Abstract:
A lighting device, such as for example a LED flexible module, includes an elongated profiled body having a mouth portion, a first and a second lateral sides arranged sidewise of the mouth portion and a web side opposed the mouth portion. The profiled body includes a light-permeable portion, extending between the mouth portion and the first lateral side, and a light-impermeable portion extending between the second lateral side and the web side. A light radiation source assembly including a support member with one or more electrically powered light radiation sources is arranged at the mouth portion with the light radiation source(s) facing the light-permeable portion, whereby light radiation is directed towards the first lateral side for emission from the lighting device.
Abstract:
A lighting device, such as for example a LED flexible module, includes an elongated profiled body having a mouth portion, a first and a second lateral sides arranged sidewise of the mouth portion and a web side opposed the mouth portion. The profiled body includes a light-permeable portion, extending between the mouth portion and the first lateral side, and a light-impermeable portion extending between the second lateral side and the web side.A light radiation source assembly including a support member with one or more electrically powered light radiation sources is arranged at the mouth portion with the light radiation source(s) facing the light-permeable portion, whereby light radiation is directed towards the first lateral side for emission from the lighting device.
Abstract:
A modular lighting device may include an elongated support member with electrically powered light radiation sources. The support member includes at least one electrically conductive layer with a covering layer applied thereon, wherein said covering layer exhibits discontinuities forming a marker array for cutting to length modular lighting device.
Abstract:
A lighting module includes a power line for receiving a power supply current and a ground line, a segmentation point for cutting the lighting module into two parts, a first set of light sources upstream of the segmentation point, a second set of light sources downstream of the segmentation point, wherein the first and second sets of light sources are connected in series, and a resistive element connected to the intermediate point between the first and the second set of light sources, and the ground line, which is configured in such a way that: when the lighting module has not been cut, the resistive element has a resistance which is greater than the resistance of the portion of the lighting module downstream of the segmentation point, and when the lighting module has been cut, the resistive element has a resistance which is less than the resistance thereof.
Abstract:
A method of placing on a mounting substrate light radiation sources arranged in successive sequences wherein each sequence includes light radiation sources from different bins having respective light emission characteristics and wherein the sequential order of recurrence of the light radiation sources of the various bins is repeated over the sequences, may include placing the light radiation sources on the mounting substrate in at least two juxtaposed rows, wherein each row includes light radiation sources arranged in a zigzag pattern to produce an chessboard-like array of light radiation sources.