NRLM222M16V22X45F中文资料

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超特克 DSFP-VN2222LL 增强模式 DMOS 电阻开关说明书

超特克 DSFP-VN2222LL 增强模式 DMOS 电阻开关说明书

Supertex inc.VN2222LLYY = Year Sealed WW = Week Sealed= “Green” PackagingSi VN 2222L LYYWW Features►Free from secondary breakdown ►Low power drive requirement ►Ease of paralleling►Low C ISS and fast switching speeds ►Excellent thermal stability ►Integral source-drain diode►High input impedance and high gainApplications►Motor controls ►Converters ►Amplifiers ►Switches►Power supply circuits►Drivers (relays, hammers, solenoids, lamps, memories, displays, bipolar transistors, etc.)General DescriptionThis enhancement-mode (normally-off) transistor utilizes a vertical DMOS structure and Supertex’s well-proven, silicon-gate manufacturing process. This combination produces a device with the power handling capabilities of bipolar transistors and the high input impedance and positive temperature coefficient inherent in MOS devices. Characteristic of all MOS structures, this device is free from thermal runaway and thermally-induced secondary breakdown.Supertex’s vertical DMOS FETs are ideally suited to a wide range of switching and amplifying applications where very low threshold voltage, high breakdown voltage, high input impedance, low input capacitance, and fast switching speeds are desired.N-Channel Enhancement-ModeVertical DMOS FETAbsolute Maximum Ratings are those values beyond which damage to the device may occur. Functional operation under these conditions is not implied. Continuous operation of the device at the absolute rating level may affect device reliability. All voltages are referenced to device ground.TO-92Product MarkingPackage may or may not include the following marks: Si orPin ConfigurationTO-92GATESOURCEDRAINContact factory for Wafer / Die availablity.Devices in Wafer / Die form are lead (Pb)-free / RoHS compliant.Notes:1. All D.C. parameters 100% tested at 25O C unless otherwise stated. (Pulse test: 300µs pulse, 2% duty cycle.)2. All A.C. parameters sample tested.Switching Waveforms and Test CircuitOUTPUTINPUTOUTPUT10VVDD0V0V† I D (continuous) is limited by max rated T j .Supertex inc. does not recommend the use of its products in life support applications, and will not knowingly sell them for use in such applications unless it receives an adequate “product liability indemnification insurance agreement.” Supertex inc. does not assume responsibility for use of devices described, and limits its liability to the replacement of the devices determined defective due to workmanship. No responsibility is assumed for possible omissions and inaccuracies. Circuitry and specifications are subject to change without notice. For the latest product specifications refer to the Supertex inc. (website: http//)©2013 Supertex inc. All rights reserved. Unauthorized use or reproduction is prohibited.Supertex inc.(The package drawing(s) in this data sheet may not reflect the most current specifications. For the latest package outline information go to /packaging.html .)3-Lead TO-92 Package Outline (LL)JEDEC Registration TO-92.* This dimension is not specified in the JEDEC drawing.† This dimension differs from the JEDEC drawing.Drawings not to scale.Supertex Doc.#: DSPD-3TO92N3, Version E041009.。

