MICRO STRUCTURED OPTICAL SURFACES

Brand Owner (click to sort) Address Description
LIGHT MANAGEMENT THROUGH CHEMISTRY Light Polymers, Inc. 347 Littlefield Ave South San Francisco CA 94080 Micro-structured optical surfaces, namely, optical lenses having micro-structured surfaces for use in the field of optics for forming lenses, prisms, beam splitters, lenticulars, and reflectors; Fresnel optical lenses for object magnification, overhead projection, front and rear projection, solar energy collection, signal lights, back lighting, and overhead lighting; optical lens arrays for object magnification, overhead projection, front and rear projection, solar energy collection, signal lights, backlighting, overhead lighting; micro optical lens arrays for object magnification, overhead projection, front and rear projection, solar energy collection, signal lights, back lighting, and overhead lighting, optical waveguides for light delivery for back lighting and overhead lighting applications; lenticular optical lenses for rear-projection screens, front projection screens, and lighting; light-directing arrays comprising micro optical lenses, prisms and surface relief diffusers; linear prism arrays for use in back lighting, overhead lighting and light redirecting applications; light integrator optical lenses for use in rear projection applications; sub wavelength optical structures, namely, diffraction filters, diffraction gratings, phase retardation surfaces, namely, microstructured surfaces where the light characteristics for one axis are different from the other axis, and antireflection lenses for use in light reflection and polarization applications; diffractive optical structures, namely, diffractive optical lens elements, diffractive optical lenses, phase plates, optical filters, gratings, hologram apparatus, binary optical lenses, binary relief gratings, binary optical lens elements, micro-optic lens elements, diffractive optical microlens, diffractive optical mirrors, and hybrid refractive/diffractive optical lenses for use in surface relief diffuser and holographic applications; optical glare reduction structures, namely, anti-reflection lenses, optical lenses with diffusive draft, optical lenses with blackening, and tinted optical lenses for reducing glare from displays, monitors and glossy surfaces; optical components for use in instruments, namely, optical lenses, optical mirrors, gratings, linear prisms, lenticular prisms, and light-directing optical lens arrays for rear and front projection, for cameras, for motion sensors, and for avionic displays; optical structures for use in communication systems, namely, optical lenses, optical mirrors, gratings, and holograms; overhead projectors; liquid crystal display projectors; rear projection liquid crystal displays; back lighting systems for portable computers, monitors and televisions, consisting of optical lens, optical filters, optical mirrors, optical waveguides, LEDs, optical diffusers, prism films, reflective polarizers and light guide plates; optical plastic films and waveguides for light delivery for instrument panel applications, namely, avionic, marine and vehicle panel applications; solar energy systems comprising Fresnel optical lenses for solar energy collection; warning triangles; components for use in overhead lighting systems, namely, wave guides for light beam shaping and electric light control panels;LIGHT;
MANAGEMENT OF LIGHT Reflexite Corporation 120 Darling Drive Avon CT 06001 micro structured optical surfaces for use in the field of optics for forming lenses, prisms, beamsplitters, lenticulars, and reflectors;LIGHT;
MANAGEMENT OF LIGHT ORAFOL AMERICAS INC. 1100 Oracal Parkway Black Creek GA 31308 Micro-structured optical surfaces, namely, optical lenses having micro-structured surfaces for use in the field of optics for forming lenses, prisms, beam splitters, lenticulars, and reflectors; Fresnel optical lenses for object magnification, overhead projection, front and rear projection, solar energy collection, signal lights, back lighting, and overhead lighting; optical lens arrays for object magnification, overhead projection, front and rear projection, solar energy collection, signal lights, backlighting, overhead lighting; micro optical lens arrays for object magnification, overhead projection, front and rear projection, solar energy collection, signal lights, back lighting, and overhead lighting, optical waveguides for light delivery for back lighting and overhead lighting applications; lenticular optical lenses for rear-projection screens, front projection screens, and lighting; light-directing arrays comprising micro optical lenses, prisms and surface relief diffusers; linear prism arrays for use in back lighting, overhead lighting and light redirecting applications; light integrator optical lenses for use in rear projection applications; sub wavelength optical structures, namely, diffraction filters, diffraction gratings, phase retardation surfaces, namely, microstructured surfaces where the light characteristics for one axis are different from the other axis, and antireflection lenses for use in light reflection and polarization applications; diffractive optical structures, namely, diffractive optical lens elements, diffractive optical lenses, phase plates, optical filters, gratings, hologram apparatus , binary optical lenses, binary relief gratings, binary optical lens elements, micro-optic lens elements, diffractive optical