• Skip to primary navigation
  • Skip to main content
  • Skip to primary sidebar
  • Skip to footer

Analog IC Tips

Analog IC Design, Products, Tools Layout

  • Products
    • Amplifiers
    • Clocks & Timing
    • Data Converters
    • EMI/RFI
    • Interface & Isolation
    • MEMS & Sensors
  • Applications
    • Audio
    • Automotive/Transportation
    • Industrial
    • IoT
    • Medical
    • Telecommunications
    • Wireless
  • Learn
    • eBooks / Tech Tips
    • FAQs
    • EE Learning Center
    • EE Training Days
    • Tech Toolboxes
    • Webinars & Digital Events
  • Resources
    • Design Guide Library
    • Digital Issues
    • Engineering Diversity & Inclusion
    • LEAP Awards
    • Podcasts
    • White Papers
  • Video
    • EE Videos
    • Teardown Videos
  • EE Forums
    • EDABoard.com
    • Electro-Tech-Online.com
  • Engineering Training Days
  • Advertise
  • Subscribe

Precision signal chain platform optimizes system performance in DC to ~10 kHz applications

June 1, 2022 By Redding Traiger Leave a Comment

Analog Devices, Inc. introduced a precision narrow bandwidth signal chain platform that optimizes system performance for signal bandwidths of DC to approximately 10 kHz in industrial and instrumentation applications. The new platform offers a host of complete signal chains with customizable solution options and a curated suite of development tools to simplify the design journey. These range from simulation environments, such as LTspice, to design tools that delve into filter performance or power management to signal-chain-based evaluation systems leveraging decades of ADI experience and insight. The precision narrow bandwidth signal chains included with the platform feature precision and power management component selections that prioritize low-frequency design requirements, delivering excellent accuracy, stability, and resolution. These robust, repeatable, high-quality measurements drive solutions to enable designers to design with confidence and tackle the most demanding precision instrumentation challenges in areas such as source measurement units (SMU), digital multimeters (DMM), and data acquisition systems.

Examples of precision narrow bandwidth signal chain options provided with the platform include those that prioritize low latency and stability for measurement and control or selections that optimize noise and stability for voltage drive.  The stability and low latency signal chains lead to more reliable, faster end measurements ensuring closed-loop system setups can be reconfigured with minimal settling time and better test time efficiency. Tweaking for noise and stability creates voltage drive circuitry supporting highly accurate and extremely stable programmable voltage sources.

Precision Narrow Bandwidth Key Features include: 24-bit, no-missing-codes ADC performance maximizes resolution, delivering high accuracy for the complete signal chain with optimized gain setting and minimal settling time; Flexibility to optimize noise performance versus power at minimum latency means reuse of optimum layout and the circuitry can be used for multiple use cases with simple software updates; Measurement bandwidth from DC means stable and accurate closed-loop measurements across a range of low frequencies;

The AD4630-24 is available now for $30.95 per 1,000 units. The AD5791 is available now for $41.65/$71.04 per 1,000 units. The LTC6373 is available now for $5.76 per 1,000 units. And the LTC6655 is available now for $6.39 per 1,000 units.

You may also like:


  • What’s the difference between equalizers?

  • How does a precision rectifier work?

  • What causes noise in analog designs and how can it…
  • bandpass filters
    An overview of filters and their parameters, Part 1: Context
  • free space optical links
    Free-space optical links, Part 1: principles

Filed Under: Connectivity, Industrial, Products, Tools Tagged With: analogdevicesinc

Reader Interactions

Leave a Reply Cancel reply

You must be logged in to post a comment.

Primary Sidebar

Featured Contributions

High-Performance GPUs Are Located in a Variety of Environments, including Data Center Racks.

AI’s demand for faster, more reliable IC testing

Design a circuit for ultra-low power sensor applications

Active baluns bridge the microwave and digital worlds

Managing design complexity and global collaboration with IP-centric design

PCB design best practices for ECAD/MCAD collaboration

More Featured Contributions

EE TECH TOOLBOX

“ee
Tech Toolbox: Electronic Design Automation
This Tech ToolBox helps to clear the path to faster time-to-market by digging into AI-enhanced design, hardware-assisted verification, parasitic extractions, PCB-to-harness integration, and more.

EE LEARNING CENTER

EE Learning Center
“analog
EXPAND YOUR KNOWLEDGE AND STAY CONNECTED
Get the latest info on technologies, tools and strategies for EE professionals.

EE ENGINEERING TRAINING DAYS

engineering

RSS Current EDABoard.com discussions

  • 35 Year old discrete LVDT circuit
  • Microwave Kiln/Furnace
  • Best practices for resolving antenna DRC violations in TSMC 180MSRFG?
  • antiestatic strap
  • An Inverse-Class-F CMOS Oscillator With Intrinsic-High-Q First Harmonic and Second Harmonic Resonances

RSS Current Electro-Tech-Online.com Discussions

  • Fender rumble 100 base amp, power, light and overdrive light flash repeatedly when power turned on no output
  • Arduino standalone minimal
  • cpap change over circuit
  • Phone to op amp circuit?
  • Project boxes
“bills

Footer

Analog IC Tips

EE WORLD ONLINE NETWORK

  • 5G Technology World
  • EE World Online
  • Engineers Garage
  • Battery Power Tips
  • Connector Tips
  • EDA Board Forums
  • Electro Tech Online Forums
  • EV Engineering
  • Microcontroller Tips
  • Power Electronic Tips
  • Sensor Tips
  • Test and Measurement Tips

ANALOG IC TIPS

  • Subscribe to our newsletter
  • Advertise with us
  • Contact us
  • About us

Copyright © 2026 · WTWH Media LLC and its licensors. All rights reserved.
The material on this site may not be reproduced, distributed, transmitted, cached or otherwise used, except with the prior written permission of WTWH Media.

Privacy Policy