Abstract:
The present invention relates to a power supply system (1) comprising a power converter unit (3) and a rack (2). The rack (2) comprises a shelf (21) and a shelf connection device (22). The power converter unit (3) comprises a housing (30) and a unit connection device (32), where the unit connection device (32) is adapted to be releasably locked to the shelf connection device (22) when the power converter unit (3) is inserted into the shelf (21). The shelf connection device (22) comprises a recess (23), and the unit connection device (32) comprises a plate spring (41) and an actuating device (42). A first end (41a) of the plate spring (41) is connected to the housing (30) and a second end (41b) of the plate spring (41) is supported on or connected to the actuating device (42). The actuating device (42) is arranged to move the plate spring (41) between a locked position, in which the plate spring (41) is protruding from the housing (30) into the recess (23), and an open position,in which the plate spring (41) is retracted from the recess (23).
Abstract:
A system for storing data includes a rack, one or more data storage modules coupled to the rack, and one or more data control modules coupled to the rack. The data storage modules may include a chassis, two or more backplanes coupled to the chassis, and one or more mass storage devices (for example, hard disk drives) coupled to the backplanes. The data control modules may access the mass storage devices in the data storage modules.
Abstract:
In accordance with the present disclosure, a system and method a power deliver system is presented. The power delivery system includes at least two power supplies with a bridge connecting an output of each of the at least two power supplies. The bridge may be made of busbars, each of which including an integral attachment point. Each of the attachment points may correspond to a lug which has been specifically keyed to the shape of the attachment point. The lugs may be attached to conductor cables that provide power from the power supplies to components in an information handling system. In some embodiments, each end of a conductor cable may include lugs of the same shape, to ensure that the correct voltage is supplied to the components of the information handling system.
Abstract:
An electrical ganged-outlet apparatus (100) includes a unitary outlet body (120) including a plurality of electrical outlets (112) and a back surface. Each of the electrical outlets (112) has at least a first (314) and a second (316) receptacle contact element, and a line terminal (320). The line terminal (320) is electrically connected to the first receptacle contact element (314) and extends from the back surface. The outlet body (120) has at least one neutral bus bar (322) disposed against the back surface, and the neutral bus bar (322) is electrically connected to the second receptacle contact element (316).
Abstract:
A method, apparatus, and system are described for a pre-wired and pre-engineered integrated platform for power supply and distribution that is pre-assembled, scalable, and modular. The skeletal framework of the integrated platform acts as an equipment support structure as well as a cable routing support system. A set of cables having wiring is routed along the skeletal framework of the integrated platform and goes to two or more cabinet enclosures mounted onto the skeletal framework. The skeletal framework acts as a National Electric Code approved raceway system to support and route the set of cables to the electrical equipment in the mounted cabinet enclosures. The integrated platform supports the weight of the one or more cabinet enclosures mounted onto the skeletal framework.
Abstract:
A power supply system includes a power system subrack (PSS) and a power cable distribution device (PCD). The power system subrack (PSS) includes a power module and a third connector (51). The power cable distribution device (PCD) is used to introduce electric signals from an input power bus. The third connector of the power system subrack (PSS) is connected with the power cable distribution device (PCD) for supplying the introduced electric signals to the power module. A power cable distribution and a power system subrack corresponding to it and an integrative equipment are also provided.
Abstract:
A busbar device includes a conductive body(51), the conductive body is provided with corresponding numbers of mounted holes(52) corresponding to the mounted hole for mounting the busbar device in the mounted device, and the distance between every two adjacent mounted holes in the conductive body is longer than or equivalent with the distance between two corresponding adjacent mounted holes in the mounted device.
Abstract:
A backplane system for reconfigurable backplane power distribution includes circuit board slots, power entry modules, power distribution circuitry, and switching circuitry. The power distribution circuitry includes a first power configuration and a second power configuration and distributes the power from the power entry modules to at least one circuit board plugged into one of the circuit board slots. The switching circuitry switches between the first power configuration and the second power configuration to provide extended power capabilities.