WMSIC Electronic Components

TECH PUBLIC 2N7002EM3T5G

Model2N7002EM3T5G
PackageSOT-723
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 2N7002EM3T5G
Type
TECH PUBLIC
Minimum package
8000 圆盘

Technical parameters

Electronic Component
Electronic Component
Electronic Component
TECH PUBLIC
Electronic Component
2N7002EM3T5G
Electronic Component
1
Package
SOT-723
Electronic Component
1 N
Type
N
Electronic Component
MOSFET
Electronic Component
0.013g
Electronic Component
1
Electronic Component
BM0226538820
Power Dissipation(Pd)
150mW
Gate Voltage(Vgs)
±20V
Electronic Component
Electronic Component
Electronic Component
8000
Voltage(Vdss)
60V

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

2N7002EM3T5G 产品概述

2N7002EM3T5G 是一款超小型封装的 N 沟道增强型场效应管(MOSFET),由 TECH PUBLIC(台舟电子)提供,适用于空间受限且对开关损耗、漏电要求不高的便携式和消费类电子产品。该器件在 60V 的耐压等级下提供可靠的开关能力,结合 SOT-723 的极小占板面积,适合用作低功率开关、信号级负载控制与电平移位。

一、主要参数一览

  • 类型:N 沟道 MOSFET(增强型)
  • 漏源电压 Vdss:60V
  • 连续漏极电流 Id:350mA
  • 导通电阻 RDS(on):5Ω @ VGS = 10V
  • 阈值电压 VGS(th):1.85V @ ID = 250µA
  • 耗散功率 Pd:150mW
  • 反向传输电容 Crss:42pF
  • 封装:SOT-723(超小体积)
  • 数量:1 个(单只器件介绍)

二、产品特点

  • 超小封装(SOT-723):非常适合对 PCB 面积要求严格的应用,如便携设备、可穿戴设备和移动模块。
  • 60V 高耐压能力:适合高于常见 30V/40V 器件的场合,可用于较高电压的开关和保护应用。
  • 单管驱动能力:350mA 连续电流能满足小电流负载开关和信号级控制需求。
  • 低门槛便于驱动:VGS(th) ≈ 1.85V,便于与低压逻辑接口配合(注意保证足够 VGS 以达到理想 RDS(on))。

三、典型应用场景

  • 小电流开关:控制 LED 指示灯、小型继电器驱动、电子负载的断路控制。
  • 信号级负载与电平移位:作为数字信号的电平转换或串级开关使用,适合与 MCU 的 I/O 直接配合(需评估 VGS)。
  • 保护与钳位电路:在高压侧做反向保护或过压监测电路的一部分。
  • 便携与消费电子:如手持设备、遥控器、传感器模块中对空间和功耗敏感的开关元件。

四、设计与使用建议

  • 驱动电压:虽然阈值电压较低,但达到数据表标注的 RDS(on) 需要足够的 VGS(例如 10V 才能实现 5Ω)。若使用低压 MCU(3.3V 或 5V),需评估在该 VGS 下的导通电阻是否满足设计电流与发热要求。
  • 功耗与散热:器件 Pd 为 150mW,封装为 SOT-723,散热能力有限。长期接近最大额定电流时需通过 PCB 铜箔扩展热路径或降低导通时间以避免过热。
  • 开关损耗与寄生电容:Crss = 42pF,会影响开关速度与栅极驱动能量,驱动电路设计时应考虑门极电阻与回跳抑制,避免在快速切换中产生过高损耗或振荡。
  • 布局建议:靠近负载布置器件,缩短源极与漏极回流路径,增大散热铜面积;在电压瞬变较大的应用中,建议在器件附近放置适当的旁路电容或 RC 抑制网络。

五、优点与局限

优点:

  • 超小尺寸,节省 PCB 面积;
  • 高耐压(60V),适应更广电压范围;
  • 易于与小功率负载或信号级接口集成。

局限:

  • 导通电阻相对较高(5Ω @ 10V),不适合高电流或对压降敏感的负载;
  • Pd 与散热受限,长期连续高电流条件下需额外热管理;
  • 若 MCU 仅输出 3.3V,导通性能需验证,可能需要栅极驱动提升或选择低 RDS(on) 的替代器件。

六、布局、焊接与可靠性注意事项

  • 焊接温度与时间应按厂商推荐工艺控制,避免因过热损伤封装。
  • 存储与运输需防潮,SOT-723 小封装对潮湿敏感,建议采用防潮包装并在回流焊前进行必要的烘烤处理(如器件标签/供应商说明所示)。
  • 敏感于静电,请在装配与测试过程中采用 ESD 防护措施(佩戴接地手环、使用防静电工作台等)。

总结:2N7002EM3T5G 以其 60V 耐压、超小封装及适中的开关能力,适合用于空间受限且为低功耗/低电流场合的开关与信号控制。选型时需重点评估驱动电压、导通电阻对系统功耗与发热的影响,并通过合理 PCB 布局与散热设计保证长期可靠运行。

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