Abstract:
A portable storage device structure is described. A memory device has a connector and a first concave portion. An opening defined on a hollow housing to form two sections of the hollow housing with different lengths. The longer section has a second concave portion. A resilient member has one end secured to the second concave portion to suspend the opposite end. When the memory device assembles to the hollow housing, the opposite end of the resilient member engages with the first concave portion to avoid the memory device from slipping out of the housing.
Abstract:
A conductive contact includes a resilient strip and a post. The resilient strip includes a fixed end configured as a sheet for securing the resilient strip, an arm configured for being resiliently deformed by pressure, and a free end. The fixed end and the free end are arranged at two opposite ends of the arm, and the resilient strip is constructed as a substantially convolute shape. The post is secured with the free end for being detachably and conductively in contact with a conductive pad.
Abstract:
A method and system for improving the connection for the receptacle used to receive external electrical power and transfer power to the mother board in a laptop computer. The laptop power receptacle is provided a robust connection that is capable of absorbing external forces of the power cable. A power supply is connected to a first female receptacle, which is fastened to the laptop casing. Inside the laptop computer, the first female receptacle is connected to a male receptacle by flexible conductive wire. The male receptacle fits into a second female power receptacle on the mother board. Since the external power supply cable is indirectly attached to the mother board via the flexible wire, the solder joints of the power receptacle on the mother board never receive stress, regardless of how much stress is applied to the external power cable.
Abstract:
A connector is provided for coupling a computer peripheral device with a RJ11 or RJ45 data communication socket. The connector includes a first connecting part and a second first connecting part. The first connecting part has a shape mating with said data communication socket. The second connecting part includes a magnetic element such that the connector is attachable onto said computer peripheral device.
Abstract:
The present invention discloses a power connector used as an electric conducting component between output terminals having an equal electric potential, so that the output terminals having an equal electric potential can share the same electric wire of the same electric potential, so as to save the material cost of wires.
Abstract:
Disclosed herein is an engagement system for bulk power assemblies. The system comprising, a first bulk power assembly and a second bulk power assembly having equal numbers of electrical terminals and guide bosses. The system also having a rigid interface member having a first end and a second end, both ends having an equal number of terminal blades as there are electrical terminals on the first bulk power assembly and an equal number of guide blades as there are guide bosses on the first bulk power assembly. The terminal blades being receptive to make an electrical connection with the electrical terminals and the guide blades being receptive to engage with the guide bosses, in response to the interface member being functionally engaged with both bulk power assemblies simultaneously.
Abstract:
A hard drive connecting device for a notebook PC is installed in a case of the notebook PC for connecting a main board and a hard drive in the case, which includes a flexible board having at least a first side, at least a second side, and conductive lines for electrically connecting the first side to the second side; a first connector located in the hard drive bay electrically connected to the first side for electrically connecting the hard drive; and a second connector electrically connected to the second side for electrically connecting the main board. The flexible board facilitates electrical connection of the hard drive that allows reduction of both the size of the hard drive and the installation space required for the hard drive, thus facilitating profile miniaturization of notebook PCs.
Abstract:
A mounting apparatus for I/O ports (14) of a computer includes an I/O port holder (10) for holding the I/O ports and a bracket (20) for holding and securing the I/O port holder. The bracket includes a front panel (21) and side panels (23, 25) extending from the front panel, a housing space configured by the front panel and the side panels being isometric to the I/O port holder for encasing the I/O port holder therein, at least an arc-shaped jut (2312) is formed on an interior surface of the enclosure panel. At least an arc-shaped recess (1231) engaging with the arc-shaped jut of the bracket is formed on an exterior surface of the I/O port holder for securing the I/O port holder.
Abstract:
An automatic sensing power system automatically determines a power requirement for an electrical device, converts power to the required level, and outputs the power to the electrical device when the electrical device is connected to the automatic sensing power system
Abstract:
An automatic sensing power system automatically determines a power requirement for an electrical device, converts power to the required level, and outputs the power to the electrical device when the electrical device is connected to the automatic sensing power system