WMSIC Electronic Components

ADI/LINEAR MAX40203AUK+T MAX40203AUK

ModelMAX40203AUK+T
PackageSOT-23-5
BrandADI/LINEAR
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 25+

Available for RFQ

Technical data

Product details

19 specifications

Core information

Product name
ADI(Analog Devices) / LINEAR MAX40203AUK+T
Type
ADI/LINEAR
Minimum package
2500 圆盘

Technical parameters

Electronic Component
Electronic Component
Electronic Component
ADI(Analog Devices) / LINEAR
Electronic Component
MAX40203AUK+T
Electronic Component
1
Package
SOT-23-5
Electronic Component
Ideal Diode / ORing Controller
Electronic Component
0.001g
Electronic Component
1
Features
Current
Voltage Rating
6V
Electronic Component
BM0258706493
Operating Temperature
40℃~+125℃
(Vf)
200mV
Static Current(Iq)
300nA
Voltage(Vin)
1.2V~5.5V
Electronic Component
Electronic Component

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

MAX40203AUK+T 产品概述

一、概述

MAX40203AUK+T 是 ADI/LINEAR 系列的“理想二极管”控制器,工作温度范围宽 (-40°C 至 +125°C),适用于 1.2V 至 5.5V 的输入电源域。器件集成了低压降导通、反向电流阻断、过温保护与外部使能控制等功能,封装为 SOT-23-5,适合便携式与空间受限的电路板应用。该器件可替代传统整流二极管,从而显著降低功耗与发热,提高系统效率与可靠性。

二、关键参数(基础规格)

  • 输入电压 (Vin):1.2V ~ 5.5V
  • 反向耐压:6V(在关断或反向条件下阻断反向电流)
  • 正向压降 (Vf):典型 200mV(导通时低压降,降低功耗)
  • 静态电流 (Iq):典型 300nA(极低静态耗电,适合低功耗系统)
  • 工作温度:-40°C ~ +125°C
  • 功能特性:过温保护、外部使能 (EN)、反向电流阻断
  • 封装:SOT-23-5
  • 品牌:ADI(已并入 Analog Devices / Linear Technology 系列)

三、主要特性解读

  1. 低压降导通
    典型 200mV 的正向压降远低于普通整流二极管,在中低压供电时可显著降低功耗,提升效率,尤其适合电池供电与能量敏感型设备。

  2. 反向电流阻断
    器件在关断或输入反向时能有效阻断反向电流,避免电源回流造成系统异常或损坏,适合电源 ORing、反向保护等场景。

  3. 极低静态电流
    300nA 量级的静态电流使其非常适合待机与长待机寿命要求的便携设备、物联网终端及穿戴设备。

  4. 过温保护与可靠性
    集成过温保护,当结温超过安全阈值时器件会限制或切断导通以防损坏,提升系统可靠性。建议在系统设计中配合温度监控与合理的热管理策略使用。

  5. 外部使能
    带使能引脚,可通过外部逻辑控制器件导通/关断,从而在系统电源管理策略中实现精细控制(如功率域隔离、顺序上电/下电)。

四、典型应用场景

  • 电池供电设备的电源路径控制与理想二极管替换(延长续航,降低热损耗)
  • 电源 ORing(冗余供电或多路输入自动切换)
  • 便携式电子产品、可穿戴设备、物联网终端(低 Iq 特别有利)
  • 能量采集与低功耗系统(微功耗待机下保持高效率)
  • 反向保护需要场合(防止外部电源反冲电池或敏感负载)

五、设计与布局注意事项

  • 输入去耦:在器件输入端靠近器脚放置适当的去耦电容,有助于稳定输入并减小瞬态压降。
  • 热管理:虽然正向压降较低,但在较大负载下也会产生热量。SOT-23-5 封装热阻较大,建议在 PCB 上使用热铜箔和散热通道(如在器件背面/下方增加铜厚或散热地平面)以利散热。
  • 使能控制:通过外部逻辑对 EN 引脚控制器件导通/关断时,应遵循上电顺序与逻辑电平兼容性,避免在未定义状态下出现瞬态电流。
  • 过温响应:设计系统时应考虑过温保护可能导致的短时断开,必要时在上层控制策略中实现重试、报警或降功率策略,防止系统不稳定。
  • 引脚保护:若工作环境或输入可能出现瞬态高压(>6V),应在输入端增加瞬态抑制或限流措施,保护器件不被超过其反向耐压破坏。

六、封装与可靠性

SOT-23-5 小型封装适合空间受限的消费电子电路板。该器件的工业级温度覆盖 -40°C 至 +125°C,适合多种环境使用。为保证长期可靠性,应注意 PCB 的焊接工艺(避免过热)并遵循厂商关于回流焊温度和湿敏等级的说明(选型时参考具体器件数据表以获取详细封装与可靠性规范)。

七、总结与选型建议

MAX40203AUK+T 作为一款集成了低压降、低静态电流、反向阻断和过温保护的理想二极管控制器,适合用于要求高效率与低待机功耗的电源路径管理与反向保护场景。若系统输入在 1.2V~5.5V 范围、需极低静态耗电并且要求过温与使能控制功能,该器件是一个有竞争力的选择。最终选型请结合系统最大负载电流、热设计能力以及实际工作环境,参考官方详细数据手册以获取完整电气特性与测试条件。

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