Military Reference Specifications MIL-PRF-55310 Oscillators, Crystal Controlled, General Specification For MIL-PRF-38534 Hybrid Microcircuits, General Specification For MIL-STD-202 Test Method Standard, Electronic and Electrical Components MIL-STD-883 Test Methods and Procedures for Microelectronics MIL-STD-1686 Electrostatic Discharge Control Program for Protection of Electrical and Electronic Parts, Assemblies and Equipment
Electromagnetic immunity Immunity to electrostatic discharge - test level: 8 kV (contact discharge) conforming to IEC 61000-4-2 Immunity to electrostatic discharge - test level: 15 kV (air discharge) conforming to IEC 61000-4-2 Immunity to conducted RF disturbances - test level: 15 V/m (80 MHz...2 GHz) conforming to IEC 61000-4-3 Immunity to conducted RF disturbances - test level: 5 V/m (2...2.7 GHz) conforming to IEC 61000-4-3 Immunity to conducted RF disturbances - test level: 5 V/m (2.7...6 GHz) conforming to IEC 61000-4-3 Immunity to fast transients - test level: 4 kV (on input-output) conforming to IEC 61000-4-4 Surge immunity test - test level: 4 kV (between power supply and earth) conforming to IEC 61000-4-5 Surge immunity test - test level: 3 kV (between phases) conforming to IEC 61000-4-5 Immunity to conducted RF disturbances - test level: 15 V (0.15...80 MHz) conforming to IEC 61000-4-6 Immunity to magnetic fields - test level: 30 A/m (50...60 Hz) conforming to IEC 61000-4-8对符合IEC 61000-4-11的电压倾角的免疫力令人不安的场排放符合EN 55016-2-3的谐波电流排放限制,符合IEC 61000-3-2符合EN 55016-1-2的IEC 61000-3-2
Scientific PI of two scientific payloads: Dust Analyzer for Chinese asteroid mission (2021-2025) & Solar X-ray Detector for “Aoke-1” Satellite (2020-2022) Macau Natural Science Award 2016 (First Prize) & 2022 (Second Prize) FDCT – 2022-2025 – PI – Study on electrostatic migration mechanism of dust in space environment FDCT – 2019-2022 – PI - Chang'e-4 Lunar勘探数据NSFC-FDCT的科学分析 - 2017-2020 - PI - 关于某些主要核反应的理论研究及其在火星辐射环境研究中的应用FDCT - 2014- 2017年 - PI - PI - PI- PI - 有关Lunar Dust
警告:静电可能会在BPC中积累。•生物处理容器(BPC)可以充当静电电荷的绝缘体。如果将静电电荷转移到BPC中,则可以将电荷存储在BPC和/或内部产品中。这种现象因产品和使用而异。因此,确保进行危害评估并消除了静电冲击的风险是最终用户的唯一责任。•如果适用,可以将不锈钢耦合器接地到框架上,以消散BPC内材料的静电堆积。通过将所有BPC接地之前,在与它们接触之前将静电堆积耗散是一个好习惯。使用BPC时,建议使用非导电材料(例如非导电手套)。
静电放电(ESD)可以定义为在接近度不同或通过直接接触的不同静电电位的体之间的电荷转移。当两个物体具有不同的电荷颗粒(正和负)时,电荷从一个身体转移到另一个身体。
低氮氧化物(NOX)燃烧器,静电迫使,勤奋的监测和有效的工作状态是电站的一些关键环境控制。通过静电降解器在设定的限制内管理在内的颗粒物。在2019年,在两个站点安装了连续的排放监测系统(CEMS),以更有效地监视排放。
静电传感与驱动:静电传感器与驱动的介绍、平行板电容器、平行板电容器的应用、指状电容器、梳状驱动器的应用。热传感与驱动:介绍、基于热膨胀的传感器与驱动、热电偶、热电阻、应用。磁驱动:基本概念与原理、微磁元件的制造、MEMS 磁驱动的案例研究。
静电双层电容器 (EDLC) 使用碳电极或衍生物,其静电双层电容远高于电化学伪电容,从而实现导电电极表面与电解质界面处亥姆霍兹双层中的电荷分离。电荷分离约为几埃(0.3-0.8 纳米),比传统电容器小得多。电化学伪电容器使用金属氧化物或导电聚合物电极,除了双层电容外,还具有大量电化学伪电容。伪电容是通过法拉第电子电荷转移与氧化还原反应、插层或电吸附实现的。混合电容器(例如锂离子电容器)使用具有不同特性的电极:一种主要表现出静电电容,另一种主要表现出电化学电容。[2]
Electromagnetic compatibility Electrostatic discharge 4 kV criteria B contact discharge conforming to IEC 61000-4-2 Electrostatic discharge 8 kV criteria B air discharge conforming to IEC 61000-4-2 Conducted RF disturbances 10 V, 0.15...80 MHz criteria A conforming to IEC 61000-4-6 Radiated radio-frequency electromagnetic field immunity test 10 V/m, 80 MHz...1 GHz criteria A conforming to IEC 61000-4-3 Surge immunity test 1 kV criteria B output ports line to line conforming to IEC 61000-4-5 Surge immunity test 2 kV criteria B output ports line to earth conforming to IEC 61000-4-5 Surge immunity test 1 kV criteria B input ports line to earth conforming to IEC 61000-4-5电气快速瞬态/爆发免疫测试2 KV,5KHz标准B输出端口符合IEC 61000-4-4的免疫力降低电压下降0%/20毫秒的标准B标准B符合IEC 61000-4-11符合IEC 61000-4-11的电压dips 40%/200毫秒40%/200 ms的IEC cormitia cormitia cormitia cormitia cormitia cormitia for IEC 61/200%IMM cormitia for IEC 611000-4-11/tos 611000-4-11/tot tot tot contips 611000-4-11/tot标准c符合IEC 61000-4-11对短中断0%/5 s标准的免疫力C符合IEC 61000-4-11符合IEC 61000-4-11电气快速瞬态/爆发免疫测试1 KV,5KHz标准,标准B输入端口符合IEC 61000-4-4-4-4-4辐射型电视范围3. V/HADED hode five fimber test 3 3 3 3辐射电位3.符合IEC 61000-4-3辐射排放30 ... 1000 MHz环境符合IEC 60947-1进行排放0.15 ... 30 MHz环境A符合IEC 60947-1
