Abstract:
This application is directed to a physical assembly including a magnet mount for physically receiving a physical module that includes a housing having a rear surface of a first shape. The magnet mount includes a first surface, a second surface and a magnetic material. The first surface is configured to attach to a mounting surface. The second surface has a second shape that is substantially complementary to the first shape, and is configured to engage the rear surface of the housing of the physical module. The magnetic material is disposed between the first and second surfaces and configured to magnetically couple to a magnetic material of the physical module. When the physical module is magnetically coupled to the magnet mount, an adjustable union between the magnet mount and the physical module is formed permitting adjustment of an angle of orientation of the physical module with respect to the magnet mount.
Abstract:
A hazard detector includes a chassis configured to house components of the hazard detector. The chassis includes a front defining a central aperture. The front has a domed contour such that an outer edge of an inner portion extends beyond an outer periphery of the front. The inner surface tapers from the outer edge toward the inner portion. The detector includes a mesh formed to the contour of the front so the mesh is flat against the front. The mesh defines an aperture corresponding to the central aperture. The detector includes a grille secured to the chassis that defines an aperture corresponding to the central aperture and defines openings positioned along the grille. An inner surface of the grille includes a contour corresponding to the contour of the front so the mesh is flat against the inner surface. The mesh is positioned between the grille and the chassis.
Abstract:
This application is directed to a system for securing an electronic device to a surface. The system includes multiple clips. Each clip includes a first finger and a second finger made from a single piece of flexible material. Each of the fingers includes a peripheral portion and a contiguous inner portion, the inner portions of the fingers being connected at a flexion point. The fingers are configured to be held in an open position when not under tension and in a closed position when under sufficient tension. The peripheral portions include respective through holes. When the fingers are held in the closed position, the inner portions form an opening to accommodate a contour of a cable of predetermined thickness and cross-sectional profile extending from the electronic device, and the through holes of the fingers are aligned and configured to receive a fixing fastener.
Abstract:
This application is directed to a camera that includes a housing, a lens assembly and a plurality of electronic components. The lens assembly is arranged at a front portion of the housing and configured for focusing light received from outside of the camera. The plurality of electronic components is arranged at the front portion of the housing, and further includes an image sensor coupled to receive light through the lens assembly, a memory for storing information, a processor for processing information from the image sensor, and a wireless communication module for wirelessly communicating with an electronic device. The camera further includes a heat dissipation element arranged at a rear portion of the housing and located between the plurality of electronic components and a rear surface of the housing. The heat dissipation element is configured to transfer heat from the plurality of electronic components to the rear portion of the housing.
Abstract:
A hazard detector includes a chassis configured to house components of the hazard detector. The chassis includes a front defining a central aperture. The front has a domed contour such that an outer edge of an inner portion extends beyond an outer periphery of the front. The inner surface tapers from the outer edge toward the inner portion. The detector includes a mesh formed to the contour of the front so the mesh is flat against the front. The mesh defines an aperture corresponding to the central aperture. The detector includes a grille secured to the chassis that defines an aperture corresponding to the central aperture and defines openings positioned along the grille. An inner surface of the grille includes a contour corresponding to the contour of the front so the mesh is flat against the inner surface. The mesh is positioned between the grille and the chassis.