP AT24C512N-10SI-2.7ATMEL ATMLU730DIP AT24C64A-10PI-2.7ATMEL ATMLU731DIP AT24C64AN-10SI-2.7ATMEL ATMLU732DIP AT24C64CN-SH-B ATMEL ATMLU733DIP AT24C64CN-SH-T ATMEL ATMLU734DIP AT25128A-10PI-2.7ATMEL ATMLU735DIP AT25256AN-10SI-2.7ATMEL ATMLU736DIP AT25DF041A-SH-B ATMEL ATMLU737DIP AT25F1024AN-10SI-2.7-SL383ATMEL ATMLU738DIP AT25F512AN-10SI-2.7-SL383ATMEL ATMLU739DIP AT26DF081A-SSI-SL965ATMEL ATMLU740DIP AT26DF081A-SI-SL965ATMEL ATMLU741DIP AT26DF161-SI ATMEL ATMLU742DIP AT26DF321-SI ATMEL ATMLU743DIP AT27BV256-70JI ATMEL ATMLU744DIP AT27C010-70PI ATMEL ATMLU745DIP AT27C040-70PI ATMEL ATMLU746DIP AT27C256R-70JI ATMEL ATMLU747DIP AT27C256R-70PI ATMEL ATMLU748DIP AT27C512R-70JI ATMEL ATMLU749DIP AT28BV256-20TI ATMEL ATMLU750DIP AT28C256-15PI ATMEL ATMLU751DIP AT28C64B-15JI ATMEL ATMLU752DIP AT28C64B-15PI ATMEL ATMLU801DIP AT28C64B-15SI ATMEL ATMLU802DIPAT29C010A-70JI ATMEL ATMLU803DIP AT29C020-90JI ATMEL ATMLU804DIP AT29C020-90TI ATMEL ATMLU805DIP AT29C040A-90JI ATMEL ATMLU806DIP AT29C040A-90TI ATMEL ATMLU807DIP AT29LV020-10TI ATMEL ATMLU808DIP AT29LV040A-15JI ATMEL ATMLU809DIP AT29LV512-12JI ATMEL ATMLU810DIP AT45DB021B-SI ATMEL ATMLU811DIP AT45DB041D-SI ATMEL ATMLU812DIP AT45DB081D-SI ATMEL ATMLU813DIP AT45DB161D-SI ATMEL ATMLU814DIP AT45DB161D-TI ATMEL ATMLU815DIP AT45DB321D-SI ATMEL ATMLU816DIP AT45DB321D-TI ATMEL ATMLU817DIP AT45DB642D-TI ATMEL ATMLU818DIP AT47BV163A-70TI ATMEL ATMLU819DIP AT49BV040B-JI ATMEL ATMLU820DIP AT49BV322DT-70TI ATMEL ATMLU821DIP AT49BV512-90TI ATMEL ATMLU822DIP AT73C213ATMEL ATMLU823DIP AT76C112ATMEL ATMLU824DIP AT76C120H-MI1-JZ208ATMEL ATMLU825DIP AT80251G2D-SLSIM ATMEL ATMLU826DIP AT80C32X2-3CSIM ATMEL ATMLU827DIP AT80C32X2-RLTIM ATMEL ATMLU828DIP AT80C32X2-SLSIM ATMEL ATMLU829DIP AT83C24-TISIL ATMEL ATMLU830DIP AT88SC0104C-SI ATMEL ATMLU831DIP AT88SC153-10SI ATMEL ATMLU832DIP AT89C2051-12PI ATMEL ATMLU833DIP AT89C2051-12SI ATMEL ATMLU834DIP AT89C2051-24PI ATMEL ATMLU835DIP AT89C2051-24SI ATMEL ATMLU836DIP AT89C4051-24PI ATMEL ATMLU837DIP AT89C4051-24SI ATMEL ATMLU838DIP AT89C5131A-S3SIM ATMEL ATMLU839DIP AT89C51AC2-RLTIM ATMEL ATMLU840DIP AT89C51CC01CA-RLTIM ATMEL ATMLU841DIP AT89C51CC01CA-SLSIM ATMEL ATMLU842DIP AT89C51CC01IA-RLTIM ATMEL ATMLU843DIP AT89C51CC01IA-SLSIM ATMEL ATMLU844DIP AT89C51ED2-RDTIM ATMEL ATMLU845DIP AT89C51ED2-RLTIM ATMEL ATMLU846DIP AT89C51ED2-SLSIM ATMEL ATMLU847DIP AT89C51ED2-SMSIM ATMEL ATMLU848DIP AT89C51RB2-3CSIM ATMEL ATMLU849DIPAT89C51RB2-RLTIM ATMEL ATMLU850DIP AT89C51RB2-SLSIM ATMEL ATMLU851DIP AT89C51RC2-3CSIM ATMEL ATMLU852DIP AT89C51RC-24JI ATMEL ATMLU901DIP AT89C51RC-24PI ATMEL ATMLU902DIP AT89C51RC2-RLTIM ATMEL ATMLU903DIP AT89C51RC2-SLSIM ATMEL ATMLU904DIP AT89C51RD2-RLTIM ATMEL ATMLU905DIP AT89C51RD2-SLRIM ATMEL ATMLU906DIP AT89C51RD2-SLSIM ATMEL ATMLU907DIP AT89C51-24PC ATMEL ATMLU908DIP AT89C51-24PI ATMEL ATMLU909DIP AT89C52-24JI ATMEL ATMLU910DIP AT89C52-24PI ATMEL ATMLH701SOP AT89C55WD-24AI ATMEL ATMLH702SOP AT89C55WD-24JI ATMEL ATMLH703SOP AT89C55WD-24PI ATMEL ATMLH704SOP AT89LS52-16JI ATMEL ATMLH705SOP AT89LS52-16PI ATMEL ATMLH706SOP AT89LV51-12AI ATMEL ATMLH707SOP AT89S51-24AI ATMEL ATMLH708SOP AT89S51-24PI ATMEL ATMLH709SOP AT89S52-24AI ATMEL ATMLH710SOP AT89S52-24JI ATMEL ATMLH711SOP AT89S52-24PI ATMEL ATMLH712SOP AT89S54-3CSIM ATMEL ATMLH713SOP AT89S54-SLSIM ATMEL ATMLH714SOP AT89S58-SLSIM ATMEL ATMLH715SOP AT89S8253-24AI ATMEL ATMLH716SOP AT89S8253-24JI ATMEL ATMLH717SOP AT89S8253-24PI ATMEL ATMLH718SOP AT90CAN128-16AI ATMEL ATMLH719SOP AT90CAN32-16AI ATMEL ATMLH720SOP AT91M40800-33AI ATMEL ATMLH721SOP AT91M55800A-33AI ATMEL ATMLH722SOP AT91RM9200-CJ-002ATMEL ATMLH723SOP AT91RM9200-QI-002ATMEL ATMLH724SOP AT91SAM7S256-AI-001ATMEL ATMLH725SOP AT91SAM7S321-AI ATMEL ATMLH726SOP AT91SAM7S32-AI-001ATMEL ATMLH727SOP AT91SAM7S64-AI-001ATMEL ATMLH728SOP AT91SAM7SE32-AI ATMEL ATMLH729SOP AT91SAM7X256-AI ATMEL ATMLH730SOP AT91SAM9260-CJ ATMEL ATMLH731SOP AT91SAM9260-EK ATMEL ATMLH732SOP AT91SAM9261-EK ATMEL ATMLH733SOP AT91SAM9261S-CI ATMEL ATMLH734SOPAT91SAM9263-CI ATMEL ATMLH735SOP AT91SAM7X-EK ATMEL ATMLH736SOP AT91SAM-ICE ATMEL ATMLH737SOP AT93C46-10PI-2.7ATMEL ATMLH738SOP AT93C46-10SI-2.7ATMEL ATMLH739SOP AT93C46DN-SH-B ATMEL ATMLH740SOP AT93C46D-TH-T ATMEL ATMLH741SOP AT93C56A-10PI-2.7ATMEL ATMLH742SOP AT93C56A-10SI-2.7ATMEL ATMLH743SOP AT93C66A-10PI27ATMEL ATMLH744SOP AT93C66A-10SI-2.7ATMEL ATMLH745SOP AT93C66A-10SI-2.7-SL383ATMEL ATMLH746SOP ATAVRDRAGON ATMEL ATMLH747SOP ATAVRISP2ATMEL ATMLH748SOP ATF1502AS-15JC44ATMEL ATMLH749SOP ATF1508AS-15AC100ATMEL ATMLH750SOP ATF1508AS-15JC84ATMEL ATMLH751SOP ATF16V8B-15JI ATMEL ATMLH752SOP ATF16V8B-15PC ATMEL ATMLH801SOP ATF16V8B-15PI ATMEL ATMLH802SOP ATF16V8BQL-15JC ATMEL ATMLH803SOP ATF20V8B-15JC ATMEL ATMLH804SOP AT JTAGICE MKII ATMEL ATMLH805SOP ATMEGA1280V-8AI ATMEL ATMLH806SOP ATMEGA128-16AI ATMEL ATMLH807SOP ATMEGA128L-8AI ATMEL ATMLH808SOP ATMEGA16-16AI ATMEL ATMLH809SOP ATMEGA16-16PI ATMEL ATMLH810SOP ATMEGA162-16PI ATMEL ATMLH811SOP ATMEGA162V-8AI ATMEL ATMLH812SOP ATMEGA168-20AI ATMEL ATMLH813SOP ATMEGA168-20MI ATMEL ATMLH814SOP ATMEGA168-20PI ATMEL ATMLH815SOP