Stanford, CA, United States of America

Walter Snoeys


Average Co-Inventor Count = 2.0

ph-index = 2

Forward Citations = 46(Granted Patents)


Location History:

  • Stanford, CA (US) (1993)
  • Santa Clara County, CA (US) (1995)

Company Filing History:


Years Active: 1993-1995

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2 patents (USPTO):Explore Patents

Title: **Innovations of Walter Snoeys: A Pioneer in VLSI Radiation Detection**

Introduction

Walter Snoeys is an accomplished inventor based in Stanford, CA, known for his significant contributions to the field of VLSI radiation and particle detection technologies. With a portfolio comprising two patents, Snoeys is paving the way for advancements that enhance the precision and efficiency of radiation detection.

Latest Patents

Snoeys' latest invention, titled “Integrated VLSI Radiation/Particle Detector with Biased PIN Diodes,” showcases innovative engineering. This patent introduces a structure for detectors that achieves high spatial resolution by integrating both PIN diodes and readout circuitry on the same chip. The design effectively places the junction and collection electrode on opposite ends of the PIN diode, which reduces the electric fields at the collection electrode. This configuration enables the readout circuitry to be localized in a low-field region, thus decreasing the necessary bias voltage and allowing for smaller collection electrodes.

In his other recent patent, also titled “Integrated VLSI Radiation/Particle Detector with Biased PIN Diodes,” Snoeys presents another breakthrough. This VLSI detector includes detecting elements based on multiple biased PIN diodes that collect charges generated by incident radiation or ionizing particles. The innovative separation between the junction of the PIN diode and the well containing the readout circuitry allows for a reduction in bias voltage, resulting in improved spatial resolution and minimized collection electrode size.

Career Highlights

Walter Snoeys is currently affiliated with the University of Hawai'i, where he applies his expertise in electrical engineering and physics to advance research in radiation detection. His academic background and practical experience in VLSI design have enabled him to develop technologies that push the boundaries of conventional radiation detection methods.

Collaborations

One of Snoeys’ notable collaborators is Sherwood I. Parker, with whom he has worked closely to develop his pioneering patents. Their collaborative efforts highlight the importance of teamwork in the innovation process, combining strengths in various technical areas to enhance research outcomes.

Conclusion

Walter Snoeys stands out as a significant figure in the innovations of VLSI radiation detection. His patents reflect a profound understanding of semiconductor technology and a commitment to improving detection systems. As he continues to collaborate with researchers and contribute to advancements in this field, the impact of his work is likely to resonate within the scientific community and beyond.

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