WMSIC Electronic Components

AISHI ERR1VM102G20OT

ModelERR1VM102G20OT
PackageThrough-hole, D10x L20mm
BrandAISHI
Price Price on request Electronic component prices change quickly with market supply and demand. Please refer to the latest WMSIC quotation for current pricing.
Configuration
1 options
Configuration 26+

Available for RFQ

Technical data

Product details

19 specifications

Core information

Product name
AISHI ERR1VM102G20OT
Type
AISHI
Minimum package
200 袋装

Technical parameters

Electronic Component
Electronic Component
Electronic Component
AISHI
Electronic Component
ERR1VM102G20OT
Electronic Component
1
Electronic Component
1000uF
Package
Through-hole, D10x L20mm
Electronic Component
Through-hole Aluminum Electrolytic Capacitor
Electronic Component
±20%
Electronic Component
2.7g
Pitch
5mm
Electronic Component
1
Electronic Component
BM0227798431
Electronic Component
2000hrs@105℃
Voltage
35V
Capacitor
10mm
Capacitor
20mm

For datasheets, package documents, compatible-part guidance, or other technical resources, contact WMSIC customer service. Availability is confirmed case by case.

ERR1VM102G20OT 产品概述

一、产品简介

ERR1VM102G20OT 为艾华集团(AISHI)出品的直插式铝电解电容,封装为插件 D10×L20mm。标称电容值为 1000µF,额定电压 35V,容差 ±20%,极性电容,适用于需要较大电容值且体积受限的通用电子设备电源滤波与储能场合。

二、主要规格参数

  • 品牌:AISHI(艾华集团)
  • 型号:ERR1VM102G20OT
  • 容量:1000µF(±20%)
  • 额定电压:35V
  • 工作温度/寿命:2000 小时 @ 105℃
  • 外形尺寸:直径 D = 10mm,长度 L = 20mm(不含引脚)
  • 引脚间距:5mm(插装间距)
  • 封装形式:插件(直插)

三、性能特点

  • 高容值密度:在小尺寸 D10×L20 的封装内提供 1000µF,适合空间受限但需大容量的电路。
  • 工艺与可靠性:额定寿命 2000 小时(105℃)表明在高温环境下具有稳定的长期工作能力,适合工业级或要求较高温度耐受性的应用(需考虑老化与降额)。
  • 易于插装与焊接:标准 5mm 引脚间距适配通用插件电路板和自动插件设备,便于装配和维修。

四、典型应用场景

  • 开关电源输入/输出滤波、储能与稳压环节
  • 音频放大电路的电源滤波与旁路
  • 工业控制板、工业电源模块以及需要高容值的消费类电子产品
  • 作为去耦和突波能量缓冲组件使用

五、选型与使用注意事项

  • 极性注意:铝电解电容为极性器件,安装时必须确认正负极方向。
  • 电压降额:推荐在实际电路中适当降额使用(例如使用 50–80% 额定电压)以延长寿命并降低漏电与故障风险。
  • 温度与寿命:工作温度对寿命影响显著,若长期在高温环境使用,应评估热流散与散热措施或考虑更高温寿命等级产品。
  • 焊接工艺:遵循厂商回流/波峰焊温度与时间限制,避免长期高温导致电解液性能下降。弯脚时注意根部不要损伤外壳与密封件。

六、结论

ERR1VM102G20OT 以小体积提供大容量,适用于多种电源滤波与储能场合,具有标准插件封装与较高的温度寿命指标。选用时应关注工作电压降额、散热条件及极性安装,结合电路的纹波电流与环境温度进行综合评估,以保证长期可靠运行。

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