WMSIC Electronic Components

PC817X3NIPW

ModelPC817X3NIPW
PackageSOP-4
BrandSHARP
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
SHARP PC817X3NIPW
Type
SHARP
Minimum package
2000 圆盘

Technical parameters

Electronic Component
Electronic Component
Electronic Component
SHARP
Electronic Component
PC817X3NIPW
Electronic Component
1
Package
SOP-4
Electronic Component
Transistor Output Optocoupler
Electronic Component
0.383g
Electronic Component
1
Electronic Component
3us
Electronic Component
BM0095978479
Operating Temperature
30℃~+100℃
Load Voltage
80V
Type
DC
Output Current
50mA
Output Type
Photoelectric Transistor
(Pd)
200mW

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

PC817X3NIPW 产品概述

1. 产品简介

PC817X3NIPW是一款由夏普(SHARP)公司制造的光耦合器,其主要基于光电三极管技术。这款光耦合器具有出色的电气隔离性能,适用于需要电隔离的信号传输应用。PC817X3NIPW采用SOP-4封装,拥有四个引脚设计,方便于表面贴装(SMD)工艺,广泛应用于 diversas 电子设备中,包括但不限于信号调节、开关电源、和工业控制系统。

2. 技术规格

PC817X3NIPW的关键技术参数包括:

  • 工作电流(I_F): 输入端的工作电流一般在几毫安范围内,具体依赖于设计需求。
  • 输出电流(I_C): 最大输出电流可达到50mA,为不同负载条件提供了较好的适应能力。
  • 输入-输出电压(V_OC): 在正常工作条件下,输入端与输出端之间的电压,可以在额定范围内提供足够的隔离。
  • 响应时间: 光电三极管的开关速度相对较快,适用于数字信号传输,响应时间通常在几微秒到十几微秒之间。
  • 工作温度范围: PC817X3NIPW的工作温度范围一般为-40°C到+85°C,适合在多种环境下稳定工作。

3. 结构特点

PC817X3NIPW的SOP-4封装设计使其在空间有限的情况下,也能提供高集成度与高性能的解决方案。该封装的引脚间距较小,适合于现代电子设备的高密度布局。同时,封装还能有效保护内部元器件,减少外部干扰,确保信号传输的稳定性。

4. 应用领域

PC817X3NIPW广泛应用于各种电子设备和电路,其中包括但不限于以下几个领域:

  • 工业自动化: 在需要控制信号与高压设备有效隔离的场合,光耦合器是必不可少的部分。例如,在PLC(可编程逻辑控制器)和传感器连接中,PC817X3NIPW可以保证信号的稳定传输和安全性。

  • 消费电子: 在家用电器与用户界面之间,采用光耦合器可以有效隔离不同电压及信号,提升设备的安全性与可靠性。

  • 电源管理: 在开关电源转换线路中,光耦合器能够提供反馈信号,用于调节输出电压,确保电源稳定。

  • 通信设备: 在各种调制解调器及传输设备中,PC817X3NIPW可以实现高效的信号传递,并防止电噪对信号的干扰。

5. 设计注意事项

在使用PC817X3NIPW进行电路设计时,有几个关键点需要注意:

  • 电流限制: 在输入端应使用限流电阻,以防止输入端电流超过光耦的最大额定值,从而损坏器件。

  • 时延效应: 根据应用需求,设计时应考虑光电三极管的响应时间,以确保信号传输的实时性及准确性。

  • 散热设计: 尽管PC817X3NIPW的功耗相对较低,但在高频开关应用中需考虑热管理,以防止温度过高对元器件性能造成影响。

6. 结论

PC817X3NIPW作为一种性能稳定、应用广泛的光耦合器,凭借其良好的电气隔离特性和易于集成的特点,成为现代电子设计中不可或缺的组件。无论是在工业控制、消费电子还是电源管理领域,PC817X3NIPW都能为设计工程师提供灵活、安全的解决方案,助力于电子产品的性能优化和创新发展。

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