WMSIC Electronic Components

TMI TMI3101

ModelTMI3101
PackageSOT-23-5
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 TMI3101
Type
TMI
Minimum package
3000 圆盘

Technical parameters

Electronic Component
Electronic Component
Electronic Component
TMI
Electronic Component
TMI3101
Electronic Component
1
Package
SOT-23-5
Electronic Component
DC-DC Power Supply IC
Electronic Component
0.049g
Electronic Component
1
Type
Electronic Component
Synchronous
Electronic Component
Electronic Component
BM0228149777
Operating Temperature
40℃~+125℃@(TJ)
Operating Voltage
2.5V~6V
Switching Frequency
2.3MHz
Electronic Component
Electronic Component
Output Voltage
600mV~6V

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

TMI3101 产品概述

一、主要特性

TMI3101 是一款降压型同步整流开关稳压器,面向便携与低功耗电源设计。关键参数如下:

  • 输入电压范围:2.5V ~ 6V
  • 输出电压:可调 0.6V ~ 6V
  • 输出电流:最高 1A
  • 开关频率:2.3MHz(固定)
  • 静态电流:40µA(低静态功耗,适合电池供电)
  • 同步整流:内置(无需外部整流二极管,提高效率)
  • 内置同步开关,封装:SOT-23-5,单路输出,工作结温范围 -40℃~+125℃(TJ)

二、性能优势

  • 低静态电流:典型 40µA,有利于待机功耗优化,适用于 IoT、可穿戴与电池供电设备。
  • 高开关频率:2.3MHz 允许使用体积小的电感与低值陶瓷电容,节省 PCB 面积,适合空间受限的应用。
  • 同步整流:减少整流损耗,提升轻载到中载效率,减低发热。
  • 宽可调输出:0.6V 起可配合不同芯片电源需求,灵活性高。
  • 小封装:SOT-23-5 适合量产成本敏感且空间受限的产品。

三、典型应用场景

  • 电池供电设备(电池组 2.5V~6V 范围)
  • 便携式消费电子(可穿戴、掌上设备)
  • 无线通讯与 IoT 终端(MCU、传感器供电)
  • 摄像头模组、数字电路的局部稳压电源
  • 点亮小功率 LED 或为模拟电路提供参考电压(在允许的电流范围内)

四、设计与选型建议

  • 电感:建议范围约 0.47µH ~ 2.2µH(根据输出电流与容许电流纹波选择),2.3MHz 高频下常用小体积高频磁芯电感。
  • 输入电容:建议 4.7µF ~ 22µF 低 ESR 陶瓷电容,靠近 VIN 与 GND 引脚放置以抑制瞬态。
  • 输出电容:建议 10µF ~ 47µF 低 ESR 陶瓷电容,以保证负载瞬态响应与环路稳定。
  • 分压反馈:使用高精度电阻分压设定输出电压,注意 FB 引脚的最小工作电流与分压误差。
  • 开关管与损耗:尽管器件内置开关,设计时仍需考虑导通与开关损耗,选择合理 VOUT 与 VIN 差值以降低热量。

五、PCB 布局与 EMI 控制要点

  • 最小化电感、开关节点(SW)、输入电容之间的回流环路面积,以降低 EMI 与环路辐射。
  • 将输入电容放置在 VIN 与 GND 引脚的最短路径上;输出电容靠近 SW 与地端布局。
  • 高频开关工作在 2.3MHz,建议使用地平面、短走线及必要的去耦,以减小噪声耦合。
  • 对热管理要求较高的应用,SOT-23-5 的热阻有限,建议通过铜箔面积扩展散热路径或加热孔改善散热。

六、典型外围元件参考(示例)

  • 电感:0.68µH – 1.5µH,电流等级 ≥1.2A,DCR 尽可能低。
  • 输入电容:10µF,X5R/X7R 陶瓷,并联 0.1µF 高频旁路。
  • 输出电容:22µF,X5R/X7R 陶瓷,必要时并联小容量改善瞬态。
  • 反馈电阻:根据目标 VOUT 用标准电阻计算(FB 基准 0.6V)。

七、热与可靠性注意事项

  • 在高 VIN 与高 IOUT 条件下器件功耗上升,需评估结温并进行适当降额。
  • 工作环境接近 +125℃ 时,应对输出电流进行必要的降额或加强散热设计。
  • 推荐在设计验证阶段进行热成像与长时运行测试,确认在最恶劣工况下器件稳定性。

八、快速规格摘要

  • 类型:降压(同步)开关稳压器(内置开关)
  • VIN:2.5V ~ 6V;VOUT:0.6V ~ 6V(可调);IOUT:1A;Fsw:2.3MHz;Iq:40µA;封装:SOT-23-5。

总结:TMI3101 以其低静态电流、高开关频率与内置同步整流的组合,适合对体积、功耗与成本有严格要求的便携与嵌入式电源设计。使用时重点关注 PCB 布局、外围器件选型与热管理,可在多数中低功率场合获得良好的效率与稳定性。

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