Jinyong Kim
Papers
1
Total Citations
8
H-Index
1
About
Jinyong Kim is a leading researcher in ultra-low-power sensor interface circuits, with a focus on energy-efficient read-out systems for environmental sensing applications. His work addresses the critical demand for ubiquitous, battery-operated sensors by developing innovative circuit topologies that dramatically reduce power consumption while maintaining high precision. Kim’s most cited paper, “A 20 μW, 0.05mm² Duty-Cycled Resistor and Frequency-Locked-Loop-based Wheatstone Bridge Interface for Low Resistance Sensing Systems” (2021, 8 citations), introduces a groundbreaking architecture that combines duty-cycling with a frequency-locked loop to achieve a compact, sub-0.1mm² design. This work enables reliable low-resistance measurement for temperature, humidity, and barometric pressure sensors, achieving a power budget of just 20 microwatts—a significant milestone for IoT and wearable devices. By minimizing area and energy overhead, Kim’s contributions have advanced the feasibility of distributed sensor networks, where ultra-low-power operation is paramount. His research continues to shape the next generation of energy-autonomous sensing systems, making him a notable figure in the field of analog and mixed-signal integrated circuit design.
Research Focus
Key Achievements
Top Papers
- 1