WMSIC Electronic Components

Hottech B772

ModelB772
PackageSOT-89-3
BrandHottech
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
Hottech B772
Type
HOTTECH
Minimum package
1000 圆盘

Technical parameters

Electronic Component
Electronic Component
Electronic Component
HOTTECH
Electronic Component
B772
Electronic Component
1
Package
SOT-89-3
Electronic Component
1 PNP
Electronic Component
Transistor(BJT)
Electronic Component
0.144g
Electronic Component
1
Electronic Component
BM0227281602
Transistor Type
PNP
Frequency(f T)
50MHz
Power Dissipation(Pd)
500mW
Electronic Component
Electronic Component
Electronic Component
1000
Collector Current(Ic)
3A

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

B772 产品概述

B772 是 Hottech(合科泰)推出的一款低功耗、高增益的 PNP 双极型晶体管,采用 SOT-89-3 小外形封装,适合在空间受限、需一定开关或放大能力的电路中使用。该器件在 30V 以内的电压环境和中等电流脉冲场合表现良好,常用于便携设备的高侧开关、驱动电路和小功率放大器。

一、主要特性

  • 晶体管类型:PNP
  • 最大集电极电流 Ic:3A(脉冲或短时条件,注意散热限制)
  • 集射极击穿电压 Vceo:30V
  • 耗散功率 Pd:500mW(器件在标准环境下的总功耗上限)
  • 直流电流增益 hFE:约 160(在 Ic=1A、Vce=2V 条件下)
  • 特征频率 fT:約 50MHz,适合低至中频率的小信号应用
  • 集电极截止电流 Icbo:约 1µA(典型值)
  • 集射极饱和电压 VCE(sat):约 500mV(测得条件:Ic≈2A,Ib≈0.2A)
  • 射基极击穿电压 Vebo:6V
  • 封装:SOT-89-3
  • 品牌:Hottech(合科泰)

二、电气特性要点(使用提示)

  • 电压极限:器件最大 Vceo 为 30V,务必保证工作电压在安全余量内,避免在接近击穿电压附近长期工作。
  • 功耗与电流限制:额定耗散功率仅 500mW,意味着当集电极电流较大时,允许的电压降非常小(例如 Pd=500mW 时,若 Ic=2A,则 Vce ≤ 0.25V)。因此在大电流应用中应以饱和开关(Vce 很小)或短时脉冲方式为主,并注意散热。
  • 饱和导通:VCE(sat) 约 0.5V(在较大驱动电流下测得),若要求更低的导通损耗,应采用并联器件或选择低饱和晶体管。
  • 基极保护:Vebo 为 6V,注意避免反向基-发电压超过该值;设计中建议加基极限流或反向钳位元件以保护基极结。
  • 漏电流:集电极截止电流较小(1µA),有利于低泄漏要求的电路,但高温下漏电会显著增加,应在高温环境下评估。

三、典型应用场景

  • 低功率高侧开关:在正电源上作为高侧控制元件(注意 PNP 的接法和基极驱动)。
  • 驱动小型继电器或功率晶体管的基极/栅极驱动(作为中间放大或电平转换元件)。
  • 线性放大与小信号放大:在音频前级或中频放大中使用时,fT=50MHz 能够满足几十 MHz 以内的带宽需求。
  • 电流镜、开关阵列以及便携电子产品中的保护与控制电路。

四、使用与电路设计建议

  • 引脚与封装:器件采用 SOT-89-3 封装,常见引脚排列请参考厂商规格书确认(不同厂商封装标记可能有差异)。
  • 基极驱动:若需在饱和区工作以降低 Vce,按测量条件 Ic=2A、Ib=0.2A 可见需较大的基极驱动电流;实际设计中应根据目标 Ic 选取适当基极电阻或采用驱动级。
  • 散热处理:SOT-89 的热阻相对较高,应在 PCB 上增加铜箔散热面积,必要时与大地或电源平面相连以降低结温。
  • 防止反向击穿:避免基-发反向电压超过 6V,可加并联二极管或在 PCB 布局时限制反向电压路径。
  • 并联使用:若需持续较大电流,考虑并联多只晶体管并做均流及热管理设计,但并联 BJT 需注意热跑及偏流问题。

五、封装与可靠性注意

  • 封装:SOT-89-3,适合表面贴装(SMT),适用于中密度的 PCB 布局。
  • ESD 与焊接:建议按照标准电子元件焊接规范进行回流焊操作;存储与装配过程中注意 ESD 防护。
  • 温度影响:器件参数(hFE、Icbo 等)随温度显著变化,需在电路仿真与实际测试中考虑温漂和最高结温的安全余量。

六、购买与样品信息

  • 品牌:Hottech(合科泰);单只数量:1 个(可根据需求批量采购)。
  • 建议在采购前对照合科泰的正式数据手册确认引脚定义、典型曲线与封装机械尺寸,确保与电路板布局和散热设计的一致性。

总结:B772 在 SOT-89 小封装下提供了较高的增益和中等频率特性,适合空间受限的高侧开关与中小功率放大场合。但其 500mW 的耗散功率对连续大电流使用有较严格限制,设计时必须重视饱和工作点、基极驱动与散热方案。

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