DocumentCode :
1947784
Title :
An air flow sensor modeled on wind receptor hairs of insects
Author :
Ozaki, Yoshihiro ; Ohyama, Tomoyuki ; Yasuda, Takashi ; Shimoyama, Isao
Author_Institution :
Dept. of Mechano-Inf., Tokyo Univ., Japan
fYear :
2000
fDate :
23-27 Jan 2000
Firstpage :
531
Lastpage :
536
Abstract :
A new conceptual air flow sensor modeled on wind-receptor hairs of insects which can detect low velocity air flow is demonstrated. Since the viscous force is dominant at micro size, the velocity of air flow can be determined by measuring the force on a sensory hair. Two mechanical structures modeled on insect sensory hairs have been fabricated. An array of a 1-DOF (Degree Of Freedom) sensory hairs has selectivity of frequencies. A 2-DOF sensory hair array can detect the direction angle of air flow. Both sensors have cantilevers and strain gauges fabricated at the bottom of the sensory hairs. The output voltage was proportional to the velocity of air flow in good agreement with the theory. Both the 1-DOF sensory hair and the 2-DOF sensory hair arrays detected the velocity of air flow from several tens of cm/s to 2 m/s. Also, the 2-DOF sensory hair array detected the direction angle of 360 degrees as a function of a sinusoidal curve
Keywords :
arrays; flow measurement; microsensors; semiconductor technology; strain gauges; 1-DOF sensory hair array; 2 m/s; 2-DOF sensory hair array; air flow direction angle; air flow sensor; air flow velocity; cantilevers; insect wind receptor hairs; mechanical structures; sensor array; strain gauges; viscous force; Fluid flow measurement; Force measurement; Force sensors; Frequency; Hair; Insects; Mechanical sensors; Sensor arrays; Size measurement; Velocity measurement;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Micro Electro Mechanical Systems, 2000. MEMS 2000. The Thirteenth Annual International Conference on
Conference_Location :
Miyazaki
ISSN :
1084-6999
Print_ISBN :
0-7803-5273-4
Type :
conf
DOI :
10.1109/MEMSYS.2000.838573
Filename :
838573
Link To Document :
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