Abstract:
A clamshell or slide type of handheld wireless communication device can include a biasing component to raise or lower a keyboard relative to a first housing of the device. The biasing component can raise the keyboard when the communication device is opened and can lower the keyboard when the communication device is closed. When the keyboard is raised, the keyboard can be flush with or above the first housing or sides of the first housing of the communication device. When the keyboard is lowered, the keyboard can be below the first housing of the communication device.
Abstract:
The present disclosure provides a portable electronic device having a sensor arrangement for gesture recognition and a method for gesture recognition. In accordance with one example embodiment, the portable electronic device comprises: a processor; a flexible housing including a magnet; a magnetic sensor connected to the processor which monitors a magnetic field generated by the magnet.
Abstract:
A clamshell or slide type of handheld wireless communication device can include a biasing component to raise or lower a keyboard relative to a first housing of the device. The biasing component can raise the keyboard when the communication device is opened and can lower the keyboard when the communication device is closed. When the keyboard is raised, the keyboard can be flush with or above the first housing or sides of the first housing of the communication device. When the keyboard is lowered, the keyboard can be below the first housing of the communication device.
Abstract:
Methods and apparatus to obtain transaction information are described. One example method includes conducting a transaction using a proximity-based communication link, storing information related to the transaction in a database of a mobile device, identifying a service based on the information, querying the service from the mobile device, wherein the query is based on the information, and obtaining detail of the transaction from the service based on the information. Other implementations are possible.
Abstract:
A wireless communications system may include first and second mobile wireless communications devices each comprising a respective input device, wireless transceiver, near-field communication (NFC) transceiver, and controller coupled to the input device, wireless transceiver and NFC transceiver. At least one of the controllers may be configured to establish an NFC communications link between the NFC transceivers when the first and second mobile wireless communications devices are in proximity, provide a temporary device identifier (ID) via the NFC communications link, request authorization to establish a wireless link between the wireless transceivers, provide a permanent device ID upon receiving the authorization and based upon the temporary device ID, and establish the wireless link between the wireless transceivers based upon the permanent device ID.
Abstract:
A near-field communication (NFC) system may include a plurality of NFC devices each including an NFC circuit configured to wirelessly communicate using an NFC communications protocol, and a processor coupled to the NFC circuit. The processor may be configured to synchronize an internal timing signal to an external timing signal, cycle power to the NFC circuit to periodically switch the NFC circuit between a peer-to-peer recognition state and a low power state based upon the synchronized internal timing signal, and initiate peer-to-peer NFC communications with another one of the plurality of NFC devices when in range thereof and upon being switched to the peer-to-peer recognition state therewith.
Abstract:
A communication system may include a transaction terminal configured to perform a transaction based upon receiving account information, a first NFC device(s), and a mobile wireless communication device. The mobile device may include a second NFC device configured to communicate with the first NFC device(s) upon being swiped therewith, a memory configured to store account information associated with different accounts and store respective account swipe patterns for the different accounts, where each account swipe pattern comprising at least one of a set time or a set number of swipes, and a controller. The controller may be configured to detect a swipe pattern, determine whether the detected swipe pattern corresponds to one of the plurality of stored account swipe patterns, determine a respective account based upon the determined corresponding stored account swipe pattern, and communicate the associated account information for the determined respective account to the transaction terminal.
Abstract:
Methods and apparatus to obtain transaction information are described. One example method includes conducting a transaction using a proximity-based communication link, storing information related to the transaction in a database of a mobile device, identifying a service based on the information, querying the service from the mobile device, wherein the query is based on the information, and obtaining detail of the transaction from the service based on the information. Other implementations are possible.
Abstract:
A wireless communications system may include first and second mobile wireless communications devices each comprising a respective input device, wireless transceiver, near-field communication (NFC) transceiver, and controller coupled to the input device, wireless transceiver and NFC transceiver. At least one of the controllers may be configured to establish an NFC communications link between the NFC transceivers when the first and second mobile wireless communications devices are in proximity, provide a temporary device identifier (ID) via the NFC communications link, request authorization to establish a wireless link between the wireless transceivers, provide a permanent device ID upon receiving the authorization and based upon the temporary device ID, and establish the wireless link between the wireless transceivers based upon the permanent device ID.
Abstract:
A system and method of relative location detection on an electronic device using image perspective analysis. The electronic device will consist of a processor module coupled to a camera module. The camera module of an electronic device as well as a target device will be used to capture image(s) of the current surroundings, including common elements, which will then be used to obtain the relative location of the devices in reference to one another.