WMSIC Electronic Components

TOREX XC6201P182MR-G LDO Regulator XC6201P182MR

ModelXC6201P182MR-G
PackageSOT-25-5
BrandTOREX
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 26+

Available for RFQ

Technical data

Product details

20 specifications

Core information

Product name
TOREX XC6201P182MR-G
Type
TOREX
Unit
Electronic Component
Minimum package
3000 圆盘

Technical parameters

Electronic Component
Electronic Component
Electronic Component
Electronic Component
Electronic Component
450mV@(80mA)
Electronic Component
TOREX
Electronic Component
XC6201P182MR-G
Electronic Component
1
Package
SOT-25-5
Electronic Component
Linear Regulator(LDO)
Electronic Component
0.04g
Electronic Component
1
Features
Electronic Component
Electronic Component
BM0264392182
Operating Temperature
40℃~+85℃@(Ta)
Operating Voltage
10V
Output
Electronic Component
Output Voltage
1.8V

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

XC6201P182MR-G 线性稳压器(LDO)产品概述

XC6201P182MR-G是日本特瑞仕(TOREX)推出的固定输出型线性稳压器(LDO),专为低功耗、小体积电子系统设计,核心聚焦1.8V稳定输出,适配10V输入电压,满足便携设备、工业模块等场景的供电需求。

一、产品基本定位

该型号属于特瑞仕XC6201系列LDO,主打高集成度、低功耗、小封装三大特点:无需外部分压电阻即可实现固定1.8V输出,内置过流保护电路,采用SOT-25-5超小型表面贴装封装,适合对空间和功耗敏感的应用场景,尤其适配电池供电的便携设备及工业级环境下的稳定供电。

二、核心性能参数详解

XC6201P182MR-G的关键参数明确且针对性强,具体如下:

参数类别 具体数值/说明 核心意义 输出类型 固定输出 无需外部调整,电路设计简化 输入电压(工作) 10V(典型值) 适配常见直流电源或电池组(如9V/12V电池) 输出电压 1.8V(固定) 精准满足1.8V核心电路(MCU、传感器等)供电 最大输出电流 80mA 覆盖多数小型数字/模拟电路的负载需求 压差(@80mA负载) 450mV 输入仅需高于输出0.45V即可稳定工作,电压利用率较高 静态电流(Iq) 2μA(典型值) 超低待机功耗,大幅延长电池续航时间 输出极性 正极输出 适配常规单极性供电电路 工作温度范围 -40℃ ~ +85℃(Ta) 满足工业环境及消费电子的宽温需求 保护功能 内置过流保护(OCP) 负载短路时自动限流,防止电路损坏

三、封装与引脚配置

XC6201P182MR-G采用SOT-25-5封装,尺寸仅2.9mm×2.8mm×1.1mm(典型值),是超小型表面贴装封装,可显著节省PCB布局空间。其引脚功能(典型配置)如下:

  1. 引脚1(Vout):输出端,需外接1μF以上陶瓷电容稳定输出;
  2. 引脚2(GND):接地端,需可靠连接至系统地;
  3. 引脚3(Vin):输入端,需外接1μF以上陶瓷电容滤波;
  4. 引脚4(ON/OFF):使能控制端(低电平有效),可通过MCU控制通断进一步降低功耗;
  5. 引脚5(NC):空脚,无需连接。

四、关键特性与优势

相比同类产品,XC6201P182MR-G的核心优势体现在:

  1. 超低静态电流:仅2μA的待机电流,即使系统待机也能保持稳定输出,适合IoT终端、智能穿戴等设备,可将电池续航提升30%以上(相对普通10μA级LDO);
  2. 精准固定输出:1.8V输出精度达±2%(典型值),无需外部调整即可满足MCU、传感器等对电压精度要求较高的元件供电;
  3. 宽温可靠性:-40℃至+85℃的工作温度范围,覆盖工业级(-4085℃)和商业级(070℃)应用,适应户外传感器、车载电子等极端环境;
  4. 过流保护机制:内置过流保护电路,负载电流超限时自动切换至限流模式,故障排除后自动恢复,有效保护负载及LDO自身;
  5. 小封装易集成:SOT-25-5封装可直接贴装于高密度PCB,适合蓝牙耳机、智能手环等小型化产品。

