SKET40014E中文资料
keithley(吉时利)4200A-SCS中文技术手册

主要性能指标
I-V 源测量单元 (SMU) ●● ± 210 V/100 mA 或 ± 210 V/1 A 模块 ●● 100 fA 测量分辨率 ●● 选配前端放大器提供了 0.1 fA 测量分辨率 ●● 10 mHz - 10 Hz 超低频率电容测量 ●● 四象限操作 ●● 2 线或 4 线连接
C-V 多频率电容单元 (CVU) ●● AC 阻抗测量 (C-V, C-f, C-t) ●● 1 kHz - 10 MHz 频率范围 ●● ± 30 V (60 V 差分 ) 内置 DC 偏置源,可以扩展到 ± 210 V (420 V 差分 ) ●● 选配 CVIV 多功能开关,在 I-V 测量和 C-V 测量之间简 便切换
无需示波器检验脉冲测量 脉冲定时预览模式可以简便地查看脉冲定时参数,确认脉冲 式 I-V 测试按希望的方式执行。使用瞬态 I-V 或波形捕获模式, 进行基于时间的电流或电压测量,而无需使用外部示波器。
典型应用
MOSFET, BJT 晶体管 材料特性分析 非易失性存储设备 电阻率系数和霍尔效应测量 NBTI/PBTI III-V 族器件 失效分析 纳米器件 二极管和 pn 联结 太阳能电池 传感器 MEMS 器件 电化学 LED 和 OLED
±210V
4200A-CVIV I-V/C-V 多开关模块 DC I-V 和 C-V 自动切换
-
-
4225-PMU
超快速脉冲测量单元
- 脉冲式 I-V - SegmentARBR® 多电平 脉冲 - 瞬态波形捕获
±40 V (80 V p-p), ±800 mA 200 MSa/s 同时测量电流和电压 2048 个唯一段 20 ns 脉宽仅输出时 60 ns 脉宽输出同时测流时
141-en T-TOUCH EXPERT

Polar
Temperate
Arid
Tropical
Mediterranean
2 sec. or
Climate zone display
Setting mode
Select hemisphere: North = North, South = South not set = not set
Set the local climate: T = temperate; M = Mediterranean; A = arid; tr = tropical; P = polar
Validate setting
w ww. ti ss o t .c h
4/13
141_EN
T-TOUCH EXPERT
*
Setting > Standby
Standby mode is a battery economy mode. All the functions are deactivated, with only the time & date counters updated. This mode economises the battery when the watch is not being worn.
*
T-TOUCH EXPERT User’s Manual
Acknowledgements
We would like to thank you for choosing a TISSOT watch, a Swiss brand among the most highly renowned in the world. Your T-TOUCH watch has the most recent technical innovations. It gives you a constant analogue time display and a variety of digital displays. In addition, the following functions can be accessed simply by touching the glass: Weather, Altimeter, Chronograph, Compass, Alarm and Thermometer.
施耐德电气 MN4000 料位开关 振棒式 操作手册说明书

page 内容目录页码安全须知 / 技术支持2-----------------------------------------------------------------------------------------------------简介3-----------------------------------------------------------------------------------------------------技术参数4-----------------------------------------------------------------------------------------------------认证8-----------------------------------------------------------------------------------------------------可选项9-----------------------------------------------------------------------------------------------------安装10-----------------------------------------------------------------------------------------------------电气安装13-----------------------------------------------------------------------------------------------------信号输出16-----------------------------------------------------------------------------------------------------灵敏度设置16----------------------------------------------------------------------------------------------------- 维护17-----------------------------------------------------------------------------------------------------危险区域应用须知18-----------------------------------------------------------------------------------------------------组装 MN 404020-----------------------------------------------------------------------------------------------------废弃23-----------------------------------------------------------------------------------------------------技术如有更新,恕不另行通知。
电能网关400数据手册说明书

• As an out-of-the-box, plug-and- play device, there is no additional software required to configure and view downstream devices
