Amsterdam, Netherlands

Matthijs Velsink

This inventor holds 1 USPTO granted patent. Top assignee: Universiteit Twente (Ut). Active years: 2025.


% Patents Active = 100.0

Average Co-Inventor Count = 2.0

ph-index = 1


Company Filing History:


Years Active: 2025

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1 patent (USPTO):Explore Patents

Title: Matthijs Velsink: Innovator in Time-Domain Physical Unclonable Key Technology

Introduction

Matthijs Velsink is a notable inventor based in Amsterdam, Netherlands. He has made significant contributions to the field of secure communication through his innovative work on physical unclonable keys. His research focuses on enhancing the security of communication systems, making them more robust against unauthorized access.

Latest Patents

Velsink holds a patent for a method of Time-domain physical unclonable key (TPUK) authenticated communication. This patent describes a process that involves creating an optical challenge in a time-frequency domain. The method includes providing this optical challenge to a tPUK, which consists of a spatial input channel and multiple spatial output channels. The invention allows for the detection of a short temporally focused pulse in one of the spatial output channels, thereby ensuring secure communication. The tPUK exhibits a complex challenge-response behavior in the time-frequency domain, enhancing the security of the communication process.

Career Highlights

Matthijs Velsink is affiliated with Universiteit Twente, where he continues to advance his research in secure communication technologies. His work has garnered attention for its innovative approach to utilizing optical challenges in authentication processes. Velsink's contributions are paving the way for more secure communication systems in various applications.

Collaborations

Due to space constraints, the collaborations section has been omitted.

Conclusion

Matthijs Velsink's work in the field of time-domain physical unclonable keys represents a significant advancement in secure communication technology. His innovative methods are crucial for developing more secure systems in an increasingly digital world.

Profile summary based on public USPTO records.
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