WMSIC Electronic Components

HXY MOSFET UMH3N

ModelUMH3N
PackageSOT-363
BrandHXY MOSFET
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
HXY MOSFET UMH3N
Type
HXY MOSFET
Minimum package
3000 圆盘

Technical parameters

Electronic Component
Electronic Component
Electronic Component
HXY MOSFET
Electronic Component
UMH3N
Electronic Component
1
Package
SOT-363
Electronic Component
2 NPN
Electronic Component
Digital Transistor
Electronic Component
0.02g
Electronic Component
1
Electronic Component
BM0257710778
Resistor
4.7kΩ
Transistor Type
NPN
Frequency(f T)
250MHz
Power Dissipation(Pd)
150mW
Electronic Component
Electronic Component
Electronic Component
3000

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

UMH3N 产品概述

UMH3N 是华轩阳电子(HXY MOSFET)推出的一款数字晶体管器件,封装为 SOT-363(超小体积),内部为 NPN+NPN 结构,面向微控制器接口与低功率开关驱动场景。器件集成了典型的数字晶体管特性,便于直接与逻辑电平连接,节省外部元件并简化电路设计。

一、主要特性

  • 集射极击穿电压 Vceo:50 V,适用于中低压侧控制场合。
  • 集电极最大电流 Ic:100 mA,适合驱动小信号负载(如指示灯、光耦、低功耗继电器驱动等)。
  • 最大耗散功率 Pd:150 mW,SOT-363 小封装要求注意热限。
  • 直流电流增益 hFE:600(测试条件 1 mA, 5 V),在低电流区具有高增益特性。
  • 射基极击穿电压 Vebo:5 V;输入端等效阻抗 4.7 kΩ(常见于带内部基极限流/上拉电阻的数字晶体管实现方式)。
  • 结构:NPN+NPN(双晶体管结构,便于开集电极或推挽等应用拓扑)。
  • 封装:SOT-363,适合高密度贴片应用与移动终端类产品。

二、电气性能要点

UMH3N 在低电流工作点表现出很高的直流放大倍数(hFE),在接口电路中可用较小的输入信号驱动较大的输出变化。输入端等效电阻 4.7 kΩ 有利于直接与 MCU/逻辑电平连接,避免外部基极电阻。设计时需注意器件的功耗与结温限制,避免长期在最大耗散功率附近工作。

三、典型应用场景

  • 单片机/数字逻辑与小功率负载之间的接口驱动(LED、蜂鸣器、光耦隔离器等)。
  • 信号放大与电平转换。
  • 便携设备和消费电子中用于节省 PCB 面积的开关/缓冲元件。
  • 双晶体管结构可用于简单的推挽或双通道驱动方案(视应用电路而定)。

四、封装与热管理

SOT-363 为超小型封装,适合高密度安装,但热阻较大。150 mW 的耗散功率在无散热条件下需谨慎使用:

  • 在 PCB 设计上建议增大铜箔面积以帮助散热;
  • 在连续导通场合,宜限制集电极电流或采用间歇导通策略以降低结温;
  • 若工作环境温度较高,应留有安全裕度,避免长期接近 Pd 极限。

五、使用与焊接注意事项

  • 推荐遵循通用无铅回流焊规范,避免超出封装应力与温度极限(详情参照制造商回流曲线)。
  • ESD 防护:尽管器件适用于接口电路,仍建议在装配与测试过程中采取静电防护措施。
  • 在实际电路中若负载接近 100 mA 或导通功耗较大,应评估平均功耗与脉冲特性,必要时添加并联或采用更大封装器件。

六、典型接法(示意)

  • 逻辑直接驱动:MCU 输出 → UMH3N 输入(内部 4.7 kΩ)→ 集电极负载(上拉至 Vcc 或接地方向视连接方式而定)。
  • 双管结构可根据目标功能选择单通道或复用两路独立驱动,提升电路灵活性。

七、采购与标识

  • 品牌:HXY MOSFET(华轩阳电子)。型号:UMH3N。
  • 封装:SOT-363。
  • 选型时请核对器件批号与封装标识,并参考制造商技术资料(Data Sheet)以获取完整的曲线、极限值与包装信息。

总结:UMH3N 以其高增益、内置等效输入阻抗与超小封装,适合空间受限且需直接与数字逻辑相连的低功耗驱动与接口场景。设计时重点关注热管理与最大耗散功率限制,以确保长期可靠运行。

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