Title :
Wireless drive of a MEMS ciliary motion actuator via coupled magnetic resonances using micro inductors
Author :
Sakamoto, N. ; Frappe, A. ; Stefanelli, B. ; Kaiser, A. ; Mita, Y.
Author_Institution :
Univ. of Tokyo, Tokyo, Japan
Abstract :
This paper reports successful wireless drive of a 100 μm × 500 μm × 5 μm MEMS thermal actuator via micro-scale coupled magnetic resonances. Receiver inductor is 500 μm × 500 μm, which is the same scale as the actuator. There is no need for rectifier circuit to drive the actuator, enabling power transmission with zero conversion loss. The transmission efficiency of the system was also evaluated and the efficacy of magnetic resonant coupling for micro-scale power transmission was verified. The system using downsized transmitter inductor was also evaluated and we verified that it has capability of driving the actuator wirelessly.
Keywords :
inductive power transmission; inductors; magnetic resonance; microactuators; MEMS thermal actuator; downsized transmitter inductor; magnetic resonant coupling; micro-scale coupled magnetic resonances; micro-scale power transmission; receiver inductor; transmission efficiency; wireless drive; Actuators; Inductors; Magnetic resonance; Micromechanical devices; Receivers; Transmitters; Wireless communication; Wireless power transmission; magnetic resonance; micro-actuator; micro-inductor;
Conference_Titel :
Solid-State Sensors, Actuators and Microsystems (TRANSDUCERS), 2015 Transducers - 2015 18th International Conference on
Conference_Location :
Anchorage, AK
DOI :
10.1109/TRANSDUCERS.2015.7181337