WMSIC Electronic Components

ON MMBD1403

ModelMMBD1403
PackageSOT-23-3
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 26+

Available for RFQ

Technical data

Product details

19 specifications

Core information

Product name
ON MMBD1403
Type
ON
Minimum package
3000 圆盘

Technical parameters

Electronic Component
Electronic Component
Electronic Component
ON
Electronic Component
MMBD1403
Electronic Component
1
Package
SOT-23-3
Electronic Component
General Purpose Diode
Electronic Component
0.033g
Electronic Component
1
Electronic Component
BM0058432054
Current
200mA
Diode
1
Current(Ir)
100nA@175V
(Vf)
1.1V@300mA
Electronic Component
Electronic Component
Electronic Component
3000
Voltage Rating(Vr)
200V

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

MMBD1403 产品概述

一、产品简介

MMBD1403 是安森美(ON Semiconductor)推出的一款表面贴装二极管阵列,采用 SOT-23-3(TO-236-3 / SC-59)封装,内部构造为 1 对串联二极管。该器件针对低至中等电流、高电压整流及通用开关用途设计,在体积受限的便携和消费类电子中可替代传统单个大封装整流器,满足对空间、耐压与低泄漏的综合要求。

二、主要参数

  • 二极管配置:1 对串联(两只二极管串联封装为一阵列)
  • 正向压降(Vf):1.1 V @ 300 mA
  • 直流反向耐压(Vr):200 V
  • 额定整流电流(Io):200 mA(直流)
  • 反向漏电流(Ir):100 nA @ 175 V
  • 非重复峰值浪涌电流(Ifsm):2 A(单次峰值)
  • 封装:SOT-23-3(TO-236-3, SC-59)

以上参数反映了 MMBD1403 在高耐压与低漏电、适中导通损耗方面的均衡特性,适合小功率高压整流与保护用途。

三、封装与引脚说明

SOT-23-3 小型 SMD 封装便于在高密度 PCB 上布局。三引脚布局一般对应两只串联二极管的端点与公共节点(其中一个引脚为中间节点)。该封装有利于节省 PCB 空间并简化串联电路的布线。实际引脚分配请以安森美官方封装图为准,设计时注意留出足够焊盘并遵循厂商推荐的焊盘尺寸及回流焊工艺。

四、特性与优点

  • 高耐压:200 V 反向耐压使其可在较高电压的整流与保护场合使用。
  • 低漏电:在 175 V 条件下仅约 100 nA 的反向电流,适用于对漏电敏感的线路(如待机电源、计量与仪表)。
  • 中等整流能力:200 mA 连续整流电流适合小功率电源及信号整流需求。
  • 低正向压降:1.1 V @ 300 mA 在相同电流等级下提供不错的导通性能,减小功率损耗。
  • 小型化封装:SOT-23-3 适合紧凑型PCB设计,便于自动化贴装与批量生产。

五、典型应用场景

  • 小功率开关电源辅助整流与极性保护
  • 便携式设备与充电器中的低电流整流
  • 信号隔离、方向控制与开关管保护
  • 工业仪表与传感前端的高压输入保护
  • 节能待机电路中需要低漏电的整流与钳位

六、热设计与可靠性建议

SOT-23-3 为热阻相对较高的小封装,器件连续工作在接近其额定电流时需注意温升与周边散热条件。建议:

  • 在 PCB 设计时扩大焊盘与铜箔面积以改善热散布。
  • 避免长期在高环境温度与高平均功耗下工作,必要时选用散热辅助元件或降低工作电流。
  • 在浪涌可能出现的场合,检查 Ifsm 能否覆盖峰值能量并考虑串联保护或限流措施。

七、典型电路与使用注意事项

  • 串联配置在提高耐压与分压控制方面有优势,但使用时应确认电流分配与压降需求。
  • 对于极性保护,可将串联二极管置于电源输入端以阻止反向连接。
  • 在高压侧应用时,参考反向漏电和温度特性以避免误触发或测量误差。
  • 在焊接工艺上,遵循器件的回流温度曲线与湿敏等级规定,避免过热导致性能退化。
  • ESD 与过压保护仍然必要,尤其在工业或变动电源环境下。

八、选型建议与替代参考

若应用需要更高电流或更低正向压降,可考虑功率更大的整流器或肖特基二极管;若更低漏电是重点,则寻找专用于低漏电高压二极管的型号。选型时应综合比较耐压、漏电、正向压降、浪涌能力与封装匹配性,确保在目标应用下的长期可靠性与热稳定性。

总结:MMBD1403 以其 200 V 耐压、低漏电与 SOT-23 小封装的组合,适合对体积、耐压和漏电有综合要求的低功率整流与保护场合。在工程应用中通过合理的热设计与电路保护,可发挥其性能优势。若需具体引脚图、典型波形或更详细的热阻与封装尺寸,请参考安森美官方数据手册。

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