• 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

18-Bit, 8-Channel Multiplexed SAR ADC with Independently Configurable Input Ranges

February 23, 2016 By Andrew Zistler Leave a Comment

adsfasdfLinear Technology Corporation introduces the LTC2335-18, an 18-bit, 8-channel 1Msps multiplexed input successive approximation register (SAR) ADC with independently configurable input ranges. Each SoftSpan™ input can be software configured on a conversion-by-conversion basis to accept ±10.24V, 0V to 10.24V, ±5.12V or 0V to 5.12V true bipolar input signals. The on-chip sequencer allows the LTC2335-18 to be programmed to cycle through a sequence of channels and ranges without further user intervention. The differential analog inputs operate over a wide -16.5V to 34V input common mode range, allowing the ADC to directly digitize a variety of signals to simplify signal-chain design. The input signal flexibility, combined with unrivaled 96.7dB SNR and 1Msps throughput, makes the LTC2335-18 ideal for high performance industrial process control, test and measurement, power line monitoring and instrumentation applications.

The LTC2335-18 features a precision internal reference with 20ppm/°C maximum temperature coefficient and an integrated reference buffer capable of accurate one-shot measurements, providing space savings in densely packed circuit boards. Optionally, an external 5V reference may be used to expand the analog input range to ±12.5V. The device dissipates 180mW when converting at 1Msps, and features nap and power-down modes to reduce power dissipation at slower throughputs.

The LTC2335-18 features pin-selectable SPI CMOS and LVDS serial interfaces. The wide digital output supply range allows the device to communicate with any CMOS logic between 1.8V and 5V. The serial LVDS mode offers low noise, high speed communications over greater distances using differential signaling. Together, these I/O interface options enable the LTC2335-18 to communicate equally well with legacy microcontrollers and modern FPGAs.

Linear Technology
linear.com

Filed Under: Tools Tagged With: lineartechnology

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: Sensors
In this Tech Toolbox, we cover some of those technologies driving the next generation of connected systems, including ultra-low-power sensing strategies that extend node battery life, and 60 GHz CMOS radar for contactless health and presence detection.

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

  • Understanding simple driver schematic
  • Calculating the ripple current for a capacitor in a vfd
  • I2C Read rules
  • Python script for SPI bridge
  • May I ask: Is it possible to encounter such issues or customer demands as below in reality?

RSS Current Electro-Tech-Online.com Discussions

  • Using capacitance meter to fix broken cables
  • Why aren’t the power windows in my 2006 Volkswagen Polo 2006 working despite repairing the control unit circuit board?
  • Relay question
  • Battery discharger
  • Difference between TTL, RS232 and RS485
“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