Milton, MA, United States of America

Matthew J Crowley

USPTO Granted Patents = 2 

Average Co-Inventor Count = 6.0

ph-index = 1

Forward Citations = 5(Granted Patents)


Company Filing History:


Years Active: 2011

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2 patents (USPTO):Explore Patents

Title: Inventor Spotlight: Matthew J Crowley

Introduction

Matthew J Crowley, based in Milton, MA, is an accomplished inventor with a significant contribution to the field of timing oscillators. With two patents to his name, Crowley's innovations have paved the way for enhanced performance in electronic devices.

Latest Patents

Matthew J Crowley's latest patents focus on timing oscillators and related methods. These timing oscillators comprise a mechanical resonating structure featuring major and minor elements that are coupled together. The oscillator is designed to generate stable signals with low phase noise at very high frequencies, making it effective for use in numerous devices, including computers and mobile phones. This innovation plays a crucial role in time and data synchronization processes. Furthermore, the signal produced can be fine-tuned with the help of a driver circuit and a compensation circuit, showcasing the versatility of Crowley's designs.

Career Highlights

Matthew J Crowley is currently associated with Sand 9, Inc., where he contributes his expertise in the development of timing solutions. His work focuses on enhancing the performance of timing oscillators, thereby driving advancements in various technological applications.

Collaborations

Throughout his career, Crowley has collaborated with notable professionals such as Pritiraj Mohanty and Klaus Juergen Schoepf. These partnerships have enabled him to refine his inventions and push the boundaries of technology further.

Conclusion

Matthew J Crowley's contributions to the field of timing oscillators have made him a significant figure in the innovation landscape. His work at Sand 9, Inc. exemplifies the power of collaboration and creativity in advancing technology, particularly in improving the synchronization capabilities of electronic devices.

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