Abstract:
A method and system for calibration of optical systems is disclosed. The system consists of a reference source (12), a spatial light modulator (26) for transmitting the reference source signal with uniformity into the input of an optical system (36). The output of the optical system is then compared to the input signal and a correction is derived. The correction is stored and used real-time to adjust the output of the system to more accurately reflect the actual input signal.
Abstract:
It is possible to describe how to control the amplitude and phase modulation of light independently and simultaneously do so by dividing a picture element into smaller modulating elements, providing independent addressing for each element, setting the necessary angle for each element and then resolving them into the picture element. The invention also shows one embodiment of the invention.
Abstract:
It is possible to describe how to control the amplitude and phase modulation of light independently and simultaneously do so by dividing a picture element into smaller modulating elements, providing independent addressing for each element, setting the necessary angle for each element and then resolving them into the picture element. The invention also shows one embodiment of the invention.
Abstract:
An optical system for directing light to a spatial light modulator 16 (e.g., a digital micro-mirror device) is disclosed herein. This system can be used with displays, printers or cameras. The system includes a first light generating apparatus 30a for generating a first beam of light and a second light generating apparatus 30b for generating a second beam of light. A first lens 36a directs the first beam of light toward the spatial light modulator 16 at a first angle. Also, a second lens 36b directs the second beam toward the spatial light modulator 16 at a second angle. The system also includes means 34 for redirecting either the first or the second beam of light away from said spatial light modulator 16.
Abstract:
An optical system for directing light to a spatial light modulator 16 (e.g., a digital micro-mirror device) is disclosed herein. This system can be used with displays, printers or cameras. The system includes a first light generating apparatus 30a for generating a first beam of light and a second light generating apparatus 30b for generating a second beam of light. A first lens 36a directs the first beam of light toward the spatial light modulator 16 at a first angle. Also, a second lens 36b directs the second beam toward the spatial light modulator 16 at a second angle. The system also includes means 34 for redirecting either the first or the second beam of light away from said spatial light modulator 16.
Abstract:
A method for multiple phase light modulation, said method comprising providing a pixel (20) having at least two modulating elements (22),(24). The method further comprising addressing said at least two modulating elements (22), (24) whereby light incident on said addressed element undergoes discrete phase changes between addressable states. The method further comprises resolving light from said at least two modulating elements (22), (24), into a response having at least three unique phases. Other devices, systems and methods are also disclosed.