ATMEGA168V-10AI ATMEL ATMLH816SOP ATMEGA169P-16AI ATMEL ATMLH817SOP ATMEGA169PV-8AI ATMEL ATMLH818SOP ATMEGA169V-8AI ATMEL ATMLH819SOP ATMEGA16L-8AI ATMEL ATMLH820SOP ATMEGA16L-8PI ATMEL ATMLH821SOP ATMEGA32-16AI ATMEL ATMLH822SOP ATMEGA32-16PI ATMEL ATMLH823SOP ATMEGA325V-8MI ATMEL ATMLH824SOP ATMEGA32L-8AI ATMEL ATMLH825SOP ATMEGA32L-8PI ATMEL ATMLH826SOP ATMEGA48-20AI ATMEL ATMLH827SOP ATMEGA48V-10AI ATMEL ATMLH828SOP ATMEGA48V-10PI ATMEL ATMLH829SOPATMEGA48V-10MI ATMEL ATMLH830SOP ATMEGA640V-8AI ATMEL ATMLH831SOP ATMEGA64-16AI ATMEL ATMLH832SOP ATMEGA64L-8AI ATMEL ATMLH833SOP ATMEGA8-16AI ATMEL ATMLH834SOP ATMEGA8-16PI ATMEL ATMLH835SOP ATMEGA8515-16AI ATMEL ATMLH836SOP ATMEGA8515-16JI ATMEL ATMLH837SOP ATMEGA8515-16PI ATMEL ATMLH838SOP ATMEGA8515L-8JI ATMEL ATMLH839SOP ATMEGA8535-16JI ATMEL ATMLH840SOP ATMEGA8535-16JI ATMEL ATMLH841SOP ATMEGA8535-16PI ATMEL ATMLH842SOP ATMEGA8535L-8AI ATMEL ATMLH843SOP ATMEGA8535L-8JI ATMEL ATMLH844SOP ATMEGA8535L-8PI ATMEL ATMLH845SOP ATMEGA88-20AI ATMEL ATMLH846SOP ATMEGA88-20MI ATMEL ATMLH847SOP ATMEGA88-20PI ATMEL ATMLH848SOP ATMEGA88V-10AI ATMEL ATMLH849SOP ATMEGA88V-10MI ATMEL ATMLH850SOP ATMEGA88V-10PI ATMEL ATMLH851SOP ATMEGA8L-8AI ATMEL ATMLH852SOP ATMEGA8L-8PI ATMEL ATMLH901SOP ATTINY11L-2SI ATMEL ATMLH902SOP ATTINY13-20SI ATMEL ATMLH903SOP ATTINY13V-10PI ATMEL ATMLH904SOP ATTINY13V-10SSI ATMEL ATMLH905SOP ATTINY13V-10SI ATMEL ATMLH906SOP ATTINY15L-1PI ATMEL ATMLH907SOP ATTINY2313-20PI ATMEL ATMLH908SOP ATTINY2313-20SI ATMEL ATMLH909SOP ATTINY2313V-10PI ATMEL ATMLH910SOP AT17LV010-10PI ATMEL0007AT17LV256-10JI ATMEL0008AT17LV256-10PC ATMEL0009AT17LV256-10PI ATMEL0010AT17LV512-10PC ATMEL0011AT17LV512-10PC ATMEL0012AT17LV512A-10PI ATMEL0013AT17LV65-10PI ATMEL0014AT22V10-15DC ATMEL0015AT22V10-15JC ATMEL0016AT22V10-15KC ATMEL0017AT22V10-20DC ATMEL0018AT22V10-20JC ATMEL0019AT22V10-25DC ATMEL0020AT22V10-25JC ATMEL0021 AT22V10-25JI ATMEL0022 AT22V10-25KC ATMEL0023 AT22V10-35DC ATMEL0024 AT22V10-35JC ATMEL0025 AT22V10-35KC ATMEL0026 AT22V10-35PC ATMEL0027 AT22V10L-20PC ATMEL0028 AT22V10L-25DC ATMEL0029 AT22V10L-25JC ATMEL0030 AT22V10L-25JI ATMEL0031 AT22V10L-35DC ATMEL0032 AT24C01-10PC ATMEL0033 AT24C01-10PC2.5ATMEL0034 AT24C01-10PI ATMEL0035 AT24C01-10PI2.5ATMEL0036 AT24C01-10SC ATMEL0037 AT24C01A-10PC ATMEL0038 AT24C01A-10SC ATMEL0039 AT24C01A-10SI2.7ATMEL0040 AT24C01A-10SU-1.8V ATMEL0601 AT24C01A-10TI2.7ATMEL0041 AT24C01BN-SH-B ATMEL0042 AT24C01BN-SH-T ATMEL0043 AT24C01B-PU ATMEL0602 AT24C01B-TH-B ATMEL0044 AT24C01B-TH-T ATMEL0045 AT24C01BTSU-T ATMEL0603 AT24C01BU3-UU-T ATMEL0604 AT24C01B-W-11ATMEL0046 AT24C01BY6-YH-T ATMEL0047 AT24C01N-10SC2.7ATMEL0048 AT24C02-10PC ATMEL0049 AT24C02-10PC1.8ATMEL0050 AT24C02-10PI2.7ATMEL0051 AT24C02-10TI2.7ATMEL0052 AT24C02AN-10SU2.7ATMEL0605 AT24C02N-10SC1.8ATMEL0101 AT24C02N-10SI1.8ATMEL0102 AT24C04-10PI2.7ATMEL0103 AT24C04-10PU-2.7V ATMEL0606 AT24C04-10TI-2.7ATMEL0104 AT24C04-10TU-2.7ATMEL0607 AT24C04A-10TI-2.7ATMEL0105 AT24C04N-10SI1.8ATMEL0106 AT24C08-10PI2.7ATMEL0107 AT24C08A-10TI2.7ATMEL0108AT24C08AN-10SI2.7ATMEL0109 AT24C08AN-10SU2.7ATMEL0608 AT24C1024-10PI2.7ATMEL0110 AT24C1024W-10SI2.7ATMEL0111 AT24C11-10PI-1.8ATMEL0112 AT24C11-10PI-2.7ATMEL0113 AT24C11-10PI-2.7ATMEL0114 AT24C11-10PU-1.8ATMEL0609 AT24C11-10PU-2.7ATMEL0610 AT24C11-10TI-1.8ATMEL0115 AT24C11-10TI-2.7ATMEL0116 AT24C11-10TQ-2.7ATMEL0117 AT24C11-10TSU-1.8ATMEL0611 AT24C11-10TU-1.8ATMEL0612 AT24C11-10TU-2.7ATMEL0613 AT24C11N-10SI-1.8ATMEL0118 AT24C11N-10SI-2.7ATMEL0119 AT24C11N-10SQ-2.7ATMEL0120 AT24C11N-10SU-1.8ATMEL0614 AT24C11N-10SU-2.7ATMEL0615 AT24C11-W1.8-11ATMEL0121 AT24C11-W2.7-11ATMEL0122 AT24C128-10PI2.7ATMEL0123 AT24C128-10TU-1.8ATMEL0616 AT24C128-10TU-2.7ATMEL0617 AT24C128N-10SI1.8ATMEL0124 AT24C128N-10SI2.7ATMEL0125 AT24C16-10PI ATMEL0126 AT24C16-10TC1.8ATMEL0127 AT24C164-10PC ATMEL0128 AT24C164-10PC2.7ATMEL0129 AT24C164-10PI ATMEL0130 AT24C164-10SC ATMEL0131 AT24C164-10SI1.8ATMEL0132 AT24C164-10SI2.7ATMEL0133 AT24C164-10SI-2.7ATMEL0134 AT24C16A-10PI2.7ATMEL0135 AT24C16A-10TI1.8ATMEL0136 AT24C16AN-10SI1.8ATMEL0137 AT24C16AN-10SI2.7ATMEL0138 AT24C16N-SC ATMEL0139 AT24C16N-SI2.7ATMEL0140 AT24C21-10PC2.5ATMEL0141 AT24C21-10PC-2.5ATMEL0142 AT24C21-10SC2.5ATMEL0143 AT24C21-10SI2.5ATMEL0144 AT24C21-SC2.5ATMEL0145AT24C256-10CI-2.7ATMEL0146 AT24C256-10PC ATMEL0147 AT24C256-10PI2.7ATMEL0148 AT24C256-10TI2.7ATMEL0149 AT24C256N-10SI1.8ATMEL0150 AT24C256N-10SI2.7ATMEL0151 AT24C256T1-10TI2.7ATMEL0152 AT24C257N-10SC-2.7ATMEL0201 AT24C32-10PC ATMEL0202 AT24C32-10PI2.7ATMEL0203 AT24C32A-10PI2.7ATMEL0204 AT24C32AN-10SI2.7ATMEL0205 AT24C32N-10SI1.8ATMEL0206 AT24C32N-10SI2.7ATMEL0207 AT24C32N-SC ATMEL0208 AT24C32W-10SI ATMEL0209 AT24C512-10PI2.7ATMEL0210 AT24C512-10PU-2.7V ATMEL0618 AT24C512-10TI2.7ATMEL0211 AT24C512-10UI-2.7ATMEL0212 AT24C512C1-10CI2.7ATMEL0213 AT24C512N-10SI2.7ATMEL0214 AT24C512N-10SU2.7ATMEL0619 AT24C512W-10SI2.7ATMEL0215 AT24C64-10PC2.7ATMEL0216 AT24C64-10TI2.7ATMEL0217 AT24C64A-10PI2.7ATMEL0218 AT24C64AN-10SI2.7ATMEL0219 AT24C64AN-10SU1.8ATMEL0620 AT24C64N-10SI1.8ATMEL0220 AT24C64N-10SI2.7ATMEL0221 AT24C64-SC ATMEL0222 AT24RF08CN ATMEL0223。

