Papers
2
Total Citations
16
H-Index
1
About
Seah Kim is a rising leader in robotics system-on-chip (SoC) design, specializing in hardware-software co-simulation and energy-efficient architectures for autonomous systems. Their seminal work, **RoSÉ**, introduced a groundbreaking hardware-software co-simulation infrastructure enabling pre-silicon full-stack evaluation of robotics SoCs—a critical tool for accelerating the development of autonomous UAVs and self-driving cars (15 citations). This contribution directly addresses the growing need for robust, real-time performance validation before chip fabrication. Kim’s impact extends to **MAVERIC**, a heterogeneous 16nm robotics SoC integrating 4 cores and 13 INT8/FP32 accelerator units, achieving 72 FPS at just 10 mJ/frame for complex ML and robotics workloads. This chip demonstrates exceptional energy efficiency for tasks like 3D reconstruction and depth estimation, setting a new benchmark for embedded autonomy. By bridging the gap between simulation and silicon, Kim’s work empowers researchers to design faster, more reliable robotic platforms. Their contributions are pivotal for the next generation of intelligent, power-constrained autonomous systems.
Research Focus
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Top Papers
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