WMSIC Electronic Components

MDD SOD1F7

ModelSOD1F7
PackageSOD-123
BrandMDD
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
MDD SOD1F7
Type
MDD
Minimum package
3000 圆盘

Technical parameters

Electronic Component
Electronic Component
Electronic Component
MDD
Electronic Component
SOD1F7
Electronic Component
1
Package
SOD-123
Electronic Component
Fast Recovery / High-Efficiency Diode
Electronic Component
0.035g
Electronic Component
1
Electronic Component
BM0229465211
Current
1A
Diode
1
Current(Ir)
5uA@1kV
(Vf)
1.3V@1A
Electronic Component
50℃~+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.

SOD1F7 — MDD 快恢复高效率二极管(SOD-123 封装)产品概述

一、产品简介

SOD1F7 是 MDD 推出的一款独立式快恢复二极管,采用紧凑的 SOD-123 表面贴装封装,面向高压整流与开关电源保护应用。器件在 1A 工作电流下具有较低的正向压降(Vf≈1.3V),同时具备高达 1kV 的直流反向耐压,适合高压整流、反向保护及电源二次侧整流场景。

二、主要参数(典型/关键)

  • 型号:SOD1F7;品牌:MDD;封装:SOD-123(SOD-123 常规极性标记:阴极带)
  • 正向压降 Vf:1.3V @ IF = 1A(典型)
  • 直流反向耐压 Vr:1kV(最大反向电压)
  • 额定整流电流 IF(AV):1A(连续)
  • 反向漏电流 Ir:≤5 µA @ Vr = 1kV(典型);规格书最大值可至 10 µA,请以最终数据手册为准
  • 反向恢复时间 Trr:约 500 ns(快恢复特性)
  • 非重复峰值浪涌电流 Ifsm:30A(单次浪涌能力)
  • 工作结温范围 Tj:-50 ℃ 至 +150 ℃

三、器件优势

  1. 高压耐受:1kV 的反向耐压使其适用于高压整流和高压保护场合。
  2. 低正向压降:1.3V@1A 的 Vf 有助于降低整流损耗,提高系统效率。
  3. 快恢复特性:Trr ≈ 500ns,适合中等开关频率的开关电源与整流应用,相比普通恢复二极管能减少开关损耗和应力。
  4. 小型封装:SOD-123 适合表面贴装,体积小、布板灵活,利于密集 PCB 布局。
  5. 合理的冲击能力:30A 的单次浪涌能力能承受启动或短时浪涌电流。

四、典型应用场景

  • 开关电源(SMPS)的续流/整流二极管(中低频率)
  • 反激/正激变换器二次侧整流
  • 充电器、适配器、高压电源模块
  • 太阳能逆变器、工业电源的高压整流与保护电路
  • 感性负载的自由轮回二极管(需关注反向恢复引起的 EMI)

五、使用与电路设计建议

  1. 频率与恢复:Trr≈500ns 表明在高频(数百 kHz 以上)应用时开关损耗和电磁干扰会增加,如要求更低开关损耗或更软的恢复特性,建议评估超快恢复或肖特基替代品。
  2. 热管理:SOD-123 封装散热受限,连续 1A 工作时需在 PCB 上设计适当的铜箔散热(热过孔或较大铜面积)并留意环境温度;高结温下正向压降会增加。
  3. 漏电流与温度:反向漏电流随温度显著上升,高温工况下需考虑泄漏对系统影响并作相应降额。
  4. 浪涌保护:Ifsm=30A 能承受短时浪涌,但对于频繁或更高能量浪涌应使用更大等级或并联器件,并考虑合适的热升降额设计。
  5. 限制尖峰:在高 dv/dt 场合,快恢复二极管的恢复电流可能产生尖峰,应配合 RC 缓冲或阻尼网络减少应力与 EMI。

六、封装与焊接注意事项

  • SOD-123 表面贴装,阴极通常有标识带,装配时注意极性。
  • 建议按制造商推荐的回流焊曲线进行焊接,避免长时间超过最高结温 150 ℃。
  • 焊盘设计需保证足够的散热铜面积,并考虑回流后的焊点可靠性。

七、选型与替代建议

  • 若目标应用为高频(>200 kHz)且对效率/EMI 要求高,考虑使用肖特基或超快恢复(Trr<100ns)器件替代。
  • 若对反向漏电流有严格要求,应优先参考最新规格书中的最大 Ir 值,并在高温条件下进行实测验证。
  • 在需要更高电流承受能力时,选择更大封装或并联使用,并注意电流共享与热均衡。

总结:SOD1F7(MDD,SOD-123)是一款面向高压整流和中等频率开关场合的快恢复二极管,兼顾了 1kV 耐压与较低 Vf 的能效表现,适合体积受限且需高压能力的电源与保护电路。选型时请以最新的厂商数据手册为准,并根据工作频率与散热条件做相应的电路和热设计。

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