Microchip ARD00354, Wheatstone Bridge Reference Design for MCP6N11, MCP6V26, MCP6V27

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RS 제품 번호:
749-6451
제조사 부품 번호:
ARD00354
제조업체:
Microchip
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모두 선택

브랜드

Microchip

Analogue Function

Wheatstone Bridge

Kit Classification

Reference Design

Featured Device

MCP6N11, MCP6V26, MCP6V27

MCP6N11 Instrumentation Amplifier Wheatstone Bridge Reference Design


The ARD00354 from Microchip is a brilliant demo board that allows you to test the MCP6N11. The MCP6N11 is an instrumentation amp (INA) and also includes Microchips MCP6V26 and MCP6V27. This board is powered from a USB connection and allows you to easily read data on a PC for ease of use.

This modules bridge output is a small differential mode signal with a large common mode. Also included on the board is a 12-bit ADC to convert analogue signals into a more workable, digital format.

Features and Benefits:


  • Free software to view data on

  • RTD temperature sensing in a Wheatstone bridge

  • INA signal condition

  • PICmicro signal conditioning and communications

Software:


Microchip provides a free software called 'Thermal Management Utility'. You can find a link for it below. Thermal Management Utility handles communications through the USB connected to your board and will display data on a strip chart. It can store single points of calibration ecoefficiency on the PIC MCU and tells the PIC MCU how to configure the average filter.

http://ww1.microchip.com/downloads/en/DeviceDoc/ThermalManagementUtility-v1.5.8.zip

Whats in the box?


  • 1x ARD00354 Board

  • 1x USB Cable

  • 1x Information sheet

Supplied with

USB cable

For these non-cancellable (NC), and non-returnable (NR) products, Terms and Conditions apply.



Instrumentation Amplifiers, Microchip


Instrumentation Amplifier is a type of differential amplifier that has been outfitted with input buffer amplifiers, which eliminate the need for input impedance matching. Characteristics include very low DC offset, low drift, low noise, very high open-loop gain, very high common-mode rejection ratio, and very high input impedances.

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