韩国, 日本, 美国 产 品 型 号 对 照 表

韩国, 日本, 美国  产 品 型 号 对 照 表

* U:PET可揭型 U:PET可揭型. 可揭型
*C:防滑处理 防滑处理
*NF:PSR, LM/LMS防火产品 防火产品
ห้องสมุดไป่ตู้
韩国婚纱照韩国明星机场照韩国明星素颜照韩国拍婚纱照韩国明星婚纱照韩国产的汽车韩国明星童年照去韩国拍婚纱照
韩国, 日本, 韩国 日本 美国 产 品 型 号 对 照 表
韩国NANOCELL 厚度 厚度(mm) 韩国 PSR-02 PSR-03 PSR-04 PSR-05 PSR-07 PSR-08 PSR-10 PSR-12 PSR-15 PSR-20 PSR-25 PSR-30 PSR-40 ESR-05 LMS-05(NF) LMS-07(NF) LMS-08(NF) LMS-10(NF) LMS-12(NF) LMS-15(NF) LMS-20(NF) LMS-25(NF) LMS-30(NF) LM-03(NF) LM-05(NF) LM-07(NF) LM-08(NF) LM-10(NF) LM-12(NF) LM-15(NF) LM-20(NF) LM-25(NF) LM-30(NF) LM-35(NF) LM-40(NF) VFR-15(C)(U) VFR-20(C)(U) VFR-25(C)(U) VFR-30(C)(U) VFR-40(C)(U) 0.2 0.3 0.4 0.5 0.7 0.8 1.0 1.2 1.5 2.0 2.5 3.0 4.0 0.5 0.5 0.7 0.8 1.0 1.2 1.5 2.0 2.5 3.0 0.3 0.5 0.7 0.8 1.0 1.2 1.5 2.0 2.5 3.0 3.5 4.0 1.5 2.0 2.5 3.0 4.0 日本R.I.C 日本 SRS-70P SRS-48P SRS-40P SRS-40P SRS-40P SRS-40P SRS-40P SRS-40P SRS-32P SRS-32P SRS-32P SRS-32P SRS-24P SRS-15P LE-20(MS-40) LE-20(MS-40) LE-20(MS-40) LE-20(MS-40) LE-20(MS-40) LE-20(MS-40) LE-20(MS-40) LE-20(MS-40) LE-20(MS-40) L(ML)-32 L(ML)-32 L(ML)-32 L(ML)-32 L(ML)-32 L(ML)-32 L(ML)-32 L(ML)-32 L(ML)-32 L(ML)-32 L(ML)-32 L(ML)-32 MO-48(C) MO-48(C) MO-48(C) MO-48(C) MO-48(C) 4701-30-15020-04 4701-30-15028-04 4701-30-15031-04 4701-30-15039-04 4701-30-15047-04 4701-30-15059-04 4701-30-15079-04 4701-30-15098-04 4701-30-15120-04 4701-40-20012-04 4701-40-20020-04 4701-40-20028-04 4701-40-20031-04 4701-40-20039-04 4701-40-20047-04 4701-40-20059-04 4701-40-20079-04 4701-40-20098-04 4701-40-20120-04 4701-40-20138-04 4701-40-20157-04 4790-92-30012-04 4790-92-25016-04 4790-92-25020-04 4790-92-25028-04 4790-92-25031-04 4790-92-25039-04 4790-92-25047-04 4790-92-20059-04 4790-92-20079-04 4790-92-20098-04 4790-92-20118-04 4790-92-20157-04 美国ROGERS 美国 韩国NANOCELL 厚度 厚度(mm) 韩国 ES-05 ES-07 ES-08 ES-10 ES-12 ES-15 ES-20 ESR-07 ESR-08 ESR-10 ESR-12 ESR-15 ESR-20 HMS-05 HMS-08 HMS-10 HMS-15 HMS-20 HMS-25 HMS-30 HMS-40 HM-05(C) HM-08(C) HM-10(C) HM-15(C)(U) HM-20(C)(U) HM-25(C)(U) HM-30(C)(U) HM-40(C)(U) VHM-05(C)(U) VHM-08(C)(U) VHM-10(C)(U) VHM-15(C)(U) VHM-20(C)(U) VHM-25(C)(U) VHM-30(C)(U) VHM-40(C)(U) 0.5 0.7 0.8 1.0 1.2 1.5 2.0 0.7 0.8 1.0 1.2 1.5 2.0 0.5 0.8 1.0 1.5 2.0 2.5 3.0 4.0 0.5 0.8 1.0 1.5 2.0 2.5 3.0 4.0 0.5 0.8 1.0 1.5 2.0 2.5 3.0 4.0 日本R.I.C 日本 SS-24P SS-24P SS-24P SS-24P SS-24P SS-24P SS-24P SRS-15P SRS-15P SRS-15P SRS-15P SRS-15P SRS-15P H-32 H-32 H-32 H-32 H-32 H-32 H-32 H-32 H-48(C) H-48(C) H-48(C) H-48(C) H-48(C) H-48(C) H-48(C) H-48(C) HH-48(C) HH-48(C) HH-48(C) HH-48(C) HH-48(C) HH-48(C) HH-48(C) HH-48(C) 4701-50-20020-04 4701-50-20031-04 4701-50-20039-04 4701-50-20059-04 4701-50-20079-04 4701-50-20098-04 4701-50-20118-04 4701-50-20157-04 4701-50-30020-04 4701-50-30031-04 4701-50-30039-04 4701-50-30059-04 4701-50-30079-04 4701-60-30098-04 4701-60-30118-04 4701-60-30157-04 4701-60-25020-04 4701-60-25031-04 4701-60-25039-04 4701-60-25059-04 4701-60-25079-04 4701-60-25098-04 4701-60-25118-04 4701-60-25157-04 美国ROGERS 美国

