Claims
- 1. A power supply, for use with a device of predetermined functionality having a housing and at least one functional component, disposed therein, that implements the predetermined functionality, the at least one functional component selectively requiring electrical power in response to operation of the device, the power supply being disposed within the housing, and comprising:
at least one kinetic electrical generator, disposed within the housing, each said at least one kinetic electrical power generator being operable to:
generate electrical energy in response to motion of the housing that exceeds a predefined motion threshold, and process said electrical energy into electrical output power, said electrical output power corresponding to at least a first portion of the required electrical power; and power output means, connected to said at least one kinetic electrical generator, for delivering said electrical output power from said at least one kinetic electrical generator, to the at least one functional component during the device operation.
- 2. The power supply of claim 1, wherein each said at least one kinetic electrical generator, comprises:
a support structure; a pivot element, disposed within said support structure; an oscillating weight, disposed within said support structure, having a top portion connected to said pivot element, and a bottom portion, said oscillating weight being configured and operable to achieve oscillating motion in an angular range in response to motion of the housing that exceeds said predefined motion threshold, said pivot element being operable to produce a reciprocating radial motion thereof, in response to said oscillating motion of said oscillating weight; acceleration means, disposed within said oscillating weight, for decreasing said predefined motion threshold, and for increasing said angular range of said oscillating motion of said oscillating weight in response to said motion of the housing; motion conversion means, connected to said pivot element, for translating said reciprocating radial motion into a rotational motion of a first velocity; electromechanical transducer means, connected to said motion conversion means, for generating electrical energy in response to said rotational motion applied by said motion conversion means thereto; electrical energy processing means, connected to said electromechanical transducer means, for modifying said electrical energy into said electrical output power; and electrical output means, connected to said electrical energy processing means, for transferring said electrical output power from said electrical energy processing means to said power output means.
- 3. The power supply of claim 2, wherein at least one of said at least one kinetic electrical generator further comprises energy storage means, disposed within said support structure and connected to said electrical energy processing means, for:
when the device is not operating, storing said output electrical power; when the device is operating and the housing is not in motion, providing said electrical output power to at least one functional component, and when the device is operating and the housing is in motion, providing said electrical output power to at least one functional component, and when said electrical output power exceeds the required electrical power by an excess power amount, storing said excess power amount.
- 4. The power supply of claim 1, further comprising:
a rechargeable power unit, disposed within the housing and connected between said at least one kinetic electrical generator, and the at least one functional component, operable to:
store electrical power in an amount of less than or equal to a predetermined maximum power storage capacity; and provide said stored electrical power to the at least one functional component during the device operation, in an amount corresponding to at least a second portion of the required electrical power.
- 5. The power supply of claim 4, wherein said rechargeable power unit is further operable to:
when said stored electrical power amount is below said predetermined maximum power storage capacity, receive said electrical output power from said at least one kinetic electrical generator until said predetermined maximum power storage capacity is reached.
- 6. The power supply of claim 4, wherein said rechargeable power unit is further operable to:
when a current power capacity is at said predetermined maximum power storage capacity, dissipate said electrical output power received from said at least one kinetic electrical generator.
- 7. The power supply of claim 4, further comprising:
a back-up power supply, positioned within the housing, and connected to the at least one functional component; operable to: when said stored electrical power is below said at least a second portion of the required electrical power, providing back-up electrical power to the at least one functional component.
- 8. The power supply of claim 7, wherein said back-up power supply comprises:
at least one secondary kinetic electrical generator, disposed within the housing, each said at least one kinetic electrical power generator being operable to:
generate electrical energy in response to motion of the housing that exceeds a predefined motion threshold; process said electrical energy into electrical output power, said electrical output power corresponding to at least a first portion of the required electrical power; and store said electrical output power as back-up electrical power.
- 9. The power supply of claim 1, wherein the at least one functional component comprises a plurality of functional components, wherein said at least one kinetic electrical generator comprises a plurality of kinetic electrical generators, and wherein at least a portion of said plural kinetic electrical generators, is connected to different plural functional components.
- 10. The power supply of claim 1, wherein said at least one kinetic electrical generator comprises a plurality of kinetic electrical generators, wherein said power output means further comprises:
an electrical energy aggregation unit, connected to each said plural kinetic electrical generator and positioned within the housing, operable to aggregate said electrical output power from each said plural kinetic electrical generator.
