WMSIC Electronic Components

HXY MOSFET LM317

ModelLM317
PackageSOT-223
BrandHXY MOSFET
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
HXY MOSFET LM317
Type
HXY MOSFET
Minimum package
2500 圆盘

Technical parameters

Electronic Component
Electronic Component
Electronic Component
40V
Electronic Component
HXY MOSFET
Electronic Component
0.01%Vout
Electronic Component
LM317
Electronic Component
1
Package
SOT-223
Electronic Component
Linear Regulator(LDO)
Electronic Component
0.143g
Electronic Component
1
Electronic Component
BM0228150198
Operating Temperature
0℃~+125℃@(Tj)
Operating Voltage
40V
Output
Electronic Component
Output Voltage
1.2V~37V
Output Current
1A

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

LM317 可调线性稳压器(HXY MOSFET / SOT-223)产品概述

一、产品简介

基于传统 LM317 架构的可调线性稳压器,由 HXY MOSFET(华轩阳电子)封装于 SOT-223。器件为单通道、正输出的可调型 LDO,输出电压范围宽(1.2V ~ 37V),适用于需要精确、低噪声直流电源的场合。内置多重保护(短路、过流、过热),静态电流低(Iq = 3.5mA),并在中低频具有较高的电源纹波抑制能力(PSRR = 66dB @ 120Hz)。

二、主要性能参数

  • 输出类型:可调(外接分压电阻设定输出电压)
  • 输出电压范围:1.2V ~ 37V
  • 最大工作电压 / 输入-输出最大差:40V(请以厂家数据手册为最终依据)
  • 标称连续输出电流:1A(器件描述处有“2.2A”字样,可能为短时峰值或不同型号,选型时请核对具体型号资料)
  • 输出极性:正极输出,单通道
  • 静态电流(Iq):3.5mA(空载耗电,影响电池供电寿命)
  • 电源纹波抑制比(PSRR):66dB @ 120Hz(良好的交流纹波抑制,适合对噪声敏感的模拟电路)
  • 噪声:0.01% Vout(相对输出电压的低噪声表现)
  • 工作结温范围:0℃ ~ +125℃ @ Tj(器件可靠性与功耗管理相关)
  • 封装:SOT-223(中小功率散热需外部散热设计)

三、保护与可靠性

该 LDO 集成多项保护机制:

  • 短路保护:在输出被短路时限制电流,保护器件与电源系统。
  • 过流保护:防止输出过载导致器件和负载损坏。
  • 过热保护(热关断):在结温超限时自动关断或限制输出,避免热失控。
    这些保护提高了系统安全性,但不替代良好的热设计与适当的限流措施。实际应用时应根据工作点计算功耗并采取必要散热手段。

四、典型应用场景

  • 工业电源模块:需要宽输入电压、可调输出的电源管理场合。
  • 仪器与测量设备:借助低噪声与高 PSRR,适用于模拟前端与参考电源。
  • 嵌入式系统与通信设备:为外围器件提供稳定的可调电源。
  • 教学与实验平台:简单外接两只电阻即可调出所需电压,便于快速验证。

五、热设计与选型建议

线性稳压器的功耗主要来自输入与输出电压差乘以负载电流(Pd = (Vin − Vout) × Iout)。在高 Vin − Vout 或大负载电流下,器件需承受很高的功耗,SOT-223 的散热能力有限:

  • 示例:若 Vin = 40V、Vout = 5V、Iout = 1A,则 Pd = 35W,远超 SOT-223 的安全散热能力,必须避免此类工况。
  • 建议:尽量减小 Vin − Vout,或在高差时改用开关降压或外接功率级(外加大功率 MOSFET / 串联分流器)以分担功耗;并采用适当的 PCB 散热铜皮或外部散热片。
  • 对于连续 1A 级别输出,关注封装焊盘热阻与环境温度,必要时采用金属散热体或更大功率封装。

六、封装与管脚注意事项

SOT-223 适合中小功率应用,具有良好的焊接兼容性。实际布局时:

  • 将散热引脚尽量焊接到大面积铜箔并连通底层散热层;
  • 输出、输入旁配合合适的去耦电容(输入侧低 ESR 电容,输出侧并联调整电容)以保证稳定性与快速瞬态响应;
  • 调节电阻布局靠近器件,减少寄生阻抗导致的误差。

七、总结与采购要点

该款 LM317 可调线性稳压器集成低静态电流、良好 PSRR 与多重保护,输出电压范围宽、调整灵活,适合对噪声与稳定性有要求且压差不大的场合。在选型与采购时请注意:

  • 明确所需连续输出电流:核实是 1A 连续能力还是有更高短时脉冲能力(描述中存在 2.2A 字样需确认);
  • 评估最大输入电压与 Vin−Vout 所产生的功耗,按功耗进行散热设计;
  • 索取并参考厂家数据手册以确认详细电气特性、热阻与典型应用电路。

如需,可进一步提供典型外接电路、输出电压设定计算示例及 PCB 散热布局建议。

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