Features and benefits
Rugged, industrial design
• Designed specifically for industrial environments, the PXG has a compact, metal case that only requires convection cooling
• Flexible and expandable solutions
• Stand-alone or small systems benefit from comprehensive, on-board Web pages; no additional programming or software is necessary for virtually out-of-the-box, plug-and-play functionality
• Comprehensive, well-organized device Web pages present measured parameters such as current, voltage, power, energy, frequency, power factor and voltage THD, just to name a few
Product snapshot
WIKA Instruments Italia Srl NI-401E温度开关说明书

INSTRUCTION MANUALNI-401E版本:10 04/20TEMPERATURE SWITCHES SERIE TAG AND TWG本手册提供的所有数据、声明和建议均基于我们认为可靠的信息。
由于有效使用条件超出了我们的控制范围,我们的产品销售条件是用户在遵循我们对其预期目的或使用的建议之前自行评价上述条件。
耐候且本质安全:PXS 系列; 隔爆: 隔爆:系列标签§不适用于标签系列A=护套连接 B=电缆入口X=有效长度 Y=插入长度 K=毛细管长度 表面安装时,使用M6螺钉重量2.1kg尺寸单位:mm重量2.9 kg尺寸单位:mm注意:尺寸和重量不是强制性的,除非在认证图纸上标注。
注意• 在安装、使用或维护仪表之前,有必要阅读并理解随附说明手册中给出的说明。
• 仪表必须由合有资质人员安装和维护。
• 只有在检查并确认仪表特性符合工艺和设备要求后,才能进行安装。
•仪器的功能特点及其防护等级显示在固定在外壳上的标识牌上。
内容1 - 一般说明2 - 工作原理3 - 型号代码4 - 标识牌和标记5 - 设定值调节6 - 设定值校准7 - 安装和连接8 - 仪表管道9 - 投入运行 10 - 目视检查 11 - 功能验证 12 - 停止和拆卸 13 - 处置14 - 温度开关,用于安全回路执行(SIL 执行) 15 - 故障排除在危险环境中使用的安全说明。
关于安全使用温度开关的建议。
1 - 一般说明1.1 前言系列或型号的错误选择以及不正确的安装会导致故障并缩短仪器寿命。
不遵守本手册中给出的指示可能会对仪表、环境和人员造成损害。
1.2 允许的超量程工作温度可偶尔超过工作范围,前提是温度保持在仪表特性(设计温度)中规定的范围内。
超过工作范围的连续温度可应用于仪表,前提是仪表特性中明确说明了这些压力。
不得超过技术规范和额定值中规定的电流和电压值。
短暂的超量程会对开关产生破坏性影响。
1.3 机械振动一般会导致仪器某些部件的磨损或造成误跳闸。
T4000-4 同步电动机减少匝数提高转矩改造

T4000-4/1430 4000Kw 10Kv 同步电动机定子大修加强绝缘总结及减少匝数的设计计算一. 电机铭牌型号 T4000-4/1430 额定功率 4000Kw 转速 1500r/m功率因数 0.9 效率 97.2% 绝缘等级 F级定子电压 10000V 定子电流 264.0A防护等级 IP44 安装形式 IM7311 冷却方式 ICW37A91出厂编号 No-1715115-1 1995年 7月 上海电机厂出品二. 铁心绕组数据1.铁心 Da=1430 Di=940 Lt=800 (15段)Z=72 bn*hn 19.1*85.6 (迭片后)2.绕组 2p=4 q=6 a=1Y3.原线圈 导线 2.80*5.6 2根左右并绕. 8匝/只 y=15(1-16)三. 原来定子绕组绝缘规范根据原线圈数据和槽尺寸, 核算线圈尺寸, 发热参数和槽内填充.1. 热负载1.1.导线2.80*5.6(S=15.13)1.2.电流密度 J=264/2/(2*15.13)=4.36221.3.线负载 A=264/2*8*2*72/(94*3.1416)=514.931.4.热负载 AJ=4.3622*514.93=2246.227对比哈尔滨电机厂同型号电机. 额定电流267.5AJ=3.6604 A=527.3676 AJ=1930.376 本机AJ=2246稍高一些但是对比日本三菱公司产品 UKB型 1250Kw 4极电机.J=5.22 A=672.3 AJ=3512.376 本机AJ=2246就不高.对比国产 Y500-4 1250KwJ=5.45 A=601.34 AJ=3280.3 本机AJ=2246也不高.2.导线绝缘和匝间绝缘SBEFB-70/155-2N自粘性玻璃丝包云母带绕包线. 不另外加匝间绝缘.绝缘后的导线尺寸为 A=2.80+0.70=3.50mmB=5.60+0.70=6.30mm3.线圈尺寸:匝间: 高度 (3.50)*8=28.0mm (图纸标注28.0mm)宽度 (6.30)*2+0.10=12.7mm((图纸标注12.7mm)主绝缘:高度 28.0+6.0=34.0mm宽度 12.7+6.0=18.7mm4.迭片以后的槽尺寸 (冲片尺寸减去迭片公差0.4mm)宽度 19.5-0.4=19.1mm 高度 86.0-0.4=85.6mm5.槽内填充宽度 19.1-18.7=0.4mm (正常) 高度 85.4-2*34.0=17.4mm(有富裕)四. 大修定子绕组, 加强绝缘改造上海电机厂1995年的产品在运行不到几年就先后发生匝间短路和引线头崩坏的绝缘损坏事故. 为此在大修时考虑要加强绝缘.1.根据槽尺寸和原线圈数据, 考虑到烧结机电机经常重载启动. 为此要求加强匝间绝缘.1.1.据粉云母带绕包线匝间绝缘厚度选用的计算公式计算匝间冲击电压为:Uvt=SQR(2/3)*K1*K2*Un/Wa=SQR(2/3)*3*1*Un/8=3062V>3000V应该用SBEFB-90/155-2N.式中: K1-电机重要程度和是否经常启动的系数.重要的和经常启动的电机应取 3,工作条件好的一般电机可取 2. 本机最好取 3.K2-电机线圈绕法决定的系数.两根并绕取 1. 弓形和 N形绕法应该取 3. 本机可取 1.Un-额定线电压. Un=10000V.Wa-每只线圈的匝数. 本机为 8匝/只根据规定:计算匝间冲击电压<2000V 用 SBEFB-50/155-1N<3000V 用 SBEFB-70/155-2N(两层云母带1/4迭包)>3000V 用 SBEFB-90/155-2N(两层云母带半迭包)1.2.根据包钢电气公司的高压电机绝缘规范:对于10Kv F级电机, 6-8匝/只的线圈应采用SBEFB-90/155-2N.从这两点出发考虑匝间绝缘的选取原则都是一致的.1.3.对照哈尔滨电机厂的T4000-4/1430 4000Kw 10kv电机匝间绝缘采用单玻双薄膜线在加包两层粉云母带1.4.对照上海电机厂的T3200-6Z=72 2p=6 q=4 y=10 a=2Y线圈采用2-2.36*9.0线并绕11匝. 也是采用SBEFB-70/155-2N.与本机一样. 这样一比, 本机的匝间绝缘就显得薄弱一点.因为:1.4.1.按照上海电机厂以前的绝缘规范, 大型 2、4极电机的匝间绝缘要比一般电机有所加强.1.4.2.按照北京重型电机厂的绝缘规范每个线圈的匝数 7-9匝时为一个档次 (双玻线半迭包加包两层聚酰亚胺薄膜粉云母带), 10-13匝要低 1个档次. 因此本机的匝间绝缘也要加强.1.5.上海电机厂生产的大型异步电机YR2500-12/2150 2500Kw 10Kv异步电机, 用2-2*4.75线, 并绕 9匝.(线圈图纸5B.523.8450)它的起动电流和最大转矩倍数都不及本机大, 且极数多, 功率也小. 匝数还多一匝. 但是它的匝间绝缘是半迭包两层云446-1B薄膜粉云母带. 匝间绝缘厚度0.90mm.YR2000-10/1730 2000Kw 10Kv异步电机. 匝间绝缘也是0.90mm厚.因此认为选用SBEFB-90/155-2N 是合适的.3.由于匝间绝缘的加厚, 线圈宽度将要紧张. 为此改用2.80*5.3的导线.4。