RE22R2AMR产品数据手册说明书

RE22R2AMR产品数据手册说明书

RE22R2AMR.T h e i n f o r m a t i o n p r o v i d e d i n t h i s d o c u m e n t a t i o n c o n t a i n s g e n e r a l d e s c r i p t i o n s a n d /o r t e c h n i c a l c h a r a c t e r i s t i c s o f t h e p e r f o r m a n c e o f t h e p r o d u c t s c o n t a i n e d h e r e i n .T h i s d o c u m e n t a t i o n i s n o t i n t e n d e d a s a s u b s t i t u t e f o r a n d i s n o t t o b e u s e d f o r d e t e r m i n i n g s u i t a b i l i t y o r r e l i a b i l i t y o f t h e s e p r o d u c t s f o r s p e c i f i c u s e r a p p l i c a t i o n s .I t i s t h e d u t y o f a n y s u c h u s e r o r i n t e g r a t o r t o p e r f o r m t h e a p p r o p r i a t e a n d c o m p l e t e r i s k a n a l y s i s , e v a l u a t i o n a n d t e s t i n g o f t h e p r o d u c t s w i t h r e s p e c t t o t h e r e l e v a n t s p e c i f i c a p p l i c a t i o n o r u s e t h e r e o f .N e i t h e r S c h n e i d e r E l e c t r i c I n d u s t r i e s S A S n o r a n y o f i t s a f f i l i a t e s o r s u b s i d i a r i e s s h a l l b e r e s p o n s i b l e o r l i a b l e f o r m i s u s e o f t h e i n f o r m a t i o n c o n t a i n e d h e r e i n .Product data sheetCharacteristicsRE22R2AMROn-delay Timing Relay - 0.05s…300h - 24…240V AC/DC - 2C/OMainRange of product Zelio TimeProduct or component typeModular timing relay Discrete output type Relay Device short name RE22Nominal output current8 AComplementaryContacts type and composition 1 C/O timed or instantaneous contact, cadmium free 1 C/O timed contact, cadmium free Time delay type A AwTime delay range0.3...3 s 1...10 s 0.05...1 s 3...30 s 10...100 s 30...300 s 3...30 min 30...300 min 3...30 h 30...300 hControl typeExternal potentiometer Diagnostic button Rotary knob[Us] rated supply voltage 24...240 V AC/DC at 50/60 Hz Release input voltage <= 2.4 V Voltage range 0.85...1.1 Us Supply frequency 50...60 Hz (+/- 5 %)Connections - terminalsScrew terminals : 2 x 0.2...2 x 1.5 mm², AWG 24...AWG 16 flexible cable with ca-ble endScrew terminals : 1 x 0.2...1 x 2.5 mm², AWG 24...AWG 14 flexible cable with ca-ble endScrew terminals : 2 x 0.5...2 x 2.5 mm², AWG 20...AWG 14 solid cable without cable endScrew terminals : 1 x 0.5...1 x 3.3 mm², AWG 20...AWG 12 solid cable without cable endTightening torque 0.6...1 N.m conforming to IEC 60947-1Housing material Self-extinguishingRepeat accuracy +/- 0.5 % conforming to IEC 61812-1Temperature drift +/- 0.05 %/°C Voltage drift+/- 0.2 %/VSetting accuracy of time delay +/- 10 % of full scale at 25 °C conforming to IEC 61812-1Control signal pulse width 30 ms100 ms (with load in parallel)Insulation resistance 100 MOhm at 500 V DC conforming to IEC 60664-1Recovery time120 ms (on de-energisation)Immunity to microbreaks <= 10 ms Power consumption in VA3 VA at 240 V ACPower consumption in W 1.5 W at 240 V DCSwitching capacity in VA2000 VAMinimum switching current10 mA 5 V DCMaximum switching current8 AMaximum switching voltage250 V ACElectrical durability100000 cycles for 2 A at 24 V DC-1100000 cycles for 8 A at 250 V AC-1Mechanical durability10000000 cyclesRated impulse withstand voltage 5 kV for 1.2...50 µs conforming to IEC 60664-1Power on delay< 100 msCreepage distance 4 kV/3 conforming to IEC 60664-1Overvoltage category III conforming to IEC 60664-1Mounting position Any positionMounting support35 mm DIN rail conforming to EN/IEC 60715Status LED Yellow LED (slow flashing) for timing in progress and output relay energisedYellow LED (fast flashing) for timing in progress and output relay de-energisedYellow LED (steady) for output relay energisedGreen LED backlight (steady) for dial pointer indicationProduct weight0.105 kgEnvironmentDielectric strength 2.5 kV for 1 mA/1 minute at 50 Hz between relay output and power supply withbasic insulation conforming to IEC 61812-1Standards IEC 61812-1UL 508Directives2004/108/EC - electromagnetic compatibility2006/95/EC - low voltage directiveProduct certifications CCCCECSAGLULRCMEACChina RoHSAmbient air temperature for operation-20...60 °CAmbient air temperature for storage-40...70 °CIP degree of protection IP50 (front panel) conforming to IEC 60529IP20 (terminals) conforming to IEC 60529IP40 (housing) conforming to IEC 60529Pollution degree 3 conforming to IEC 60664-1Vibration resistance20 m/s² (f = 10...150 Hz) conforming to IEC 60068-2-6Shock resistance 5 gn (in operation) (duration = 11 ms) conforming to IEC 60068-2-2715 gn (not operating) (duration = 11 ms) conforming to IEC 60068-2-27 Relative humidity95 % at 25...55 °CElectromagnetic compatibility Immunity to microbreaks and voltage drops (test level: 100 % - 20 ms) conform-ing to IEC 61000-4-11Immunity to microbreaks and voltage drops (test level: 30 % - 500 ms) conform-ing to IEC 61000-4-11Fast transient bursts (test level: 2 kV, level 3 - direct contact) conforming to IEC61000-4-4Conducted RF disturbances (test level: 10 V, level 3 - 0.15...80 MHz) conformingto IEC 61000-4-6Radiated radio-frequency electromagnetic field immunity test (test level: 10 V/m,level 3 - 80 MHz...1 GHz) conforming to IEC 61000-4-3Electrostatic discharge (test level: 8 kV, level 3 - air discharge) conforming to IEC61000-4-2Electrostatic discharge (test level: 6 kV, level 3 - contact discharge) conforming toIEC 61000-4-2Surge immunity test (test level: 2 kV, level 3 - common mode) conforming to IEC61000-4-5Surge immunity test (test level: 1 kV, level 3 - differential mode) conforming toIEC 61000-4-5Fast transients immunity test (test level: 1 kV, level 3 - capacitive connecting clip)conforming to IEC 61000-4-4Product data sheetRE22R2AMR Dimensions DrawingsDimensionsProduct data sheetRE22R2AMR Connections and SchemaWiring DiagramProduct data sheetRE22R2AMRTechnical DescriptionFunction A: Power On-DelayDescriptionOn energisation of power supply, the timing period T starts. After timing, the output(s) R close(s).The second output (R2) can be either timed (when set to "TIMED") or instantaneous (when set to "INST").Function: 1 OutputFunction: 2 OutputsFunction Aw : Power On-Delay With Retrigger / Restart ControlDescriptionOn energisation of power supply, the timing period T starts.At the end of the timing period T, the output(s) R close(s).Energization of Y1 makes the output(s) R open(s).Deenergization of Y1 restarts timing period T.At the end of timing period T, the output(s) R close(s).The second output (R2) can be either timed (when set to "TIMED") or instantaneous (when set to "INST")Function: 1 OutputFunction: 2 OutputsLegendRelay de-energisedRelay energisedOutput openOutput closedUSupply-TTiming period-R1/2 timed outputsR2-R2The second output is instantaneous if the right position is selected inst.-Retrigger / Restart controlY1-RE22R2AMR.。

