WMSIC Electronic Components

LRC LSI1012N3T5G

ModelLSI1012N3T5G
PackageSOT-883-3
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 Date code within 2 years

Available for RFQ

Technical data

Product details

19 specifications

Core information

Product name
LRC LSI1012N3T5G
Type
LRC
Minimum package
10000

Technical parameters

Electronic Component
LRC
Electronic Component
LSI1012N3T5G
Electronic Component
1
Package
SOT-883-3
Electronic Component
1 N
Type
N
Electronic Component
MOSFET
Electronic Component
0.009g
Electronic Component
1
Electronic Component
BM0230027920
Operating Temperature
55℃~+150℃
Power Dissipation(Pd)
250mW
Electronic Component
10000
Voltage(Vdss)
20V
Capacitor(Ciss)
43.5pF
Output Capacitor(Coss)
5.8pF

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

LSI1012N3T5G 产品概述

一、产品简介

LSI1012N3T5G 是 LRC(乐山无线电)推出的一款小功率 N 沟型场效应管,额定漏源电压 20V,适用于便携设备与低压开关场合。器件采用 SOT-883-3 紧凑封装,适合节省 PCB 面积的商用与消费类电子设计。

二、主要参数

  • 类型:N 沟道 MOSFET(单只)
  • Vdss(耐压):20V
  • 连续漏极电流 Id:500mA(额定值)
  • 导通电阻 RDS(on):1.25Ω @ Vgs = 1.8V
  • 门限电压 Vgs(th):0.9V @ ID = 250µA
  • 耗散功率 Pd:250mW
  • 门极电荷 Qg:750pC @ 4.5V
  • 输入电容 Ciss:43.5pF;反向传输电容 Crss:5.8pF;输出电容 Coss:5.8pF
  • 工作温度范围:-55℃ 到 +150℃
  • 封装:SOT-883-3
  • 品牌:LRC(乐山无线电)

三、性能特点

  • 低门限电压(≈0.9V),便于在低电压控制信号下导通。
  • 在 Vgs = 1.8V 时 RDS(on) = 1.25Ω,适用于小电流开关;但在较高电流下导通损耗显著,需要热管理与限流。
  • 紧凑封装利于高密度 PCB 布局。
  • 门极电荷与输入电容决定了开关速度与驱动能量需求:Qg 和 Ciss 需与驱动器匹配,以避免开关损耗增加。

四、典型应用场景

  • 低压小电流负载开关(传感器电源、微控制器外设电源切换)
  • 电池供电设备的电源管理与保护电路
  • LED 小功率驱动(低电流)
  • 小信号模拟/开关阵列中的低电平控制

五、选型与使用建议

  • 热限与连续电流:理论上 I^2·RDS(on) 会产生导通损耗。按照规格 Pd = 250mW 与 RDS(on) = 1.25Ω,理想静态条件下允许电流约 0.45A,但在实际 PCB 与散热条件下应留有裕量,建议连续工作电流按 200–350mA 评估并做热仿真或测量验证。
  • 驱动考虑:器件标注 Qg = 750pC(@4.5V),开关时需提供相应的瞬态电流以保证较短上升/下降时间;若使用慢速 MCU 引脚直驱或较大的门电阻,会增大开关损耗与发热。
  • 低电平驱动:门限电压低,适合 1.8V 类逻辑控制,但在低 Vgs 下 RDS(on) 增大,应权衡导通损耗与可用电压。

六、封装与热管理

SOT-883-3 封装体积小,散热能力有限。建议采取:

  • 在 PCB 上增加器件底部及引脚处的铜面积,必要时加大散热层或过孔导热;
  • 在高占空比或连续导通场合考虑并联或换用更大功率封装器件;
  • 做好实际温升测试,确保结温在器件规格范围内。

七、典型电路与注意事项

  • 低侧开关:常用于将负载接地的一侧作为开关管,注意在关断时栅极电荷释放路径与 TVS/续流二极管的配置。
  • 保护与滤波:对感性负载增加续流二极管;对开关瞬态添加栅极电阻与缓冲电路,防止振荡。
  • ESD 与焊接:遵循常规 MOSFET 防静电措施与封装焊接规范,避免过热损伤。

总结:LSI1012N3T5G 适合低压、低功耗、小电流开关应用,具有低门限与紧凑封装的优点,但因较高的 RDS(on) 与有限的耗散功率,需在设计时重视热管理与驱动能力匹配。若需在更高电流或更低导通损耗场合使用,建议参考更低 RDS(on) 或更大封装的器件。

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