ATTOTEK ATT-H121A 说明书

ATTOTEK ATT-H121A 说明书

ATT-H121A
ATT-H121A是我司为PAR38射灯开发的一款隔离恒流驱动电源,该驱动电源具有紧凑的体积、完善的功能、稳定的品质、较高的性价比等优点,也解决了之前PAR38射灯没有隔离驱动的问题。

ATT-H121A可以驱动9~12颗1W LED串联。

产品特点:
● 宽范围输入电压:AC 85V~265V 47~63HZ
● 紧凑的体积:D*H=45×25(mm)
● 完善的保护功能:开路、短路、过载、过温保护等
● 采用高效、低耗、稳定的开关控制芯片,使产品达到节能、环保的目的。

● 高精度恒定的输出电流,低噪声,保证LED使用的安全性、稳定性、减少了光衰。

● 优质元器件的选用、100%老化,为产品的品质和寿命提供了可靠的保证。

产品图片
产品参数:
相关特性曲线:
使用说明:
● 本产品主要应用于LED射灯的恒流驱动电源,最高可驱动9~12颗 1W的白光LED或3~4颗3W的大功率
LED,两种应用请款下产品会略有不同,请在选型前与我司进行确认。

● 本产品共有四条引线,两条白色引线一端为AC输入端,接电源输入,另一端LED+为红色引线,是输出正
端,接LED正极,LED-为白色引线,是输出负端,接LED负极。

注意事项:
● 为确保LED安全请先接好LED再开电源。

● 本产品为高压设备,无保护外壳,使用时请注意安全,防止静电,避免与金属短路。

T2A10资料

T2A10资料

2.0A Standard Rectifier2.0A Standard RectifierFeatures• Low Forward Voltage Drop • High Current Capability• High Surge Current Capability • High Reliability• High Temperature Soldering Guaranteed 260°C/10 seconds /.375" (9.5mm) lead length, 5lbs (2.3kg) tension • RoHS compliantMechanical DataCase: Molded PlasticEpoxy: Meets UL 94V-0 flammability ratingTerminals: Axial leads, solderable per MIL-STD-202, Method 208 Polarity: Cathode indicated by color band Weight:0.014 Ounce, 0.39 gramMaximum Ratings (T Ambient =25ºC unless noted otherwise)SymbolDescription T2A05T2A10T2A20T2A40T2A60T2A80T2A100T2A130UnitV RRM Maximum Repetitive Peak Reverse Voltage 50 100 200 400 600 800 1000 1300 V V RMS Maximum RMS Voltage 3570140280420560700910VV DC Maximum DC Blocking Voltage50 100 200 400 600 800 1000 1300 VI F(AV) Maximum Average Forward Rectified Current @Ta=75° C 2.0 AI FSM Peak Forward Surge Current (Note1) 70 A T J Operating Junction Temperature Range -55 to +125 ° C T STGStorage Temperature Range-55 to +150° CT2A05 - T2A130Ambient Temperature T a (°C) Number of Cycles at 60HzElectrical Characteristics (T Ambient =25ºC unless noted otherwise)Note: 1. 8.3ms single half sine-wave superimposed on rated load (JEDEC method)2. Measured at 1MHz and applied reverse voltage of 4.0Volts D.C.3. Thermal resistance from junction to ambient at .375" (9.5mm) lead length.Typical Characteristics CurvesSymbolDescription T2A05T2A10T2A20T2A40T2A60T2A80T2A100 T2A130UnitV FMaximumForward Voltage @ I F=2.0A 1.0 VT A=25° C 5.0 µA I RMaximum DC Reverse Current at Rated DC Blocking Voltage T A=100° C 50µAC JTypical Junction Capacitance (Note2) 20 pFR θ-JAMaximum Thermal Resistance (Note3)50 °C/WI F (A V ) A v e r a g e F o r w a r d C u rr e n t (A )I F S M I n s t a n t a n e o u s F o r w a r d C u r r e n t (A )Fig.2-Max. Non-Repetitive Forward Surge CurrentFig.1- Forward Current Derating CurveT2A05 - T2A130Fig.4- Typical Reverse CharacteristicsFig.5-Typical Junction CapacitanceReverse Voltage (V)Fig.3-Typical Instantaneous ForwardCharacteristicsV F Instantaneous Forward Voltage (V)I F I n s t a n t a n e o u s F o r w a r d C u r r e n t (A )I R I n s t a n t a n e o u s R e v e r s e C u r r e n t (µA )Percentage of Peak Reverse Voltage (%)C J J u n c t i o n C a p a c i t a n c e (p F )T2A05 - T2A130 Dimensions in inches (mm)DO-15How to contact us:。

