DS32C35-33IND中文资料

合集下载

3ad35c参数

3ad35c参数

3ad35c参数
3ad35c参数是一种十六进制颜色代码,表示一种绿色的色调。

在RGB颜色模型中,3ad35c由22.75%的红色,82.75%的绿色和36.08%的蓝色组成。

在HSL颜色空间中,3ad35c有133°的色相,63%的饱和度和53%的亮度。

这种颜色的近似波长为544.64 nm。

3ad35c参数也可以用于表示一款集成TEC控制器的单芯片TEC 控制器的型号,即ADN8835。

ADN8835是由亚德诺半导体公司生产的一款超紧凑3 A热电冷却器 (TEC)控制器,适用于激光二极管或无源组件的温度控制。

ADN8835包括线性功率级、脉冲宽度调制 (PWM)功率级和两个零漂移、轨到轨斩波放大器。

ADN8835的主要特点有:高效率单电感架构
用于TEC控制器的集成式低R DSON MOSFET
TEC电压和电流工作监控
无需外部检测电阻
独立的TEC加热和冷却限流设置
可编程最大TEC电压
PWM驱动器开关频率:2.0 MHz(典型值)
外部同步
集成两个零偏移、轨到轨斩波放大器
兼容NTC 或RTD热传感器
2.50 V、1%精度基准电压输出
温度锁定指示器
- 采用36引脚、6 mm x 6 mm LFCSP封装。

REF3333中文资料

REF3333中文资料
元器件交易网
BurrĆBrown Products from Texas Instruments
REF3312, REF3318 REF3320, REF3325 REF3330, REF3333
SBOS392A – AUGUST 2007 – REVISED SEPTEMBER 2007
NOISE Output Voltage Noise
OUTPUT VOLTAGE Initial Accuracy
NOISE OutputБайду номын сангаасVoltage Noise
OUTPUT VOLTAGE Initial Accuracy
NOISE Output Voltage Noise
OUTPUT VOLTAGE Initial Accuracy
Boldface limits apply over the specified temperature range, –40°C to +125°C. At TA = +25°C and ILOAD = 0mA, unless otherwise noted.
PARAMETER
OUTPUT VOLTAGE Initial Accuracy
MAX +0.15 +0.15 +0.15 +0.15 +0.15 +0.15
UNITS
V % μVPP
V % μVPP
V % μVPP
V % μVPP
V % μVPP
V % μVPP
Copyright © 2007, Texas Instruments Incorporated
f = 0.1Hz to 10Hz REF3330 (3.0V) VIN = 5V

一种独立式预警电气火灾监控探测器[实用新型专利]

一种独立式预警电气火灾监控探测器[实用新型专利]

专利名称:一种独立式预警电气火灾监控探测器专利类型:实用新型专利
发明人:沈杰,张丹,隋斌
申请号:CN201120510971.2
申请日:20111209
公开号:CN202352017U
公开日:
20120725
专利内容由知识产权出版社提供
摘要:一种独立预警电气火灾监控探测器,基准电路ADR02芯片的5V输出端连接MicrochipdsPIC30F4013单片机;剩余电流互感器的输出信号端连接第一LM358运算放大
器,PT100温度传感器连接第二LM358运算放大器,第一,第二运算放大器、PCF8563时钟芯片、FM24C04存储器及RS485通讯芯片ADM2483连接单片机,单片机IO口线连接MC1413达林顿阵列芯片,达林顿阵列芯片连接继电器及蜂鸣器。

本实用新型电路简单,功能全面,操作简便,成本低廉,使用单片机及少量外围电路,可实现剩余电流测量,温度测量,声光报警,故障事件记录,且温度和剩余电流的超限报警方式可根据实际选择报警方式或脱扣方式;对于线路中的剩余电流预警功能。

有效的减少了线路绝缘逐渐老化带来的火灾隐患,将电气火灾的风险降到了最低。

申请人:丹东华通测控有限公司
地址:118009 辽宁省丹东市临港产业园区甘泉路19号
国籍:CN
代理机构:沈阳杰克知识产权代理有限公司
代理人:孙国瑞
更多信息请下载全文后查看。

DS3524

DS3524

IBM System Storage DS3500 易捷版要点∙ 6 Gbps SAS 系统以入门级价格提供中端性能和可扩展性∙以直观而又功能强大的存储管理软件提供内置式管理专业知识∙通过经由光纤通道的远程镜像以及与DS5000 和DS4000 的兼容性提供投资保护和经济高效的备份与恢复∙以全磁盘加密提供稳健的数据安全性,并支持高性能固态驱动器∙符合NEBS 和ETSI 规范并支持48 V DC 电源IBM 在IBM® System Storage® DS3500 易捷版® 中将一流的开发与领先的 6 Gbps 主机接口和驱动器技术相结合。

凭借其简单、高效而又灵活的存储方法,DS3500 成为了IBM System x® 服务器、IBM BladeCenter® 和 IBM Power Systems™经济高效的全面集成补充。

DS3500 以适合大多数预算的价格带来了大量改进,因而为入门级存储用户提供了卓越的性价比、功能、可扩展性和易用性。

DS3500 Express 可提供:∙始于入门级价格、可提供中端性能和功能的可扩展性。

∙有助于降低年度能源开支和环境影响的高效率。

∙无需牺牲控制能力,而又完美结合可靠性与易用性的简易性产品特性∙新一代6 Gbps SAS 系统以入门级价格提供中端性能和可扩展性∙数据整合可在整个组织内确保数据的可用性和效率∙可在当前和未来实现成本节省的节能实施∙DS3500 符合需要强大的能力并支持48 V DC 电源的NEBS 电信规范∙直观而又功能强大的存储管理软件中融合了管理专业技术∙通过经由光纤通道主机端口的16 个远程镜像功能以及与DS5000 和DS4000 的兼容性提供投资保护和经济高效的备份与恢复∙混合主机接口支持可实现DAS 和SAN 分层,从而降低整体的运营和购置成本∙采用全驱动器加密驱动器本地密钥管理的稳健数据安全性∙驱动器和扩展机柜混用经济高效地满足所有应用程序、机架和能效要求∙支持固态驱动器、高性能SAS 驱动器、近线SAS 驱动器、SED 驱动器∙DS Storage Manager 软件o分区(128)o IBM FlashCopy® (256)o Volume Copy (255)o经由FC 主机端口的远程镜像(16)硬件摘要∙双活动型热插拔控制器∙ 4 种接口选项- SAS、iSCSI/SAS、FC/SASo 4 个或8 个6 Gbps SAS 端口o8 个8 Gbps FC 端口和4 个6 Gbps SAS 端口o8 个1 Gbps iSCSI 端口和4 个6 Gbps SAS 端口o 4 个10 Gbps iSCSI 端口和4 个6 Gbps SAS 端口∙ 2 个6 Gbps SAS 驱动器扩展端口∙多达192 个驱动器- 高性能、近线(NL)SAS、SSD 和SED SAS 驱动器∙EXP3512(2 U,12 个3.5 英寸驱动器)和EXP3524(3 U,24 个2.5 英寸驱动器)机柜o机柜可在控制器后方混用∙每个控制器1 GB 缓存,可升级至2 GBo镜像,电池供电,降级至闪存∙电源和散热模块容纳有电源、冗余散热风扇∙所有主要器件均为可热插拔CRU,并可以轻松接触以及卸下或更换∙拥有24 个2.5 英寸驱动器的机柜可使用DC 电源模式(DS3524 和EXP2524)功能优点主机接口混用∙支持混用 SAS 与光纤通道或 SAS 与iSCSI 接口,可实现经济高效的 SAN 分层和整合均衡的性能∙DS3500 在 IOPS和 MBps 方面同样表现超凡,可支持拥有广泛性能要求的应用。

三垦力达电气(江阴)有限公司变频器说明书

三垦力达电气(江阴)有限公司变频器说明书

小身材 大能力打造功率密度新高度所示参数仅供参考,具体数据以说明书为准,三垦力达保留变更权利。

版本号:KL1-V12CB3-211000MD三垦力达电气(江阴)有限公司地址:上海市浦东张江高科技园区祖冲之路899号6号楼电话:(021) 63756555 传真:(021) 63756816双机并联型柜机DB06系列单机壁挂式M6系列三相400V 级 315kW-710kW大功率通用变频器调速精度高,起动力矩大,有效提高挤出成品质量,同时可以适应恶劣工作环境。

共直流母线的应用使多电机同步运行,无速度矢量控制使系统运行更平稳,满足多纤维品种连续生产需求,抗干扰能力强。

变频器结构设计巧妙,小巧的体积和重量有效节约安装空间;单机壁挂式变频器功率密度高达963kW/m³,实现新突破,打造超高功率密度。

化纤设备备有 120%,1min 或 150%,1min 能力的两种过载机型,重载机型使空压机、挤出机、搅拌机等重载设备启动更容易。

钢铁转炉系统SVC06系列: 运送系统SVC06系列: 皮带系统SVC06系列: 行车系统挤出设备精心考究的半导体并联设计丰富的功能更好的散热方式更大的功率范围变频器功率从 315kW 扩大至 710kW ,使得产能扩展异常轻松。

