Company Filing History:
Years Active: 2020-2024
Title: The Innovative Contributions of Sparta Cheung
Introduction
Sparta Cheung is a notable inventor based in San Diego, CA, who has made significant contributions to the field of communication technology. With a total of 3 patents to her name, she has developed innovative solutions that enhance communication systems, particularly in maritime applications.
Latest Patents
One of her latest patents is titled "Communication terminal for addressed messaging within an automated identification system arrangement using aid to navigation transponder." This invention features a user interface that facilitates addressed messaging, including chat messaging, automatic position messaging, and situational report messaging. The system is designed to improve communication between various terminals within an Automated Identification System (AIS) arrangement. Another significant patent is "Systems and methods for transmitting ship positions and tracks over multiple communications channels." This invention includes an AIS transponder that utilizes a combination of VHF AIS transceiver and cellular modem to transmit vessel data efficiently, ensuring that historical data is recorded and updated as needed.
Career Highlights
Sparta Cheung works for the United States as represented by the Secretary of the Navy. Her role involves developing advanced communication systems that are crucial for maritime safety and navigation. Her expertise in this area has led to the creation of technologies that improve situational awareness for vessels at sea.
Collaborations
Throughout her career, Sparta has collaborated with talented individuals such as John Stastny and Bryan D Bagnall. These partnerships have allowed her to leverage diverse skills and knowledge, further enhancing her innovative contributions to the field.
Conclusion
Sparta Cheung's work exemplifies the impact of innovation in communication technology, particularly in maritime applications. Her patents reflect a commitment to improving safety and efficiency in navigation systems.