WMSIC Electronic Components

AOS AOSS21115C

ModelAOSS21115C
PackageSOT-23-3
BrandAOS
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
AOS AOSS21115C
Type
AOS
Minimum package
3000 圆盘

Technical parameters

Electronic Component
Electronic Component
Electronic Component
AOS
Electronic Component
AOSS21115C
Electronic Component
1
Package
SOT-23-3
Electronic Component
1 P
Electronic Component
MOSFET
Electronic Component
0.047g
Electronic Component
1
Electronic Component
BM0234473374
Operating Temperature
55℃~+150℃
Power Dissipation(Pd)
1.3W
Electronic Component
Electronic Component
Electronic Component
3000
Voltage(Vdss)
20V
Capacitor(Ciss)
930pF

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

AOSS21115C 产品概述

AOSS21115C 是 AOS 推出的一款 P 沟道场效应晶体管,采用 SOT-23-3 小封装,面向空间受限且需正负电源切换或高侧断开控制的应用场景。器件在宽温度范围内工作(-55℃ ~ +150℃ @ Tj),在 20V 漏源电压下可提供最高连续漏极电流 4.5A。其低导通电阻、较小栅极电荷和适中的寄生电容,使其在功率管理和开关电源中具有良好性能与效率平衡。

一、主要性能亮点

  • 漏源电压 Vdss:20V,适合中低压电源域应用。
  • 导通电阻 RDS(on):33 mΩ @ VGS = 4.5V(P 沟道,典型条件),降低导通损耗。
  • 连续漏极电流 Id:4.5A(封装与散热条件决定实际可用电流)。
  • 总栅极电荷 Qg:8.5 nC @ 4.5V,适合快速开关且门驱动功耗较低的场合。
  • 输入/输出寄生电容:Ciss = 930 pF,Coss = 90 pF,Crss = 80 pF(影响开关响应与回升/回落特性)。
  • 阈值电压 Vgs(th):550 mV @ 250 µA,逻辑电平敏感,便于在低门驱动电压下使用。
  • 功耗 Pd:1.3 W(SOT-23-3 封装的额定耗散,实际耗散受 PCB 散热影响)。
  • 工作温度:-55℃ ~ +150℃(器件在苛刻温度下仍能保持可靠性)。

二、典型应用场景

  • 电源路径管理与高侧开关(例如电池断开、负载选择)。
  • 便携设备和消费电子中的功率切换与保护电路。
  • 开关电源中的同步整流或低侧/高侧功率开关(考虑栅驱方式)。
  • 工业与通信设备中需要小封装高效能的功率元件场合。

三、设计与使用建议

  • P 沟道特性:AOSS21115C 为 P-MOS,工作时需对栅极施加相对于源极的负 VGS 才能导通(例如在源接正电源时,向栅加低电平实现导通)。
  • 门驱动与速度:Qg = 8.5 nC 与 Ciss 表明该器件适合中高速开关;若用于高频开关电源,需评估门驱动器能力与驱动损耗。
  • 热设计注意:Pd = 1.3 W 为器件在规定条件下的功耗额定值,SOT-23-3 封装受 PCB 铜箔和过孔散热影响较大。大电流或高占空比工况下应保证足够散热与合理铺铜。
  • 电流能力评估:虽然标称 Id = 4.5A,但实际连续电流需基于温升、封装热阻及 PCB 散热设计综合判断。
  • 极限参数与保护:请参考完整数据手册中的最大 VGS、浪涌与热限值,避免在超额应力下长期工作。必要时在电路中加上限流、软启动或开关保护。

四、布局与焊接要点

  • SOT-23-3 封装适合表面贴装自动化生产,焊接时遵循标准回流温度曲线。
  • 为降低结温并发挥器件电流能力,建议在 PCB 上为源/漏引脚提供宽铜箔并增加下层散热过孔。
  • 布局时将大电流回路(源/漏)与控制信号区分开,减小寄生环路电感,避免开关噪声耦合到敏感信号。

五、选型参考

选择 AOSS21115C 的理由包括:在 4.5V 门驱动下具有较低 RDS(on)、较小 Qg 便于驱动、SOT-23-3 封装满足体积受限设计。若应用需要更高电流或更低电阻,应考虑更大封装或多并联;若需要更高电压裕度,则选择更高 Vdss 的器件。

结论:AOSS21115C 提供了在中低压电源管理中良好的导通效率与开关性能,适用于需要体积小、门驱动电压低且要求宽温工作的电子系统。在实际设计中,请结合完整数据手册与 PCB 热管理策略对器件工作点进行验证,以保证可靠性与性能最优化。

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