Company Filing History:
Years Active: 2020
Title: The Innovative Work of Inventor Kate Thurmer
Introduction: Kate Thurmer, an accomplished inventor based in Somerville, MA, has made noteworthy contributions to the field of digital imaging. With one patent to her name, her work is paving the way for advancements in imaging technology.
Latest Patents: Kate Thurmer's patent, titled "Methods for enabling in-field selection of near-sensor digital imaging functions," addresses the limitations encountered when pairing imaging devices with readout integrated circuits (ROIC). These circuits are typically custom-designed for specific applications, which restricts their operational modes and compatibility. Kate's innovation introduces a field programmable imaging array (FPIA) that integrates ROIC sensor interface circuitry with field programmable gate array (FPGA) technology. This allows for post-fabrication adjustments to the operational modes of ROIC, thereby enhancing the versatility and functionality of imaging devices. The FPIA chip can also work collaboratively in a three-chip stack that includes an analog sensor interface chip and the imaging device itself.
Career Highlights: Kate is currently employed at the Massachusetts Institute of Technology, where she continues to push boundaries in the field of digital imaging. Her professional journey is marked by a commitment to innovation and practical solutions to real-world challenges in imaging technology.
Collaborations: Throughout her career, Kate has had the opportunity to work alongside esteemed colleagues such as Peter J. Grossmann and Matthew Stamplis. Their collaborative efforts in research and development have fostered a rich environment for innovation at MIT.
Conclusion: Kate Thurmer stands out as a pioneering inventor whose work in digital imaging is driving forward the capabilities of imaging technology. With her patent and continued research at the Massachusetts Institute of Technology, she exemplifies the spirit of innovation and collaboration in today's scientific community.