This inventor holds 2 USPTO granted patents. Top assignee: Lyft, Inc.. Active years: 2026.
Company Filing History:
Years Active: 2026
Title: Tristin Kim: Innovator in Micromobility Solutions
Introduction
Tristin Kim is a notable inventor based in Palo Alto, CA (US). He has made significant contributions to the field of micromobility through his innovative designs and patents. With a total of 2 patents, Tristin is dedicated to enhancing the user experience in micromobility vehicles.
Latest Patents
Tristin's latest patents include a docking station for a micromobility vehicle and a vehicle docking structure with a passive latching system. These patents disclose systems and methods related to docking stations that accommodate multiple types of micromobility vehicles. They are designed to interact with different users and operate securely under low-power constraints. A low-power docking station may include a housing with walls defining a vehicle opening and a latching receiver that engages with a latching mount of the micromobility vehicle when positioned in the vehicle opening. The docking station can also feature a movable hook with a retention feature and a movable latch that has a latching protrusion and a receiving feature. This innovative design ensures that the latching mount is securely retained when advanced into the receiving feature.
Career Highlights
Tristin Kim is currently employed at Lyft, Inc., where he continues to develop cutting-edge solutions for micromobility. His work focuses on creating efficient and user-friendly docking systems that enhance the overall functionality of micromobility vehicles.
Collaborations
Tristin collaborates with talented individuals such as Oliver Maximilian Mueller and Jeffrey Alan Boyd. Their combined expertise contributes to the advancement of innovative solutions in the micromobility sector.
Conclusion
Tristin Kim is a forward-thinking inventor whose work in micromobility is paving the way for future innovations. His patents reflect a commitment to improving user experience and operational efficiency in this rapidly evolving field.
