WMSIC Electronic Components

TECH PUBLIC BC817-40 BC817

ModelBC817-40
PackageSOT-23
BrandTECH PUBLIC
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
TECH PUBLIC BC817-40
Type
TECH PUBLIC
Minimum package
3000 圆盘

Technical parameters

Electronic Component
Electronic Component
Electronic Component
TECH PUBLIC
Electronic Component
BC817-40
Electronic Component
1
Package
SOT-23
Electronic Component
1 NPN
Electronic Component
Transistor(BJT)
Electronic Component
0.031g
Electronic Component
1
Electronic Component
BM0264777510
Transistor Type
NPN
Frequency(f T)
100MHz
Power Dissipation(Pd)
300mW
Electronic Component
Electronic Component
Electronic Component
3000
Collector Current(Ic)
500mA

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

BC817-40 产品概述(基于您提供参数)

注:BC817 系列为常见的小信号晶体管,标准型为 NPN。您提供的参数中标注为 PNP,因型号与极性不一致,本文在纠正为 NPN 的前提下,基于您给定的电气参数与封装信息编写产品概述;若确为 PNP 器件,请确认型号与极性以便修正说明。

一、主要特性与指标

  • 晶体管类型:NPN(依据型号 BC817-40)
  • 集电极电流 Ic:500 mA(最大)
  • 集-射极击穿电压 Vceo:45 V
  • 最大耗散功率 Pd:300 mW(封装热限制)
  • 直流电流增益 hFE:600(高增益等级)
  • 特征频率 fT:100 MHz(适合宽带小信号放大)
  • 集电极截止电流 Icbo:100 nA(漏电流小)
  • 集电极饱和电压 VCE(sat):典型 700 mV(在指定偏流下)
  • 发-基击穿电压 Vebo:5 V
  • 封装:SOT-23(小型表面贴装)
  • 品牌:TECH PUBLIC(台舟电子)
  • 数量:1 只

二、性能解读与工程注意事项

  • 高增益(hFE=600):在小基极驱动电流下可获得较大集电极电流,便于做低电流驱动或电流放大,但高增益同时对温度、偏置和频率依赖性较强,应用时需注意增益变化对电路稳定性的影响。
  • 功率与电流的矛盾:器件Pd仅 300 mW,但 Ic 可达 500 mA。在较大电流工作时,VCE 或 VCE(sat) 与功耗成正比。例如若 VCE≈1 V,则允许的持续 Ic 约为 Pd/VCE = 300 mA。实际使用时需对最大允许集电极电流进行热限额降额计算,避免在无散热的 SOT-23 上长时间流过高电流。
  • 频率特性:fT = 100 MHz,适合用于中频到高频的信号放大与开关,但在高频应用需考虑寄生、电容以及封装引线效应导致的带宽下降。
  • 低漏电流与可靠性:Icbo=100 nA 表明在断态下漏电小,有利于低功耗电路,但在高温下漏电仍会增大,应验证工作温度范围下的漏电表现。
  • 反向基极耐压:Vebo = 5 V,基极-发射极不能承受较高的反向电压,外围电路需避免反向偏置超过该值以防损坏。

三、典型应用场景

  • 低电流信号放大:高 hFE 适合用于前级放大器、传感器信号调理等需要较大电压或电流增益的场合。
  • 小功率开关:可用于驱动继电器线圈、LED(需注意功耗限制),或作为逻辑开关元件,但在大电流切换场合需采用散热或并联方案。
  • 中频放大与缓冲:凭借较高 fT,可用于音频前级、中频放大与缓冲级。

四、封装与焊接建议

  • SOT-23 小型表面贴装,适合高密度 PCB 设计。台舟电子具体封装引脚定义可能略有差异,布局前请参考厂商封装图与引脚排列说明。
  • 焊接工艺:推荐采用回流焊,注意避免过高回流峰值温度及过长保温时间以保护器件可靠性。
  • 热管理:SOT-23 本体散热能力有限,若在接近最大允许电流工作,应通过 PCB 热铜面积、散热垫或增大焊盘面积来改善散热。

五、使用与选用建议

  • 若电路存在长时间大电流工作需求,优先依据 Pd 和 VCE 计算实际可承受的 Ic 并做降额;必要时选择功耗更高或封装更佳的替代器件。
  • 在精密放大或温漂敏感电路中,应做增益随温度变化的仿真与测试,必要时加偏置稳定或反馈措施。
  • 购买与替换时,请以台舟电子(TECH PUBLIC)提供的完整数据表为准,确认极性、引脚排列与典型参数匹配,避免型号或等级混淆。

若需,我可以基于台舟电子的官方数据表为您核对引脚定义、电路典型接法及在具体电流/电压条件下的功耗计算示例。

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