• Feedback
  • RSS Feed
  • Sitemap
Ommcom News
  • Home
  • Odisha
  • Nation
  • World
  • Sports
  • Business
  • Entertainment
  • Videos
  • Science & Tech
  • Photo Gallery
  • ଓଡ଼ିଆରେ ପଢନ୍ତୁ
No Result
View All Result
  • Home
  • Odisha
  • Nation
  • World
  • Sports
  • Business
  • Entertainment
  • Videos
  • Science & Tech
  • Photo Gallery
  • ଓଡ଼ିଆରେ ପଢନ୍ତୁ
No Result
View All Result
Odisha News, Odisha Breaking News, Odisha Latest News || Ommcom News
Home Science & Tech

IIT Researchers Develop Neuromorphic Hardware With Magnetic Materials

OMMCOM NEWS by OMMCOM NEWS
March 2, 2023
in Science & Tech

New Delhi: A team of researchers from the Indian Institutes of Technology (IIT) Delhi and Bombay built a new neuromorphic hardware using magnetic materials.

While interactive voice assistants like Alexa and Siri have made it very easy to obtain a response to a query or get some tasks done online, the procedure in the background is quite intricate.

It involves delivering the speech data to the cloud over the internet, processing the data in the cloud, and then providing the response to the device.

But due to slow internet speed, power outages, and other factors, speech data is frequently lost. This may change with the advent of neuromorphic computing, where local hardware with built-in memory executes all operations, hence preventing data loss while simultaneously reducing power consumption.

The new neuromorphic hardware developed using magnetic materials is capable of storing data even when the power is off. It functions similar to a synapse in the neurological system, said the research team led by Prof. Pranaba Kishor Muduli at IIT Delhi and Prof. Debanjan Bhowmik at IIT Bombay.

This is the first experimental demonstration of a neuromorphic device using magnetic materials from India, according to the researchers. They detailed their device in the ACS Applied Electronic Materials journal.

“We have high hopes that the study contributes significantly to both the India Semiconductor mission as well as Make-in-India mission of the government of India,” said Prof Pranaba Kishor Muduli, Department of Physics, IIT Delhi, in a statement.

The device consists of an ultrathin layer of cobalt. Thickness of the layer used is in the nano-metre range, which is 80,000-100,000 times smaller than human hair. The fabrication needs enormous precision; hence it is carried out in an ultra-high vacuum chamber containing nearly no air molecules, the team said.

 (IANS)

Tags: Indian Institutes of Technology
ShareTweetSendSharePinShareSend
Previous Post

Pune Bypolls: Congress’s Ravindra Dhangekar Wins Kasbapeth, BJP Leads Chinchwad

Next Post

ED Arrests Liquor Businessman In Delhi Excise Policy Scam

Related Posts

Science & Tech

New AI Tool Analyses DNA For Faster, Affordable Cancer Monitoring

June 14, 2025
Science & Tech

Elon Musk Recommends Deorbiting International Space Station Within 2 Years

June 13, 2025
Nation

Bad weather delays Shubhanshu Shukla’s flight to ISS to Wednesday: ISRO

June 9, 2025
Cyberattacks
Science & Tech

72 Pc Indian Firms Hit By AI-Powered Cyberattacks In Past Year: Report

June 8, 2025
DRDO
Science & Tech

DRDO Transfers 9 Technologies To Industrial Firms For Production Of Defence Vehicles

June 8, 2025
WWDC 2025
Science & Tech

WWDC 2025: Apple To Cover A Lot Of Ground Around Operating System, AI Upgrades

June 7, 2025
Next Post

ED Arrests Liquor Businessman In Delhi Excise Policy Scam

Chief Minister Distributes 8K Bicycles To Community Partners Under Urban Initiatives

Former Chief Justice Of India AM Ahmadi Passes Away

  • Feedback
  • RSS Feed
  • Sitemap

© 2025 - Ommcom News. All Rights Reserved.

Welcome Back!

Login to your account below

Forgotten Password?

Retrieve your password

Please enter your username or email address to reset your password.

Log In

Add New Playlist

No Result
View All Result
  • Home
  • Odisha
  • Nation
  • World
  • Sports
  • Business
  • Entertainment
  • Videos
  • Science & Tech
  • Photo Gallery
  • ଓଡ଼ିଆରେ ପଢନ୍ତୁ

© 2025 - Ommcom News. All Rights Reserved.