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AD823 Amplifier: Datasheet, Pinout, Circuit [FAQ]

  • Contents

Product Overview

The AD823 is a dual precision, 16 MHz, JFET input op amp  that can operate from a single supply of 3.0 V to 36 V or from dual supplies of ±1.5 V to ±18 V. It has true single-supply capability with an input voltage range  extending below ground in single-supply mode. Output voltage swing  extends to within 50 mV of each rail for IOUT ≤ 100 μA, providing outstanding output dynamic range.

 

An offset voltage of 800 μV maximum, an offset voltage drift  of 2 μV/°C, input bias currents  below 25 pA, and low input voltage noise  provide dc precision with source impedances  up to a Gigaohm. It provides 16 MHz, −3 dB bandwidth, −108 dB THD @ 20 kHz, and a 22 V/μs slew rate with a low supply current of 2.6 mA per amplifier. The AD823 drives up to 500 pF of direct capacitive load as a follower and provides an output current of 15 mA, 0.5 V from the supply rails. This allows the amplifier to handle a wide range of load conditions.

 

This blog will introduce AD823 systematically from its features, pinout to its specifications, applications, also including AD823 datasheet and so much more.

 

Catalog

Product Overview

AD823 Features

AD823 Pinout

AD823 Applications

AD823 Circuit Diagram

AD823 Package

AD823 Specification

AD823 Manufacturer

AD823 Datasheet

Using Warnings

AD823 FAQ

 

AD823 Features

Single-supply operation

  • Output swings rail-to-rail
  • Input voltage range extends below ground
  • Single-supply capability from 3 V to 36 V

High load drive

  • Capacitive load drive of 500 pF, G = +1
  • Output current of 15 mA, 0.5 V from supplies

Excellent ac performance on 2.6 mA/amplifier

  • −3 dB bandwidth of 16 MHz, G = +1
  • 350 ns settling time to 0.01% (2 V step)
  • Slew rate of 22 V/µs

Good dc performance

  • 800 µV maximum input offset voltage
  • 2 µV/°C offset voltage drift 
  • 25 pA maximum input bias current

Low distortion: −108 dBc worst harmonic @ 20 kHz

Low noise: 16 nV/√Hz @ 10 kHz

No phase inversion with inputs to the supply rails

 

AD823 Pinout

The following figure is the diagram of AD823 pinout.

 

AD823 Pinout

AD823 Pinout

 

AD823 Applications

  • Battery-powered precision instrumentation
  • Photodiode preamps
  • Active filters
  • 12-bit to 16-bit data acquisition systems
  • Medical instrumentation

 

AD823 Circuit Diagram

The followings are the circuit diagrams of AD823.

 

Simplified Schematic

Simplified Schematic

 

Small Signal Schematic

Small Signal Schematic

 

Second-Order  Low-Pass Filter 

Second-Order  Low-Pass Filter 

 

AD823 Package

The following diagram shows the AD823 package.

 

AD823 Package

AD823 Package

 

AD823 Specification

Manufacturer: Analog Devices Inc
Operating Temperature-Max: 85 °C
Operating Temperature-Min:  -40 °C
Supply Voltage-Max (Vsup): 3.5 V
Supply Voltage-Min (Vsup): 2 V
Supply Voltage-Nom (Vsup): 3 V
Terminal Pitch: 0.5 mm
Time@Peak Reflow Temperature-Max (s): 30
Peak Reflow Temperature (Cel): 260
Seated Height-Max: 0.8 mm

 

AD823 Manufacturer

Analog Devices, Inc. (ADI), also known simply as Analog, is an American multinational semiconductor company specializing in data conversion, signal processing and power management technology, headquartered in Wilmington, Massachusetts. The company manufactures analog, mixed-signal and digital signal processing (DSP) integrated circuits (ICs) used in electronic equipment. These technologies are used to convert, condition and process real-world phenomena, such as light, sound, temperature, motion, and pressure into electrical signals.

 

AD823 Datasheet

You can download AD823 datasheet from the link given below:

AD823 Datasheet

 

Using Warnings

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

 

AD823 FAQ

What are the input modes of op amp?

These modes are single-ended, double-ended or differential, and common. Since the differential amplifier is the input stage of the op-amp, the op-amp exhibits the same modes.

 

Do op amps have input impedance?

The input impedance of an op amp is the impedance that is seen by the driving device. The lower the input impedance of the op amp, the greater is the amount of current that must be supplied by the signal source.

 

What application of op amp works in amplifier mode?

Operational amplifiers are linear devices that have all the properties required for nearly ideal DC amplification and are therefore used extensively in signal conditioning, filtering or to perform mathematical operations such as add, subtract, integration and differentiation.

 

Why does op-amp have high input impedance?

Op amps need high input impedance because they are voltage-gain devices. In order for voltage to drop across the input, the impedance has to be very high, as ohm's law states, V=IR. It's also important to prevent the loading effect. If the impedance were small, the current draw would be high.

 

What is the difference between op amp and amplifier?

Amplifiers can be either electronic or mechanical in common definition whereas operational amplifiers are electronic amplifiers. Amplifiers, in general, have a limited capability of amplifying DC signals but all op-amps are capable of amplifying DC signals.

PCB Symbol, Footprint & 3D Model

 

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