Abstract:
A method of coupling a mechanical power source through an electrical power generator to an electrical load is disclosed. A characteristic of an electrical output is measured from the electrical power generator produced during a power generation cycle during which there is a coupling of the mechanical power source through the electrical power generator to the electrical load. The coupling of the mechanical power source is adjusted through the electrical power generator to the electrical load during a subsequent power generation cycle based at least in part on the measured characteristic of the electrical output.
Abstract:
An electric power generation system is disclosed. The electric power generation system includes: an electric power generator having a rotor wherein the rotor is mechanically coupled to a shaft; and a case with a first chamber and a second chamber. The second chamber includes a primary mechanical turning source. The primary mechanical turning source can be removed to enable the attachment of a secondary mechanical turning source.
Abstract:
An electric power generation system is disclosed. The electric power generation system comprises a string configured to be pulled. The electric power generation system further comprises a bobbin configured to rotate when the string is unwound from the bobbin. The electric power generation system further comprises an electric power generator having a rotor. The rotor is configured to rotate such that the ratio of number of rotations of the rotor and the bobbin is 1:1 when the string is being pulled.
Abstract:
An electric power generation system is disclosed. The electric power generation system includes: a string; a bobbin configured to rotate when the string is unwound from the bobbin as the string is pulled; and an electric power generator having a rotor wherein the rotor is mechanically coupled to the bobbin. The string is anchored at one end to a case and passes around a rotating wheel. The rotating wheel is configured to be pulled.
Abstract:
A system distributed over a network for aggregating multiple disparate batches of media files for inclusion into a collection of media files includes a first computing device on the network for creating and defining a collection, a server on the network for validating the created collection and publishing the collection on the network, and one or more computing devices on the network for receiving a machine readable code notifying of and describing the collection and for contributing media files to the collection. The machine-readable code specifies the collection, the code including collection attributes and a collection identifier and wherein the machine-readable code is rendered available to the one or more computing devices that may contribute to the collection, the code is processed to establish objective criteria for identifying contributed batches of media files for automated aggregation into the collection.
Abstract:
A water-cooling heat dissipation system includes a heat sink mounted on a heat generating electronic device and a circulating loop connected to two ends of the heat sink. The circulating loop has a water pump attached at the inlet of the heat sink, a first cooling base attached at the outlet of the heat sink, and a second cooling base between the water pump and the heat sink. The second cooling base has a cryogenic chip to provide icy water to the heat sink, such that heat dissipation efficiency is greatly enhanced.
Abstract:
An air-conditioning heat dissipation system includes a heat dissipation device and an enclosure. The heat dissipation device has a top and a bottom heat sinks secured to each other and a cryogenic chip sandwiched between the top and bottom heat sinks. The enclosure has a box assembly and a planar assembly extending from one side of the box assembly. The box assembly is operative to receive the heat dissipation device therein, and the planar assembly includes a channel having one end in communication with the box assembly and the other end open to external.
Abstract:
A water-cooling heat dissipation system includes a heat sink mounted on a heat generating electronic device and a circulating loop connected to two ends of the heat sink. The circulating loop has a water pump attached at the inlet of the heat sink, a first cooling base attached at the outlet of the heat sink, and a second cooling base between the water pump and the heat sink. The second cooling base has a cryogenic chip to provide icy water to the heat sink, such that heat dissipation efficiency is greatly enhanced.
Abstract:
A badge includes a guiding member disposed on a rear side surface of a badge body and confining a guiding groove, a holding member having a retained portion that is movable along the guiding groove and a holding portion that is opposite to the retained portion and that can extend outwardly of an edge area of the badge body for suspending an object and that can be retracted to a position between the guiding member and the edge area so as to be concealed from sight, and a retaining member disposed to retain the holding member in position.
Abstract:
A heat dissipation assembly includes a base with a ridge and multiple fins mounted on top of the base. Each of the fins has a plate with a cutout defined in a mediate portion of a bottom edge to correspond to the ridge of the base, two first bends respectively extending from opposite sides of the cutout in a same direction from the bottom edge and a second bend formed on a top edge of the cutout. The fins are able to be securely mounted on top of the base via the two first bends.