摘要:
A projection assembly is provided herein. According to one exemplary embodiment, the projection assembly includes a modulator assembly, the modulator including at least one modulator panel, a projection lens assembly including a first projection lens sub-assembly in optical communication with the modulator assembly, the first projection lens sub-assembly being configured to form a virtual modulator, the virtual modulator corresponding to the output of the modulator assembly focused at a single plane.
摘要:
A method of testing a coating on a reflector having a first focal point includes placing a mirror at the first focal point of the reflector and angled to orient with an area on the coating. Electromagnetic (EM) radiation is directed to the mirror which then directs the EM radiation on the area. The EM radiation which is reflected from the coating is collected onto a sensor disposed at a second focal point. The intensity of the EM radiation collected on the sensor is detected.
摘要:
An optical recording medium, comprises a substrate, and an imaging medium disposed on the substrate, the imaging medium comprising: a marking layer including a thermochromic compound and an interference layer tuned to absorb light having a predetermined wavelength.
摘要:
A projector has at least first and second micro-displays and at least first and second cross total internal reflection prisms respectively optically coupled to the at least first and second micro-displays. Each of the at least first and second cross total internal reflection prisms has first and second total internal reflection interfaces. A combiner is optically coupled to the at least first and second cross total internal reflection prisms.
摘要:
The present application relates to deposit control additive composition comprising of Mannich base and Polyisobutylene amine (PIBA) having average molecular weight of 800 as a synergistic component of deposit control additive formulation. The application also relates to deposit control additive composition comprising further components such as fluidizer oil, dehazer, corrosion inhibitor and solvent to obtain deposit control additive formulation and mixed with gasoline fuel to obtain fuel composition. The application further relates to a process for the preparation of fuel composition by blending at an ambient temperature gasoline fuel and deposit control additive composition obtained by blending in a suitable container Mannich base, Polyisobutylene amine (PIBA), fluidizer oil, dehazer, corrosion inhibitor and solvent at a temperature ranging between 50° C. to 60° C. for a time period of up to 2 hours.
摘要:
An optical recording medium, comprises a substrate, and an imaging medium disposed on the substrate, the imaging medium comprising: a marking layer including a thermochromic compound and an interference layer tuned to absorb light having a predetermined wavelength.
摘要:
A light integrating system includes at least one total internal reflection (TIR) prism and a light integrating device disposed to collect and homogenize light exiting from the TIR prism.
摘要:
One embodiment of a projection device includes a modulator that reflects both imaging light and off-state light, and a projection lens including an optical plane, wherein the imaging light and the off-state light are both projected from the modulator to the optical plane.
摘要:
A method and a system for integrating multimodal interpretations (MMIs) in user inputs to a data processing system (100) are provided. The method includes generating (603) a set of MMIs, based on the user inputs collected during a turn. The set of MMIs includes at least semantic relationship function, the semantic relationship function denoting a semantic relationship between values determined from the user inputs entered through one or more of the at least one input modality, the semantic relationship function comprising at least one semantic operator. The method further includes generating (604) sets of joint MMIs. Each set of joint MMIs includes MMIs of semantically compatible types. The method further includes resolving (606) the reference values of the references of each set of joint MMIs to generate corresponding sets of reference resolved MMIs. The method further includes generating (608) an integrated MMI for each set of reference-resolved MMIs. The generation of the integrated MMI is carried out by using semantic operator based fusion.