Abstract:
An image-capturing device includes: a photographic optical system; a photoelectric conversion element array made up with a plurality of photoelectric conversion elements arrayed therein; a micro-lens array made up with a plurality of micro-lenses arrayed therein; a data creation unit that creates pixel data at a plurality of pixels on a specific image forming plane by applying filter matrix data to output signals provided from the plurality of photoelectric conversion elements; and an image synthesis unit that synthetically generates an image on the specific image forming plane at a given position assumed along an optical axis of the photographic optical system, based upon the pixel data. The filter matrix data assume a two-dimensional data array pattern conforming to a specific intensity distribution with a distribution center thereof set at an element corresponding to a central position of a projection image of each of the plurality of pixels.
Abstract:
An image-capturing device includes: a photographic optical system; a photoelectric conversion element array made up with a plurality of photoelectric conversion elements, arrayed therein; a micro-lens array made up with a plurality of micro-lenses arrayed therein; a data creation unit that creates pixel data at a plurality of pixels on a specific image forming plane by applying filter matrix data to output signals provided from the plurality of photoelectric conversion elements; and an image synthesis unit that synthetically generates an image on the specific image forming plane at a given position assumed along an optical axis of the photographic optical system, based upon the pixel data. The filter matrix data assume a two-dimensional data array pattern conforming to a specific intensity distribution with a distribution center thereof set at an element corresponding to a central position of a projection image of each of the plurality of pixels.
Abstract:
What is disclosed is a display apparatus that introduce an electronic image that is generated electronically into a viewing optical system through which an object is viewed to make the electronic image viewable in such a way as to be superimposed on an image of the object. The electric image forming apparatus has a light source, a micro lens array and scanning means for scanning light from the light source to form an image on the micro lens array. There is disclosed a scanning display apparatus that introduces an image formed on the micro lens and superimpose it on an image of an object and a camera in which an object image formed optically and an electronic image are made viewable in a superimposed manner using the scanning display apparatus.
Abstract:
A manufacturing method for manufacturing a multilayer film optical member, includes an injection step in which an UV-curable liquid crystal is injected into a space between a pair of transparent substrates, with a transparent conductive film disposed on each of the transparent substrates; a first radiation step in which parallel coherent ultraviolet light beams are radiated onto the UV-curable liquid crystal through the pair of transparent substrates from two sides of the UV-curable liquid crystal; and a second radiation step in which ultraviolet light achieving uniform intensity on a surface of the transparent substrate is radiated onto the UV-curable liquid crystal through the transparent substrate while applying an electrical field between the pair of transparent conductive films.
Abstract:
An observation device capable of observing a first image formed by an objective optical system, includes: a display element into which an illumination light emitted from an illumination source is incident and that generates a second image with the illumination light to superimpose the second image over the first image formed by the objective optical system; a detector that receives the second image to detect information of the second image; and a filter that filters out light of the illumination light advancing to the detector.
Abstract:
An automatic focusing device includes a focus detection device for detecting focus data from a plurality of focus detection areas established in the imaging region. A selection device selects a specified area from the plurality of focus detection areas. A focus control device performs focus control of the photographic lens corresponding to the focus data of that specified area. The selection device may include a statistical prediction device for performing a statistical calculation on the past focus data in the specified area and for determining a predicted value of the focus data by extending a trend of the focus data. A statistical determination device determines whether the most recent focus data of the specified area is outside the acceptable range of the predicted value. A statistical tracking device searches for focus data within the acceptable range of the said prediction value and changes the specified area to the searched-out area.
Abstract:
A compact, low-cost apparatus for measuring the refractive index of an eye utilizes a chopper which forms and scans two orthogonal fringes. In a light-receiving unit, at least three light-receiving elements are arranged not to be aligned in a line. With these light-receiving elements, time differences when the fringes pass light-receiving elements in each of two pairs are measured. A control & arithmetic unit calculates the spherical power, the cylindrical power, and the cylindrical axis degree by performing predetermined calculations using the measurement data. The apparatus requires no image rotator, and hence, a compact, low-cost apparatus can be realized. Also, the measurement time can be shortened.
Abstract:
An image display device includes: an input unit that inputs image data constituted with pixel data, each set of the pixel data being generated based upon a plurality of image signals output from a plurality of image-capturing pixels arrayed in correspondence to a plurality of photographic micro-lenses distinct from one another; a generation unit that generates display image data containing three-dimensional information based upon the image data; a display unit constituted with a plurality of display pixels disposed in a two-dimensional pattern, which emits light fluxes from the plurality of display pixels in correspondence to the display image data; and a micro-lens array that includes a plurality of micro-lenses, via which a three-dimensional image is formed by combining the light fluxes emitted from the plurality of display pixels, disposed in a two-dimensional array pattern.
Abstract:
A three-dimensional image display device includes: an input unit that inputs image data; a first image conversion unit that converts the image data to first image display data which include 2-D information; a display unit having a plurality of display pixels disposed in a two-dimensional pattern, which emits light fluxes from the plurality of display pixels in correspondence to the first image display data; and a micro-lens array having a plurality of micro-lenses disposed in a two-dimensional pattern, via which a three-dimensional image or a two-dimensional image is formed by combining the light fluxes emitted from the plurality of display pixels.
Abstract:
Disclosed in a focus detecting apparatus comprising: a micro lens array arranged with a plurality of micro lenses, a photo detector that has a plurality of detecting elements provided in correspondence with the micro lenses and receives light flux from an optical system via the micro lenses; and a focus detector that selects a pair of groups of detecting elements from the plurality of detecting elements based on an F-value of the optical system and a brightness of the light flux from the optical system and detects a focus adjustment status of the optical system based on a pair of light receiving signals obtained in the groups of detecting elements.