Location History:
- Livonia, MI (US) (2022 - 2023)
- Ann Arbor, MI (US) (2020 - 2024)
Company Filing History:
Years Active: 2020-2024
Title: Matthew Hortop: Innovator in Wireless Power Transfer and Vehicle Technology
Introduction
Matthew Hortop is a notable inventor based in Ann Arbor, MI (US). He has made significant contributions to the field of vehicle technology, particularly in wireless power transfer systems. With a total of 6 patents to his name, Hortop continues to push the boundaries of innovation in automotive applications.
Latest Patents
Hortop's latest patents include groundbreaking inventions such as the "Bidirectional Wireless Power Transfer with Auxiliary Devices." This patent describes an apparatus that enables wireless bidirectional power exchange between a vehicle's high voltage system and an auxiliary device. The system is designed to power the vehicle's drivetrain while allowing for the transfer of electrical power to and from external devices. Another notable invention is the "Dryer Attachment for a Vehicle," which facilitates airflow from the vehicle's HVAC system to objects outside the vehicle. This attachment enhances the functionality of vehicles by providing a convenient way to dry items using the vehicle's existing air conditioning system.
Career Highlights
Matthew Hortop is currently employed at Rivian IP Holdings, LLC, where he continues to develop innovative technologies. His work focuses on enhancing vehicle capabilities through advanced electrical systems and user-friendly attachments. His contributions have positioned him as a key player in the automotive innovation landscape.
Collaborations
Hortop collaborates with talented individuals such as Patrick Hunt and Lacey Trelfa. Together, they work on various projects that aim to improve vehicle technology and user experience.
Conclusion
Matthew Hortop is a distinguished inventor whose work in wireless power transfer and vehicle technology is paving the way for future innovations. His patents reflect a commitment to enhancing the functionality and efficiency of modern vehicles.