Patent classifications
F21V31/00
Direct wireless control of lighting systems for use in a high-moisture environment
A lighting system for use in a high-moisture environment, such as a swimming pool, includes a lighting unit having a housing and at least one light-emitting device positioned within the housing. A power supply provides power to the light-emitting device. A receiver positioned within the housing operates with a LoRa modulation format. A mobile control unit located remote from the lighting unit is configured to transmit at least one wireless control signal to the receiver, whereby the at least one control signal controls or changes a characteristic of the at least one light-emitting device, such as an on/off state, a color, a lighting effect, or a pattern of display. Related systems and methods for installing a lighting system for use in a high-moisture environment are also disclosed.
Luminaire
A luminaire, including a shade, a mounting base, a first end cap, a second end cap, a light source module and a drive power source. The shade has two first folded edges opposite to each other, and the mounting base has two second folded edges opposite to each other; the first folded edges are in snap-fit with the second folded edges; the luminaire further includes a shade pushing assembly, and the shade pushing assembly includes a force-exerting key and a pushing piece; one end of the force-exerting key is connected to the pushing piece, and the other end of the force-exerting key extends out of the mounting base; the pushing piece abuts against a first end face of at least one of the first folded edges.
LED tube lamp
An LED tube lamp comprises a lamp tube, a diffusive layer covered on a surface of the lamp tube, two end caps, a light strip, LED light sources on the light strip, and a power supply. Each of the two end caps is coupled to a respective end of the lamp tube. The light strip is attached to an inner circumferential surface of the lamp tube. The power supply module comprises a printed circuit board electrically connected to the light strip, a rectifying circuit and a filtering circuit coupled to the rectifying circuit. An end of the light strip is detached from the inner circumferential surface of the lamp tube and electrically connected to the printed circuit board.
LIGHTING APPARATUS HAVING FIRST AND SECOND LADDER EDGES TO PREVENT WATER FROM ENTERING CONCEALED SPACE
A lighting apparatus includes a light source, a light passing cover, a back cover and a rim frame. The light source is used for emitting a light. The light passing cover has a first ladder edge. The rim frame has an inner frame and a light source holder. The back cover, the surface rim and the light passing cover define a concealed space. The light source is disposed in the light source holder in the concealed space. The inner frame defines a light opening for the light to escape from the lighting apparatus. The inner frame has a second ladder edge surrounding the light opening. The first ladder edge and the second ladder edge are pressed by the back cover to press to each other. Multiple ladder protrusion surfaces between the first ladder edge and the second ladder edge prevent water to enter the concealed space.
Ornamental Lamp
The utility model provides an ornamental lamp with a new structure, comprising a lamp body and a water pump, wherein the lamp body is provided with a cavity, liquid and ornamental objects are arranged in the cavity, a water inlet and a water outlet communicating with the cavity are respectively arranged on the lamp body, at least part of the side wall of the lamp body is transparent or semitransparent; the water pump is provided with a water inlet end and a water outlet end, the water inlet end communicates with the water inlet, and the water outlet end communicates with the water outlet. The ornamental lamp of the utility model has a simpler and more efficient structure and a longer service life, and the moving ornamental object is more ornamental.
Ornamental Lamp
The utility model provides an ornamental lamp with a new structure, comprising a lamp body and a water pump, wherein the lamp body is provided with a cavity, liquid and ornamental objects are arranged in the cavity, a water inlet and a water outlet communicating with the cavity are respectively arranged on the lamp body, at least part of the side wall of the lamp body is transparent or semitransparent; the water pump is provided with a water inlet end and a water outlet end, the water inlet end communicates with the water inlet, and the water outlet end communicates with the water outlet. The ornamental lamp of the utility model has a simpler and more efficient structure and a longer service life, and the moving ornamental object is more ornamental.
LED POWER SUPPLY AND LED LAMP
The present utility discloses An LED power supply, comprising a housing, a light-emitting mode switching component a circuit board, an output socket, and an input conductive plug, wherein the housing comprises a main housing and an end cover, the main housing is integrally formed, an accommodating cavity is provided inside the main housing, one end of the main housing is closed and the other end thereof is provided with an opening, the input conductive plug and one end of the main housing are cast integrally, one end of the input conductive plug is located in the accommodating cavity, the side wall of the main housing is provided with a through hole, a part of the light-emitting mode switching component forms a sealing fit with the through hole and is fixed with the main housing, at least a part of the circuit board is located in the accommodating cavity and is electrically connected with the input conductive plug, one end of the light-emitting mode switching component is matched or fixed with the circuit board, after the end cover is fixed with the opening of the main housing, the end cover forms a sealed combination with the main housing, the output socket is provided on the end cover, the axial direction of the output socket is parallel to the input conductive plug, or the included angle formed by the axial direction of the output socket and the input conductive plug is less than 3 degrees. The present utility model provides with improved waterproof reliability.
Sound synchronized light device for balloons
The present disclosure provides a lighting device for use with inflatable products, such as balloons. Specifically, the lighting device may be configured to utilize external audio to produce a pattern of light corresponding with the external audio. The lighting device is able to couple to a balloon to light up the interior of the balloon without the significant loss of gas or other inflating fluid from the balloon.
Linear optical system with ingress protection
A linear luminaire having high ingress protection includes a light-generating assembly and a channel. The light-generating assembly is an elongate, self-contained, sealed optical assembly that includes all elements necessary to generate light and to direct, focus, or modify the generated light in a particular way. Typically, the light-generating assembly would include an outer optical element and a light source positioned within a cavity of the body of the light-generating assembly. The outer optical element may be a lens, diffuser, or other such element. The light source may be a strip of LED linear lighting, a string of connected LED modules, or any other suitable device. The light-generating assembly may optionally include a second optical element, such as a lens or diffuser, that is supported within the body. The ends of the body of the light-generating assembly may be sealed by fitted endcaps, by polymeric resin, or by other means.
Ambiance lighting system and method
The present invention relates to an ambiance lighting system that more than one of a translucent panel aligned and connected together to form a perimeter having a top edge, and an interior region. A light control panel comprises one or more light-emitting diode (LED), and a power source. One or more of a sleeve have an open edge, the light control panel slides into the open edge and is retained in the sleeve, the sleeve is secured across the top edge of the translucent panel, the light control panel is orientated within the sleeve so that the LED illuminate the interior region projecting light through the translucent panel creating an ambiance lighting effect. Exemplary embodiments include a handle for carrying, use of Fresnel lenses, and creating a kit of ambiance lighting system parts that a consumer can assemble.