WMSIC Electronic Components

TECH PUBLIC AO3400AL

ModelAO3400AL
PackageSOT-23
BrandTECH PUBLIC
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 Date code within 2 years

Available for RFQ

Technical data

Product details

19 specifications

Core information

Product name
TECH PUBLIC AO3400AL
Type
TECH PUBLIC
Minimum package
3000 圆盘

Technical parameters

Electronic Component
Electronic Component
Electronic Component
TECH PUBLIC
Electronic Component
AO3400AL
Electronic Component
1
Package
SOT-23
Electronic Component
1 N
Electronic Component
MOSFET
Electronic Component
1g
Electronic Component
1
Electronic Component
BM0257708798
Operating Temperature
55℃~+150℃
Power Dissipation(Pd)
1.25W
Electronic Component
Electronic Component
Electronic Component
3000
Voltage(Vdss)
30V
Capacitor(Ciss)
550pF

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

AO3400AL 产品概述

一、主要特性

AO3400AL(品牌:TECH PUBLIC / 台舟电子)为30V耐压的N沟增强型MOSFET,封装SOT-23,适合低功耗开关和功率管理场景。主要参数包括:Vdss = 30V,连续漏极电流Id = 5.8A,导通电阻RDS(on) = 22mΩ(Vgs=10V),栅极阈值Vgs(th) ≈ 1.1V,耗散功率Pd = 1.25W。栅极电荷Qg = 9nC(测于4.5V),输入电容Ciss = 550pF,反向传输电容Crss = 57pF,输出电容Coss = 72pF,工作结温范围-55℃~+150℃。

二、电气参数与性能解读

该器件30V耐压和较低的RDS(on)使其在中低压应用中具备良好导通性能。典型导通损耗可按Pcon = I^2·RDS(on)估算:例如在3A时P≈0.20W,在5A时P≈0.55W。栅极阈值约1.1V,表明对逻辑电平驱动敏感,但22mΩ的低阻值是在Vgs=10V时测得,在4.5V或更低驱动下RDS(on)会显著增大,需注意驱动电压对导通损耗的影响。

三、热性能与封装限制

标称耗散功率Pd = 1.25W(典型条件),但SOT-23封装的热阻很大,实际能承受的连续电流受PCB散热影响显著。推荐在无散热措施下保守使用电流≤3A;若需靠近规格极限(5A以上),必须采用大面积铜箔、热铜垫与多层过孔热通道以降低结到环境热阻。

四、应用建议与驱动注意

  • 开关速度与驱动:Qg = [email protected],若期望快速切换(如100ns),所需驱动电流约为 Qg/t ≈ 90mA。使用弱驱动会导致开关损耗和过渡区发热增加。
  • Miller效应:Crss = 57pF 会在升降沿引入峰值电压耦合,需注意驱动回路阻抗和布局以避免误导通。
  • 典型用法:低侧开关、负载断电、功率路径控制、同步整流(配合驱动)及电源管理开关等。高侧使用需配合合适的栅极升压或驱动方案。

五、PCB 布局与可靠性建议

  • 保持栅极到驱动器的走线最短,避免环路面积过大以减少寄生电感。
  • 在SOT-23的漏极/源极铜区使用大面积铜箔并布置若干过孔导热至内部或底层铜,以提高散热能力。
  • 在栅极附近并联适当的RC阻尼(如10Ω与100pF)可抑制振铃并控制开关应力。
  • 做好浪涌保护与反向二极管吸收,防止峰值电压超过30V击穿。

六、典型应用场景与选型提示

适用场景:便携设备电源开关、DC-DC转换器低侧开关、负载断电控制、LED驱动开关等。选型时若工作电流长期在3A以上,优先考虑更大封装或加强散热设计;若以逻辑电平(3.3V或更低)驱动,需验证在Vgs较低时RDS(on)是否满足系统损耗预算。

总结:AO3400AL在30V/低RDS(on)与中等栅极电荷之间取得平衡,适合对尺寸和成本敏感但对开关性能有一定要求的应用。合理的驱动与散热设计是发挥其性能的关键。

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