Liliana Edmonds
Papers
1
Total Citations
4
H-Index
1
About
Liliana Edmonds is a rising leader in the field of integrated magnetic sensing, with a focus on low-power, high-precision CMOS-compatible Hall-effect sensors. Her work addresses the growing demand for compact, energy-efficient magnetic sensors in automotive, robotics, medical devices, and consumer electronics. Her most cited paper, "A Monolithic 3D Magnetic Sensor in 65nm CMOS with <10μT_rms Noise and 14.8μW Power" (2023), demonstrates a breakthrough in achieving sub-10 microtesla noise performance at extremely low power consumption—a critical advancement for portable and battery-operated systems. This work has already garnered early citations, signaling its impact on the field. Edmonds’ contributions lie in pushing the boundaries of standard CMOS processes to enable monolithic 3D sensing, reducing system size and cost while maintaining high sensitivity. Her research is particularly notable for balancing noise, power, and integration, making her a key figure in next-generation magnetic sensor design. As her work gains traction, Edmonds is poised to influence both academic research and industrial applications in smart sensing and IoT.
Research Focus
Key Achievements
Top Papers
- 1