Abstract:
Automatic determination of message format according to status information is described. The formatting includes selecting via a calling device a recipient to receive a communication. A communication request is generated corresponding to the communication. A status of the recipient is automatically determined. The status includes information of a service that supports the communication request. The communication request is formatted to have a format that corresponds to the status, and the formatted communication request is transferred to a target device of the recipient via a data coupling that supports the format.
Abstract:
Effective bandwidth of a communication link is determined in a heterogeneous, packet switched network between a source and a destination, where effective bandwidth is defined as the actual available bandwidth between the server and the client, minus the overhead of the various network protocols used to transmit the data. The method includes maintaining a database of bandwidth parameters indexed by destination address, and using the database when setting a communication channel.
Abstract:
A communication system is provided that uses loosely-coupled client-server architectures to improve the efficiency of communications. The communication system includes client and facilitator applications. The client application is a component of processor-based mobile communication devices. The facilitator application is hosted on one or more servers or other processor-based devices, and communicates with the client application via one or more couplings. The facilitator application can also be distributed among one or more portable processor-based devices including the communication devices hosting the client application. The communication system improves efficiency of voice communications by allowing communication device users to dynamically manage how and when mobile calls take place, intelligently screen calls based on caller identity, urgency, and subject matter, determine which contacts in a directory are available to talk and which ones choose not to be disturbed, and increase accessibility of enterprise and personal contact information from mobile phones.
Abstract:
The UNIVERSAL ELECTRONIC PAYMENT APPARATUS, METHODS AND SYSTEMS (“UEP”) transform touchscreen inputs into a virtual wallet mobile application interface via UEP components into purchase transaction triggers and receipt notices. In one implementation the UEP provides, via a user device, a product information search request; and obtains, in response to the product information search request, information on a first product for sale by a first merchant and a second product for sale by a second merchant. The UEP generates a single purchase transaction request, using the information on the first product for sale by the first merchant and the second product for sale by the second merchant. The UEP provides, via the user device, the single purchase transaction request for payment processing. Also, the UEP obtains an electronic purchase receipt for the first product for sale by the first merchant and the second product for sale by the second merchant.
Abstract:
A system and method is described for providing data to a mobile information system. A broadcast server receives information preferences from a plurality of subscribers to the mobile information system. The broadcast server aggregates these information preferences and transmits the aggregated information preferences to at least one data source providers. The data source providers then assemble data for the mobile information system using the aggregated information preferences.
Abstract:
Communication systems and methods are described that enable mobile devices to route telephone calls via an enterprise telephone system. The communication system is configured to receive via a data channel a request from the mobile device. The mobile device corresponds to a user making a call. The server receiving the request includes a private branch exchange (PBX) and one or more other servers hosted by or coupled to the enterprise. A first call leg is initiated over a first voice channel in response to the request. The first call leg is coupled to the server and mobile device. Numerous second call legs are initiated over a second voice channel, and the second call legs are coupled to the server and numerous client devices corresponding to an intended call recipients. A voice conference call is formed between the mobile device and client device by joining the first and second call legs.
Abstract:
A system and method is described for providing an interactive rich media information service to users of mobile devices. The rich media information is presented to users in a plurality of interactive rich media channels. A subscriber-specific data stream is received at the mobile device containing channel data for each of the rich media channel that the user has subscribed to. The channel data is separated and stored corresponding to each such subscribed-to channel. An interactive multimedia runtime container (iMRC). is executed on the mobile device for each subscribed-to channel. The rich media channels are played on the iMRC and displayed on the display of the mobile device. Using the user interface elements of the mobile device, the user may navigate through the information on the channels, navigate between different channels, subscribe or un-subscribe to channels, and enter user preferences for further tailoring the information presented in the subscribed-to channels.
Abstract:
Embodiments for searching multiple directories are described. The searching includes remote searching and local searching. Local searching is performed against the local integrated phonebook on a client device. In contrast, remote searching is performed against one or more directories or directory types of an enterprise server (e.g. corporate directory, etc.). The local directory on the client device therefore effectively functions like a cache of information of one or more of the directories of the enterprise server, where the cache is stored locally on the client device.
Abstract:
Communication systems and methods are described that enable mobile devices to route telephone calls via an enterprise telephone system. The communication system is configured to receive via a data channel a request from the mobile device. The mobile device corresponds to a user making a call. The server receiving the request includes a private branch exchange (PBX) and one or more other servers hosted by or coupled to the enterprise. A first call leg is initiated over a first voice channel in response to the request. The first call leg is coupled to the server and mobile device. A second call leg is initiated over a second voice channel, and the second call leg is coupled to the server and a client device corresponding to an intended call recipient. A voice conference call is formed between the mobile device and client device by joining the first and second call legs.
Abstract:
Melting information of a client device is described. The device melting includes receiving a melt message at an inbox of a client device. A source of the melt message is authenticated using identification information of the melt message. The client device automatically deletes client state information of the client device in response to authenticating the source of the melt message.