NRLM222M16V22X35F中文资料

NRLM222M16V22X35F中文资料

Large Can Aluminum Electrolytic CapacitorsFEATURES• NEW SIZES FOR LOW PROFILE AND HIGH DENSITY DESIGN OPTIONS • EXPANDED CV VALUE RANGE• HIGH RIPPLE CURRENT• LONG LIFE • CAN-TOP SAFETY VENT• DESIGNED AS INPUT FILTER OF SMPS • STANDARD 10mm (.400") SNAP-IN SPACING NRLM SeriesSPECIFICATIONS(* 47,000µF add 0.14, 68,000µF add 0.35.)Notice for MountingThe space from the top of the can shall be more than (3mm) from chassis or other construction materials so that safety vent has room to expand in case of emer g en c y.Sleeve Color: DarkBlueCan Top Safety VentInsulation Sleeve and Minus Polarity Marking(4.0mm Leads Available As Option)D+1Max.L ± 26.3 ± 10.810(-)(+)MAXIMUM EX P AN S IONFOR SAFETY VENT Approx. 3.0mmRecommended PC Board Mounting Holes:10 ± .1∅= 2 ± 0.1D ∅ ± 0.5ChassisPC BoardPRECAUTIONSPlease review the notes on correct use, safety and precautions found on pages T10 & T11of NIC’s Electrolytic Capacitor catalog . Operating Temperature Range-40 ~ +85°C-25 ~ +85°C Rated Voltage Range 16 ~ 250Vdc 350 ~ 450Vdc Rated Capacitance Range 180 ~ 68,000µF56 ~ 680µFCapacitance Tolerance ±20% (M)Max. Leakage Current (µA)After 5 minutes (20°C)3 x C(µF)VMax. Tan δat 120Hz/20°C W.V. (Vdc)162535506380100160~450Tan δ max.0.50*0.40*0.350.300.250.200.200.15Surge VoltageW.V. (Vdc)162535506380100160S.V. (Vdc)2032446379100125200W.V. (Vdc)180200250350400450--S.V. (Vdc)220250300400450500--Ripple CurrentCorrection Factors Frequency (Hz)50601001205001K 10K ~ 50K -Multiplier at 85°C0.750.800.95 1.00 1.05 1.08 1.15-Low TemperatureStability (10 to 250Vdc)Temperature (°C)0-25-40-----Capacitance Change-5%-15%-30%-----Impedance Ratio 1.539-----Load Life Test2,000 hours at +85°CCapacitance ChangeWithin ±20% of initial measured value Tan δLess than 200% of specifi ed maximum valueLeakage Current Less than specifi ed maximum value Shelf Life Test1,000 hours at +85°C (no load)Capacitance Change Within ±20% of initial measured value Tan δLess than 200% of specifi ed maximum valueLeakage Current Less than specifi ed maximum value Surge Voltage Test Per JIS-C-5141 (table #6, #4)Surge voltage applied: 30 seconds"On" and 5.5 minutes no voltage "Off"Capacitance Change Within ±20% of initial measured value Tan δLess than 200% of specifi ed maximum valueLeakage Current Less than specifi ed maximum value Soldering EffectRefer to MIL-STD-202F Method 210A Capacitance Change Within ±10% of initial measured valueTan δLess than specifi ed maximum value Leakage CurrentLess than specifi ed maximum valueRoHS Compliantincludes all homogeneous materials*See Part Number System for DetailsLarge Can Aluminum Electrolytic CapacitorsNRLM SeriesNRLM 222 M 50V 20X25 FRoHS compliant Case Size (mm) Voltage Rating Tolerance Code PART NUMBER SYSTEMLarge Can Aluminum Electrolytic Capacitors NRLM Series STANDARD PRODUCT LIST, CASE SIZE AND SPECIFICATIONS。

MMPQ2222中文资料

MMPQ2222中文资料

v 300 ms; Duty Cycle v 2.0%.
Thermal Clad is a trademark of the Bergquist Company
Preferred devices are Motorola recommended choices for future use and best overall value.
toff

250

ns
v 300 ms; Duty Cycle v 2.ignal Transistors, FETs and Diodes Device Data
元器件交易网
MMPQ2222 MMPQ2222A
INFORMATION FOR USING THE SO–16 SURFACE MOUNT PACKAGE
SOLDERING PRECAUTIONS
The melting temperature of solder is higher than the rated temperature of the device. When the entire device is heated to a high temperature, failure to complete soldering within a short time could result in device failure. Therefore, the following items should always be observed in order to minimize the thermal stress to which the devices are subjected. • Always preheat the device. • The delta temperature between the preheat and soldering should be 100°C or less.* • When preheating and soldering, the temperature of the leads and the case must not exceed the maximum temperature ratings as shown on the data sheet. When using infrared heating with the reflow soldering method, the difference shall be a maximum of 10°C. • The soldering temperature and time shall not exceed 260°C for more than 10 seconds. • When shifting from preheating to soldering, the maximum temperature gradient shall be 5°C or less. • After soldering has been completed, the device should be allowed to cool naturally for at least three minutes. Gradual cooling should be used as the use of forced cooling will increase the temperature gradient and result in latent failure due to mechanical stress. • Mechanical stress or shock should not be applied during cooling. * Soldering a device without preheating can cause excessive thermal shock and stress which can result in damage to the device.

MMPQ2222A;FFB2222A;中文规格书,Datasheet资料

MMPQ2222A;FFB2222A;中文规格书,Datasheet资料

ON CHARACTERISTICS
hFE DC Current Gain IC = 0.1 mA, VCE = 10 V IC = 1.0 mA, VCE = 10 V IC = 10 mA, VCE = 10 V IC = 150 mA, VCE = 10 V* IC = 150 mA, VCE = 1.0 V* IC = 500 mA, VCE = 10 V* IC = 150 mA, IB = 15 mA IC = 500 mA, IB = 50 mA IC = 150 mA, IB = 15 mA IC = 500 mA, IB = 50 mA 35 50 75 100 50 40
*Pulse Test: Pulse Width ≤ 300 µs, Duty Cycle ≤ 2.0%
Spice Model
NPN (Is=14.34f Xti=3 Eg=1.11 Vaf=74.03 Bf=255.9 Ne=1.307 Ise=14.34f Ikf=.2847 Xtb=1.5 Br=6.092 Nc=2 Isc=0 Ikr=0 Rc=1 Cjc=7.306p Mjc=.3416 Vjc=.75 Fc=.5 Cje=22.01p Mje=.377 Vje=.75 Tr=46.91n Tf=411.1p Itf=.6 Vtf=1.7 Xtf=3 Rb=10)
Thermal Characteristics
Symbol
PD RθJA
TA = 25°C unless otherwise noted
Characteristic
Total Device Dissipation Derate above 25°C Thermal Resistance, Junction to Ambient Effective 4 Die Each Die FFB2222A 300 2.4 415

2N2222中文资料_数据手册_参数

2N2222中文资料_数据手册_参数
NPN switching transistors
Product specification
2N2222; 2N2222A
SYMBOL
PARAMETER
CONDITIONS
MIN. MAX. UNIT
Switching times (between 10% and 90% levels); see Fig.2
DISCRETE SEMICONDUCTORS
DATA SHEET
M3D125
2N2222; 2N2222A NPN switching transistors
Product specification Supersedes data of September 1994 File under Discrete Semiconductors, SC04
DC current gain 2N2222A
IE = 0; VCB = 60 V IE = 0; VCB = 60 V; Tamb = 150 °C IC = 0; VEB = 3 V IC = 0.1 mA; VCE = 10 V IC = 1 mA; VCE = 10 V IC = 10 mA; VCE = 10 V IC = 150 mA; VCE = 1 V; note 1 IC = 150 mA; VCE = 10 V; note 1 IC = 10 mA; VCE = 10 V; Tamb = −55 °C
SYMBOL
PARAMETER
Rth j-a Rth j-c
thermal resistance from junction to ambient thermal resistance from junction to case
CONDITIONS in free air

