WMSIC Electronic Components

TWGMC MMBT5401 PNP Transistor MMBT5401

ModelMMBT5401
PackageSOT-23
BrandTWGMC
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 25+

Available for RFQ

Technical data

Product details

19 specifications

Core information

Product name
TWGMC MMBT5401
Type
TWGMC
Minimum package
3000 圆盘

Technical parameters

Electronic Component
Electronic Component
Electronic Component
TWGMC
Electronic Component
MMBT5401
Electronic Component
1
Package
SOT-23
Electronic Component
1 PNP
Electronic Component
Transistor(BJT)
Electronic Component
0.038g
Electronic Component
1
Electronic Component
BM0228587082
Operating Temperature
55℃~+150℃
Transistor Type
PNP
Frequency(f T)
100MHz
Power Dissipation(Pd)
300mW
Electronic Component
Electronic Component
Electronic Component
3000

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

MMBT5401 产品概述

MMBT5401 是一款高压 PNP 小信号三极管,适用于需要高耐压与中等电流能力的开关和放大场合。该器件由台湾迪嘉(TWGMC)生产,采用 SOT-23 封装,体积小、易于贴片组装。凭借 150V 的集电极-发射极击穿电压和 600mA 的最大集电极电流,MMBT5401 在功率和体积之间提供良好的折中,适合高压信号处理、反相驱动与电平转换等应用。

一、主要特性

  • 晶体管类型:PNP
  • 最大集电极-发射极击穿电压 VCEO:150V
  • 最大集电极电流 Ic:600mA
  • 耗散功率 Pd(SOT-23,环境限定):300mW
  • 直流电流增益 hFE:约 80(测试条件:Ic=1mA,VCE=5V)
  • 截止电流 Icbo:100nA(典型小电流泄漏)
  • 特征频率 fT:100MHz(中高频性能)
  • 基-发射极击穿 Vebo:5V(注意基极反向电压限制)
  • 集-射极饱和电压 VCE(sat):约 500mV(饱和时的压降)

二、电气性能要点及设计影响

  • 高耐压(150V)使得本器件在高电压边缘电路或大电位差的开关电路中可靠性更高,但需注意在高压工作时应控制功耗与结温。
  • hFE 在低电流(1mA)时约为 80,说明作为放大器或小信号偏置元件时增益稳定;但在接近最大 Ic 时,hFE 会下降,应按驱动能力留裕度。
  • Icbo 仅 100nA,表明在断态时漏电小,利于高阻态下的静态功耗控制。
  • Vebo=5V 要求在电路设计中避免对基极施加过高的反向电压,以免损坏基-发结。
  • fT=100MHz 提示在中高频应用中仍有一定带宽,但在射频或 GHz 级应用应谨慎评估。

三、封装与引脚信息

  • 封装:SOT-23,便于表面贴装和自动化生产。
  • SOT-23 封装热阻相对较大,建议在 PCB 设计中使用足够的铜箔面积和散热层,以利于耗散功率的传导与分散,从而避免结温过高导致性能退化或器件失效。

四、典型应用场景

  • 高压开关:用于 150V 级别的低速开关或反向驱动电路。
  • 电平转换与拉高/拉低:在需要 PNP 特性的上拉或负极驱动场合。
  • 通用放大器:小信号放大、前置级或差动对中作为 PNP 支路。
  • 电源与保护电路:高压侧的断电检测、限流保护等需要高耐压的场合。

五、使用与布局注意事项

  • 功耗控制:Pd 为 300mW(SOT-23 条件),高电流或高 VCE 时会产生较大功耗,需通过 PCB 增加散热面积或降低工作电流/压降来避免超过额定耗散。
  • 驱动基极:为确保饱和或切换性能,基极驱动电流需匹配预期集电极电流,且避免基-发极反向电压超过 5V。
  • PCB 布局:集电极与发射极路径应尽量短且铜皮宽,以降低寄生阻抗与热阻;必要时在集电极侧增加散热铜箔或过孔提升散热能力。
  • ESD 与装配:SOT-23 封装容易受静电损伤,装配与测试时注意静电防护。

六、可靠性与工作温度

  • 工作温度范围:-55℃ 至 +150℃,适用于工业与部分严苛环境。
  • 在高温下应按器件的结到外壳/环境热阻计算可允许的最大耗散,并进行热降额(derating)处理,确保长期可靠性。

七、选型建议

当系统需要兼顾高耐压(≈150V)与中等电流驱动(≤600mA),同时要求微小封装以节省 PCB 空间时,MMBT5401 是值得考虑的选项。设计时重点关注:实际工作电流与电压下的功耗、基极驱动能力以及 PCB 散热条件。如果应用对饱和电压、快速切换或极限温度有更苛刻要求,请基于具体工况查阅器件详细资料表并做仿真验证。

总结:MMBT5401(TWGMC)在 SOT-23 小封装下提供了 150V 高耐压与可靠的 PNP 性能,适合高压信号处理与通用开关、放大应用,但在热管理与基极电压保护方面需合理设计与预留裕度。

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