Patent classifications
B29D11/00326
OPTICAL COMPONENT AND METHOD FOR MANUFACTURING SAME
Provided is an optical component whereby the absence of eccentricity can be instantly confirmed visually even in a case that the optical component has Fresnel lens or other very fine structure. An optical component of the present invention includes an optical part and a peripheral part thereof. The optical component includes recognition marks in positions substantially plane-symmetrical to each other on a front surface side and a rear surface side of the peripheral part, the recognition marks being expressed as a recess or a projection and configured to allow eccentricity to be recognized. Two of the recognition marks are preferably similar to each other in shape, one recognition mark being preferably from 10% to 90% the size of the other recognition mark.
Diffuse reflecting optical construction
A diffuse reflecting optical construction that does not rely on special molds or tooling of the prior art in order to create a critical diffuse reflecting surface feature of the optical construction. An atomized spray method is employed to apply a hardenable transparent liquid polymer layer to the surface of a prefabricated base optical substrate. The polymer layer forms beads on the surface of the prefabricated base optical substrate, resulting in the formation of a surface having a random and continuous series of peaks and valleys thereon that form the diffuse reflecting surface feature. The prefabricated base optical substrate having the diffuse reflecting polymer layer thereon combined with additional optical layers forms a transparent diffuse reflecting optical construction that can be used in the manufacture of optical lenses, windows, and transparent films that reflect light in a diffuse manner while transmitting light in a substantially undistorted manner.
CONTROL CIRCUITRY FOR 2D OPTICAL METASURFACES
A 2D hologram system with a matrix addressing scheme is provided. The system may include a 2D array of sub-wavelength hologram elements integrated with a refractive index tunable core material on a wafer substrate. The system may also include a matrix addressing scheme coupled to the 2D array of sub-wavelength hologram elements and configured to independently control each of the sub-wavelength hologram elements by applying a voltage.
METHOD FOR MANUFACTURING SPECTACLE LENS
Provided is a method for manufacturing a spectacle lens, wherein: the spectacle lens includes a lens substrate having microprotrusions on at least one surface, and a coating film formed on the surface of the lens substrate that has the microprotrusions; and the method includes forming the coating film by applying an application liquid, through spin-coating, to the surface of the lens substrate that has the microprotrusions.
Backlight unit and display device including the same
Disclosed are a backlight unit and a display device including the same. The backlight unit and display device can minimize a change in an optical layer when exposed to hostile environments, such as high and low temperature environments. The backlight unit and the display device have a rigid structure, due to the minimized change in the optical layer even when exposed to hostile environments, such as high and low temperature environments.
POLYMETHACRYLATE COMPOSITION AND OPTICAL DEVICE MADE THEREFROM, AND DISPLAY APPARATUS
A polymethacrylate composition, an optical device made therefrom, and a display apparatus are provided. The polymethacrylate composition includes 50 to 85 parts by weight of methacrylate series polymer, 15 to 50 parts by weight of styrene series-maleic anhydride series copolymer, and an aromatic compound having a phosphite group. The methacrylate series polymer includes methacrylate series monomer unit and acrylate series monomer unit and has a weight average molecular weight (Mw) in a range between 20,000 and 200,000. The styrene series-maleic anhydride series copolymer includes 65 wt %-85 wt % of styrene series monomer unit, 15 wt %-35 wt % of maleic anhydride series monomer unit, and 0-20 wt % of second copolymerizable monomer unit. The content of the aromatic compound having a phosphite group in the polymethacrylate composition is 200 ppm-900 ppm.
SPECTACLE LENS PRODUCING METHOD, SPECTACLE LENS PRODUCING SYSTEM, AND SPECTACLE LENS
The present invention is a method for producing a spectacle lens from a lens material, and includes: a marking step (step S10) of marking an identification mark for identifying the spectacle lens, and a processing information mark which is used to process a lens blank and includes a tray identification 2D code, a tray identification code, a shape line and a position mark by forming a hole or a groove in a convex surface of the lens material by laser; and a concave surface machining processing step (step S13) of reading the processing information mark, and machining a concave surface of the lens blank based on the read processing information mark.
METHOD FOR EVALUATING PRODUCTION PRECISION OF SPECTACLE LENS
Provided is a method for evaluating production precision of a spectacle lens having micro convex segments protruding from a convex surface on an object side of the spectacle lens, including measuring a shape of the convex surface of the spectacle lens; setting an actual device virtual model including a spectacle lens model based on the measured shape and an eyeball model; performing ray tracing calculation on the actual device virtual model and specifying an actual device convergence position where light rays converge on an front side of a retina of the eyeball model; and evaluating production precision of the spectacle lens on the basis of the actual device convergence position.
OPTICAL ELEMENT WITH ANTIREFLECTION STRUCTURE, MOLD FOR MANUFACTURING, METHOD OF MANUFACTURING OPTICAL ELEMENT WITH ANTIREFLECTION STRUCTURE, AND IMAGING APPARATUS
There is provided an optical element with antireflection structure on at least a part of an optical effective surface. The optical element includes an outer peripheral wall surface that is substantially parallel to an optical axis at the entire outer periphery of at least one side of the optical effective surface toward the other side, and an annular plate portion that extends from the outer peripheral wall surface to the outside in a diameter direction perpendicular to the optical axis. The annular plate portion surrounds the entire outer periphery of the optical effective surface, and an outer peripheral front end includes a free end surface formed by causing an optical element glass material to flow.
TORIC LENS, OPTICAL ELEMENT, AND IMAGE FORMING APPARATUS
In a toric lens comprising a toric surface having a fine uneven structure, the fine uneven structure includes a plurality of holes, the plurality of holes have a hole depth H and a surface opening diameter t which satisfy an expression of 0.3H/t0.6, and (a) the plurality of holes have a hole structure having a cylindrical shape on a bottom surface side and a circular truncated cone shape having an opening diameter increasing toward a surface side, or (b) an angle formed between an opening portion and the surface of the plurality of holes satisfies 7885.