村田电容型号含义

村田电容型号含义

更详细的请参考:品名表示法片状独石陶瓷电容器(品名)GR M 18 8 R7 1C 225 K E15 DGRM————表示镀锡电极品(普通贴片陶瓷电容)常用的村田电容就是GRM普通贴片陶瓷电容与GNM普通贴片排容。

18 ————表示尺寸(长*宽)(1.6*0.8mm)国内通用尺寸表示是(长*宽)1.6*0.8mm(单位为mm).国际上通用尺寸表示是用英0603(单位为inch),村田的常用代码有03,15,18,21,31,32,42,43,55等,具体的对应值如下:03----0.6*0.3mm----0201 15----1.0*0.5mm----0402 18----1.6*0.8mm----0603 21----2.0*1.25mm----0805 31----3.2*1.6mm----1206 32----3.2*1.5mm----1210 42----4.5*2.0mm----1808 43----4.5*3.2mm----1812 55----5.7*5.0mm----22208 ————表示厚度(T)(0.8mm)常用厚度村田代码有5,6,8,9,B,C,E等,具体的对应值如下:5----0.5mm 6----0.6mm 8----0.8mm 9----0.9mm B----1.25mm C----1.6mm E----2.5mmR7 ————表示材质(X7R)常用材质村田代码有5C,R6,R7,F5等,具体的对应值如下:5C----COG/NPO/CH R6----X5R R7----X7R F5-----Y5V5C工作温度是-55度——+125度,温度系数是0+-30ppm/度;R6工作温度是-55度——+85度,温度系数是+-15%;R7工作温度是-55度——+125度,温度系数是+-15%;F5工作温度是-30度——+85度。

温度系数是+22,-82%100pf以下小容值的一般采用5C材质,100PF——1uf的一般采用R7材质,1uf以上一般采用R6材质,精度要求不高的一般采用F5材质。

NRLM332M50V30X30XF中文资料

NRLM332M50V30X30XF中文资料

Large Can Aluminum Electrolytic CapacitorsFEATURES• NEW SIZES FOR LOW PROFILE AND HIGH DENSITY DESIGN OPTIONS • EXPANDED CV VALUE RANGE• HIGH RIPPLE CURRENT• LONG LIFE • CAN-TOP SAFETY VENT• DESIGNED AS INPUT FILTER OF SMPS • STANDARD 10mm (.400") SNAP-IN SPACING NRLM SeriesSPECIFICATIONS(* 47,000µF add 0.14, 68,000µF add 0.35.)Notice for MountingThe space from the top of the can shall be more than (3mm) from chassis or other construction materials so that safety vent has room to expand in case of emer g en c y.Sleeve Color: DarkBlueCan Top Safety VentInsulation Sleeve and Minus Polarity Marking(4.0mm Leads Available As Option)D+1Max.L ± 26.3 ± 10.810(-)(+)MAXIMUM EX P AN S IONFOR SAFETY VENT Approx. 3.0mmRecommended PC Board Mounting Holes:10 ± .1∅= 2 ± 0.1D ∅ ± 0.5ChassisPC BoardPRECAUTIONSPlease review the notes on correct use, safety and precautions found on pages T10 & T11of NIC’s Electrolytic Capacitor catalog . Operating Temperature Range-40 ~ +85°C-25 ~ +85°C Rated Voltage Range 16 ~ 250Vdc 350 ~ 450Vdc Rated Capacitance Range 180 ~ 68,000µF56 ~ 680µFCapacitance Tolerance ±20% (M)Max. Leakage Current (µA)After 5 minutes (20°C)3 x C(µF)VMax. Tan δat 120Hz/20°C W.V. (Vdc)162535506380100160~450Tan δ max.0.50*0.40*0.350.300.250.200.200.15Surge VoltageW.V. (Vdc)162535506380100160S.V. (Vdc)2032446379100125200W.V. (Vdc)180200250350400450--S.V. (Vdc)220250300400450500--Ripple CurrentCorrection Factors Frequency (Hz)50601001205001K 10K ~ 50K -Multiplier at 85°C0.750.800.95 1.00 1.05 1.08 1.15-Low TemperatureStability (10 to 250Vdc)Temperature (°C)0-25-40-----Capacitance Change-5%-15%-30%-----Impedance Ratio 1.539-----Load Life Test2,000 hours at +85°CCapacitance ChangeWithin ±20% of initial measured value Tan δLess than 200% of specifi ed maximum valueLeakage Current Less than specifi ed maximum value Shelf Life Test1,000 hours at +85°C (no load)Capacitance Change Within ±20% of initial measured value Tan δLess than 200% of specifi ed maximum valueLeakage Current Less than specifi ed maximum value Surge Voltage Test Per JIS-C-5141 (table #6, #4)Surge voltage applied: 30 seconds"On" and 5.5 minutes no voltage "Off"Capacitance Change Within ±20% of initial measured value Tan δLess than 200% of specifi ed maximum valueLeakage Current Less than specifi ed maximum value Soldering EffectRefer to MIL-STD-202F Method 210A Capacitance Change Within ±10% of initial measured valueTan δLess than specifi ed maximum value Leakage CurrentLess than specifi ed maximum valueRoHS Compliantincludes all homogeneous materials*See Part Number System for DetailsLarge Can Aluminum Electrolytic CapacitorsNRLM SeriesNRLM 222 M 50V 20X25 FRoHS compliant Case Size (mm) Voltage Rating Tolerance Code PART NUMBER SYSTEMLarge Can Aluminum Electrolytic Capacitors NRLM Series STANDARD PRODUCT LIST, CASE SIZE AND SPECIFICATIONS。