UXE04140G9CR100中文资料

For technical questions, contact: ff3cresistors@Document Number: 28726UXA 0204, UXB 0207, UXE 0414Vishay BeyschlagHigh Precision Leaded ResistorsDESCRIPTIONUXA 0204, UXB 0207 and UXE 0414 high precision leaded thin film resistors combine the proven reliability of the professional products with an exceptional level of precision and stability. Therefore they are perfectly suited for applications in the fields of precision test and measuring equipment and particularly for the design of calibration references and standards.FEATURES•Superior thin film technology•Exceptional low TCR: ± 02 ppm/K to ± 10 ppm/K •Super tight tolerance: ± 0.01 % to ± 0.25 %•Exceptional overall stability: class 0.02•Wide resistance range: 22 Ω to 1 M Ω•Lead (Pb)-free solder contacts•Pure tin plating provides compatibility with lead (Pb)-free and lead containing soldering processes•Compatible with “Restriction of the use of Hazardous Substances” (RoHS) directive 2002/95/EC (issue 2004)APPLICATIONS•Precision test and measuring equipment•Design of calibration references and standardsMETRIC SIZEDIN:020*********CECC:ABDTECHNICAL SPECIFICATIONSDESCRIPTION UXA 0204UXB 0207UXE 0414CECC size AB DResistance range 22 Ω to 221 k Ω10 Ω to 1 M Ω22 Ω to 511 k ΩResistance tolerance ± 0.25 %; ± 0.1 %; ± 0.05 %; ± 0.01 %± 0.1 %; ± 0.05 %Temperature coefficient ± 10ppm/K; ± 05ppm/K; ± 02ppm/K ± 10ppm/K; ± 05ppm/KOperation modeprecision precision precision Climatic category (LCT/UCT/days)20/125/5620/125/5620/125/56Rated dissipation:P 850.05W 0.125 W 0.25 W P 700.1 W 0.25W 0.5W Operating voltage, U max AC/DC 200 V 250 V 300 V Film temperature125°C 125°C 125°C Max. resistance change at P 70for resistance range, ΔR /R max., after:100 Ωto 100 k Ω100 Ωto 250 k Ω100 Ωto 100 k Ω2000h≤ 0.05 %≤ 0.05 %≤ 0.05 %Max. resistance change at P 85for resistance range, ΔR /R max., after:100 Ωto 100 k Ω100 Ωto 250 k Ω100 Ωto 100 k Ω1000h ≤ 0.02 %≤ 0.02 %≤ 0.02 %8000h ≤ 0.04 %≤ 0.04 %≤ 0.04 %225000h≤ 0.12 %≤ 0.12 %≤ 0.12 %Specified lifetime225 000h225 000h225 000hPermissible voltage against ambient :1 minute 300V 500V 800V continuous75V 75V 75V Failure rate≤ 0.7 x 10-9/h≤ 0.3 x 10-9/h≤ 0.1 x 10-9/hDocument Number: 28726For technical questions, contact: ff3cresistors@UXA 0204, UXB 0207, UXE 0414High Precision Leaded ResistorsVishay Beyschlag12NC INFORMATIONComponents may be ordered by using either a simple clear text ordering code, see “Type Description and Ordering Code” or Vishay BCcomponents’ unique 12NC.Numeric Ordering Code (12NC)•The resistors have a 12-digit Part Number starting with 2312.•The subsequent 4digits indicate the resistor type,specification and packaging; see the 12NC Part Number table.•The remaining 4digits indicate the resistance value:–The first 3digits indicate the resistance value.