This inventor holds 1 USPTO granted patent. Top assignee: Verizon Patent and Licensing Inc.. Active years: 2025.
Company Filing History:
Years Active: 2025
Title: Scott Sheets: Innovator in Mobile Network Technology
Introduction
Scott Sheets is a notable inventor based in Aurora, Texas. He has made significant contributions to the field of mobile network technology. His innovative work has led to the development of a patent that addresses critical aspects of subscriber identification in mobile networks.
Latest Patents
Scott Sheets holds a patent for an on-demand subscription concealed identifier (SUCI) deconcealment for select applications. This patent describes a network device executing a Network Exposure Function (NEF) that receives an on-demand SUCI deconcealment request associated with a mobile network subscriber. The NEF sends a second SUCI deconcealment request to a network function (NF) in the mobile network. This request includes a SUCI associated with the mobile network subscriber. The NEF then receives a SUCI deconcealment response from the NF, which includes a Subscription Permanent Identifier (SUPI) associated with the mobile network subscriber, decrypted from the SUCI by the NF. The NEF forwards the SUCI deconcealment response to the requestor.
Career Highlights
Scott Sheets is currently employed at Verizon Patent and Licensing Inc. His role at the company allows him to work on cutting-edge technologies that enhance mobile network functionalities. His expertise in this area has been instrumental in developing solutions that improve subscriber privacy and security.
Collaborations
Scott has collaborated with talented individuals such as Shanthala Kuravangi-Thammaiah and Ye Huang. These collaborations have fostered an environment of innovation and creativity, leading to advancements in mobile network technology.
Conclusion
Scott Sheets is a prominent inventor whose work in mobile network technology has resulted in valuable patents. His contributions continue to shape the future of subscriber identification and privacy in mobile networks.
