Abstract:
An apparatus (999) and method for a light source are disclosed. The apparatus (999) comprises a light guide (904) including light extracting features (902) and at least one light source (910, 911) placed near an end of the light guide (904). Light from the light source (910, 911 ) gets deflected by the light extracting features (902) and emanates in a predetermined pattern along a surface of the light guide (904). The light guide (904) has different thicknesses in different parts.
Abstract:
An apparatus for providing a photoluminescent light source is disclosed. In one embodiment, the apparatus comprises a light source that emanates light of a particular spectrum, photoluminescent material which converts light from the light source to light of another spectrum, and a selective mirror which reflects light generated by the light source and transmits light generated by the photoluminescent material. The photoluminescent material may be arranged so as to provide a plurality of light sources that emanate light of various colors.
Abstract:
A method of manufacturing a multicolored illuminator is disclosed. In an embodiment, a first transparent sheet (499) comprising light diffusing particles is provided. Second and third transparent cladding sheets (404) are provided on either sides of the first transparent sheet. A mirror (406) is provided adjacent to the second sheet. The first sheet, second sheet, third sheet and mirror are merged to give a multicolored illuminator.
Abstract:
A system for providing a light source is disclosed. In one embodiment, the apparatus comprises a light guide made of several transparent layers having different refractive indexes.
Abstract:
An apparatus and method for a light source are disclosed. The apparatus comprises a light guide including light extracting features and at least one light source placed near an end of the light guide. Light from the light source gets deflected by the light extracting features and emanates in a predetermined pattern along a surface of the light guide. The light guide has different thicknesses in different parts.
Abstract:
A multicolored linear light source is disclosed. In an embodiment the multicolored linear light source (100) comprises a linear light source (100) emanating light of a first spectrum, and regions of photoluminescent material (102,104,106). The light of the first spectrum interacts with regions of photoluminescent material (102,104,106) to give light of a different spectrum. The composition of different regions of photoluminescent material is different, providing light of different spectra in different regions.
Abstract:
A method of manufacturing a multicolored illuminator is disclosed. In an embodiment, a first transparent sheet comprising light diffusing particles is provided. Second and third transparent cladding sheets are provided on either sides of the first transparent sheet. A mirror is provided adjacent to the second sheet. The first sheet, second sheet, third sheet and mirror are merged to give a multicolored illuminator.
Abstract:
In general, the present invention provides a system and method for creating, managing and utilizing virtual worlds for enhanced management of an Information Technology (IT) environment. Two dimensional (2D) and three dimensional (3D) virtual world renditions are automatically created to replicate the associated real-life IT environment. Such virtual environments can then be used to familiarize staff with remote locations and to securely provide virtual data center tours to others. The virtual environments are managed through an information monitor and management module that generates a work order sent to the physical location for reconfiguration of the real-life environment.
Abstract:
A multicolored linear light source is disclosed. In an embodiment, the multicolored linear light source comprises a linear light source emanating light of a first spectrum, and regions of photoluminescent material. The light of the first spectrum interacts with regions of photoluminescent material to give light of a different spectrum. The composition of different regions of photoluminescent material is different, providing light of different spectra in different regions.
Abstract:
An energy efficient polarized light source system is disclosed. In one embodiment, the system comprises a reflector and a reflecting polarizer. A transparent light source and a wave retarder are placed in between the reflector and reflecting polarizer.