WMSIC Electronic Components

ADI/LINEAR MAX4080TASA+T MAX4080TASA

ModelMAX4080TASA+T
PackageSOIC-8
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 MAX4080TASA+T
Type
ADI/LINEAR
Minimum package
2500 编带

Technical parameters

Electronic Component
Electronic Component
Electronic Component
ADI(Analog Devices) / LINEAR
Electronic Component
MAX4080TASA+T
Electronic Component
20V/V
Electronic Component
1
Package
SOIC-8
Electronic Component
250kHz
Electronic Component
Current Sense Amplifier
Electronic Component
0.208g
Electronic Component
1
Common Mode Voltage
4.5V~76V
Features
Shunt; Analog Output Interface
Electronic Component
BM0257666483
Operating Temperature
40℃~+125℃
Amplifier
1
Power Supply Voltage
4.5V~76V

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

MAX4080TASA+T 产品概述

一、产品概览

MAX4080TASA+T 是一款单路高共模电压电流检测放大器(Current-Sense Amp),适用于需要在高电压侧直接监测电流的系统。该器件支持宽广的共模电压范围和单电源工作,使其能直接在汽车、电力与工业应用中的高压总线侧进行精确电流测量。器件采用 8 引脚 SOIC 封装,便于装配与散热管理。

二、主要性能参数

  • 放大器通道:单路
  • 共模电压范围:4.5 V ~ 76 V(可在高压总线上直接测量)
  • 增益(GAIN):20 V/V(20×)
  • 带宽:典型 250 kHz(-3 dB 点)
  • 输入偏置电流(Ib):5 µA
  • 输入失调电压(Vos):100 µV(极低失调,有利于小压降测量)
  • 共模抑制比(CMRR):124 dB(对高共模抑制能力强)
  • 静态电流(Iq):75 µA(低功耗)
  • 工作温度范围:-40 ℃ ~ +125 ℃
  • 最大电源差(VDD−VSS):76 V
  • 单电源供电范围:4.5 V ~ 76 V
  • 封装:SOIC-8,盘带供货(T/R)
  • 品牌:ADI(亚德诺) / LINEAR

三、典型应用场景

  • 汽车电子:高侧电流监测、蓄电池管理系统(BMS)、车载电源保护
  • 工业电源与逆变器:电机驱动电流测量、过流保护与诊断
  • 电源管理:开关电源输出级负载检测、功率计量
  • 通信与数据中心:功率分配单元(PDU)与负载监控
  • 便携与消费类:低功耗系统中精确电流监控(在满足共模条件下)

四、设计要点与实用建议

  1. 测量电阻选择

    • 根据期望的测量范围和放大器输出摆幅选择分流电阻(Rsense)。输出电压 = 增益 × (I × Rsense)。例如欲使满量程电流对应 1 V 输出,Rsense = 1 V / (GAIN × Ifull)。应兼顾功耗与温漂。
  2. 输入和输出滤波

    • 为抑制开关噪声与滤除高频瞬态,建议在输入端并联小电容或 RC 滤波网络,但需注意与器件带宽(250 kHz)配合,避免影响瞬态响应和稳定性。输出侧适当的去耦能改善系统抗干扰能力。
  3. 共模抑制与布板

    • 器件具有高达 124 dB 的 CMRR,但布线仍需谨慎:将感测电阻、放大器输入走线尽量短,并采用 Kelvin 连接以减少串联电阻与寄生电感带来的误差。
  4. 电源与旁路

    • 即便器件支持高达 76 V 的共模,仍建议在 VDD/VSS 周边放置适当的去耦电容与浪涌抑制元件(如 TVS)以保护器件免受瞬态冲击。
  5. 温度与长期漂移

    • 输入失调电压非常低(100 µV)有利于低电压降测量,但要关注温度漂移与长期稳定性,在高精度场合可考虑温度补偿或校准措施。

五、封装与订购信息

  • 封装形式:SOIC-8(便于标准 PCB 工艺装配)
  • 供货形式:盘带(T/R)
  • 典型型号:MAX4080TASA+T(请在采购前确认完整型号与厂家标识)
  • 注意:实际采购时应核对器件管脚标识、温度等级与认证信息,确保与系统需求匹配。

六、选型建议与比较要点

  • 若应用强调高共模电压直测(例如汽车电池总线或工业 48 V/72 V 系统),该器件的 4.5 V ~ 76 V 共模范围与 76 V 最大电源差是显著优势。
  • 对于需要低压差、高精度的电流测量场景,100 µV 的低失调与 124 dB 的 CMRR 提供了良好基础。
  • 若系统需非常宽带的瞬态响应或更低静态电流,需与其他同类器件对比带宽与 Iq 指标,选取更贴合具体动态与功耗约束的器件。

结论:MAX4080TASA+T 是一款面向高共模电压环境的高精度、低功耗单路电流检测放大器,适合汽车与工业电源等需要直接在高压侧进行精确测量的应用。设计时注意滤波、布板与热管理,可发挥其高 CMRR 与低失调带来的测量优势。

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