WMSIC Electronic Components

DOWO SS34

ModelSS34
PackageSMB
BrandDOWO
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
DOWO SS34
Type
DOWO
Minimum package
3000 编带

Technical parameters

Electronic Component
Electronic Component
Electronic Component
DOWO
Electronic Component
SS34
Electronic Component
1
Package
SMB
Electronic Component
Schottky Diode
Electronic Component
0.43g
Electronic Component
1
Electronic Component
BM0228536746
Current
3A
Diode
Electronic Component
Current(Ir)
100uA@40V
(Vf)
550mV@3A
Electronic Component
55℃~+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.

SS34 (DOWO 东沃) 肖特基二极管 — 产品概述

一、产品简介

SS34 是一种独立式肖特基整流二极管,由 DOWO(东沃)生产,封装为 SMB(DO-214AA)。该器件专为中功率整流与保护用途设计,具有低正向压降、快速响应和良好的温度稳定性,适用于各种电源及保护电路中。典型电气参数包括正向压降 0.55V(在 3A 条件下)、直流反向耐压 40V、整流电流 3A,以及非重复峰值浪涌电流 70A。

主要规格一览

  • 型号:SS34(DOWO/东沃)
  • 封装:SMB(独立式)
  • 正向压降:Vf = 0.55V @ 3A
  • 直流反向耐压:Vr = 40V
  • 连续整流电流:I_F(AV) = 3A
  • 反向漏电流:I_R = 100µA @ 40V
  • 非重复峰值浪涌电流:I_FSM = 70A
  • 工作结温范围:-55℃ ~ +150℃

二、主要特点与优势

  • 低正向压降:Vf ≈ 0.55V(3A)可显著降低导通损耗,在高电流场合可减少发热与能量浪费,提高系统效率。
  • 快速整流响应:肖特基结构使反向恢复时间极短,适合开关电源与高频整流场合,降低开关损耗与电磁干扰。
  • 良好的浪涌承受能力:70A 的非重复峰值浪涌电流能力,可应对短时启动冲击或浪涌事件。
  • 宽温度范围:-55℃ 至 +150℃ 的结温范围,满足工业级及一些苛刻环境的可靠性要求。
  • SMB 封装:具有较好的散热面与焊盘面积,方便 PCB 热管理与自动贴装。

三、典型应用场景

  • 开关电源(SMPS)输入/输出整流与回收二极管。
  • DC-DC 转换器的自由轮回路或肖特基整流环节。
  • 电池充放电保护、电源管理与电压反接(极性保护)电路。
  • 车载电子、通讯设备、工业控制电源、LED 驱动器等对效率和瞬时浪涌有要求的场合(注意系统最大电压不得超过 40V)。
  • 瞬态抑制与续流路径中作为快速恢复元件。

四、设计与布局建议

  • 散热设计:尽管 SMB 封装具备一定散热能力,但在连续 3A 工作或频繁脉冲场合,应在 PCB 上为二极管铺设较大铜箔、通过热铜通孔与散热层传导热量,以降低结温并延长器件寿命。
  • 电流与功耗计算:在 3A 工作电流下,器件功耗约为 P = Vf × I ≈ 0.55V × 3A = 1.65W,需确保 PCB 热阻能将结温控制在允许范围内。
  • 反向漏电随温度升高增加:在高温条件下反向漏电流会显著上升,设计时需考虑到可能的静态功耗或对电路性能的影响。
  • 浪涌与保护:I_FSM 为非重复峰值浪涌能力,仅用于瞬态事件;若系统常出现较大浪涌或重复浪涌,应增加限流电路或选择更高浪涌等级的器件。
  • 焊接与可靠性:遵循标准的 SMB 焊接工艺与回流曲线,避免超过器件的最高结温。器件在 PCB 装配后应做良好机械固定与应力释放,减少热循环造成的应力损伤。

五、可靠性与注意事项

  • 器件在高温、高湿或强振动环境下使用时,应做充分的可靠性验证与加速老化测试。
  • 反向耐压限制为 40V,任何瞬态或长期工况不得超过此数值,否则会引起击穿或漏电增大。推荐在实际系统中加入合适的瞬态抑制元件或滤波器以防止过电压。
  • 对于汽车或更高安全等级应用,应参考相关标准并考虑元器件的汽车级认证替代型号。

六、封装与订购信息

  • 封装形式:SMB(独立式二极管)适用于手工焊接与贴片自动化生产。
  • 包装:通常以卷带(Tape & Reel)或散装形式供货,具体包装可在采购时与供应商确认。
  • 型号与品牌:SS34,制造商 DOWO(东沃)。订购时请确认完整型号与批次以获取相应的质量与追溯记录。

总结:SS34(DOWO)肖特基二极管以其低正向压降、快速响应与可靠的浪涌能力,适合用于中功率整流与保护场合。合理的 PCB 热管理与对反向漏电与电压极限的防护设计,是确保器件长期稳定工作的关键。若需用于高温或高可靠性应用,建议结合具体应用条件进行详细的热与寿命评估。

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