主功率器件安全性大为提高,工作更加稳定持久。

精心设计的散热方式,可令机器 在高达50℃的环境下可靠工作。

传承三垦力达变频器一贯的灵活多变,更兼顾了高性能的矢量控制特性。

M6系列:转炉传动系统更适合的变频器小型化设计结构紧凑,缩小70%的体积(与本社以往产品相比)大功率推荐变频器适应更多应用场合紧凑型设计M6※1 额定容量是输出电压为400V 时的容量。

※2 输入电压为AC400V 以上时,将根据输出功率降低额定电流。

※3 每10分钟允许过载1分钟。

※4 输出电压不能高于电源电压。

轻过载(P 模式)重过载(H模式)※5 根据带之流电抗器电源阻抗的不同而变化。

DS-III型旋转探测仪工作原理_旋转探测仪_探测仪

DS-III型旋转探测仪工作原理_旋转探测仪_探测仪

使用前请仔细阅读说明书DS-III型旋转探测仪产品介绍DS-III型速度开关结合了西门子传感器的先进技术和国内速度传感器的实际应用开发而成(又名速度传感器、低速开关、速度开关、打滑开关)。

本产品主要用于皮带输送机、提升机、螺旋输送机、给料机、卸料阀、研磨机、破碎机、泵、离心干火机、搅拌机和除尘器等转动设备,对皮带打滑、皮带断裂、卡转、慢转、转动轴剪切和过载、传动链(带)脱落等机械故障能及时处理,起到保护设备减少损失的作用。

工作原理DS-III型速度开关安装在被传动轴旁,被传动轴装有检测片(参见安装示意图)。

当电动机运转时,通过传动装置驱使被传动轴转动,被传动轴上的检测片也随之转动。

速度开关接收到检测片的均匀间隔脉冲信号,此时速度开关为闭合状态,通过串接中间继电器的自保触头使交流接触器吸合(参见电气接线图)交流接触器主触头闭合使电机转动。

当设备发生卡转,堵转、皮带打滑、传动带脱落故障时,被传动轴将慢转或停转,此时检测片也随之慢转或停转,DS-III型速度开关将接收不到检测片的均匀间隔脉冲信号。

在工艺指定时间内(3~17秒)未接收到转动信号,速度开关将由闭合状态转为断开,中间继电器也断开,交流接触器断开,在3~17秒内及时停机,可靠的保护设备(此产品接收检测片转动信号与电机大小无关)。

DS-III型速度开关不同于接近开关主要区别在于内部装有延时电路,他可根据被动轴不同的转速调整内部延时来达到保护设备的卡转、堵转、超载慢转、打滑、转动链(带)脱落,转动轴断裂等故障的目的。

速度开关安装在被动轴上,它是通过装在被传动轴上的检测片,利用电磁感应的原理给速度开关均匀的脉冲信号,设备被动轴转动一圈要给速度开关两个脉冲信号,速度开关在单位时间里接收不到检测片发出的脉冲信号,速度开关则判定设备已出现卡转、堵转、超载慢转、打滑、转动链(带)脱落,转动轴断裂等故障,此时速度开关由闭合状态变为断开状态,而串接的中间继电器线圈也同时失电,继电器的触点出由常闭变为常开,从而发出报警信号或与电机联锁直接停机,达到保护设备的目的。

CD32规 格 书

CD32规 格  书

序号 名称
规格
厂家
铁 芯 3521 1
CORE
百利宝
铜 线 2UEWH(180℃) 杭州益利素勒
2
WIRE
精线
四 电气特性:ELECTRICAL CHAR ACTERISTIC:
项目 ITEM
电感量(L) 直流电阻(DCR)
规格 SPEC
2.2μH±20% 0.059(Ω) Max
测试仪器 TEST EQUIPMENT
lobel, Scroll and set out with the size shown in Fig.
A
B
C
W
Ф330 Ф100 Ф13.5
12
卷轮尺寸一般公差±0.5mm GENER AL SIZE TOLERANCE SCROLL±0.5mm
2.每啤盒装 8000PCS(4 卷),并附有 2 包干燥剂.(啤盒尺寸:330x330x67mm) 2.BEER PER BOX 8000PCS(2 VOLUMES)(BEER BOX SIZE:330X330X67mm) 3.每箱装 32000PCS(4 盒),封口,贴上标签,纸箱形状尺寸. 3.EACH LOADED 32000PCS (4 BOXES)BEL.CARTON SHAPES AND SIZES,IN FIGURE
STRENGTH : THE NEEDLE DOES NOT FALL OFF.THE PRODUCT-SIDE POLE NO SIGNIFICANT DAMAGE.
电极强度
固定电感器,电极一端用 0.45KG 力拉,产品端极片无明显损伤.
5.INSULATING
THE INSULATION RESISTANCE SHOULD BE OVER 1000MΩ WHEN D.C.100V IS APPLIED

