WMSIC Electronic Components

VBsemi 2N7002WT1G-VB 2N7002WT1G

Model2N7002WT1G-VB
PackageSC-70-3
BrandVBSEMI
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+

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Technical data

Product details

19 specifications

Core information

Product name
VBsemi 2N7002WT1G-VB
Type
VBSEMI
Minimum package
3000 圆盘

Technical parameters

Electronic Component
Electronic Component
Electronic Component
VBSEMI
Electronic Component
2N7002WT1G-VB
Electronic Component
1
Package
SC-70-3
Electronic Component
1 N
Type
N
Electronic Component
MOSFET
Electronic Component
0.036g
Electronic Component
1
Electronic Component
BM0263576974
Operating Temperature
55℃~+150℃
Power Dissipation(Pd)
350mW
Electronic Component
Electronic Component
Electronic Component
3000
Voltage(Vdss)
60V

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

2N7002WT1G-VB 产品概述

2N7002WT1G-VB 是微碧半导体(VBsemi)推出的一款小型表贴 N 沟增强型 MOSFET,封装为 SC-70-3(常见于 SOT-323 类别),适用于低功率开关与逻辑接口场合。该器件在 60V 漏源耐压下,兼顾了小体积与良好的开关性能,适合便携和空间受限的电路设计。

一、主要电气参数

  • 器件类型:N 沟道增强型 MOSFET(数量:1)
  • 漏源电压 Vdss:60V
  • 连续漏极电流 Id:300mA
  • 导通电阻 RDS(on):2Ω @ Vgs=10V
  • 功耗 Pd:350mW
  • 阈值电压 Vgs(th):约 2V
  • 总栅极电荷 Qg:400pC @ 4.5V
  • 输入电容 Ciss:30pF;输出电容 Coss:6pF;反向传输电容 Crss:2.5pF
  • 工作温度范围:-55℃ ~ +150℃
  • 封装:SC-70-3
  • 品牌/型号:VBsemi / 2N7002WT1G-VB

二、性能特点与设计要点

  • 耐压 60V,适合中低电压开关应用。对于需要耐压余量的场合(例如汽车电子或工业接口),该耐压提供较好安全边际。
  • RDS(on) 在 Vgs=10V 时约 2Ω,属于中等导通电阻,适合微弱负载或开关用途;若在 3.3V 或更低栅压下使用,导通电阻会显著上升,应验证实际导通损耗。
  • Pd(耗散功率)仅 350mW,器件热能力有限。即便在最大连续电流下,导通损耗(按 0.3A^2×2Ω ≈ 0.18W 估算)仍占用大量热预算,因此需谨慎热设计与裕量评估。
  • 总栅极电荷 Qg 标注 400pC(@4.5V),提示开关时栅极驱动能量需要考虑,尤其在高频切换或并联多个器件时。按 Qg×Vdrive 计算,单次驱动能量约为 1.8 nJ(4.5V),频率增高会显著增加总驱动功耗。
  • 封装小巧,适合高密度 PCB 布局,但受制于散热与焊盘面积,建议在需要较长通断或较大电流时采取热沉或多铜层布线。

三、典型应用场景

  • 逻辑电平的低侧开关与负载驱动(继电器/指示灯小电流驱动)
  • 电平移位(如 3.3V 与 5V 系统间的一次级缓冲)
  • 开关矩阵、键盘扫描与信号隔离
  • 小信号快速开关、低功率 DC-DC 控制元件(注意频率与热管理)

四、布局与使用建议

  • 引脚常见排列为:1=G、2=D、3=S(不同封装请以厂方图纸为准),在布局时优先考虑 Gate 与驱动源的短回路路径。
  • 为降低开关振铃与 EMI,建议在栅极串联小电阻(几十至几百欧姆)并在必要时并联 TVS 或 RC 抑制网络。
  • 由于 Pd 限制,应在 PCB 上提供足够的铜面积、热垫或多层过孔来增强散热;对持续接近 300mA 的应用应预留充足热裕量或考虑更大封装器件。
  • 驱动注意:若驱动电压低(如 3.3V),请在实际工况下测量 RDS(on) 并计算功耗;在高速开关场合,评估 Qg 对驱动器的瞬时电流要求。

五、选型与替代考虑

2N7002WT1G-VB 以小体积和 60V 耐压为卖点,适合空间敏感且功率不高的应用。若需要更低的 RDS(on)、更高的持续电流或更强的热耗散能力,可考虑更大封装或专为功率开关优化的 MOSFET。若在高频开关或并联场合使用,务必对 Qg 与 Ciss 提供充分的驱动能力与热设计。

总结:2N7002WT1G-VB 是一颗面向小功率控制与逻辑接口的实用型 N 沟道 MOSFET,适合体积受限且电流要求不高的场景。在设计时需重点关注栅极驱动、热管理与实际导通电阻随栅压变化的影响。若需进一步详图、引脚及典型特性曲线,请参阅厂商完整数据手册。

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