WMSIC Electronic Components

TWGMC AMS1117-ADJ LDO Regulator AMS1117

ModelAMS1117-ADJ
PackageSOT-223-3L
BrandTWGMC
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
TWGMC AMS1117-ADJ
Type
TWGMC
Minimum package
2500 圆盘

Technical parameters

Electronic Component
Electronic Component
Electronic Component
1.4V@(1A)
Electronic Component
TWGMC
Electronic Component
0.003%Vout
Electronic Component
AMS1117-ADJ
Electronic Component
1
Package
SOT-223-3L
Electronic Component
Linear Regulator(LDO)
Electronic Component
0.22g
Electronic Component
1
Features
Electronic Component
Electronic Component
BM0227688458
Operating Temperature
40℃~+125℃@(Tj)
Operating Voltage
12V
Output
Electronic Component
Output Current
1A

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

AMS1117-ADJ 产品概述

一、产品简介

AMS1117-ADJ 是一款通用型可调低压差线性稳压器,TWGMC(台湾迪嘉)封装为 SOT-223-3L。器件输出可调、输出电流可达 1A,内部具备热关断与限流保护,适用于各种单通道正向稳压场合。典型工作结温范围为 -40℃ 到 +125℃,便于在工业级温度环境中使用。

二、主要参数(基于给定规格)

  • 输出类型:可调(ADJ)
  • 输入工作电压:12V(建议输入大于输出+压差)
  • 输出电流:最大 1A
  • 静态电流(Iq):10mA
  • 压差(Dropout):1.4V @ 1A
  • PSRR:70dB @ 120Hz
  • 噪声:0.003% Vout(按厂家数值给定)
  • 输出极性:正极单输出
  • 保护特性:热关断、限流
  • 封装:SOT-223-3L
  • 工作温度(Tj):-40℃ ~ +125℃

三、电气特性与设定方法

AMS1117-ADJ 的参考电压 Vref 约为 1.25V,设定输出电压的常用公式: Vout = Vref × (1 + R2 / R1) + Iadj × R2 通常取 R1 = 240Ω,可忽略 Iadj 带来的微小误差,从而简化为 Vout ≈ 1.25 × (1 + R2 / R1)。器件需要外接输入旁路电容和输出电容以保证稳态与稳定性,推荐输出电容为 10µF(钽电容或低 ESR 电解)并注意 ESR 在器件稳定工作区间内。

引脚与引脚功能(SOT-223,面向顶部金属散热片,脚朝下):

  • 左脚:ADJ(可调端 / GND 参考)
  • 中脚:VOUT(输出,散热片也通常连接到 VOUT)
  • 右脚:VIN(输入)

四、应用场景

  • 单电源供电模块的中间稳压(如从 12V 降到 5V、3.3V 等)
  • 嵌入式系统、单片机、电源模块原型开发
  • 通信、仪表与工业控制等对温度与稳定性要求较高的场合
  • 需要简单外部元件即可实现可调输出的电源设计

五、设计与使用注意事项

  1. 输入电压必须高于期望输出电压加压差(Vout + 1.4V @ 1A),高负载时留足裕量以避免进入压差区。
  2. 输出电容必须存在且符合厂商建议的容量与 ESR 范围(常用 10µF 钽电容或低 ESR 电解),否则可能造成振荡或不稳定。
  3. 静态电流 10mA 在电池供电应用会带来功耗考虑,低功耗设计需评估是否合适。
  4. 高电流工作时注意散热与 PCB 热阻,SOT-223 封装需配合大面积铜箔或外接散热片。
  5. PSRR 优秀(70dB @120Hz),对交流纹波抑制良好,但高频纹波和噪声仍建议在输入侧加适当滤波。

六、热管理与可靠性

在接近 1A 输出时,线性稳压器会将 VIN−VOUT 的功率差以热量形式耗散。必须评估功耗 P = (VIN − VOUT) × Iout,并保证封装与 PCB 散热路径能将热量带走以避免触发热关断。常用方法包括增加铜面、使用 SOT-223 大面积焊盘或外加散热片。

七、总结

AMS1117-ADJ(TWGMC,SOT-223-3L)以其可调性、1A 输出能力、良好 PSRR 和成熟的应用经验,适合绝大多数通用线性稳压场合。设计时重点关注输入余量、输出电容选型与热管理,以确保稳定与可靠运行。

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