IPC분류정보
국가/구분 |
United States(US) Patent
등록
|
국제특허분류(IPC7판) |
|
출원번호 |
US-0045558
(2011-03-11)
|
등록번호 |
US-8521029
(2013-08-27)
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발명자
/ 주소 |
|
출원인 / 주소 |
|
인용정보 |
피인용 횟수 :
1 인용 특허 :
2 |
초록
▼
An arrangement of gravity modulator and gravity-modulation receiver where photons or electromagnetic radiation is modulated electronically or mechanically to reach either a solid, liquid or mixed target possibly through or followed by a surrounding medium to produce gravity modulation in the target
An arrangement of gravity modulator and gravity-modulation receiver where photons or electromagnetic radiation is modulated electronically or mechanically to reach either a solid, liquid or mixed target possibly through or followed by a surrounding medium to produce gravity modulation in the target to effect gravity signaling which is received by a gravity-modulation receiver in or not in physical contact with the target. In the receiver, one or more piezo-electric transducer/s or quartz crystal/s receive the gravity modulation amplified for further signal processing. When not in physical contact with the target, the piezo-electric transducer/s is/are loaded with a resonator mass of natural resonant frequency either equal to, half, one third or one fifth of the frequency of the gravity modulator, the quartz crystal/s is/are gravity biased with a high-density metal piece along one direction of the oscillation mode of the crystal/s with natural resonant frequency similar to the resonator mass.
대표청구항
▼
1. An arrangement of gravity modulator and gravity-modulation receiver comprising: at least one gravity modulator producing gravity modulation, having at least one photon source means, holding means for said photon source means, modulation means to precisely modulate the photons from said photon sou
1. An arrangement of gravity modulator and gravity-modulation receiver comprising: at least one gravity modulator producing gravity modulation, having at least one photon source means, holding means for said photon source means, modulation means to precisely modulate the photons from said photon source means, at least one less-reflective target for said photons, said less-reflective target comprising either a solid, a liquid or both, and mounting means for said less-reflective target; andat least one gravity-modulation receiver means in or not in physical contact with said less-reflective target or said mounting means for said less-reflective target;said at least one gravity-modulation receiver means having at least one piezo-electric transducer or at least one quartz crystal electrically connected to a differential amplifier or a charge amplifier to amplify said gravity modulation for further signal processing;when not in said physical contact with said less-reflective target or said mounting means for said less-reflective target, said at least one piezo-electric transducer loaded with a resonator mass with a natural resonant frequency either equal to, half, one third or one fifth of the frequency of said modulation means;when not in said physical contact with said less-reflective target or said mounting means for said less-reflective target, said at least one quartz crystal gravity biased with a shaped high-density metal biasing piece placed along one direction of the oscillation mode of said at least one quartz crystal having a natural resonant frequency either equal to, one third or one fifth of the frequency of said modulation means. 2. An arrangement of gravity modulator and gravity-modulation receiver in accordance with claim 1, wherein said photon source means is either a carbon film resistor, metal film resistor, a thick film resistor, a wire resistor or an electric glow discharge lamp, producing non-coherent protons with the passage of an electric current through said carbon film, metal film, thick film resistor, wire resistor or electric glow discharge lamp; said passage of said electric current controlled by said modulation means to precisely modulate the photons from said photon source means. 3. An arrangement of gravity modulator and gravity-modulation receiver in accordance with claim 1, wherein said photon source means is a light emitting diode producing non-coherent photons or a laser light emitting diode producing coherent photons. 4. An arrangement of gravity modulator and gravity-modulation receiver in accordance with claim 1, wherein said photon source means is an array of xenon-filled or krypton-filled electric glow discharge flash lamps which are fired consecutively, controlled by said modulation means to precisely modulate the photons from said photon source means. 5. An arrangement of gravity modulator and gravity-modulation receiver in accordance with claim 1, wherein said photon source means, holding means for said photon source means, said less-reflective target and said mounting means for said less-reflective target are integrated. 6. An arrangement of gravity modulator and gravity-modulation receiver in accordance with claim 1, wherein said photon source means is a non-inductive conductor, producing non-coherent photons with the passage of an electric current through said non-inductive conductor; said passage of said electric current controlled by said modulation means to precisely modulate the photons from said photon source means. 7. An arrangement of gravity modulator and gravity-modulation receiver in accordance with claim 6, wherein said non-inductive conductor is a Mobius resistor, producing non-coherent photons with the passage of an electric current through said Mobius resistor; said passage of said electric current controlled by said modulation means to precisely modulate the photons from said photon source means. 8. An arrangement of gravity modulator and gravity-modulation receiver comprising: at least one gravity modulator producing gravity modulation, having at least one photon source means, holding means for said photon source means, modulation means to precisely modulate photons from said photon source means, a less-reflective target for said photons, mounting means for said less-reflective target, and an optical resonant cavity with reflection means for said photons from said photon source means;said target comprising either solid means, liquid means or both;said resonant cavity fully or partially enclosing said photon source means;said modulation means to precisely modulate photons from said photon source means, said less-reflective target for said photons, said holding means for said photon source means and said mounting means for said less-reflective target; andat least one gravity-modulation receiver means in or not in physical contact with said less-reflective target or said mounting means for said less-reflective target;said receiver means having at least one piezo-electric transducer or at least one quartz crystal electrically connected to a differential amplifier or a charge amplifier to amplify the gravity modulation from said modulator for further signal processing;when not in said physical contact with said less-reflective target or said mounting means for said less-reflective target, said at least one piezo-electric transducer loaded with a resonator mass with a natural resonant frequency either equal to, half, one third or one fifth of the frequency of said modulation means;when not in said physical contact with said less-reflective target or said mounting means for said less-reflective target, said at least one quartz crystal gravity biased with a shaped high-density metal biasing piece placed along one direction of the oscillation mode of said at least one quartz crystal having a natural resonant frequency either equal to, half, one third or one fifth of the frequency of said modulation means. 