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MULTI-class

  • 交流频率转换器

    交流频率转换器 特点: 精确度0.05%满刻度(Accuracy 0.05%F.S.) 多种输入,输出选择 输入与输出绝缘耐压2仟伏特/1分钟 冲击电压测试5仟伏特(1.2x50us) (IEC255-4,ANSI C37.90a/1974) 突波电压测试2.5仟伏特(0.25ms/1MHz) (IEC255-4) 尺寸小,稳定性高 2:主要规格 精确度: 0.05% F.S. (23 ±5℃) 输入负载: <0.2VA 最大过载能力:maximum 2 x rated continuous 输出反应时间: <250ms (0~90%) 输出负载能力: <10mA for voltage mode <10V for current mode 输出涟波: <0.1% F.S. 归零调整范围: 0~±5% F.S. 最大值调整范围: 0~±10% F.S. 温度系数: 50ppm/℃ (0~50℃) 隔离特性: Input/Output/Power/Case 绝缘抗阻: >100M ohm with 500V DC 绝缘耐压能力: 2KVac/1 min. (input/output/power) 行动测试: ANSI C37.90a/1974,DIN-IEC 255-4 impulse voltage 5KV (1.2 x 50us) 突波测试: 2.5KV-0.25ms/1MHz 使用环境条件: -20~60℃(20 to 90% RH non-condensed) 存放环境条件: -30~70℃(20 to 90% RH non-condensed) CE认证: EN 55022:1998/A1:2000 Class A EN 61000-3-2:2000 EN 61000-3-3:1995/A1:2001 EN 55024:1998/A1:2001

    标签: 交流 频率转换器

    上传时间: 2013-10-11

    上传用户:xzt

  • 交流电压,电流转换器

    交流电压,电流转换器 特点: 精确度0.25%满刻度(RMS) 多种输入,输出选择 输入与输出绝缘耐压2仟伏特/1分钟 冲击电压测试5仟伏特(1.2x50us) (IEC255-4,ANSI C37.90a/1974) 突波电压测试2.5仟伏特(0.25ms/1MHz) (IEC255-4) 尺寸小,稳定性高 2:主要规格 精确度:0.25%F.S.(RMS) (23 ±5℃) 输入负载: <0.2VA(voltage) <0.2VA(current) 最大过载能力: Current related input:3 x rated continuous 10 x rated 30 sec. ,25 x rated 3sec. 50 x rated 1sec. Voltage related input:maximum 2x rated continuous 输出反应时间: <250ms (0~90%) 输出负载能力: <10mA for voltage mode <10V for current mode 输出涟波: <0.1% F.S. 归零调整范围: 0~±5% F.S. 最大值调整范围: 0~±10% F.S. 温度系数: 100ppm/℃ (0~50℃) 隔离特性: Input/Output/Power/Case 绝缘抗阻: >100Mohm with 500V DC 绝缘耐压能力: 2KVac/1 min. (input/output/power) 行动测试: ANSI C37.90a/1974,DIN-IEC 255-4 impulse voltage 5KV (1.2 x 50us) 突波测试: 2.5KV-0.25ms/1MHz 使用环境条件: -20~60℃(20 to 90% RH non-condensed) 存放环境条件: -30~70℃(20 to 90% RH non-condensed) CE认证: EN 55022:1998/A1:2000 Class A EN 61000-3-2:2000 EN 61000-3-3:1995/A1:2001 EN 55024:1998/A1:2001

    标签: 交流电压 电流转换器

    上传时间: 2013-11-09

    上传用户:非衣2016

  • 时钟切换电路英文资料.

    With more and more multi-frequency clocks being used in today's chips, especially in the communications field, it is often necessary to switch the source of a clock line while the chip is running.

    标签: 时钟切换电路 英文

    上传时间: 2013-10-10

    上传用户:1214209695

  • 降低EMI和保持高效率D类放大器在便携式产品中的应用

    Abstract: Class D amplifiers are typically very efficient, making them ideal candidates for portable applications that require longbattery life and low thermal dissipation. However, electromagnetic interference (EMI) is an issue that commonly accompanies theClass D switching topology. Active-emissions limiting reduces radiated emissions and enables "filterless" operation, allowingdesigners to create small, efficient portable applications with low EMI.

    标签: EMI D类放大器 保持 便携式产品

    上传时间: 2013-11-23

    上传用户:哈哈hah

  • 用于信号调理的微电路

      Low power operation of electronic apparatus has becomeincreasingly desirable. Medical, remote data acquisition,power monitoring and other applications are good candidatesfor battery driven, low power operation. Micropoweranalog circuits for transducer-based signal conditioningpresent a special class of problems. Although micropowerICs are available, the interconnection of these devices toform a functioning micropower circuit requires care. (SeeBox Sections, “Some Guidelines for Micropower Designand an Example” and “Parasitic Effects of Test Equipmenton Micropower Circuits.”) In particular, trade-offs betweensignal levels and power dissipation become painful whenperformance in the 10-bit to 12-bit area is desirable.

