WMSIC Electronic Components

XBLW XOPA333AIDBVR

ModelXOPA333AIDBVR
PackageSOT23-5
BrandXBLW
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 Option 198797

Available for RFQ

Technical data

Product details

19 specifications

Core information

Product name
XBLW XOPA333AIDBVR
Type
XBLW
Minimum package
3000 圆盘

Technical parameters

Electronic Component
Electronic Component
Electronic Component
XBLW
Electronic Component
XOPA333AIDBVR
Electronic Component
1
Package
SOT23-5
Electronic Component
Precision Op Amp
Electronic Component
0.044g
Electronic Component
1
Electronic Component
Output
Features
EMI / RF; ESD; Built-in
Electronic Component
BM0259354152
Operating Temperature
40℃~+125℃
Amplifier
Electronic Component
Output Current
40mA
(SR)
0.22V/us
Power Supply Voltage
1.8V~5.5V

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

XOPA333AIDBVR 低功耗高精度运算放大器产品概述

一、核心定位与应用场景

XOPA333AIDBVR是芯伯乐(XBLW)推出的单路轨到轨输入/输出运算放大器,核心定位为“低功耗+高精度+高抗干扰”的信号调理器件,针对电池供电、空间受限、环境复杂的应用场景优化设计,可满足从微弱信号放大到中等带宽信号处理的多样化需求。

二、关键性能参数亮点

该器件的性能参数围绕“高精度、低功耗、高可靠性”三大核心设计,关键指标如下:

  1. 高精度与低漂移:输入失调电压(Vos)仅3μV,输入失调电压温漂(Vos TC)低至10nV/℃,同时输入偏置电流(Ib)70pA、输入失调电流(Ios)100pA,可有效抑制微弱信号放大中的直流偏移与漂移,适合压力、温度等传感器的低电平信号调理;
  2. 高抗干扰与低噪声:共模抑制比(CMRR)达130dB,可大幅抑制共模干扰信号;1kHz处噪声密度仅57nV/√Hz,进一步降低信号噪声,提升输出信号质量;
  3. 动态性能与输出能力:增益带宽积(GBP)350kHz,压摆率(SR)0.22V/μs,满足中等带宽信号的放大需求;输出电流可达40mA,具备较强的负载驱动能力,可直接驱动小型负载或后级电路;
  4. 低功耗特性:静态电流(Iq)仅26μA,在保证性能的前提下大幅降低功耗,适配电池供电的便携式设备。

三、封装与供电灵活性

XOPA333AIDBVR采用SOT-23-5小型封装,尺寸紧凑,适合空间受限的PCB设计;供电方面支持单电源1.8V~5.5V宽范围,同时双电源模式下最大电源电压差(Vdd-Vss)可达10V,供电灵活性强,可适配不同系统的电源设计需求。

四、宽温环境适应性

器件工作温度范围覆盖**-40℃~+125℃**,满足工业级宽温应用要求,可在高温、低温或温度变化剧烈的环境下稳定工作,适合工业控制、汽车电子等 harsh 环境场景。

五、典型应用方向

基于上述性能与特性,XOPA333AIDBVR的典型应用场景包括:

  • 工业传感器信号调理:压力、温度、湿度传感器的微弱信号放大;
  • 便携式医疗设备:低功耗的血糖监测、心电图(ECG)信号处理;
  • 电池供电测量仪器:手持万用表、环境监测仪等;
  • 汽车电子:车载传感器(如胎压监测)信号调理;
  • 消费电子:低功耗音频前置放大、电池状态监测电路。

该器件通过平衡高精度、低功耗与宽温适应性,成为电池供电系统、工业传感器及便携式设备的理想信号调理方案。

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