Claims
- 1. A fluidic square root extractor comprising:
- first input terminal means for connection to a source of main pressure;
- output terminal means for supplying an output pressure;
- second input terminal means for receiving an input pressure the square root of which is to be extracted;
- first connecting means for connecting said first input terminal means to said output terminal means;
- amplifier means connected to said first connecting means and to said second input terminal means for generating said output pressure as a function of said input pressure, said amplifier means having a feedback means;
- squaring means connected to said first connecting means for providing a feedback pressure as a function of the square of said output pressure; and,
- second connecting means connected to said squaring means and said feedback means for supplying said feedback pressure to said feedback means,
- whereby said output pressure is a function of the square root of said input pressure.
- 2. The extractor of claim 1 wherein said amplifier means comprises a variable gain amplifier.
- 3. The extractor of claim 1 wherein said amplifier means comprises force transmitting means, first motor means connected to said second input terminal means for applying a force to said force transmitting means in response to said input pressure, second motor means, as said feedback means, connected to said squaring means by said second connecting means for applying a force to said force transmitting means in response to said feedback pressure, and first nozzle means connected to said first connecting means for cooperating with said force transmitting means.
- 4. The extractor of claim 3 wherein said first and second motor means are arranged to apply their forces to opposite sides of said force transmitting means.
- 5. The extractor of claim 3 wherein said squaring means comprises third motor means connected to said first connecting means, second nozzle means cooperating with said third motor means and means connecting said second nozzle means to said first connecting means and to said second motor means.
- 6. The extractor of claim 5 wherein said first, second and third motor means comprise respective first, second and third bellows and said force transmitting means comprises a lever.
- 7. The extractor of claim 6 wherein said first and second bellows are arranged to apply their forces to opposite sides of said lever.
- 8. The extractor of claim 5 wherein said force transmitting means comprises a lever, wherein said first motor means comprises a first diaphragm module having a first control chamber connected to said second input terminal means and a first diaphragm movable by said input pressure within said first control chamber to apply a force to said lever, and wherein said second motor means comprises a second diaphragm module having a second control chamber connected to said second connecting means and a second diaphragm movable by said feedback pressure within said second control chamber to apply a force to said lever.
- 9. The extractor of claim 8 wherein said third motor means comprises a third diaphragm module having a third control chamber connected to said first connecting means, a diaphragm movable in response to said output pressure within said third control chamber, a force transmitting means movable in response to said third diaphragm and wherein said second nozzle means cooperates with said force transmitting means of said third motor means.
- 10. The extractor of claim 9 wherein said first and second diaphragms are arranged to apply their forces to opposite sides of said lever.
- 11. A fluidic square root extractor comprising:
- first input terminal means for connection to a source of main pressure;
- output terminal means for supplying an output pressure;
- second input terminal means for receiving an input pressure the square root of which is to be extracted;
- amplifier means connected to said first and second input terminal means and said output terminal means for providing an output pressure as a function of said input pressure and having feedback means; and,
- squaring means connected to said output terminal means for providing a feedback pressure which is a function of the square of said output pressure, said squaring means being connected to said feedback means,
- whereby said output pressure is a function of the square root of said input pressure.
- 12. The extractor of claim 11 wherein said amplifier means comprises a variable gain amplifier.
- 13. The extractor of claim 11 wherein said amplifier comprises a force transmitting means, first motor means connected to said second input terminal means for applying a force to said force transmitting means in response to said input pressure, second motor means, as said feedback means, connected to said squaring means for applying a force to said force transmitting means in response to said feedback pressure, and first nozzle means connected to said first input terminal means and to said output terminal means for cooperating with said force transmitting means.
- 14. The extractor of claim 13 wherein said first and second motor means are arranged to apply their forces to opposite sides of said force transmitting means.
- 15. The extractor of claim 13 wherein said squaring means comprises third motor means connected to said output terminal means, second nozzle means cooperating with said third motor means and means connecting said second nozzle means to said first nozzle means and to said feedback means.
- 16. The extractor of claim 15 wherein said first, second and third motor means comprise respective first, second and third bellows and said force transmitting means comprises a lever.
