WMSIC Electronic Components

1SS387,H3F(T 1SS387

Model1SS387,H3F(T
PackageSOT523
BrandTOSHIBA
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

Availability on request

Technical data

Product details

12 specifications

Core information

Product name
TOSHIBA 1SS387, H3F(T
Type
TOSHIBA
Minimum package
4000

Technical parameters

Electronic Component
TOSHIBA
Electronic Component
1SS387,H3F(T
Electronic Component
1
Package
SOT523
Electronic Component
Switch Diode
Electronic Component
0.031g
Electronic Component
1
Electronic Component
BM0000279131
Electronic Component
4000

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

1SS387H3F(T) 开关二极管产品概述

一、产品简介

1SS387H3F(T) 是东芝(TOSHIBA)公司推出的一款高性能开关二极管,采用SOT-523封装。该器件广泛应用于各种电子电路中,尤其适合高频开关、信号整流、以及振荡电路等场合。作为一款稳定性好、耐用性强的开关二极管,1SS387H3F(T)提供了优异的电流和电压特性,使其成为设计师在处理信号传输和电源管理时的理想选择。

二、产品特性

  1. 封装与尺寸:1SS387H3F(T)采用SOT-523封装,这种封装具有小型化、便于自动化生产等优点。其小巧的尺寸使得它在空间有限的应用中表现尤为出色。

  2. 电压和电流参数:

    • 反向击穿电压(V_R): 60V
    • 正向电流(I_F): 0.1A
    • 反向电流(I_R): 最大100µA

    这些参数使该二极管能够在较高的反向电压下正常工作,同时屏障效应也保持在良好的水平,确保了低反向漏电流。

  3. 快速恢复特性:1SS387H3F(T)具备快速的恢复时间,适合高频开关应用。其快速响应能力使电路的响应时间大大缩短,非常适合需要快速切换的场景。

  4. 热特性:该器件具有良好的热稳定性和散热性能,使其在高温工作环境下依然能够保持稳定的电气性能,提高了整机的可靠性。

  5. 低正向压降:其正向压降(V_F)通常小于0.5V(在额定正向电流条件下),这意味着在电源转换或信号传递过程中,能有效降低功耗,提高电路的整体效率。

三、应用场景

  1. 信号整流:在模拟和数字电路中,1SS387H3F(T)可以用于信号整流电路,提高信号的稳定性。

  2. 开关电源:由于其快速的开关特性,该二极管适合用于开关电源中,能有效降低开关损耗,提升电源效率。

  3. 保护电路:可用于反向连接等保护电路中,防止电流反向流动对其他元器件造成损害。

  4. 振荡电路:由于其高响应速度,1SS387H3F(T)也非常适合用于振荡器电路,可确保信号的高频传输。

四、总结

1SS387H3F(T) 开关二极管是高性能电子元器件,结合了低正向压降、快速恢复特性和良好的散热能力。这些特性使其成为多种电子产品和系统设计中的优选组件。尤其在高频领域、开关电源及信号处理等应用方面展现出良好的性能。

东芝作为一个全球知名的电子元器件制造商,其产品在质量、性能和稳定性方面得到广泛认可和信赖。1SS387H3F(T) 二极管的推出,将为电子设计师提供更多便捷和高效的解决方案,推动电子技术的进一步发展。无论在专业的工业应用中,还是在日常生活中,1SS387H3F(T)都将发挥重要的作用。

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