Patent classifications
F21V19/0015
Half-packaged flexible light strip
A half-enclosed flexible light strip includes a flexible circuit board, a transparent cover with a half-enclosed structure and a plurality of light sources. The plurality of light sources and the transparent cover are all arranged on the same surface of the flexible circuit board. The light sources are located between the transparent cover and the flexible circuit board. The transparent cover is formed by co-extrusion process and connected to the flexible circuit board. The transparent cover with a half-enclosed structure is formed onto the flexible circuit board by co-extrusion process, the use of glue is reduced, so that the light emitted from the two sides of the transparent cover will not cause color drift problem, and this arrangement ensures the consistency of the luminous effect in all directions, thereby improving the light strip use effect.
LIGHT EMITTING PANEL
A light emitting panel includes a circuit substrate, a plurality of first light emitting components, a plurality of second light emitting components, and a plurality of third light emitting components. The circuit substrate has a plurality of main pixel areas. Each main pixel area is divided into a first subpixel area, a second subpixel area, and a third subpixel area. The first light emitting components, the second light emitting components and the third light emitting components are located in the first subpixel areas, the second subpixel areas and the third subpixel areas respectively. The first light emitting components in two adjacent first subpixel areas are electrically connected in series. The size of each of the first light emitting components is larger than the size of each of the second light emitting components and the third light emitting components.
LIGHT SOURCE AND LIGHT EMITTING MODULE
A light source includes a plurality of light emitting elements, a light blocking member and a plurality of light-transmissive members. The light blocking member collectively supports the plurality of light emitting elements with the light blocking member being disposed in regions between the plurality of light emitting elements and in an outer periphery region located outwardly of the plurality of light emitting elements in a plan view. An upper surface of each of the plurality of the light emitting elements is exposed from the light blocking member. The plurality of light-transmissive members include a plurality of first light-transmissive members respectively disposed on the plurality of light emitting elements, and a second light-transmissive member disposed on the light blocking member in the outer periphery region.
METHOD FOR TRANSMITTING CONTROL INSTRUCTIONS TO A PLURALITY OF RECEIVERS AND RECEIVER ADAPTED TO RECEIVE A LIGHT PIXEL CARRYING THE CONTROL INSTRUCTIONS
Control instructions are transmitted to receivers by modulating light sources to generate light beams that are modulated with digital data streams for inducing control instructions in the light beams. Each light beam is applied to a pixel shaper element of a pixel shaper assembly to produce a light pixel, each light pixel carrying the control instructions of the light beam, each light pixel having a perimeter defined by the pixel shaper element. The pixel shaper assembly combines the light pixels into an image without significant overlap or voids between the light pixels emitted by the pixel shaper assembly. The light pixels are directed toward a projector lens for transmission toward the receivers. In a receiver, an optical receiver detects a light pixel. A controller decodes the control instructions received in the detected light pixel and uses the control instructions to control a function of the receiver.
Lamp
A lamp is provided, it includes a lamp body, a light-transmitting part, a light source and a power supply component. The lamp body includes a lamp base, the light source is mounted between the lamp base and the light-transmitting plate or mounted in a first cavity between the light-transmitting part and the lamp base, and the light source includes a filament which includes a power supply end electrically connected with the power supply component. The filament includes a plurality of LED chips connected in series, in parallel or in a mixed series-parallel manner. The filament or part of the filament is not in direct contact with the lamp base. Shapes of the light source of the lamp disclosed by the application varies, with better lighting effect and more design freedom at the same time.
Combined surface mount standoff and LED for space constrained applications
A combination standoff and LED includes a surface mount solder standoff which can be either threaded or unthreaded, and a surface mount LED disposed and fixed in the center of the base of the standoff. The combination standoff and LED is adapted to receive a lightpipe via the either threaded or unthreaded portion of the surface mount solder standoff. This combination standoff and LED results in a single piece of hardware which simplifies the physical PCBA layout design and removes any Computer Aided Design (CAD) placement errors that would normally be present if two separate hardware components were placed together manually.
Aroma candle light
This invention is a novel aroma candle light including a light body, a water spray formation channel, an ultrasonic device and a water tank; a water spray outlet is formed on a top part of the water spray formation channel; an LED light panel is fixedly mounted at the water spray outlet; the ultrasonic device includes an ultrasonic plate, an ultrasonic plate fixing member and a silicone rubber casing; the ultrasonic plate is disposed inside the silicone rubber casing; the ultrasonic plate fixing member has a top end which is provided with a recess; the silicone rubber casing is mounted inside the recess; the silicone rubber casing has a top part which is provided with a plurality of first guiding grooves; a plurality of second guiding grooves are formed inside the recess; the ultrasonic plate fixing member is disposed at an opening at a top part of the water tank.
Downlight apparatus
A downlight apparatus includes a fixing bar, a driver box, a light container and a light source. The fixing bar has two elastic units and a central part. The two elastic units are located at two opposite sides of the central part. The two elastic units are deformed so as to pass through a central hole of a fixing plate and then are released to attach to the fixing plate. The fixing plate is fixed to a platform. The driver box includes a driver for converting an external power to a driving current. The light container has a top cover and a lateral wall. The fixing bar is fixed on the top cover protruding toward the central hole of the fixing plate. A bottom side of the driver box is placed on the central part.
Waterproof light bulb
The invention involves the technical field of light bulbs, disclosing a waterproof light bulb comprising a lamp head and a bulb connected, a soft glue lamp base and a resilient waterproof stein structure, which connects to the lamp head and extends into the bulb. The stein structure comprises a first metal lead, a LED strip and a second metal lead in sequential electrical connection. The first and second metal lead are integrated with a soft glue light base, and are electrically connected with the lamp head. The soft glue light base is sealed tightly fitted with inside of the bulb mouth; the invention's benefits include: 1. The bulb features a soft glue lamp base with waterproof sealing and enhanced waterproof properties; 2. The improved stein structure sets detents on the first and second metal lead that are encapsulated with the LED strip, with simplified process and lower production costs.
Adapting type of optical element in a shell-like accessory
An adapting type of optical element in a shell-like accessory is disclosed. For a shell-like accessory formed by gluing fiber threads, an illuminating area is planned on the surface of shell-like accessory to develop lumen by combining laser elements to the illuminating area. The combination is implemented by adapting a transfer unit with a pitched fin to form a transient pinching. The transfer unit is implanted in advance in an implant area of the illuminating area. During implantation and combination, by the pinching and supporting of the pitched fins of the transfer units, angles of center lines of the transfer units can be adjusted, so that accurate projected angles of light beams from the post-adapted laser elements can be achieved.