丹福斯温控器螺纹舵机型号数据手册说明书

丹福斯温控器螺纹舵机型号数据手册说明书

Actuators for modulating control AME 55, AME 56Data sheetDescriptionOrdering ActuatorsType Power supplyCode No.AME 5524 Vac082H3022AME 56082H3025AccessoriesTypeCode No.Stem heater 24 Vac/dc; 40W (VF, VL valves DN 65-80)065Z0315Stem heater 24 Vac/dc; 20W (VF, VL valves DN 100 and VFS2 valves DN 15-50)065Z7020Stem heater 24 Vac/dc; 40W(VF valves DN 125, 150 and VFS DN 65-100)065Z7022Adapter (VF, VL valves DN 65-80)065Z0312AME 56 clutch (VFS 2 DN 15-50)065Z7551The actuators are used with valves:• VFM 2 (DN 65-150) only in combination with AME 55,• VFS 2 (DN 15-50) only in combination with AME 56. Clutch available on special request,• VFS 2 (DN 65-100),• VL 2/3 (DN 100),• VF 2/3 (DN 100-150),• VL 2/3 & VF 2/3 (DN 65, 80) only in combination with AME 56 and adapter 065Z0312,• AFQM (DN 65-125) and AFQM 6 (DN 40-50)Features:• “Self adjustment” function• Load related “Switch off“ function that prevents valve or actuator to be overloaded • Diagnostic LEDMain data:• Nominal voltage: 24 Vac, 50/60 Hz • Control input signal:0(4)-20 mA,0(2)-10 Vdc • F orce:2000 N (AME 55), 1500 N (AME 56)• Stroke: 40 mm • Speed:8 s/mm (AME 55), 4 s/mm (AME 56)• Max. medium temperature: 200 °C by insolated valve • Manual operationData sheetAME 55, AME 56Technical dataType AME 55AME 56Power supply Vac 24; ± 10 %Power consumption VA919.5Duty cycle S3 60% ED (IEC 60034)Frequency Hz 50/60Control input Y Vdc 0-10 (2-10) Ri = 24 kΩmA 0-20 (4-20) Ri = 500 ΩOutput signal X Vdc 0-10 (2-10)Closing force N 20001500Max. stroke mm 40Speeds/mm84Max. medium temperature °C 200 Ambient temperature0 ... 55Storage and transport temperature –40 (70)Ambient humidity 95 % r.h., non-condensingProtection class III Grade of enclosure IP 54Weightkg 3.8- marking in accordance with standards Low Voltage Directive (LVD) 2014/35/EU: EN 60730-1, EN 60730-2-14Electromagnetic Compatibility Directive (EMC) 2014/30/EU: EN 61000-6-2,EN 61000-6-3InstallationMechanicalThe actuator should be mounted with the valve stem (use a 4 mm Allen key - not supplied) in either horizontal position or pointing upwards. Use a M8/SW13 key (not supplied) to fit the actuator to the valve body. Allow for necessary clearance for maintenance purposes.Red rings position indication should be pushed together before commissioning. They indicate the position of valve opening degree after self-adjustment.Arrange proper valve insulation in order to avoid direct heat transfer toward actuator.Wiring lengthRecommended square of the wiring0-50 m 0.75 mm 2> 50 m1.5 mm 2ElectricalElectrical connections can be accessed by removing the cover.Two M16 × 1.5 cable entries are provided. Both entries are provided with a rubber grommet for use with flexible cable. Note that in order to maintain the enclosure IP rating, appropriate cable glands must be used.Data sheetAME 55, AME 56DisposalThe actuator must be dismantled and the elements sorted into various material groups before disposal.DIP switch settingThe actuator has a selection of DIP switches under the removable cover.The switch provides the following functions:DIP1: U/I - Input signal type selector:• If set to OFF position, input signal Y is set to voltage (Y).If set to ON position, input signal Y is set to be current (mA).DIP2: 0/2 - Input signal range selector:• If set to OFF position, the input signal is in the range from 2 V to 10 V (voltage input) or from 4 mA to 20 mA (current input). If set to ON position, the input signal is in the range from 0 V to 10 V (voltage input) or from 0 mA to 20 mA (current input).DIP3: D/I - Direct or inverse acting selector: • If set to OFF position, the actuator is direct acting (actuator’s stem extends by voltage increase). If actuator is set to ON position the actuator is inverse acting (actuator’s stem retracts by voltage increase).DIP4: —/Seq - Normal or sequential modeselector:• Two actuators can be set to work parallel with one control signal. If the SEQUENTIAL is set than an actuator responds to split control signal (see 0(2) V … 5(6 V) / 5(6) V … 10 V).NOTE: T his combination works in combination with DIP5: 0(2) V… 5(6 V) / 5(6) V … 10 VData sheet AME 55, AME 56DIP5: 0-5 V/5-10 V - Input signal range insequential mode:• This function is available ifDIP4: --- / Sequential is set to ON, otherwisethe actuator operates in full controll range(0(2)-10V or 0(4)-20mA).• When DIP5 is set to Off the actuator will match the range of the control signal:2 … 6 V (when DIP1 and DIP2 are set to Off)0 … 5 V (when DIP1 is set to Off and DIP2 is set to ON)4 … 12 mA (when DIP1 is set to ON and DIP2 is set to Off)ON)is set to Off)mode selector:Actuator can operate in modulating (DIP 6to OFF) or in “simple” 3-point mode, if the3-point function is selected (DIP 6 to ON).Modulating mode; DIP 6 set to OFF(factory setting)• After the actuator has been connected to power supply, the actuator will start theself-adjustment procedure. The indicator LED flashes until self-adjustment is finished.• Actuator’s stem will run to its totally extended or retracted position by bridging SN signalto terminals 1 or 3 and will remain in thispositron as long as potential is present.It is not allowed to bridge SP to terminal 1 or 3 when DIP 6 is set to OFF .3-point mode; DIP 6 set to OnLook carefully wiring diagrams as wiring is different for controllers with triacs output (ECL) in comparison to controllers withrelay output.• Connect SN (Neutral) and power supply (24Vac) via controller to terminals 1 or 3.• Return signal X (depends on DIP 2, 3, 4 & 5) is possible if connected power supply to SP and SN.DIP7: L OG/LIN - Equal percentage or linear flow through valve selector1:• Characteristic of valve is unchanged by factory setting (DIP 7 OFF).Danfoss valves as VF, VFS and VFM thatare suitable to operate with actuatorhave logarithmic (equal percentage) flowcharacteristic. By setting switch to LIN flowthe characteristic of motorized valve willbe affected. Combination of actuator andvalve will work together as valve with LINEAR characteristic.DIP8: 100 % KVS/Reduced KVS- Flow reduction through valve selector 1):• If set to OFF position, the flow through valve is not reduced. If set to ON position, the he flow through valve reduced by half of incrementstandard KVSvalues (example: valve with KVS16 and DIP8 set to ON – maximum flowthrough the valve is KVS13 (middle betweenstandard KVS16 and KVS10).1)NOTE:T o be used only in combination with valves with equalpercentage characteristicDIP9: Reset:• Changing this switch position will cause the actuator to go through a self-adjustmentprocedure.DIP switch setting (continuous)Data sheetAME 55, AME 56WiringAutomatic self-adjustment procedure The actuator will automatically adjust to the stroke of the valve, when power supply is first time connected to the actuator or when the actuator is reset.The LED indicator flashes until self-adjustment is finished. The duration depends on the spindle travel and will normally last a few minutes.To restart self-adjustment, change the position of RESET switch (DIP9).If the supply voltage is switched off or falls below 80% in more than 0.1s, the current valve position will be stored in the memory also after a power supply cut-out.Signal on terminals 1 or 3 have priority toward Y input signal.Diagnostic LEDThe red diagnostic LED is located on the pcb under the cover. It provides indication of following operational states:Constant light - normal operation No light- no operation or no power supply Intermittent light (1 Hz)- self-adjusting-mode Intermittent light (3 Hz):- power supply too low- insufficient valve stroke (<20 s)- end-position cannot be reached.Data sheetAME 55, AME 56Complete the mechanical and electricalinstallation and perform the necessary checks and tests:• Isolate control medium. (e.g. self-adjustment in a steam application without suitable mechanical isolation could cause a hazard).• Apply the power. Note that the actuator will now perform the self-adjustment procedure.• Apply the appropriate control signal and check the valve stem direction is correct for the application.• Ensure that the actuator drives the valve over its full stroke, by applying the appropriate control signal. This action will set the valve stroke length.The unit is now fully commissioned.CommissioningCommissioning / testing featureThe actuator can be driven to the fully open or closed positions (depending on valve type) by connecting SN to terminals 1 or 3.Manual overrideThe manual override is applied by rotating the 4 mm Allen key (not supplied) to the required position. Observe the direction of the rotation symbol.• Disconnect power supply• Adjust valve position using an Allen key • Set valve to closed position •Restore power supplyIf manual override has been used then X and Y signal are not correct until the actuator reaches its end position. If this is not accepted reset the actuator, or apply accessory active return signal kit.Usage of electrical drill machine is not allowed.Data sheetAME 55, AME 56Actuator - valve combinationsDimensionsData sheet AME 55, AME 56。

DS1923中文资料

DS1923中文资料

Standard speed, VPUP > 4.5V
tMSP
Standard speed
Overdrive speed
65 71.5
8
75
75
µs
9
2 of 52
PARAMETER IO Pin, 1-Wire Write
SYMBOL
Write-0 Low Time (Note 1)
tW0L
Write-1 Low Time (Notes 1, 13)
DS1923: 带 8kB 数据记录存储器的 Hygrochron 温度/湿度记录器 iButton
CONDITIONS
MIN TYP MAX UNITS
Standard speed
60
Overdrive speed, VPUP > 4.5V (Note 11)
6
Overdrive speed (Note 11)
-20°C to +85°C, 0%RH to 100%RH
(See Safe Operating Range Chart)
Storage Temperature and Humidity Range
-40°C to +85°C, 0%RH to 100%RH
(See Safe Operating Range Chart)
DS1923 ELECTRICAL CHARACTERISTICS
PARAMETER
SYMBOL
(VPUP = 3.0V to 5.25V, TA = -20°C to +85°C)
CONDITIONS
MIN TYP MAX UNITS
IO Pin General Data

Modicon Quantum 32 O 型号 140DDO35300 产品数据表说明书

Modicon Quantum 32 O 型号 140DDO35300 产品数据表说明书

D i s c l a im er : 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 sProduct data sheetCharacteristics140DDO35300discrete output module Modicon Quantum - 32 O solid stateMainRange of productModicon Quantum automation platform Product or component type Dc discrete output module Discrete output number32ComplementaryGroup of channels 4 groups of 8Discrete output logic Positive logic (source)Addressing requirement 2 output words Discrete output voltage 24 V DC Output voltage limits 19.2...30 VAbsolute maximum output 56 V for 1.3 s decaying pulse Voltage drop0.4 V 0.5 A Maximum load current16 A per module 16 A per module 4 A per group 4 A per group Surge current <= 5 A for 0.0005 s Response time <= 1 ms at state 0 to state 1<= 1 ms at state 1 to state 0Leakage current 0.4 mA 30 VLoad inductance Inductance(H) = 0.5/((current(A))² x (switching frequency(Hz))) 50 Hz Fault indication Blown fuseLoss of field power Associated fuse rating3 A each point 3 A each point 5 A per group 5 A per groupIsolation between channels and bus 1780 Vrms DC for 1 minute Isolation between group 500 Vrms DC for 1 minuteProtection typeInternal output protection by 5 A fuse per groupPower dissipation 1.75 W + (0.4 V x total module load current)Marking CELocal signalling1 LED green bus communication is present (Active)1 LED red external fault detected (F)32 LEDs green input status Bus current requirement 330 mA 330 mA Module format Standard Product weight0.45 kgEnvironmentProduct certificationsABS BV C-Tick DNVFM Class 1 Division 2GL GOST RINA RMRSSafety certification non interfering StandardsCSA C22.2 No 142UL 508Resistance to electrostatic discharge 4 kV contact conforming to IEC 801-28 kV on air conforming to IEC 801-2Resistance to electromagnetic fields 10 V/m 80...2000 MHz conforming to IEC 801-3Ambient air temperature for operation 0...60 °C Ambient air temperature for storage -40...85 °CRelative humidity 95 % without condensation Operating altitude<= 5000 mOffer SustainabilitySustainable offer status Green Premium productRoHS (date code: YYWW)Compliant - since 0848 - Schneider Electric declaration of conformity Schneider Electric declaration of conformity REAChReference not containing SVHC above the threshold Reference not containing SVHC above the threshold Product environmental profileAvailableProduct environmental Product end of life instructionsAvailableEnd of life manualContractual warrantyWarranty period18 monthsDimensions DrawingsRacks for Modules MountingDimensions of Modules and Racks(1) 2 slots (2) 3 slots (3) 4 slots (4) 6 slots (5)10 slots (6)16 slotsConnections and Schema24 Vdc Discrete Output Source Module Wiring Diagram。