- 17. The extractor of claim 16 wherein said first and second bellows are arranged to apply their forces to opposite sides of said lever.
- 18. The extractor of claim 15 wherein said force transmitting means comprises a lever, wherein said first motor means comprises a first diaphragm module having a first control chamber connected to said second input terminal means and a first diaphragm movable by said input pressure within said first control chamber to apply a force to said lever, and wherein said second motor means comprises a second diaphragm module having a second control chamber connected to said second nozzle means and a second diaphragm movable by said feedback pressure within said second control chamber to apply a force to said lever.
- 19. The extractor of claim 18 wherein said third motor means comprises a third diaphragm module having a third control chamber connected to said output terminal means, a diaphragm movable in response to said output pressure within said third control chamber, a force transmitting means movable in response to said third diaphragm and wherein said second nozzle means cooperates with said force transmitting means of said third motor means.
- 20. The extractor of claim 19 wherein said first and second diaphragm modules are arranged to apply their forces to opposite sides of said lever.
- 21. The extractor of claim 1 wherein said squaring means comprises a jet tube arrangement having primary tube means connected to said first connecting means for issuing a jet of fluid dependent upon the output pressure and secondary tube means connected to said feedback means by said second connecting means for receiving a portion of said fluid dependent upon the velocity pressure of said fluid.
- 22. The extractor of claim 3 wherein said squaring means comprises a jet tube arrangement having primary tube means comprises a jet tube arrangement having primary tube a jet of fluid dependent upon the output pressure and secondary tube means connected to said feedback means by said second connecting means for receiving a portion of said fluid dependent upon the velocity pressure of said fluid.
- 23. The extractor of claim 11 wherein said squaring means comprises a jet tube arrangement having primary tube means connected to said output terminal means for issuing a jet of fluid dependent upon said output pressure and secondary tube means for receiving a portion of said fluid dependent upon said velocity pressure of said fluid and connected to said feedback means.
- 24. The extractor of claim 13 wherein said squaring means comprises a jet tube arrangement having primary tube means connected to said output terminal means for issuing a jet of fluid dependent upon said output pressure and secondary tube means for receiving a portion of said fluid dependent upon said velocity pressure of said fluid and connected to said feedback means.
- 25. A fluidic square root extractor comprising:
- first input means for connection to a source of main pressure;
- output terminal means for supplying an output pressure;
- second input means for receiving an input the square root of which is to be extracted;
- amplifier means connected to said first and second input means and said output terminal means for providing an output pressure as a function of said input and having feedback means; and,
- squaring means connected to said output terminal means for providing a feedback pressure which is the function of the square of said output pressure, said squaring means being connected to said feedback means,
- whereby said output pressure is a function of the square root of said input.
- 26. The extractor of claim 25 wherein said second input means comprises a means for providing a mechanical input.
- 27. The extractor of claim 26 wherein said amplifier means comprises a lever upon which said input and said feedback pressure operate.
- 28. The extractor of claim 27 wherein said amplifier means comprises a nozzle for cooperating with said lever and means connecting said first input means to said nozzle and to said output terminal means.
- 29. The extractor of claim 28 wherein said second input means comprises a target for sensing the velocity pressure of air moving over said target and connected to said lever.
- 30. The extractor of claim 28 wherein said squaring means comprises a jet tube arrangement having primary tube means connected to said output terminal means for issuing a jet of fluid dependent upon said output pressure and secondary tube means for receiving a portion of said fluid dependent upon said velocity pressure of said fluid and connected to said feedback means.
- 31. The extractor of claim 25 wherein said squaring means comprises a jet tube arrangement having primary tube means connected to said output terminal means for issuing a jet of fluid dependent upon said output pressure and secondary tube means for receiving a portion of said fluid dependent upon said velocity pressure of said fluid and connected to said feedback means.
Parent Case Info
This application is a continution-in-part of U.S. Ser. No. 729,511 filed Oct. 4, 1976, now abandoned.
US Referenced Citations (17)
Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
729511 |
Oct 1976 |
|