Title :
An Integrated Permanent-Magnet Microturbogenerator Supported on Microball Bearings
Author :
Beyaz, Mustafa Ilker ; Hanrahan, Brendan Michael ; Feldman, Jeremy ; Ghodssi, Reza
Author_Institution :
Univ. of Maryland, College Park, MD, USA
Abstract :
This paper presents the design, fabrication, and testing of an integrated microturbogenerator utilizing permanent magnets and microball bearings. The key components of this generator are the following: 1) a silicon microturbine rotor housing thick magnetic components; 2) encapsulated microball bearings providing a simple actuation scheme and a robust support structure; and 3) wafer-thick stator coils. The microturbogenerator was designed and fabricated to have a ten-pole rotor and a ten-pole three-turns-per-pole stator. The impedance of the stator coils was shown to be a purely resistive 220 Ω up to 10 kHz. The spin-down characterization of the rotor revealed a dynamic friction torque of 33 μN·m at a rotational speed of 16 kilo rotations per minute (krpm), corresponding to 6% turbine efficiency. The maximum per-phase ac open-circuit voltage and power were measured to be 0.1 V and 5.6 μW on a matched load at 23 krpm, respectively, in full agreement with theoretical analysis and performance estimations. The microturbogenerator presented in this paper provides a flexible design platform for further improvement and will lead to the development of next-generation integrated microturbogenerators offering high power, simple operation, and robust mechanics.
Keywords :
machine bearings; machine testing; microfabrication; permanent magnet generators; turbogenerators; actuation scheme; efficiency 6 percent; encapsulated microball bearings; flexible design platform; integrated microturbogenerator design; integrated microturbogenerator testing; integrated permanent-magnet microturbogenerator; next-generation integrated microturbogenerators; resistance 220 ohm; robust support structure; silicon microturbine rotor housing thick magnetic components; spin-down characterization; ten-pole rotor; ten-pole three-turns-per-pole stator; wafer-thick stator coils; Coils; Fabrication; Magnetic levitation; Magnetic separation; Rotors; Saturation magnetization; Stators; Microball bearings; microgenerator; microturbogenerator; power microelectromechanical systems (MEMS);
Journal_Title :
Microelectromechanical Systems, Journal of
DOI :
10.1109/JMEMS.2013.2245401