- 11. A device of a predetermined functionality requiring electrical power, capable of generating at least a portion of the required electrical power having at least one predetermined parameter from motion thereof, the device comprising:
a housing; operational means for providing said predetermined functionality to a user of the device, said means for providing being at least partially positioned within said housing, and having at least one power input interface; at least one kinetic electrical generator, disposed within said housing, each said at least one kinetic electrical generator comprising:
a support structure; a pivot element, disposed within said support structure; an oscillating weight, disposed within said support structure, having a top portion connected to said pivot element, and a bottom portion, said oscillating weight being configured and operable to achieve oscillating motion in an angular range in response to motion of said support structure that exceeds a motion threshold, said pivot element being operable to produce a reciprocating radial motion thereof, in response to said oscillating motion of said oscillating weight; acceleration means, disposed within said oscillating weight, for decreasing said motion threshold, and for increasing said angular range of said oscillating motion of said oscillating weight in response to said motion of said support structure; motion conversion means, connected to said pivot element, for translating said reciprocating radial motion into a rotational motion of a first velocity; electromechanical transducer means, connected to said motion conversion means, for generating electrical energy in response to said rotational motion applied by said motion conversion means thereto; and electrical output means for receiving said generated electrical energy from said electromechanical transducer means; electrical energy processing means, connected to said electrical output means and positioned within said housing, for modifying said generated electrical energy into electrical output power corresponding to the at least one predetermined parameter; and power means, connected to said electrical energy processing means and to said at least one power input interface, for delivering said electrical output power to said at least one power input interface, said delivered electrical output power at least in part comprising the required electrical power.
- 12. The apparatus of claim 11, wherein said power means further comprises electrical energy storage means for temporarily storing said electrical output power until a predetermined storage capacity is reached, and thereafter delivering said electrical output power to said at least one power input interface.
- 13. The apparatus of claim 11, wherein said power means further comprises at least one additional source of electrical power, operable to provide at least a portion of the required electrical power.
- 14. The apparatus of claim 13, wherein said at least one additional source of electrical power comprises at least one of: a battery, a rechargeable battery, a solar cell, a piezo-electric transducer-based generator, a fuel-based generator, a wind-based generator, a hydro-based generator, and a kinetic-based electrical generator.
- 15. The apparatus of claim 11, wherein said operational means comprise a plurality of functional components, each plural component being operable to perform a predetermined individual function and requiring individual electrical power, wherein said at least one kinetic electrical power generator comprises a plurality of kinetic electrical power generators, wherein at least one plural kinetic electrical power generator is connected to said power means, wherein said power means is connected to at least one of said plural functional components, and wherein a different at least one plural kinetic electrical generator is connected to a corresponding different at least one of said plural functional components.
- 16. A self-recharging power supply, for use with a device requiring electrical power and having a power supply input interface with at least one predefined electrical input parameter, comprising:
a power supply housing; at least one rechargeable power supply element disposed within said power supply housing operable to store electrical power, in a power storage amount up to a maximum capacity, having at least one predefined electrical storage parameter; at least one kinetic electrical generator, disposed within said power supply housing, each said at least one kinetic electrical generator comprising:
a support structure; a pivot element, disposed within said support structure; an oscillating weight, disposed within said support structure, having a top portion connected to said pivot element, and a bottom portion, said oscillating weight being configured and operable to achieve oscillating motion in an angular range in response to motion of said support structure that exceeds a motion threshold, said pivot element being operable to produce a reciprocating radial motion thereof, in response to said oscillating motion of said oscillating weight; acceleration means, disposed within said oscillating weight, for decreasing said motion threshold, and for increasing said angular range of said oscillating motion of said oscillating weight in response to said motion of said support structure; motion conversion means, connected to said pivot element, for translating said reciprocating radial motion into a rotational motion of a first velocity; electromechanical transducer means, connected to said motion conversion means, for generating electrical energy in response to said rotational motion applied by said motion conversion means thereto; and electrical output means for receiving said generated electrical energy from said electromechanical transducer means; electrical energy processing means, connected to said electrical output means and positioned within said power supply housing, for modifying said generated electrical energy into electrical output power corresponding to the at least one predetermined electrical storage parameter; a recharging control unit, connected to said electrical energy processing means and to said at least one rechargeable power supply element, and disposed within said power supply housing, operable to recharge said at least one rechargeable power supply element with said electrical output power; and at least one power supply output interface, connected to at least one rechargeable power supply element, and positioned at least partially outside said power supply housing, operable to:
connect to the power supply input interface of the device, modify said electrical output power to correspond to the at least one predefined electrical input parameter; and deliver said modified electrical power to the device power supply input interface.
- 17. The self-recharging power supply of claim 16, further comprising a recharge interface, connected to said recharging unit and positioned at least partially outside said power supply housing, operable to receive additional electrical output power for recharging said at least one rechargeable power supply element, from an external source of electrical energy.
- 18. The self-recharging power supply of claim 16, wherein the power supply is configured as a battery, and wherein said at least one rechargeable power supply element is one of: at least one rechargeable battery, and at least one capacitor.