五、典型应用场景

XC6201P182MR-G的参数特性适配多种场景:

  1. 便携电子设备:智能手环、蓝牙耳机、智能手表等,低功耗+小封装满足续航与空间需求;
  2. 物联网(IoT)终端:环境传感器、智能门锁、无线节点等,超低静态电流支持长期待机;
  3. 工业控制模块:小型PLC、传感器接口、数据采集单元等,宽温范围+过流保护提升可靠性;
  4. 消费电子配件:遥控器、电子玩具、蓝牙音箱等,低成本+小体积简化设计;
  5. 车载电子辅助电路:车载传感器、仪表盘辅助模块等,宽温适应车载环境变化。

六、使用注意事项

为保证稳定工作,需注意:

  1. 输入/输出电容:输入端并联1μF以上陶瓷电容(靠近Vin),输出端并联1μF以上陶瓷电容(靠近Vout),抑制噪声;
  2. 使能控制:无需使能时,可将引脚4接GND(低电平有效),若接Vin则进入待机模式;
  3. 负载范围:负载电流需控制在80mA以内,避免超过最大输出电流;
  4. 温度限制:工作环境温度需在-40℃~+85℃范围内,避免极端高温/低温。

XC6201P182MR-G凭借低功耗、小封装、宽温可靠性等优势,成为1.8V供电场景下的高性价比选择,广泛适用于便携、工业、IoT等多领域的稳定供电需求。

Request for quote

Send RFQ

Use the form for single models, category sourcing, and multi-line BOM requirements.

Send your target model and quantity.

Product sourcing intelligence

Model, package, availability, and BOM fit reviewed before quotation.

WMSIC turns product data, package visuals, BOM context, and sourcing signals into practical RFQ notes for buyers.

Electronic component model and package intelligence review on an ESD-safe inspection bench

Model & package intelligence

Model text, package form, tray or reel details, and visual evidence are reviewed together before RFQ feedback.

BOM matching and alternative component comparison workstation with protected IC samples

BOM matching & alternatives

BOM lines are compared by package, parameters, quantity, and workable alternatives for cleaner sourcing decisions.

Electronic component sourcing availability dashboard with ESD-protected samples

Sourcing availability signal

Stock routes, quotation confidence, lead-time notes, and shipment feasibility are checked before sales follow-up.

Buyer sourcing scenarios

Examples of how common component sourcing requests are organized.

Typical RFQ scenarios based on the WMSIC form fields, catalog data, manual review steps, and shipment preparation workflow.

The buyer shares the full part number, package requirement, quantity, destination, and available product photos so the quotation can record the exact version under review.

Package confirmation Typical RFQ workflow

A multi-line BOM is organized into direct sourcing lines, lines that need package clarification, and lines where alternative-part review is permitted.

Mixed BOM triage Typical RFQ workflow

The original manufacturer part number, datasheet revision, application, critical limits, and acceptable changes are collected before possible candidates are discussed.

Obsolete-part review Typical RFQ workflow

Sample quantity, minimum packing, package format, target date, and courier destination are kept together in one RFQ conversation.

Small-batch request Typical RFQ workflow

Package photos, model markings, board context, and the quantity needed for repair help focus the sourcing review on the relevant version.

Repair batch evidence Typical RFQ workflow

When a suffix or package note is incomplete, the response records the open difference and requests buyer confirmation before procurement proceeds.

Model suffix clarification Typical RFQ workflow

Packing format, carton notes, invoice details, courier option, destination, and tracking handoff are coordinated around the confirmed order.

Export handoff Typical RFQ workflow

The request connects the previously used model, current demand, package evidence, target timing, and replenishment sourcing route.

Replenishment inquiry Typical RFQ workflow

Related products

Packaged components ready for RFQ.