Patent
US 10,476,333Patent
Atlas literature
Patent
US 10,476,333Patent drawings and their descriptions. Click a drawing to enlarge it.
FIG. 1 is Rotor(100) including magnets(5), graphene wire winding (20), and a rotating shaft (10). Referring
FIG. 2 is an alternator (200) built-in graphene winding wire on a stator (30) in a housing, which is replaceable steel to other light materials of ultra …
FIG. 3 is simple drawing of stator showing winded graphene wire (30) for better understanding. Referring
FIG. 4 is typical alternator circuit of current invention. Referring to
FIG. 5 is a power generating system harvesting energy from a two side long shaft The DC motor (900) is powered by a rechargeable battery (500) and rotates the …
FIG. 6 is a power generating system, applied to a drone harvesting energy from two side long shafts The DC motors (900) installed an corresponding upper ends …
FIG. 7 is a schematic diagram of graphene coil winding apparatus according to the present invention. The frame (3) I attached to a platform (2) of a graphene …
FIG.8 is a block diagram showing control system of the winding apparatus. Winding apparatus comprises a controller (19) which comprises, for example, a …
Claims define the patent's legal scope. Independent claims stand alone; dependent claims (nested) narrow them. Click a claim to expand its dependents.
(Cu rr ently amended) A graphene power generating system comprising: a rotating shaft having graphene wires installed [[in]] on a rotor for increasing electrical conductivity and reducing sizes, g g g y g pp p g, wherein the rotating shaft rotates freely without a mechanical contact with a stator, wherein the stator has graphene wires installed internally, wherein the graphene wires installed on the rotor or in the stator comprise at least one of two-more tied wires, or two-more twisted wires, wherein the graphene power generating system is configured to facilitate to generate electrical power when using the graphene wires instead of a copper single wire wound on a conventional rotor or stator, and wherein the graphene power generating system is configured to generate electrical power using a rotational energy of the rotating shaft of at least one of vehicles, moving objects, drones, trains, or ships. Currently amended
The graphene power generating system of claim 1, wherein the generated electrical power is adapted to be used for the vehicle, the moving object, or a power equipment. Previously presented
(Cu rr ently Amended) The graphene power generating system of claim 1, wherein the system is configured to reduce a size and weight at least by half and increase electrical conductivity at least more than doubly compared to a conventional alternator using a single copper wire. Currently amended
The graphene power generating system of claim 1, wherein the rotating shaft is made of a lighter steel material so as to reduce a weight of the power generating system. Previously presented
The graphene power generating system of claim 1, wherein the rotating shaft is configured to be rotated by at least one of a human power, an electrical power, a wind power, a water power, a geothermal power, and a machine power. Original
The graphene power generating system of claim 1, further comprising a power storage for storing the generated electrical power, wherein the power storage comprises a rechargeable battery, a power storing capacitor circuit, or a grid. Previously presented
The graphene power generating system of claim 1, wherein the rotating shaft is connected to a gear, a belt, or a chain of a power source. Previously presented
The graphene power generating system of claim 1, wherein the rotating shaft comprises a double side shaft or an extended shaft or a driving shaft adapted to receive and install the rotor of the graphene power generating system. Previously presented
(Cu rr ently Amended) The graphene power generating system of claim 1, wherein the rotor engages with the stator electromagnetically without [[a]] the mechanical contact, g y p g g y. Currently amended
The graphene power generating system of claim 1, wherein the graphene wires are graphene with copper CVD/electroplated wires. Previously presented
(Cu rr ently Amended) The graphene power generating system of claim 1, wherein the graphene wires are graphene films p y. Currently amended
2 Canceled
Canceled
Canceled
14-20. Canceled
Canceled
(Cu rr ently Amended) A graphene power generating system comprising: a rotating shaft having carbon wires installed [[in]] on a rotor for increasing electrical conductivity and reducing sizes, g g g y g pp 4 p g,; wherein the rotating shaft rotates freely without a mechanical contact with a stator, wherein the stator has carbon wires installed internally, wherein the carbon wires installed on the rotor or in the stator comprise at least one of two-more tied wires, or two-more twisted wires, wherein the graphene power generating system is configured to facilitate to generate electrical power when using the carbon wires instead of a copper single wire wound on a conventional rotor or stator, and wherein the graphene power generating system is configured to generate electrical power usin g a rotational energy moving objects. drones. trains, or ships. s Currently of the rotating shaft of at least one of vehicles, amended
Layer stacks claimed or described, ordered top of device to substrate.
graphene power generating system (graphene wire rotor/stator)
graphene power generating system (carbon wire rotor/stator)
Materials described outside the worked examples.
graphene wire
graphene with copper CVD/electroplated wire
Patent
Atlas literature
Patent
US 10,476,333Patent drawings and their descriptions. Click a drawing to enlarge it.
