WMSIC Electronic Components

WINSOK WST3424

ModelWST3424
PackageSOT-23
BrandWINSOK
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
WINSOK WST3424
Type
WINSOK
Minimum package
3000 圆盘

Technical parameters

Electronic Component
Electronic Component
Electronic Component
WINSOK
Electronic Component
WST3424
Electronic Component
1
Package
SOT-23
Electronic Component
1 N
Type
N
Electronic Component
MOSFET
Electronic Component
0.037g
Electronic Component
1
Electronic Component
BM0264549092
Operating Temperature
55℃~+150℃
Power Dissipation(Pd)
1W
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.

WST3424 产品概述

一、产品简介

WST3424 是 WINSOK(微硕)推出的一款 N 沟道场效应管(MOSFET),采用 SOT-23 小封装,额定漏源电压 Vdss = 20V,连续漏极电流 Id = 4.4A。该器件为低电压逻辑电平型 MOSFET,适合便携式电源管理与低压高频开关场合,单颗器件便于在空间受限的电路中实现功率开关功能。

二、主要特性

  • N 沟道,SOT-23 封装,体积小,便于表贴组装。
  • Vdss = 20V,适用于 5V / 12V 辅助电源与电池管理等场景。
  • 连续漏电流 Id = 4.4A(封装和散热条件受限时需降额使用)。
  • 导通电阻 RDS(on) = 90mΩ(Vgs = 1.8V),逻辑电平驱动即可达到较低导通损耗。
  • 栅极阈值 Vgs(th) ≈ 1.2V,门限低,易被 MCU / PMIC 直接驱动。
  • 栅极总电荷 Qg = 6.4nC(Vgs = 4.5V),开关损耗和驱动布局友好。
  • 输入/输出/反向传输电容:Ciss = 382pF,Coss = 41pF,Crss = 33pF,利于中高频开关性能。
  • 工作温度范围 -55°C ~ +150°C,适应较宽温度条件。
  • 额定功耗 Pd = 1W(SOT-23 封装限制,需注意 PCB 散热设计)。

三、电气与开关性能分析

WST3424 针对低电压平台优化:RDS(on) 在 Vgs=1.8V 条件下为 90mΩ,说明在 1.8–4.5V 的逻辑电平驱动下均可获得较低导通损耗。较小的 Qg(6.4nC)与中等 Ciss 值(382pF)表明在数十 kHz 到数百 kHz 的开关频率下具有良好折中表现,适用于降压转换器同步整流或高侧低侧开关(视电路拓扑而定)。Crss 33pF 对开关过渡与电磁兼容有一定影响,建议在高速开关时做好缓冲与布局控制。

四、典型应用

  • 移动/便携设备电源开关与负载控制(USB/Type-C 附属电源切换)
  • DC-DC 降压转换器(低功率同步整流或开关管)
  • 电池管理与保护电路(过流/短路保护开关)
  • 各类固态继电器替代、通断控制及驱动电路

五、封装与散热建议

SOT-23 小封装限制了功耗散热能力,器件额定 Pd = 1W 为典型值,实际使用时应根据 PCB 板面积、铜箔厚度和环境温度进行降额。建议:

  • 在 MOSFET 底部与接地层增加散热铜箔或铜柱,保证热传导;
  • 采用较宽的漏极/源极走线并尽量增加散热区;
  • 在高电流场合使用多层 PCB 与过孔将热量传导到内层/底层铜箔。

六、布板与驱动使用建议

  • 栅极布线尽量短,驱动端并联小阻抗(10–100Ω)以抑制振铃;
  • 栅极接地侧加入 100kΩ 级别拉低电阻防误触发;
  • 在电源侧靠近 MOSFET 放置高频旁路电容(陶瓷),减小寄生回路电感;
  • 为减少开关损耗和 EMI,必要时在栅极使用 RC 缓冲或门驱动芯片。

七、可靠性与存储

器件工作温度 -55°C 至 +150°C,适应工业级温度范围。注意 ESD 防护与潮湿敏感等级(遵循厂方 MSDS/焊接资料),推荐按 J-STD-020 回流焊温度曲线进行贴片焊接并在存储前保持干燥包装。

结论:WST3424 是一款针对低压逻辑驱动、体积受限场合优化的 N 沟道 MOSFET,兼顾导通损耗与开关性能,适合移动电源管理、低功耗 DC-DC 与通断控制等应用。在使用中应重视 PCB 散热与布局以发挥器件最佳性能。若需更详细的电气特性曲线或封装尺寸,请参考厂家规格书。

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