WMSIC Electronic Components

FUXINSEMI FDN337N

ModelFDN337N
PackageSOT-23
BrandFUXINSEMI
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
FUXINSEMI FDN337N
Type
FUXINSEMI
Minimum package
3000 圆盘

Technical parameters

Electronic Component
Electronic Component
Electronic Component
FUXINSEMI
Electronic Component
FDN337N
Electronic Component
1
Package
SOT-23
Electronic Component
1 N
Type
N
Electronic Component
MOSFET
Electronic Component
0.033g
Electronic Component
1
Electronic Component
BM0227636306
Operating Temperature
55℃~+150℃
Power Dissipation(Pd)
500mW
Electronic Component
Electronic Component
Electronic Component
3000
Voltage(Vdss)
30V

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

FDN337N 产品概述

FDN337N 是富芯森美(FUXINSEMI)推出的一款小功率 N 沟道场效应管(MOSFET),采用 SOT-23 小封装,适合便携和板载功率开关应用。器件额定 Vdss = 30V,连续漏极电流 Id = 2.2A,导通电阻 RDS(on) = 65mΩ(Vgs = 4.5V),功耗额定 Pd = 500mW,阈值电压 Vgs(th) = 1.3V(Ibias = 250µA),输入电容 Ciss ≈ 300pF(Vds = 10V),允许结温范围 -55℃ 至 +150℃(Tj)。

一、主要参数一览

  • 类型:N 沟道 MOSFET(场效应管)
  • 封装:SOT-23(单片,1 只)
  • 漏源电压 Vdss:30V
  • 连续漏极电流 Id:2.2A
  • 导通电阻 RDS(on):65mΩ @ Vgs = 4.5V
  • 最大耗散功率 Pd:500mW(封装与 PCB 散热相关)
  • 阈值电压 Vgs(th):1.3V @ Id = 250µA
  • 输入电容 Ciss:≈300pF @ 10V
  • 工作结温:-55℃ ~ +150℃(Tj)

二、器件特性与亮点

  • 低 RDS(on):65mΩ 在 4.5V 驱动下能保证较低导通损耗,适用于 5V 或更高门极驱动场景。
  • 小体积封装:SOT-23 占板面积小,适合便携式和空间受限电路。
  • 低栅电容:Ciss ≈ 300pF,有利于快速开关和降低驱动能耗。
  • 容错与宽温度范围:允许工业级温度,适合多种工作环境。

三、应用场景

  • 低压直流功率开关(负载开关、灯驱动)
  • 电源管理:倒灌防护、低侧开关、升降压控制半桥(小功率)
  • 便携设备的电源分配与信号隔离
  • 小电流电机或继电器驱动(需注意热设计)

四、热设计与使用注意

  • 虽然 Id 标称可达 2.2A,但 SOT-23 的 Pd 仅 500mW,实际连续电流受 PCB 温升和散热影响较大。举例:导通损耗 Pcond = RDS(on) × I^2;在 I = 2.2A 时,Pcond ≈ 0.065 × 2.2^2 ≈ 315mW,接近 Pd 的一半,留给开关损耗与环境散热的余量有限。
  • 推荐在 PCB 上提供更大铜箔面积或散热铜层以降低结-环境热阻(RθJA),并参考实际 RθJA 数据计算允许的持续功率与电流。
  • 若在 3.3V 门极下驱动,RDS(on) 可能显著上升(厂方给出的参数通常以 4.5V 为准),关键应用建议验证实际损耗。

五、开关驱动与布局建议

  • 建议使用小阻值门极电阻(典型 10Ω~100Ω)抑制振铃并控制 dv/dt。
  • 根据 Ciss(≈300pF),估算驱动时间常数 τ = Rg × Ciss,例如 Rg = 100Ω 时 τ ≈ 30ns,表明器件适合高速开关。
  • 布局要点:门、源、漏引脚走线短且粗,靠近 MOSFET 放置去耦电容(输入侧 0.1µF~10µF),减少寄生电感,保证可靠开关与 EMI 表现。
  • 在感性负载或存在反向瞬变时,建议配合采取顺向二极管、TVS 或吸收网络保护。

六、封装与可靠性

  • SOT-23 封装适合自动贴片与回流焊工艺。
  • 对焊接工艺、回流曲线及洗板工序应遵循富芯森美提供的封装与焊接指南,以保证长期可靠性。

结语:FDN337N 在体积与性能间提供良好平衡,适合低至中等功率的开关场合。设计时应重视热管理与门极驱动电平匹配,实测验证能确保长期稳定运行。若需更详细的热参数与 SOA 数据,请参考厂家完整数据手册或咨询富芯森美技术支持。

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