Company Filing History:
Years Active: 2014-2023
Title: The Innovative Contributions of Matthew Zelesko
Introduction
Matthew Zelesko is a notable inventor based in Doylestown, PA (US). He has made significant contributions to the field of technology, particularly in video encoding and network reliability. With a total of 8 patents to his name, Zelesko's work has had a considerable impact on how content is delivered and consumed.
Latest Patents
Among his latest patents is the invention titled "Situation-dependent dynamic bit rate encoding and distribution of content." This patent describes an encoder resource that receives segments of content from various data feeds. The encoder resource produces control information that specifies multiple bit rate data streams for encoding the content segments. This adaptive encoding allows clients in a network to retrieve and playback content seamlessly.
Another significant patent is "Methods and apparatus for enhancing network reliability and/or enabling phased deployment of video services." This invention outlines methods for automatically transitioning program delivery between alternative sources, such as switching from a non-IP channel to an IP video source. This transition can be triggered by detected problems or scheduled services, ensuring a smooth user experience.
Career Highlights
Matthew Zelesko is currently employed at Time Warner Cable Enterprises LLC, where he continues to innovate in the field of video services and network technology. His work has been instrumental in advancing the capabilities of content delivery systems.
Collaborations
Zelesko has collaborated with notable colleagues, including James S Manchester and Ethan Wolf. These partnerships have contributed to the development of his innovative technologies.
Conclusion
Matthew Zelesko's contributions to technology through his patents and work at Time Warner Cable Enterprises LLC highlight his role as a leading inventor in the field. His innovative solutions continue to shape the future of content delivery and network reliability.