WMSIC Electronic Components

Mingda Micro MD7620A

ModelMD7620A
PackageSOT-23-6L
BrandElectronic Component
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

18 specifications

Core information

Product name
MD7620A
Type
Mingda Micro
Minimum package
3000 圆盘

Technical parameters

Electronic Component
Electronic Component
Electronic Component
Electronic Component
Electronic Component
MD7620A
Electronic Component
1
Package
SOT-23-6L
Electronic Component
Relay / Coil Driver IC
Electronic Component
0.118g
Electronic Component
1
Features
Relay Driver
Electronic Component
BM0264391000
Resistor
8Ω
Operating Temperature
40℃~+85℃
Operating Voltage
5V~40V
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.

MD7620A 产品概述

一、产品简介

MD7620A 是明达微推出的一款双通道磁保持继电器驱动集成电路,专为智能电表等需要低能耗、长寿命的继电器驱动场景设计。器件能够在 5V~40V 宽工作电压范围内稳定工作,支持双向极性驱动以实现磁保持(双稳态)继电器的闭合与断开控制。产品强调高耐压、驱动能力强、静态功耗低以及良好的抗静电性能,可有效提升继电器驱动效率并延长继电器寿命,增强系统可靠性。

二、主要特点

  • 双通道独立驱动:两路输出互相独立,便于控制两组磁保持继电器或同一继电器的两端反向驱动。
  • 宽工作电压:支持 5V~40V,适应多种供电环境。
  • 导通电阻:典型导通电阻约 10Ω,兼顾开关损耗与驱动能力。
  • 低静态功耗:待机电流小,适合低功耗计量类设备。
  • 输入阈值兼容:输入高电平 VIH = 2.1V,输入低电平 VIL = 0.9V,可直接与常见 MCU/逻辑电平接口配合。
  • 工作温度范围:-40℃~+85℃,适应户内外仪表级温度要求。
  • 封装:SOT-23-6L 小尺寸封装,便于表面贴装和空间受限的 PCB 布局。
  • 抗静电能力强,提升现场装配和长期可靠性。

三、电气参数概览

  • 通道数:2(双向继电器驱动)
  • 工作电压范围:5V ~ 40V
  • 导通电阻:10Ω(典型/最大请参见数据手册)
  • 输入阈值:VIH = 2.1V,VIL = 0.9V
  • 工作温度:-40℃ ~ +85℃

(注:上述为主要参数概览,更多动态特性、最大额定值及时序信息请以正式数据手册为准。)

四、封装与引脚

MD7620A 提供 SOT-23-6L 封装,节约 PCB 面积,利于批量制造。典型引脚功能包括 VCC、GND、两路输入(IN1、IN2)以及两路输出对(分别驱动继电器线圈的两个端)。具体引脚排列与封装尺寸请参考厂方数据手册和封装图纸以确保正确布局与焊接工艺。

五、典型应用

  • 智能电表磁保持继电器驱动(主应用场景)
  • 智能抄表终端、远程控制模块中需要低能耗继电器切换的场合
  • 其他需要双向线圈反向脉冲驱动的工业与家电控制系统

六、应用注意事项

  • 继电器线圈的电流、脉冲宽度应根据继电器厂商规格确定,避免长时间过流导致器件过热。
  • 由于线圈存在反向电动势,建议在外部采用合适的抑制元件(如 TVS、RC 吸收或肖特基二极管等)以保护驱动器和延长寿命。
  • 输入引脚不得浮空,建议采用明确的上/下拉电阻以保证确定状态。
  • 在高压瞬态或雷击干扰环境,增加供电旁路电容与输入滤波,提高抗扰能力。
  • 注意功耗与热耗散评估:导通电阻带来的功耗随线圈电流平方增长,必要时需评估 PCB 散热措施或降低平均占空比。

七、典型电路与布局建议

  • 在 VCC 与 GND 之间靠近芯片放置 0.1μF 陶瓷旁路电容,以抑制瞬态电流。
  • 输出至继电器线圈的走线应尽量粗短,减少压降与电磁耦合。
  • 对于每路线圈输出端建议增加 TVS 或吸收网络用于钳位反向脉冲,保护芯片并降低 EMI。
  • 若系统存在长导线或齿轮传感等噪声来源,可在输入端增加小电容与串联电阻形成 RC 低通滤波,避免误触发。

八、可靠性与测试

MD7620A 适用工业级温度,通过常规 ESD、浪涌与温度循环测试可达到计量级应用的可靠性要求。出厂前建议按照系统实际使用条件进行温升测试、传导/辐射 EMI 测试以及继电器寿命循环验证,以确保在目标应用中的长期稳定性。

总结:MD7620A 以其宽电压、低静态功耗和双向驱动能力,针对智能电表及类似计量设备中磁保持继电器驱动需求进行了优化,能够在提高驱动效率的同时降低系统功耗并提升可靠性。具体器件选型、热设计与保护电路应结合实际继电器规格与系统振荡环境综合考量,详细引脚定义与典型应用电路请参照产品数据手册。

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