Battery Power Tips

  • Home
  • Markets & Applications
    • Automotive
    • Aerospace & Defense
    • Energy Management & Harvesting
    • Industrial
    • IoT
    • Medical
    • Renewables & Grid Connected
    • Robotics
    • Stationary Power
    • Wearables
  • Learn
    • eBooks/Tech Tips
    • EE Training Days
    • FAQs
    • Learning Center
    • Tech Toolboxes
    • Webinars & Digital Events
  • R&D
  • Resources
    • Design Guide Library
    • Digital Issues
    • Engineering Diversity & Inclusion
    • LEAP Awards
    • White Papers
  • Engineering Training Days
  • Advertise
  • Subscribe

Boost converter, LDO ICs feature supe-low quiescent currents

By Redding Traiger | March 16, 2021

Designers can now extend battery life and reduce the solution size of consumer, industrial, healthcare, and IoT systems with three new Essential Analog ICs from Maxim Integrated Products, Inc. The MAX17227A 2A nano power boost converter, the MAX17291 high voltage, 1A boost converter, and the MAX38911 500mA LDO all provide the lowest quiescent current among competitive solutions to improve system efficiency and increase battery life.

Next-generation systems must provide higher currents from small batteries to support advanced applications such as drug delivery, sensing, machine learning, and artificial intelligence. Device limitations force developers into tradeoffs that either constrain functionality, shorten battery life or increase solution size. Three new Efficient Power ICs from Maxim’s Essential Analog portfolio help ease these tradeoffs with both industry-leading lowest quiescent current and smallest solution size.

MAX17227A: For battery-operated consumer accessories, IoT, and medical wearable systems that need to boost power, the MAX17227A delivers the highest output power and the lowest quiescent current.  It handles up to 2A switch current, twice that of the closest competitive solution.  And it consumes half the quiescent current, at just 350nA.  This nano power boost converter features short-circuit protection, true shutdown, and an input voltage range from 400mV to 5.5V, and it can extend the battery system life up to 10 percent.

MAX17291: Delivering a high voltage boost up to 20V, the MAX17291 offers a quiescent current that is 80 percent lower and a solution size that is 60 percent smaller than the closest competitive offerings. Delivering up to 10X voltage conversion, this boost converter fits battery-operated systems with higher output voltage loads such as industrial energy hold-up, displays, or sensors.

MAX38911: Up to 50 percent smaller than competitive solutions, the MAX38911 500mV LDO for battery-operated IoT systems draws only 19µA during idle mode to extend battery life up to 10 percent. It also has the industry’s best power supply rejection ratio (PSRR) at a level of 16dB better than the closest competitor, thus helping prevent noisy power supplies from interfering with critical functions such as precise measurements and communications.

Key Advantages include:

Longest Battery Life: All three ICs are part of Maxim’s Efficient Power portfolio and lead the industry with the lowest quiescent current

Smallest Size: Up to 50 percent smaller than the closest competitive solutions

High Reliability: Features such as short-circuit protection and high PSRR help IoT systems overcome disruptions in harsh environments

The MAX17227A is available at Maxim Integrated’s website for $0.86 (1000-up, FOB USA); also available from authorized distributors. The MAX17291 is available at Maxim Integrated’s website for $0.74 (1000-up, FOB USA); also available from authorized distributors. The MAX38911 is available at Maxim Integrated’s website for $0.67 (1000-up, FOB USA); also available from authorized distributors. The MAX17227AEVKIT# evaluation kit is available for $69.99. The MAX17291EVKIT# evaluation kit is available for $69.99. The MAX389111EVKIT# evaluation kit is available for $69.99. EE-Sim models are available for the MAX17227A and MAX17291


Filed Under: Applications, Battery Management, Wearables
Tagged With: maximintegratedproductsinc
 

Next Article

← Previous Article
Next Article →

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

Featured Contributions

  • Preparing for sodium-ion battery storage? Advanced simulation models can help
  • Q & A: why automation is essential for advancing EV battery manufacturing
  • Battery and charging innovations driving electrification
  • What is a lithium battery digital passport?
  • Battery testing: critical to the rise of electric vehicles
More Featured Contributions

EE TECH TOOLBOX

“ee
Tech Toolbox: Connectivity
AI and high-performance computing demand interconnects that can handle massive data throughput without bottlenecks. This Tech Toolbox explores the connector technologies enabling ML systems, from high-speed board-to-board and PCIe interfaces to in-package optical interconnects and twin-axial assemblies.

EE LEARNING CENTER

EE Learning Center

ENGINEERING TRAINING DAYS

engineering

RSS Current EDABoard.com discussions

“bills
Battery Power Tips
  • EE World Online
  • Design World
  • Medical Design & Outsourcing
  • Solar Power World
  • The Robot Report
  • Contact
  • Sign Up Enews

Copyright © 2026 WTWH Media LLC. 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 | Advertising | About Us

Search Battery Power Tips

  • Home
  • Markets & Applications
    • Automotive
    • Aerospace & Defense
    • Energy Management & Harvesting
    • Industrial
    • IoT
    • Medical
    • Renewables & Grid Connected
    • Robotics
    • Stationary Power
    • Wearables
  • Learn
    • eBooks/Tech Tips
    • EE Training Days
    • FAQs
    • Learning Center
    • Tech Toolboxes
    • Webinars & Digital Events
  • R&D
  • Resources
    • Design Guide Library
    • Digital Issues
    • Engineering Diversity & Inclusion
    • LEAP Awards
    • White Papers
  • Engineering Training Days
  • Advertise
  • Subscribe