WMSIC Electronic Components

AOTE PC357D

ModelPC357D
PackageSOP-4-208mil-2.54mm
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 24+

Available for RFQ

Technical data

Product details

19 specifications

Core information

Product name
AOTE PC357D
Type
AOTE
Minimum package
3000 圆盘

Technical parameters

Electronic Component
Electronic Component
Electronic Component
AOTE
Electronic Component
PC357D
Electronic Component
1
Package
SOP-4-208mil-2.54mm
Electronic Component
Transistor Output Optocoupler
Electronic Component
0.233g
Electronic Component
1
Electronic Component
3us
Electronic Component
BM0230061762
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.

PC357D 产品概述

一、主要参数与特点

PC357D(AOTE/奥特)为单通道光电三极管光耦,具有高传输比与宽工作温度范围,适合低速数字隔离与模拟信号传输。关键参数如下:

  • 隔离电压:3.75 kVrms(满足常见电源侧与信号侧隔离要求)
  • 电流传输比(CTR):最小300%,典型/饱和值可达600%(高灵敏度)
  • 输入类型:DC,正向压降 Vf ≈ 1.2 V,最大正向电流 If 50 mA,反向耐压 Vr 6 V
  • 输出类型:光电三极管,最大集电极电流 Ic 可达 50 mA,集射极饱和电压 VCE(sat) ≈ 200 mV(标注条件下)
  • 负载电压(集电极耐压):80 V
  • 上升/下降时间:tr ≈ 4 μs、tf ≈ 3 μs(适用于低/中速信号)
  • 工作温度范围:-55 ℃ ~ +110 ℃
  • 封装:SOP-4(208 mil,2.54 mm 引脚间距),单通道设计

二、典型应用场景

  • 电源模块与控制板间的输入/输出隔离(如开关电源、继电器驱动监控)
  • MCU 与高压侧信号隔离、霍尔传感器等模拟/数字信号传输
  • 工业自动化、仪表与电表的安全隔离接口
  • 需要高灵敏度、低驱动电流的隔离检测电路

三、设计与使用要点

  • 驱动LED时应计算限流电阻:R = (Vdrive - Vf) / If。为延长器件寿命,建议连续工作 If 远低于 50 mA(例如 1–20 mA 常用区间)。
  • CTR 波动较大(300%–600%),设计时需考虑最差(最小)值以保证输出可靠触发。举例:If = 1 mA、CTR_min = 300%,则 Ic ≈ 3 mA。
  • 输出为光电三极管,通常需上拉电阻至目标逻辑电平;若驱动负载较大,要检查集电极电流与功耗是否超限,并注意 VCE(sat) 在不同电流下变化。
  • 最大反向电压 Vr = 6 V,避免在反向应力下长期工作;输出侧耐压可达 80 V,但应遵守功耗与热设计限制。
  • 开关速度为微秒级,不适合高速(数百 kHz 以上)通信应用。

四、封装与可靠性

SOP-4 封装便于自动贴装与常见电路板布局。工作温度范围宽、隔离电压高,适合要求长期可靠性的工业与电源应用。设计焊接与清洁工艺时应注意引脚间距与爬电距离以维持隔离性能。

五、典型电路参考与简单计算

示例:若 Vcc = 5 V、希望在输入 If = 1 mA 时输出拉低至饱和(CTR_min = 300%,Ic ≈ 3 mA)

  • 所需上拉电阻 RL ≈ (Vcc - VCE(sat)) / Ic ≈ (5 V - 0.2 V) / 3 mA ≈ 1.6 kΩ。
    实际设计中可留有裕量并考虑 CTR 温漂、器件公差与负载变化。

总结:PC357D(AOTE)以高CTR、较高隔离电压和宽温度范围为特点,适合低速隔离场合。设计时应以最小CTR值、最大允许电流与热管理为约束,合理选择驱动与上拉电阻以保证系统稳定可靠。

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