Abstract:
A system, device, and method for facilitating wireless communications during a pre-boot phase of a computing device includes establishing a communications interface between a unified extensible firmware interface executed on the computing device and a wireless transceiver of the computing device during a pre-boot phase of the computing device. An OOB processor of the computing device processes data communications between the unified extensible firmware interface and the wireless communication circuit during the pre-boot phase by reformatting the data communications between wired and wireless communication standards.
Abstract:
A system and method for managing the archival and retention of data in a multiple-node PACS network. Data is distributed among network nodes such that a secondary node will not delete a received image study it has received from a primary node if the primary node is an originating source. Instead, the secondary node will execute data retention. Data retention is achieved by including a delete retention attribute within the metadata associated with the received image data on the secondary node and requiring that the secondary node enforce data retention if a data retention attribute is identified within the metadata stored on the secondary node.
Abstract:
A communication system includes a first endpoint located behind a first connectivity barrier, such as a firewall or a consumer gateway, and a second endpoint. A service is arranged to respond to a request from the first endpoint to establish communications with the second endpoint by assigning a server to handle a session between the first endpoint and the service. A session initiated by the second endpoint is established with the service if the second endpoint is located behind a second connectivity barrier. If the second endpoint is not located behind a connectivity barrier, a transport level communications connection can be established with the second endpoint. In some cases, the service can instruct the first endpoint to establish a direct session with the second endpoint.
Abstract:
A method for distributing digital subscriber line (xDSL) data traffic includes receiving xDSL traffic at a DSLAM including a plurality of input ports and a plurality of output queues. Each input port includes a plurality of virtual circuits. Each of the plurality of virtual circuits are dynamically assigned to one of the plurality of output queues. The assignment of any particular virtual circuit to one of the plurality of output queues is independent of which of the plurality of input ports the particular virtual circuit is associated with. In accordance with the particular embodiment, the total number of virtual circuits is greater than a total number of output queues.
Abstract:
A method and apparatus for supporting on-demand connectivity for network applications is disclosed. Specifically, the present invention discloses a method and apparatus for remotely triggering a connection from a first device to a network. Additionally, a method and apparatus for coordinating application connections is also disclosed. The method comprises the steps of establishing application connections on-demand and managing the application connections.
Abstract:
A wall-mounted fork lift has a pair of support arms hingedly affixed to support members which move up and down along a pair of guide rails mounted on a vertical wall. The support arms are mounted for movement to a rest position in close proximity with the wall and to an operating position perpendicular to the wall. The support arms have pallet-supporting devices extending therefrom for supporting a loaded pallet between them.
Abstract:
Systems and methods may provide for establishing automatic pairing between a portable computing device and a base device. A processor is configured to receive a dock event notification when the portable computing device docks with the base device. An identifier retriever is configured to retrieve the identifier of a wireless communication component in a base device. A pairing portion of the processor is configured to automatically pair a wireless communication component in a portable computing device with the wireless communication component in the base device. Automatic wireless connection may follow automatic pairing.
Abstract:
A system, device, and method for facilitating wireless communications during a pre-boot phase of a computing device includes establishing a communications interface between a unified extensible firmware interface executed on the computing device and a wireless transceiver of the computing device during a pre-boot phase of the computing device. An OOB processor of the computing device processes data communications between the unified extensible firmware interface and the wireless communication circuit during the pre-boot phase by reformatting the data communications between wired and wireless communication standards.
Abstract:
A fault-tolerant stack of low cost switches each having only two dual-purpose uplinks is enabled by utilizing a specified topology for connecting the uplinks and implementing a recovery algorithm on each switch.
Abstract:
A method for programming programmable devices includes monitoring a status pin for each of the programmable devices, maintaining state information for the programmable devices indicating whether each programmable device is programmed, and transitioning each programmable device from a programmed state to an operating state. A monitoring module includes detectors, a memory and a processor. The detectors detect indications on the status pins of programmable devices that the programmable devices are programmed. The memory stores state information about the programmable devices. The processor communicates control signals to the programmable devices instructing them to transition from the programmed state to the operating state.