Abstract:
A method and corresponding system for reconstructing the surface geometry of a three-dimensional object is disclosed. The system comprises a cluster of heterogeneous sensors, including a two-dimensional high-resolution camera and a three-dimensional depth camera, and a turntable operable to rotate incrementally. In operation, the turntable is rotated to first and second positions and two-dimensional and three-dimensional data sets are obtained using the two-dimensional high-resolution camera and the three-dimensional depth camera. Corresponding features from the two-dimensional data sets are identified and used to identify the same corresponding features in the three-dimensional data sets. The three-dimensional corresponding features are used to calculate a three-dimensional homography, which is used to align the three-dimensional data sets. Following alignment, a three-dimensional mesh is generated from the aligned data sets.
Abstract:
Examples disclosed herein provide a computing device. One example computing device includes a base member, a support member rotatably connected to the base member at a first end of the support member, and a display member rotatably connected at a second end of the support member opposite the first end of the support member. The computing device includes a kickstand rotatably connected to a back surface of the display member at a first end of the kickstand, and magnetic members to magnetically couple the support member with a second end of the kickstand opposite the first end of the kickstand. When the device is to change from a first operation mode to a second operation mode, the kickstand is to move along the support member via the magnetic coupling.
Abstract:
An example device in accordance with an aspect of the present disclosure includes a sensor die having a sensitive region and a bond pad. A bond is formed between a wire and the bond pad of the sensor die. An encapsulant is to retain the wire at the bond pad and mechanically support the wire and the bond, based on covering the bond and wire according to an encapsulant height, extending from the bond pad, greater than a bond height. The encapsulant is localized at the bond pad of the sensor die to enable the sensitive region to remain uncovered by the encapsulant.
Abstract:
An example provides an apparatus including a substrate, a metal layer, and an adhesive layer adhered between the substrate and the metal layer, the adhesive layer comprising indium oxide, tin oxide, gallium oxide, indium-tin oxide, indium-gallium oxide, tin-gallium oxide, or indium-tin-gallium oxide.
Abstract:
According to one example, to access at least one computer device from a virtual machine, a control domain accesses a list of at least one device. For each device in the list of devices, a determination is made as to whether the device is to be exposed to a virtual machine, and a table of devices determined to be exposed to the virtual machine is created and provided to the virtual machine. Determining whether a device is to be exposed to a virtual machine is based on at least one device attribute.
Abstract:
An example provides an apparatus including a display panel, a shielding layer including an opening adjacent to a back side of the display panel, and an antenna overlapping the opening to allow for wireless communication with the apparatus from a front side of the display panel.
Abstract:
An example provides a plurality of nozzles; a common fluid supply channel in fluid communication with the plurality of nozzles and a compressible material forming, at least in part, a compressible wall of the common fluid supply channel, wherein the compressible wall has a volume and wherein the volume changes in response to changes in pressure in the common fluid supply channel.
Abstract:
A mode-controlled laser system includes an active region to generate optical energy in response to an electric signal. The system also includes a mirror to resonate the optical energy in an optical cavity. The system also includes a HCG mode control reflector arranged in the optical cavity to control the resonated optical energy into a substantially non-Gaussian intensity profile. The resonated optical energy can be emitted as an optical signal having the substantially non-Gaussian intensity profile.
Abstract:
A method performed by an electronic healthcare record (EHR) system with customizable compliance policies includes invoking a first data management process for a first data management operation, the first data management process defining a first set of compliance policies of a first healthcare participant for the first data management operation, and invoking a second data management process for the first data management operation, the second data management process defining a second set of compliance policies of a second healthcare participant for the first data management operation that differs from the first set of compliance policies.
Abstract:
Apparatuses and methods for high density laser optics are provided. An example, of a laser optics apparatus includes a plurality of vertical cavity surface emitting lasers (VCSELs) in a monolithically integrated array, a high contrast grating (HCG) integrated with an aperture of a vertical cavity of each of the plurality of the VCSELs to enable emission of a single lasing wavelength of a plurality of lasing wavelengths, and a plurality of single mode waveguides, each integrated with a grating coupler, that are connected to each of the plurality of the integrated VCSELs and the HCGs, where each of the grating couplers is aligned to an integrated VCSEL and HCG.