Loveland, CO, United States of America

Jason Keim


Average Co-Inventor Count = 2.0

ph-index = 1


Company Filing History:


Years Active: 2018

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1 patent (USPTO):Explore Patents

Title: **Inventor Jason Keim: Innovating Turbocharger Control Systems**

Introduction

Jason Keim is a notable inventor based in Loveland, Colorado, who has made significant strides in turbocharger technology. With one patent to his name, he demonstrates a commitment to innovation in the automotive sector, particularly focusing on enhancing engine performance through advanced control systems.

Latest Patents

Jason's patent, titled "Compressor Map Based Driven Turbocharger Control System," provides an innovative engine system and method. This system utilizes a compressor map to intelligently control the speed of a driven turbocharger. By determining a desired compressor speed that corresponds to boost pressure and mass flow rate from the compressor map, the system shifts the transmission of the turbocharger to maintain optimal performance. This results in providing the necessary boost pressure and airflow to enhance engine efficiency.

Career Highlights

Currently, Jason is associated with Superturbo Technologies, Inc., where he continues to develop groundbreaking solutions for turbocharging systems. His expertise in this niche area has positioned him as a valuable contributor to the company and the automotive engineering field.

Collaborations

In his role, Jason works alongside talented colleagues, including Jared William Brown, showcasing the collaborative environment that fosters innovation at Superturbo Technologies, Inc. Together, they strive to push the boundaries of turbocharging technologies and contribute to advancements in engine systems.

Conclusion

With his patent and ongoing work, Jason Keim represents the innovative spirit of engineers and inventors in today's automotive landscape. His contributions to turbocharger control systems not only enhance engine efficiency but also reflect the broader commitment to sustainability and performance in vehicle design.

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