WMSIC Electronic Components

TMI TMI8260SP

ModelTMI8260SP
PackageSOP-8
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 TMI8260SP
Type
TMI
Minimum package
3000 编带

Technical parameters

Electronic Component
Electronic Component
Electronic Component
TMI
Electronic Component
TMI8260SP
Electronic Component
1
Package
SOP-8
Electronic Component
Brushed DC Motor Driver IC
Electronic Component
0.15g
Electronic Component
1
Integrated FET
Electronic Component
Features
Current Sampling
Electronic Component
BM0228786253
Current
8A
Operating Temperature
25℃~+85℃
Operating Voltage
3V~18V
Output Current
4A
Static Current(Iq)
600uA

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

TMI8260SP 产品概述

TMI8260SP 是拓尔微(TMI)推出的一款高集成度电源管理器件,集成功率 MOSFET,适用于中功率降压转换与电源管理场景。器件工作电压范围广(3V~18V),连续输出电流可达 4A,峰值电流达 8A,静态电流仅 600µA,工作温度范围 -25℃~+85℃,SOP-8 封装,有利于小体积、高可靠性应用。

一、主要特性

  • 工作电压:3V ~ 18V,适配多种供电环境(如 5V、12V 系统)。
  • 连续输出电流:4A,峰值可承受 8A 瞬态负载。
  • 集成 FET:内部集成功率 MOSFET,简化外围设计并降低 PCB 面积。
  • 低静态电流:Iq ≈ 600µA,适合需兼顾待机功耗的系统。
  • 工作温度:-25℃ ~ +85℃,适合消费类与一般工业环境。
  • 封装:SOP-8,便于中小批量组装与手工焊接。

二、典型应用场景

  • 嵌入式主控板的 5V/3.3V 电源降压模块。
  • 通信设备与路由器的电源前端或子模块。
  • 工控与民用电源管理,如小型电源模块、传感器供电。
  • 车载电子(辅助电源)与电池供电系统(使用时建议核实瞬态耐受能力与 EMC 需求)。

三、功能与设计要点

  • 器件集成功率开关,有助于提升转换效率并减小外部元件数量,但实际效率与外部电感、电容及 PCB 布局密切相关。
  • 低静态电流优势明显,适合需长时间待机或低负载功耗敏感的设备。
  • 常见保护与控制功能可能包括使能(EN)、软启动(Soft‑Start)、过流保护、过温保护等。具体功能与引脚定义请参照官方数据手册以获得准确信息。

四、典型电路与外围器件建议

  • 输入电容:建议在 VIN 引脚附近放置低 ESR 电解或陶瓷电容以抑制输入纹波与瞬态冲击。
  • 输出电容:根据输出纹波与瞬态要求选择合适容量与 ESR 的电容,陶瓷电容常用于降低输出纹波。
  • 电感选择:根据输出电流与开关频率选择合适电感,注意电感的直流饱和电流需大于连续输出电流。
  • 布线要点:输入回路与功率回路走线尽量短且宽,关键电容靠近引脚安放;把感性环路面积控制在最小以降低辐射与纹波。

五、热设计与封装注意事项

  • SOP-8 封装散热依赖 PCB 铜面积,建议在器件下方或相邻层增加散热铜皮与过孔,提高热扩散能力。
  • 在持续 4A 负载下,需评估结温上升并根据应用场景进行散热设计(加大铜箔、使用散热垫或风冷等手段)。
  • 工作环境温度靠近上限时,应留有额外余度,避免长期过热影响可靠性。

六、可靠性与选型建议

  • 在选型阶段,确认最大输入瞬态(如工程中可能出现的尖峰电压)及器件对浪涌的承受能力,必要时加入 TVS 或滤波器。
  • 对关键应用建议进行长时间热稳态测试与加载循环测试,以验证在实际 PCB 布局与系统工作条件下的性能与寿命。
  • 若系统对 EMC、热冲击或扩展温度等级有更高要求,可与供应商沟通定制或选择更高等级的器件。

七、封装与采购信息

  • 封装形式:SOP-8,适合通用 PCB 组装流程。
  • 采购与技术资料:建议参照 TMI 官方数据手册获取完整引脚定义、典型特性曲线、应用电路与评估板资料,便于快速验证与量产导入。

总结:TMI8260SP 以其宽输入电压、高整合度、较高输出电流与低静态电流,适合用于中功率、高集成度的降压电源场景。为发挥器件最佳性能,需重视外围元件选型、PCB 布局与热管理,并参考官方数据手册进行详细设计与验证。

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