VIPer22A应用中文资料

VIPer22A应用中文资料

AN2097应用说明VIPower:采用VIPer22A的10W空调开关电源1. 摘要新的空调机采用两个主低压输出给内部电子设备供电。

这两个主输出的低压分别是+12V和+5V。

低输出电压是由一个内部开关电源产生。

这个开关电源需要以下多个重要特性:效率高,重量轻,尺寸小,待机功耗低等。

设计人员利用VIPerX2系列产品可以开发出一个含有所有这些重要功能的电源,因此,该系列产品是开发空调应用的最理想的解决方案,特别是下文介绍的电路板是为改进图1所示的特性而专门开发的,本文在表1列举的技术规格方面讨论了空调开关电源应用。

表1:电气规格图1:电路板布局1. VIPERX2A 描述VIPerX2A 是一个单封装的产品,在同一颗芯片上整合了一个专用电流式PWM控制器和一个高压功率场效应MOS晶体管。

这种方法可以减少组件数量,降低系统成本,简化电路板设计。

因此,这个产品家族广泛用于离线开关式电源。

此外,该系列产品还采用微型的SMD封装 (SO-8)。

VIPer 系列的待机功耗(小于1W)符合蓝天使和能源之星等节能标准。

1.1. 一般特性VIPerx2A 产品采用ST的VIPower M0-3 高压专利技术,M0-3 高压技术利用一个P型掩埋层的方法,允许在同一颗芯片上集成低压系统(PWM)和电流垂直流动的功率级,如图2所示。

VIPerX2A 产品有以下一般特性:-自动热关断-高压启动电流源输入交流电压范围85-265Vac输出112V输出25V/400mA(连接输出1的线性稳压器)纹波电流<50mA连续电流输出电流(12V和5V)600mA峰值电流,小于5分钟待机功耗<1W-防止输出短路导致击穿故障的打嗝(HICCUP)模式-保证低负载条件下低功耗的突发模式而且,VIPower M0-3技术还可用于开发最小击穿电压为730V 的功率场效应MOS 晶体管。

表2说明了该产品在不同的封装和工作条件下的功率处理能力。

N2222A中文资料

N2222A中文资料

300
VCE(sat) VBE(sat)
Collector-Emitter Saturation Voltage* Base-Emitter Saturation Voltage*
0.6
0.3 1.0 1.2 2.0
V V V V
SMALL SIGNAL CHARACTERISTICS
fT Cobo Cibo rb’CC NF Re(hie) Current Gain - Bandwidth Product Output Capacitance Input Capacitance Collector Base Time Constant Noise Figure Real Part of Common-Emitter High Frequency Input Impedance
TA = 25°C unless otherwise noted
Parameter
Value
40 75 6.0 1.0 -55 to +150
Units
V V V A °C
Operating and Storage Junction Temperature Range
*These ratings are limiting values above which the serviceability of any semiconductor device may be impaired.
Typical Characteristics
Typical Pulsed Current Gain vs Collector Current
500
VCE = 5V
VCESAT- COLLECTOR-EMITTER VOLTAGE (V)

电解电容2220 -回复

电解电容2220 -回复

电解电容2220 -回复什么是电解电容2220?电解电容2220是一种电容器件,常被用于电子电路中。

它由两个导电板之间夹带一层电解电介质而组成,可以以电导能力储存电荷。

电解电容器的主要构成部分是电解液、正极(阳极)、负极(阴极)三个部分。

电解电容2220是电解电容器的一种规格型号,它的尺寸为2.2毫米宽、2.0毫米高。

这个规格尺寸可以根据具体的电路设计需求,选择适当的电容值和工作电压等参数进行使用。

电解电容器的电介质层通常是一层很薄的氧化铝膜,这是通过在铝阳极表面进行阳极氧化得到的。

在电解液的作用下,铝阳极上的铝原子会氧化成铝离子,并向电解液中移动,这时铝阳极表面会形成一层很薄的氧化铝膜。

这层氧化铝膜是电解电容器中的电介质。

电解电容器的电介质层很薄,但它具有很大的比表面积,可以存储大量的电荷。

由于电解液中的铝离子在电解液中移动,所以电解电容器也属于一种极化电容器,即它可以根据电压的极性和大小,在铝膜上形成电位差。

电解电容器通常有两个电极,其中一个是铝阳极,被称为正极;另一个是导电涂层的铝壳,被称为负极。

当正极连通正电源,负极连通负电源时,电解电容器处于充电状态。

此时,电解液中的铝离子会被吸引向阳极移动,形成正电荷,同时在电解电容器的电介质上形成一个正电位。

当正极断开或连接到地时,电解电容器可以通过放电回路释放储存的电荷。

根据电解电容器的特性,它在电子电路中有着广泛的应用。

电解电容器可以用于滤波电路中,可以减少电路中的噪声和纹波,并使信号更加纯净。

它还可以用于电源电路、放大电路、时钟电路等,用于提供电压平稳、放大信号等功能。

同样,电解电容2220作为其中一种规格型号,可以根据具体的设计需求进行选择。

在选择电解电容器时,需要注意其电容值、电压容量、尺寸和工作温度范围等参数,以保证其在电路中的正常工作。

总结起来,电解电容2220是一种具有特定尺寸的电解电容器规格型号。

它能够在电路中储存电荷,用来实现电路的各种功能,比如滤波、稳压、放大等。

VN2222L中文资料

VN2222L中文资料

60
Ciss 40
Coss
20 Crss
0
0
10
20
30
40
50
VDS – Drain-to-Source Voltage (V)
Gate Charge 15.0
ID = 0.5 A
12.5 10.0
VDS = 30 V
Load Condition Effects on Switching 100
VDD = 15 V RL = 25 W VGS = 0 to 10 V
ABSOLUTE MAXIMUM RATINGS (TA = 25_C UNLESS OTHERWISE NOTED)
Parameter
Symbol
VN2222L VN0610L
VN10KLS
Drain-Source Voltage Gate-Source Voltage
Continuous Drain Current (TJ = 150_C) Pulsed Drain Currenta
Document Number: 70213 S-04279—Rev. F, 16-Jul-01
元器件交易网
VN0610L, VN10KLS, VN2222L
Vishay Siliconix
TYPICAL CHARACTERISTICS (TA = 25_C UNLESS OTHERWISE NOTED)
3. TJM – TA = PDMZthJA(t)
1K
10 K
Document Number: 70213 S-04279—Rev. F, 16-Jul-01
Ohmic Region Characteristics 50

