Claims
- 1. An acceleration sensing device comprising:
- device housing including a sealed cavity;
- flexible diaphragm dividing said sealed cavity into a plurality of small cavities;
- said plurality of small cavities filled with a generally incompressible fluid;
- conduit means connecting said plurality of small cavities;
- said conduit means allowing flow of said fluid between said plurality of small cavities:
- a plurality of capacitor plates :
- a first of said plurality of capacitor plates coupled to said flexible diaphragm and a second of said plurality of capacitor plates coupled to said housing and adjacent to said first of said plurality of capacitor plates; and
- orifice means for controlling the rate of flow of said generally incompressible fluid between said plurality of small cavities.
- 2. An acceleration sensing device according to claim 1 wherein said flexible diaphragm comprises:
- a plurality of semi-spherical cavity means for increasing the flexibility of said diaphragm ; and
- said plurality of semi-spherical cavity means blemishing at least one face of said diaphragm.
- 3. An acceleration sensing device according to claim 2 wherein said plurality of semi-spherical cavity means are arranged in a hexagonal close pack pattern on said at least one face.
- 4. An acceleration sensing device according to claim 1 wherein said flexible diaphragm comprises a silicon material.
- 5. An acceleration sensing device according to claim 1 wherein said acceleration sensing device further comprises:
- a third of said plurality of capacitor plates coupled to said flexible diaphragm; and
- a fourth of said plurality of capacitor plates coupled to said housing adjacent to said third of said plurality of capacitor plates.
- 6. In a vehicle system, an acceleration sensing device comprising:
- silicon diaphragm;
- first means for increasing the flexibility of said silicon diaphragm, said first means coupled to said silicon diaphragm;
- said first means including:
- a plurality of semi-spherical cavity means for increasing the flexibility of said silicon diaphragm;
- said plurality of semi-sperical cavity means blemishing at least one face of said silicon diaphragm;
- said silicon diaphragm coupled across and dissecting a sealed chamber containing a fluid;
- second means for allowing said fluid to flow between the dissected portions of said sealed chamber at a predetermined rate; and
- said second means connected between the dissected portions of said sealed chamber.
- 7. An acceleration sensing device according to claim 6 wherein said second means comprises an orifice for controlling the rate of flow of said fluid.
- 8. In a vehicle system, an acceleration sensing device comprising:
- device housing including a sealed cavity;
- flexible diaphragm dividing said sealed cavity into a plurality of small cavities;
- said plurality of small cavities filled with a generally incompressible fluid;
- a plurality of semi-spherical cavity means for increasing the flexibility of said diaphragm;
- said plurality of semi-spherical cavity means blemishing at least one face of said diaphragm;
- conduit means connecting said plurality of small cavities;
- said conduit allowing flow of said fluid between said plurality of small cavities;
- a plurality of capacitor plates;
- a first of said plurality of capacitor plates coupled to said flexible diaphragm;
- a second of said plurality of capacitor plates coupled to said housing and adjacent to said first of said plurality of capacitor plates; and
- orifice means for controlling the rate of flow of said generally incompressible fluid between said plurality of small cavities.
- 9. An acceleration sensing device according to claim 8 wherein said plurality of semi-spherical cavity means are arranged in a hexagonal close pack pattern on said at least one face.
- 10. An acceleration sensing device according to claim 8 wherein said flexible diaphragm comprises a silicon material.
- 11. An acceleration sensing device according to claim 8 wherein the device further comprises:
- a third of said plurality of capacitor plates coupled to said flexible diaphragm; and
- a fourth of said plurality of capacitor plates coupled to said housing adjacent to said third of said plurality of capacitor plates.
- 12. In a projectile system, an acceleration sensing device comprising:
- silicon diaphragm;
- a plurality of semi-spherical cavity means for increasing the flexibility of said silicon diaphragm;
- said plurality of semi-spherical cavity means blemishing at least one face of said silicon diaphragm;
- said silicon diaphragm coupled across and dissecting a sealed chamber containing a fluid;
- means for allowing said fluid to flow between the dissected portions of said sealed chamber at a predetermined rate; and
- said means for allowing connected between the dissected portions of said sealed chamber.
- 13. An acceleration sensing device according to claim 12 wherein said second means comprises an orifice for controlling the rate of flow of said fluid.
Parent Case Info
This application is a continuation of prior application Ser. No. 361,524, filed June 5, 1989, abandoned.
US Referenced Citations (5)
Continuations (1)
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Number |
Date |
Country |
Parent |
361524 |
Jun 1989 |
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