WMSIC Electronic Components

ADI/LINEAR LT1964ES5-BYP#TRPBF LT1964ES5

ModelLT1964ES5-BYP#TRPBF
PackageTSOT-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 Electronic Component

Available for RFQ

Technical data

Product details

19 specifications

Core information

Product name
ADI(Analog Devices) / LINEAR LT1964ES5-BYP#TRPBF
Type
ADI/LINEAR
Minimum package
2500 圆盘

Technical parameters

Electronic Component
Electronic Component
Electronic Component
340mV@(200mA)
Electronic Component
ADI(Analog Devices) / LINEAR
Electronic Component
30uVrms
Electronic Component
LT1964ES5-BYP#TRPBF
Electronic Component
1
Package
TSOT-23-5
Electronic Component
Linear Regulator(LDO)
Electronic Component
0.3g
Electronic Component
1
Features
Terminal Block; Voltage;; Current
Electronic Component
BM0265565336
Operating Temperature
40℃~+125℃@(Tj)
Operating Voltage
20V
Output
Electronic Component
Output Voltage
1.22V~20V

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

LT1964ES5-BYP#TRPBF 产品概述

一、产品简介

LT1964ES5-BYP#TRPBF 是 ADI/Linear 推出的可调低压差线性稳压器(LDO),单通道、负极输出,输入工作电压最高可达 20V,输出可调范围为 1.22V 到 20V,最大输出电流 200mA。器件集成过流保护与过热保护,静态电流仅 30µA,噪声低至 30µVrms,纹波抑制比在 120Hz 可达 46dB,适合对噪声和电源稳定性有较高要求的便携与精密应用。封装为 TSOT-23-5,型号带 BYP(旁路)功能以进一步降低噪声。

二、主要电气性能亮点

  • 可调输出:1.22V ~ 20V,可通过外部分压器精确设定所需电压范围;BYP 引脚支持参考电压旁路以降低输出噪声。
  • 输出电流:最大 200mA,满足中小功率负载供电需求。
  • 低压差:典型压差 340mV(在 200mA 时),在低输入与输出差电压工况下仍能稳定工作。
  • 低静态功耗:静态电流仅 30µA,适合电池供电或待机功耗敏感的系统。
  • 低噪声与良好 PSRR:30µVrms 噪声与 46dB@120Hz 的纹波抑制,有利于模拟前端、ADC/DAC、RF 收发等对电源噪声敏感的电路。

三、保护与可靠性

器件内置过流保护(OCP)与过热关断(thermal shutdown),在短路或过载条件下自动限制输出电流并在热限恢复后重新启动,提升系统可靠性并简化外部保护电路设计。工作结温范围 -40℃ ~ +125℃(Tj)满足工业级环境要求。

四、封装与热管理建议

TSOT-23-5 小型封装适合空间受限的应用,但需要注意功耗与散热:

  • 在高 Vin−Vout 或高负载电流下,器件功耗会显著增加(Pd ≈ (Vin−Vout)×Iout),应评估结温并进行必要热设计。
  • 建议在 PCB 上使用大面积铜箔散热、短且粗的输入/输出走线,并将地平面延伸至器件下方以改善散热与接地回流。
  • 输入、输出与 BYP 电容应靠近器件引脚布置以保证稳定性与低噪声。

五、典型应用场景

  • 电池供电设备与便携仪器:低静态电流延长待机时间。
  • 精密模拟电路:低噪声与高 PSRR 有利于传感器、放大器与 ADC 的稳定性能。
  • 通信与工业控制:过流/过热保护提高系统鲁棒性。
  • 任何需要小尺寸、可调负压/低噪声电源的场合(注意根据系统极性需求确认负极性输出的具体连接方式)。

六、选型与注意事项

  • BYP 引脚通常需外接旁路电容以达到最低噪声;具体旁路电容值与布线方式会影响最终噪声与瞬态响应。
  • 保证 Vin 不超过 20V,且在设定 Vout 时留足压差余量以应对瞬态负载。
  • 在高温或连续 200mA 输出工况下,需按 PCB 散热能力估算允许的最大功耗并可能降低输出电流或改进散热设计。
  • 订购信息示例:LT1964ES5-BYP#TRPBF(TSOT-23-5,带 BYP,卷带包装,铅无镀层)。

总结:LT1964ES5-BYP 提供了低噪声、低静态功耗与良好纹波抑制的可调 LDO 解决方案,适用于对噪声、功耗与体积都有严格要求的工业与便携类电源设计。

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