FIG. 1 is Rotor(100) including magnets(5), graphene wire winding (20), and a rotating shaft (10). Referring
FIG. 2 is an alternator (200) built-in graphene winding wire on a stator (30) in a housing, which is replaceable steel to other light materials of ultra …
FIG. 3 is simple drawing of stator showing winded graphene wire (30) for better understanding. Referring
FIG. 4 is typical alternator circuit of current invention. Referring to
FIG. 5 is a power generating system harvesting energy from a two side long shaft The DC motor (900) is powered by a rechargeable battery (500) and rotates the …
FIG. 6 is a power generating system, applied to a drone harvesting energy from two side long shafts The DC motors (900) installed an corresponding upper ends …
FIG. 7 is a schematic diagram of graphene coil winding apparatus according to the present invention. The frame (3) I attached to a platform (2) of a graphene …
FIG.8 is a block diagram showing control system of the winding apparatus. Winding apparatus comprises a controller (19) which comprises, for example, a …
Claims define the patent's legal scope. Independent claims stand alone; dependent claims (nested) narrow them. Click a claim to expand its dependents.
(Cu rr ently amended) A graphene power generating system comprising: a rotating shaft having graphene wires installed [[in]] on a rotor for increasing electrical conductivity and reducing sizes, g g g y g pp p g, wherein the rotating shaft rotates freely without a mechanical contact with a stator, wherein the stator has graphene wires installed internally, wherein the graphene wires installed on the rotor or in the stator comprise at least one of two-more tied wires, or two-more twisted wires, wherein the graphene power generating system is configured to facilitate to generate electrical power when using the graphene wires instead of a copper single wire wound on a conventional rotor or stator, and wherein the graphene power generating system is configured to generate electrical power using a rotational energy of the rotating shaft of at least one of vehicles, moving objects, drones, trains, or ships. Currently amended
The graphene power generating system of claim 1, wherein the generated electrical power is adapted to be used for the vehicle, the moving object, or a power equipment. Previously presented
(Cu rr ently Amended) The graphene power generating system of claim 1, wherein the system is configured to reduce a size and weight at least by half and increase electrical conductivity at least more than doubly compared to a conventional alternator using a single copper wire. Currently amended
The graphene power generating system of claim 1, wherein the rotating shaft is made of a lighter steel material so as to reduce a weight of the power generating system. Previously presented
The graphene power generating system of claim 1, wherein the rotating shaft is configured to be rotated by at least one of a human power, an electrical power, a wind power, a water power, a geothermal power, and a machine power. Original
The graphene power generating system of claim 1, further comprising a power storage for storing the generated electrical power, wherein the power storage comprises a rechargeable battery, a power storing capacitor circuit, or a grid. Previously presented
The graphene power generating system of claim 1, wherein the rotating shaft is connected to a gear, a belt, or a chain of a power source. Previously presented
The graphene power generating system of claim 1, wherein the rotating shaft comprises a double side shaft or an extended shaft or a driving shaft adapted to receive and install the rotor of the graphene power generating system. Previously presented
(Cu rr ently Amended) The graphene power generating system of claim 1, wherein the rotor engages with the stator electromagnetically without [[a]] the mechanical contact, g y p g g y. Currently amended
The graphene power generating system of claim 1, wherein the graphene wires are graphene with copper CVD/electroplated wires. Previously presented
(Cu rr ently Amended) The graphene power generating system of claim 1, wherein the graphene wires are graphene films p y. Currently amended
2 Canceled
Canceled
Canceled
14-20. Canceled
Canceled
(Cu rr ently Amended) A graphene power generating system comprising: a rotating shaft having carbon wires installed [[in]] on a rotor for increasing electrical conductivity and reducing sizes, g g g y g pp 4 p g,; wherein the rotating shaft rotates freely without a mechanical contact with a stator, wherein the stator has carbon wires installed internally, wherein the carbon wires installed on the rotor or in the stator comprise at least one of two-more tied wires, or two-more twisted wires, wherein the graphene power generating system is configured to facilitate to generate electrical power when using the carbon wires instead of a copper single wire wound on a conventional rotor or stator, and wherein the graphene power generating system is configured to generate electrical power usin g a rotational energy moving objects. drones. trains, or ships. s Currently of the rotating shaft of at least one of vehicles, amended
Layer stacks claimed or described, ordered top of device to substrate.
graphene power generating system (graphene wire rotor/stator)
graphene power generating system (carbon wire rotor/stator)
Materials described outside the worked examples.
graphene wire
graphene with copper CVD/electroplated wire
Patent
Atlas literature
Patent
US 10,476,333Patent drawings and their descriptions. Click a drawing to enlarge it.
