WMSIC Electronic Components

ON MMBD1204

ModelMMBD1204
PackageSOT-23
BrandON
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

20 specifications

Core information

Product name
ON MMBD1204
Type
ON
Unit
Electronic Component
Minimum package
3000 圆盘

Technical parameters

Electronic Component
Electronic Component
Electronic Component
Electronic Component
Electronic Component
ON
Electronic Component
MMBD1204
Electronic Component
1
Package
SOT-23
Electronic Component
General Purpose Diode
Electronic Component
0.03g
Electronic Component
1
Electronic Component
BM0227715755
Current
200mA
Diode
1
Current(Ir)
50nA@50V
(Vf)
1.1V@300mA
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.

MMBD1204 产品概述

一、简介

MMBD1204 是 ON(安森美)出品的一款通用双二极管器件,内部为一对共阴极配置(common‑cathode),采用小体积 SOT‑23 表贴封装。该器件针对通用整流、开关、保护和电源合路等应用进行了优化,具备较低的反向漏流和中等电流能力,适合空间受限且需要可靠整流/保护功能的电子系统。

二、主要参数一览

  • 配置:1 对共阴极(双二极管,共阴脚)
  • 正向电流(整流电流):200 mA(直流)
  • 测试正向电压:Vf = 1.1 V @ If = 300 mA
  • 非重复峰值浪涌电流(Ifsm):2 A
  • 反向耐压(Vr):100 V
  • 反向电流(Ir):50 nA @ Vr = 50 V(典型或上限条件)
  • 封装:SOT‑23(表面贴装,三引脚)

这些参数表明 MMBD1204 在中低功率整流与保护场景中具有良好平衡:较高的反向耐压配合较低的反向漏流,使其在高阻抗或高压侧保护应用中更为可靠;同时 200 mA 的整流能力适合信号与小电流电源路径。

三、封装与电气连接(使用提示)

  • SOT‑23 小型封装适合高密度 PCB 设计并支持常见的回流焊工艺。
  • 器件标识与引脚排列以厂商数据手册为准。在 PCB 布局时,应参考 ON 的封装图和推荐焊盘尺寸,保证良好的焊接质量与热散能力。
  • 作为共阴极器件,通常将共阴脚接到较低阻抗点(如地或电源负端),两个阳极分别用于不同通路的整流/防反向保护。具体连接请依据实际电路需求与数据手册引脚定义。

四、典型应用场景

  • 电源输入整流与电源合路(ORing)——在多电源切换或冗余供电中,用作防逆流与整流。
  • 反向极性保护——在敏感模块输入端防止接反短路损伤。
  • 信号方向控制与电平保护——用于逻辑/模拟信号线路的定向、夹位与钳位。
  • 小功率电源和充电电路——在 USB、便携设备等场景中,用于电流路由与过流浪涌缓冲。
  • 通用开关整流、脉冲保护电路。

五、设计与使用建议

  • 额定电流与散热:尽管整流电流为 200 mA,但在连续工作、较高环境温度或靠近其它热源时应进行降额使用。SOT‑23 的散热能力有限,必要时布局增加铜箔散热区或把电流限制在更安全范围内。
  • 浪涌管理:Ifsm=2 A 表示短时浪涌能力有限,若电路存在频繁或较大浪涌(例如电容充电瞬间或反复插拔),应增加限流器件或选用更高浪涌能力的器件。
  • 反向漏流与温度:反向电流随温度上升显著增加。在高温环境下,须考虑 Ir 的上升对电路偏置或待机功耗的影响。
  • 并联与反向并用:若需更高电流,可并联多只器件,但需注意正向电压匹配与电流均流问题;并联时通常需串联小电阻或采用热敏匹配技术。
  • 与肖特基二极管的选择:若系统对正向压降极为敏感(例如低压供电或高效率要求),可考虑肖特基二极管以获得更低的 Vf;但肖特基通常反向耐压和温度特性不同,需权衡选择。

六、可靠性与制造注意

  • 焊接工艺:推荐按 J‑STD‑020 回流曲线进行回流焊,避免过高的峰值温度和重复热循环,以保护 SOT‑23 封装及内部焊点。
  • 防静电:器件对 ESD 有一定敏感性,建议在装配和测试过程中采取静电防护措施。
  • 存储与回流后检测:遵循厂商关于防潮包装(MSL)与回流次数的说明,防止焊接缺陷和内部裂纹。

七、选型与替代建议

  • 若需更高整流电流或更强浪涌能力,考虑功率二极管或更大封装(SOD‑123、DO‑214 等)。
  • 若对 Vf 有严格要求,考虑肖特基二极管以降低导通损耗;若需要更低 Ir 或更高 Vr,可挑选具有相应优化工艺的型号。
  • 最终选型建议以系统电压、电流、温度和浪涌特性为依据,并参考 ON 官方数据手册与应用说明。

总结:MMBD1204 在 SOT‑23 小封装内提供了高达 100 V 的反向耐压、低漏流和 200 mA 的整流能力,适合中低功率的保护与整流用途。合理的热管理与浪涌控制能显著提升器件在实际应用中的可靠性与寿命。若需更详细的电气特性、引脚图与典型波形,建议参考 ON 的原厂数据手册。

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