Kazuma Morikawa
Papers
3
Total Citations
13
H-Index
3
About
Kazuma Morikawa is an emerging robotics researcher whose work sits at the intersection of actuator design, thermal management, and robot mechanics — areas critical to advancing the next generation of legged robots, manipulators, and humanoid systems. His research addresses one of the most persistent challenges in robotics: enabling motors to deliver high torque and power without sacrificing speed, safety, or thermal stability. Morikawa's most recognized contributions explore the innovative application of thermoelectric cooling modules to motor systems, demonstrating that actively managing heat dissipation allows significantly higher drive currents — and therefore greater output — without traditional reliance on bulky gear reductions. His 2022 papers on thermoelectric cooling have each garnered citations reflective of strong early interest from the robotics community. Complementing this thermal work, his 2024 research on in-link actuators tackles robot safety through inertia reduction, a design philosophy essential for robots operating in close proximity to humans in everyday environments. Though early in his career, Morikawa's focused research agenda positions him as a contributor to solving fundamental hardware bottlenecks that limit real-world robot deployment, making his work particularly valuable for students and engineers designing high-performance, human-safe robotic systems.
Research Focus
Key Achievements
Top Papers
- 1Thermoelectric Cooling Application to Motors for High-Power Operation5 citations · 2022
- 2In-Link Actuators for Low-Inertia Robots4 citations · 2024
- 3