Apalachin, NY, United States of America

Mark Jonathan Erickson


Average Co-Inventor Count = 6.0

ph-index = 1

Forward Citations = 10(Granted Patents)


Company Filing History:


Years Active: 2002

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1 patent (USPTO):Explore Patents

Title: **Mark Jonathan Erickson: Innovator in Electronic Assembly Technology**

Introduction

Mark Jonathan Erickson is an accomplished inventor based in Apalachin, NY. He holds a patent that enhances efficiency in electronic assembly machines. Mark's innovative approach contributes significantly to the manufacturing sector, emphasizing the importance of modern technology in everyday applications.

Latest Patents

Mark's notable patent is for a "Multiple Index Tape Feeder and Method." This invention is designed for use with electronic assembly machines. The feeder uniquely presents multiple electronic components in a pick-up zone, allowing a pick-up head with several spindles to access them simultaneously. This system increases the effective feed rate of electronic components while minimizing the waiting time for the pick-up head, thereby enhancing the productivity of assembly lines.

Career Highlights

Currently, Mark is associated with Delaware Capital Formation, Inc., where he continues to innovate and develop solutions that optimize electronic assembly processes. His contributions are vital for improving output efficiency and enhancing manufacturing capabilities in the industry.

Collaborations

Throughout his career, Mark has worked alongside talented professionals, including Damon Scott Ashman and Charles Andrew Coots. These collaborations exemplify the collective effort in developing innovative technologies that can lead to more efficient manufacturing processes.

Conclusion

Mark Jonathan Erickson stands out as a significant figure in the realm of electronic assembly innovations. His patented multiple index tape feeder represents a crucial advancement that helps streamline production. As technology continues to evolve, inventors like Mark will play an essential role in shaping the future of manufacturing processes.

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