Manfrotto 222 使用说明书

Manfrotto 222 使用说明书

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22uf 16v电容

22uf 16v电容

22uf 16v电容
22uf 16v电容是一种电子元件,常用于电子电路中。

它的容值为22微法(μF),电压等级为16伏特(V)。

电容器的容值表示其储存电荷的能力,而电压等级则表示其能够承受的最大电压。

在电路中,电容器通常用于滤波、耦合、延时和储能等功能。

22uf 16v电容可以用于直流和低频交流电路中,例如消费类电子产品、通讯设备、电源适配器等领域。

在设计电路时,需要根据实际需求选择合适的电容器,考虑到工作电压、温度特性、尺寸等因素。

此外,22uf 16v电容的封装形式也有多种,常见的有贴片式、插件式等,使用时需要根据具体的电路板设计选择合适的封装形式。

总的来说,22uf 16v电容在电子领域中有着广泛的应用,是电子产品中不可或缺的重要元件之一。

22uf 16v陶瓷电容

22uf 16v陶瓷电容

22uf 16v陶瓷电容
22uF 16V陶瓷电容是一种常见的电子元件,通常用于电路中的
滤波、耦合和去耦等功能。

首先,让我们从技术参数的角度来看。

22uF代表的是电容的电容量,单位为微法(uF),16V代表的是电
容的工作电压,单位为伏特(V)。

这意味着这种电容可以存储22
微法的电荷,并且在16伏特的工作电压下工作。

从应用角度来看,22uF 16V陶瓷电容在电子电路中有着广泛的
用途。

它常常被用于直流滤波,以平滑电源电压并去除电源中的高
频噪声。

此外,在耦合和去耦电路中,它可以用来传递信号、隔离
直流偏置并过滤高频噪声。

由于陶瓷电容具有体积小、重量轻、工
作稳定等特点,因此在电子设备中被广泛应用。

此外,从制造材料的角度来看,陶瓷电容通常由陶瓷介质和金
属电极组成,具有良好的温度稳定性和频率特性。

这使得它在高温
或高频环境下仍能保持稳定的性能。

总的来说,22uF 16V陶瓷电容是一种常用的电子元件,具有广
泛的应用领域和稳定的性能特点,是电子电路中不可或缺的一部分。

贴片电容电阻参数及详解

贴片电容电阻参数及详解

公司主营产品相关知识一.贴片电容贴片电容全称:多层(积层,叠层)片式陶瓷电容器,也称为贴片电容,片容。

英文缩写:MLCC。

1.品牌:日系:TDK 、村田(MURATA)、京瓷(Kyocera)、太阳诱电(TAIYO YUDEN)、松下(Panasonic)、罗姆(ROHM)、KOA(KOA SpeerElectronics.Inc)台系:国巨(YAGEO)、华科(WALSIN)韩系:三星(Samsung)国产:风华(FH)、宇阳(E YANG)2.主要参数:容值电压误差材质(精度)尺寸3.各个参数详解:①.容值容值的算法常用容值单位:UF 、 NF 、 PF (微法、纳法、皮法)容值都为千进制(以上前者为后者的1000倍)如:1,000PF =1NF =102 =0.001UF10,000PF =10NF =103 =0.01UF100,000PF =100NF =104 =0.1UF另注:5PF = 509用二位数字表示有效数字,再用一个字母表示数值的量级。

如:1p2表示1.2pF, 220n表示0.22uF,3u3表示3.3uF, 2m2表示2200uF。

另一种表示法,是用三位数字表示电容量,最后用一个字母表示误差。

三位数字中的前两位表示有效值,第三位表示10的n次方,n 一般为1—8。

特殊情况是:当n=9时,不表示10的9次方,而表示为10的 -1次方。

例如:"102"表示10*100=1000pF"223"表示22*1000=22000pF=0.022uF"474"表示47*10000=0.47uF"159"表示15*0.1=1.5pF②.电压各个品牌电容的电压表示方法各不相同。

系列电压有6.3V、10V、16V、25V、50V、100V、200V、500V、1000V、2000V、3000V、 4000V③.误差电容的容值误差通常用字符表示:第一种,绝对误差,通常以电容量的值的绝对误差表示,以PF为单位,即:B代表±0.1PF、C代表±0.25PF、D代表±0.5PF,Y代表±1PF,A代表±1.5PF,V代表±5PF。

电解电容规格书22UF16V-4X5

电解电容规格书22UF16V-4X5

20 min. 5 min.
D+0.5max.
工作電壓
16v
I≤3.52uA 充電 1 分鐘後
容量範圍
120Hz 20℃
17.6~26.4uf
使用溫度
-40~105℃
漏電流 uA
損失角正切值
120Hz 20℃
DF≤ 0.16
1.I≤標準值 2
等效阻抗
Ω≤
高溫負荷特性 1.I≤標準值 105℃加額定 電壓紋波 2000 小時
高頻低阻產品需測等效阻抗其它系列不要求此項sleevealcaselmax


22uf/16v


4*5


黑體白字 D: L: 4 5 1.5 0.5
TYPE’SDIMENSIONS(MM) 型狀及尺寸
SLEEVE AL.CASE d F 0.5
F: d:
L+ max. Safety vent ( 8 up) 6.3 is available by request
23.3 23.8 23.3 22.9 22.9 23.5 23.5 23.0 23.2 22.0
0.047 0.043 0.057 0.053 0.050 0.048 0.048 0.052 0.048 0.044
注:高頻低阻產品,需測等效阻抗,其它系列不要求此項
深圳市诚利来科技有限公司 Chengx Technology Co., Ltd.
Copyright © 2013
1/2
深圳市诚利来科技有限公司 Chengx Technology Co., Ltd.
Copyright © 2013
2/2
2.△C/C≤20% 3.△CF/CF≤ 200%

