Patent classifications
F21S4/00
LED strip and manufacturing method thereof and LED components used therein
An LED strip includes a plurality of LED components and a wire set, the LED component comprising: an insulated main body, conductive terminals fixed on the insulated main body and connected to the wire set, and lighting an LED chip and a control unit configured on the insulated main body. The insulated main body has recessed notches. The wire set at least includes a first wire running through the notch, and the first wire is formed with a cut portion. When producing the LED strip in series connection, the LED components and the corresponding continuous wire can be soldered together directly by the means of SMT technique. Then, using a cutter and the preset notch, the wire can be cut at the position of the notch. In this way, the operation of SMT soldering for the LED strip can be completed quickly.
Electronic apparatus for displaying image using visual afterimage of light source
An electronic apparatus for displaying an image by using visual afterimage of a light source, the apparatus comprises a communication unit performing data communication to a light source; a control unit controlling light emission of the light source; a body storing the communication unit and the control unit; and a fixing unit for attaching the body on a body of a user, wherein the light source provides an image based on changes in spatial position of the light source.
Electronic apparatus for displaying image using visual afterimage of light source
An electronic apparatus for displaying an image by using visual afterimage of a light source, the apparatus comprises a communication unit performing data communication to a light source; a control unit controlling light emission of the light source; a body storing the communication unit and the control unit; and a fixing unit for attaching the body on a body of a user, wherein the light source provides an image based on changes in spatial position of the light source.
Point-controlled LED light string and manufacturing method thereof
A point-controlled LED light string and a manufacturing method thereof, the light string comprises a DC power supply controller integrated with a plurality of address registers; and LED lights each with a unique address code. The LED lights form a light string with an address code random method, according to a sequence in which the LED lights are connected and arranged in the light string, associating the LED lights one to one with the corresponding address registers, and each of the address registers stores a corresponding address code of a corresponding LED light. The method comprises the steps of selecting LED lights each with a unique address code by an address code random method randomly to form a light string, storing the address codes of the LED lights in address registers arranged in an orderly manner, and associating the address registers one to one with corresponding LED lights.
FULL SPECTRUM LED GROW LIGHT SYSTEM
The LED grow light system includes at least one of a first LED that includes a 4,000 k LED having a first light output, at least one of a second LED having a second light output in about an orange spectra, at least one of a third LED having a third light output in about a green/yellow spectra, and at least one of a fourth LED having a fourth light output in about a red spectra. Each of the first light output, the second light output, the third light output, and the fourth light output combine into an aggregate light output that mimics a full spectrum of sunlight at a relatively efficient input power of about 600-650 watts.
FULL SPECTRUM LED GROW LIGHT SYSTEM
The LED grow light system includes at least one of a first LED that includes a 4,000 k LED having a first light output, at least one of a second LED having a second light output in about an orange spectra, at least one of a third LED having a third light output in about a green/yellow spectra, and at least one of a fourth LED having a fourth light output in about a red spectra. Each of the first light output, the second light output, the third light output, and the fourth light output combine into an aggregate light output that mimics a full spectrum of sunlight at a relatively efficient input power of about 600-650 watts.
LIGHTED DRAWER, LIGHTING DEVICE AND CURRENT COLLECTOR
The invention relates to a drawer with side walls and a base, having an improved drawer lighting device and a current collector therefor, and provides for simplified installation and maintenance. The drawer comprises a lighting device with an LED strip of a given length mounted on a side wall of the drawer, and a current collector electrically connected to the LED strip and having spring-loaded contacts for cooperation with electrically conductive elements which are connected to a power supply. The current collector has a housing in which the aforementioned spring-loaded contacts are movably disposed. When extended beyond the housing, the spring-loaded contacts enable electrical contact with the aforementioned electrically conductive elements, which are mounted on the structure of the furniture component relative to which the drawer is able to move. The invention increases the functional capabilities of the structure by means of the activation of lighting.
Modular lighting system
A modular lighting system comprises at least one module comprising a rail elongated longitudinally along an axis where one or more lighting elements are placed and mounted reversibly onto the rail by magnetic coupling, drawing power from a printed circuit board on the rail by means of spring contacts.
Point-Controlled Led Light String and Manufacturing Method Thereof
A point-controlled LED light string and a manufacturing method thereof, the light string comprises a DC power supply controller integrated with a plurality of address registers; and LED lights each with a unique address code. The LED lights form a light string with an address code random method, according to a sequence in which the LED lights are connected and arranged in the light string, associating the LED lights one to one with the corresponding address registers, and each of the address registers stores a corresponding address code of a corresponding LED light. The method comprises the steps of selecting LED lights each with a unique address code by an address code random method randomly to form a light string, storing the address codes of the LED lights in address registers arranged in an orderly manner, and associating the address registers one to one with corresponding LED lights.
Full spectrum LED grow light system
The LED grow light system includes at least one of a first LED that includes a 4,000K LED having a first light output, at least one of a second LED having a second light output in about an orange spectra, at least one of a third LED having a third light output in about a green/yellow spectra, and at least one of a fourth LED having a fourth light output in about a red spectra. Each of the first light output, the second light output, the third light output, and the fourth light output combine into an aggregate light output that mimics a full spectrum of sunlight at a relatively efficient input power of about 600-650 watts.