FIG. 1 is Rotor(100) including magnets(5), graphene wire winding (20), and a rotating shaft (10). Referring
FIG. 2 is an alternator (200) built-in graphene winding wire on a stator (30) in a housing, which is replaceable steel to other light materials of ultra …
FIG. 3 is simple drawing of stator showing winded graphene wire (30) for better understanding. Referring
FIG. 4 is typical alternator circuit of current invention. Referring to
FIG. 5 is a power generating system harvesting energy from a two side long shaft The DC motor (900) is powered by a rechargeable battery (500) and rotates the …
FIG. 6 is a power generating system, applied to a drone harvesting energy from two side long shafts The DC motors (900) installed an corresponding upper ends …
FIG. 7 is a schematic diagram of graphene coil winding apparatus according to the present invention. The frame (3) I attached to a platform (2) of a graphene …
FIG.8 is a block diagram showing control system of the winding apparatus. Winding apparatus comprises a controller (19) which comprises, for example, a …
Claims define the patent's legal scope. Independent claims stand alone; dependent claims (nested) narrow them. Click a claim to expand its dependents.
(Cu rr ently amended) A graphene power generating system comprising: a rotating shaft having graphene wires installed [[in]] on a rotor for increasing electrical conductivity and reducing sizes, g g g y g pp p g, wherein the rotating shaft rotates freely without a mechanical contact with a stator, wherein the stator has graphene wires installed internally, wherein the graphene wires installed on the rotor or in the stator comprise at least one of two-more tied wires, or two-more twisted wires, wherein the graphene power generating system is configured to facilitate to generate electrical power when using the graphene wires instead of a copper single wire wound on a conventional rotor or stator, and wherein the graphene power generating system is configured to generate electrical power using a rotational energy of the rotating shaft of at least one of vehicles, moving objects, drones, trains, or ships. Currently amended
The graphene power generating system of claim 1, wherein the generated electrical power is adapted to be used for the vehicle, the moving object, or a power equipment. Previously presented
(Cu rr ently Amended) The graphene power generating system of claim 1, wherein the system is configured to reduce a size and weight at least by half and increase electrical conductivity at least more than doubly compared to a conventional alternator using a single copper wire. Currently amended
The graphene power generating system of claim 1, wherein the rotating shaft is made of a lighter steel material so as to reduce a weight of the power generating system. Previously presented
The graphene power generating system of claim 1, wherein the rotating shaft is configured to be rotated by at least one of a human power, an electrical power, a wind power, a water power, a geothermal power, and a machine power. Original
The graphene power generating system of claim 1, further comprising a power storage for storing the generated electrical power, wherein the power storage comprises a rechargeable battery, a power storing capacitor circuit, or a grid. Previously presented
The graphene power generating system of claim 1, wherein the rotating shaft is connected to a gear, a belt, or a chain of a power source. Previously presented
The graphene power generating system of claim 1, wherein the rotating shaft comprises a double side shaft or an extended shaft or a driving shaft adapted to receive and install the rotor of the graphene power generating system. Previously presented
(Cu rr ently Amended) The graphene power generating system of claim 1, wherein the rotor engages with the stator electromagnetically without [[a]] the mechanical contact, g y p g g y. Currently amended
The graphene power generating system of claim 1, wherein the graphene wires are graphene with copper CVD/electroplated wires. Previously presented
(Cu rr ently Amended) The graphene power generating system of claim 1, wherein the graphene wires are graphene films p y. Currently amended
2 Canceled
Canceled
Canceled
14-20. Canceled
Canceled
(Cu rr ently Amended) A graphene power generating system comprising: a rotating shaft having carbon wires installed [[in]] on a rotor for increasing electrical conductivity and reducing sizes, g g g y g pp 4 p g,; wherein the rotating shaft rotates freely without a mechanical contact with a stator, wherein the stator has carbon wires installed internally, wherein the carbon wires installed on the rotor or in the stator comprise at least one of two-more tied wires, or two-more twisted wires, wherein the graphene power generating system is configured to facilitate to generate electrical power when using the carbon wires instead of a copper single wire wound on a conventional rotor or stator, and wherein the graphene power generating system is configured to generate electrical power usin g a rotational energy moving objects. drones. trains, or ships. s Currently of the rotating shaft of at least one of vehicles, amended
Layer stacks claimed or described, ordered top of device to substrate.
graphene power generating system (graphene wire rotor/stator)
graphene power generating system (carbon wire rotor/stator)
Materials described outside the worked examples.
graphene wire
graphene with copper CVD/electroplated wire
Patent
Atlas literature
Patent
US 10,476,333Patent drawings and their descriptions. Click a drawing to enlarge it.
