Santa Clara, CA, United States of America

Satbir Madra


Average Co-Inventor Count = 3.7

ph-index = 1

Forward Citations = 3(Granted Patents)


Company Filing History:


Years Active: 2016

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2 patents (USPTO):Explore Patents

Title: The Innovative Contributions of Satbir Madra

Introduction

Satbir Madra is a notable inventor based in Santa Clara, CA, who has made significant contributions to the field of semiconductor technology. With a total of 2 patents to his name, Madra's work focuses on enhancing the reliability and efficiency of semiconductor packages.

Latest Patents

Madra's latest patents include innovative designs for embedded die packages and semiconductor package devices. The first patent, titled "Embedded die redistribution layers for active device," describes packages that utilize substrate redistribution layers (RDL) to route electrode nodes and facilitate current redistribution. This design incorporates an integrated circuit die embedded in a copper core substrate, allowing for efficient electrical interconnections through thermal vias. The second patent, "Sacrificial pad on semiconductor package device and method," outlines a semiconductor package device that includes sacrificial contact pads to reduce stress and enhance board-level reliability. This device features a lead frame substrate and an encapsulation layer that protects the integrated circuit device.

Career Highlights

Satbir Madra is currently employed at Maxim Integrated Products, Inc., where he continues to innovate in the semiconductor industry. His work has contributed to advancements in electronic devices and fabrication methods, showcasing his expertise in the field.

Collaborations

Madra has collaborated with talented coworkers such as Kumar Nagarajan and Xiansong Chen, further enhancing the innovative environment at Maxim Integrated Products, Inc.

Conclusion

Satbir Madra's contributions to semiconductor technology through his patents and collaborative efforts highlight his role as a key innovator in the industry. His work continues to influence the development of reliable and efficient electronic devices.

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