3.2 x 2.8 mm PLCC2 SMD LED 商品说明书

3.2 x 2.8 mm PLCC2 SMD LED 商品说明书

Part Number Emitting Color Emitting MaterialLens-colorWavelength CIE127-2007*nm λPViewing Angle 2θ 1/2Luminous Intensity CIE127-2007* (I F =20mA) mcd *Luminous intensity value and wavelength are in accordance with CIE127-2007 standards.A Relative Humidity between 40% and 60% is recommended inESD-protected work areas to reduce static build up during assembly process (Reference JEDEC/JESD625-A and JEDEC/J-STD-033)Features● Ideal for indication light on hand held products ● Long life and robust package ● Standard Package: 2000pcs/ Reel ● MSL (Moisture Sensitivity Level): 3 ● Halogen-free ● RoHS compliantATTENTIONOBSERVE PRECAUTIONSFOR HANDLING ELECTROSTATIC DISCHARGE SENSITIVE DEVICESLED is recommended for reflow soldering and soldering profile is shown below.Forward Current Derating CurveThe device has a single mounting surface. The device must be mounted according to the specifications.Reel Dimension (Units : mm)Recommended Soldering Pattern (Units : mm; Tolerance: ± 0.1)Tape Specification (Units : mm)Remarks:If special sorting is required (e.g. binning based on forward voltage, Luminous intensity / luminous flux, or wavelength), the typical accuracy of the sorting process is as follows: 1. Wavelength: +/-1nm2. Luminous intensity / luminous flux: +/-15%3. Forward Voltage: +/-0.1VNote: Accuracy may depend on the sorting parameters.TERMS OF USE1. Data presented in this document reflect statistical figures and should be treated as technical reference only.2. Contents within this document are subject to improvement and enhancement changes without notice.3. The product(s) in this document are designed to be operated within the electrical and environmental specifications indicated on the datasheet. User accepts full risk and responsibility when operating the product(s) beyond their intended specifications.4. The product(s) described in this document are intended for electronic applications in which a person’s life is not reliant upon the LED. Please consult with a SunLED representative for special applications where the LED may have a direct impact on a person’s life.5. The contents within this document may not be altered without prior consent by SunLED.6. Additional technical notes are available at https:///TechnicalNotes.aspPACKING & LABEL SPECIFICATIONS。

深圳市晶科鑫实业有限公司产品说明书:SMD3225 OSC 32.000MHZ 3.3V 15PF

深圳市晶科鑫实业有限公司产品说明书:SMD3225 OSC 32.000MHZ 3.3V 15PF

SERIES 3N, SEAM SEALED CERAMIC 3.2X2.5MM SURFACE MOUNT PACKAGETel :*************-837(Mr.huang)Fax :0755-******** .cnADD: Room 1204~1206,Building 3C, TianAn Cloud Park Phase 1,Bantian, Longgang District, Shenzhen深圳市晶科鑫实业有限公司Shenzhen Crystal Technology Industrial Co., LtdAPPROVAL SHEETCUSTOMER P/N:TYPE: SMD CRYSTALDESCRIPTION: SMD3225 OSC 32.000MHZ 3.3V 15PF -40~85℃ P N/ SJK: 3N 32000G33YC ENVIRONMENTAL: ■RoHS■REACH■HF□PAHS□otherREVISION: A1 2017-5-10 MSL:Levels 1SIGNATURESUPPLIERCUSTOMER IssueCheckApproveQACheckApproveSJK 186****8994(Mr.Huang)Signature FAE_EMAIL *********************DateDate Approve: □accept□unacceptedNote:SERIES 3N, SEAM SEALED CERAMIC 3.2X2.5MM SURFACE MOUNT PACKAGE1.ELECTRICAL SPECIFICATIONSStandard atmospheric conditionsUnless otherwise specified, the standard range of atmospheric conditions for making measurement and tests are as follow:Ambient temperature : 25±5℃Relative humidity : 40%~70%If there is any doubt about the results, measurement shall be made within the following limits: Ambient temperature : 25±3℃Relative humidity : 40%~70%Measure equipmentElectrical characteristics measured by MD 37WX-05M or equivalen t.Crystal cutting typeThe crystal is using AT CUT (thickness shear mode).ParametersSYMElectrical Spec.NotesMINTYPE MAXUNITS 1 Nominal Frequency27.000000MHZ 2 Frequency StabilityAT 25℃±10 PPM Over Operating Temperature range±20PPM -40~85℃3 Operating Temperature Topr -4025 85 ℃4 Storage Temperature Tstg -55~ 125 ℃5 Supply Voltage VDD 3.3 / ±10%V 1.62~3.63 available 6 Input Current Icc5mA7 Enable Control YesPad18 Output Load : CMOS CL 15pF 9 Output Voltage High VoH 90% VddV 10 Output Voltage LowVoL 10% Vdd V 11 Rise Time Tr 5 ns 10%→90%VDDLevel12 Fall Time Tf 5 ns 90%→10%VDDLevel13 Symmetry (Duty ratio)TH/T 45~55 % 14 Start-up Time Tosc 10 ms 15 Enable Voltage High Vhi 70% VddV 16 Disable Voltage LowVlo30% VddV 17 Aging±3ppm/yr. 1st. Year at 25℃ 18 Output Disable Delay Time T off 150 us 19 Output Enable Delay Time T on150 us 20Phase Jitter (12KHZ~20MHZ )0.51.0psTel :*************-837(Mr.huang)Fax :0755-******** .cnADD: Room 1204~1206,Building 3C, TianAn Cloud Park Phase 1,Bantian, Longgang District, ShenzhenSERIES 3N, SEAM SEALED CERAMIC 3.2X2.5MM SURFACE MOUNT PACKAGE 2.DIMENSIONS (Units :mm)3.MARKING4.TEST CIRCUITTel:*************-837(Mr.huang)Fax:0755-******** ADD: Room 1204~1206,Building 3C, TianAn Cloud Park Phase 1,Bantian, Longgang District, ShenzhenSERIES 3N, SEAM SEALED CERAMIC 3.2X2.5MM SURFACE MOUNT PACKAGE5.WAVEFORM CONDITIONS6.OUTPUT ENABLE / DISABLE DELAYThe following figure shows the oscillator timing during normal operation . Note that when the device is in standby,the oscillator stops. When standby is released, the oscillator starts and stable oscillator output occurs after ashort delay7.SUGGESTED REFLOW PROFILETotal time : 200 sec. Max / Solder melting point :220 ℃Tel :*************-837(Mr.huang)Fax :0755-******** .cnADD: Room 1204~1206,Building 3C, TianAn Cloud Park Phase 1,Bantian, Longgang District, ShenzhenSERIES 3N, SEAM SEALED CERAMIC 3.2X2.5MM SURFACE MOUNT PACKAGE8.RELIABILITY TEST SPECIFICATION 1.Mechanical EnduranceNo. Test Item Test MethodsREF. DOC 1 Drop Test 75 cm height,3 times on concrete floor . JIS C6701 2Mechanical ShockDevice are shocked to half sine wave ( 1000G ) three mutuallyperpendicular axes each 3 times. 0.5m sec.duration timeMIL-STD-202F3 Vibration Frequency range 10 ~ 2000 HzAmplitude 1.52 mm/20G Sweep time 20 minutesPerpendicular axes each test time 4 Hrs(Total test time 12 Hrs)MIL-STD-883E4 Gross Leak Standard Sample For Automatic Gross LeakDetector, Test Pressure: 2kg / cm2 MIL-STD-883E5Fine LeakHelium Bomging 4.5 kgf / cm 2 for 2 Hrs 6 Solderability Temperature 245 ℃ ± 5℃ Immersing depth 0.5 mm minimum Immersion time 5 ± 1 seconds Flux Rosin resin methyl alcoholsolvent ( 1 : 4 )MIL-STD-883E2.Environmental EnduranceNo. Test Item Test MethodsREF. DOC 1Resistance To Soldering Heat Pre-heat temperature 125 ℃ Pre-heat time 60 ~ 120 sec. Test temperature 260 ± 5 ℃Test time 10 ± 1 sec. MIL-STD-202F2 High Temp. Storage +125 ℃ ±3 ℃ for 1000 ± 12 HrsMIL-STD-883E3Low Temp. Storage-40 ℃ ± 3 ℃ for 1000 ± 12 Hrs4 Thermal Shock Total 100 cycles of the following temperature cycleMIL-STD-883E5 Pressure CookerStorage 121 ± 3℃ , RH100% , 2 bar , 240 Hrs JIS C6701 6 High Temp &Humidity85℃ ± 3℃, RH 85% , 1000 HrsJIS C5023备注Tel :*************-837(Mr.huang)Fax :0755-******** .cnADD: Room 1204~1206,Building 3C, TianAn Cloud Park Phase 1,Bantian, Longgang District, Shenzhen。

stm32f103中文资料

stm32f103中文资料
SRAM、PSRAM、NOR和NAND存储器 − 并行LCD接口,兼容8080/6800模式
■ 时钟、复位和电源管理
− 2.0~3.6伏供电和I/O引脚 − 上电/断电复位(POR/PDR)、可编程电压监测
器(PVD) − 4~16MHz晶体振荡器 − 内嵌经出厂调校的8MHz的RC振荡器 − 内嵌带校准的40kHz的RC振荡器 − 带校准功能的32kHz RTC振荡器
深圳市迪通科技有限公司 TEL:0755-83312947 83313941 83317488FAX:0755-83311568
数据手册
STM32F103xC STM32F103xD STM32F103xE
增强型,32位基于ARM核心的带512K字节闪存的微控制器 USB、CAN、11个定时器、3个ADC 、13个通信接口
本文档英文原文下载地址: /stonline/products/literature/ds/14611.pdf
参照2009年3月 STM32F103xCDE数据手册 英文第5版 (本译文仅供参考ห้องสมุดไป่ตู้如有翻译错误,请以英文原稿为准)
1/87
深圳市迪通科技有限公司 TEL:0755-83312947 83313941 83317488FAX:0755-83311568
功能
■ 内核:ARM 32位的Cortex™-M3 CPU − 最高72MHz工作频率,在存储器的0等待周 期访问时可达1.25DMips/MHz(Dhrystone 2.1) − 单周期乘法和硬件除法
■ 存储器
− 从256K至512K字节的闪存程序存储器 − 高达64K字节的SRAM − 带4个片选的静态存储器控制器。支持CF卡、
− 2个16位带死区控制和紧急刹车,用于电机 控制的PWM高级控制定时器

