This inventor holds 2 USPTO granted patents. Top assignee: Rockwell Collins, Inc.. Active years: 2023.
Company Filing History:
Years Active: 2023
Title: Jenny Calubayan: Innovator in Electronic Substrate Technologies
Introduction
Jenny Calubayan is a prominent inventor based in Cedar Rapids, IA (US). She has made significant contributions to the field of electronic substrates, holding 2 patents that showcase her innovative approach to technology.
Latest Patents
Her latest patents include "Maskless etching of electronic substrates via precision dispense process" and "Custom photolithography masking via precision dispense process." The first patent discloses systems and methods for selectively etching features in an electronic substrate using a precision dispense apparatus. This method involves creating toolpath instructions for etching features, programming the apparatus to execute these instructions, and depositing etchant material onto the substrate surface. The capabilities of this system extend to 3D substrates and post-build processing. The second patent focuses on custom photolithography masking, detailing methods for depositing opaque material onto a substrate to form a photomask. This process can be applied to optically transparent plates or electronic substrates, enhancing the versatility of photolithography techniques.
Career Highlights
Jenny Calubayan is currently employed at Rockwell Collins, Inc., where she continues to develop innovative solutions in electronic substrate technologies. Her work has positioned her as a key player in advancing the capabilities of precision dispense processes.
Collaborations
Some of her notable coworkers include Kyle B Snyder and Nathaniel P Wyckoff, who contribute to the collaborative environment that fosters innovation at Rockwell Collins, Inc.
Conclusion
Jenny Calubayan's contributions to electronic substrate technologies through her patents and work at Rockwell Collins, Inc. highlight her role as a leading inventor in her field. Her innovative methods are paving the way for advancements in precision dispense processes and photolithography.
