Abstract:
A luminaire includes a luminaire housing having a lower wall, an upper wall, and a plurality of side walls defining a first interior. A first control component is positioned in the interior. A light emitter is connected to the housing and operatively connected to the control component. A control module is connected to an exterior of the luminaire housing. The control module includes a base and a cover defining a second interior, and a second control component positioned in the second interior.
Abstract:
The invention relates to a portable, skid mounted, wheeled and/or collapsible hybrid-power lighting and energy management system for harsh, remote and/or high latitude locations. The system combines an internal combustion engine (ICE) power source with a direct current power generator and a battery storage system for providing power to light system. The system may also include an ICE heating system and/or renewable solar and/or wind power systems in a manner that improves efficiency and reliability of operation in such locations, while preserving and improving functionality of operation and significantly reducing operator interaction during set-up and operation.
Abstract:
A generating kit (1) of electrical energy and LED illumination for light towers (T), comprising: - a vertical-axis wind turbine (5), fixable to a top of a light tower (T) so that the axis thereof is aligned to an axis of the light tower (T). - a lighting group (2) comprising a plurality of LEDs (4), borne by the support structure (3).
Abstract:
A luminaire includes a housing having a rear section, a middle section removably connected to the rear section and, a front section removably connected to the middle section. A control component is positioned in the rear section. A light emitter assembly is operably connected to the control component.
Abstract:
The present invention relates to a light emitting apparatus comprising, an element (104) arranged to convert light of a first wavelength (110) into light of a second wavelength (112), emit the light of the second wavelength (112), and to reflect light of the first wavelength (110), a reflector (106) arranged to reflect light of the first wavelength (110), and transmit light of the second wavelength (112), a light source (102) emitting light of the first wavelength (110) on the reflector (106) such that the refiected light of the first wavelength (110) is directed towards the element (104), a lens (108) arranged to focus light of the first wavelength (110) reflected by the reflector (106) onto the element (104), and to collect light emitted and refiected from the element (104), wherein the element (104) is arranged to emit light of the second wavelength (112) with an angular distribution (116) within a collection angle of the lens (108), wherein the element (104) is further arranged to reflect light of the first wavelength (110) with an angular distribution (118) substantially within the collection angle of the lens (108) and with an intensity distribution such that a portion (120) of the light of the first wavelength (110) that is reflected with an angular distribution outside a region (122) covered by the reflector (106) is larger than a portion (124) of the light of the first wavelength (110) that is reflected with an angular distribution within the region (122) covered by the reflector (106).
Abstract:
A transportable lighting system. The lighting system is designed to withstand the difficult and extreme weather conditions typically experienced in outdoor work sites such as drilling rig environments. The pulley and roller arraignments are designed for minimal friction. The overall pulley and roller design for the lifting of the unit (including the way the cables are orientated) is extremely robust. The outrigger includes fold out and lock in place design. The power source can run a duel transfer switch setup powered by an external supply (like drilling rig power) or from its own 100% back-up generator. Lighting used is typically light in weight and bright. Towers are skid mounted and mobile, e.g., with the use of a truck. Individual lights can swivel and tilt as can the entire bank of lights.
Abstract:
A system for accessing industrial lighting fixtures is described. The system may include a telescoping light pole having a light fixture at one end, a base support at an opposite end for securing the light fixture, and an electrical passage through tubular supports of the pole for providing power to the light fixture. The telescoping function of the light fixture may be supported by a biasing member inside the tubular supports. A tool for assisting in the extension and retraction of the fixture is also provided, as well as a mating device for mating the electrical passage with a port of an electrical enclosure.
Abstract:
An optical component has an elongate length extending between first and second ends and a width transverse to and substantially smaller than the length and extending between first and second sides. The optical component includes a refractive portion disposed between the first and second sides and extending along the length between the first and second ends, and a plurality of separate reflective portions. At least one of the plurality of separate reflective portions is spaced from the refractive portion and extending along the length between the first and second ends.
Abstract:
Изобретение относится к области светотехники. Техническим результатом изобретения является создание влагозащищенного светодиодного светильника с повышенной надежностью и эффективностью за счет обеспечения теплонезависимых условий работы источника питания и светодиодов, путем установки их на разных корпусах (первом корпусе (1) и третьем корпусе (3)), которые теплоизолированы друг от друга торцевым соединителем (5) и торцевой заглушкой (6), выполненными из теплоизолирующего материала; с увеличенной эффективностью отвода тепла от светодиодов за счет наличия дополнительного второго корпуса (2), имеющего тепловой контакт с первым корпусом (1); а также с улучшенным удобством пользования, а именно с более быстрой и менее трудоемкой процедурой замены источника питания, за счет установки источника питания на легко открывающемся путем откидывания третьем корпусе (3).