Abstract:
A connector for a light source comprises a first cam having a contact surface that is mounted such that the contact surface is extended and retracted relative to the housing. An electrical contact is provided and positioned to contact an electrical terminal in the socket. A conductor is electrically coupled to the electrical contact where the conductor is connected to a light source. An actuator rotates the cam to the retracted position. The connector may be inserted linearly into the socket and the actuator released to mount the light source in the socket.
Abstract:
A connector for a light source comprises a first cam having a contact surface that is mounted such that the contact surface is extended and retracted relative to the housing. An electrical contact is provided and positioned to contact an electrical terminal in the socket. A conductor is electrically coupled to the electrical contact where the conductor is connected to a light source. An actuator rotates the cam to the retracted position. The connector may be inserted linearly into the socket and the actuator released to mount the light source in the socket.
Abstract:
Solid state lamps and bulbs comprising different combinations and arrangements of a light source, one or more wavelength conversion materials, regions or layers which are positioned separately or remotely with respect to the light source, and a separate diffuser. These are arranged on a heat sink in a manner that allows for the fabrication of lamps and bulbs that are efficient, reliable and cost effective and can provide an essentially omni-directional emission pattern, even with a light source comprised of a co-planar arrangement of LEDs. Additionally, this arrangement allows aesthetic masking or concealment of the appearance of the conversion regions or layers when the lamp is not illuminated. Various embodiments of the invention may be used to address many of the difficulties associated with utilizing efficient solid state light sources such as LEDs in the fabrication of lamps or bulbs suitable for direct replacement of traditional incandescent bulbs. Embodiments of the invention can be arranged to fit recognized standard size profiles such as those ascribed to commonly used lamps such as incandescent light bulbs, while still providing emission patterns that comply with ENERGY STAR® standards.
Abstract:
The present disclosure relates to an enhanced composite lens, which is formed from a material, such as thermoplastic material. The thermoplastic material may be polycarbonate, acrylic glass, and the like. To form the composite lens, a resin of the desired thermoplastic material is formed in the desired shape of a lens. To facilitate light diffusion within the body of the resultant lens, diffusive additives are added to the thermoplastic resin when forming the composite lens. As such, the diffusive additives are dispersed throughout the body of the composite lens and light diffusion occurs volumetrically within and throughout the body of the composite lens.
Abstract:
The present disclosure relates to a multi-tiered lighting system that has a pole and at least two light sources. A first light source is mounted to the pole at a first height, and a second light source is mounted to the pole at a second height that is substantially different than the first height. The first light source is configured to project a first beam of light that primarily lights up a first portion of a target coverage area, and the second light source is configured to project a beam of light that primarily lights up a second portion of the target coverage area, which is different from the first target coverage area. The first beam of light may spill onto the second target area, and the second beam of light may spill onto the first target area.
Abstract:
A method for providing an optical element may include providing an optical feature in the optical element that spreads or distributes light passing through the optical element. The method may also include providing a texturing in at least a portion of the optical feature of the optical element.
Abstract:
A solid state directional lamp is disclosed. The lamp includes a housing and a solid state light emitter. The housing defines an interior region and an air passageway, the air passageway passing through the housing and the interior region. The solid state light emitter is positioned adjacent to a perimeter of the air passageway. The air passageway is configured to provide cooling to the lamp when the sold state light emitter is energized.
Abstract:
The present disclosure relates to a modular lighting system that may include a driver module, an array of LEDs that are driven by the driver module, and a control module. The control module is configured to control the driver module, which in turn drives the LEDs of the array of LEDs in a desired fashion. The control module may communicate with one or more remote lighting control systems through wired or wireless communications and function to control the driver module accordingly. Notably, the driver module and the control module communicate with each other through a standard communication protocol, such that either of the driver module or the control module can be replaced without replacing the other of the driver module or control module. Further, power may be provided to the control module and the array of LEDs by the driver module via the standard communication interface or separate power interface.