WMSIC Electronic Components

FOSAN SS34C

ModelSS34C
PackageSMC
BrandFOSAN
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+

Available for RFQ

Technical data

Product details

19 specifications

Core information

Product name
FOSAN SS34C
Type
FOSAN
Minimum package
3000 圆盘

Technical parameters

Electronic Component
Electronic Component
Electronic Component
FOSAN
Electronic Component
SS34C
Electronic Component
1
Package
SMC
Electronic Component
Schottky Diode
Electronic Component
0.35g
Electronic Component
1
Electronic Component
BM0264881610
Current
3A
Diode
1
Current(Ir)
100uA@40V
(Vf)
550mV@3A
Electronic Component
65℃~+150℃
Electronic Component
Electronic Component
Electronic Component
3000

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

SS34C 产品概述

一、产品概述

SS34C 是由 FOSAN(富信)生产的一款高可靠性肖特基整流二极管,采用 SMC 封装,面向中高电流整流与开关电源应用。该器件在 3A 工作电流条件下具有低正向压降(Vf),同时具备较高的冲击承受能力与宽工作结温范围,适用于要求低功耗损耗与快速恢复特性的场合。

二、主要电气参数

  • 型号:SS34C(品牌:FOSAN / 富信)
  • 封装:SMC
  • 额定整流电流(Io):3A
  • 正向压降(Vf):约 550 mV @ 3A
  • 直流反向耐压(Vr):40 V
  • 反向漏电流(Ir):100 μA @ 40 V
  • 非重复峰值浪涌电流(Ifsm):80 A
  • 工作结温范围:-65 ℃ ~ +150 ℃

三、关键性能特点

  • 低正向压降:Vf ≈ 0.55 V(3A),在高电流整流时可显著降低功耗和发热,提升系统效率,特别适合对效率敏感的开关电源和降压转换器。
  • 低反向恢复与快速响应:作为肖特基二极管,具有较快的恢复特性,减小开关损耗和电磁干扰(EMI)。
  • 良好的浪涌承受能力:80A 的非重复峰值浪涌电流能应对短时的启动冲击与负载突变。
  • 宽温度范围:-65 ℃ 至 +150 ℃ 的结温范围适合工业级与严苛温度环境。

四、封装与热性能

  • SMC 封装提供较大的散热表面与更低的热阻,便于在 PCB 上实现被动散热或配合散热铜箔、散热器使用。
  • 推荐在高功率应用中通过加大铜箔面积、增加过孔(thermal vias)或使用散热片来改善热管理,以保证结温在安全范围内并延长寿命。
  • 在设计时应考虑实际工作电流下的 Vf 与结温对功耗的影响,按经验对额定电流进行适当降额(derating)。

五、典型应用场景

  • 开关电源(SMPS)输出整流与同步降压回路
  • DC-DC 转换器、升压/降压模块
  • 电池管理与充放电保护电路
  • 逆向保护(reverse polarity)与电源防护电路
  • 马达驱动及电机控制中的自由轮二极管(freewheeling)
  • 汽车电源(需注意环境与符合车规要求)和工业电源系统

六、设计与选型建议

  • 漏电流随温度快速上升:在高温条件下(特别是靠近结温上限时),Ir 可能显著增加,应评估在 worst-case 环境下的漏电对系统的影响(例如待机损耗或偏置电路)。若系统对漏电敏感,考虑使用更高 Vr 或漏电更低的型号。
  • 电流降额:尽管额定整流电流为 3A,在长时间连续工作、无强制冷却或环境温度较高的情况下,应将允许电流进行适当降额以保证可靠性。
  • 浪涌管理:Ifsm = 80A 能承受短时浪涌,但对于频繁或长时间的浪涌脉冲,应采用软起动、电流限制或更高规格的器件。
  • 反向耐压裕量:工作电压接近 40V 时应留有裕量,避免反向峰值超过 Vr。若存在高压脉冲或瞬态,应在输入端增加抑制元件(TVS、RC 缓冲)。

七、PCB 布局与安装注意事项

  • 尽量缩短高电流回路的导线长度,减小回路电感与寄生阻抗,降低 EMI 与功耗。
  • 在二极管引脚处增加宽铜箔并使用多颗热过孔连通散热层,以提升热传导效果。
  • 将二极管靠近热源或开关器件布置,减少长导线带来的额外压降与发热集中。
  • 按照厂商推荐的回流焊温度曲线进行焊接,避免过高的温度或超长的加热时间导致器件性能退化。

八、可靠性与储存

  • 保持干燥环境与防潮包装,长时间存储前建议遵循厂商的保质期和干燥包装(MSL)要求。
  • 在高湿高温环境中使用时,注意器件的长期漏电与热循环应力对性能的影响,必要时进行环境应力筛选(ESS)或热循环测试。
  • 常规使用中避免多次超额浪涌、超温及机械应力,以延长使用寿命。

总结:FOSAN 的 SS34C(SMC 封装)是一款适用于多种电源管理与保护场合的 3A 40V 肖特基二极管,具有低正向压降、较低漏电及良好的浪涌承受力。选型时应综合考虑工作电流、散热条件、环境温度和反向电压裕量,结合合适的 PCB 布局与热管理措施可获得稳定可靠的长期性能。若需更详细的电性曲线、热阻数据或封装尺寸,请参考厂商的最新数据手册。

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