9. An arrangement of gravity modulator and gravity-modulation receiver in accordance with claim 8, wherein said photon source means is either a carbon film resistor, metal film resistor, a thick film resistor, a wire resistor or an electric glow discharge lamp, producing non-coherent photons with the passage of an electric current through said carbon film, metal film, thick film resistor, wire resistor or electric glow discharge lamp; said passage of said electric current controlled by said modulation means to precisely modulate the photons from said photon source means. 10. An arrangement of gravity modulator and gravity-modulation receiver in accordance with claim 8, wherein said photon source means is a light emitting diode producing non-coherent photons or a laser light emitting diode producing coherent photons. 11. An arrangement of gravity modulator and gravity-modulation receiver in accordance with claim 8, wherein said photon source means is an array of xenon-filled or krypton-filled electric glow discharge flash lamps which are fired consecutively, controlled by said modulation means to precisely modulate the photons from said photon source means. 12. An arrangement of gravity modulator and gravity-modulation receiver in accordance with claim 8, wherein said photon source means, holding means for said photon source means, said less-reflective target and said mounting means for said less-reflective target are integrated. 13. An arrangement of gravity modulator and gravity-modulation receiver in accordance with claim 8, wherein said photon source means is a non-inductive conductor, producing non-coherent photons with the passage of an electric current through said non-inductive conductor; said passage of said electric current controlled by said modulation means to precisely modulate the photons from said photon source means. 14. An arrangement of gravity modulator and gravity-modulation receiver in accordance with claim 13, wherein said non-inductive conductor is a Mobius resistor, producing non-coherent photons with the passage of an electric current through said Mobius resistor; said passage of said electric current controlled by said modulation means to precisely modulate the photons from said photon source means. 15. An arrangement of gravity modulator and gravity-modulation receiver comprising: at least one gravity modulator producing gravity modulation, having at least one electromagnetic radiation source means, holding means for said electromagnetic radiation source means, modulation means to precisely modulate electromagnetic radiation from said electromagnetic radiation source means, a less-reflective target for said electromagnetic radiation, mounting means for said target, a resonant cavity with reflection means for said electromagnetic radiation from said electromagnetic radiation source means;said target comprising either a solid means, a liquid means or both;said resonant cavity either fully, partially or selectively enclosing said electromagnetic radiation source means, said modulation means to precisely modulate electromagnetic radiation from said electromagnetic radiation source means, said less-reflective target for said electromagnetic radiation, said holding means for said electromagnetic radiation source means and said mounting means for said less-reflective target; andat least one gravity-modulation receiver means in or not in physical contact with said less-reflective target or said mounting means for said less-reflective target;said receiver means having at least one piezo-electric transducer or at least one quartz crystal electrically connected to a differential amplifier or a charge amplifier to amplify the gravity modulation from said modulator for further signal processing;said at least one piezo-electric transducer loaded with a resonator mass with a natural resonant frequency either equal to, half, one third or one fifth of the frequency of said modulation means, when not in said physical contact with said less-reflective target; andsaid at least one quartz crystal gravity biased with a shaped high-density metal biasing piece placed along one direction of the oscillation mode of said at least one quartz crystal having a natural resonant frequency either equal to, one third or one fifth of the frequency of said modulation means, when not in said physical contact with said less-reflective target. 16. An arrangement of gravity modulator and gravity-modulation receiver in accordance with claim 15, wherein said electromagnetic radiation source means is either a carbon film resistor, metal film resistor, a thick film resistor, a wire resistor or an electric glow discharge lamp, producing electromagnetic radiation with the passage of an electric current through said carbon film, metal film, thick film resistor, wire resistor or electric glow discharge lamp; said passage of said electric current controlled by said modulation means to precisely modulate the electromagnetic radiation from said electromagnetic radiation source means. 17. An arrangement of gravity modulator and gravity-modulation receiver in accordance with claim 15, wherein said electromagnetic radiation source means is a light emitting diode producing non-coherent electromagnetic radiation or a laser light emitting diode producing coherent electromagnetic radiation. 18. An arrangement of gravity modulator and gravity-modulation receiver in accordance with claim 15, wherein said electromagnetic radiation source means is an array of xenon-filled or krypton-filled electric glow discharge flash lamps which are fired consecutively, controlled by said modulation means to precisely modulate the electromagnetic radiation from said electromagnetic radiation source means. 19. An arrangement of gravity modulator and gravity-modulation receiver in accordance with claim 15, wherein said electromagnetic radiation source means, holding means for said electromagnetic radiation source means, said less-reflective target and said mounting means for said less-reflective target are integrated. 20. An arrangement of gravity modulator and gravity-modulation receiver in accordance with claim 15, wherein said electromagnetic radiation source means is a non-inductive conductor, producing non-coherent electromagnetic radiation with the passage of an electric current through said non-inductive conductor; said passage of said electric current controlled by said modulation means to precisely modulate the electromagnetic radiation from said electromagnetic radiation source means.
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