WMSIC Electronic Components

UMW AO3414A

ModelAO3414A
PackageSOT-23
BrandUMW
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 Electronic Component

Available for RFQ

Technical data

Product details

19 specifications

Core information

Product name
UMW AO3414A
Type
UMW
Minimum package
3000 圆盘

Technical parameters

Electronic Component
Electronic Component
Electronic Component
UMW
Electronic Component
AO3414A
Electronic Component
1
Package
SOT-23
Electronic Component
1 N
Type
N
Electronic Component
MOSFET
Electronic Component
0.033g
Electronic Component
1
Electronic Component
BM0258635600
Operating Temperature
55℃~+150℃
Power Dissipation(Pd)
1.4W
Electronic Component
Electronic Component
Electronic Component
3000
Voltage(Vdss)
20V

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

AO3414A 产品概述

一、简介

AO3414A 是由 UMW(友台半导体)提供的一款高性能单片 N 沟道场效应管(MOSFET),封装为 SOT-23,适用于低压、高效率的开关与功率管理场合。器件工作温度范围宽(-55℃ 到 +150℃),单只器件设计用于电源路径、负载开关与同步整流等应用。

二、主要规格(典型/额定)

  • 类型:N 沟道 MOSFET,数量:1 个
  • 漏源耐压 Vdss:20 V
  • 导通电阻 RDS(on):23 mΩ @ Vgs = 4.5 V
  • 连续漏极电流 Id:4.2 A(实际可用电流需考虑封装散热)
  • 阈值电压 Vgs(th):0.60 V @ Id=250 μA
  • 栅极电荷 Qg:1.6 nC @ Vgs = 4.5 V
  • 输入电容 Ciss:436 pF;输出电容 Coss:66 pF;反向传输电容 Crss:44 pF
  • 功耗 Pd:1.4 W(SOT-23 封装,实际功耗受 PCB 散热影响)
  • 工作温度:-55℃ ~ +150℃;封装:SOT-23

三、特性与优点

  • 低导通电阻(23 mΩ @4.5V),在中等电流工作下导通损耗小,适合电池供电与点对点电源开关。
  • 逻辑电平友好:在 4.5 V 门驱动下性能优异,阈值低,易于与微控制器或驱动器配合。
  • 小封装(SOT-23)有利于高密度布局,适合便携设备与小型模块。
  • 较小的栅极电荷与输入电容(Qg=1.6 nC, Ciss=436 pF),有利于减少开关损耗与提高驱动效率。

四、典型应用场景

  • 电池管理、便携式设备电源开关与负载切换
  • 同步整流/降压转换器的低压开关管
  • 低功耗电源路径管理与保护电路
  • 小功率电机驱动与开关电路

五、实用设计建议

  • 封装散热:SOT-23 的热阻较高,1.4 W 的Pd为理想值。实际连续电流能力需按 PCB 铜箔面积与环境温度降额计算,建议在高功率场合增加底铜散热或并联器件。
  • 驱动与栅极保护:建议使用 4.5 V 以上稳定门驱动以达到标称 RDS(on),并根据开关速度在门与驱动间串入 10–100 Ω 阻尼电阻以抑制振铃与 EMI。
  • 开关损耗估算:门驱动能量约 E_gate ≈ 0.5·Qg·Vgs,4.5 V 下约 3.6 nJ/次;Coss 导致的每次能量约 0.5·Coss·Vds^2(在 20 V 下约 13.2 nJ/次)。高频应用时需考虑这些开关能量累积。
  • 布局要点:尽量缩短漏-源电流回路与栅极回路,增大引脚到铜箔的焊盘面积,门-源端做好旁路电容与接地平面。

六、注意事项

  • 器件对静电敏感,搬运与安装时做好 ESD 防护。
  • 额定 Id 与 Pd 均基于特定散热条件,实际设计中按热阻和环境温度进行降额处理。
  • 在高开关速度与高电压斜率场合,需注意 Crss 导致的米勒效应对栅极驱动的影响并采取相应抑制措施。

以上为 AO3414A 的概要说明,适合快速评估在低压高效率电源设计与便携设备中的可行性。若用于特定电路(例如高频同步整流或连续大电流场合),建议结合完整器件数据手册与系统热仿真进一步验证。

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