2300_20 Datasheet - CHN

2300_20 Datasheet - CHN

2300/25
Trendmaster SPA 接口 两路可编程继电器输出 “本特利内华达监测器组态软件”(包含供货 范围内)通过以太网 10/100 Base-T 通讯接口对 监测器组态 一路专用转速和键相通道,支持涡流探头、磁 阻发讯器、以及接近开关式传感器 三路缓冲传感器输出(包括转速信号),提供 短路和抗电磁干扰保护。每个信号的缓冲输出 通过 BNC 插头获取 连续监测与保护 LCD 显示屏显示振动幅值、设定值、以及转速 两个加速度振动输入可同步采样,便于高级诊 断分析 关键测量值(通频峰值、峰-峰值、通频 RMS 有 效值、等效峰值、通频积分峰值、转速)实时 报警组态 LED 指示灯显示监测器状态 用于通道旁路、组态锁定、以及复位的接点输 入 可选配 Modbus® 以太网通讯
如需获取更多认证及机构批准信息,请访问以下网址:

物理参数
外形尺寸(宽 x 深 x 高) 127 毫米 x 127 毫米 x 76.2 毫米 重量 1.03 公斤 安装 面板安装或 DIN 导轨安装(含导轨卡座)
技术规格与订购信息 文档编号 105M0340-01 修订版 D (04/15) 第 5 页 / 共 10 页
订购信息
2300 系列振动监测器
2300/20-AA:有 4-20mA 输出的监测器(含 DIN 导 轨安装总成、手册、以及监测器组态软件) AA:机构批准选项 00 无 02 多个机构防爆认证( ATEX/IECEx/CSA )
3
(不含键相传感器、防护箱和 24 VDC 电源 3) BB:机构批准选项 00 无 02 多个机构防爆认证 (ATEX/IECEx/CSA)
支持自定义加速度传感器(2 线或 3 线) 每个通道独立的 24 位 AD 转换 转速/键相输入 支持以下键相传感器 o o o 涡流探头 接近开关 磁阻发讯器

PT2313中文资料及其程序电路图与pdf(音效处理芯片)

PT2313中文资料及其程序电路图与pdf(音效处理芯片)

//rear front……fader
//right left ……balance
{0x06,0x00},
{0x05,0x00},
{0x04,0x00},
{0x03,0x00},
{0x02,0x00},
{0x01,0x00},
{0x00,0x00},
0x1f,
0x1f,
0x1f,
0x1f,
0x1f,
0x1f,
0x1f,
数据结构
控制
int ret = 0;
ret = i2c_master_send(g_pt2313_Dev-&gt;client,
0x10,//-20.00dB
0x0e,//-17.50dB
0x0c,//-15.00dB
0x0a,//-12.50dB
0x08,//-10.00dB
0x06,//-7.50dB
0x04,//-5.00dB
0x02,//-2.50dB
0x00,//-0.00dB
unsigned char LoudnessSta;
unsigned char MasterVolVal;
unsigned char TempVolVal;
unsigned char TrebleVal;
unsigned char BassVal;
unsigned char FadeVal;
else
temp |= LOUDON;
I2C_Buffer[0] = temp;
I2C_Write(PT2313_Addr,I2C_Buffer,1);
低音控制 */

