Abstract:
A cloak-shaped net mesh lighting string is in a state of being spread out on a plane and includes multiple first strings and multiple second strings. Each first string has a top end and a bottom end opposite to the top end, and the bottom ends of the first string are spaced apart from each other. The multiple second strings are spaced apart from each other and are tied to each first string to constitute the form of a net mesh. Each second string has multiple bulbs connected thereto and a resistor kit connected thereto and mounted next to one of the bulbs. At least one of the multiple first strings is an electrical wire for transmitting power to each second string. The remaining first strings are tied to the multiple second strings to keep each adjacent two of the multiple second strings to be spaced apart.
Abstract:
A holder is provided to hold an LED array and the holder includes an LED aperture. The holder includes terminals that are stitched into the holder. The terminals can be heat staked to the holder. The holder can include a mating area.
Abstract:
An illumination device may include a body having twelve sides, the body being formed by a first body portion including six sides of the twelve sides, and a second body portion including six sides of the twelve sides. The first body portion and the second body portion may be coupled to one another at a first interface and at a second interface disposed radially inward of the first interface, wherein the first interface may be positioned in a plurality of planes, and wherein the second interface may be positioned in a single plane. At least a portion of each of the twelve sides may include a transparent window. The illumination device may include a resilient cover disposed around the body.
Abstract:
A system and method that images biological samples and uses chromophores to analyze the imaged samples. The chromophore analysis can be done by itself or in conjunction with fluorophore analysis in High Content Imaging systems. To perform chromophore analysis the biological samples can be labeled with different chromophores and imaged using transmitted light that is at least partially absorbed by the chromophores. To also perform fluorophore analysis the samples can also be labeled with fluorophores that are excited by excitation light. The chromophore analysis and fluorophore analysis can be performed separately or concurrently using a High Content Imaging system. The system provides the expanded capability by illuminating the chromophore-labeled samples with transmitted light of different wavelengths and automatically detecting the images which represent the differential absorption of the colored lights by the sample.
Abstract:
A flexible organic light emitting diode (“OLED”) and method of assembly to facilitate the use in a lighting luminaire and appear like a traditional cone shaped lamp shade. Flexible OLED panels, manufactured with a certain pattern or design resembling an unrolled and flattened conic frustum, allow the flexible panel to be curled, during assembly, to create a cone shape by bringing two ends of the panel together and resemble a traditional cone shaped light shade. Auxiliary frames or tensioning ties can be placed on the cone shaped OLED panel to retain the shape of the cone or, in instances where a portion of the OLED panel extends beyond the cone form in assembly, a lap joint can be made with two ends of the panel and secured with an adhesive. Frames may aid in the suspension of the OLED panel, as desired, to serve as a luminaire or lighting fixture.
Abstract:
A system and method that images biological samples and uses chromophores to analyze the imaged samples. The chromophore analysis can be done by itself or in conjunction with fluorophore analysis in High Content Imaging systems. To perform chromophore analysis the biological samples can be labeled with different chromophores and imaged using transmitted light that is at least partially absorbed by the chromophores. To also perform fluorophore analysis the samples can also be labeled with fluorophores that are excited by excitation light. The chromophore analysis and fluorophore analysis can be performed separately or concurrently using a High Content Imaging system. The system provides the expanded capability by illuminating the chromophore-labeled samples with transmitted light of different wavelengths and automatically detecting the images which represent the differential absorption of the colored lights by the sample.
Abstract:
A semiconductor light-emitting device includes a support body multiple, multiple light-emitting elements arranged in a matrix on the support body, a transparent resin layer provided on the light-emitting elements, multiple transparent plates provided on the transparent resin layer, each of the transparent plates being provided over one of the multiple light-emitting elements, and multiple optical shield layers each provided at one of a first side face of a first one of the transparent plates and a second the face of a second one of the transparent plates opposing the first the face of the first transparent plate.
Abstract:
There is provided a fixation device (100) and an assembly structure 10 comprising light emitting diode module, LED module, (200) and at least one fixation device (100) for in a mounted position fixating the LED module to a mounting surface (300). The fixation device comprises a main body (103), a first fixation means (102) for securing LED module to the mounting surface, a second fixation means (106, 506) for securing the fixation device to the LED module and at least one resilient portion (107, 108) arranged to extend from the main body and to, in a mounted position, at least partly bear against a predetermined bearing surface (201, 202) of the LED module such that a controlled force which is independent of the first fixation means is applied the bearing surface of the LED module by means of the resilient portion.
Abstract:
A light module for a motor vehicle headlight with at least two semi-conductor light sources, a light decoupling optical system having at least one partial optical element and a diaphragm. The light module includes a lens combination arranged between the light decoupling optical system and the diaphragm, which is illuminated by at least one of the two semi-conductor light sources, wherein the lens combination has different refractivities in two spatial directions perpendicular to one another and to the main propagation direction of the emitted light. The light decoupling optical system has different refractivities in the two spatial directions, wherein the refractivity of the light decoupling optical system is greater in the spatial direction in which the lens combination has a lesser refractivity.
Abstract:
A tunable light emitting device includes a plurality of solid-state light sources, a dimmer switch configured to generate a range of output powers for the light emitting device, a control circuit configured to translate an output power generated by the dimmer switch into an on/off arrangement of the plurality of light sources, and a wavelength conversion component comprising two or more regions with different photo-luminescent materials located remotely to the plurality of solid-state light sources and operable to convert at least a portion of the light generated by the plurality of solid-state light sources to light of a different wavelength, wherein the emission product of the device comprises combined light generated by the plurality of light sources and the two or more regions of the wavelength conversion component.