Papers
2
Total Citations
4
H-Index
1
About
Jinghu Li is a researcher at the intersection of advanced sensing and bio-inspired robotics, with key contributions to time-of-flight (ToF) systems and biomimetic flight mechanisms. Their work on a rail-to-rail high-speed continuous time comparator, published in 2023, directly addresses the challenge of real-time distance measurement for objects with varying surface reflectance—a critical need for autonomous driving, 3D reconstruction, and intelligent robot navigation. This comparator design, which has garnered 3 citations, enhances the accuracy and speed of ToF systems, enabling more reliable environmental perception. In parallel, Li explores the frontiers of bio-inspired engineering with the 2025 design of a bat-inspired flapping robot, a project that has already attracted 1 citation for its novel approach to flight mechanics. By combining expertise in high-speed analog circuit design with principles of animal locomotion, Li bridges hardware innovation and robotics, offering practical solutions for dynamic, real-world sensing and mobility challenges. Their work is particularly relevant for students and researchers interested in sensor systems, autonomous navigation, and biologically inspired robotics.
Research Focus
Key Achievements
Top Papers
- 1A rail-to-rail high speed continuous time comparator for ToF application3 citations · 2023
- 2Design of a Bat-Inspired Flapping Robot1 citations · 2025