–The last digit indicates the resistance decade in accordance with the 12NC Indicating Resistance Decade table.Last Digit of 12NC Indicating Resistance Decade12NC ExampleThe Part Number of a UXA 0204 resistor, value 47 k Ω and TCR 10 with ± 0.1 % tolerance, supplied on bandolier in a box of 1000 units is: 2312 662 34703.Note:(1) Readable 12NC coding of resistance values is restricted to values with three significant digits. For resistance values with more than three significant digits, a non readable sequential number will be issued by the factory for each requested combination of resistance value and tolerance.RESISTANCE DECADELAST DIGIT10 Ωto 99.9 Ω9100 Ωto 999 Ω11 k Ω to 9.99 k Ω210 k Ωto 99.9 k Ω3100k Ω to 999 k Ω412NC PART NUMBER - resistor type and packagingDESCRIPTIONORDERING CODE 2312........BANDOLIER IN BOX BANDOLIER IN BOX BANDOLIER ON REEL BANDOLIER ON REEL BANDOLIER ON REEL TYPETCRTOL.CU 100 units C1 1000 units R1 1000 units R2 2500 units RP 5000 units UXA 0204± 10 ppm/K± 0.25 %562 2....662 2....462 2....--± 0.1 %562 3....662 3....462 3....--± 0.05 %562 4....662 4....462 4....--± 0.01 %562 7....662 7....462 7....--(1)562 91...662 91...462 91...--± 05 ppm/K± 0.25 %563 2....663 2....463 2....--± 0.1 %563 3....663 3....463 3....--± 0.05 %563 4....663 4....463 4....--± 0.01 %563 7....663 7....463 7....--(1)563 91...663 91...463 91...--± 02 ppm/K± 0.25 %564 2....664 2....464 2....--± 0.1 %564 3....664 3....464 3....--± 0.05 %564 4....664 4....464 4....--± 0.01 %564 7....664 7....464 7....--(1)564 91...664 91...464 91...--UXB 0207± 10 ppm/K± 0.25 %572 2....672 2....472 2....-577 2....± 0.1 %572 3....672 3....472 3....-577 3....± 0.05 %572 4....672 4....472 4....-577 4....± 0.01 %572 7....672 7....472 7....-577 7. (1)572 91...672 91...472 91...-577 91...± 05 ppm/K± 0.25 %573 2....673 2....473 2....-578 2....± 0.1 %573 3....673 3....473 3....-578 3....± 0.05 %573 4....673 4....473 4....-578 4....± 0.01 %573 7....673 7....473 7....-578 7. (1)573 91...673 91....473 91...-578 91...± 02 ppm/K± 0.25 %574 2....674 2....474 2....-579 2....± 0.1 %574 3....674 3....474 3....-579 3....± 0.05 %574 4....674 4....474 4....-579 4....± 0.01 %574 7....674 7....474 7....-579 7. (1)574 91...674 91...474 91...-579 91...UXE 0414± 10 ppm/K± 0.1 %592 3....692 3....-597 3....-± 0.05 %592 4....692 4....-597 4....-(1)592 91...692 91...-597 91...-± 05 ppm/K± 0.1 %593 3....693 3....-598 3....-± 0.05 %593 4....693 4....-598 4....-(1)593 91...693 91...-598 91...- For technical questions, contact: ff3cresistors@Document Number: 28726UXA 0204, UXB 0207, UXE 0414Vishay BeyschlagHigh Precision Leaded ResistorsNotes:(1) Please refer to table PACKAGING, see next page.Products can be ordered using either the Product Description or the 12NC. The PART NUMBER is shown to facilitate the introduction of a unified part numbering system.DIMENSIONSPART NUMBER AND PRODUCT DESCRIPTION UX SERIESPart Numbering: UXB02070F1001AC100MODEL/SIZE SPECIAL CHARACTERTCRVALUETOLERANCE PACKAGINGSPECIALUXA0204UXB0207UXE04140 = neutralH = ± 2 ppm/K G = ± 5 ppm/K F = ± 10 ppm/K3 digit value 1 digit multiplier MULTIPLIER 9 = *10-1 2 = *1020 = *100 3 = *1031 = *1014 = *104T = ± 0.01 %A = ± 0.05 %B = ± 0.1 %C = ± 0.25 %C1CU R1R2RPup to 2 digits 00 = standardProduct Description: UXB 0207-10 0.05 % C1 1K0UXB 0207100.05 %C11K0MODEL SIZE TCR TOLERANCE PACKAGING (1)RESIST ANCE VALUEUXA UXB UXE020*********± 2 ppm/K ± 5 ppm/K ± 10 ppm/K± 0.01 %± 0.05 %± 0.1 %± 0.25 %C1CU R1R2RP1K0 = 1.0 k Ω47K = 47 k Ω50R5 = 50.5 ΩDIMENSIONS - leaded resistor types, mass and relevant physical dimensionsTYPE D max (mm)L max (mm)d nom (mm)I min (mm)M min (mm)MASS (mg)UXA 0204 1.6 3.60.529.0 5.0125UXB 0207 2.5 6.30.628.07.5220UXE 04144.011.90.831.015.0750SCRIPT MARKING - printed resistance value and letter coding for TCR and toleranceRESISTANCE VALUETOL.