ADXL203中文资料

ADXL203中文资料

VS = 5 V VS = 5 V, 25°C
2.4
2.5
±25
±0.1
NOISE PERFORMANCE
Output Noise Noise Density FREQUENCY RESPONSE4 CX, CY Range5 RFILT Tolerance Sensor Resonant Frequency SELF TEST6 Logic Input Low
APPLICATIONS
Vehicle Dynamic Control (VDC)/Electronic Stability Program (ESP) systems
Electronic chassis control Electronic braking Platform stabilization/leveling Navigation Alarms and motion detectors. High accuracy, 2-axis tilt sensing
The typical noise floor is 110 μg/√Hz, allowing signals below 1 mg (0.06° of inclination) to be resolved in tilt sensing applications using narrow bandwidths (<60 Hz).
REVISION HISTORY
Revision 0: Initial Version
Self Test ...........................................................................................9 Design Trade-Offs for Selecting Filter Characteristics: The Noise/BW Trade-Off.....................................................................9 Using the ADXL103/ADXL203 with Operating Voltages Other than 5 V............................................................................ 10 Using the ADXL203 as a Dual-Axis Tilt Sensor .................... 10 Pin Configurations and Functional Descriptions ...................... 11 Outline Dimensions ....................................................................... 12 Ordering Guide .......................................................................... 12
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Features•Utilizes the AVR® RISC Architecture•AVR – High-performance and Low-power RISC Architecture –120 Powerful Instructions – Most Single Clock Cycle Execution –32 x 8 General Purpose Working Registers–Fully Static Operation–Up to 20 MIPS Throughput at 20 MHz•Data and Non-volatile Program and Data Memories–2K Bytes of In-System Self Programmable FlashEndurance 10,000 Write/Erase Cycles–128 Bytes In-System Programmable EEPROMEndurance: 100,000 Write/Erase Cycles–128 Bytes Internal SRAM–Programming Lock for Flash Program and EEPROM Data Security •Peripheral Features–One 8-bit Timer/Counter with Separate Prescaler and Compare Mode–One 16-bit Timer/Counter with Separate Prescaler, Compare and Capture Modes –Four PWM Channels–On-chip Analog Comparator–Programmable Watchdog Timer with On-chip Oscillator–USI – Universal Serial Interface–Full Duplex USART•Special Microcontroller Features–debugWIRE On-chip Debugging–In-System Programmable via SPI Port–External and Internal Interrupt Sources–Low-power Idle, Power-down, and Standby Modes–Enhanced Power-on Reset Circuit–Programmable Brown-out Detection Circuit–Internal Calibrated Oscillator•I/O and Packages–18 Programmable I/O Lines–20-pin PDIP, 20-pin SOIC, 20-pad QFN/MLF•Operating Voltages–1.8 - 5.5V (ATtiny2313V)–2.7 - 5.5V (ATtiny2313)•Speed Grades–ATtiny2313V: 0 - 4 MHz @ 1.8 - 5.5V, 0 - 10 MHz @ 2.7 - 5.5V–ATtiny2313: 0 - 10 MHz @ 2.7 - 5.5V, 0 - 20 MHz @ 4.5 - 5.5V•Typical Power Consumption–Active Mode1 MHz, 1.8V: 230 µA32 kHz, 1.8V: 20 µA (including oscillator)–Power-down Mode< 0.1 µA at 1.8V 8-bit Microcontroller2ATtiny2313/V2543IS–AVR–04/06Pin ConfigurationsFigure 1. Pinout ATtiny2313OverviewThe ATtiny2313 is a low-power CMOS 8-bit microcontroller based on the AVR enhanced RISC architecture. By executing powerful instructions in a single clock cycle,the ATtiny2313 achieves throughputs approaching 1 MIPS per MHz allowing the system designer to optimize power consumption versus processing speed.3ATtiny2313/V2543IS–AVR–04/06Block DiagramFigure 2. Block Diagram4ATtiny2313/V2543IS–AVR–04/06The AVR core combines a rich instruction set with 32 general purpose working registers.All the 32 registers are directly connected to the Arithmetic Logic Unit (ALU), allowing two independent registers to be accessed in one single instruction executed in one clock cycle. The resulting architecture is more code efficient while achieving throughputs up to ten times faster than conventional CISC microcontrollers.The ATtiny2313 provides the following features: 2K bytes of In-System Programmable Flash, 128 bytes EEPROM, 128 bytes SRAM, 18general purpose I/O lines, 32 general purpose working registers, a single-wire Interface for On-chip Debugging, two flexible Timer/Counters with compare modes, internal and external interrupts, a serial program-mable USART, Universal Serial Interface with Start Condition Detector, a programmable Watchdog Timer with internal Oscillator, and three software selectable power saving modes. The Idle mode stops the CPU while allowing the SRAM, Timer/Counters, and interrupt system to continue functioning. The Power-down mode saves the register con-tents but freezes the Oscillator, disabling all other chip functions until the next interrupt or hardware reset. In Standby mode, the crystal/resonator Oscillator is running while the rest of the device is sleeping. This allows very fast start-up combined with low-power consumption.The device is manufactured using Atmel’s high density non-volatile memory technology.The On-chip ISP Flash allows the program memory to be reprogrammed In-System through an SPI serial interface, or by a conventional non-volatile memory programmer.By combining an 8-bit RISC CPU with In-System Self-Programmable Flash on a mono-lithic chip, the Atmel ATtiny2313 is a powerful microcontroller that provides a highly flexible and cost effective solution to many embedded control applications.The ATtiny2313 AVR is supported with a full suite of program and system development tools including: C Compilers, Macro Assemblers, Program Debugger/Simulators, In-Cir-cuit Emulators, and Evaluation kits.5ATtiny2313/V2543IS–AVR–04/06Pin DescriptionsVCC Digital supply voltage.GNDGround.Port A (PA2..PA0)Port A is a 3-bit bi-directional I/O port with internal pull-up resistors (selected for each bit). The Port A output buffers have symmetrical drive characteristics with both high sink and source capability. As inputs, Port A pins that are externally pulled low will source current if the pull-up resistors are activated. The Port A pins are tri-stated when a reset condition becomes active, even if the clock is not running.Port A also serves the functions of various special features of the ATtiny2313 as listed on page 53.Port B (PB7..PB0)Port B is an 8-bit bi-directional I/O port with internal pull-up resistors (selected for each bit). The Port B output buffers have symmetrical drive characteristics with both high sink and source capability. As inputs, Port B pins that are externally pulled low will source current if the pull-up resistors are activated. The Port B pins are tri-stated