- 19. A portable self-recharging power supply charger, for use with at least one device each having a rechargeable power supply having a recharge input interface, capable of recharging when electrical power corresponding to a particular electrical recharge parameter is delivered to the recharge input interface, comprising:
a charger housing; at least one rechargeable power supply element disposed within said charger housing operable to store electrical power, in a power storage amount up to a maximum capacity, having at least one predefined electrical storage parameter; at least one kinetic electrical generator, disposed within said charger housing, each said at least one kinetic electrical generator comprising:
a support structure; a pivot element, disposed within said support structure; an oscillating weight, disposed within said support structure, having a top portion connected to said pivot element, and a bottom portion, said oscillating weight being configured and operable to achieve oscillating motion in an angular range in response to motion of said support structure that exceeds a motion threshold, said pivot element being operable to produce a reciprocating radial motion thereof, in response to said oscillating motion of said oscillating weight; acceleration means, disposed within said oscillating weight, for decreasing said motion threshold, and for increasing said angular range of said oscillating motion of said oscillating weight in response to said motion of said support structure; motion conversion means, connected to said pivot element, for translating said reciprocating radial motion into a rotational motion of a first velocity; electromechanical transducer means, connected to said motion conversion means, for generating electrical energy in response to said rotational motion applied by said motion conversion means thereto; and electrical output means for receiving said generated electrical energy from said electromechanical transducer means; electrical energy processing means, connected to said electrical output means and positioned within said charger housing, for modifying said generated electrical energy into electrical output power corresponding to the at least one predetermined electrical storage parameter; a recharging control unit, connected to said electrical energy processing means and to said at least one rechargeable power supply element, and disposed within said charger housing, operable to recharge said at least one rechargeable power supply element with said electrical output power; and a power supply output interface, connected to at least one rechargeable power supply element, and to said recharging control unit, and positioned at least partially outside said charger housing, operable to:
connect to the recharge input interface of the device, modify said electrical output power to correspond to the at least one predefined electrical recharge parameter; and deliver said modified electrical power to the device power recharge input interface.
- 20. The self-recharging power supply charger of claim 19, further comprising a flexible elongated connector having a first end connected to said power supply output interface, and a second end configured for releasable connection to the recharge input interface of the device.
- 21. The self-recharging power supply charger of claim 19, further comprising control means, connected to said a power supply output interface, for selectively modifying said electrical output power to correspond to a different predefined electrical recharge parameter, selected from a predefined plurality of electrical recharge parameters, each corresponding to a particular plural device selected from a plurality of different devices, to therefore enable selective recharging of a variety of rechargeable devices.
- 22. The self-recharging power supply charger of claim 21, further comprising a control interface connected to said control means, operable, in response to manipulation by a user, to cause said control means to selectively modify said electrical output power to correspond to a desired predefined electrical recharge parameter for a specific desired rechargeable device.
- 23. The self-recharging power supply charger of claim 19, further comprising an indicator, connected to at least one of: said at least one rechargeable power supply element, and said recharging control unit, operable to communicate to a user, a current electrical energy storage amount in said at least one rechargeable power supply element.
- 24. The self-recharging power supply charger of claim 23, further comprising activation means, connected to said indicator, for selectively activating said indicator.
- 25. The self-recharging power supply charger of claim 21, wherein each said plural device comprises a unique input interface, further comprising a plurality of interface adapters each having a first end configured for releasable connection to said power supply output interface, and a second end configured for releasable connection to one of said unique input interfaces.
- 26. The self-recharging power supply charger of claim 25, further comprising a flexible elongated connector having a third end connected to said power supply output interface, and a fourth end configured for releasable connection to said first end of each plural interface adapter.
- 27. The self-recharging power supply charger of claim 19, further comprising:
a housing having a first section shaped, sized, and configured to receive and store a particular device of the at least one devices, and a second section shaped, sized, and configured to store said charge housing; and connection means for releasably connecting said power supply output interface to the recharge input interface to recharge the particular device when the device is placed into said first section of said housing.
- 28. The self-recharging power supply charger of claim 19, further comprising:
a housing having a main section shaped, sized, and configured to receive and store a particular device of the at least one devices, and a plurality of accessory sections each shaped, sized, and configured to releasably store said charge housing; connection means for releasably connecting said power supply output interface to the recharge input interface to recharge the particular device when the device is placed into said first section of said housing and when said charge housing is placed into one of said plural accessory sections.
- 29. A method for providing electrical power to a device of predetermined functionality having a housing and at least one functional component, disposed therein, that implements the predetermined functionality, the at least one functional component selectively requiring electrical power in response to operation of the device, the power supply being disposed within the housing, comprising the steps of:
(a) providing at least one kinetic electrical generator, disposed within the housing (b) generating, at least one kinetic electrical generator, electrical energy in response to motion of the housing that exceeds a predefined motion threshold; (c) converting said electrical energy into electrical output power, said electrical output power corresponding to at least a first portion of the required electrical power; and (d) delivering said electrical output power from said at least one kinetic electrical generator, to the at least one functional component during the device operation.
- 30. The method of claim 29, further comprising the steps of:
(e) providing a rechargeable electrical power storage unit; (f) instead of step (d) delivering said electrical output power to said rechargeable electrical power storage unit to store said electrical output power therein.
CROSS REFERENCE TO RELATED APPLICATIONS
[0001] The present patent application claims priority from the commonly assigned U.S. provisional patent application Ser. No. 60/468,917 entitled “Apparatus and Method for Generating Electrical Energy from Motion and From Routine Activities” filed May 8, 2003.
Provisional Applications (1)
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Number |
Date |
Country |
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60468917 |
May 2003 |
US |