ADA4807-2

RECOMMENDED FOR NEW DESIGNS

3.1 nV/√Hz, 1 mA, 180 MHz, Rail-to-Rail Input/Output Amplifier

Part Models
4
1ku List Price
Starting From $2.07

Part Details

  • Low Noise
    3.1 nV/√Hz at 100 kHz
    0.7 pA/√Hz at 100 kHz
  • Low Distortion (HD2/HD3)
    -141/-144 dBc at 1 kHz
    -112/-115 dBc at 100 kHz
    -84/-79 dBc at 1 MHz
  • High speed performance
    -3dB bandwidth: 180 MHz
    Slew Rate: 225 V/µs
    0.1% Settling Time: 47 ns
  • Low input offset voltage and drift
    ±20 / ±125 µV (typical / max)
    0.7 / 3.7 µV/°C (typical / max)
  • Low input offset current and drift
    8 / 100 nA (typical / max)
    30 / 250 pA/°C (typical / max)
  • Rail-to-Rail Input and Output
  • Low quiescent current:
    Enabled: 1 mA at ±5V
    Disabled: 2.4 µA at ±5V
  • Wide supply range: 2.7V to 11V
  • Small Packaging:
    10-lead 3 mm x 3 mm LFCSP and8-lead MSOP
ADA4807-2

3.1 nV/√Hz, 1 mA, 180 MHz, Rail-to-Rail Input/Output Amplifier

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Documentation

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Software Resources

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Tools & Simulations

LTspice


Models for the following parts are available in LTspice:

  • ADA4807
  • ADA4807-1
  • ADA4807-2
  • ADA4807-4

Precision ADC Driver Tool

The Precision ADC Driver Tool is a web application that simulates the performance of precision ADC and driver combinations. Potential issues with driver selection, kickback settling, and distortion are flagged, and design tradeoffs can be quickly evaluated. Simulations and calculations include system noise, distortion, and settling of the ADC input

Open Tool

OpAmp Error Budget Calculator

An online tool to illustrate range, gain and accuracy issues with Op Amp.

Open Tool

Signal Chain Designer - BETA

Signal Chain Designer is a web-based tool designed to create and simulate complex precision signal chains. See your circuit’s performance before you commit to your PCB: transfer function, noise, power consumption, input range, and DC error. Quickly experiment with different parts and architectures. Signal chains can be exported to LTspice for further analysis.

Open Tool

Analog Filter Wizard

Use the Analog Filter Wizard to design low-pass, high-pass, or band-pass filters with actual op amps in minutes. As you progress through the design process, you can observe the characteristics of your filter design from ideal specifications to real world circuit behavior. Quickly evaluate the tradeoffs in op amp specifications - including gain-bandwidth, noise, and supply current – to determine the best filter design for your requirements.

Open Tool

SPICE Model 1

LTspice

LTspice® is a powerful, fast and free simulation software, schematic capture and waveform viewer with enhancements and models for improving the simulation of analog circuits.


Evaluation Kits

eval board
EVAL-AD7768-1

AD7768-1 Evaluation Board

Features and Benefits

  • Full featured evaluation board for the AD7768-1
  • PC control in conjunction with EVAL-SDP-CH1Z
  • PC software control and data analysis
  • Time and frequency domain
  • Standalone hardware capability

Product Details

The EV-AD7768-1FMCZ evaluation kit features the AD7768-1 24-bit, 256 kSPS analog-to-digital converter (ADC). The EVAD7768-1FMCZ board connects to the USB port of the PC via the EVAL-SDP-CH1Z motherboard. By default, power is supplied from the EVAL-SDP-CH1Z supply, which is regulated to 5 V and 3.3 V to supply the AD7768-1 and support components.

The EV-AD7768-1FMCZ software fully configures the AD7768-1 device register functionality and provides dc and ac time domain analysis in the form of waveform graphs, histograms, and associated noise analysis for ADC performance evaluation.

The EV-AD7768-1FMCZ is an evaluation board that allows the user to evaluate the features of the ADC. The user PC software executable controls the AD7768-1 over USB through the system demonstration platform (EVAL-SDP-CH1Z).

eval board
AMC-ADA4807-2ARMZ

Amplifier Mezzanine Card for ADA4807-2

Features and Benefits

  • Enables quick breadboarding and prototyping
  • User defined circuit configuration
  • Easy connection to other ADC evaluation boards

Product Details

The Analog Devices, Inc., amplifier mezzanine card (AMC) analog-to-digital converter (ADC) driver evaluates the performance of amplifiers in 8-lead, single and dual SOIC, 6-lead single SOT23, 8-lead dual MSOP, and 16-lead LFCSP packages. This add on board can be inserted on ADC evaluation boards using its 7-pin header. Figure 1 shows the AMC mounted on an Analog Devices, Inc., ADC evaluation board.

The AMC can support any of Analog Devices operational amplifiers and ADC drivers in different packages. The user can configure the ADC driver as a Sallen-Key low-pass, high-pass, or band-pass filter, as a multiple feedback low-pass, high-pass, or band-pass filter, or as an inverting and noninverting operational amplifier. The user can also configure the AMC to drive a single-ended, fully differential, or a single-ended signal to a differential ADC.

Optimized power and ground planes ensure low noise and high speed operation. Component placement and power supply bypassing are optimized for maximum circuit flexibility and performance. The AMC evaluation board accepts 0402 or 0603 surface mount technology (SMT) components, 1206 bypass capacitors, and 2.54 mm headers.

All components are placed on the primary side. No components are placed on the secondary side.

EVAL-AD7768-1
AD7768-1 Evaluation Board
AMC-ADA4807-2ARMZ
Amplifier Mezzanine Card for ADA4807-2

Reference Designs

Isolated Multichannel Data Acquisition Simplified Circuit
CN0385 Circuits from the lab

Isolated, Multichannel Data Acquisition System with PGIA for Single-Ended and Differential Industrial Level Signals

Features and Benefits

  • Multichannel Isolated Data Acquisition System
  • Industrial Signal Levels
  • 18-bit, 2MSPS Conversion
  • 750kHz Channel Switching Rate

Condition-Based Monitoring Signal Chain for an IEPE Piezoelectric Vibration Sensor
CN0540 Circuits from the lab

24-Bit Data Acquisition System for IEPE Sensors

Features and Benefits

  • IEPE compatible data acquisition system
  • Piezo and MEMs sensors
  • 54 kHz analog input bandwidth
  • Arduino form factor compatible

Part Used


Resources


Design & Integration Tools


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Figure 1. CN0579 Simplified Block Diagram
CN0579 Circuits from the lab

Quad-Channel IEPE Vibration Sensor Measurement System

Features and Benefits

  • Quad Channel IEPE-Compatible Vibration Sensor Interface
  • Channel Independent Excitation Source and Sensor Bias Removal Circuitry
  • Analog Overvoltage and Undervoltage Protection
  • Sensor Frequency Response from DC up to 54 kHz
  • Synchronized, Full Bandwidth Data Measurement and Capture
CN0385
Isolated, Multichannel Data Acquisition System with PGIA for Single-Ended and Differential Industrial Level Signals
CN0540
24-Bit Data Acquisition System for IEPE Sensors
CN0579
Quad-Channel IEPE Vibration Sensor Measurement System

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