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MAX40201

Maxim Integrated
Part Number MAX40201
Manufacturer Maxim Integrated
Description 0V to 76V Current-Sense Amplifier
Published Mar 27, 2020
Detailed Description MAX40201 EVALUATION KIT AVAILABLE Dual-Channel, 0V to 76V Current-Sense Amplifier General Description The MAX40201 dua...
Datasheet PDF File MAX40201 PDF File

MAX40201
MAX40201


Overview
MAX40201 EVALUATION KIT AVAILABLE Dual-Channel, 0V to 76V Current-Sense Amplifier General Description The MAX40201 dual-channel, high-side, current-sense amplifier has VOS of less than 12μV (max) and gain error of less than 0.
1% (max).
The outputs of the MAX40201 are voltage outputs capable of swinging to a few tens of millivolts of the VDD rail and ground.
The MAX40201 features an input common-mode voltage range from 0V to 76V with 80kHz of small-signal bandwidth, which makes it ideal for interfacing with a SAR ADC for multichannel multiplexed data acquisition systems.
The MAX40201 operates over the -40°C to +125°C temperature range.
The MAX40201 is offered in 8-bump wafer-level package (WLP) and 8-pin µMAX® package.
Applications ●● Base Stations and Communication Equipment ●● Power Management Systems ●● Server Backplanes ●● Industrial Control and Automation Benefits and Features ●● 0V to 76V Input Common Mode ●● Low 12μV (max) Input Offset Voltage ●● Low 0.
1% (max) Gain Error ●● Gain Options • G = 25V/V (MAX40201T) • G = 50V/V (MAX40201F) • G = 100V/V (MAX40201H) • G = 200V/V (MAX40201W) ●● 1.
3mm x 2mm 8-Bump WLP and 8-Pin µMAX Packages Ordering Information appears at end of data sheet.
µMAX is a registered trademark of Maxim Integrated Products, Inc.
Typical Operating Circuit VCM = 0V TO 76V RSENSE1 ISENSE1 SYSTEM LOAD 1 VCM = 0V TO 76V RSENSE2 ISENSE2 VDD = 2.
7V TO 5.
5V RS1+ VDD RS1- RS2+ MAX40201 RS2OUT2 OUT1 GND SYSTEM LOAD 2 19-100028; Rev 4; 3/18 MAX40201 Dual-Channel, 0V to 76V Current-Sense Amplifier Absolute Maximum Ratings VDD to GND.
.
.
-0.
3V to +6.
0V RS+, RS- to GND.
-0.
3V to +80V RS+ to RS-±30V Continuous Input Current (Any Pin).
.
.
.
±20mA Continuous Power Dissipation (TA = +70°C) WLP (derate 13.
4mW/°C above +70°C).
...



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