WMSIC Electronic Components

FUXINSEMI SS8550

ModelSS8550
PackageSOT-23
BrandFUXINSEMI
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
FUXINSEMI SS8550
Type
FUXINSEMI
Minimum package
3000 圆盘

Technical parameters

Electronic Component
Electronic Component
Electronic Component
FUXINSEMI
Electronic Component
SS8550
Electronic Component
1
Package
SOT-23
Electronic Component
1 PNP
Electronic Component
Transistor(BJT)
Electronic Component
0.03g
Electronic Component
1
Electronic Component
BM0265132997
Transistor Type
PNP
Frequency(f T)
100MHz
Power Dissipation(Pd)
300mW
Electronic Component
Electronic Component
Electronic Component
3000
Collector Current(Ic)
1.5A

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

SS8550 产品概述

一、产品简介

SS8550 是由 FUXINSEMI(富芯森美)提供的一款小封装 PNP 型双极结晶体管,采用 SOT-23 封装,针对低压小功率开关与放大应用优化。其主要参数为:集电极电流 Ic 最大 1.5A、集—射击穿电压 Vceo 25V、耗散功率 Pd 300mW、直流电流增益 hFE 可达 400、特征频率 fT 100MHz、集电极截止电流 Icbo 100nA、集—射饱和电压 VCE(sat) 500mV、发—基击穿电压 Vebo 5V(以上数值以厂方最终数据表为准)。

二、关键参数意义与工程影响

  • Ic = 1.5A:标示器件能承受的峰值或短时集电极电流上限,但连续工作时受限于封装热耗散能力。
  • Vceo = 25V:在发射极开路时,集电极允许的最大反向电压,选型时工作电压应远低于此值以留有裕量。
  • Pd = 300mW:SOT-23 小封装的热耗散限制,决定了在某一温度下可持续的最大功耗。若在高 Ic 或高 VCE 情况下工作,需注意功耗超限风险。
  • hFE = 400:静态电流放大倍数较高,有利于用较小基流驱动较大集电流。但在高电流或饱和区该值会明显下降,实际电路设计时需参考典型曲线并留有裕量。
  • fT = 100MHz:表明器件在中高频信号放大上仍具有一定能力,适合一般开关与中频放大场合。
  • Icbo、VCE(sat)、Vebo:分别反映漏电、小压降饱和性能与发—基极耐压,均为可靠性与偏置设计的重要参考。

三、封装与热管理建议

SS8550 采用 SOT-23,体积小、引脚间距紧凑,适合表面贴装应用。但 SOT-23 的热阻较大,Pd 仅 300mW。实务建议包括:

  • 在 PCB 设计中为晶体管设置足够的铜箔面积作为散热通道,必要时在底层开辟散热平板并配合热过孔;
  • 避免在高环境温度下长期满功耗工作,考虑降额使用并参考厂方的热阻/功耗曲线;
  • 若需频繁通过大电流,采用脉冲驱动并控制占空比,避免连续导通导致过热。

四、典型应用场景

  • 低电压高增益信号放大(前级放大、偏置电路);
  • 小功率高侧或低侧开关(需注意与供电电压、热耗匹配);
  • 驱动小型继电器、指示灯或与逻辑电路配合的电平转换;
  • 作为互补对中的 PNP 器件用于音频放大或推挽结构(需评估功耗与线性度)。

五、设计与使用要点

  • 饱和驱动时建议采用较低的“强迫β”(例如 10–20)来计算基流,以确保可靠饱和与较低 VCE(sat);但要注意基极电流的来源与器件能承受的基极功耗。
  • 由于 hFE 随电流和温度变化显著,关键放大或开关节点应在实际工况下测试以确定增益和温漂。
  • 严格控制发—基击穿电压(Vebo ≤ 5V),避免在偏置或测试中对基极施加过高反向电压。
  • 最终设计前务必参照厂方完整数据手册(含引脚定义、典型特性曲线与绝对最大额定值),并在样机阶段进行热、振荡与耐久性验证。

总结:SS8550 在小体积 SOT-23 封装下提供了较高的电流增益与良好的频率特性,适合多种低压、小功耗的开关与放大应用。设计时应重点关注热耗散与在高电流条件下的工作模式,以确保长期可靠性。若需用于苛刻功率或高温环境,应考虑更大封装或并联/外部散热方案,并以厂方数据手册为最终参考。

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