WMSIC Electronic Components

ElecSuper MMBT5551

ModelMMBT5551
PackageSOT-23
BrandElec Super
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
Elec Super MMBT5551
Type
ELECSUPER
Minimum package
3000 编带

Technical parameters

Electronic Component
Electronic Component
Electronic Component
ELECSUPER
Electronic Component
MMBT5551
Electronic Component
1
Package
SOT-23
Electronic Component
1 NPN
Electronic Component
Transistor(BJT)
Electronic Component
0.031g
Electronic Component
1
Electronic Component
BM0258808493
Transistor Type
NPN
Frequency(f T)
100MHz
Power Dissipation(Pd)
300mW
Electronic Component
Electronic Component
Electronic Component
3000
Collector Current(Ic)
600mA

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

MMBT5551(ElecSuper/静芯微)产品概述

一、产品简介

MMBT5551 是一款高压 NPN 小信号晶体管,采用 SOT-23 封装,适用于高压开关、放大和电平转换等场合。该器件具有较高的集电极-射极击穿电压(Vceo = 160V)、较低的漏电流和良好的频率特性(fT ≈ 100MHz),在有限功耗条件下可实现快速响应与稳定放大性能。品牌:ElecSuper(静芯微)。单个数量可用于样机调试与小批量设计验证。

二、主要参数(典型/最大值)

  • 晶体管类型:NPN(硅)
  • 集电极电流 Ic(最大):600mA
  • 集电极-射极击穿电压 Vceo(最大):160V
  • 耗散功率 Pd(封装限制):300mW(标准测试条件)
  • 直流电流增益 hFE(典型):80(随 Ic、Vce 与温度变化)
  • 特征频率 fT(典型):100MHz
  • 集电极截止电流 Icbo(典型):50nA
  • 发射极-基极击穿电压 Vebo(典型):6V
  • 封装:SOT-23

注:以上参数为器件典型/极限指标,具体使用时请参考器件完整规格书及典型测试条件。

三、器件特性与优势

  • 高压耐受:Vceo 160V,适合高电压信号路径或缓冲级应用。
  • 低漏电流:Icbo 50nA 等级,有利于高阻节点保持低泄漏与长时间稳定。
  • 高频性能:fT ≈ 100MHz,适合中高频小信号放大与快速开关。
  • 小封装:SOT-23 有利于空间受限的电路板布局与自动贴片生产。
  • 兼顾开关与放大:在合适的偏置与散热条件下可在开关和小信号放大间平衡性能。

四、应用场景

  • 高压开关与驱动:用于继电器驱动、继电器前置级、MOSFET 驱动的电平位移或电流放大(注意功耗与封装限制)。
  • 信号放大:高电压输入的前置放大器、小信号放大器、音频前端(低功耗场合)。
  • 电平转换:TTL/CMOS 与高压系统之间的接口电平移位。
  • 保护/钳位:与限流电路配合实现过压或反向保护(需按安全区使用)。
  • 工业与仪表:传感信号处理、测量放大与低漏电要求的测量电路。

五、使用注意事项与热管理

  • Ic 与 Pd 的关系:虽然器件标称 Ic 可达 600mA,但持续工作电流受封装耗散功率 (Pd = 300mW) 限制。高电流时器件 VCE(sat) 或 VCE 导通时的压降会导致快速升温,从而超过 Pd。在设计中应以功耗(P = VCE × IC)和封装热阻为准,进行必要的热降额(derating)。
  • 安全工作区(SOA):在脉冲或短时工作条件下可承受较大电流,但应保证不超过器件 SOA。长时间大电流应用推荐选择功率封装或外加散热措施。
  • 增益变化:hFE 随温度、Ib 与 Ic 变化显著,设计放大电路或偏置网络时应考虑最坏情况(最低 hFE)。
  • ESD 与可靠性:SOT-23 小封装易受静电损伤,生产与装配过程中应采取 ESD 防护措施。储存与回流焊工艺应遵循厂家推荐的湿度敏感度和回流曲线。

六、典型电路提示

  • 开关应用(低侧开关):基极串联限流电阻 Rb = (Vdrive - Vbe)/Ib,建议按 Ib ≈ Ic/10 计算(视 hFE 与开关速度要求调整)。若需快速断开,可并联基极电阻或二极管改善响应。
  • 共射放大器:注意偏置点的稳定性与耦合电容。高压侧已知时,使用分压偏置并加入旁路以提高稳定性。
  • 保护电路:在高压开关中并联 TVS 或限压二极管,防止瞬态过压损伤基极-发射极结或集电极-基极结。

七、封装与订购建议

  • 封装形式:SOT-23,适用于 SMT 自动贴装。
  • 订购与包装:样品可单个采购,量产请与 ElecSuper(静芯微)或授权分销商确认卷带(reel)与最小包装数量、交期以及器件批次的可追溯性。
  • 规格确认:在最终设计与生产前,建议索取完整规格书(datasheet)和器件的电气特性曲线以校验温度与频率响应等关键参数。

如需我帮您根据具体电路(工作电压、开关频率、预期最大集电极电流)计算基极电阻、功耗与热降额,或提供 PCB 布局与 SOT-23 散热优化建议,请提供相关工作条件。

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