WMSIC Electronic Components

TECH PUBLIC TPDTA124ET

ModelTPDTA124ET
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 25+

Available for RFQ

Technical data

Product details

19 specifications

Core information

Product name
TECH PUBLIC TPDTA124ET
Type
TECH PUBLIC
Minimum package
3000 圆盘

Technical parameters

Electronic Component
Electronic Component
Electronic Component
TECH PUBLIC
Electronic Component
TPDTA124ET
Electronic Component
1
Package
SOT-23
Electronic Component
1 PNP
Electronic Component
Digital Transistor
Electronic Component
0.03g
Electronic Component
1
Electronic Component
BM0258736528
Resistor
1.2
Resistor
28.6kΩ
Transistor Type
PNP
Frequency(f T)
250MHz
Power Dissipation(Pd)
200mW
Electronic Component
Electronic Component

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

TPDTA124ET 产品概述

TPDTA124ET 是台舟电子(TECH PUBLIC)推出的一款预偏置(pre‑biased)PNP 小信号晶体管,采用 SOT‑23 封装,面向需要简单外部元件、体积小、响应快的开关与小信号放大应用。器件在保持体积与成本优势的同时,提供了 50V 的集射极击穿电压和 100mA 的最大集电流,适合驱动小负载及作为接口级开关使用。

一、主要特性

  • PNP 预偏置封装,内部带偏置电阻,便于快速上手并简化外围电路。
  • 集射极击穿电压 VCEO = 50V,适合中等电压等级系统。
  • 最大集电极电流 IC = 100mA,适用于小电流开关与信号驱动。
  • 功耗 Pd = 200mW(SOT‑23 封装限制),需注意散热与功率余量。
  • 直流电流增益 hFE ≈ 60(典型值),满足一般放大与开关增益要求。
  • 特征频率 fT = 250MHz,适合宽带小信号放大与快速开关场合。
  • 开关导通输出电压 VO(on) ≈ 300mV(典型导通压降)。
  • 内部输入电阻约 28.6kΩ,电阻比率(偏置网络)约 1.2,降低外部偏置设计复杂度。

二、关键电气参数(要点说明)

  • 最大额定:VCEO = 50V、IC = 100mA、Pd = 200mW。使用时不得超过这些极限值。
  • 开/关阈值:厂家给出典型输入开启与关闭参考值(如 VI(on) = 3V@10mA;在小信号条件下可低至 0.3V;VI(off) 在 100µA 时约 500mV,最大参考值 5V)。这些数值受测试条件影响较大,实际电平请依据具体电路和负载重新验证。
  • 高频性能:fT = 250MHz,指示该器件在高频小信号下仍具备增益,适合用于射频前端的低增益级或高速数字线路的快速切换。

三、功能与典型应用场景

  • 高侧小电流开关:在需要从正电源侧控制小负载时,PNP 架构更便捷。
  • 信号反相与接口级驱动:用于微控制器或逻辑电平与模拟电路间的电平转换与反相。
  • 小信号放大:可工作于放大区,适合低功耗前置放大器或电平调整电路。
  • 高频开关与缓冲:得益于较高的 fT,可在宽频带应用中替代一般低速晶体管。
  • 功能集成化电路中的替代元件:预偏置特性便于在模块化设计中用最少外围元件实现可靠偏置。

四、封装与热设计

  • 封装:SOT‑23,三引脚小型封装,适合密集贴片电路。
  • 功耗限制:Pd = 200mW(在规定环境下),实际系统中应考虑 PCB 散热、环境温度及焊盘面积对功耗的影响。建议在连续导通或较高频率切换时进行热仿真或测温,必要时增大铜箔散热或选择更大功率器件。

五、典型使用建议

  • 利用器件内置偏置减少外部元件,但在对精确阈值或响应时间有要求的场合,仍建议外加微调电阻以稳定工作点。
  • 在作为开关使用时,注意 VO(on) 与需要驱动的负载电压/电流匹配,避免在接近功耗极限下长时间工作。
  • 高频应用需留意走线与寄生电容,合理布局以发挥 fT 优势。
  • 若电路可能承受反向电压或浪涌,建议增加保护二极管或限流元件以保护晶体管。

六、注意事项与选型提示

  • 虽有内部偏置,具体的 VI(on)/VI(off) 等门槛受测试条件影响较大,请在目标系统中进行验证测试。
  • 若负载电流接近或超过 50–100mA,应优先评估功耗与结温上升,必要时选用更高功率等级或并联方案(并联需注意电流均分)。
  • 对于高精度模拟或高温环境,应参照完整数据手册的温漂与极限曲线来决定是否合适。
  • 若需要更高电流或更低饱和压,可考虑同系列或同功能的替代型号,但需权衡封装与成本。

总结:TPDTA124ET 以其预偏置便利性、适度的电压与电流规格、较高的 fT 和 SOT‑23 小型化特性,适合用于各类小功率、高密度电路中的开关与小信号放大场合。在最终设计中,请结合实际测试结果与热设计进行评估,确保在额定范围内长期可靠工作。若需更详细的电气特性曲线与测试条件,请索取台舟电子的完整数据手册。

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