WMSIC Electronic Components

MDD SMAJ64A

ModelSMAJ64A
PackageSMA/DO-214AC
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 25+

Available for RFQ

Technical data

Product details

19 specifications

Core information

Product name
MDD SMAJ64A
Type
MDD
Minimum package
5000 圆盘

Technical parameters

Electronic Component
Electronic Component
Electronic Component
MDD
Electronic Component
SMAJ64A
Electronic Component
1
Package
SMA/DO-214AC
Type
TVS
Electronic Component
ESD and Surge Protection (TVS / ESD)
Electronic Component
0.094g
Electronic Component
1
Electronic Component
BM0264463821
Operating Temperature
65℃~+150℃
Voltage
103V
Current(Ir)
1uA
Voltage(VBR)
78.6V
Electronic Component
Electronic Component
Electronic Component
5000

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

SMAJ64A(MDD)TVS瞬态抑制二极管——产品概述

一、产品简介

SMAJ64A 是 MDD 品牌的一款瞬态电压抑制(TVS)二极管,采用 SMA/DO-214AC 封装,专为静电放电(ESD)和浪涌(Surge)保护设计。该型号在正常工作电压较高的电源轨或信号线上提供快速钳位与能量吸收能力,可在外部干扰或瞬态能量注入时保护下游敏感元件不被损坏。

主要特性(概要):

  • 反向截止电压 Vrwm:64 V
  • 钳位电压 Vclamp:103 V(峰值条件下)
  • 峰值脉冲电流 Ipp:3.9 A
  • 峰值脉冲功率 Ppp:400 W
  • 击穿电压 VBR:78.6 V
  • 反向电流 Ir:1 μA(在 Vrwm 条件下)
  • 工作温度:-65 ℃ 至 +150 ℃
  • 封装:SMA(DO-214AC)

二、电气参数要点

  • Vrwm = 64 V:适合保护约 48 V 及更高电压等级的直流母线或信号线,通常用于需要比 60 V 更高耐压的场合。
  • VBR = 78.6 V:器件进入雪崩导通的典型击穿电压,保证在 Vrwm 之上实现可靠导通以吸收能量。
  • Vclamp = 103 V:在承受峰值脉冲电流(Ipp)时的典型钳位电压,用于评估被保护电路能否承受被钳位后的剩余电压应力。
  • Ipp = 3.9 A 与 Ppp = 400 W:表明器件对单次脉冲能量的吸收能力;实际能量吸收取决于脉冲波形、持续时间与重复性的条件,使用时须参考完整数据手册中的测试条件。

三、封装与环境适应性

  • 封装:SMA/DO-214AC,适合波峰/回流焊装配,体积小、散热路径短,便于高密度 PCB 布局。
  • 温度范围:-65 ℃ 至 +150 ℃,可用于工业级与恶劣环境下的设计,适合车用周边与户外设备(仍需参照车规认证情况)。
  • 低漏电流:Ir ≈ 1 μA,有利于在高阻电路或要求长期保持低待机消耗的系统中使用。

四、典型应用场景

  • 电源输入与分配:48 V 通信电源、PoE 前端、工控 48 V 总线保护。
  • 通信与接口保护:以太网、串行链路及高压信号线的瞬态防护。
  • 工业与新能源:逆变器、驱动器、采集模块等对高压浪涌敏感的设备。
  • 消费与车载辅件(视认证):对存在高能瞬态或雷击浪涌风险的外围模块进行保护。

五、选型与使用建议

  • Vrwm 选择:工作电压应低于 Vrwm,通常选择 Vrwm 比实际工作电压高 10% 左右以保证安全裕量;SMAJ64A 适合 48 V 及类似等级系统。
  • 钳位评估:根据被保护器件的最大耐压,确认 Vclamp 在脉冲工况下不会超过下游元件允许值。
  • 能量与重复性:Ppp 与 Ipp 说明单次脉冲能力;若存在高频重复冲击或长脉冲,需选择更高能量等级或并联、串联阻抗匹配方案。
  • 布局建议:靠近被保护引脚放置 TVS、最短走线至受保护端并增加足够的散热铜箔;避免在敏感高速信号线上串入额外电感。

六、焊接、可靠性与测试注意

  • 焊接工艺:遵循封装的回流焊温度曲线;避免长时间过高温度以免影响器件特性。
  • 测试条件核对:Ppp、Vclamp、Ipp 等参数通常在特定波形(例如 10/1000 μs 或 8/20 μs)下测得,选型时务必核对供应商数据手册中的测试波形与测量标准。
  • 寿命与热管理:长期承受脉冲会产生热累积,建议在高能量环境下进行热仿真并预留散热方案。

七、订购与验证建议

  • 型号与品牌:MDD SMAJ64A,封装 SMA/DO-214AC。下单前请确认是否为单向或双向型号(若电路需要双向保护,请选相应型号或参阅数据表)。
  • 验证流程:样机阶段进行实测验证,包括耐冲击、ESD、浪涌和在目标系统中的钳位测试;在批量生产前完成可靠性与温度循环测试。
  • 资料查阅:最终设计采用前务必查阅并保留 MDD 官方数据手册及检验报告,确认所有极限与典型参数的测试条件。

总结:SMAJ64A 为中高电压轨道提供了一种体积小、温度适应范围宽且具有良好脉冲吸收能力的 TVS 保护方案,特别适合 48 V 类电源及其他需要 64 V 级保护的应用。选型时需综合钳位电压、脉冲能量与实际系统耐压来确保整体保护可靠性。

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.