Patent classifications
F21V21/005
Elongated Hexagonal Decorative Light System
An elongated hexagonal decorative light system comprises a plurality of light panel assemblies, each light panel assembly having an elongate hexagonal shaped base defining two electrical receptacles at each end of the elongate base. A printed circuit assembly is mounted to the base and has a plurality of light emitting diodes populated thereon with electronic circuitry for selectively illuminating the light emitting diodes, and a prismatically shaped lens affixed to the base. A controller has a printed circuit assembly mounted wherein the printed circuit assembly includes the circuitry and logic for controlling the plurality of light panels. The controller includes a signal cord extending therefrom and terminating with an electrical connector receivable in the light panel receptacles. A plurality of connector cables, each having a multi-lead cable segment terminated at each end with an electrical plug receivable in the electrical receptacles in the light panel assemblies.
FLUSH-MOUNT LED HOUSING
A light fixture comprising a housing with a first end and a second end opposite the first end is installed by removing a cap removably coupled with the second end of the housing and mounting the housing to a surface such that the housing is adjacent the surface. Cavities formed by walls of first and second flanges coupled with the housing at the second end are configured to receive fasteners to secure the housing to a surface. Light from a light source coupled with the housing is configured to be emitted from the housing at the first end of the housing. The light fixture is hung from a cable by passing a cord through an opening formed by walls of the cap and around the cable while the cap is removably coupled with the housing.
FLUSH-MOUNT LED HOUSING
A light fixture comprising a housing with a first end and a second end opposite the first end is installed by removing a cap removably coupled with the second end of the housing and mounting the housing to a surface such that the housing is adjacent the surface. Cavities formed by walls of first and second flanges coupled with the housing at the second end are configured to receive fasteners to secure the housing to a surface. Light from a light source coupled with the housing is configured to be emitted from the housing at the first end of the housing. The light fixture is hung from a cable by passing a cord through an opening formed by walls of the cap and around the cable while the cap is removably coupled with the housing.
METHOD OF CONTROLLING SERIALLY-CONNECTED LIGHTING DEVICES
A lighting device may include an elongated housing that defines a cavity. The lighting device may include plurality of emitter printed circuit boards configured to be received within the cavity. Each of the plurality of emitter printed circuit boards may include a plurality of emitter modules mounted thereto. Each of the plurality of emitter printed circuit boards may include a control circuit configured to control the plurality of emitter modules mounted to the respective emitter printed circuit board based on receipt of one or more messages. The lighting device may include a total internal reflection lens for each of the plurality of emitter printed circuit boards. The total internal reflection lens may be configured to diffuse light emitted by the emitter modules of the plurality of emitter printed circuit boards.
METHOD OF CONTROLLING SERIALLY-CONNECTED LIGHTING DEVICES
A lighting device may include an elongated housing that defines a cavity. The lighting device may include plurality of emitter printed circuit boards configured to be received within the cavity. Each of the plurality of emitter printed circuit boards may include a plurality of emitter modules mounted thereto. Each of the plurality of emitter printed circuit boards may include a control circuit configured to control the plurality of emitter modules mounted to the respective emitter printed circuit board based on receipt of one or more messages. The lighting device may include a total internal reflection lens for each of the plurality of emitter printed circuit boards. The total internal reflection lens may be configured to diffuse light emitted by the emitter modules of the plurality of emitter printed circuit boards.
Ovular double-ended light emitting diode (LED) bulb
An LED light module comprises an emitting portion; at least one LED package; a back cover; and an end cap. The emitting portion defines a first curved surface. The first curved surface extends a first length along a cylindrical axis defined by the LED light module. The back cover defines a second curved surface extending the first length along the cylindrical axis. The first curved surface and the second curved surface define a perimeter of the LED light module. In a cross-section of the LED light module taken in a plane substantially perpendicular to the cylindrical axis, the perimeter is substantially ovular, elliptical and/or tear-drop shaped. The end cap is substantially ovular, elliptical and/or tear-drop shaped, and comprises a coupling element configured to electrically and/or mechanically couple the LED light module to a subsequent LED light module or to a fixture.
Flush-mount LED housing
A light fixture comprising a housing with a first end and a second end opposite the first end is installed by removing a cap removably coupled with the second end of the housing and mounting the housing to a surface such that the housing is adjacent the surface. Cavities formed by walls of first and second flanges coupled with the housing at the second end are configured to receive fasteners to secure the housing to a surface. Light from a light source coupled with the housing is configured to be emitted from the housing at the first end of the housing. The light fixture is hung from a cable by passing a cord through an opening formed by walls of the cap and around the cable while the cap is removably coupled with the housing.
Flush-mount LED housing
A light fixture comprising a housing with a first end and a second end opposite the first end is installed by removing a cap removably coupled with the second end of the housing and mounting the housing to a surface such that the housing is adjacent the surface. Cavities formed by walls of first and second flanges coupled with the housing at the second end are configured to receive fasteners to secure the housing to a surface. Light from a light source coupled with the housing is configured to be emitted from the housing at the first end of the housing. The light fixture is hung from a cable by passing a cord through an opening formed by walls of the cap and around the cable while the cap is removably coupled with the housing.
Reconfigurable track light adapters, kits and methods
The present disclosure provides implementations of a track lighting adapter to couple a luminaire to a lighting track. The track lighting adapter includes a luminaire adapter to couple to the luminaire, and a track adapter to couple to the lighting track. The track adapter is selectively removable from the luminaire adapter.
Reconfigurable track light adapters, kits and methods
The present disclosure provides implementations of a track lighting adapter to couple a luminaire to a lighting track. The track lighting adapter includes a luminaire adapter to couple to the luminaire, and a track adapter to couple to the lighting track. The track adapter is selectively removable from the luminaire adapter.