Location History:
- Newark, CA (US) (2016 - 2017)
- Austin, TX (US) (2017 - 2019)
- Newak, CA (US) (2019)
- San Ramon, CA (US) (2020 - 2023)
Company Filing History:
Years Active: 2016-2025
Title: Innovations of Sekhar Nagasundaram
Introduction
Sekhar Nagasundaram is a prominent inventor based in Austin, TX, known for his significant contributions to the field of cryptography. With a total of 11 patents to his name, he has made remarkable advancements in secure communication technologies. His work primarily focuses on enhancing cryptographic security in both on-premises and cloud computing environments.
Latest Patents
Among his latest patents is the "Single Node Multi-Party Encryption," which describes a computer node that utilizes multiple software modules to enhance cryptographic security. This innovation allows the node to receive a cryptographic key from a hardware security module, producing two key portions that are distributed to software modules for encrypting messages. The periodic updating of key portions and their memory locations further strengthens the security of the encryption process. Another notable patent is "Key Management for Multi-Party Computation," which outlines methods for managing cryptographic keys in various computing environments. This system enables the secure retrieval and distribution of key shares, facilitating secure multi-party cryptography.
Career Highlights
Sekhar Nagasundaram is currently employed at Visa International Service Association, where he continues to develop innovative solutions in the field of cryptography. His expertise and dedication to enhancing security measures have made him a valuable asset to the company.
Collaborations
He has collaborated with notable colleagues, including Selim Aissi and Oleg Gryb, contributing to various projects that aim to advance cryptographic technologies.
Conclusion
Sekhar Nagasundaram's work in cryptography exemplifies the importance of innovation in securing digital communications. His patents reflect a commitment to improving security measures in an increasingly interconnected world.