WMSIC Electronic Components

SILAN SVF6N60D

ModelSVF6N60D
PackageTO-252-2(DPAK)
BrandSILAN
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
SILAN SVF6N60D
Type
SILAN
Minimum package
2500 圆盘

Technical parameters

Electronic Component
Electronic Component
Electronic Component
SILAN
Electronic Component
SVF6N60D
Electronic Component
1
Package
TO-252-2(DPAK)
Electronic Component
1 N
Type
N
Electronic Component
MOSFET
Electronic Component
0.468g
Electronic Component
1
Electronic Component
BM0231129540
Operating Temperature
55℃~+150℃
Power Dissipation(Pd)
125W
Electronic Component
Electronic Component
Electronic Component
2500
Voltage(Vdss)
600V

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

SVF6N60D 产品概述

一、产品简介

SVF6N60D 是士兰微(SILAN)推出的一款 600V 额定电压的 N 沟道功率 MOSFET,封装为 TO-252-2(DPAK)。器件适用于中高压开关场合,单片规格便于 PCB 表面贴装与散热处理,常用于开关电源、高压变换与工业电源等场景。

二、主要参数(关键指标)

  • 类型:N 沟道 MOSFET
  • 漏源耐压 (Vdss):600 V
  • 连续漏极电流 (Id):6 A
  • 导通电阻 RDS(on):1.35 Ω @ Vgs=10 V
  • 阈值电压 Vgs(th):4.0 V @ Id=250 µA
  • 总耗散功率 Pd:125 W(额定条件见器件手册)
  • 栅极电荷 Qg:13.32 nC @ Vgs=10 V
  • 输入电容 Ciss:690.7 pF
  • 输出电容 Coss:83.6 pF
  • 反向传输电容 Crss(Miller):2.7 pF
  • 工作温度:-55 ℃ ~ +150 ℃
  • 封装:TO-252-2 (DPAK)
  • 数量:1 个 N 沟道

三、主要特性与优势

  • 高电压耐受:600V 额定适合高压侧开关,能承受较大直流母线电压或脉冲过压。
  • 适中栅极电荷与输入电容:Qg=13.32nC 与 Ciss≈691pF,开关速度和栅驱负荷处于中等水平,便于用常规栅极驱动器控制。
  • 封装便于散热与装配:DPAK 适合表贴工艺,并可通过铜箔和散热器进行热管理。
  • 工作温度范围宽,适应工业环境。

四、典型应用场景

  • 开关电源(SMPS)高压开关或次级同步整流(视电流需求)
  • 有源 PFC 与高压整流电路的开关管
  • LED 驱动与电子镇流器(高压侧)
  • 工业电源、适配器与某些逆变器拓扑(需评估导通损耗)

五、驱动与开关特性建议

  • 推荐栅极驱动电压以 10V 为参考(器件数据基于 10V 测试),但请严格参照产品手册中的 Vgs 最大值范围,避免过压。
  • 由于 RDS(on)≈1.35Ω 在高电流时导通损耗较大(Pcon≈I²·R),若工作电流较大应评估开关/导通损耗与散热能力。
  • Qg 与 Ciss 表明在高频率开关时栅极驱动功率不可忽视,应选用能提供足够瞬时电流的驱动器并适当配置栅阻。

六、热设计与封装注意

  • 虽标称 Pd=125W,但实际可用耗散受封装、PCB 铜面积、散热器与环境温度影响。DPAK 需通过加大散热铜箔、焊接到散热片或并联使用来提升热能力。
  • 设计 PCB 时建议在漏极/散热焊盘处布充足的铜箔,使用过孔导热至另一面或底层散热层。

七、选型与使用注意事项

  • 若电路工作电流较高,建议比较低 RDS(on) 的同类 600V 器件以降低导通损耗;本器件更适合中低电流或偏重耐压的用途。
  • 在实际设计中应参考完整数据手册中的安全操作区(SOA)、浪涌电流、热阻以及反向恢复等参数,评估可靠性与寿命。
  • 注意 ESD 与栅极过压保护,必要时并联 TVS 或 RC 缓冲并加入合适的栅极电阻。

八、总结

SVF6N60D 是一款面向中高压应用的 N 沟道 MOSFET,600V 耐压与中等栅极电荷特性使其在高压开关场合具有应用价值。设计时需重点关注导通损耗与热管理,合理选择栅极驱动与 PCB 散热方案,方能发挥器件性能并保证长期可靠性。欲获得更详细的绝对最大额定值、典型开关波形和 SOA,请参阅厂方完整数据手册。

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