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AD8226 Instrumentation Amplifiers: Pinout, Applications, Datasheet [Video&FAQ]

  • Contents

Product Overview

The AD8226 is a low cost, wide supply range instrumentation amplifier that requires only one external resistor to set any gain between 1 and 1000.

 

The AD8226 is designed to work with a variety of signal voltages. A wide input range and rail-to-rail output allow the signal to make full use of the supply rails. Because the input range also includes the ability to go below the negative supply, small signals near ground can be amplified without requiring dual supplies. The AD8226 operates on supplies ranging from ±1.35 V to ±18 V for dual supplies and 2.2 V to 36 V for single supply.

 

This blog will introduce AD8226 systematically from its features, pinout to its specifications, applications, also including AD8226 datasheet and so much more.

 

Catalog

Product Overview

Related Video Introduction

AD8226 Features

AD8226 Pinout

AD8226 Applications

AD8226 Circuit Diagram

AD8226 Package

AD8226 Specification

AD8226 Manufacturer

AD8226 Datasheet

Using Warnings

AD8226 FAQ

 

 

Video: Noise of an Instrumentation Amplifier Circuit

 

AD8226 Video Description: Analog Devices' Matt Duff calculates the total noise of a typical Instrumentation Amplifier (In Amp) circuit. The noise sources are: amplifier voltage noise, amplifier current noise, and sensor noise.

 

AD8226 Features

  • Gain set with 1 external resistor
  • Gain range: 1 to 1000
  • Input voltage goes below ground
  • Inputs protected beyond supplies
  • Very wide power supply range

 - Single supply: 2.2V to 36V

 - Dual supplies: ±1.35V to ±18V

  • Bandwidth (G = 1): 1.5MHz
  • CMRR (G = 1): 90dB minimum for BR models
  • Input noise: 22nV/√Hz
  • Typical supply current: 350μA
  • Specified temperature: −40°C to +125°C
  • 8-lead SOIC and MSOP packages

 

AD8226 Pinout

The following figure is the diagram of AD8226 pinout.

 

AD8226 Pinout

AD8226 Pinout

 

AD8226 Applications

  • Industrial process controls
  • Bridge amplifiers
  • Medical instrumentation
  • Portable data acquisition
  • Multichannel systems

 

AD8226 Circuit Diagram

The following is the circuit diagram of AD8226.

 

Simplified Schematic

Simplified Schematic

 

Supply Decoupling, REF, and Output Referred to Local Ground

Supply Decoupling, REF, and Output Referred to Local Ground

 

RFI Suppression

RFI Suppression

 

Driving an ADC

Driving an ADC

 

AD8226 Package

The following diagram shows the AD8226 package.

 

AD8226 Package

AD8226 Package

 

AD8226 Specification

Minimum Total Supply Voltage (Vs+ to Vs-) 2.2V
Maximum Total Supply Voltage (Vs+ to Vs-) 36V
Slew Rate (V/µs) 600mV/us
Short Circuit Current 13mA
Max Gain in V/V 1000V/V
Minimum Gain in V/V 1V/V
Bandwidth at min gain (typ) 1.5MHz
0.1 to 10 Hz Voltage Noise (typ) 400nV p-p
Bias Current Temperature Coefficient 70pA/°C
Min CMRR @ 60 Hz Min Gain 90dB
Min CMRR @ 60 Hz Max Gain 120dB
Current Noise Density 100fA/rtHz
Gain Control Interface Resistor
Ibias (max) 27nA
Vos (max) 50µV
Input Headroom from V+ (max) 800mV
Input Headroom from V- (max) -100mV
Output Headroom from V+ (max) 100mV
Output Headroom from V- (max) 100mV
Output Voltage Noise (typ) 120nV/rtHz
Gain Temperature Coefficent - Lowest Gain (max) 2ppm/°C
Gain Temperature Coefficent - Highest Gain (max) 1ppm/°C
Gain Error - Highest Gain (max) 0.001
Gain Error - Lowest Gain (max) 0.0001
Input Offset Current (max) 500pA
Input Offset Current Temperature Drift (typ) 5pA/°C
Iq/Amp (max) 425µA
Input Voltage Noise (typ) 22nV/rtHz
0.1 to 10 Hz Current Noise (typ) 3pA p-p
Offset temperature drift (max) 1µV/°C

 

AD8226 Manufacturer

Analog Devices (NASDAQ: ADI) is a world leader in the design, manufacture, and marketing of a broad portfolio of high performance analog, mixed-signal, and digital signal processing (DSP) integrated circuits (ICs) used in virtually all types of electronic equipment.

 

AD8226 Datasheet

You can download AD8226 datasheet from the link given below:

AD8226 Datasheet

 

Using Warnings

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

 

AD8226 FAQ

What are instrumentation amplifiers?

An instrumentation amplifier (sometimes shorthanded as in-amp or InAmp) is a type of differential amplifier that has been outfitted with input buffer amplifiers, which eliminate the need for input impedance matching and thus make the amplifier particularly suitable for use in measurement and test equipment.

 

Where are instrumentation amplifiers used?

These amplifiers are used in navigation, medical, radar, etc. These amplifiers are used to enhance the S/N ratio (signal to noise) in audio applications like audio signals with low amplitude.

 

What is the difference between operational amplifier and instrumentation amplifier?

Op amps have two inputs and one output. Instrumentation amps usually have three inputs (ref is an input) and a gain control facility, and one output. Differential amps usually have two outputs and usually two inputs.

 

What is the advantage of instrumentation amplifier?

The advantages of Instrumentation Amplifier are: Offset voltage is minimized. Voltage Gain is high as the configuration uses high precision resistors. The Gain of the circuit can be varied by using specific value of resistor.

 

How do instrumentation amplifiers work?

Instrumentation amplifier is a kind of differential amplifier with additional input buffer stages. The addition of input buffer stages makes it easy to match (impedance matching) the amplifier with the preceding stage. R3 connected from the output of A3 to its non inverting input is the feedback resistor.

PCB Symbol, Footprint & 3D Model

 

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