WMSIC Electronic Components

ADI/LINEAR MAX9918ASA+T MAX9918ASA

ModelMAX9918ASA+T
PackageSOIC-8-EP
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 MAX9918ASA+T
Type
ADI/LINEAR
Minimum package
2500 圆盘

Technical parameters

Electronic Component
Electronic Component
Electronic Component
ADI(Analog Devices) / LINEAR
Electronic Component
MAX9918ASA+T
Electronic Component
1
Package
SOIC-8-EP
Electronic Component
75kHz
Electronic Component
Current Sense Amplifier
Electronic Component
0.23g
Power Supply
4.5V~5.5V
Electronic Component
1
Common Mode Voltage
20V~75V
Electronic Component
BM0264482265
Operating Temperature
40℃~+125℃
Amplifier
Electronic Component
Output Current
44mA
(SR)
0.6V/us

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

MAX9918ASA+T 产品概述

一、产品简介

MAX9918ASA+T 是一款高精度电流检测放大器,单路通道,适用于高压侧与低压侧、单向或双向电流测量。器件具有极宽的共模电压范围和较低的输入失调电压与噪声,适合对电流进行精密监测与保护判定,广泛应用于电源管理、电机驱动、通信与工业控制等场景。

二、主要电气参数

  • 共模电压范围:-20 V 至 +75 V,支持典型汽车与工业总线电压情况;
  • 带宽:75 kHz,适合中低频动态电流检测;
  • 输入失调电压(Vos):140 μV,温漂(Vos TC):1.2 μV/°C,保证温度下漂移小;
  • 输入偏置电流(Ib):175 μA,输入失调电流(Ios):8 μA;
  • 压摆率(SR):0.6 V/μs;共模抑制比(CMRR):80 dB;
  • 噪声密度:60 nV/√Hz @10 kHz,低噪声利于精密测量;
  • 单电源工作电压:4.5 V 至 5.5 V;输出驱动能力:最大约 44 mA;
  • 工作温度范围:-40 °C 至 +125 °C。

三、封装与热性能

器件采用 SOIC-8-EP/NSOIC-8 (带散热焊盘) 封装,便于焊接与散热处理。底部散热焊盘(EP)建议与 PCB 大面积铜箔相连并配合过孔下穿,以提高热传导和长期可靠性,尤其在高温或高功耗环境下有助于稳定工作。

四、典型应用场景

  • 汽车电子与电池管理系统(高压侧电流检测);
  • 电机控制与驱动(实时电流闭环监测);
  • 开关电源与电源保护(过流检测、功率监控);
  • 数据中心与通信设备的电流统计与告警;
  • 工业自动化的负载监控与安全保护。

五、设计与使用要点

  • 精度优化:器件低 Vos 与小温漂有利于长期精度,选择合适的取样电阻(Rs)以平衡功耗与信号幅度,注意 Ios 与 Ib 在大 Rs 下造成的误差;
  • 抗干扰与滤波:75 kHz 带宽适合带宽受限的系统,建议在输入端加入小的 RC 滤波以抑制高速共模/差模噪声,同时注意滤波电容可能影响相位与带宽;
  • 布局建议:采用 Kelvin 连接测量端,缩短敏感节点走线,输入端与放大器电源地应良好分离并在芯片附近做去耦;
  • 输出驱动与单电源:在 4.5–5.5 V 单电源供电下可直接驱动后级 ADC 或逻辑,但若需更大驱动能力请评估 44 mA 的限制及功耗;
  • 热管理:在高温或长期满负载工况下,确保底部散热焊盘正确焊接并与散热铜箔连接。

六、选型建议

MAX9918ASA+T 适用于需要在宽共模电压下实现高精度、低噪声电流检测的场合。若关注更高带宽或更低输入偏置电流/更高输出驱动,应在规格上与系统需求对比;在空间与散热受限的应用,SOIC-8-EP 的焊盘设计利于散热,但仍需在 PCB 设计上优化热通道。

总结:凭借宽共模范围、低失调与低噪声特性,加之汽车级温度覆盖及 SOIC-8-EP 封装,MAX9918ASA+T 在工业与汽车级电流检测应用中为一种兼顾精度与工程实用性的解决方案。

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