WMSIC Electronic Components

Hottech IRLML2803

ModelIRLML2803
PackageSOT-23
BrandHottech
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
Hottech IRLML2803
Type
HOTTECH
Minimum package
3000 圆盘

Technical parameters

Electronic Component
Electronic Component
Electronic Component
HOTTECH
Electronic Component
IRLML2803
Electronic Component
1
Package
SOT-23
Electronic Component
1 N
Type
N
Electronic Component
MOSFET
Electronic Component
0.035g
Electronic Component
1
Electronic Component
BM0264463963
Power Dissipation(Pd)
540mW
Electronic Component
Electronic Component
Electronic Component
3000
Voltage(Vdss)
30V
Capacitor(Ciss)
85pF

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

IRLML2803 产品概述

一、器件概况

IRLML2803(热牌 Hottech / 合科泰 标注)为小功率N沟道MOSFET,SOT-23封装,适合低成本、空间受限的开关与功率管脚应用。基础电气参数(资料汇总):漏源耐压 Vdss ≈ 30V(个别资料亦标注25V,请以最终出货数据表为准);连续漏极电流 Id = 1.2A;导通电阻 RDS(on) = 250mΩ(Vgs=10V);耗散功率 Pd = 540mW;阈值电压 Vgs(th) ≈ 1V。栅极电荷 Qg = 3.3nC,输入电容 Ciss = 85pF,反向传输电容 Crss = 15pF,输出电容 Coss = 34pF。

二、电性能要点与设计意义

  • 导通电阻250mΩ(10V栅压)说明在充分驱动下导通损耗较低。按照P = I^2·R,若通过1.2A连续导通,理论导通损耗约0.36W,低于标称Pd(0.54W),但实际仍受PCB散热、环境温度及封装限制影响,需谨慎热设计。
  • 阈值电压1V表明为低门限器件,但低阈值不等于低RDS(on)在3.3V或5V下也能达到标称值;实际导通电阻随Vgs下降显著上升,若在3.3–5V逻辑电平驱动,应参考实际数据表或测量结果确认损耗。
  • Qg=3.3nC、Ciss/Crss较小,适合中低频开关应用,驱动电流需求小、栅极开关速度可控,且开关损耗在适度频率下可接受。门极驱动功耗近似为 Pgate ≈ Qg·Vgs·f(例如10V、100kHz时约3.3mW)。

三、封装与热管理

SOT-23小型封装便于空间受限的PCB设计,但散热能力有限。器件Pd(540mW)是理想化条件下的额定耗散,实际应用中应通过增大铜箔面积、设置散热过孔或在布局上靠近大地铜层来降低结-壳与壳-环境温升。若长时间接近1A以上工作,建议做热仿真或实测温升,必要时采用并联或更大封装器件。

四、典型应用场景

  • 低侧开关、开关稳压器的同步整流或保护开关
  • 便携式设备的电源路径控制与负载开关
  • 小电流电机或继电器驱动(需加吸收或保护电路)
  • LED驱动、信号隔离与功率放大前端

五、使用建议与注意事项

  • 驱动电压:优先采用接近10V的栅压以达到标注RDS(on),若仅有3.3–5V驱动,应查实际RDS(on)随Vgs曲线。
  • 开关保护:对感性负载应并联肖特基或TVS二极管,并在有必要时加RC吸收、钳位或回流路径以抑制Vds尖峰。
  • 布局:源极应尽量短、接地靠近,栅极串联10–100Ω阻值可抑制振荡并限制开关冲击电流;Crss对开关过渡影响较大,布局要减小寄生电感。
  • 热设计:评估最大连续电流时的结温,上述理论损耗应与热阻、环境条件一起确认是否超限。
  • 选型确认:资料中存在Vds标称差异(25V/30V),最终设计前务必核对供应商数据表与实际物料标签,避免误用。

六、总结

IRLML2803为小型SOT-23封装的N沟MOSFET,适合空间受限且对成本/尺寸敏感的中低功率应用。在合适的栅极驱动与良好PCB散热情况下,可实现良好的开关与导通性能。但由于封装与Pd限制,在高持续电流或高环境温度场景下需重视热管理与可能的并联或替代封装方案。最终使用前,请以供应商数据表为准并做必要的电气与热验证。

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