N. Franklin, CT, United States of America

Robert W Colby


Average Co-Inventor Count = 7.0

ph-index = 1


Company Filing History:


Years Active: 2014

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1 patent (USPTO):Explore Patents

Title: Innovator Spotlight: Robert W. Colby

Introduction: Robert W. Colby, based in N. Franklin, Connecticut, is a notable inventor with a patented innovation in the field of laser processing. With his expertise, Colby has contributed significantly to improving the efficiency of processing specimens, thereby enhancing overall yield.

Latest Patents: Colby's sole patent focuses on a method and system for tracking and marking specimens that exhibit defects formed during laser drilling. This invention addresses a critical challenge in laser processing by enabling the identification of defective specimens on a common substrate. The innovative approach allows the storage of a list of defective specimens within the laser processing system. Once processing is complete, the system promptly informs the operator of any improperly processed specimens, allowing for timely remediation through a software routine that marks the surface of each defective specimen using a laser.

Career Highlights: Robert W. Colby has made significant strides in his career, primarily as an inventor at Electro Scientific Industries, Inc. His dedication to research and innovation has positioned him as a key player in advancements related to laser technology and specimen processing.

Collaborations: Throughout his career, Colby has collaborated with talented professionals such as Michael Tyler and Jeffrey W. Leonard. These partnerships have enhanced his projects and facilitated the development of cutting-edge technologies in the field.

Conclusion: Robert W. Colby stands out as an inventive force in laser processing technology. His patent not only reflects his innovative spirit but also highlights the importance of collaboration in achieving remarkable technological advancements. As the industry evolves, Colby's contributions will continue to pave the way for improved methodologies in the processing of target materials.

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