Murphy, TX, United States of America

Shailendra Kumar Baranwal

USPTO Granted Patents = 17 

Average Co-Inventor Count = 2.9

ph-index = 3

Forward Citations = 26(Granted Patents)


Location History:

  • Bengaluru, IN (2013)
  • Richardson, TX (US) (2018 - 2020)
  • Murphy, TX (US) (2016 - 2023)

Company Filing History:


Years Active: 2013-2025

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17 patents (USPTO):

Title: Innovations of Shailendra Kumar Baranwal

Introduction

Shailendra Kumar Baranwal is a prominent inventor based in Murphy, Texas. He has made significant contributions to the field of audio amplification technology, holding a total of 17 patents. His work focuses on enhancing the performance and efficiency of audio amplifiers, which are crucial in various electronic devices.

Latest Patents

Among his latest patents is a system for maximum power detection and automatic gain control for capacitive class-D amplifiers. This innovative system includes a charge pump that increases voltage levels, an amplifier that processes input signals, and a maximum power detector that ensures optimal output levels. Another notable patent is for a current limit for charge pump boost driven class D audio amplifiers. This invention features an audio amplifier circuit that integrates a differential amplifier, a multiplexer, and a driver circuit to manage audio input effectively while maintaining current limits.

Career Highlights

Shailendra Kumar Baranwal is currently employed at Texas Instruments Corporation, a leading company in semiconductor technology. His work at Texas Instruments has allowed him to develop cutting-edge audio amplification solutions that are widely used in consumer electronics.

Collaborations

He has collaborated with notable coworkers such as Yogesh Kumar Ramadass and Yinglai Xia, contributing to the advancement of audio technology through teamwork and shared expertise.

Conclusion

Shailendra Kumar Baranwal's innovative patents and contributions to audio amplification technology highlight his role as a leading inventor in the field. His work continues to influence the development of efficient audio systems in modern electronics.

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