Abstract:
A wireless device and a display control method in a wireless device are disclosed. The wireless device is capable of making a call to another wireless device of a call partner and includes a first coil configured to generate an induced electromotive force by linking with magnetic flux from an external second coil, a battery configured to be supplied and charged with a charging current by the induced electromotive force, a wireless communication unit configured to wirelessly communicate with the wireless device of the call partner, a display, and at least one processor configured to communicate with the wireless device of the call partner via the wireless communication unit to perform call-related processing, and when a call is made during charging using the induced electromotive force, display charging information on the display The charging information includes information regarding a reduction in the charging current during the call.
Abstract:
A wireless device and a display control method in a wireless device are disclosed. The wireless device is capable of making a call to another wireless device of a call partner and includes a first coil configured to generate an induced electromotive force by linking with magnetic flux from an external second coil, a battery configured to be supplied and charged with a charging current by the induced electromotive force, a wireless communication unit configured to wirelessly communicate with the wireless device of the call partner, a display, and at least one processor configured to communicate with the wireless device of the call partner via the wireless communication unit to perform call-related processing, and when a call is made during charging using the induced electromotive force, display charging information on the display The charging information includes information regarding a reduction in the charging current during the call.
Abstract:
An electronic device includes: a magnetic sensor; a communication module; at least one processor operatively connected with the magnetic sensor and the communication module. The at least one processor is configured to: identify that a magnetic signal is detected through the magnetic sensor; identify, based on a magnitude of the detected magnetic signal, whether the magnetic signal is generated by coupling the electronic device with a cover device; and based on identifying that the magnetic signal is generated by coupling the electronic device with the cover device, correct sensor data of the magnetic sensor.
Abstract:
A processor includes a scalar computation unit; a vector co-processor coupled to the scalar computation unit; and one or more function-specific engines coupled to the scalar computation unit, the engines adapted to minimize data exchange penalties by processing small in-out bit slices.
Abstract:
A 1-chip microcomputer of the present invention has (a) a monitor flag for setting a flag indicating that a specified address space is accessed, (b) an access permission address range setting register, for setting an address range in which an access is permitted while the flag is set, (c) an access permission area detection circuit for judging whether the access is made within the address range thus set, (d) an access permission setting register, for setting whether or not an access with respect to an address other than the address range should be permitted, and (e) memory read-out control circuit and memory writing control circuit for controlling an access with respect to a nonvolatile memory based on a result thus judged and content set by the access permission setting register. With the arrangement, it is possible to provide a 1-chip microcomputer that maintains the security among application programs.
Abstract:
A framework in a cloud network that may allow for debugging at multiple vantage points at different layers (e.g., layer 2, layer 3, etc.). The methods may provide tracer or measurement services that filter, capture, or forward flows that may include packets, calls, or protocols to look for particular signatures.
Abstract:
The present disclosure relates to titanium or titanium alloy (e.g., titanium/copper alloy) mobile phone chassis, and methods for making and using same.
Abstract:
A 1-chip microcomputer of the present invention has (a) a monitor flag for setting a flag indicating that a specified address space is accessed, (b) an access permission address range setting register, for setting an address range in which an access is permitted while the flag is set, (c) an access permission area detection circuit for judging whether the access is made within the address range thus set, (d) an access permission setting register, for setting whether or not an access with respect to an address other than the address range should be permitted, and (e) memory read-out control circuit and memory writing control circuit for controlling an access with respect to a nonvolatile memory based on a result thus judged and content set by the access permission setting register. With the arrangement, it is possible to provide a 1-chip microcomputer that maintains the security among application programs.
Abstract:
An apparatus can include a processor; memory accessible by the processor; a first housing that includes a first link end; a second housing that includes a second link end; and a hinge assembly that includes a first link coupled to the first link end via a first axle, a second link coupled to the second link end via a second axle and an intermediate axle that operatively couples the first link and the second link where stop surfaces of the first and second links define a minimum radius of curvature of the hinge assembly.
Abstract:
An electrical accessory for use with a portable electronic device and with a protective cover for the portable electronic device is provided. The electrical accessory includes a body, electrical circuitry, and an electrical connector. The body is configured to slidably attach to a back side surface of the protective cover to removably affix the electrical accessory to the protective cover. The electrical circuitry includes wireless communication circuitry configured to wirelessly exchange data with the portable electronic device when the electrical accessory is removably affixed to the protective cover. The electrical connector is affixed to the body of the electrical accessory and configured to removably connect to an external power source for receiving electrical power from the external power source. The electrical accessory may also include a speaker.