    标签: 信号调理 微电路

    上传时间: 2013-10-22

    上传用户:rocketrevenge

  • Analog Circuit Design in Porta

    •Founded in Jan. 08, 2001 in Shanghai, China.•Fabless IDH focused on Analog & Mixed Signal Chip design & marketing •Over 100 IC introduced.•Over 200 OEM Customer worldwide•ISO-9000 Certified•Distribution Channel in Taiwan, China & Japan To achieve 100% customer satisfactionby producing the technically advanced product with the best quality, on-time delivery and service. Leverages on proprietary process and world-class engineering team to develop innovative & high quality analog solutions that add value to electronics equipment.

    标签: Circuit Analog Design Porta

    上传时间: 2013-10-24

    上传用户:songnanhua

  • 一款485通讯隔离产品的EMC设计与改善

    电子、电气产品的设计,必须保证在一定的电磁环境中能正常工作,既满足标准规定的抗干扰极限值要求,在受到一定的电磁干扰时,无性能降级或故障;又要满足标准规定的电磁辐射极限值的要求,对电磁环境不构成污染。所以,产品设计之初,就要从分析产品预期的电磁环境、干扰源、耦合途径和敏感部件入手,采用相应的技术措施,抑制干扰源、切断或削弱耦合途径,增强敏感部件的抗干扰能力等。文中详细介绍了一款485通讯隔离产品从辐射超标到顺利通过FCC CLASS B认证,在原理设计、PCB制板等多方面所做的各项改进措施。文中所提到的方法及规则,对产品EMC设计具有很大的参考及指导意义。

    标签: 485 EMC 通讯隔离

    上传时间: 2013-10-24

    上传用户:sz_hjbf

  • 交流瓦特/瓦特小时,乏尔/乏尔小时转换器

    交流瓦特/瓦特小时,乏尔/乏尔小时转换器 特点: 精确度0.25%满刻度 多种输入,输出选择 输入与输出绝缘耐压2仟伏特/1分钟 冲击电压测试5仟伏特(1.2x50us) 突波电压测试2.5仟伏特(0.25ms/1MHz) (IEC255-4) 尺寸小,稳定性高 主要规格: 精确度: 0.25% F.S. (23 ±5℃) 输入负载: <0.2VA (Voltage) <0.2VA (Current) 最大过载能力: Current related input:3 x rated continuous 10 x rated 30 sec. ,25 x rated 3sec. 50 x rated 1sec. Voltage related input:maximum 2 x rated continuous 输出反应速度: < 250ms(0~90%) 输出负载能力: < 10mA for voltage mode < 10V for current mode 输出之涟波 : < 0.1% F.S. 脉波输出型态: Photocouple of open collector (max.30V/40mA) 归零调整范围: 0~±5% F.S. 最大值调整范围: 0~±10% F.S. 温度系数: 100ppm/℃ (0~50℃) 隔离特性: Input/Output/Power/Case 绝缘阻抗: >100Mohm with 500V DC 绝缘耐压能力: 2KVac/1 min. (input/output/power/case) 突波测试: ANSI C37.90a/1974,DIN-IEC 255-4 impulse voltage 5KV(1.2x50us) 使用环境条件: -20~60℃(20 to 90% RH non-condensed) 存放环境条件: -30~70℃(20 to 90% RH non-condensed) CE认证: EN 55022:1998/A1:2000 Class A EN 61000-3-2:2000 EN 61000-3-3:1995/A1:2001 EN 55024:1998/A1:2001

    标签: 瓦特 交流 转换器

    上传时间: 2013-11-11

    上传用户:wettetw

  • XAPP946-适用于Virtex-4 RocketIO MGT的开关电源

      This document presents design techniques and reference circuits that power Virtex™-4 FXRocketIO™ multi-gigabit transceivers (MGTs) operating at data rates below 3.125 Gb/s.When using multiple transceivers, it is sometimes preferred to power them from a switchingpower supply. However, switching power supplies generate noise that affects transceiver

    标签: RocketIO Virtex XAPP 946

    上传时间: 2013-11-18

    上传用户:huang111

  • LTC1325电池管理IC的使用

      For a variety of reasons, it is desirable to charge batteriesas rapidly as possible. At the same time, overchargingmust be limited to prolong battery life. Such limitation ofovercharging depends on factors such as the choice ofcharge termination technique and the use of multi-rate/multi-stage charging schemes. The majority of batterycharger ICs available today lock the user into one fixedcharging regimen, with at best a limited number ofcustomization options to suit a variety of application needsor battery types. The LTC®1325 addresses these shortcomingsby providing the user with all the functionalblocks needed to implement a simple but highly flexiblebattery charger (see Figure 1) which not only addressesthe issue of charging batteries but also those of batteryconditioning and capacity monitoring.

    标签: 1325 LTC IC的 电池管理

    上传时间: 2013-10-19

    上传用户:royzhangsz