Abstract:
A lamp having a lamp base and a longitudinal axis, with a first lens with more than one segment having optic elements located distal from the lamp base. Where optic elements within a segment have similar optical properties and at least two of the segments have optic elements with different optical properties. A second lens located between the distal lens and the lamp base, the second lens having a plurality of total internal reflection (TIR) lens elements each having a focal point, with a finite light source is positioned at about each of the TIR lens element focal points. At least one of the first lens or the second lens is moveable about the longitudinal axis so as to change an alignment between the optic element segments, the TIR lens elements, and the finite light sources.
Abstract:
An apparatus including a diffuser defining an enclosed area within an interior of the diffuser; a solid state light source, disposed within the interior of the diffuser, emitting light therefrom in a direction away from a horizontal plane containing the solid state light source; optics disposed within the interior of the diffuser adjacent to and above the solid state light source to reflect, utilizing total internal reflection (TIR) and refractive mechanisms, at least a portion of the light emitted from the solid state light source.
Abstract:
An indirect linear luminaire that produces a batwing photometric distribution. The luminaire includes a rectangular housing having a substantially rectangular chamber defined by two opposed bifold wings and a bi-concave door extending therebetween. A linear light engine emits light upwards towards the bi-concave door and bifold wings and the light is reflected off of the bifold wings and bi-concave door in a batwing distribution.
Abstract:
A system for simulating neon light comprising an elongated guide containing outer surface and a channel; a housing containing an engagement member and area for receiving a light engine; and the light engine. The light engine comprising a flexible printed circuit (FPC), a plurality of light emitting diodes (LEDs) attached to the FPC, and a plurality of electrical connectors all in contact with a power conductor. The FPC also includes a gathering of material between each of the plurality of electrical connectors. Also included is a method for reducing the stress within the light engine.
Abstract:
A terminal block assembly includes a housing, a housing retention member coupled to the housing, a plurality of screw lug terminal assemblies disposed within the housing and a plurality of push-in terminal assemblies disposed within the housing. A push-in terminal of the plurality of push-in terminal assemblies includes a strain relief member and a retention spring assembly. The retention spring assembly includes a finger member and a conductor member. The conductor member electrically couples the finger member to a corresponding screw-lug terminal assembly. A bottom portion of the strain relief member engages the conductor member of the retention spring assembly to retain the retention spring assembly within the housing. A ground strap is disposed within the housing.
Abstract:
A system and method according to various embodiments can include a lighting fixture comprising a light source. An antimicrobial additive is added to an outer light emitting surface of the lighting fixture exposed to air. A sealing substrate is positioned between the antimicrobial additive and the light source to provide clean room capabilities when the lighting fixture is installed to seal a plenum.
Abstract:
Provided is an optical diffuser apparatus, for use adjacent a light engine in a lighting fixture for producing desired color-mixed light output. The apparatus includes a first diffuser panel and a second diffuser panel connected to the first diffuser panel. The first diffuser panel and the second diffuser panel are configured and arranged so that, when the apparatus is positioned for operation within the fixture, light emitted by the light engine at greater than a pre-determined threshold angle with respect to a centerline of the engine will pass through both the first diffuser panel and the second diffuser panel, thereby mixing colors of the light toward the desired color-mixed light output.
Abstract:
A reflector including pairs of reflecting pieces, each pair of reflecting pieces includes at least one reflecting unit, each reflecting unit including a first reflecting portion, a second reflecting portion, and a first fixing portion and a second fixing portion whose bottom ends are respectively connected to the first reflecting portion and the second reflecting portion. The first fixing portion is located on the side of the first reflecting portion that is opposed to an optical center of the reflecting unit, and the second fixing portion is located on the side of the second reflecting portion that is opposed to the optical center of the reflecting unit.