ThermoFisher DS-33 Matrix Standard Kit (Dye Set G5

ThermoFisher DS-33 Matrix Standard Kit (Dye Set G5

DS-33 Matrix Standard Kit (Dye Set G5) SeqStudio™ Flex, SeqStudio™, 3500, 3730, and 3130 series instruments Catalog Number 4345833Pub. No. 4362884 Rev.GWARNING! Read the Safety Data Sheets (SDSs) andfollow the handling instructions. Wear appropriate protectiveeyewear, clothing, and gloves. Safety Data Sheets (SDSs) areavailable from /support.Product descriptionThe DS-33 Matrix Standard Kit (Dye Set G5) is used to perform spectral calibrations when analyzing DNA fragments labeled with 6‐FAM™, VIC™, NED™, PET™, and LIZ™ dyes. (The LIZ™ dye is usedto label the size standard.) The matrix standard contains five DNA fragments. Each fragment is labeled with a different dye from the dye set.For more information on spectral calibration, see the DNA Fragment Analysis by Capillary Electrophoresis User Guide (Pub. No. 4474504). Contents and storage[1] The kit is stable for 1 year when stored at 2–8°C.Required materials not suppliedGuidelines for use•For more information on the use of matrix standards, see the instrument user guide or getting started guide.•To prepare the matrix standard dilution, combine the appropriate volumes of matrix standard and Hi‑Di™ Formamide (Cat. No. 4311320). Dilution volumes vary depending on theinstrument.•Use the matrix standard within 2 hours of preparation.•Do not add size standard to the matrix standard.•Discard any unused reagent that has been diluted in Hi‑Di™Formamide.Prepare the standard1.Vortex the matrix standard tube for 5–10 seconds to mix, thencentrifuge for 3–5 seconds to bring the mixture to the bottom and eliminate air bubbles.bine the volumes of matrix standard and Hi‑Di™ Formamideappropriate for the instrument. See “Component volumes andwell location for the prepared standard” on page 2.3.Vortex for 5–10 seconds, then centrifuge for 3–5 seconds.4.Dispense the prepared standard into the appropriate wells of areaction plate. See “Component volumes and well location forthe prepared standard” on page 2.5.Cover the plate with adhesive film, then centrifuge for3–5 seconds.6.Denature the DNA fragments:a.Incubate the mixture at 95°C for 5 minutes.b.Incubate the mixture at 4°C, or on ice, for ≥2 minutes.7.Remove the adhesive film, then cover the plate with septa.8.Centrifuge for 3–5 seconds.9.Assemble the plate with the retainer and base, then load on theinstrument.Note: The SeqStudio™ Genetic Analyzer does not require aretainer and base.10.Immediately perform the spectral calibration.For information on setting up the run, see the instrument user guide.For Research Use Only. Not for use in diagnostic procedures.Component volumes and well location for the prepared standardTable 1 SeqStudio ™ Flex Series Genetic AnalyzerTable 2 SeqStudio ™ Genetic AnalyzerTable 3 3500/3500xL Genetic AnalyzerTable 4 3730/3730xl DNA Analyzer[1]For 3730/3730xl Data Collection Software only when running the RCT configuration: Select dye set G5-RCT to perform fragment analysis in applications with a high dynamic range (large peaks with a signal intensity that is much higher than the signal intensity of small peaks).Table 5 3130/3130xl Genetic AnalyzerLimited product warrantyLife Technologies Corporation and/or its affiliate(s) warrant their products as set forth in the Life Technologies' General Terms and Conditions of Sale at /us/en/home/global/terms-and-conditions.html . If you have any questions, please contact Life Technologies at /support .2DS-33 Matrix Standard Kit (Dye Set G5) Product Information SheetThermo Fisher Scientific Baltics UAB | V.A. Graiciuno 8, LT-02241 | Vilnius, LithuaniaFor descriptions of symbols on product labels or product documents, go to /symbols-definition.The information in this guide is subject to change without notice.DISCLAIMER: TO THE EXTENT ALLOWED BY LAW, THERMO FISHER SCIENTIFIC INC. AND/OR ITS AFFILIATE(S) WILL NOT BE LIABLE FOR SPECIAL, INCIDENTAL, INDIRECT, PUNITIVE, MULTIPLE, OR CONSEQUENTIAL DAMAGES IN CONNECTION WITH OR ARISING FROM THIS DOCUMENT, INCLUDING YOUR USE OF IT.Revision history: Pub. No. 4362884Important Licensing Information: This product may be covered by one or more Limited Use Label Licenses. By use of this product, you accept the terms and conditions of all applicable Limited Use Label Licenses.©2022 Thermo Fisher Scientific Inc. All rights reserved. All trademarks are the property of Thermo Fisher Scientific and its subsidiaries unless otherwise specified./support | /askaquestion31 January 2022。

温度控制器C35说明书

温度控制器C35说明书
3UHVVXUH 6WUDLQ DQG )RUFH
Displacement Transducers, Dynamic Measurement Force Sensors, Instrumentation for Pressure and Strain Measurements, Load Cells, Pressure Gauges, Pressure Reference Section, Pressure Switches, Pressure Transducers, Proximity Transducers, Regulators, Pressure Transmitters, Strain Gauges, Torque Transducers, Valves
FM Approvals for These Locations: Class I, Division 2, Groups B, C and D; Class II, Division 2, Groups F and G; Class III, Division 2
Attachment to Pipe: 2 pipe clamps are required to attach controller to pipe (see ordering table)
NC Black Heater
MOST POPULAR MODELS HIGHLIGHTED!
To Order (Specify Model Number)
Model Number
Price Open Setpoint (°F) Close Setpoint (°F)
CCD101N-050 $39.00
51
(2.0)
41
+

DEIF丹控 HAS-111DG 产品样本

DEIF丹控 HAS-111DG 产品样本

7 7 6 7 5 . - 3.5-100-110-12 -200-220-
8 230-240-3 0-400-415-440-450-
8 66 69 V 4 0- 0- 0 AC
c 认证 7 7 V UL/ UL
: 5 . 至 450 AC
2 kΩ/V
温漂:
电隔离: 电源电压 (Un):
6 7 40 至 45 至 5 至 0 Hz
6 线路 便 即 3 连接至 LSU 上的频率 (FS),则 HAS-111DG 将调节发电机孤岛上的频率,以 与 将与之相连
匹 述关 息 的装置上的频率 配(参见上 于 INPUT 的信 )。
述 公共 地 子 上 输入/输出的 接 端 。
DEIF A/S
第 3 页,共 7 页
产品样本
HAS-111DG
功能
HAS-111DG 可用于需要手动或半自动同步的设备,或者
利用 ∆ f 和/或 ∆ U 输出将发电机孤岛自动同步到另一
台设备(轴带发电机)。
设置 HAS-111DG 配有 5 个电位计,可从单元前端进入电位 计。
相: 在此处选择用于同步的相窗口。可对称或不对称设置。
频率: 在此处选择最大滑差频率差。可围绕 0 Hz 对称和不对 称设置。
V 钟 输入和输出间:
3250 - 50 Hz - 1 分
7 7 6 7 5 . - 3.5-100-110-12 -220-2308 8 240-3 0-400-415-440-450-4 066 69 V 0- 0 AC ±20 %(最大 3.5 VA) 8 V + 24-4 -110-220 DC -25/ 30 % W (最大 2.5 ) c 认证 UL/ UL : 仅 V V 24 DC 和 110 AC 直流电源必须为 2 类电源 符合 准 HSE, DIN 40040 标 符准合 6 6 IEC/EN 1000- -1/2/3/4 标 ² 股 最大 4.0 mm (单 ) ² 多股 最大 2.5 mm ( ) 标 所有 准塑的性阻部燃材件料均为符合 9UL 4 V( 1) 例 子 示 : IP40。端 : IP20, 符合 9 6 9 准 IEC 52 及 EN 052 标 单 欲ww功 了w.能 解de部当 if前 件 .c经认om证过或主,联要 请系访船问级DE社IF认A证/S。 。 仅根据要求进行 UL 认证 如外果重产新品定在制,DE将IF失D去K 的UL生认产证设备 线 接 : 仅铜导线 6 7 67 使用 0/ 5 °C (140/1 °F) 接 AW线G 尺12寸-1:6 或同等尺寸 安装: 根 美国 加拿 据 NEC( )或 CEC( 准安 大)标 装
  1. 1、下载文档前请自行甄别文档内容的完整性,平台不提供额外的编辑、内容补充、找答案等附加服务。
  2. 2、"仅部分预览"的文档,不可在线预览部分如存在完整性等问题,可反馈申请退款(可完整预览的文档不适用该条件!)。
  3. 3、如文档侵犯您的权益,请联系客服反馈,我们会尽快为您处理(人工客服工作时间:9:00-18:30)。