FIG. 1 is Rotor(100) including magnets(5), graphene wire winding (20), and a rotating shaft (10). Referring
FIG. 2 is an alternator (200) built-in graphene winding wire on a stator (30) in a housing, which is replaceable steel to other light materials of ultra …
FIG. 3 is simple drawing of stator showing winded graphene wire (30) for better understanding. Referring
FIG. 4 is typical alternator circuit of current invention. Referring to
FIG. 5 is a power generating system harvesting energy from a two side long shaft The DC motor (900) is powered by a rechargeable battery (500) and rotates the …
FIG. 6 is a power generating system, applied to a drone harvesting energy from two side long shafts The DC motors (900) installed an corresponding upper ends …
FIG. 7 is a schematic diagram of graphene coil winding apparatus according to the present invention. The frame (3) I attached to a platform (2) of a graphene …
FIG.8 is a block diagram showing control system of the winding apparatus. Winding apparatus comprises a controller (19) which comprises, for example, a …
Claims define the patent's legal scope. Independent claims stand alone; dependent claims (nested) narrow them. Click a claim to expand its dependents.
(Cu rr ently amended) A graphene power generating system comprising: a rotating shaft having graphene wires installed [[in]] on a rotor for increasing electrical conductivity and reducing sizes, g g g y g pp p g, wherein the rotating shaft rotates freely without a mechanical contact with a stator, wherein the stator has graphene wires installed internally, wherein the graphene wires installed on the rotor or in the stator comprise at least one of two-more tied wires, or two-more twisted wires, wherein the graphene power generating system is configured to facilitate to generate electrical power when using the graphene wires instead of a copper single wire wound on a conventional rotor or stator, and wherein the graphene power generating system is configured to generate electrical power using a rotational energy of the rotating shaft of at least one of vehicles, moving objects, drones, trains, or ships. Currently amended
The graphene power generating system of claim 1, wherein the generated electrical power is adapted to be used for the vehicle, the moving object, or a power equipment. Previously presented
(Cu rr ently Amended) The graphene power generating system of claim 1, wherein the system is configured to reduce a size and weight at least by half and increase electrical conductivity at least more than doubly compared to a conventional alternator using a single copper wire. Currently amended
The graphene power generating system of claim 1, wherein the rotating shaft is made of a lighter steel material so as to reduce a weight of the power generating system. Previously presented
The graphene power generating system of claim 1, wherein the rotating shaft is configured to be rotated by at least one of a human power, an electrical power, a wind power, a water power, a geothermal power, and a machine power. Original
The graphene power generating system of claim 1, further comprising a power storage for storing the generated electrical power, wherein the power storage comprises a rechargeable battery, a power storing capacitor circuit, or a grid. Previously presented
The graphene power generating system of claim 1, wherein the rotating shaft is connected to a gear, a belt, or a chain of a power source. Previously presented
The graphene power generating system of claim 1, wherein the rotating shaft comprises a double side shaft or an extended shaft or a driving shaft adapted to receive and install the rotor of the graphene power generating system. Previously presented
(Cu rr ently Amended) The graphene power generating system of claim 1, wherein the rotor engages with the stator electromagnetically without [[a]] the mechanical contact, g y p g g y. Currently amended
The graphene power generating system of claim 1, wherein the graphene wires are graphene with copper CVD/electroplated wires. Previously presented
(Cu rr ently Amended) The graphene power generating system of claim 1, wherein the graphene wires are graphene films p y. Currently amended
2 Canceled
Canceled
Canceled
14-20. Canceled
Canceled
(Cu rr ently Amended) A graphene power generating system comprising: a rotating shaft having carbon wires installed [[in]] on a rotor for increasing electrical conductivity and reducing sizes, g g g y g pp 4 p g,; wherein the rotating shaft rotates freely without a mechanical contact with a stator, wherein the stator has carbon wires installed internally, wherein the carbon wires installed on the rotor or in the stator comprise at least one of two-more tied wires, or two-more twisted wires, wherein the graphene power generating system is configured to facilitate to generate electrical power when using the carbon wires instead of a copper single wire wound on a conventional rotor or stator, and wherein the graphene power generating system is configured to generate electrical power usin g a rotational energy moving objects. drones. trains, or ships. s Currently of the rotating shaft of at least one of vehicles, amended
Layer stacks claimed or described, ordered top of device to substrate.
graphene power generating system (graphene wire rotor/stator)
graphene power generating system (carbon wire rotor/stator)
Materials described outside the worked examples.
graphene wire
graphene with copper CVD/electroplated wire
graphene film
carbon wire
graphene film wire with polymer
aluminum with graphene wire
Giga steel
carbon steel
titanium
graphene film
carbon wire
graphene film wire with polymer
aluminum with graphene wire
Giga steel
carbon steel
titanium
graphene film
carbon wire
graphene film wire with polymer
aluminum with graphene wire
Giga steel
carbon steel
titanium
graphene film
carbon wire
graphene film wire with polymer
aluminum with graphene wire
Giga steel
carbon steel
titanium
