Abstract:
Location based security rules are provided for preventing unauthorized access to a device, application, system, content, and/or network, etc. The location-based security rules enable a user, computing device, system, etc. to access the requested item or information when the user provides proper identification information. The proper identification information is based in part on the location of the user and/or the user's access request.
Abstract:
Exemplary embodiments of the invention relate to a method, system, and storage medium for validating users of communications services. The method includes generating records for communications service users by at least one service provider. The records store information relating to the communications service users including legal liability information, an originator type code, and a validation code assigned to selected originator type codes. The validation code facilitates validation of the communications service users. The method also includes storing the records in a subscriber classification database. The originator type code classifies the communications service users according to nature of use, communications type, business type, geography, and age.
Abstract:
A driver of a vehicle is identified and a command is sent to a mobile communications device that is associated with the identified driver and that is in proximity of the vehicle to force the mobile communications device to change modes such as to enter a hands-free or other suitable mode. The driver may be identified through one or more techniques including biometric sensing, key detection, switch controls, and so forth. Additionally, the driver and/or feature settings preferred by the current driver may be identified by receiving data from the mobile communications device. The data may identify the driver ID with preferred feature settings, the mobile communications device which has an association to a driver ID with preferred feature settings, or the data may specify the preferred feature settings.
Abstract:
Exemplary embodiments include a device for monitoring communications and taking a responsive action including: a receiver operable for receiving an input signal from a user; a transmitter operable for transmitting an output signal to a communications network and a command signal to a secondary device; and a processor in operable communication with the receiver and the transmitter. The processor is operable for monitoring the input signal for an event and responsively instructing the transmitter to transmit the command to the secondary device.
Abstract:
A device includes a memory for storing digital media, a transfer module, and a processor. The media includes first data that associates the media with the device, second data authorizing the device to play back the media, and third data authorizing the device to transfer a copy of the media. A transfer includes transfer data identifying the copy uniquely relative to the device. The processor implements instructions to receive a request to transfer a copy of the media to a peer device, create a copy of the media that includes the first data and the transfer data, and direct the transfer module to transfer the copy to the peer device and send a transaction record including the first data and the transfer data to a server.
Abstract:
Portable electronic devices include a unitary package including first and second opposing faces. A first flat panel display is provided on the first face. A user input device also is provided on the unitary package. A processor is provided in the unitary package that is configured to control the first and second flat panel displays, in response to the user input device.
Abstract:
Embodiments relate to a method, system, and storage medium for transmitting enhanced originator information over a communications network. The method includes receiving information elements selected by an originator terminal from a database. The information elements retrieved are based upon a service plan and/or a terminal capability associated with a recipient terminal. The method also includes transmitting a communication including the information elements to the recipient terminal prior to establishing a communications session with the recipient terminal. The transmission is conducted over at least one of: an Internet Protocol network, a public switched telephone network, a wireless local area network, a wireless network, a cable network, a fiber optic network, a video network, and a satellite network.
Abstract:
Systems and methods for an integrated antenna and satellite dish. Exemplary embodiments include an apparatus, including a satellite dish, a wireless antenna coupled to the satellite dish and a coupling box communicatively coupled to the satellite dish and the wireless antenna. Additional exemplary embodiments include a content communication method, including receiving a satellite signal, receiving a first wireless signal, performing coupling box processing on the satellite signal and the wireless signal, transmitting the satellite signal and the wireless signal to a set top box and performing set top box processing on the satellite signal and wireless signal. Further exemplary embodiments include a content communication system, including a satellite dish for receiving content from a satellite, a wireless antenna for receiving content from a wireless network and a coupling box for processing the content from the satellite and the content from the wireless network.
Abstract:
Transactional cards such as credit and debit cards include sensory features including sounds, sights, and/or smells to increase the interest in the transactional card. A transactional card may include circuitry for producing sounds such as sound effects, songs, and catch phrases. A transactional card may include circuitry for producing light, such as illuminating the account numbers and/or producing graphical displays on the card. A transactional card may include coatings or integrated materials that provide scents or that change color when heat is applied. A transactional card may include additional sensory features such as a lenticular array with underlying image.
Abstract:
Multiple individual wireless earbuds provide audio from a common audio source. A user may thereby enjoy audio in both ears while also benefiting from an entirely wireless configuration. The individual wireless earbuds may each receive the audio signal from the common audio source and then produce audio accordingly. Each earbud may have a channel setting to define whether a given earbud will produce left channel or right channel audio for a multi-channel audio signal. The individual wireless earbuds may alternatively have a master-slave configuration where a master earbud receives a wireless audio signal from the common source, plays audio based on the audio signal, and transmits a wireless signal based on the wireless audio signal to the slave earbud. The slave earbud then plays audio based on the wireless signal from the master earbud.