WMSIC Electronic Components

CJ 2SC5658

Model2SC5658
PackageSOT-723
BrandCJ
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
CJ 2SC5658
Type
CJ
Minimum package
8000

Technical parameters

Electronic Component
CJ
Electronic Component
2SC5658
Electronic Component
1
Package
SOT-723
Electronic Component
1 NPN
Electronic Component
Transistor(BJT)
Electronic Component
0.011g
Electronic Component
1
Electronic Component
BM0228679482
Operating Temperature
55℃~+150℃
Transistor Type
NPN
Frequency(f T)
180MHz
Power Dissipation(Pd)
100mW
Electronic Component
8000
Collector Current(Ic)
150mA
Current (h FE)
120

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

2SC5658 BQ (SOT-723) NPN 三极管 — 产品概述

一、产品简介

2SC5658 BQ 为 CJ(江苏长电/长晶)生产的一款小信号 NPN 三极管,采用 SOT-723 超小封装,适用于空间受限的便携式和高密度线路板设计。器件定位为低功耗、小电流放大及开关应用,兼顾较高的增益和平整的高频性能,适合音频前置、射频前端与通用开关场合。

二、主要特性

  • 晶体管类型:NPN,小信号晶体管
  • 最大集电极电流 Ic:150 mA(瞬态或短时使用需注意封装限流)
  • 集-射极击穿电压 Vceo:50 V,便于中等电压系统使用
  • 最大耗散功率 Pd:100 mW,需注意热管理与环境温度
  • 直流电流增益 hFE:约 120(在 Ic = 1 mA、Vce = 6 V 条件下)
  • 特征频率 fT:约 180 MHz,适合 VHF 范围内的小信号放大
  • 集电极截止电流 Icbo:典型 100 nA,低漏电有利于高阻抗电路
  • 集射极饱和电压 VCE(sat):约 400 mV(在 Ic = 50 mA、Ib = 5 mA 条件下)
  • 射-基极击穿电压 Vebo:7 V
  • 工作温度范围:-55 ℃ 至 +150 ℃

三、典型电气参数(引用)

  • 在小电流工作点(Ic≈1 mA)具有高 hFE(约 120),适合做低噪声前置放大或偏置放大级。
  • fT≈180 MHz,表示在高频增益衰减点较高,可用于一定带宽要求的射频或高速信号链路。
  • Pd=100 mW 且 SOT-723 封装热阻较大,长期高功耗使用需限制 Ic·Vce 不超过额定耗散并注意降额设计。

四、封装与热特性

SOT-723(超小型封装)有利于高密度贴装,但散热能力有限。实际使用中应:

  • 将器件用于低功耗点或采用有效的 PCB 铜箔散热;
  • 在高环境温度或连续大电流工况下进行功耗降额计算,避免结温超过额定值;
  • 遵循制造商的焊接与回流工艺建议,避免长时间高温暴露。

五、典型应用场景

  • 小信号放大器(前置放大、通用放大级)
  • 高增益偏置电路与电平转换
  • 低电压开关、控制小型继电器或驱动 LED(在满足 VCE、Pd 条件下)
  • 射频前端或混频器中的缓冲/放大单元(受限于功率与热限)
  • 节点隔离与低漏电要求的电路

六、使用与选型建议

  • 若电路工作点 Ic 较低(几 μA–几 mA),可充分利用其高 hFE,降低基极偏置电流以节省功耗。
  • 如需开关 50 mA 级别电流,应保证足够的基极驱动(示例:Ib≈5–10 mA 以进入饱和区,参照 VCE(sat) 给定条件),并确认封装热允许该功耗。
  • 注意 Vebo=7 V 限制,避免对基-射结施加反向过压。
  • 对于高频应用,留意器件在目标频段的增益和相位特性,并做好 PCB 布线以减小寄生电容和感抗。

七、布板与典型电路注意事项

  • 在高频使用时,缩短输入/输出走线,靠近器件放置旁路电容,减少寄生电感。
  • 为提高热散效果,可在 PCB 底层增加散热铜箔或多层过孔导热。
  • 饱和开关应用时在基极加入限流电阻,控制基极电流并避免基极-发射结过热。

八、可靠性与环境适应性

该器件工作温度范围宽(-55 ℃ 至 +150 ℃),适合工业级应用。但受限于封装和 Pd,长期可靠性依赖于合理的热设计与降额使用。正常储存和贴装流程下,按制造商的质量控制进行批次检验可确保一致性。

小结:2SC5658 BQ 是一颗面向低功耗、小信号与中等频率应用的 NPN 三极管,优势在于高 hFE 与较高 fT,在空间受限设计中表现良好。选型时需重点考虑其耗散功率与封装散热限制,针对目标工况做出适当的降额与 PCB 散热设计。若需更详细的封装图、回流曲线或完整参数表,建议参阅 CJ 的器件数据手册。

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