when a reset condition becomes active, even if the clock is not running.Port B also serves the functions of various special features of the ATtiny2313 as listed on page 53.Port D (PD6..PD0)Port D is a 7-bit bi-directional I/O port with internal pull-up resistors (selected for each bit). The Port D output buffers have symmetrical drive characteristics with both high sink and source capability. As inputs, Port D pins that are externally pulled low will source current if the pull-up resistors are activated. The Port D pins are tri-stated when a reset condition becomes active, even if the clock is not running.Port D also serves the functions of various special features of the ATtiny2313 as listed on page 56.Reset input. A low level on this pin for longer than the minimum pulse length will gener-ate a reset, even if the clock is not running. The minimum pulse length is given in Table 15 on page 34. Shorter pulses are not guaranteed to generate a reset. The Reset Input is an alternate function for PA2 and dW.XTAL1Input to the inverting Oscillator amplifier and input to the internal clock operating circuit.XTAL1 is an alternate function for PA0.XTAL2Output from the inverting Oscillator amplifier. XTAL2 is an alternate function for PA1.ResourcesA comprehensive set of development tools, application notes and datasheets are avail-able for downloadon /avr.6ATtiny2313/V2543IS–AVR–04/06Register SummaryAddressNameBit 7Bit 6Bit 5Bit 4Bit 3Bit 2Bit 1Bit 0Page0x3F (0x5F)SREG I T H S V N Z C 70x3E (0x5E)Reserved ––––––––0x3D (0x5D)SPL SP7SP6SP5SP4SP3SP2SP1SP0100x3C (0x5C)OCR0B Timer/Counter0 – Compare Register B780x3B (0x5B)GIMSK INT1INT0PCIE –––––600x3A (0x5A)EIFR INTF1INTF0PCIF –––––620x39 (0x59)TIMSK TOIE1OCIE1A OCIE1B –ICIE1OCIE0B TOIE0OCIE0A 79, 1100x38 (0x58)TIFR TOV1OCF1A OCF1B –ICF1OCF0B TOV0OCF0A 790x37 (0x57)SPMCSR –––CTPB RFLB PGWRT PGERS SELFPRGEN1560x36 (0x56)OCR0A Timer/Counter0 – Compare Register A780x35 (0x55)MCUCR PUD SM1SE SM0ISC11ISC10ISC01ISC00530x34 (0x54)MCUSR ––––WDRF BORF EXTRF PORF 370x33 (0x53)TCCR0B FOC0A FOC0B ––WGM02CS02CS01CS00770x32 (0x52)TCNT0Timer/Counter0 (8-bit)780x31 (0x51)OSCCAL –CAL6CAL5CAL4CAL3CAL2CAL1CAL0250x30 (0x50)TCCR0A COM0A1COM0A0COM0B1COM0B0––WGM01WGM00740x2F (0x4F)TCCR1A COM1A1COM1A0COM1B1COM1BO ––WGM11WGM101050x2E (0x4E)TCCR1B ICNC1ICES1–WGM13WGM12CS12CS11CS101080x2D (0x4D)TCNT1H Timer/Counter1 – Counter Register High Byte 1090x2C (0x4C)TCNT1L Timer/Counter1 – Counter Register Low Byte 1090x2B (0x4B)OCR1AH Timer/Counter1 – Compare Register A High Byte 1090x2A (0x4A)OCR1AL Timer/Counter1 – Compare Register A Low Byte 1090x29 (0x49)OCR1BH Timer/Counter1 – Compare Register B High Byte 1100x28 (0x48)OCR1BL Timer/Counter1 – Compare Register B Low Byte1100x27 (0x47)Reserved ––––––––0x26 (0x46)CLKPR CLKPCE–––CLKPS3CLKPS2CLKPS1CLKPS0270x25 (0x45)ICR1H Timer/Counter1 - Input Capture Register High Byte 1100x24 (0x44)ICR1L Timer/Counter1 - Input Capture Register Low Byte1100x23 (0x43)GTCCR –––––––PSR10820x22 (ox42)TCCR1C FOC1A FOC1B ––––––1090x21 (0x41)WDTCSR WDIF WDIE WDP3WDCE WDE WDP2WDP1WDP0420x20 (0x40)PCMSK PCINT7PCINT6PCINT5PCINT4PCINT3PCINT2PCINT1PCINT0620x1F (0x3F)Reserved ––––––––0x1E (0x3E)EEAR –EEPROM Address Register 150x1D (0x3D)EEDR EEPROM Data Register160x1C (0x3C)EECR ––EEPM1EEPM0EERIE EEMPE EEPE EERE 160x1B (0x3B)PORTA –––––PORTA2PORTA1PORTA0580x1A (0x3A)DDRA –––––DDA2DDA1DDA0580x19 (0x39)PINA –––––PINA2PINA1PINA0580x18 (0x38)PORTB PORTB7PORTB6PORTB5PORTB4PORTB3PORTB2PORTB1PORTB0580x17 (0x37)DDRB DDB7DDB6DDB5DDB4DDB3DDB2DDB1DDB0580x16 (0x36)PINB PINB7PINB6PINB5PINB4PINB3PINB2PINB1PINB0580x15 (0x35)GPIOR2General Purpose I/O Register 2200x14 (0x34)GPIOR1General Purpose I/O Register 1200x13 (0x33)GPIOR0General Purpose I/O Register 0200x12 (0x32)PORTD –PORTD6PORTD5PORTD4PORTD3PORTD2PORTD1PORTD0580x11 (0x31)DDRD –DDD6DDD5DDD4DDD3DDD2DDD1DDD0580x10 (0x30)PIND –PIND6PIND5PIND4PIND3PIND2PIND1PIND0580x0F (0x2F)USIDR USI Data Register1450x0E (0x2E)USISR USISIF USIOIF USIPF USIDC USICNT3USICNT2USICNT1USICNT01460x0D (0x2D)USICR USISIE USIOIE USIWM1USIWM0USICS1USICS0USICLK USITC 1470x0C (0x2C)UDR UART Data Register (8-bit)1300x0B (0x2B)UCSRA RXC TXC UDRE FE DORUPE U2X MPCM 1300x0A (0x2A)UCSRB RXCIE TXCIE UDRIE RXEN TXENUCSZ2RXB8TXB81320x09 (0x29)UBRRL UBRRH[7:0]1340x08 (0x28)ACSR ACD ACBG ACO ACI ACIE ACIC ACIS1ACIS01500x07 (0x27)Reserved ––––––––0x06 (0x26)Reserved ––––––––0x05 (0x25)Reserved ––––––––0x04 (0x24)Reserved ––––––––0x03 (0x23)UCSRC –UMSEL UPM1UPM0USBSUCSZ1UCSZ0UCPOL1330x02 (0x22)UBRRH ––––UBRRH[11:8]1340x01 (0x21)DIDR ––––––AIN1D AIN0D 1510x00 (0x20)Reserved––––––––7ATtiny2313/V2543IS–AVR–04/06Note:1.For compatibility with future devices, reserved bits should be written to zero if accessed. Reserved I/O memory addressesshould never be written.2.I/O Registers within the address range 0x00 - 0x1F are directly bit-accessible using the SBI and CBI instructions. In theseregisters, the value of single bits can be checked by using the SBIS and SBIC instructions.3.Some of the status flags are cleared by writing a logical one to them. Note that, unlike most other AVRs, the CBI and SBIinstructions will only operate on the specified bit, and can therefore be used on registers containing such status flags. The CBI and SBI instructions work with registers 0x00 to 0x1F only.4.When using the I/O specific commands IN and OUT , the I/O addresses 0x00 - 0x3F must be used. When addressing I/ORegisters as data space using LD and ST instructions, 0x20 must be added to these addresses.8ATtiny2313/V2543IS–AVR–04/06Instruction Set SummaryMnemonicsOperandsDescriptionOperation Flags#ClocksARITHMETIC AND LOGIC INSTRUCTIONSADD Rd, Rr Add two RegistersRd ← Rd + RrZ,C,N,V,H 1ADC Rd, Rr Add with Carry two Registers Rd ← Rd + Rr + C Z,C,N,V,H 1ADIW Rdl,K Add Immediate to Word Rdh:Rdl ← Rdh:Rdl + K Z,C,N,V,S 2SUB Rd, Rr Subtract two RegistersRd ← Rd - Rr Z,C,N,V,H 1SUBI Rd, K Subtract Constant from Register Rd ← Rd - K Z,C,N,V,H 1SBC Rd, Rr Subtract with Carry two Registers Rd ← Rd - Rr - C Z,C,N,V,H 1SBCI Rd, K Subtract with Carry Constant from Reg.Rd ← Rd - K - C Z,C,N,V,H 1SBIW Rdl,K Subtract Immediate from Word Rdh:Rdl ← Rdh:Rdl - K Z,C,N,V,S 2AND Rd, Rr Logical AND RegistersRd ← Rd • Rr Z,N,V 1ANDI Rd, K Logical AND Register and Constant Rd ← Rd • K Z,N,V 1OR Rd, Rr Logical OR RegistersRd ← Rd v RrZ,N,V 1ORI Rd, K Logical OR Register and Constant Rd ← Rd v KZ,N,V 1EOR Rd, Rr Exclusive OR Registers Rd ← Rd ⊕ Rr Z,N,V 1COM Rd One’s Complement Rd ← 0xFF − Rd Z,C,N,V 1NEG Rd Two’s Complement Rd ← 0x00 − Rd Z,C,N,V,H 1SBR Rd,K Set Bit(s) in