WMSIC Electronic Components

BORN MMBD4148

ModelMMBD4148
PackageSOT-23
BrandBORN
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
BORN MMBD4148
Type
BORN
Minimum package
3000 未知

Technical parameters

Electronic Component
Electronic Component
Electronic Component
BORN
Electronic Component
MMBD4148
Electronic Component
1
Package
SOT-23
Electronic Component
Switch Diode
Electronic Component
0.032g
Electronic Component
1
Electronic Component
BM0231019417
Current
150mA
Diode
1
Current(Ir)
2.5uA@75V
(Vf)
1.25V@150mA
Power Dissipation(Pd)
350mW
Electronic Component
55℃~+150℃
Electronic Component
Electronic Component

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

MMBD4148 产品概述

一、产品简介

MMBD4148 是一款面向高速开关应用的通用开关二极管,由 BORN(伯恩半导体)提供,采用 SOT-23 小型封装。该器件设计用于在中高电压条件下进行快速切换与整流,适用于空间受限的 PCB 布局和表面贴装工艺。器件在典型工作条件下具有低反向漏流、短反向恢复时间和良好的瞬态浪涌承受能力,适合用于数据通信、开关电源瞬态抑制、逻辑电平隔离等场合。

二、主要性能特点

  • 正向压降低:Vf = 1.25 V @ If = 150 mA,适合中等电流开关与整流场合,降低导通损耗。
  • 低反向漏流:Ir = 2.5 μA @ VR = 75 V,便于在高阻抗或高压条件下保持低待机损耗。
  • 适中耐压能力:直流反向耐压 Vr = 75 V,可用于多数中等电压系统的保护和整流。
  • 快速恢复:反向恢复时间 Trr = 4 ns,适合高速脉冲与开关电路。
  • 小封装:SOT-23,适合表面贴装、体积受限设计。
  • 良好浪涌承受:非重复峰值浪涌电流 Ifsm = 2 A(峰值、非重复),能承受短时冲击电流。
  • 宽工作结温:-55 ℃ 至 +150 ℃,适应工业级温度范围的应用。

三、电气参数一览

  • 正向压降(Vf):1.25 V @ If = 150 mA
  • 直流反向耐压(Vr):75 V
  • 整流电流(If):150 mA(额定连续整流电流)
  • 功率耗散(Pd):350 mW(封装耗散极限,需考虑环境与 PCB 散热条件)
  • 反向电流(Ir):2.5 μA @ 75 V
  • 反向恢复时间(Trr):4 ns
  • 工作结温范围:-55 ℃ ~ +150 ℃
  • 非重复峰值浪涌电流(Ifsm):2 A

注:以上参数为典型或额定参数,实际设计中应参考器件完整数据手册并考虑温度、额定条件、脉冲宽度与频率等影响因素。

四、典型应用场景

  • 高速数字电路中的开关整流与脉冲整形。
  • 信号线钳位、反向保护与浪涌吸收(中等能量)。
  • 开关电源(SMPS)辅助电路中的快速恢复二极管。
  • 通信设备的输入保护和整流场合。
  • 逻辑电平电路中的电平移位与接口保护。

五、封装与热管理建议

  • 封装:SOT-23,有利于自动化贴装与回流焊工艺。
  • 功耗与散热:器件 Pd = 350 mW,为封装极限值。在 If = 150 mA、Vf = 1.25 V 的条件下,瞬时耗散约为 187.5 mW,低于 Pd,但仍应在设计中留有余量。实际电路中建议对持续导通功率进行热计算并适当降额使用(例如降低连续电流或增加 PCB 铜箔面积以改善散热)。
  • 布局要点:尽量缩短器件引线及走线长度,增大器件焊盘的铜面和过孔数量以提高散热;关键走线尽量避开高噪声节点,靠近需要保护或整流的区域放置器件以减少寄生阻抗和感性耦合。
  • 回流焊:遵循厂商给出的温度曲线与工艺参数,避免超温或长时间暴露在高温下影响可靠性。

六、使用注意事项与可靠性

  • 反向电压接近 Vr = 75 V 时,反向漏流会随温度增加显著上升;高温工作环境下应考虑漏流与功耗的升高。
  • 非重复峰值浪涌 Ifsm = 2 A 仅限短时冲击,应避免在频繁或长时间冲击下工作,以防损坏。
  • 高速开关应用中,虽 Trr = 4 ns 能满足大多数需求,但在非常高频或极短脉冲(方向反转极快)场合仍需验证开关损耗与电磁兼容性。
  • 存储与装配时注意静电防护(ESD),并遵循湿敏等级(若有)与焊接前处理建议。

七、选型与替代建议

  • 若系统需要更低正向压降或更高连续电流能力,应选用更大封装或专用肖特基二极管。
  • 若需要更高反向耐压或更低漏流,可选择高压低漏型开关二极管或特殊工艺型号。
  • 在保持功能等同的前提下,MMBD4148 可替代常见的小信号快速二极管,但请务必对热、频率与脉冲条件做等效验证。

总结:MMBD4148(BORN,SOT-23)是一款面向高速开关和中等电压应用的通用开关二极管,结合低漏流、快速恢复和紧凑封装,适用于空间受限的工业与通信电子产品。设计时需重视热管理与脉冲能力,以确保长期可靠性。

Request for quote

Send RFQ

Use the form for single models, category sourcing, and multi-line BOM requirements.

Send your target model and quantity.

Product sourcing intelligence

Model, package, availability, and BOM fit reviewed before quotation.

WMSIC turns product data, package visuals, BOM context, and sourcing signals into practical RFQ notes for buyers.

Electronic component model and package intelligence review on an ESD-safe inspection bench

Model & package intelligence

Model text, package form, tray or reel details, and visual evidence are reviewed together before RFQ feedback.

BOM matching and alternative component comparison workstation with protected IC samples

BOM matching & alternatives

BOM lines are compared by package, parameters, quantity, and workable alternatives for cleaner sourcing decisions.

Electronic component sourcing availability dashboard with ESD-protected samples

Sourcing availability signal

Stock routes, quotation confidence, lead-time notes, and shipment feasibility are checked before sales follow-up.

Buyer sourcing scenarios

Examples of how common component sourcing requests are organized.

Typical RFQ scenarios based on the WMSIC form fields, catalog data, manual review steps, and shipment preparation workflow.

The buyer shares the full part number, package requirement, quantity, destination, and available product photos so the quotation can record the exact version under review.

Package confirmation Typical RFQ workflow

A multi-line BOM is organized into direct sourcing lines, lines that need package clarification, and lines where alternative-part review is permitted.

Mixed BOM triage Typical RFQ workflow

The original manufacturer part number, datasheet revision, application, critical limits, and acceptable changes are collected before possible candidates are discussed.

Obsolete-part review Typical RFQ workflow

Sample quantity, minimum packing, package format, target date, and courier destination are kept together in one RFQ conversation.

Small-batch request Typical RFQ workflow

Package photos, model markings, board context, and the quantity needed for repair help focus the sourcing review on the relevant version.

Repair batch evidence Typical RFQ workflow

When a suffix or package note is incomplete, the response records the open difference and requests buyer confirmation before procurement proceeds.

Model suffix clarification Typical RFQ workflow

Packing format, carton notes, invoice details, courier option, destination, and tracking handoff are coordinated around the confirmed order.

Export handoff Typical RFQ workflow

The request connects the previously used model, current demand, package evidence, target timing, and replenishment sourcing route.

Replenishment inquiry Typical RFQ workflow

Related products

Packaged components ready for RFQ.