Saugus, CA, United States of America

Mackenzie A Jackson

USPTO Granted Patents = 1 

 

Average Co-Inventor Count = 3.0

ph-index = 1


Company Filing History:


Years Active: 2020

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1 patent (USPTO):Explore Patents

Title: Innovations by Mackenzie A. Jackson: Adaptive Cooling Solutions

Introduction

Mackenzie A. Jackson, an innovative inventor based in Saugus, California, has made significant contributions to the field of cooling lubrication systems. With one patent to her name, she has showcased her inventive prowess and commitment to advancing technological solutions in manufacturing processes.

Latest Patents

Mackenzie A. Jackson holds a patent for an "Adaptive R744 Minimum Quantity Cooling Lubrication System." This invention presents a unique method and apparatus designed to cool through-ported cutting tools using a source of liquid carbon dioxide (CO2) and a compressed air line. The system features multiple CO2 injection capillary segments that are interconnected to the same source of liquid CO2 and can include high-pressure valves and throttles of varying sizes. The innovative design ensures uniform and controlled cooling of the cutting tool within a specific temperature range by regulating the sequence of valve operations, thus optimizing performance in machining processes.

Career Highlights

Mackenzie A. Jackson is employed at Hitachi High-Tech Corporation, where she is involved in enhancing cutting-edge technology. Her expertise in the field has allowed her to develop innovative solutions that have beneficial implications for manufacturing efficiency and effectiveness.

Collaborations

Throughout her career, Mackenzie has collaborated with talented coworkers, including David P. Jackson and John J. Lee. These partnerships have enabled her to leverage diverse insights and skills, further enhancing her inventive contributions.

Conclusion

Mackenzie A. Jackson's journey as an inventor exemplifies the impact that innovative cooling solutions can have in the industrial landscape. Her patent for the adaptive cooling lubrication system not only highlights her creativity and technical ability but also sets a precedent for future advancements in the field. As she continues to develop her work at Hitachi High-Tech Corporation, the potential for further innovations remains promising.

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