Abstract:
In einem Beispiel umfasst eine Scharnieranordnung für eine elektronische Vorrichtung ein erstes Scharnier, das einen ersten Bügel umfasst, der an eine erste Buchse gekoppelt ist, die an einem ersten Ende des ersten Bügels angeordnet ist, und um eine erste Welle drehbar ist, die sich durch die erste Buchse erstreckt, ein zweites Scharnier, umfassend eine zweite Buchse, einen ersten Verbindungsarm, der um eine zweite Welle drehbar ist, die sich durch die zweite Buchse erstreckt, und einen zweiten Verbindungsarm, der um die zweite Welle drehbar ist, die sich durch die zweite Buchse erstreckt, und ein drittes Scharnier, das einen zweiten Bügel umfasst, der an eine zweite Buchse gekoppelt ist, die an einem ersten Ende des zweiten Bügels angeordnet ist, und um eine dritte Welle drehbar ist, die sich durch die zweite Buchse erstreckt, wobei der erste Verbindungsarm drehbar an die erste Welle gekoppelt ist und der zweite Verbindungsarm drehbar an die dritte Welle gekoppelt ist. Andere Beispiele können beschrieben sein.
Abstract:
Embodiments are generally directed to determination of mobile display position and orientation using micropower impulse radar. An embodiment of an apparatus includes a display to present images; radar components to generate radar signal pulses and to generate distance data based on received return signals; radar antennae to transmit the radar signal pulses and to receive the return signals; and a processor to process signals and data, wherein the processor is to: process the return signals received by the radar antennae to determine a position and orientation of the display with respect to real objects in an environment and to determine a position of a vantage point of a user of the apparatus, and generate an augmented image including rendering a virtual object and superimposing the virtual object on an image including one or more real objects, the rendering of the virtual image being based at least in part on the determined position and orientation of the display and the determined vantage point of the user of the apparatus.
Abstract:
In one example an electronic device comprises a controller, a chassis comprising a first section and a second section, and a hinge assembly to connect the first section of the chassis to the second section of the chassis comprising a housing, a first shaft rotatable about a first axis, a second shaft rotatable about a second axis, a belt drive assembly to couple the first shaft to the second shaft, and a tension assembly to apply a tension to the belt drive assembly. Other examples may be described.
Abstract:
Processes for forming a composite chassis having a cosmetic finish are described. A composite chassis having cosmetic finish may be formed from a preform formed from layers of a continuous fiber tape impregnated with thermoplastic resin and a reaction molding process where a cosmetic portion having a cosmetic finish is molded onto the preform. The preform may be cut to net shape prior to molding. Additionally, backmold features may be injection molded onto the preform during the molding process.
Abstract:
Methods and systems may provide for detecting a location of an adjacent ultrasonic receiver of a battery powered device relative to a charging surface of a contactless charger. The charging surface may include an ultrasonic array of transmitter sub arrays, wherein one or more of the transmitter sub arrays may be selectively activated based on the location to focus an ultrasonic beam on the adjacent ultrasonic receiver. In one example, a movement of the adjacent ultrasonic receiver may be detected and the focus of the ultrasonic beam is adjusted in response to the movement.
Abstract:
Technologies for sharing information between computing devices comprises determining a location of a recipient destination computing device relative to a source computing device and transmitting information data to the recipient destination computing device based on an input gesture received on the source computing device and the relative location of the recipient computing device. The information data is usable by the recipient destination computing device to access the shared information. The input gesture may be embodied as a tactile or non-tactile gesture that indicates the relative location of the recipient computing device to which the information is to be shared.
Abstract:
Systems and methods may provide for transmitting an outbound radar signal via an antenna structure and receiving a reflected radar signal via the antenna structure. Additionally, a three dimensional (3D) code may be interpreted based on the outbound radar signal and the reflected radar signal. In one example, interpreting the 3D code includes determining depth data for each of a plurality of cells in the 3D code.
Abstract:
The present disclosure provides techniques for a flexible sensor. In particular, the present disclosure provides techniques for a flexible, capacitive flexible sensor. A computing device can include a flexible sensor to collect input. The computing device can also include a processor to process the input. A deformation of the flexible sensor changes a capacitance of the flexible sensor.