Company Filing History:
Years Active: 2017-2023
Title: Richard Wank: Innovator in Secure Communication Technologies
Introduction
Richard Wank is a notable inventor based in Plano, TX (US), recognized for his contributions to secure communication technologies. He holds a total of 3 patents that focus on enhancing the testing and handling of HTTPS sessions between clients and servers.
Latest Patents
Wank's latest patents include a method and system for inducing secure communications between one or more emulated servers and emulated clients to test a device therebetween. This technology provides a comprehensive method for testing the handling of HTTPS sessions by utilizing client and server state machines across multiple processor cores. The process involves setting up HTTPS sessions through encryption protocol negotiation and completing the HTTPS handshake. Additionally, it allows for stress testing by managing between 100,000 and 10,000,000 HTTPS sessions without using the negotiated encryption.
Another significant patent by Wank is a method and system for inducing pseudo HTTPS communications between emulated servers and clients. Similar to his previous patent, this technology focuses on testing HTTPS sessions through a switching, bridging, or routing device. It also employs client and server state machines and includes the same extensive testing capabilities.
Career Highlights
Richard Wank is currently employed at Spirent Communications, Inc., where he continues to innovate in the field of secure communications. His work has significantly contributed to the advancement of testing methodologies for network devices.
Collaborations
Wank collaborates with talented professionals such as Kevin Canady and Xiaohua Wu, enhancing the innovative environment at Spirent Communications, Inc.
Conclusion
Richard Wank's contributions to secure communication technologies through his patents demonstrate his commitment to advancing the field. His innovative methods for testing HTTPS sessions are vital for ensuring the reliability and security of network communications.