Measuring and testing – Speed – velocity – or acceleration – Angular rate using gyroscopic or coriolis effect
Patent
1977-04-25
1978-11-21
Gill, James J.
Measuring and testing
Speed, velocity, or acceleration
Angular rate using gyroscopic or coriolis effect
73518, G01P 344
Patent
active
041260473
ABSTRACT:
Extremely sensitive velocity and position measurements are achieved with a surface acoustic wave (SAW) resonator device. A surface acoustic standing wave field is established on a movable SAW propagation surface by means of induced SAW pulses traveling on the propagation surface and their reflection from a SAW reflecting mechanism. Movement of the propagation surface causes periodic variations in the standing wave field amplitude. The frequency of the standing wave field amplitude variation is directly related to the SAW propagation surface velocity and its phase (i.e., total number of standing wave field amplitude variations from a reference point) indicates the SAW propagation surface position or how far it has moved from the reference point.
One implementation comprises a rotatable aluminum cylinder on the surface of which SAWs are launched and detected by proximate but non-contacting transmitting and receiving electromagnetic transducers (EMTs). The reflecting mechanism used to initiate the standing wave results from the proximity of the EMTs and the coupling effect of the EMT magnetic fields. Frequency and phase information is extracted from the receiving transducer output by visually (CRT) or electronically counting standing wave amplitude variation cycles.
Other implementation includes translatory planar SAW propagating surfaces and various transducer configurations and arrangements.
REFERENCES:
patent: 3307409 (1967-03-01), Newton, Jr.
patent: 3395270 (1968-07-01), Speller
patent: 3905235 (1975-09-01), Shaw
patent: 3910373 (1975-10-01), Newburgh et al.
"Rotation Sensing through Electromagnetic-Surface-Acoustic-Wave Transduction" by Frost et al., Journal of Applied Physics pp. 52-58, Jan. 1977.
Frost Harold M.
Sethares James C.
Gill James J.
Matthews, Jr. Willard R.
Rusz Joseph E.
The United States of America as represented by the Secretary of
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