Bengaluru, India

Bhavana Muralikrishna


Average Co-Inventor Count = 4.0

ph-index = 2

Forward Citations = 4(Granted Patents)


Company Filing History:


Years Active: 2021-2023

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3 patents (USPTO):Explore Patents

Title: Bhavana Muralikrishna: Pioneering Innovations in Digital Processing

Introduction

Bhavana Muralikrishna is an inventive force based in Bengaluru, India, contributing significantly to the fields of digital communications and image processing. With a commendable portfolio of three patents, her work is pivotal in advancing technology in these domains.

Latest Patents

Among her most recent patents is the "Configurable Non-Linear Filter for Digital Pre-Distortion," which describes a radio frequency communication system inclusive of a transmitter that generates an RF transmit signal. This system features a digital pre-distortion system (DPD) characterized by a configurable non-linear filter, enabling enhanced performance for transmitting signals. Additionally, she has developed a patent for "Image Scaling," which outlines a video processor designed to efficiently handle image data by dividing it into multiple vertical slices and scaling each slice according to advanced algorithms, ultimately producing a cohesive, high-quality output image.

Career Highlights

Bhavana is currently associated with Analog Devices International Unlimited Company, where she utilizes her expertise to facilitate innovation in digital processing technology. Her career is marked by a commitment to advancing the technical landscape of her field, evidenced by her impressive patent contributions.

Collaborations

Throughout her career, Bhavana has collaborated with talented individuals such as Anand Venkitasubramani and Shreeja Sugathan. Their joint efforts underscore the importance of teamwork and diverse expertise in fostering innovation and developing cutting-edge solutions.

Conclusion

Bhavana Muralikrishna's contributions to digital processing and communications exemplify the spirit of innovation. With her continued pursuit of excellence, she is sure to remain a key figure in her field, inspiring future advancements that enhance technology for various applications.

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