Abstract:
An electrochemical cell of the liquid cathode type has an anode made of non-solution alloy of lithium and a companion metal of manganese, silicon, molybdenum, or tungsten.
Abstract:
Various methods and systems are provided for adaptable media processing architectures. In one example, among others, an adaptable coding architecture for servicing media streams includes media processing resources and a controller that supports a first media stream by placing media processing pipeline resources in a single stream configuration and that causes a transition from the single stream configuration to a multiple stream configuration of the media processing resources. For example, the transition may be made to simultaneously support encoding or decoding another media stream. In another example, a device includes media processing resources and a controller that causes an adaptive reconfiguration of media processing resources to support simultaneous coding related processing of both a new media stream and at least one ongoing media stream, which may cause a reallocation of at least a part of the media processing resources from an ongoing media stream to the new media stream.
Abstract:
Certain aspects of the invention may be found in a method and system for providing media in a communication network and may comprise generating a request from a first location to receive media from a non-broadcast channel provider. Payment and/or authorization information may be provided to the non-broadcast channel provider and the media transferred from a storage location other than the non-broadcast channel provider to the first location. A representation of the received media may be presented in a media guide and/or a channel guide at the first location and the received media may be consumed at the first location. The method may further comprise the step of requesting that the received media be transferred from the storage location to a second location. An identifier of the second location may be transferred to the non-broadcast channel provider so that media may be transferred to the second location.
Abstract:
The invention provides a new and distinct variety of almond tree, named Bennett-Hickman, substantially as described and illustrated herein, which is somewhat similar to the ‘Nonpareil’ almond tree (unpatented), but which is distinguishable therefrom by possessing a heavier bloom, an extended bloom period, greener foliage that is retained for a longer duration of time, a sweeter kernel, with rare doubles, and a harvest period that runs approximately 14 days later than Nonpareil.
Abstract:
A communications network is disclosed that includes one or more microwave backhaul nodes for routing communications between one or more near end mobile communications devices and one or more far end mobile communications devices. The communications network includes a central monitoring and control infrastructure, a remote monitoring and control infrastructure and/or a local monitoring and control infrastructure. The central monitoring and control infrastructure, the remote monitoring and control infrastructure and/or the local monitoring and control infrastructure can directly manage the one or more microwave backhaul nodes. Alternatively, the remote monitoring and control infrastructure and/or the local monitoring and control infrastructure can indirectly manage the one or more microwave backhaul nodes through the central monitoring and control infrastructure.
Abstract:
The present invention is directed to a multiple description transmission system that provides redundancy to combat transmission channel impairments. The multiple description transmission system includes a first and second wireless telephone. The first wireless telephone includes the following: an array of microphones, wherein each microphone in the array of microphones is configured to receive voice input from a user and to produce a voice signal corresponding thereto; an encoder coupled to the microphone array and configured to encode each of the voice signals; and a transmitter coupled to the encoder and configured to transmit each of the encoded voice signals. The second wireless telephone includes the following: a receiver configured to receive the transmitted signals; a decoder coupled to the receiver and configured to decode the signals received by the receiver, thereby producing an output signal; and a loudspeaker that receives the output signal and produces a pressure sound wave corresponding thereto.
Abstract:
A method for controlling communication of media content by a network device in a communication network includes providing, by the network device, a plurality of quality of service options corresponding to at least one media file selected for communication to a remote user via a communication channel; receiving a quality of service selection specifying at least one of the plurality of quality of service options; and communicating the at least one media file to the remote user utilizing the received quality of service selection. The providing may include displaying, by the network device, the plurality of quality of service options. At least a portion of specified parameters may be transferred to a first communication device coupled to the communication network. At least a portion of the communication channel may be configured by a second device utilizing the transferred at least a portion of the specified parameters.
Abstract:
A method for communication includes performing by one or more circuits integrated within a single chip in a first communication device, functions that include storing media and meta-data corresponding to the stored media. The storing may occur at a first location of the first communication device. A channel guide including representations of the stored media that can be selected for presentation on a television in a second location, may be caused based on the meta-data corresponding to the stored media when the first communication device is communicatively coupled to a second communication device at the second location. In response to receiving a selection via the presented channel guide, at least one media file corresponding to the received selection may be displayed based on the meta-data corresponding to the stored media, on one or both of the television and/or a media player in the second location.
Abstract:
A method for secure access and communication of information in a distributed media network is disclosed and includes detecting, at a first geographic location, when a media peripheral is communicatively coupled to at least one computing device at the first geographic location within the distributed media network. The media peripheral may be validated for use at the first geographic location using at least one identifier. The at least one identifier may be associated with the media peripheral. The at least one identifier may be used to facilitate communication by and/or to the media peripheral over the distributed media network. The at least one identifier associated with the media peripheral and at least one identifier of a user may be requested utilizing the media peripheral. The at least one identifier associated with the media peripheral is a serial number of the media peripheral.
Abstract:
A method for controlling communication of media content by a network device in a communication network includes providing, by the network device, a plurality of quality of service options corresponding to at least one media file selected for communication to a remote user via a communication channel; receiving a quality of service selection specifying at least one of the plurality of quality of service options; and communicating the at least one media file to the remote user utilizing the received quality of service selection. The providing may include displaying, by the network device, the plurality of quality of service options. At least a portion of specified parameters may be transferred to a first communication device coupled to the communication network. At least a portion of the communication channel may be configured by a second device utilizing the transferred at least a portion of the specified parameters.