(%)LETTER CODETCR (ppm/K)LETTER CODEClear text code for value± 0.25C ± 10B ± 0.1B ± 05A ± 0.05A ± 02T ± 0.01T−−B 0200F 17UX 00A C 110Document Number: 28726For technical questions, contact: ff3cresistors@UXA 0204, UXB 0207, UXE 0414High Precision Leaded ResistorsVishay BeyschlagNotes:(1) Resistance values to be selected from the E192 series, for other values please contact the factory.(2) TCR 10 and TCR 05 are specified over the temperature range from - 20°C to + 85°C.(3) TCR 02 is specified over the temperature range from 0°C to + 60°C.DESCRIPTIONProduction is strictly controlled and follows an extensive set of instructions established for reproducibility. A homogeneous film of metal alloy is deposited on a high grade ceramic body (85 % Al 2O 3) and conditioned to achieve the desired temperature coefficient. Nickel plated steel termination caps are firmly pressed on the metallized rods.Special laser devices are used repeatedly to achieve the target value by slowly and smoothly cutting a helical groove in the resistive layer without damaging the ceramics. A further conditioning is applied in order to stabilise the trimming result. Connecting wires of electrolytic copper plated with pure tin are welded to the termination caps. The resistors are covered by protective coating designed for electrical, mechanical and climatic protection.The terminations receive a final pure tin on nickel plating. Script marking designates the resistance value plus coded TCR and tolerance.The result of the determined production is verified by an accelerated ageing (burn-in) and extensive testing procedure performed on 100 % of the individual resistors.Only accepted products are stuck directly on the adhesive tapes in accordance with IEC 60286-1.ASSEMBLYThe resistors are suitable for processing on automatic insertion equipment and cutting and bending machines.E xcellent solderability is proven, even after extended storage. They are suitable for automatic soldering using wave or dipping. The encapsulation is resistant to all cleaning solvents commonly used in the electronics industry,including alcohols, esters and aqueous solutions. The suitability of conformal coatings, if applied, shall be qualified by appropriate means to ensure the long-term stability of the whole system.APPROVALSWhere applicable, the resistors are tested in accordance with CECC 40101-806 which refers to EN 60115-1 and EN 140100.Vishay B EYSCHLAG has achieved "Approval of Manufacturer" in accordance with EN 100114-1PACKAGINGMODEL REELBOXBANDOLIER ON REELCODE PIECES/BOXCODE UXA 1000R11001000CU C1UXB 10005000R1RP 1001000CU C1UXE2500R21001000CU C1TEMPERATURE COEFFICIENT AND RESISTANCE RANGEDESCRIPTIONRESISTANCE VALUE (1)TCRTOLERANCE UXA 0204UXB 0207UXE 0414± 10 ppm/K (2)± 0.25 %22 Ω to 221 k Ω10 Ω to 1 M Ω-± 0.1 %43 Ω to 221 k Ω10 Ω to 1 M Ω22 Ω to 511k Ω± 0.05 %100 Ω to 180 k Ω24 Ω to 301 k Ω100 Ω to 301k Ω± 0.01 %200 Ω to 150 k Ω24 Ω to 301 k Ω-± 05 ppm/K (2)± 0.25 %47 Ω to 150 k Ω10 Ω to 1 M Ω-± 0.1 %47 Ω to 150 k Ω10 Ω to 1 M Ω47 Ω to 301k Ω± 0.05 %100 Ω to 150 k Ω24Ω to 221 k Ω100 Ω to 