WMSIC Electronic Components

TMI TMI3244T

ModelTMI3244T
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 Date code within 2 years

Available for RFQ

Technical data

Product details

19 specifications

Core information

Product name
TMI TMI3244T
Type
TMI
Minimum package
3000 圆盘

Technical parameters

Electronic Component
Electronic Component
Electronic Component
TMI
Electronic Component
TMI3244T
Electronic Component
1
Package
SOT-23-6
Electronic Component
DC-DC Power Supply IC
Electronic Component
0.037g
Electronic Component
1
Type
Electronic Component
Synchronous
Electronic Component
Electronic Component
BM0226612932
Operating Temperature
40℃~+125℃@(TJ)
Operating Voltage
4.5V~18V
Switching Frequency
550kHz
Electronic Component
Electronic Component
Output Current
4A

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

TMI3244T 产品概述

一、主要特性

TMI3244T 是拓尔微(TMI)推出的一款高集成度降压型开关稳压器,采用降压拓扑并内置功率开关管与同步整流。其主要参数包括输入电压范围 4.5V~18V,可调输出、最大输出电流 4A、开关频率 550kHz、静态电流仅 300µA,以及工作结温范围 -40℃~+125℃。器件采用 SOT-23-6 封装,适合空间受限的中小功率转换应用。

二、产品概述

TMI3244T 面向需要高效率、体积小且能驱动多种负载的电源设计。内置同步整流降低整流损耗,550kHz 的中高频工作点在效率与外部元件体积之间取得平衡;低静态电流有利于电池供电系统的待机寿命。SOT-23-6 小封装便于便携式设备与分布式电源模块的布局。

三、功能与优势

  • 高集成度:内置高侧与低侧开关管,减少外部功率器件数量,简化 BOM。
  • 同步整流:降低导通损耗,提高中低压差下的转换效率。
  • 宽输入电压:4.5V~18V 支持单节铅酸、锂电与多种工业电源。
  • 低静态电流:300µA 有利于延长电池设备的待机时间。
  • 可靠性:工作结温 -40℃~+125℃,适应工业级温度要求。

四、关键电气参数

  • 输入电压范围:4.5V ~ 18V
  • 输出电流:最大 4A(依散热与外部布局而定)
  • 开关频率:550kHz(典型)
  • 静态电流:约 300µA
  • 输出类型:可调输出(通过外部反馈电阻设定)
  • 封装:SOT-23-6

五、封装与热性能

SOT-23-6 封装占位小,但散热能力有限。高速、大电流工作时需在 PCB 上通过大面积铜箔散热(尤其是 GND 面)并做好热通道设计,必要时增加过孔连接多层铜层以降低结温。在保证良好散热的前提下,器件可稳定提供接近额定的 4A 输出。

六、典型应用场景

  • 便携式设备与移动终端的主/辅电源
  • 工业控制模块、单板供电
  • 通信设备与路由器的从属电源
  • 汽车电子辅助电源(需配合车规级验证)

七、应用设计要点

  • 电感选择:建议选择饱和电流大于最大输出电流、低 DCR 的电感。根据 550kHz 频率,典型电感值常在 0.47µH–2.2µH 之间,按允许的电流纹波(建议 ≤30%-40% Iout)计算确定。
  • 输出电容:采用低 ESR 的固态或陶瓷电容以降低纹波并提升瞬态响应。并注意电容的温度与 DC bias 特性。
  • 输入滤波:高频旁路电容靠近器件 VIN 与 GND 引脚,抑制开关噪声并稳定输入电压。
  • 反馈网络:通过外部分压电阻设定输出电压,建议使用高精度电阻以保证稳压精度并考虑温漂。

八、布局与 EMC 建议

  • 将输入电容、功率电感和输出电容排列成最短的电流回路,减少环路面积以降低 EMI。
  • 开关节点(SW)走线尽量短且远离敏感模拟信号与反馈网络。
  • 将 GND 以单点或局部地平分割,确保功率地与敏感地分离并在靠近器件处短接。
  • 对于严格 EMI 需求,可在输入端加入差模/共模电感及 RC 滤波,且在布局时预留滤波元件空间。

九、选型与注意事项

在需要持续 4A 输出时,务必评估 PCB 散热能力与外部元器件的热稳定性;在高环境温度或高占空比应用中建议留有足够的安全裕量。最终设计应以 TMI3244T 的完整数据手册为准,确认引脚排列、保护特性和参考电路,必要时进行热仿真与样机验证。

如需具体参考应用电路、典型效率曲线或器件引脚图,可向厂商索取完整版数据资料以完成电路定稿与认证测试。

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