General DescriptionThe DS32x35 accurate real-time clock (RTC) is a tem-perature-compensated clock/calendar that includes an integrated 32.768kHz crystal and a bank of nonvolatile memory in a single package. The nonvolatile memory is available in two densities: 2048 x 8 and 8192 x 8 bits.The integration of the crystal resonator enhances the long-term accuracy of the device as well as reduces the piece part count in a manufacturing line. The device operates as a slave device on an I 2C serial interface,and is available in both commercial and industrial tem-perature ranges in a 300-mil, 20-pin SO package.The DS32x35 includes a bank of nonvolatile memory that does not require a backup energy source to main-tain memory contents. In addition, there are no read or write cycle limitations. The memory array can be accessed at maximum cycle rates for the life of the product with no wear-out mechanisms.Other device features include two time-of-day alarms, a selectable output that provides either an interrupt or pro-grammable square wave, and a calibrated 32.768kHz square-wave output. A reset input/output pin provides a power-on reset. Additionally, the reset pin is monitored as a pushbutton input for generating a reset externally.A precision temperature-compensated reference and comparator circuit monitors the status of V CC and auto-matically switches to the backup supply when neces-sary. The backup supply maintains operation of the TCXO, clock, alarms, and RTC I 2C operation.ApplicationsServers Utility Power Meters TelematicsGPSFeatureso Integrated 32.768kHz Crystal o Fast (400kHz) I 2C Interfaceo RTC Counts Seconds, Minutes, Hours, Day, Date,Month, and Year with Leap Year Compensation Valid Up to 2100o RTC Accuracy ±2ppm from 0°C to +40°Co RTC Accuracy ±3.5ppm from -40°C to 0°C and +40°C to +85°Co Nonvolatile Memory with 10 Years of Guaranteed Backup Time and Write Protectiono Two Available Densities of Nonvolatile Memory2048 Bytes (DS32B35)8192 Bytes (DS32C35)o No Cycle Limitations on Memoryo Power-Switching Circuit Selects Between Main Power and Battery Backup for the RTCo Programmable Square Wave with Frequency of 32.768kHz, 8.192kHz, 4.096kHz, or 1Hz o Two Time-of-Day Alarmso Reset Output/Pushbutton Reset (Debounced)Inputo Programmable Output Provides Interrupt or Square Waveo Calibrated 32.768kHz Open-Drain Output o Temp Sensor with ±3°C Accuracy o 3.3V Operating Voltageo Commercial and Industrial Temperature Ranges o 300-mil, 20-Pin SO Packageo Underwriters Laboratories (UL) RecognizedDS32x35Accurate I 2C RTC with IntegratedTCXO/Crystal/FRAM______________________________________________Maxim Integrated Products 1Rev 0; 12/06For pricing, delivery, and ordering information,please contact Maxim Direct at 1-888-629-4642,or visit Maxim’s website at .Pin Configuration and Ordering Information appear at end of data sheet.D S 32x 35Accurate I 2C RTC with Integrated TCXO/Crystal/FRAM 2_____________________________________________________________________ABSOLUTE MAXIMUM RATINGSRECOMMENDED DC OPERATING CONDITIONSStresses beyond those listed under “Absolute Maximum Ratings” may cause permanent damage to the device. These are stress ratings only, and functional operation of the device at these or any other conditions beyond those indicated in the operational sections of the specifications is not implied. Exposure to absolute maximum rating conditions for extended periods may affect device reliability.Voltage Range on Any Pin Relative to Ground......-0.3V to +5.0V Operating Temperature Range ..........................-40°C to +85°C Junction Temperature......................................................+125°C Storage Temperature Range...............................-40°C to +85°CLead Temperature (soldering, 10s).................................+260°C Soldering Temperature....................................................See theIPC/JEDEC J-STD-020 SpecificationELECTRICAL CHARACTERISTICSDS32x35Accurate I 2C RTC with IntegratedTCXO/Crystal/FRAM_____________________________________________________________________3ELECTRICAL CHARACTERISTICS (continued)ELECTRICAL CHARACTERISTICSD S 32x 35Accurate I 2C RTC with Integrated TCXO/Crystal/FRAM 4_____________________________________________________________________AC ELECTRICAL CHARACTERISTICSDS32x35Accurate I 2C RTC with IntegratedTCXO/Crystal/FRAM_____________________________________________________________________5POWER-SWITCH CHARACTERISTICSNote 1:Limits at -40°C are guaranteed by design and not production tested.Note 2:All voltages are referenced to ground.Note 3:To minimize current drain on V BAT when the internal supply is switched to V BAT , the V IH minimum must be higher thanV BAT - 0.6V. Otherwise, there is significant current drain due to the input stage at the SCL and SDA pins.Note 4:The pullup resistor voltage on the 32kHz and INT /SQW pins can be up to 5.5V maximum regardless of the voltage on V CC .Note 5:Current is the averaged input current, which includes the temperature conversion current.Note 6:The RST pin has an internal 50k Ω(nominal) pullup resistor to V CC .Note 7:After this period, the first clock pulse is generated.Note 8: A device must internally provide a hold time of at least 300ns for the SDA signal (referred to as the V IH(MIN)of the SCL sig-nal) to bridge the undefined region of the falling edge of SCL.Note 9:The maximum t HD:DAT needs only to be met if the device does not stretch the low period (t LOW ) of the SCL signal.Note 10:A fast-mode device can be used in a standard-mode system, but the requirement t SU:DAT ≥250ns must then be met. Thisis automatically the case if the device does not stretch the low period of the SCL signal. If such a device does stretch the low period of the SCL signal, it must output the next data bit to the SDA line t R(MAX)+ t SU:DAT = 1000 + 250 = 1250ns before the SCL line is released.Note 11:C B —total capacitance of one bus line in pF.Note 12:The parameter t OSF is the period of time the oscillator must be stopped for the OSF flag to be set over the voltage range of0.0V ≤V CC ≤V CC(MAX) and 2.0V ≤V BAT ≤3.6V.Note 13:This delay applies only if the oscillator is enabled and running. If the EOSC bit is a 1, t REC is bypassed and RST immediate-ly goes high.D S 32x 35Accurate I 2C RTC with Integrated TCXO/Crystal/FRAM 6_____________________________________________________________________Pushbutton Reset TimingPower-Switch TimingDS32x35Accurate I 2C RTC with IntegratedTCXO/Crystal/FRAM_____________________________________________________________________7SUPPLY CURRENT vs. TEMPERATURETEMPERATURE (°C)I B A T (μA )80.060.040.020.00.0-20.00.7000.8000.9001.0000.600-40.0FREQUENCY DEVIATION vs.TEMPERATURE vs. AGING VALUECRYSTAL AGING REGISTER VALUEF R E Q U E N C Y D E V I A T I O N (p p m )966432-64-32-96-40-30-20-100102030405060-128128STANDBY SUPPLY CURRENT vs. SUPPLY VOLTAGEV CC (V)I C C S (μA )5.04.03.05010015002.0SUPPLY CURRENT vs. SUPPLY VOLTAGEV BAT (V)I B A T (μA )5.04.03.00.8000.9001.0001.1001.2000.7002.0Typical Operating Characteristics(V CC = +3.3V, T A = +25°C, unless otherwise noted.)D S 32x 35Accurate I 2C RTC with Integrated TCXO/Crystal/FRAM 8_____________________________________________________________________Block DiagramDS32x35Accurate I 2C RTC with IntegratedTCXO/Crystal/FRAM_____________________________________________________________________9Detailed DescriptionThe DS32x35 accurate RTC is a temperature-compen-sated clock/calendar that includes an integrated 32.768kHz crystal and a bank of nonvolatile memory in a single package. The nonvolatile memory is available in two sizes: 2048 x 8 or 8192 x 8 bits. The integration of the crystal resonator enhances the long-term accura-cy of the device as well as reduces the piece part count in a manufacturing line. The device is available in both commercial and industrial temperature ranges and is offered in a 300-mil, 20-pin SO package.The DS32x35 includes a bank of nonvolatile memory that does not require a backup energy source to main-tain the memory contents. In addition, there are no readaccessed at maximum cycle rates for the life of the product with no wear-out mechanisms.A precision temperature-compensated reference and comparator circuit monitors the status of V CC and auto-matically switches to the backup supply when neces-sary. Other device features include two time-of-day alarms, a selectable output that provides either an interrupt or programmable square wave, and a calibrat-ed 32.768kHz square-wave output. A reset input/output pin provides a power-on reset. Additionally, the reset pin is monitored as a pushbutton input for generating a reset externally. The device is accessed through an I 2C serial interface.D S 32x 35Accurate I 2C RTC with Integrated TCXO/Crystal/FRAM 10____________________________________________________________________OperationThe Block Diagram shows the main elements of the DS32x35. The nine blocks can be grouped into six functional groups: TCXO, power control, pushbutton function, RTC, I 2C interface, and F RAM. Their opera-tions are described separately in the following sections.32kHz TCXOThe temperature sensor, oscillator, and control logic form the TCXO. The controller reads the output of the on-chip temperature sensor and uses a lookup table to determine the capacitance required, adds the aging correction in the AGE register, and then sets the capacitance selection registers. New values, including changes to the AGE register, are loaded only when a change in the temperature value occurs, or when a user-initiated temperature conversion is completed.The temperature is read on initial application of V CC and once every 64 seconds afterwards while the device is powered by either V CC or V BAT .Power ControlThis function is provided by a temperature-compensat-ed voltage reference and a comparator circuit that monitors the V CC level. When V CC is greater than V PF ,the part is powered by V CC . When V CC is less than V PF but greater than V BAT , the RTC is powered by V CC . If V CC is less than V PF and is less than V BAT , the device is powered by V BAT . See Table 1.The RTC can be accessed when the device is powered by either V CC or V BAT . The F RAM is only accessible when the device is powered by V CC . The F RAM must not be accessed when V CC < V CC(MIN).To preserve the battery, the first time V BAT is applied to the device, the oscillator will not start up until V CC exceeds V PF , or until a valid I 2C address is written to the part. Typical oscillator startup time is less than one sec-ond. Approximately 2 seconds after V CC is applied, or a valid I 2C address is written, the device makes a temper-ature measurement and applies the calculated correc-tion to the oscillator. Once the oscillator is running, itcontinues to run as long as a valid power source is avail-able (V CC or V BAT ), and the device continues to mea-sure the temperature and correct the oscillator frequency every 64 seconds.Pushbutton Reset FunctionThe DS32x35 provides for a pushbutton switch to be con-nected to the RST output pin. When the device is not in a reset cycle, it continuously monitors the RST signal for a low going edge. If an edge transition is detected, the device debounces the switch by pulling RST low. After the internal timer has expired (PB DB ), the device contin-ues to monitor the RST line. If the line is still low, the device continuously monitors the line looking for a rising edge. Upon detecting release, the device forces the RST pin low and holds it low for t RST .RST is also used to indicate a power-fail condition.When V CC is lower than V PF , an internal power-fail sig-nal is generated, which forces the RST pin low. When V CC returns to a level above V PF , the RST pin is held low for t REC to allow the power supply to stabilize. If the oscillator is not running (see the Power Control section)when V CC is applied, t REC is bypassed and RST imme-diately goes high. The state of RST does not affect the operation of the TCXO, I 2C interface, F RAM, or RTC functions.Real-Time ClockWith the clock source from the TCXO, the RTC provides seconds, minutes, hours, day, date, month, and year information. The date at the end of the month is automati-cally adjusted for months with fewer than 31 days, includ-ing corrections for leap year. The clock operates in either the 24-hour or 12-hour format with an AM /PM indicator.The clock provides two programmable time-of-dayalarms and a programmable square-wave output. TheINT /SQW pin either generates an interrupt due to alarmcondition or outputs a square-wave signal and theselection is controlled by the bit INTCN.I 2C InterfaceThe FRAM I 2C interface is accessible whenever VCC isat a valid level. The RTC I 2C interface is accessiblewhenever either V CC or V BAT is at a valid level. If a microcontroller connected to the device resets becauseof a loss of V CC or other event, it is possible that the microcontroller and the RTC I 2C communications could become unsynchronized, e.g., the microcontroller resets while reading data from the RTC. When the microcon-troller resets, the RTC I 2C interface may be placed into a known state by toggling SCL until SDA is observed to be at a high level. At that point the microcontroller should pull SDA low while SCL is high, generating a START condition.DS32x35Accurate I 2C RTC with IntegratedTCXO/Crystal/FRAMFRAMThe serial F RAM memory is logically organized as a 2048 x 8 or 8192 x 8 memory array and is accessed using the I 2C interface. F unctional operation of the F RAM is similar to serial EEPROMs with the major dif-ference being its superior performance on writes. The memory is read or written at the speed of the I 2C inter-face. It is not necessary to poll the device for a ready condition during writes.Due to the different memory densities, the I 2C address-ing technique is different for each version of the DS32x35. See the I 2C Serial Data Bus section for details.Warning:The F RAM does not inhibit reads or writeswhen V CC is below the minimum operating voltage.F RAM reads are destructive, that is, when a read is performed, the device internally writes the memory back to the original value. The FRAM must not be read or written when V CC is below the minimum operating voltage; otherwise, the memory cells may not be fully programmed, and the data may not be retained.RTC Address MapTable 3 shows the RTC address map for the DS32x35timekeeping registers. During a multibyte access, when the address pointer reaches the end of the register space, it wraps around to location 00h. On an I 2C START or address pointer incrementing to location 00h,the current time is transferred to a second set of regis-ters. The time information is read from these secondary registers, while the clock continues to run. This elimi-nates the need to reread the registers in case the main registers update during a read.Clock and CalendarThe time and calendar information is obtained by read-ing the appropriate register bytes. Table 3 illustrates the RTC registers. The time and calendar data are set or ini-tialized by writing the appropriate register bytes. The con-tents of the time and calendar registers are in the binary-coded decimal (BCD) format. The DS32x35 can be run in either 12-hour or 24-hour mode. Bit 6 of the hours register is defined as the 12- or 24-hour mode select bit. When high, the 12-hour mode is selected. In the 12-hour mode, bit 5 is the AM /PM bit with logic-high being PM. In the 24-hour mode, bit 5 is the second 10-hour bit (20 to 23 hours). The century bit (bit 7 of the month register) is toggled when the years register over-flows from 99 to 00.The day-of-week register increments at midnight.Values that correspond to the day of week are user-defined but must be sequential (i.e., if 1 equals Sunday, then 2 equals Monday, and so on). Illogical time and date entries result in undefined operation.When reading or writing the time and date registers, sec-ondary (user) buffers are used to prevent errors when the internal registers update. When reading the time and date registers, the user buffers are synchronized to the internal registers on any START and when the register pointer rolls over to zero. The time information is read from these secondary registers while the clock continues to run. This eliminates the need to reread the registers in case the main registers update during a read.The countdown chain is reset whenever the seconds register is written. Write transfers occur on the acknowl-edge from the DS32x35. Once the countdown chain is reset, to avoid rollover issues the remaining time and date registers must be written within 1 second. The 1Hz square-wave output, if enabled, transitions high 500ms after the seconds data transfer, provided that the oscil-lator is already running.D S 32x 35Accurate I 2C RTC with Integrated TCXO/Crystal/FRAM Table 3. RTC Register MapDS32x35AlarmsThe DS32x35 contains two time-of-day/date alarms.Alarm 1 can be set by writing to registers 07h to 0Ah.Alarm 2 can be set by writing to registers 0Bh to 0Dh.The alarms can be programmed (by the alarm enable and INTCN bits of the Control register) to activate the INT /SQW output on an alarm match condition. Bit 7 of each of the time-of-day/date alarm registers are mask bits (Table 4). When all the mask bits for each alarm are logic 0, an alarm only occurs when the values in the timekeeping registers match the corresponding values stored in the time-of-day/date alarm registers. The alarms can also be programmed to repeat every sec-ond, minute, hour, day, or date. Table 4 shows thepossible settings. Configurations not listed in the table will result in illogical operation.The DY/DT bits (bit 6 of the alarm day/date registers)control whether the alarm value stored in bits 0 to 5 of that register reflects the day of the week or the date of the month. If DY/DT is written to logic 0, the alarm is the result of a match with date of the month. If DY/DT is written to logic 1, the alarm is the result of a match with day of the week.When the RTC register values match alarm register set-tings, the corresponding Alarm Flag (“A1F”) or (“A2F”)bit is set to logic 1. If the corresponding alarm interrupt enable (“A1IE”) or (“A2IE”) is also set to logic 1 and the INTCN bit is set to logic 1, the alarm condition will acti-vate the INT /SQW signal.Accurate I 2C RTC with IntegratedTCXO/Crystal/FRAMD S 32x 35Accurate I 2C RTC with Integrated TCXO/Crystal/FRAM Special-Purpose RegistersControl Register (0Eh)Bit 7: Enable Oscillator (EOSC ). When set to logic 0,the oscillator is started. When set to logic 1, the oscilla-tor is stopped when the DS32x35 switches to V BAT .This bit is clear (logic 0) when power is first applied.When the DS32x35 is powered by V CC , the oscillator is always on regardless of the status of the EOSC bit.Bit 6: Battery-Backed Square-Wave Enable (BBSQW). When set to logic 1 and the DS32x35is being powered by the V BAT pin, this bit enables the square-wave or interrupt output when V CC is absent.When BBSQW is logic 0, the INT /SQW pin goes high impedance when V CC falls below the power-fail trip point. This bit is disabled (logic 0) when power is first applied.Bit 5: Convert Temperature (CON V). When the DS32x35 is in idle state, setting this bit to 1 forces the temperature sensor to convert the temperature into dig-ital code and execute the TCXO algorithm to update the capacitance load for the oscillator. This can only happen when a conversion is not already in progress.The user should check the status bit BSY before forcing the controller to start a new TCXO execution. A user-ini-tiated temperature conversion does not affect the inter-nal 64-second update cycle.Bits 4 and 3: Rate Select (RS2 and RS1). These bits control the frequency of the square-wave output when the square wave has been enabled. Table 5 shows the square-wave frequencies that can be selected with the RS bits. These bits are both set to logic 1 (8.192kHz)when power is first applied.Bit 2: Interrupt Control (INTCN). This