Papers
2
Total Citations
6
H-Index
2
About
Jiamin Li is a pioneering researcher in the field of energy-efficient, application-specific integrated circuits (ASICs) for robotic vision systems, with a particular focus on metamorphic and space-grade platforms. Their work bridges the gap between low-power hardware design and advanced machine perception, enabling robots to operate reliably in extreme environments. Li’s major contributions include the development of a 64-channel ultrasound ASIC that achieves a 7-meter detection range while consuming only 4.3mW per channel—a breakthrough in low-power, all-weather 3D vision for metamorphic robotics. This system, built in 180nm CMOS, is compact and lightweight, making it ideal for dynamic robotic morphologies. More recently, Li has advanced neuromorphic vision for space robotics, introducing a radiation-hardened imager with self-healing spiking pixels and a unified spiking neural network (USNN). This work addresses critical challenges in space exploration, where radiation damage and energy constraints are paramount. With over 6 citations across their most notable publications, Li’s research is gaining traction for its innovative fusion of hardware resilience and bio-inspired processing, positioning them as a rising leader in next-generation robotic sensing systems.
Research Focus
Key Achievements
Top Papers
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