Claims
- 1. A surface skimming bulk wave (SSBW) accelerometer, for use in a system having one or more oscillator circuits with an output for providing output radio frequency (RF) excitation signals, and an input for receiving input RF excitation signals, comprising:
- chassis means, having a fluid filled cavity with a mounting surface therein;
- piezoelectric cantilever, fixed at one end to said mounting surface and having a proof mass at an opposite end thereof, said cantilever having first and second major surfaces, wherein acceleration of said proof mass induces a strain in said major surface, said strain being proportional to said acceleration;
- coplanar feed transducers, including an input transducer and an output transducer disposed in spaced relationship on said first major surface to provide a SSBW delay line, said input transducer converting output RF signals from an oscillator circuit output to a launched SSBW for propagation in said first major surface of said cantilever, said output transducer converting said launched SSBW in said first major surface to first surface input RF signals for presentation to the oscillator circuit input, said first surface input RF signals being delayed from the output RF signals by a time dependent on said strain induced in said first major surface, whereby the oscillator circuit provides the first surface input RF signals at a first surface signal frequency indicative of said strain and said acceleration.
- 2. The surface skimming bulk wave accelerometer of claim 1, further comprising:
- second coplanar feed transducers, including a second input transducer and a second output transducer disposed in spaced relationship on said second major surface to form a second SSBW delay line, said second input transducer converting output RF signals from a second oscillator circuit of the system to a launched SSBW for propagation in said second major surface of said cantilever, said second output transducer converting said launched SSBW in said second major surface to second surface input RF signals for presentation to the second oscillator circuit input, said second surface input RF signals being delayed from the output RF signals at said second input transducer by a time dependent on said strain induced in said second major surface, the second oscillator circuit providing the second surface input RF signals at a second surface signal frequency indicative of said strain in said second major surface, whereby the difference signal frequency between said first surface signal frequency and said second surface signal frequency is indicative of said acceleration.
- 3. The surface skimming bulk wave accelerometer of claim 1, wherein said chassis means comprises copper.
- 4. The surface skimming bulk wave accelerometer of claim 1, wherein said chassis means comprises aluminum.
- 5. The surface skimming bulk wave accelerometer of claim 1, wherein said cantilever comprises BT cut quartz.
- 6. The surface skimming bulk wave accelerometer of claim 1, wherein said cantilever comprises AT cut quartz.
- 7. The surface skimming bulk wave accelerometer of claim 1, wherein said cantilever comprises a silicon dioxide (SiO.sub.2) coated lithium niobate.
Government Interests
The Government has rights in this invention pursuant to Contract No. F49620-84-C-0006 awarded by the Department of the Air Force.
US Referenced Citations (4)
Foreign Referenced Citations (1)
Number |
Date |
Country |
2123554 |
Feb 1984 |
GBX |
Non-Patent Literature Citations (1)
Entry |
Lewis et al., Surface Skimming Bulk Waves, SSBW, 1977 Ultrasonics Symposium Proceedings, IEEE Cat. #77CH1264. |