microlens, diffractive optical mirrors, and hybrid refractive/diffractive optical lenses for use in surface relief diffuser and holographic applications; optical glare reduction structures, namely, anti-reflection lenses, optical lenses with diffusive draft, optical lenses with blackening, and tinted optical lenses for reducing glare from displays, monitors and glossy surfaces; optical components for use in instruments, namely, optical lenses, optical mirrors, gratings, linear prisms, lenticular prisms, and light-directing optical lens arrays for rear and front projection, for cameras, for motion sensors, and for avionic displays; optical structures for use in communication systems, namely, optical lenses, optical mirrors, gratings, and holograms; overhead projectors; liquid crystal display projectors; rear projection liquid crystal displays; back lighting systems for portable computers, monitors and televisions, consisting of optical lens, optical filters, optical mirrors, optical waveguides, LEDs, optical diffusers, prism films, reflective polarizers and light guide plates; optical plastic films and waveguides for light delivery for instrument panel applications, namely, avionic, marine and vehicle panel applications; solar energy systems comprising Fresnel optical lenses for solar energy collection; warning triangles; components for use in overhead lighting systems, namely, wave guides for light beam shaping and electric light control panels [ ; free-standing reflectors in the nature of solar energy collectors ];In the statement, Column 3, line 7, 8 and 9, free-standing reflectors in the nature of solar energy collectors should be deleted.;Reflective plastic sheet material in roll form, sheet form and strip form for use in the manufacture of belts, decals, strips, bands, tags, reflectors, warning indicators, signs, displays, clothing for personal safety and decoration, traffic control devices, vehicle conspicuity materials, special purpose films, and novelty items; reflective tape for use in placement on vehicles and vehicle trailers; reflective safety tape; micro-structured optical surfaces, namely light management plastic in the form of sheets and for use in the further manufacture of lenses, prisms, beam splitters, lenticulars, and reflectors; plastic film that is tinted, laminated and/or reflective for use in home windows as components for day lighting systems, namely, plastic window films, plastic window sheets, plastic light redirecting films, and plastic solar control films, for managing solar energy that enters structures through windows; tinted, laminated and/or reflective optical plastic films for use in instrument panel applications, namely, avionic, marine and vehicle panel applications; reflective safety bands for placement on posts, barrels and cones used on roadways for protection against accidents or for location purposes, namely, cone collars and channelizers; moth-eye tinted plastic sheets and films for use in reducing glare from displays, monitors and glossy surfaces; optical polarizing structures, namely, tinted, laminated and/or reflective plastic sheets and plastic films for use in polarized light; tinted, laminated and/or reflective collimating plastic films for back lighting and overhead lighting applications; tinted, laminated and/or anti-reflective moth eye plastic films for back lighting, day lighting, overhead projection, front and rear projection, and anti-glare applications;Stickers and reflective decals for decorative purposes; reflective stickers for placement on vehicles and vehicle trailers; stickers and reflective decals for safety purposes, namely, for use on jackets, coats, overcoats, vests, shirts, sweaters, trousers, pants, overalls, shoes, sneakers; boots, rubbers, backpacks, school bags;Safety reflective cloth patches for clothing;Safety light-reflecting clothing, namely, belts, armbands, leg bands, shoulderbands, waistbands, gloves, sashes, hats, headbands, and wristbands for personal wear;Safety reflective trim and badges for vehicles;Components for use in overhead lighting systems, namely, light diffusing louvers, baffles; light reflectors, luminaire refractors, light diffusers and light diffusing louver panels for residential and commercial lighting fixtures; free-standing reflectors for use as light reflectors; reflectors for placement on vehicles and vehicle trailers; light diffusers;Optical structures for medical analysis instruments, namely, optical lenses, optical mirrors, optical gratings, hologram apparatus, and optical lens relays;LIGHT;
 

Where the owner name is not linked, that owner no longer owns the brand

   
Technical Examples
  1. An optoelectric converting substrate includes a substrate, at least one honeycomb-shaped micro-structured optical waveguide embedded in the substrate and having two ends exposed through the substrate, a plurality of optoelectronic elements disposed on the substrate and coupled with the two ends of the honeycomb-shaped micro-structured optical waveguide, and a plurality of IC driving elements disposed on the substrate and electrically connected with the optoelectronic elements by conductive wires to drive the optoelectronic elements such that optical signals are transmitted through the honeycomb-shaped micro-structured optical waveguide. The optoelectric converting substrate can be easily fabricated at a low cost and effectively increases the displacement tolerance of the optoelectronic elements in substrate packaging.