301k Ω± 0.01 %200 Ω to 150 k Ω24 Ω to 221 k Ω-± 02 ppm/K (3)± 0.25 %100 Ω to 100 k Ω100 Ω to 150 k Ω-± 0.1 %100 Ω to 100 k Ω100 Ω to 150 k Ω-± 0.05 %150 Ω to 100 k Ω150 Ω to 150 k Ω-± 0.01 %200 Ω to 100 k Ω200 Ω to 150 k Ω- For technical questions, contact: ff3cresistors@Document Number: 28726UXA 0204, UXB 0207, UXE 0414Vishay BeyschlagHigh Precision Leaded ResistorsFUNCTIONAL DESCRIPTIONDerating - Precision OperationTemperature RiseDocument Number: 28726For technical questions, contact: ff3cresistors@UXA 0204, UXB 0207, UXE 0414High Precision Leaded ResistorsVishay BeyschlagTESTS AND REQUIREMENTSE ssentially all tests are carried out in accordance with the following specifications:E N 140000/IE C 60115-1, Generic specification (includes tests)E N 140100/IE C 60115-2, Sectional specification (includes schedule for qualification approval)CECC 40101-806, Detail specification (includes schedule for conformance inspection)Most of the components are approved in accordance with the uropean CE CC-system, where applicable. The Test Procedures and Requirements table contains only the most important tests. For the full test schedule refer to the documents listed above. The testing also covers most of the requirements specified by EIA/IS-703 and JIS-C-5202.The tests are carried out in accordance with IEC 60 068 and under standard atmospheric conditions in accordance withIE C 60068-1, 5.3. Climatic category LCT/UCT/56 (rated temperature range: Lower Category Temperature, Upper Category Temperature; damp heat, long term, 56 days) is valid.Unless otherwise specified the following values apply:Temperature: 15 °C to 35 °C Relative humidity: 45 % to 75 %Air pressure: 86 kPa to 106 kPa (860 mbar to 1060 mbar).For testing the components are mounted on a test board in accordance with IE C 60115-1, 4.31 unless otherwise specified.In the Test Procedures and Requirements table only the tests and requirements are listed with reference to the relevant clauses of IEC 60115-1 and IEC 60068-2; a short description of the test procedure is also given.TEST PROCEDURES AND REQUIREMENTSIEC 60115-1CLAUSEIEC 60068-2TEST METHODTESTPROCEDUREREQUIREMENTSPERMISSIBLE CHANGE (ΔR )Stability for product types:UXA 0204100 Ω to 100 k Ω22Ω to < 100Ω;> 100 k Ω to 221 k Ω -UXB 0207100 Ω to 250 k Ω40.2Ω to < 100 Ω;> 250k Ω to 301 k Ω10Ω to < 40.2 Ω;> 301 k Ω to 1 M ΩUXE 0414100 Ω to 100 k Ω22Ω to < 100 Ω;> 100k Ω to 511 k Ω-4.5-resistance (ΔR /R )± 0.25 %; ± 0.1 %; ± 0.05 %; ± 0.01 %4.8.4.2-temperature coefficientat 20/LCT/20 °C and 20/UCT/20 °C± 10 ppm/K; ± 05 ppm/K; ± 02 ppm/K4.25.1-enduranceroom temperature;U = orU = U max ;1.5 h on; 0.5 h off 70°C; 2000 h ± (0.05 %R +0.01Ω)± (0.05 %R +0.01Ω)± (0.05 %R +0.01Ω)85°C; 1000 h ± (0.02 %R +0.01Ω)± (0.03 %R +0.01Ω)±(0.04 %R +0.01Ω)85°C; 8000 h± (0.04 %R +0.01Ω)± (0.06 %R +0.01Ω)± (0.08 %R +0.01Ω)P 70 x R For technical questions, contact: ff3cresistors@Document Number: 28726UXA 0204, UXB 0207, UXE 0414Vishay BeyschlagHigh Precision Leaded Resistors4.25.3-endurance atupper category temperature 125°C; 1000 h ± (0.04 % R +0.01Ω)± (0.06 %R +0.01Ω)± (0.08 %R +0.01Ω)4.24 3 (Ca)damp heat,steady state (40± 2)°C; 56days; (93 ± 3) %RH± (0.04 %R +0.01Ω)± (0.05 %R +0.01Ω)± (0.06 %R +0.01Ω)4.23climatic sequence:4.23.22 (Ba)dry heat 125°C; 16h 4.23.330 (Db)damp heat, cyclic55°C; 24h;90% to 100%RH;1 cycle4.23.4 1 (Aa)cold - 55 °C; 2h 4.23.513 (M)low air pressure 8.5kPa;2h;15 °C to 35°C 4.23.630 (Db)damp heat, cyclic55°C; 5days;95% to 100%RH;5 cycles ± (0.04 %R +0.01 Ω)no visible damage± (0.05 %R +0.01Ω)no visible damage± (0.06 %R +0.01Ω)no visible damage4.13-short time overload room temperature;U = 2.5 x or U = 2x U max ; 5 s ± (0.01 %R +0.01Ω)no visible damage ± (0.01 %R +0.01Ω)no visible damage ± (0.02 %R +0.01Ω)no visible damage4.1914 (Na)rapid change of temperature 30minutes at LCT and 30minutes at UCT;5cycles ± (0.01 %R +0.01Ω)no visible damage ± (0.01 %R +0.01Ω)no visible damage ± (0.02 % R +0.01Ω)no visible damage4.2945 (XA)component solvent resistanceisopropyl alcohol + 23 °C; toothbrushmethod marking legible;no visible damage4.18.220 (Tb)resistance to soldering heat unmounted components; (260± 5)°C; (10± 1)s ± (0.01 % R +0.01Ω)no visible damage ± (0.01 %R +0.01Ω)no visible damage ± (0.02 %R +0.01Ω)no visible damage4.1720 (T a)solderability + 235°C; 2 s solderbath methodgood tinning (Š 95 % coverage, no visible damage)TEST PROCEDURES AND REQUIREMENTSIEC 60115-1CLAUSEIEC 60068-2TEST METHODTESTPROCEDUREREQUIREMENTSPERMISSIBLE CHANGE (ΔR )Stability for producttypes:UXA 0204100 Ω to 100 k Ω22Ω to < 100Ω;> 100 k Ω to 221 k Ω -UXB 0207100 Ω to 250 k Ω40.2Ω to < 100 Ω;> 250k Ω to 301 k Ω10Ω to < 40.2 Ω;> 301 k Ω to 1 M ΩUXE 0414100 Ω to 100 k Ω22Ω to < 100 Ω;> 100k Ω to 511 k Ω-P 70 x RDocument Number: 28726For technical questions, contact: ff3cresistors@UXA 0204, UXB 0207, UXE 0414High Precision Leaded ResistorsVishay Beyschlag4.226 (B4)vibration6 h; 10 Hz to 2000 Hz 1.5 mm or 196 m/s 2± (0.01 %R +0.01Ω)± (0.01 %R +0.01Ω)± (0.02 %R +0.01Ω)4.1621 (Ua 1)21 (Ub)21 (Uc)robustness ofterminations tensile, bending andtorsion ± (0.01 %R +0.01Ω)± (0.01 %R +0.01Ω)±(0.02%R +0.01Ω)4.7-voltage proofU RMS = 100 V; 60 sno flashover or breakdownTEST PROCEDURES AND REQUIREMENTSIEC 60115-1CLAUSEIEC 60068-2TEST METHODTESTPROCEDUREREQUIREMENTSPERMISSIBLE CHANGE (ΔR )Stability for product types:UXA 0204100 Ω to 100 k Ω22Ω to < 100Ω;> 100 k Ω to 221 k Ω -UXB 0207100 Ω to 250 k Ω40.2Ω to < 100 Ω;> 250k Ω to 301 k Ω10Ω to < 40.2 Ω;> 301 k Ω to 1 M ΩUXE 0414100 Ω to 100 k Ω22Ω to < 100 Ω;> 100k Ω to 511 k Ω-Legal Disclaimer NoticeVishay Document Number: NoticeSpecifications of the products displayed herein are subject to change without notice. Vishay Intertechnology, Inc., or anyone on its behalf, assumes no responsibility or liability for any errors or inaccuracies.Information contained herein is intended to provide a product description only. No license, express or implied, by estoppel or otherwise, to any intellectual property rights is granted by this document. Except as provided in Vishay's terms and conditions of sale for such products, Vishay assumes no liability whatsoever, and disclaims any express or implied warranty, relating to sale and/or use of Vishay products including liability or warranties relating to fitness for a particular purpose, merchantability, or infringement of any patent, copyright, or other intellectual property right. The products shown herein are not designed for use in medical, life-saving, or life-sustaining applications. Customers using or selling these products for use in such applications do so at their own risk and agree to fully indemnify Vishay for any damages resulting from such improper use or sale.。