225v钽电容参数

225v钽电容参数

225v钽电容参数钽电容器是一种广泛应用于电子电路中的电子元件,它具有体积小、容量大、频率特性好等特点,被广泛应用于各种电子设备中。

下面将介绍一些关于225V钽电容器的相关参数,以及其在电路设计中的使用方法。

1. 容量:225V钽电容器的容量是其最重要的参数之一,它代表了电容器可以存储的电荷量的大小。

通常以微法(μF)为单位进行标注。

225V钽电容器常见的容量范围是从数微法到几百微法,不同的应用场景需要选择适当的容量。

2. 允许工作电压:225V钽电容器的允许工作电压是指电容器能够承受的最高电压。

常见的允许工作电压范围是从数十伏到几百伏,如225V表示电容器可以工作在最高225伏电压下。

在电路设计中,需要根据实际工作电压选择合适的允许工作电压。

3. 等效串联电阻(ESR):钽电容器具有较低的ESR,即它们在电路中表现出的等效串联电阻较小。

ESR会影响电容器的频率响应,因此较小的ESR会有更好的频率特性。

225V钽电容器通常具有较小的ESR,适用于高频应用中。

4. 温度系数:温度系数表示钽电容器容量随温度变化的程度。

通常以ppm/℃为单位进行标注。

较小的温度系数意味着电容器容量对温度变化的影响较小,适用于对温度变化敏感的应用场景。

5. 工作温度范围:225V钽电容器通常具有较大的工作温度范围,能够在较高或较低的温度条件下正常工作。

常见的工作温度范围是从-55℃到+125℃,适用于各种环境条件下的应用。

在电路设计中,225V钽电容器常用于电源滤波、耦合和绕组耦合等应用中。

在电源滤波电路中,225V钽电容器用于去除电源中的高频噪声,保证电路的稳定工作。

在耦合应用中,225V钽电容器用于将信号从一个电路传递到另一个电路,保持信号的传输质量。

在绕组耦合应用中,225V钽电容器用于连接两个绕组,实现信号的转换和匹配。

总之,225V钽电容器具有小体积、大容量、频率特性好等优点,在各种电子设备中被广泛应用。

在电路设计中,需要根据实际需求选择合适的225V钽电容器,并合理理解和使用其相关参数,以实现电路的稳定和性能要求。

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Large Can Aluminum Electrolytic Capacitors
FEATURES
• NEW SIZES FOR LOW PROFILE AND HIGH DENSITY DESIGN OPTIONS • EXPANDED CV VALUE RANGE
• HIGH RIPPLE CURRENT
• LONG LIFE • CAN-TOP SAFETY VENT
• DESIGNED AS INPUT FILTER OF SMPS • STANDARD 10mm (.400") SNAP-IN SPACING NRLM Series
SPECIFICATIONS
(* 47,000µF add 0.14, 68,000µF add 0.35.)Notice for Mounting
The space from the top of the can shall be more than (3mm) from chassis or other construction materials so that safety vent has room to expand in case of emer g en c y.
Sleeve Color: Dark
Blue
Can Top Safety Vent
Insulation Sleeve and Minus Polarity Marking
(4.0mm Leads Available As Option)
D+1Max.
L ± 2
6.3 ± 10.8
10
(-)
(+)
MAXIMUM EX P AN S ION
FOR SAFETY VENT Approx. 3.0mm
Recommended PC Board Mounting Holes:
10 ± .1
∅= 2 ± 0.1
D ∅ ± 0.5
Chassis
PC Board
PRECAUTIONS
Please review the notes on correct use, safety and precautions found on pages T10 & T11
of NIC’s Electrolytic Capacitor catalog . Operating Temperature Range
-40 ~ +85°C
-25 ~ +85°C Rated Voltage Range 16 ~ 250Vdc 350 ~ 450Vdc Rated Capacitance Range 180 ~ 68,000µF
56 ~ 680µF
Capacitance Tolerance ±20% (M)Max. Leakage Current (µA)After 5 minutes (20°C)
3 x C(µF)V
Max. Tan δ
at 120Hz/20°C W.V. (Vdc)162535506380100160~450Tan δ max.
0.50*0.40*0.350.300.250.200.200.15Surge Voltage
W.V. (Vdc)162535506380100160S.V. (Vdc)
2032446379100125200W.V. (Vdc)180200250350400450--S.V. (Vdc)220250300400450500--Ripple Current
Correction Factors Frequency (Hz)50601001205001K 10K ~ 50K -Multiplier at 85°C
0.750.800.95 1.00 1.05 1.08 1.15-Low Temperature
Stability (10 to 250Vdc)
Temperature (°C)
0-25-40-----Capacitance Change
-5%-15%-30%-----Impedance Ratio 1.5
39-----Load Life Test
2,000 hours at +85°C
Capacitance Change
Within ±20% of initial measured value Tan δ
Less than 200% of specifi ed maximum value
Leakage Current Less than specifi ed maximum value Shelf Life Test
1,000 hours at +85°C (no load)Capacitance Change Within ±20% of initial measured value Tan δ
Less than 200% of specifi ed maximum value
Leakage Current Less than specifi ed maximum value Surge Voltage Test Per JIS-C-5141 (table #6, #4)Surge voltage applied: 30 seconds
"On" and 5.5 minutes no voltage "Off"
Capacitance Change Within ±20% of initial measured value Tan δLess than 200% of specifi ed maximum value
Leakage Current Less than specifi ed maximum value Soldering Effect
Refer to MIL-STD-202F Method 210A Capacitance Change Within ±10% of initial measured value
Tan δ
Less than specifi ed maximum value Leakage Current
Less than specifi ed maximum value
RoHS Compliant
includes all homogeneous materials
*See Part Number System for Details
Large Can Aluminum Electrolytic Capacitors
NRLM Series
NRLM 222 M 50V 20X25 F
RoHS compliant Case Size (mm) Voltage Rating Tolerance Code PART NUMBER SYSTEM
Large Can Aluminum Electrolytic Capacitors NRLM Series STANDARD PRODUCT LIST, CASE SIZE AND SPECIFICATIONS。

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