WMSIC Electronic Components

AOTE(奥特) EL357C

ModelEL357C
PackageSOP-4
BrandAOTE
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 Date code within 2 years

Available for RFQ

Technical data

Product details

19 specifications

Core information

Product name
AOTE EL357C
Type
AOTE
Minimum package
3000 圆盘

Technical parameters

Electronic Component
Electronic Component
Electronic Component
AOTE
Electronic Component
EL357C
Electronic Component
1
Package
SOP-4
Electronic Component
Transistor Output Optocoupler
Electronic Component
0.226g
Electronic Component
1
Electronic Component
3us
Electronic Component
BM0229306806
Operating Temperature
55℃~+110℃
Load Voltage
80V
Type
DC
Output Current
50mA
Output Type
Photoelectric Transistor
Output Channel Count
1

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

EL357C 产品概述

一、产品简介

EL357C(AOTE/奥特)是一款单通道光耦合器,采用SOP‑4 封装,输入为直流LED,输出为光电三极管。器件提供高隔离电压、宽工作温度范围及较高的电流传输比(CTR),适合信号隔离和低功耗逻辑接口场合。

二、主要技术参数

  • 隔离电压(Vrms):3.75 kV
  • 电流传输比(CTR):最小 200%,典型/最大可达 400%(饱和值)
  • 输入类型:DC(LED)
  • 直流反向耐压(Vr):6 V
  • 正向压降(Vf):约 1.2 V(If 典型)
  • 正向电流(If)最大:50 mA(建议连续工作时限流)
  • 输出类型:光电三极管
  • 输出电流(Ic)最大:50 mA
  • 集射极饱和电压(VCE(sat)):典型 100 mV(条件例如 If=20 mA、Ic=1 mA 时)
  • 负载电压(Collector‑Emitter Voltage):80 V
  • 上升/下降时间:tr≈4 μs,tf≈3 μs(典型)
  • 输出通道数:1 通道
  • 工作温度:-55 °C ~ +110 °C
  • 封装:SOP‑4

三、关键特性与优势

  • 高隔离能力(3.75 kVrms),满足一般工业与消费类系统的安全隔离需求;
  • CTR 较高(≥200%),在较小 LED 驱动电流下即可获得较大输出电流,适合低功耗设计;
  • 低 VCE(sat)(典型 100 mV)有利于减少输出功耗和热量;
  • 响应速度中等(μs 级),适合开关、脉冲和常规数据信号的传输;
  • 宽温度范围与 SOP‑4 小型封装,便于 PCB 布局与自动贴装。

四、典型应用场景

  • MCU 或数字电路与高电压侧之间的信号隔离;
  • 电源监控与开关电源反馈环路隔离;
  • 工业控制信号隔离、继电器驱动前端;
  • 测试测量设备、通信接口的电平移位与保护。

五、设计与使用建议

  • LED 限流电阻计算示例(以 5 V 驱动、期望 If=1 mA 为例):R = (VCC − Vf) / If = (5 − 1.2) / 1 mA ≈ 3.8 kΩ。若需更大输出电流,可增大 If,但请勿长期超过器件 If 最大额定(50 mA),推荐连续工作下 If≤20 mA 并考虑热散。
  • 考虑 CTR 变化:CTR 随温度和老化会下降,设计时留有余量(按最小 CTR 200% 计算系统增益)。
  • 输出侧注意集电极上拉与负载:若需低饱和电压,确保驱动条件(If、Ic)在典型测试条件附近;负载电压不要超过 80 V。
  • PCB 布局与爬电距离:保持输入/输出之间足够的爬电距离和大地分割,配合器件隔离等级满足系统安全规范。

六、封装与可靠性

EL357C 采用 SOP‑4 封装,适合回流焊工艺。器件工作温度范围宽,适用于工业级环境。为保证长期可靠性,建议遵循厂商的回流温度曲线和湿敏等级存储/贴装规范,并在高湿或腐蚀性环境中增加保护措施(涂层或密封)。

七、选型建议

若系统对速度有更高要求,可考虑光电二极管/放大器或逻辑门输出型光耦;若需更高隔离/更高电流,可选择具有更高额定值的型号。选择时以最小 CTR、工作温度、响应时间和封装兼容性为主要参考。

备注:以上参数基于 EL357C 通用规格与典型测试条件,实际设计请参考 AOTE 官方数据手册并按应用条件进行验证。

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