WMSIC Electronic Components

MICROCHIP MIC4680YM-TR MIC4680YM

ModelMIC4680YM-TR
PackageSOIC-8
BrandMICROCHIP
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 23+

Available for RFQ

Technical data

Product details

19 specifications

Core information

Product name
MICROCHIP MIC4680YM-TR
Type
MICROCHIP
Minimum package
2500 个

Technical parameters

Electronic Component
Electronic Component
Electronic Component
MICROCHIP
Electronic Component
MIC4680YM-TR
Electronic Component
1
Package
SOIC-8
Electronic Component
DC-DC Power Supply IC
Electronic Component
0.169g
Electronic Component
1
Type
Electronic Component
Synchronous
Electronic Component
Electronic Component
BM0230006386
Operating Temperature
40℃~+125℃
Operating Voltage
4V~34V
Switching Frequency
200kHz
Electronic Component
Electronic Component
Output Current
1.3A

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

MIC4680YM-TR 产品概述

一、产品简介

MIC4680YM-TR 是来自 MICROCHIP(美国微芯)的一款降压型(Buck)DC-DC 转换器芯片,采用 SOIC-8 封装,内置开关管,支持可调和固定输出。其输入电压范围宽(4V~34V),输出电压可调范围 1.23V~32.98V,最大输出电流约 1.3A,开关频率约 200kHz,工作温度范围为 -40℃~+125℃。该器件适合车载、工业和通信等对输入电压范围和可靠性有较高要求的应用场合。

二、主要特点

  • 宽输入电压:4V 至 34V,适应多种电源环境(包括汽车 12V/24V 系统)。
  • 输出可调范围大:1.23V 至 32.98V(可通过外部反馈网络设定)。
  • 最大输出电流 1.3A,适用于中小功率点对点供电。
  • 开关频率约 200kHz,在效率与器件尺寸之间有良好折中。
  • 单通道降压拓扑,内置开关晶体管,简化外部器件选择与 PCB 布局。
  • 封装:SOIC-8,利于常规 SMT 组装与散热处理。

三、电气参数与工作范围(概要)

  • 功能类型:降压型(Buck)
  • 输入电压:4V ~ 34V
  • 输出电压:1.23V ~ 32.98V(可调)
  • 输出电流:最大 1.3A
  • 开关频率:约 200kHz
  • 同步整流:否(为异步降压,需外接整流二极管)
  • 工作温度:-40℃ ~ +125℃

四、设计与选型建议

  • 输出电压设定:典型反馈参考电压为 1.23V,可采用常用公式 Vout = Vref × (1 + R2/R1) 选择反馈电阻。
  • 电感选型:依据最大输入电压、开关频率与期望电流纹波选取 L,实现合理的电流纹波(通常 20%~40% 的峰值电流纹波)。电感电流额定值应高于最大负载电流加上纹波一半,且具备低直流电阻以提高效率。
  • 整流二极管:由于为异步拓扑,需外接肖特基二极管,建议其反向耐压不低于最大输入电压,平均电流大于输出电流并关注低正向压降以降低损耗。
  • 输入/输出电容:低 ESR 的陶瓷或固态电解电容用于降低纹波与吸收开关尖峰,输入端电容应尽量靠近芯片 VIN 与 GND 引脚布局。

五、热管理与封装注意

SOIC-8 封装对散热有限,设计时需关注功耗与热阻。建议:

  • 在 PCB 上使用大面积铜箔作为散热区并增加若干过孔通至底层散热层。
  • 保持高电流回路短且宽,减少寄生阻抗与额外发热。
  • 在高功耗或高环境温度条件下考虑降额使用或加装散热片。

六、典型应用场景

  • 汽车电子(车载辅助电源、模块供电)
  • 工业控制(传感器电源、驱动电源)
  • 通信设备(局部电源、基板电源)
  • 一般嵌入式系统的中低功率稳压需求

七、布局与外围器件布局要点

  • 将 VIN 输入电容靠近芯片 VIN 引脚布置;将整流二极管与输出电容靠近开关节点。
  • 形成最短的开关回路(开关管、二极管、输出电容),减小 EMI 与开关损耗。
  • 保持反馈网络与 AGND 的良好参考地,尽量避免回路经过高电流路径。

总结:MIC4680YM-TR 提供了宽输入电压与较宽输出调节范围的降压解决方案,适合需兼顾输入适应性与中等输出功率的场合。具体参数与典型应用电路请以厂商数据手册为准,设计时注意整流二极管、功率元件及散热布局以确保稳定可靠运行。

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