Dallas, TX, United States of America

Brett A Mangrum


Average Co-Inventor Count = 1.4

ph-index = 2

Forward Citations = 22(Granted Patents)


Company Filing History:


Years Active: 2006-2013

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8 patents (USPTO):Explore Patents

Title: The Innovative Contributions of Brett A. Mangrum

Introduction

Brett A. Mangrum is a notable inventor based in Dallas, TX, with a significant portfolio of innovations. He holds 8 patents that showcase his expertise in the field of digital micromirror devices and MEMS technology. His work has contributed to advancements in optical performance and device functionality.

Latest Patents

Among his latest patents is a method for forming a mirror MEMS device. This invention includes an apparatus designed for use with a digital micromirror device, featuring a hinge layer that is strategically positioned outwardly from a substrate. The hinge layer supports a micromirror, which is capable of being manipulated for various applications. Another notable patent focuses on hinge design for enhanced optical performance in digital micro-mirror devices. This apparatus also utilizes a hinge that supports a micro-mirror, allowing it to transition between on-state and off-state positions, thereby improving the overall efficiency of the device.

Career Highlights

Brett A. Mangrum is currently employed at Texas Instruments Corporation, where he continues to innovate and develop cutting-edge technologies. His contributions have been instrumental in advancing the capabilities of digital micromirror devices, which are widely used in various applications, including projectors and displays.

Collaborations

Throughout his career, Brett has collaborated with talented individuals such as Clayton Lee Stevenson and John P. Ossenfort. These partnerships have fostered a creative environment that encourages the exchange of ideas and the development of groundbreaking technologies.

Conclusion

Brett A. Mangrum's work exemplifies the spirit of innovation in the field of MEMS technology. His patents and collaborations reflect a commitment to enhancing optical performance and device functionality. His contributions continue to shape the future of digital micromirror devices.

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