Patent classifications
F21L14/04
HIGH-INTENSITY, TELESCOPING LIGHT TOWER WITH SAFETY FEATURES
A mobile lighting device is disclosed with extendable boom sections. The boom sections are stored in a horizontal position and then pivot to a vertical position before being extended upward. A light section is positioned at the uppermost end of the last extendable boom section. A variety of safety features are also disclosed.
SITE LIGHT
A site light including a body, a handle assembly coupled to the body and including one or more handle portions, an arm having a first end fixedly coupled to the body and a second end opposite the first end to define an arm length therebetween, where the second end of the arm is movable relative to the body to adjust the arm length. The site light also includes a light assembly coupled to and movable together with the second end of the arm relative to the body where the arm defines an arm axis, and where the handle assembly surrounds the arm axis.
Omnidirectional lighting stand
An omnidirectional lighting stand includes a base structure, an extendible post structure, a pitch-rotation structure, and a light arm structure. The light arm structure is rotatably mounted to the pitch-rotation structure. The pitch-rotation structure is mounted to a top end of the extendible post structure. The extendible post structure has a lower end mounted to the base structure. The pitch-rotation structure is rotatably mounted to a rotation seat for adjustment of a pitch angle thereof in a range of 180 degrees and is selectively fixe din position by a handle bolt. The pitch-rotation structure has a front-rear through hole provided for adjustment of a lighting direction of the lighting device in an angular range of 360 degrees.
OMNIDIRECTIONAL LIGHTING STAND
An omnidirectional lighting stand includes a base structure, an extendible post structure, a pitch-rotation structure, and a light arm structure. The light arm structure is rotatably mounted to the pitch-rotation structure. The pitch-rotation structure is mounted to a top end of the extendible post structure. The extendible post structure has a lower end mounted to the base structure. The pitch-rotation structure is rotatably mounted to a rotation seat for adjustment of a pitch angle thereof in a range of 180 degrees and is selectively fixe din position by a handle bolt. The pitch-rotation structure has a front-rear through hole provided for adjustment of a lighting direction of the lighting device in an angular range of 360 degrees.
TRANSPORTABLE SINGLE UNIT PARABOLIC LIGHTING SYSTEM
The present disclosure relates to a single unit parabolic lighting system including a lamp housing including an outside surface; an inside surface; a lamp mounting located on the centermost part of the inside surface and comprising a locking lamp support configured to accommodate a plurality of pin spacings; and a quick connection and disconnection mounting system; a molded composite yoke comprising a base and an arm extending away from the base, wherein the arm comprises an arm connector having a motorized drive with inductive position feedback that mechanically connects to the outside surface of the lamp housing and is configured to tilt the lamp housing with respect to the arm connector of the yoke about a 120 range; and a truss attachment base comprising a truss connector and a yoke connector having a motorized drive with inductive position feedback that mechanically connects to the base of the molded composite yoke.
TRANSPORTABLE SINGLE UNIT PARABOLIC LIGHTING SYSTEM
The present disclosure relates to a single unit parabolic lighting system including a lamp housing including an outside surface; an inside surface; a lamp mounting located on the centermost part of the inside surface and comprising a locking lamp support configured to accommodate a plurality of pin spacings; and a quick connection and disconnection mounting system; a molded composite yoke comprising a base and an arm extending away from the base, wherein the arm comprises an arm connector having a motorized drive with inductive position feedback that mechanically connects to the outside surface of the lamp housing and is configured to tilt the lamp housing with respect to the arm connector of the yoke about a 120 range; and a truss attachment base comprising a truss connector and a yoke connector having a motorized drive with inductive position feedback that mechanically connects to the base of the molded composite yoke.
HIGH-INTENSITY, TELESCOPING LIGHT TOWER WITH SAFETY FEATURES
A mobile lighting device is disclosed with extendable boom sections. The boom sections are stored in a horizontal position and then pivot to a vertical position before being extended upward. A light section is positioned at the uppermost end of the last extendable boom section. A variety of safety features are also disclosed.
Mobile Lighting System
A mobile lighting system configured to provide lighting to remote locations. The system is configured to be moved into a location by rolling on a moving apparatus, such as wheels or a continuous track and to shine light on a desired area by adjusting poles to raise or lower the nights, and rotating the lights within a mount that is mounted to the pole. The mobile lighting system has a power source, such as a battery, to provide several hours of lighting at a remote location.
Mobile Lighting System
A mobile lighting system configured to provide lighting to remote locations. The system is configured to be moved into a location by rolling on a moving apparatus, such as wheels or a continuous track and to shine light on a desired area by adjusting poles to raise or lower the nights, and rotating the lights within a mount that is mounted to the pole. The mobile lighting system has a power source, such as a battery, to provide several hours of lighting at a remote location.
SITE LIGHT
A site light includes a body, an arm coupled to the body having an adjustable arm length, a light assembly coupled to the arm opposite the body, and a drive mechanism with a crank arm rotatable about a first axis. Rotating the crank arm in a first direction causes the arm length to increase. Rotating the crank arm in a second direction causes the arm length to decrease. The drive mechanism is adjustable between a first configuration, where the crank arm can only rotate in the first direction, and a second configuration, where the crank arm can be rotated in the first direction and the second direction.