WMSIC Electronic Components

RICHTEK RT9742GGJ5F

ModelRT9742GGJ5F
PackageTSOT-23-5
BrandRICHTEK
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 24+

Available for RFQ

Technical data

Product details

19 specifications

Core information

Product name
RICHTEK RT9742GGJ5F
Type
RICHTEK
Minimum package
3000 圆盘

Technical parameters

Electronic Component
Electronic Component
Electronic Component
RICHTEK
Electronic Component
RT9742GGJ5F
Electronic Component
1
Package
TSOT-23-5
Electronic Component
DC-DC Power Supply IC
Electronic Component
0.043g
Electronic Component
1
Features
Output
Electronic Component
BM0230063870
Operating Temperature
40℃~+125℃@(TJ)
Operating Voltage
2.7V~6V
Output Current
1A
Output Type
Electronic Component
Output Channel Count
1
Static Current(Iq)
30uA

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

RT9742GGJ5F — 低静态电流 1A 固定输出电源开关(TSOT-23-5)

一、产品概述

RT9742GGJ5F 是由台湾立锜(RICHTEK)推出的一款小体积单通道电源开关器件,适合用于电池供电与便携式系统的电源管理。其设计重点为低静态电流与内置开关管,能够在宽输入电压范围内提供可靠的1A输出能力,适合做电源通断、功率隔离和上电序列控制等功能。

  • 工作电压:2.7 V ~ 6 V
  • 输出电流:最大 1 A
  • 输出通道数:1
  • 静态电流(Iq):典型 30 µA
  • 开关管:内置(集成功率开关)
  • 输出类型:固定输出(固定电压或固定开关输出,详见原厂文档)
  • 工作温度(结温TJ):-40 ℃ ~ +125 ℃
  • 封装:TSOT-23-5(小型 5 引脚封装)

二、主要特性与优势

  • 低静态电流:30 µA 的静态电流非常适合电池供电的终端设备,可在待机/睡眠模式下极大延长电池寿命。
  • 内置开关管:集成功率开关减少外部元件数量与布局复杂度,方便在狭小空间内实现可靠的电源通断。
  • 宽输入电压范围:2.7 V 至 6 V,兼容常见单节/多节电池与系统轨电源。
  • 小型封装:TSOT-23-5 适合高密度 PCB 布局,并利于批量生产与成本控制。
  • 单通道控制:适用于对某一路负载进行独立开关控制或电源管理。

三、功能说明(工作方式概述)

RT9742GGJ5F 的核心功能是将输入电源(VIN)通过内部开关管控制后输出到负载(OUT),并通过使能(EN)或控制引脚实现软启/断开(具体功能与引脚定义请参考原厂数据手册)。典型应用包括:

  • 电源开关/负载开关:对某一路电源进行通断控制,避免待机时的待机功耗。
  • 电源上电序列:用作系统各轨的开关控制,实现精确的电源时序。
  • 电源隔离与热插拔保护:在上电/下电过程中保护系统与负载。

注意:关于器件是否内建过流保护、热关断或软启动时间等详细功能,请以官方数据手册为准。

四、封装与引脚(TSOT-23-5)

TSOT-23-5 为 5 引脚小型封装,适合表面贴装组装。由于封装体积有限,布局时应注意散热与旁路电容的位置安排。一般引脚功能包括 VIN、GND、OUT、EN(或控制)、NC/其他功能引脚。具体引脚排列与功能请参照原厂封装图和引脚定义。

五、布局与使用建议

  • 电源旁路:建议在 VIN 引脚与 GND 之间放置低 ESR 陶瓷电容(例如 1 µF ~ 10 µF),并尽量靠近器件 VIN 引脚布局,以减小寄生电感与稳定供电。
  • 输出去耦:在 OUT 与 GND 之间也应放置适当去耦电容,用于抑制瞬态电流和维护输出稳定性。
  • 地平面与散热:在 PCB 上为器件提供足够的铜箔面积与地平面,以帮助散热。考虑通过多层板内的散热通道或加大焊盘面积降低结温上升。
  • 布线:尽量缩短 VIN、OUT 与 GND 的走线,避免在高电流路径上出现长且窄的走线。
  • 上电/关断顺序:如果在系统中需要与其它电源轨配合,请根据系统需求设计 EN 信号的时序,避免冲突。

六、热管理与可靠性注意事项

在 1A 输出条件下,器件的功耗取决于 VIN 与 OUT 之间的压降。功耗 Pd ≈ (VIN − VOUT) × IOUT。必须评估最大功耗情况下的结温,并确保在工作环境温度下器件结温不超过 +125 ℃ 的限制。如需在高压降或连续高电流情况下工作,需采取散热措施或选择更大功耗处理能力的封装/器件。

七、典型应用场景

  • 智能手机、平板与可穿戴设备的功能区电源开关
  • IoT 终端与传感节点的电源管理
  • 电池供电设备的低功耗待机控制
  • 工业与汽车电子中对单一路电源的断开与保护(在满足相应可靠性与规范前提下)

八、选型建议与后续步骤

在最终选型前,建议下载并详细阅读 RT9742GGJ5F 的官方数据手册,确认如下关键参数:输出电压等级或输出方式、RDS(on) 或等效导通损耗、启动/关断时间、EN 阈值、保护特性(过流/短路/过温)及典型应用电路。如需样品或技术支持,可联系 RICHTEK 或其代理商获取更详细的资料与参考设计。

备注:本文为产品概述与使用建议,具体电气参数与引脚定义请以立锜官方数据手册为准。

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