WMSIC Electronic Components

LRC LP0404N3T5G

ModelLP0404N3T5G
PackageSOT-883
BrandLRC
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 26+

Available for RFQ

Technical data

Product details

19 specifications

Core information

Product name
LRC LP0404N3T5G
Type
LRC
Minimum package
10000 圆盘

Technical parameters

Electronic Component
Electronic Component
Electronic Component
LRC
Electronic Component
LP0404N3T5G
Electronic Component
1
Package
SOT-883
Electronic Component
1 P
Type
P
Electronic Component
MOSFET
Electronic Component
0.009g
Electronic Component
1
Electronic Component
BM0226357242
Electronic Component
Electronic Component
Electronic Component
10000
Voltage(Vdss)
20V
Capacitor(Ciss)
152pF
Output Capacitor(Coss)
18.5pF

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

LP0404N3T5G 产品概述

一、概述

LP0404N3T5G 是 LRC(乐山无线电)推出的一款小体积 P 沟道 MOSFET,适用于 20V 额定电压的高侧开关、负载隔离与电源切换场景。器件采用紧凑的 SOT-883 封装,单片 P 沟道设计,面向便携式电子与电源管理应用,兼顾低栅电荷与适中导通电阻,便于在有限驱动能力下实现快速切换与能量控制。

二、主要参数(典型/测试条件)

  • 漏源电压(Vdss):20V
  • 连续漏极电流(Id):1.4A
  • 导通电阻(RDS(on)):2.2Ω @ Vgs=1.5V,Id=100mA;480mΩ @ Vgs=4.5V,Id=780mA
  • 阈值电压(Vgs(th)):1.2V(测试电流 250µA,按幅值说明)
  • 栅极总电荷(Qg):2.8nC @ Vgs=4.5V
  • 输入电容(Ciss):152pF;输出电容(Coss):18.5pF;反向传输电容(Crss/Crss):6pF
  • 封装:SOT-883
  • 数量/类型:1 个 P 沟道 MOSFET
    (注:各项参数以所给测试条件为准,实际应用中应结合电路工作点评估器件表现。)

三、器件特点与优势

  • 小型封装:SOT-883 体积小、适合紧凑 PCB 布局,利于便携设备与密集电路板的空间节省。
  • 低栅电荷:Qg=2.8nC(4.5V)使得在驱动能力有限的场合也能实现较快开关与较低驱动损耗。
  • 适应多种驱动幅值:在较低 Vgs(1.5V)下已能导通(RDS(on) ~2.2Ω),在中等驱动(4.5V)下 RDS(on) 明显下降至 ~480mΩ,便于在不同电平控制下灵活使用。
  • 中等耐流与低电容:Id 额定 1.4A,Coss/Crss 较小,有利于减小开关损耗与提高开关速度。

四、典型应用

  • 电池供电设备中的高侧断路与负载切换
  • 移动设备与便携充电器的电源路径管理
  • 低压 DC-DC 变换器中的同步或旁路开关
  • 需要反向保护或负载隔离的电路(作为理想二极管或开关使用)

五、设计注意事项

  • 驱动电压选择:根据给定 RDS(on) 随 Vgs 变化较大,若需更低导通损耗建议采用接近 4.5V(或器件允许的最大安全 Vgs 幅值)驱动。
  • 热管理:虽然连续漏极电流达 1.4A,但实际导通损耗由 RDS(on) 决定。在高电流条件下需留意结温和 PCB 散热路径,缩短电流走线并加大散热铜箔。
  • 布局建议:靠近器件的 G、S、D 引脚应尽量缩短走线,减小环路电感;对高侧应用,注意门极与源极的参考关系,避免门源过压。
  • 开关性能:小的 Coss/Crss 与较低 Qg 有利于快速开关,但仍需在电路中考虑谐振与过冲抑制(如阻尼电阻或 RC 缓冲)。

六、封装与可靠性

SOT-883 小封装便于空间受限的产品使用,但散热能力受限,建议在 PCB 设计时增加散热铜层与过孔。生产流程中按常规无铅回流焊工艺处理,注意防潮防静电保管。

七、选型建议

若目标应用追求极低导通损耗且有较强驱动能力,可选用 RDS(on) 在低 Vgs 下更优的器件;若系统驱动电压受限或优先考虑开关速度与体积,LP0404N3T5G 的低 Qg、适中 RDS(on) 与小电容特性使其在电源路径管理与便携设备中具有竞争力。

总结:LP0404N3T5G 以 20V 耐压、灵活的驱动兼容性、紧凑封装与较低栅电荷为优势,适合用于高侧开关、负载隔离与便携电源管理场合。实际设计时请结合具体 Vgs、Id 工况与 PCB 散热方案进行热与电性能验证。

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