Abstract:
There is provided a communication device comprising: a wireless communication circuit configured to control wireless communication with a portable device in conformity with a specific communication standard; a capacitive sensor circuit configured to detect proximity of an object on a basis of a change in capacitance; an antenna configured to be used for both transmitting/receiving a wireless signal conforming to the specific communication and detecting the capacitance; a high-pass filter disposed between the wireless communication circuit and the antenna; and a low-pass filter disposed between the capacitive sensor circuit and the antenna, wherein the communication device is configured to be disposed in a gripping portion to be gripped by a user carrying the portable device.
Abstract:
Example systems relate to wireless head-mounted devices. A wireless head-mounted device may include high-throughput performance miming at millimeter wave band receiving hardware to receive a transmission from corresponding high-powered transmitting hardware included in a computing device. The transmission may include audio, visual, or video data. The wireless head-mounted device may further include a plurality of sensors to collect sensor data. The wireless head-mounted device may further include low-powered transmitting hardware to transmit at least the sensor data collected by the sensors to corresponding low-powered receiving software included in the computing device.
Abstract:
According to an embodiment, an audio equipment includes a housing, a radio tuner circuit disposed within the housing, a first helical antenna disposed within the housing, a second helical antenna disposed within the housing, the first and second helical antennae each having a circular polarization, a switch connected to the first and second helical antennae arranged to connect one of the first and second helical antennae to the radio tuner circuit, and a controller arranged to control the switch for selection between the first and second helical antennas.
Abstract:
In some embodiments, techniques are provided for extending the functionality of a receiving unit which is configured to express a state during an event. In some embodiments, a receiving unit configured to receive a first set of transmissions during an event from one or more transmitting units and express a state in response may also be configured to receive a second set of transmissions from other components at a time other than during the event and express a state in response to receiving the second set of transmissions.
Abstract:
A system and a method using that system that provides multi-tainment services in a vehicle. The method includes the steps of providing a vehicle telematics unit having wireless hotspot functionality; connecting the telematics unit via short range wireless communication (SRWC) to a vehicle multi-tainment unit (VMU) and at least one mobile device; identifying the VMU connection at the telematics unit; and providing the VMU with wireless hotspot data priority over the at least one mobile device.
Abstract:
In one embodiment, a receiver front end circuit can receive and process multiple radio frequency (RF) signals and output downconverted signals corresponding to these signals. In turn, multiple signal processors can be coupled to this front end. Specifically, a first signal processor can receive and process the downconverted signals to output a first signal obtained from content of a first RF signal, and a second signal processor can receive and process the downconverted signals to output a second signal obtained from content of a second RF signal. In addition, the apparatus may include a detection circuit coupled to the receiver front end circuit to detect presence of at least the second signal and enable the second signal processor responsive to the detected presence.
Abstract:
A wireless signal receiver includes a housing, and a receiving module. The housing has a front portion, a rear portion and two side portions, and the housing has an installing space having an opening. The opening is located at the front portion. The receiving module is located in the installing space of the housing, and includes a circuit board, a receiving chip electrically coupled with the circuit board, and electric-conducting contacting portions electrically coupled with the circuit board. The electric-conducting contacting portions exposes to outside of the opening. Thereby, the total dimension is reduced.
Abstract:
A mobile communication terminal and method of controlling a broadcast program are disclosed, by which the inability to view or record a reserved broadcast program is prevented and by which information related to the availability of a reserved broadcast program for viewing or recording with reference to a battery capacity can be provided to a user in real time.
Abstract:
A wireless signal receiver includes a housing, and a receiving module. The housing has a front portion, a rear portion and two side portions, and the housing has an installing space having an opening. The opening is located at the front portion. The receiving module is located in the installing space of the housing, and includes a circuit board, a receiving chip electrically coupled with the circuit board, and electric-conducting contacting portions electrically coupled with the circuit board. The electric-conducting contacting portions exposes to outside of the opening. Thereby, the total dimension is reduced.
Abstract:
A scanner for monitoring signals at one or more frequencies having a processor for performing various functionalities of the scanner in accordance with a set of instructions including a menu of selectable menu items; a display for displaying the menu items; and at least one variable selector operatively coupled to the processor for selecting menu items. The scanner also includes a receiver for receiving serial data regarding an event from a local transmitter.