Register Rd ← Rd v K Z,N,V 1CBR Rd,K Clear Bit(s) in Register Rd ← Rd • (0xFF - K)Z,N,V 1INC Rd Increment Rd ← Rd + 1Z,N,V 1DEC Rd DecrementRd ← Rd − 1 Z,N,V 1TST Rd Test for Zero or Minus Rd ← Rd • Rd Z,N,V 1CLR Rd Clear Register Rd ← Rd ⊕ Rd Z,N,V 1SER Rd Set Register Rd ← 0xFF None 1BRANCH INSTRUCTIONSRJMP kRelative Jump PC ← PC + k + 1None 2IJMP Indirect Jump to (Z)PC ← Z None 2RCALL kRelative Subroutine Call PC ← PC + k + 1None 3ICALL Indirect Call to (Z)PC ←Z None 3RET Subroutine Return PC ← STACK None 4RETI Interrupt Return PC ← STACKI 4CPSE Rd,Rr Compare, Skip if Equal if (Rd = Rr) PC ← PC + 2 or 3None 1/2/3CP Rd,Rr CompareRd − Rr Z, N,V,C,H 1 CPC Rd,Rr Compare with CarryRd − Rr − C Z, N,V,C,H 1CPI Rd,K Compare Register with Immediate Rd − KZ, N,V,C,H 1SBRC Rr, b Skip if Bit in Register Cleared if (Rr(b)=0) PC ← PC + 2 or 3 None 1/2/3SBRS Rr, b Skip if Bit in Register is Set if (Rr(b)=1) PC ← PC + 2 or 3None 1/2/3SBIC P, b Skip if Bit in I/O Register Cleared if (P(b)=0) PC ← PC + 2 or 3 None 1/2/3SBIS P, b Skip if Bit in I/O Register is Set if (P(b)=1) PC ← PC + 2 or 3None 1/2/3BRBS s, k Branch if Status Flag Set if (SREG(s) = 1) then PC ←PC+k + 1None 1/2BRBC s, k Branch if Status Flag Cleared if (SREG(s) = 0) then PC ←PC+k + 1None 1/2BREQ k Branch if Equal if (Z = 1) then PC ← PC + k + 1None 1/2BRNE k Branch if Not Equal if (Z = 0) then PC ← PC + k + 1None 1/2BRCS k Branch if Carry Set if (C = 1) then PC ← PC + k + 1None 1/2BRCC k Branch if Carry Cleared if (C = 0) then PC ← PC + k + 1None 1/2BRSH k Branch if Same or Higher if (C = 0) then PC ← PC + k + 1None 1/2BRLO k Branch if Lower if (C = 1) then PC ← PC + k + 1None 1/2BRMI k Branch if Minus if (N = 1) then PC ← PC + k + 1None 1/2BRPL k Branch if Plusif (N = 0) then PC ← PC + k + 1None 1/2BRGE k Branch if Greater or Equal, Signed if (N ⊕ V= 0) then PC ← PC + k + 1None 1/2BRLT k Branch if Less Than Zero, Signed if (N ⊕ V= 1) then PC ← PC + k + 1None 1/2BRHS k Branch if Half Carry Flag Set if (H = 1) then PC ← PC + k + 1None 1/2BRHC k Branch if Half Carry Flag Cleared if (H = 0) then PC ← PC + k + 1None 1/2BRTS k Branch if T Flag Set if (T = 1) then PC ← PC + k + 1None 1/2BRTC k Branch if T Flag Cleared if (T = 0) then PC ← PC + k + 1None 1/2BRVS k Branch if Overflow Flag is Set if (V = 1) then PC ← PC + k + 1None 1/2BRVC k Branch if Overflow Flag is Cleared if (V = 0) then PC ← PC + k + 1None 1/2BRIE k Branch if Interrupt Enabled if ( I = 1) then PC ← PC + k + 1None 1/2BRID k Branch if Interrupt Disabled if ( I = 0) then PC ← PC + k + 1None 1/2BIT AND BIT-TEST INSTRUCTIONSSBI P,b Set Bit in I/O Register I/O(P,b) ←1None 2CBI P,b Clear Bit in I/O Register I/O(P,b) ←0None 2LSL Rd Logical Shift Left Rd(n+1) ← Rd(n), Rd(0) ← 0Z,C,N,V 1LSR Rd Logical Shift Right Rd(n) ← Rd(n+1), Rd(7) ← 0Z,C,N,V 1ROLRd Rotate Left Through CarryRd(0)←C,Rd(n+1)← Rd(n),C ←Rd(7)Z,C,N,V19ATtiny2313/V2543IS–AVR–04/06ROR Rd Rotate Right Through CarryRd(7)←C,Rd(n)← Rd(n+1),C ←Rd(0)Z,C,N,V 1ASR Rd Arithmetic Shift Right Rd(n) ← Rd(n+1), n=0..6Z,C,N,V 1SWAP Rd Swap Nibbles Rd(3..0)←Rd(7..4),Rd(7..4)←Rd(3..0)None 1BSET s Flag Set SREG(s) ← 1SREG(s)1BCLR s Flag ClearSREG(s) ← 0 SREG(s)1BST Rr, b Bit Store from Register to T T ← Rr(b)T 1BLD Rd, bBit load from T to Register Rd(b) ← T None 1SEC Set Carry C ←1C 1CLC Clear Carry C ← 0 C 1SEN Set Negative Flag N ← 1N 1CLN Clear Negative Flag N ← 0 N 1SEZ Set Zero Flag Z ←1Z 1CLZ Clear Zero Flag Z ← 0 Z 1SEI Global Interrupt Enable I ←1I 1CLI Global Interrupt Disable I ← 0 I 1SES Set Signed Test Flag S ← 1S 1CLS Clear Signed Test FlagS ← 0S 1SEV Set Twos Complement Overflow.V ← 1V 1CLV Clear Twos Complement Overflow V ← 0V 1SET Set T in SREG T ← 1T 1CLT Clear T in SREGT ← 0T 1SEH Set Half Carry Flag in SREG H ← 1H 1CLHClear Half Carry Flag in SREG H ← 0H 1DATA TRANSFER INSTRUCTIONS MOV Rd, Rr Move Between Registers Rd ← RrNone 1MOVW Rd, Rr Copy Register Word Rd+1:Rd ← Rr+1:Rr None 1LDI Rd, K Load Immediate Rd ←KNone 1LD Rd, X Load IndirectRd ← (X)None 2LD Rd, X+Load Indirect and Post-Inc.Rd ← (X), X ← X + 1None 2LD Rd, - X Load Indirect and Pre-Dec.X ← X - 1, Rd ← (X)None 2LD Rd, Y Load IndirectRd ← (Y)None 2LD Rd, Y+Load Indirect and Post-Inc.Rd ← (Y), Y ← Y + 1None 2LD Rd, - Y Load Indirect and Pre-Dec.Y ← Y - 1, Rd ← (Y)None 2LDD Rd,Y+q Load Indirect with Displacement Rd ← (Y + q)None 2LD Rd, Z Load IndirectRd ← (Z)None 2LD Rd, Z+Load Indirect and Post-Inc.Rd ← (Z), Z ← Z+1None 2LD Rd, -Z Load Indirect and Pre-Dec.Z ← Z - 1, Rd ← (Z)None 2LDD Rd, Z+q Load Indirect with Displacement Rd ← (Z + q)None 2LDS Rd, k Load Direct from SRAM Rd ← (k)None 2ST X, Rr Store Indirect(X) ← RrNone 2ST X+, Rr Store Indirect and Post-Inc.(X) ← Rr, X ← X + 1None 2ST - X, Rr Store Indirect and Pre-Dec.X ← X - 1, (X) ← Rr None 2ST Y, Rr Store Indirect(Y) ← RrNone 2ST Y+, Rr Store Indirect and Post-Inc.(Y) ← Rr, Y ← Y + 1None 2ST - Y, Rr Store Indirect and Pre-Dec.Y ← Y - 1, (Y) ← Rr None 2STD Y+q,Rr Store Indirect with Displacement (Y + q) ← Rr None 2ST Z, Rr Store Indirect(Z) ← RrNone 2ST Z+, Rr Store Indirect and Post-Inc.(Z) ← Rr, Z ← Z + 1None 2ST -Z, Rr Store Indirect and Pre-Dec.Z ← Z - 1, (Z) ← Rr None 2STD Z+q,Rr Store Indirect with Displacement (Z + q) ← Rr None 2STS k, RrStore Direct to SRAM (k) ← Rr None 2LPM Load Program Memory R0 ← (Z)None 3LPM Rd, Z Load Program MemoryRd ← (Z)None 3LPM Rd, Z+Load Program Memory and Post-Inc Rd ← (Z), Z ← Z+1None 3SPM Store Program Memory (Z) ← R1:R0None -IN Rd, P In Port Rd ←P None 1OUT P, Rr Out PortP ← Rr None 1PUSH Rr Push Register on Stack STACK ← Rr None 2POP Rd Pop Register from Stack Rd ← STACKNone 2MCU CONTROL INSTRUCTIONSNOP No Operation None1SLEEP Sleep(see specific descr. for Sleep function)None 1WDRWatchdog Reset(see specific descr. for WDR/timer)None 1BREAKBreakFor On-chip Debug OnlyNoneN/AMnemonicsOperandsDescriptionOperationFlags#Clocks10ATtiny2313/V2543IS–AVR–04/06Ordering InformationNote:1.This device can also be supplied in wafer form. Please contact your local Atmel sales office for detailed ordering informationand minimum quantities.2.Pb-free packaging alternative, complies to the European Directive for Restriction of Hazardous Substances (RoHS direc-tive).Also Halide free and fully Green.3.For Speed vs. V CC, see Figure 82 on page 181 and Figure 83 on page 181.Speed (MHz)(3)Power SupplyOrdering Code Package (1)Operation Range10 1.8 - 5.5VA Ttiny2313V-10PI A Ttiny2313V-10PU (2)A Ttiny2313V-10SI A Ttiny2313V-10SU (2)A Ttiny2313V-10MU (2)20P320P320S 20S 20M1Industrial (-40°C to 85°C)20 2.7 - 5.5VA Ttiny2313-20PI A Ttiny2313-20PU (2)A Ttiny2313-20SI A Ttiny2313-20SU (2)A Ttiny2313-20MU (2)20P320P320S 20S 20M1Industrial (-40°C to 85°C)Package Type20P320-lead, 0.300" Wide, Plastic Dual Inline Package (PDIP)20S 20-lead, 0.300" Wide, Plastic Gull Wing Small Outline Package (SOIC)20M120-pad, 4 x 4 x 0.8 mm Body, Quad Flat No-Lead/Micro Lead Frame Package (MLF)11ATtiny2313/V2543IS–AVR–04/06Packaging Information20P312ATtiny2313/V2543IS–AVR–04/0620S13ATtiny2313/V2543IS–AVR–04/0620M114ATtiny2313/V2543IS–AVR–04/06ErrataThe revision in this section refers to the revision of the ATtiny2313 device.ATtiny2313 Rev B•Wrong values read after Erase Only operation •Parallel Programming does not work •Watchdog Timer Interrupt disabled•EEPROM can not be written below 1.9 volts1.Wrong values read after Erase Only operationAt supply voltages below 2.7 V, an EEPROM location that is erased by the Erase Only operation may read as programmed (0x00).Problem Fix/WorkaroundIf it is necessary to read an EEPROM location after Erase Only, use an Atomic Write operation with 0xFF as data in order to erase a location. In any case, the Write Only operation can be used as intended. Thus no special considerations are needed as long as the erased location is not read before it is programmed.2.Parallel Programming does not workParallel Programming is not functioning correctly. Because of this, reprogramming of the device is impossible if one of the following modes are selected: –In-System Programming disabled (SPIEN unprogrammed)–Reset Disabled (RSTDISBL programmed)Problem Fix/WorkaroundSerial Programming is still working correctly. By avoiding the two modes above, the device can be reprogrammed serially.3.Watchdog Timer Interrupt disabledIf the watchdog timer interrupt flag is not cleared before a new timeout occurs, the watchdog will be disabled, and the interrupt flag will automatically be cleared. This is only applicable in interrupt only mode. If the Watchdog is configured to reset the device in the watchdog time-out following an interrupt, the device works correctly.Problem fix / WorkaroundMake sure there is enough time to always service the first timeout event before a new watchdog timeout occurs. This is done by selecting a long enough time-out period.4.EEPROM can not be written below 1.9 voltsWriting the EEPROM at V CC below 1.9 volts might fail.Problem fix / WorkaroundDo not write the EEPROM when V CC is below 1.9 volts.ATtiny2313 Rev ARevision A has not been sampled.15ATtiny2313/V2543IS–AVR–04/06Datasheet Revision HistoryPlease note that the referring page numbers in this section are referred to this docu-ment. The referring revision in this section are referring to the document revision.Changes from Rev. 2514H-02/05 to Rev. 2514I-04/06Changes from Rev. 2514G-10/04 to Rev. 2514H-02/05Changes from Rev. 2514F-08/04 to Rev. 2514G-10/04Changes from Rev. 2514E-04/04 to Rev. 2514F-08/041.Updated typos.2.Updated Figure 1 on page 2.3Added “Resources” on page 6.4.Updated “Default Clock Source” on page 25.5.Updated “128 kHz Internal Oscillator” on page 30.6.Updated “Power Management and Sleep Modes” on page 337.Updated Table 3 on page 25,Table 13 on page 33, Table 14 on page 34,Table 19 on page 45, Table 31 on page 63, Table 79 on page 180.8.Updated “External Interrupts” on page 62.9.Updated “Bit 7..0 – PCINT7..0: Pin Change Enable Mask 7..0” on page 65.10.Updated “Bit 6 – ACBG: Analog Comparator Bandgap Select” on page 153.11.Updated “Calibration Byte” on page 164.12.Updated “DC Characteristics” on page 181.13.Updated “Register Summary” on page 6.14.Updated “Ordering Information” on page 10.15.Changed occurences of OCnA to OCFnA, OCnB to OCFnB and OC1x to OCF1x.1.Updated Table 6 on page 24, Table 15 on page 34, Table 68 on page 161and Table 80 on page 180.2.Changed CKSEL default value in “Default Clock Source” on page 22 to 8 MHz.3.Updated “Programming the Flash” on page 166, “Programming the EEPROM” on page 168 and “Enter Programming Mode” on page 164.4.Updated “DC Characteristics” on page 178.5.MLF option updated to “Quad Flat No-Lead/Micro Lead Frame (QFN/MLF)”1.Updated “Features” on page 1.2.Updated “Pinout ATtiny2313” on page 2.3.Updated “Ordering Information” on page 10.4.Updated “Packaging Information” on page 11.5.Updated “Errata” on page 14.1.Updated “Features” on page 1.2.Updated “Alternate Functions of Port B” on page 53.3.Updated “Calibration Byte” on page 161.16ATtiny2313/V2543IS–AVR–04/06Changes from Rev. 2514D-03/04 to Rev. 2514E-04/04Changes from Rev. 2514C-12/03 to Rev. 2514D-03/04Changes from Rev. 2514B-09/03 to Rev. 2514C-12/03Changes from Rev. 2514A-09/03 to Rev. 2514B-09/034.Moved Table 69 on page 161 and Table 70 on page 162 to “Page Size”on page 161.5.Updated “Enter Programming Mode” on page 164.6.Updated “Serial Programming Algorithm” on page 174.7.Updated Table 78 on page 175.8.Updated “DC Characteristics” on page 178.9.Updated “ATtiny2313 Typical Characteristics” on page 182.10.Changed occurences of PCINT15 to PCINT7, EEMWE to EEMPE and EEWE to EEPE in the document.1.Speed Grades changed - 12MHz to 10MHz - 24MHz to 20MHz2.Updated Figure 1 on page 2.3.Updated “Ordering Information” on page 10.4.Updated “Maximum Speed vs. V CC ” on page 181.5.Updated “ATtiny2313 Typical Characteristics” on page 182.1.Updated Table 2 on page 22.2.Replaced “Watchdog Timer” on page 39.3.Added “Maximum Speed vs. V CC ” on page 181.4.“Serial Programming Algorithm” on page 174 updated.5.Changed mA to µA in preliminary Figure 136 on page 208.6.“Ordering Information” on page 10 updated. MLF package option removed7.Package drawing “20P3” on page 11 updated.8.Updated C-code examples.9.Renamed instances of SPMEN to SELFPRGEN, Self Programming Enable.1.Updated “Calibrated Internal RC Oscillator” on page 24.1.Fixed typo from UART to USART and updated Speed Grades and Power Consumption Estimates in “Features” on page 1.2.Updated “Pin Configurations” on page 2.3.Updated Table 15 on page 34 and Table 80 on page 180.4.Updated item 5 in “Serial Programming Algorithm” on page 174.5.Updated “Electrical Characteristics” on page 178.6.Updated Figure 82 on page 181 and added Figure 83 on page 181.7.Changed SFIOR to GTCCR in “Register Summary” on page 6.8.Updated “Ordering Information” on page 10.9.Added new errata in “Errata” on page 14.2543IS–AVR–04/06© Atmel Corporation 2006. All rights reserved. Atmel ®, logo and combinations thereof, Everywhere You Are ®, AVR ®, AVR Studio ®, and others,are registered trademarks or trademarks of Atmel Corporation or its subsidiaries. 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