WMSIC Electronic Components

TMI TMI3342

ModelTMI3342
PackageSOT-23-6
BrandTMI
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
TMI TMI3342
Type
TMI
Minimum package
3000 圆盘

Technical parameters

Electronic Component
Electronic Component
Electronic Component
TMI
Electronic Component
TMI3342
Electronic Component
1
Package
SOT-23-6
Electronic Component
DC-DC Power Supply IC
Electronic Component
0.065g
Electronic Component
1
Type
Electronic Component
Synchronous
Electronic Component
Electronic Component
BM0227307356
Operating Temperature
40℃~+125℃
Operating Voltage
4.5V~30V
Switching Frequency
370kHz
Electronic Component
Electronic Component
Output Voltage
800mV~30V

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

TMI3342 产品概述

一、产品简介

TMI3342 是拓尔微(TMI)推出的一款降压型同步整流开关稳压器,采用降压拓扑、内置开关管,支持宽输入电压范围 4.5V ~ 30V,输出电压可调 0.8V ~ 30V,最大输出电流 2A。工作开关频率为 370kHz,静态电流(Iq)仅 500µA,工作温度范围 -40℃ ~ +125℃,封装为小型 SOT-23-6,适合体积受限的电源轨设计与各类中低功率系统供电需求。

二、主要性能特点

  • 宽输入电压:4.5V ~ 30V,适用于 5V/12V/24V 等多种电源平台;
  • 可调输出:参考电压 0.8V,外接分压电阻可灵活设定输出电压(0.8V~30V);
  • 输出电流:最高可提供 2A 连续输出电流;
  • 同步整流:内置同步 MOS 管,提高转换效率、降低损耗,无需外接肖特基二极管;
  • 开关频率:370kHz,兼顾外部元件体积与效率;
  • 低静态电流:Iq ≈ 500µA,有利于待机功耗控制;
  • 封装:SOT-23-6,便于小型化并兼顾散热与布板方便;
  • 宽温度范围:-40℃ ~ +125℃,满足工业级应用。

三、典型应用场景

  • 汽车电子子系统(辅助电源、收音机、仪表等);
  • 工业控制与通信设备的局部电源;
  • 智能家居、安防、门禁等嵌入式设备电源;
  • 电池供电系统的降压转换(需注意输入范围与瞬态);
  • 各类单通道 DC-DC 电源模块与参考电源设计。

四、设计要点与实用建议

  • 输出电压设定:使用外部分压电阻 Rtop(连接到 Vout)与 Rbot(接地),满足公式:Vout = Vref × (1 + Rtop/Rbot),其中 Vref = 0.8V。为降低噪声敏感度与漏电影响,分压电阻总阻值建议在几十千欧到几百千欧之间,根据系统需求权衡;
  • 电感选择:因开关频率为 370kHz,建议选择满足 2A 连续电流、直流电阻(DCR)尽可能低且磁饱和电流高于峰值电流的电感。目标电流纹波一般取输出电流的 20%~40%,据此选取电感量;
  • 电容选择:输入、输出建议使用低 ESR 多层陶瓷电容(MLCC),靠近器件 VIN、GND 与 SW 节点布置以抑制纹波与 EMI;输出大电容可减小电压纹波与瞬态响应;
  • 布局要点:将输入电容贴近 VIN 与 GND 引脚,输出电容靠近 SW 与 Vout;将开关节点(SW)短走线且远离敏感模拟或反馈(FB)走线;FB 走线应尽量靠近器件并远离开关噪声源;在 SOT-23-6 板上提供足够的铜面积与散热通道以利于热量扩散;
  • 保护与可靠性:器件常见应用中应关注过流、短路与过温条件(具体保护特性详见产品手册);在高输入或高负载场合,应进行热仿真与实际温升测试。

五、封装与热管理

SOT-23-6 封装便于小型系统集成,但散热能力有限。建议在 PCB 下方与周围布置大面积铜箔(散热焊盘)与多层过孔以增强热传导;当工作在高输入差或满载时,应注意器件结温不超过规格上限(+125℃)。

六、选型建议与注意事项

  • 确认最大输入瞬态是否超出 30V 极限;汽车或工业场景需考虑瞬态抑制与滤波;
  • 外围被动元件(电感、电容)的额定电流与耐压需满足最差工况;
  • 布局与滤波对 EMI 与稳定性影响显著,建议按评估板设计并在最终产品中验证;
  • 使用前查阅最新版器件数据手册以获取完整引脚定义、典型电路与保护特性。

总结:TMI3342 以其宽输入范围、内置开关与同步整流、低静态电流与小型封装为优势,适合对体积、效率和成本都有要求的单路降压电源设计。根据具体负载与应用场景,合理选择外部电感、电容与 PCB 布局,即可获得稳定可靠的电源性能。

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