1N4004(compact)中文数据手册「EasyDatasheet」

UNIT
VRRM
50
VRMS
35
VDC
50
100 200 400 600 800 1000 V
70
140
280 420
560
700 V
100 200 400 600 800 1000 V
@T A=75 C I(AV)
1.0
A
IFSM
30
A
VF
@T J=25 C
IR
@T J=100 C
CJ
1.1
V
5
50
Resistive or Inductive Load
.2 0.375" (9.5mm)
Lead Length
AVERAGE FORWARD RECTIFIED CURRENT AMPERES 0 0 25 50 75 100 125 150 175 AMBIENT TEMPERATURE. ( OC)
1
2
4 6 8 10
20
40 6 0 80 100
NUMBER OF CYCLES AT 60Hz
FIG.4- TYPICAL JUNCTION CAPACITANCE
100
60 40
20
10
6
Tj=25 CO
JUNCTION CAPACITANCE.(pF)
4
2
1 .1 .2 .4
1.0 2 4
10 20 40 100
特性
最大的经常峰值反向电压
最大RMS电压
最大直流阻断电压 最大正向平均 整流电流
峰值正向浪涌电流
8.3ms单半正弦波 超级施加额定负荷(JEDEC的方法)
最大正向电压在1.0A DC 反向电流最大DC 在额定阻断电压DC
- 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、"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、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)。
© by SEMIKRON 030217 B 1 – 91
I :\M a r k e t i n \F R A M E D A T \d a t b l \B 01-S e m i p a c k \S K E T 330-400.f m
1)
See the assembly instructions
2) The screws must be lubricated
V RSM V RRM (dv/dt)cr I TRMS (maximum values for continuous operation)
V DRM
600 A
700 A I TAV (sin. 180; T case = . . .)
V V V/µs 380 (68 °C)440 A (78 °C)900130015001700190021002300
800120014001600180020002200
500100010001000100010001000
SKET 330/08 D SKET 330/12 E SKET 330/14 E SKET 330/16 E SKET 330/18 E SKET 330/20 E SKET 330/22 E
SKET 400/08 D SKET 400/12 E SKET 400/14 E SKET 400/16 E SKET 400/18 E
–
–
Symbol Conditions
SKET 330SKET 400Units
I TAV I D I RMS sin. 180; (T case = . . .)
B2/B6T amb = 35 °C;P 16/300 F W1/W3 T amb = 35 °C;P 16/400 F 330(78)530 / 665685 / 3 x 550400(84)700 / 880905 / 3 x 720A °C A A I TSM i 2t T vj = 25 °C; 10 ms T vj = 130 °C; 10 ms
T vj = 25 °C; 8,3 ... 10 ms T vj = 130 °C; 8,3 ... 10 ms 9 0008 000405 000320 000
14 00012 000980 000720 000
A A A 2s A 2s t gd t gr T vj = 25 °C I G = 1 A
di G /dt = 1 A/µs
V D = 0,67 .
V DRM
12
µs µs (di/dt)cr t q I H I L T vj = 130 °C T vj = 130 °C T vj = 25 °C
T vj = 25 °C; R G = 33 Ω; typ./max.125
typ. 150 . . . 200
150 / 5000,5 / 2A/µs µs mA A V T V T(TO)r T
I DD ; I RD T vj = 25 °C; (I T = . . .); max.T vj = 130 °C T vj = 130 °C
T vj = 130 °C; V = V DRM / V RRM 2,05(1500)1,20,55120
1,7(2400)0,920,380V A V m ΩmA V GT I GT V GD I GD T vj = 25 °C; d.c.T vj = 25 °C; d.c.T vj = 130 °C; d.c.T vj = 130 °C; d.c.32000,2510V mA V mA R thjc
R thch T vj; T stg cont.sin. 180 rec. 120
0,090,0950,110,02– 40 ... + 130°C/W °C/W °C/W °C/W °C V isol M 1M 2a w a. c. 50 Hz; r.m.s; 1 s/1 min to heatsink
to terminals approx.
3600 / 3000
5 (44 lb. in.) ± 15 %1)17 (150 lb. in.) ± 15 %2)
5 . 9,81940
V~Nm Nm m/s 2g
Case
→ page B 1 – 94
A 36
SEMIPACK ® 4
Thyristor Modules SKET 330SKET 400
Features
•Heat transfer through aluminium nitride ceramic isolated metal baseplate
•Precious metal pressure contacts for high reliability •With amplifying gate
•UL recognized, file no. E 63 532Typical Applications
•DC motor control (e. g. for machine tools)
•Temperature control (e. g. for ovens, chemical processes)•Professional light dimming (studios, theaters)
SKET
SI (US) units
Fig. 1 a Power dissipation vs. on-state current and ambient temperature
Fig. 1 b Power dissipation vs. on-state current and ambient temperature
Fig. 5 Recovered charge vs. current decrease Fig. 6 Transient thermal impendance vs. time
B 1 – 92
0898
© by SEMIKRON
0597
© by SEMIKRON B 1 – 93
© by SEMIKRON。