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ADA4941-1YCP-EBZ
Development Boards, Kits, Programmers

ADA4941-1YCP-EBZ

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Analog Devices

ADA4941-1 SPECIAL PURPOSE AMPLIFIER EVALUATION BOARD

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ADA4941-1YCP-EBZ
Development Boards, Kits, Programmers

ADA4941-1YCP-EBZ

Active
Analog Devices

ADA4941-1 SPECIAL PURPOSE AMPLIFIER EVALUATION BOARD

Deep-Dive with AI

DocumentsDatasheet

Technical Specifications

Parameters and characteristics for this part

SpecificationADA4941-1YCP-EBZ
Amplifier TypeDifferential
Board TypeBare (Unpopulated)
Channels per IC1 - Single
Supplied ContentsBoard(s)
Utilized IC / Part8-LFCSP Package

Pricing

Prices provided here are for design reference only. For realtime values and availability, please visit the distributors directly

DistributorPackageQuantity$
DigikeyBox 1$ 24.53

Description

General part information

ADA4941-1 Series

The ADA4941-1 is a low power, low noise differential driver for analog-to-digital converters (ADCs) up to 18 bits in systems that are sensitive to power. The ADA4941-1 is configured in an easy-to-use, single-ended-to-differential configuration and requires no external components for a gain of 2 configuration. A resistive feedback network can be added to achieve gains greater than 2. The ADA4941-1 provides essential benefits, such as low distortion and high SNR that are required for driving high resolution ADCs.With a wide input voltage range (0 V to 3.9 V on a single 5 V supply), rail-to-rail output, high input impedance, and a user-adjustable gain, the ADA4941-1 is designed to drive single-supply ADCs with differential inputs found in a variety of low power applications, including battery-operated devices and singlesupply data acquisition systems.The ADA4941-1 is ideal for driving the 16-bit and 18-bit PulSAR®ADCs, such as the AD7687, AD7690, and AD7691. The ADA4941-1 is manufactured on Analog Devices, Inc., proprietary, second-generation, eXtra fast complementary bipolar (XFCB) process, which enables the amplifier to achieve 18-bit performance on low supply currents.The ADA4941-1 is available in a small 8-lead LFCSP as well as a standard 8-lead SOIC and is rated to work over the extended industrial temperature range, −40°C to +125°C.ApplicationsSingle-supply data acquisition systemsInstrumentationProcess controlBattery-power systemsMedical instrumentation

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