Abstract:
A video camera comprises a housing (102) configured of a top housing portion (104), a mid-housing portion (106) and a bottom housing portion (108). The top housing portion is configured as a circular and rounded exterior contoured wall (110) having an exterior recessed feature (112) formed along an edge (114). The mid-housing portion (106) is formed of an IR window ring (116) having an alignment tab (118) extending therefrom, the alignment tab being aligned and recessed within the exterior recessed feature (112) of the rounded exterior contoured wall (110) of the top housing portion (104), and the bottom housing portion (108) providing a camera dome (120) seated within and protruding from the IR window ring (116).
Abstract:
A mounting apparatus (102) comprises a plurality of flexible interconnected spacer segments (104) for receiving the antenna (106), the plurality of flexible interconnected spacer segments provide a continuous offset (114) between the antenna and another surface. Each of the plurality of flexible interconnected spacer segments (104) comprises a unitarily molded flexible link, each link having a triangular cross sectional geometry (350) having an opening (108) on top (302) for receiving the antenna, and the top leading to a wider base for mounting to a surface. The links are separable (312) providing for a customizable length and form factor.
Abstract:
A portable remote control device (100) for a radio is housed within a key fob housing (102). The key fob housing (102) camouflages a plurality of radio interface functions.
Abstract:
An event in a public safety (PS) network is recorded by mounting a video recording device for capturing images in a field of view (FOV) on a PS person, by tracking the PS person's point of view (POV) by mounting a motion sensor on the PS person's head for joint movement therewith to generate an output direction control signal indicative of a direction along which the POV is directed; by determining a context of the event in which the PS person is engaged by generating from a context sensor an output context signal indicative of the context of the event; and by automatically controlling operation of the video recording device based on the context and control signals by controlling one of direction of the FOV, angle of the FOV, size of the images, and resolution of the images.