bit controls the INT /SQW signal. When the INTCN bit is set to logic 0, a square wave is output on the INT /SQW pin. When the INTCN bit is set to logic 1, then a match between the timekeeping registers and either of the alarm registers activates the INT /SQW output (if the alarm is also enabled). The corresponding alarm flag is always set regardless of the state of the INTCN bit. The INTCN bit is set to logic 1 when power is first applied.Bit 1: Alarm 2 Interrupt Enable (A2IE).When set to logic 1, this bit permits the alarm 2 flag (A2F) bit in the status register to assert INT /SQW (when INTCN = 1).When the A2IE bit is set to logic 0 or INTCN is set to logic 0, the A2F bit does not initiate an interrupt signal.The A2IE bit is disabled (logic 0) when power is first applied.Bit 0: Alarm 1 Interrupt Enable (A1IE).When set to logic 1, this bit permits the alarm 1 flag (A1F) bit in the status register to assert INT /SQW (when INTCN = 1).When the A1IE bit is set to logic 0 or INTCN is set to logic 0, the A1F bit does not initiate the INT /SQW sig-nal. The A1IE bit is disabled (logic 0) when power is first applied.DS32x35Accurate I 2C RTC with IntegratedTCXO/Crystal/FRAMBit 7: Oscillator Stop Flag (OSF). A logic 1 in this bit indicates that the oscillator either is stopped or was stopped for some period and may be used to judge the validity of the timekeeping data. This bit is set to logic 1any time that the oscillator stops. The following are examples of conditions that can cause the OSF bit to be set:1)The first time power is applied.2)The voltages present on both V CC and V BAT are insufficient to support oscillation.3)The EOSC bit is turned off in battery-backed mode.4)External influences on the crystal (i.e., noise, leak-age, etc.).This bit remains at logic 1 until written to logic 0.Bit 3: Enable 32kHz Output (EN32kHz).This bit con-trols the status of the 32kHz pin. When set to logic 1,the 32kHz pin is enabled and outputs a 32.768kHz square-wave signal. When set to logic 0, the 32kHz pin goes to a high-impedance state. The initial power-up state of this bit is logic 1, and a 32.768kHz square-wave signal appears at the 32kHz pin after a V CC is applied to the DS32x35.Bit 2: Busy (BSY).This bit indicates the device is busy executing TCXO functions. It goes to logic 1 when the conversion signal to the temperature sensor is asserted and then is cleared when the device is in the 1-minuteCONV signal from aborting the execution of the TCXO algorithm and starting a new execution of TCXO function.Bit 1: Alarm 2 Flag (A2F).A logic 1 in the alarm 2 flag bit indicates that the time matched the alarm 2 regis-ters. If the A2IE bit is logic 1 and the INTCN bit is set to logic 1, the INT /SQW pin is also asserted. A2F is cleared when written to logic 0. This bit can only be written to logic 0. Attempting to write to logic 1 leaves the value unchanged.Bit 0: Alarm 1 Flag (A1F).A logic 1 in the alarm 1 flag bit indicates that the time matched the alarm 1 regis-ters. If the A1IE bit is logic 1 and the INTCN bit is set to logic 1, the INT /SQW pin is also asserted. A1F is cleared when written to logic 0. This bit can only be written to logic 0. Attempting to write to logic 1 leaves the value unchanged.Aging Offset Register (10h)The Aging Offset register provides an 8-bit code to add to the codes in the capacitance array registers. The code is encoded in two’s complement. One LSB repre-sents one small capacitor to be switched in or out of the capacitance array at the crystal pins.The change in ppm per LSB is different at different temper-atures. The frequency vs. temperature curve is distorted by the values used in this register. At +23°C, one LSB typi-cally provides approximately 0.1ppm change in frequency.D S 32x 35Accurate I 2C RTC with Integrated TCXO/Crystal/FRAMTemperature Registers (11h–12h)Temperature is represented as a 10-bit code with a res-olution of +0.25°C and is accessible at location 11h and 12h. The temperature is encoded in two’s comple-ment format. The upper 8 bits are at location 11h, and the lower 2 bits are in the upper nibble at location 12h.Upon power reset, the registers are set to a defaulttemperature of 0°C and the controller starts a tempera-ture conversion. New temperature readings are stored in this register.FRAM Address MapDuring a multibyte access, the address pointer wraps around to location 00h when it reaches the end of the register space.DS32x35Accurate I 2C RTC with IntegratedTCXO/Crystal/FRAMI 2C Serial Data BusThe DS32x35 supports a bidirectional I 2C bus and data transmission protocol (F igure 1). A device that sends data onto the bus is defined as a transmitter, and a device receiving data is defined as a receiver. The device that controls the message is called a master.The devices that are controlled by the master are slaves. The bus must be controlled by a master device that generates the serial clock (SCL), controls the bus access, and generates the START and STOP condi-tions. The DS32x35 operates as a slave on the I 2C bus.Connections to the bus are made through the SCLinput and open-drain SDA I/O lines. Within the bus specifications, a standard mode (100kHz maximum clock rate) and a fast mode (400kHz maximum clock rate) are defined. The DS32x35 works in both modes.The following bus protocol has been defined (Figure 2):•Data transfer can be initiated only when the bus is not busy.•During data transfer, the data line must remain stable whenever the clock line is high. Changes in the data line while the clock line is high are interpreted as control signals.Figure 2. I C Data Transfer OverviewFigure 1. Data Transfer on I C Serial BusD S 32x 35Accurate I 2C RTC with Integrated TCXO/Crystal/FRAM Accordingly, the following bus conditions have been defined:Bus not busy:Both data and clock lines remain high.Start data transfer:A change in the state of the data line from high to low, while the clock line is high,defines a START condition.Stop data transfer:A change in the state of the data line from low to high, while the clock line is high,defines a STOP condition.Data valid:The state of the data line represents valid data when, after a START condition, the data line is stable for the duration of the high period of the clock signal. The data on the line must be changed during the low period of the clock signal. There is one clock pulse per bit of data.Each data transfer is initiated with a START condition and terminated with a STOP condition. The number of data bytes transferred between the START and the STOP conditions is not limited, and is determined by the master device. The information is transferred byte-wise and each receiver acknowledges with a ninth bit.Acknowledge:Each receiving device, when addressed, is obliged to generate an acknowledge after the reception of each byte. The master device must generate an extra clock pulse, which is associ-ated with this acknowledge bit.A device that acknowledges must pull down the SDA line during the acknowledge clock pulse in such a way that the SDA line is stable low during the high period of the acknowledge-related clock pulse. Of course, setup and hold times must be taken into account. A master must signal an end of data to the slave by not generating an acknowledge bit on the last byte that has been clocked out of the slave. In this case, the slave must leave the data line high to enable the master to generate the STOP condition.Depending upon the state of the R/W bit, two types of data transfer are possible:1)Data transfer from a master transmitter to a slave receiver. The first byte transmitted by the master is the slave address. Next follows a num-ber of data bytes. The slave returns an acknowl-edge bit after each received byte. Data is transferred with the most significant bit (MSB) first.2)Data transfer from a slave transmitter to a master receiver. The first byte (the slave address) is transmitted by the master. The slave then returns an acknowledge bit. Next follows a number of data bytes transmitted by the slave to the master. The master returns an acknowledge bit after all received bytes other than the last byte.At the end of the last received byte, a not acknowledge is returned.The master device generates all the serial clock pulses and the START and STOP conditions. A transfer is ended with a STOP condition or with a repeated START condition. Since a repeated START condition is also the beginning of the next serial transfer, the bus will not be released. Data is transferred with the most significant bit (MSB)first.The DS32x35 can operate in the following two modes:1)Slave receiver mode (DS32x35 write mode):Serial data and clock are received through SDA and SCL.After each byte is received an acknowledge bit is transmitted. START and STOP conditions are recog-nized as the beginning and end of a serial transfer.Address recognition is performed by hardware after reception of the slave address and direction bit (see F igures 3, 5, and 7). The slave address byte is the first byte received after the master generates the START condition. The slave address byte contains one of the 7-bit DS32x35 addresses. The slave address is 1101000 for the RTC. F or the DS32B35FRAM, the first four bits are 1010, and the next three bits select one of eight blocks of data (see Table 2).F or the DS32C35 F RAM, the first seven bits are 1010000. Each slave address is followed by the direction bit (R/W ), which is zero for a write. After receiving and decoding the slave address byte, the device outputs an acknowledge on the SDA line.After the device acknowledges the slave address and write bit, the master transmits a register address to the device. For the DS32C35, the master transmits two bytes for the register address information. This sets the register pointer on the device. After setting the register address, the master then transmits zero or more bytes of data with the DS32x35 acknowl-edging each byte received. The master generates a STOP condition to terminate the data write.。

相关文档
最新文档