Abstract:
In a method of controlling power level of transmit signals from a wireless communication device that is communicating with a plurality of wireless ad-hoc network nodes as part of an ad-hoc network, a value of a usage parameter of a communication between the wireless device and a first wireless ad-hoc network node of the plurality of nodes is detected. A power level of a transmit signal from the wireless device to the first wireless ad-hoc network node is set to a level corresponding to the value of the usage parameter. A device for adjusting a power level in a wireless device includes a parameter detection circuit, that detects a parameter indicative of a relationship between the wireless device and a wireless ad-hoc network node, and a power selection circuit that sets a transmit signal power level from the wireless device to a level corresponding to the parameter detected by the parameter detection circuit.
Abstract:
A dual sided transparent display module and an electronic device incorporating the same are provided. The dual sided transparent display module includes a primary transparent display having a first surface side and a second surface side. The transparent display module further includes a first side touch sensor array and a second side touch sensor array respectively located at the first surface side and the second surface side of the primary transparent display. The transparent display module still further includes a shutter element located at one of the first surface side and the second surface side of the primary transparent display.
Abstract:
A device (100, 2604) includes a controllable skin texture surface (2602), a sensor (2700), and control logic (200). The sensor senses a plurality of points of interest (2804, 2806) of a user surface (2800). The control logic controls a plurality of portions (2900) of the controllable skin texture surface to protrude at locations with respect to the plurality of points of interest in response to the sensor sensing the plurality of points of interest. In one example, the control logic periodically adjusts the plurality of portions protruding from the controllable skin texture surface in response to movement between the user surface and the controllable skin texture surface.
Abstract:
A compact input device (104), suitable for entering data in an electronic device (102), includes a cylindrical surface (202) that has a keyboard switch matrix (210) deployed on the outer body of the cylindrical surface (202) formed by a first extendable interlocking part (412) and a second extendable interlocking part (414). The first extendable interlocking part (412) includes a left half of a QWERTY keyboard (e.g., Q, W, E, R, T) while the second extendable interlocking part (414) includes a right half of a QWERTY keyboard (e.g., Y, U, I, O, P). When the compact input device (104) is in an extended and aligned configuration, the keys of the first extendable interlocking part (412) and the keys of the second extendable interlocking part (414) form a common QWERTY keyboard configuration.
Abstract:
A method and apparatus for securely pairing wireless devices is disclosed. The method comprises sending (304) from a first device (102) secure information, such as a Bluetooth code, a pin or combination thereof, over a wired link (260). Then receiving (306) from a second device (104) a confirmation to the secure information over a wireless link (105). Then, the method comprises, communicating over a link using at least a portion of the secure information to maintain a secure link.
Abstract:
A portable electronic device including a transparent display module, and a method of incorporating a transparent display module into a portable electronic device, are provided. The portable electronic device includes a front side surface which is intended to be primarily used facing toward a principal user and a back side surface, which is intended to be primarily used facing away from the principal user. The portable electronic device includes a transparent display module including a primary light emitting transparent display having a first side surface and a second side surface, which emits a light toward each of the first side surface and the second side surface in disproportionate amounts, where an amount of light emitted toward the first side surface is less than an amount of light emitted toward the second side surface. The transparent display module is mounted in the portable electronic device, so that the first side surface of the transparent display module which emits the lesser amount of light is oriented toward the front side surface of the portable electronic device, and the second side surface of the transparent display module which emits the greater amount of light is oriented toward the back side surface of the portable electronic device.
Abstract:
An embodiment relates generally to a method of operating a device. The method includes providing for a plurality of sensors, where each sensor is configured to sense and transmit data values associated with an interaction with the device by a user. A subset of the sensors of the plurality of sensors is associated with a respective facing on a housing of the device. The method also includes operating the plurality of sensors to detect the interaction with the device by the user and receiving sensor data associated with the interaction from the plurality of sensors. The method further includes determining a user mode of the device based on the sensor data associated with the interaction.
Abstract:
A method and apparatus is provided for wireless audio management in a communication system (100). A wireless audio manager (110) includes one or more headphone receptacles (160) for coupling a conventional headset (120) thereto, a wireless receiver (204) for receiving streaming audio information from one or more information devices (130, 140, 150) wirelessly broadcasting streaming audio information, a user interface (170) for receiving user inputs, and a controller (208) coupled to the headphone receptacle(s) (160), the wireless receiver (204) and the user interface (170) for coupling the streaming audio information to the conventional headset (120) by providing the streaming audio information to the headphone receptacle(s) (160) in response to the user inputs.
Abstract:
A portable electronic device including a transparent display module, and a method of incorporating a transparent display module into a portable electronic device, are provided. The portable electronic device includes a front side surface which is intended to be primarily used facing toward a principal user and a back side surface, which is intended to be primarily used facing away from the principal user. The portable electronic device includes a transparent display module including a primary light emitting transparent display having a first side surface and a second side surface, which emits a light toward each of the first side surface and the second side surface in disproportionate amounts, where an amount of light emitted toward the first side surface is less than an amount of light emitted toward the second side surface. The transparent display module is mounted in the portable electronic device, so that the first side surface of the transparent display module which emits the lesser amount of light is oriented toward the front side surface of the portable electronic device, and the second side surface of the transparent display module which emits the greater amount of light is oriented toward the back side surface of the portable electronic device.
Abstract:
A method and hand held electronic device are provided for performing a dual sided gesture on respective touch sensitive surfaces of a hand held electronic device. The method includes displaying an object on a display screen of the hand held electronic device, that is viewable from at least one side of the hand held electronic device. A virtual center of gravity associated with the displayed object is then defined. Simultaneous gestures are then received tracking the position and movement of an end of a pointer on each of a pair of respective surfaces of the hand held electronic device, each surface having a corresponding touch sensitive input. The location and movement of each gesture is then compared relative to the defined virtual center of gravity, and the displayed object is repositioned in response to the location and movement of each gesture relative to the defined virtual center of gravity.