Novato, CA, United States of America

Philip Litwak


Average Co-Inventor Count = 4.8

ph-index = 5

Forward Citations = 336(Granted Patents)


Company Filing History:


Years Active: 1984-1999

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5 patents (USPTO):Explore Patents

Title: The Innovations of Philip Litwak: Pioneering Muscle-Powered Solutions

Introduction

Philip Litwak is an innovative inventor based in Novato, CA, recognized for his impactful contributions to the field of medical technologies. With a total of five patents to his name, he is developing solutions that promise to transform patient care.

Latest Patents

One of Litwak's most notable inventions is the "Step-down skeletal muscle energy conversion system." This invention provides a simple skeletal muscle linear pull energy converter that harnesses the maximal amount of muscle power for various implantable medical devices. This includes a full range of circulatory support devices, offering a completely implantable alternative to cardiac transplantation. The muscle-powered system enhances the quality of life for patients by eliminating the need for external batteries, transcutaneous energy transmission, and other electromechanical hardware.

Career Highlights

Litwak is currently associated with Thoratec Laboratories Corporation, a name synonymous with innovation in heart technologies and circulatory support. His work focuses on creating sustainable medical devices that align with patient needs and leverage the body's own capabilities.

Collaborations

Throughout his career, Philip Litwak has collaborated with notable colleagues such as Robert Joseph Harvey and Keith Evan Buck. These partnerships have enriched his research and development efforts, fostering a rich environment for innovation.

Conclusion

Philip Litwak's dedication to advancing medical technologies through innovative solutions is evident in his patents and collaborative efforts. With inventions like the Step-down skeletal muscle energy conversion system, he is paving the way for a future where patient care can be significantly enhanced through biomechanical innovations.

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