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AD623 Instrumentation Amplifier: Datasheet, Applications, Alternatives [Video&FAQ]

  • Contents

Product Overview

The AD623 is an integrated single-supply instrumentation amplifier that delivers rail-to-rail output swing on a 3 V to 12 V supply. The AD623 offers superior user flexibility by allowing single gain set resistor programming and by conforming to the 8-lead industry standard pinout configuration. With no external resistor, the AD623 is configured for unity gain (G = 1), and with an external resistor, the AD623 can be programmed for gains up to 1000.

 

This blog will introduce AD623 systematically from its features, pinout to its specifications, applications, also including AD623 datasheet and so much more.

Catalog

Product Overview

Related Video Introduction

AD623 Features

AD623 Pinout

LM3900 Pin Configuration

AD623 Applications

AD623 Alternatives

How to use AD623 IC

AD623 Block Diagram

AD623 Circuit Diagram

AD623 Package

AD623 Specification

AD623 Manufacturer

AD623 Datasheet

Using Warnings

AD623 FAQ

 

 

Video: Instrumentation Amplifiers

 

XXX Video Description: This video highlights a special configuration of 3 op-amps, known as an instrumentation amplifier. It explains how the circuit works, how its gain is controlled, and why it is useful for amplifying difficult-to-attain signals in instrumentation equipment.

 

AD623 Features

  • Easy to use
  • Rail-to-rail output swing
  • Input voltage range extends 150 mV below ground

(single supply)

  • Low power, 550 µA maximum quiescent current
  • Gain set with one external resistor

Gain range: 1 to 1000

  • High accuracy dc performance

0.10% gain error (G = 1)

0.35% gain error (G > 1)

  • Noise: 35 nV/√Hz RTI noise at 1 kHz
  • Optimal dynamic specifications

800 kHz bandwidth (G = 1)

20 µs settling time to 0.01% (G = 10)

 

AD623 Pinout

The following figure is the diagram of AD623 pinout.

 

AD623 Pinout

AD623 Pinout

 

LM3900 Pin Configuration

Pin Number Pin Name Description
1 Gain (-Rg) Inverting Gain Terminal connected to resistor to set gain value
2 Inverting Input (IN-) The Inverting input pin of the Op-Amp
3 Non- Inverting Input (IN-) The Non - Inverting Input Pin of Amplifier
4 Power (-Vs) Negative supply terminal 
5 Reference Output reference input. Normally connected to common
6 Output Amplifier output pin
7 Power (+Vs) Positive supply terminal 
8 Gain (+Rg) Non - Inverting Gain Terminal connected to resistor to set gain value

 

AD623 Applications

  • Low power medical instrumentation
  • Transducer interfaces
  • Thermocouple amplifiers
  • Industrial process controls
  • Difference amplifiers
  • Low power data acquisition

 

AD623 Alternatives

LM4871, AD620, IC6283, JRC4558,

 

How to use AD623 IC

The AD623 only requires a resistor to sets its gain value and hence can be easily set up. A very basic commonly used circuit for AD623 is shown below.

 

AD623 Circuit Diagram

AD623 Circuit Diagram

 

The IC is powered using the pin 7 and pin 4, here I have used a singly supply of +5V hence the pin 4 is grounded. If a dual supply voltage is used the pin 4 will be provided with negative voltage. The non - inverting pin (pin 2) and the inverting pin (pin 3) is connected the signal which has to be amplified or compared base on the application of the Op-Amp. The Reference pin (pin 5) is normally grounded along with pin 4, the reference pin is used to direct the output towards a voltage when the difference voltage between the inverting and the non-inverting pin is 0V.

 

The Gain of an Op-Amp can be set by simply connecting the right value of resistor across the pin +Rg (pin 8) and the pin –Rg (pin 1). Here I have connected a resistor of value 500Ω which will set the Op-Amp at a gain value of 100.

 

AD623 Block Diagram

The following figure shows the block diagram of AD623.

 

AD623 Block Diagram

AD623 Block Diagram

 

AD623 Circuit Diagram

The following is the circuit diagram to attenuate RF interference.

 

AD623 Circuit Diagram

AD623 Circuit Diagram

 

AD623 Package

The following diagram shows the AD623 package.

 

AD623 Package

AD623 Package

 

AD623 Specification

Product Attribute Attribute Value
Amplifier Type: INSTRUMENTATION AMPLIFIER
Manufacturer: Analog Devices Inc
Average Bias Current-Max (IIB): 0.0275 µA
Common-mode Reject Ratio-Min: 70 dB
Input Offset Current-Max (IIO): 0.0025 µA
Input Offset Voltage-Max: 650 µV
Length: 3 mm
Neg Supply Voltage Limit-Max: 6 V
Operating Temperature-Max: 85 °C
Supply Current-Max: 0.625 mA

 

AD623 Manufacturer

Analog Devices has built one of the longest standing, highest growth companies within the technology sector utilizing cultural pillars such as innovation, performance, and excellence. Acknowledged industry-wide as the world leader in data conversion and signal conditioning technology, Analog Devices serves over 100,000 customers, representing virtually all types of electronic equipment. Celebrating over 50 years as a leading global manufacturer of high-performance integrated circuits used in analog and digital signal processing applications, Analog Devices is headquartered in Norwood, Massachusetts, with design and manufacturing facilities throughout the world. Analog Devices' is included in the S&P 500 Index.

 

AD623 Datasheet

You can download AD623 datasheet from the link given below:

AD623 Datasheet

 

Using Warnings

Note: Please check their parameters and pin configuration before replacing them in your circuit.

 

AD623 FAQ

What is AD623?

The AD623 is an integrated, single- or dual-supply instrumentation amplifier that delivers rail-to-rail output swing using supply voltages from 2.7 V to 12 V. The AD623 has a wide input common-mode range and amplifies signals with common-mode voltages as low as 150 mV below ground.

 

What is the use of instrumentation amplifier?

An instrumentation amplifier is used to amplify very low-level signals, rejecting noise and interference signals. Examples can be heartbeats, blood pressure, temperature, earthquakes and so on. Therefore, the essential characteristics of a good instrumentation amplifier are as follows.

 

What are the basic requirements of a good instrumentation amplifier?

The instrumentation amplifier is intended for precise, low-level signal amplification where high input resistance, low noise and accurate closed-loop gain is required. Also, low power consumption, high slew rate and high common-mode rejection ratio are desirable for good performance.

 

What is the common mode range of the ad623?

The AD623 has a wide input common-mode range and amplifies signals with common-mode voltages as low as 150 mV below ground. The AD623 maintains optimal performance with dual and single polarity power supplies.

 

Is there an external resistor for the ad623?

The AD623 offers user flexibility by allowing single gain set resistor programming and by conforming to the 8-lead industry standard pinout configuration. With no external resistor, the AD623 is configured for unity gain (G = 1), and with an external resistor, the AD623 can be programmed for gains of up to 1000.

 

PCB Symbol, Footprint & 3D Model

 

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