US20080120882A1 - Lighting system - Google Patents

Lighting system Download PDF

Info

Publication number
US20080120882A1
US20080120882A1 US11/522,764 US52276406A US2008120882A1 US 20080120882 A1 US20080120882 A1 US 20080120882A1 US 52276406 A US52276406 A US 52276406A US 2008120882 A1 US2008120882 A1 US 2008120882A1
Authority
US
United States
Prior art keywords
transparent
eroded
glass
light
light source
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Abandoned
Application number
US11/522,764
Inventor
Christine Ann Mueller
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Individual
Original Assignee
Individual
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Individual filed Critical Individual
Priority to US11/522,764 priority Critical patent/US20080120882A1/en
Publication of US20080120882A1 publication Critical patent/US20080120882A1/en
Abandoned legal-status Critical Current

Links

Images

Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B44DECORATIVE ARTS
    • B44FSPECIAL DESIGNS OR PICTURES
    • B44F1/00Designs or pictures characterised by special or unusual light effects
    • B44F1/06Designs or pictures characterised by special or unusual light effects produced by transmitted light, e.g. transparencies, imitations of glass paintings
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B44DECORATIVE ARTS
    • B44CPRODUCING DECORATIVE EFFECTS; MOSAICS; TARSIA WORK; PAPERHANGING
    • B44C5/00Processes for producing special ornamental bodies
    • B44C5/005Processes for producing special ornamental bodies comprising inserts

Definitions

  • the present invention relates to decorative or other lighting of transparent or translucent surfaces by placing a light source within a frame.
  • a lenticular lens, fresnel lenticular lens plate, lens with a textured surface, plate lens, ultraviolet cured resinous lens, lens with an undercut, cluster of anamorphic lenses, transparent rods, or grid, can be placed in front of the images to provide a special display which has the illusion of animation, morphing or movement as the angle of sight changes.
  • the images can also be printed directly on the back surface of the lens to provide self-contained lenticular graphics.
  • the special display can be used to provide: an attractive calendar, post card, decoding card, business card, bookmark, computer disc case, compact disc case, laser disc case, video cassette case, audio cassette case, display box, bag, insulating cup, lid, book, mural, picture frame, game piece, jewelry, button, shoe ornament, multi-faced hanging display, premium, award display, self-standing plaque, shelf header slide-in display, bumper sticker, pen, credit card, swinging display, wag, place mat, traffic sign, compact disc, laser disc, recordable disc, monitor, television screen, computer screen, flat screen panel display, and display with multiple rotating panels, as well as other products.
  • U.S. Pat. No. 5,894,686 Parker et al. contains a disclosure of light distribution systems include a light emitting portion, a light source for supplying light to the light emitting portion and a power source for the light source.
  • a sealed holder or pocket may be provided for the light emitting portion.
  • the light emitting portion may be located on an upper portion of a shoe and include a raised or relieved area from which light is emitted.
  • the light distribution systems may include an additional light source which is directional so it can be seen at a greater distance than the light emitting portion.
  • An information display system may also be provided, including a liquid crystal display located on an upper portion of a shoe, and a motion sensor for controlling operation of the display.
  • U.S. Pat. No. 5,923,020 Kurokawa et al., issued Jul. 13, 1999 contains a description of a lighting apparatus 1 has a convex lens 11 arranged so that its optical axis is at an angle theta with respect to the normal of an observation portion 3 a (e.g., a semiconductor substrate or the like), with a camera 5 arranged in the path of the reflected light rays.
  • an observation portion 3 a e.g., a semiconductor substrate or the like
  • a camera 5 arranged in the path of the reflected light rays.
  • a light-emitting portion 13 When a light-emitting portion 13 is arranged along the optical axis of the lens 11 , a bright field illumination takes place. If a knob 29 is turned, the light-emitting portion 13 moves along a ball screw 25 , thereby changing the illumination from a bright field illumination to a dark field illumination.
  • the light exiting the lens 11 will diverge if the light-emitting portion 13 is moved close to the lens 11 , converge if the light-emitting portion 13 is moved far away from the lens 11 , and be parallel if the light-emitting portion 13 is positioned at the focal point of the lens 11 .
  • By changing the position of the light-emitting portion 13 in this way it is possible to change the illuminating angle and the illuminating angle distribution, and by adjusting the position of the light-emitting portion 13 in accordance with the optical characteristics of the object 3 , it is possible to obtain a high contrast image. It is also possible for these adjustments to be carried out automatically by using an actuator, microcomputer or the like.
  • U.S. Pat. No. 6,030,089 issued Feb. 29, 2000 to Parker et al. discloses a light distribution system includes an area light emitting portion, a light source for supplying light to an input edge of the light emitting portion for conduction within the light emitting portion and emission therefrom, and a power source for the light source.
  • a holder may be provided for the light emitting portion.
  • the holder may be made of a flexible material to permit the holder to conform to a contoured surface such as the arm or other body part of a person.
  • a flexible band or belt may be provided for personal wear.
  • the light distribution system may include an additional light source which is directional so it can be seen at a greater distance than the area light emitting portion.
  • An information display system controlled by an interactive switch may also be provided for displaying selected information
  • U.S. Pat. No. 6,031,343 issued to Recknagel et al., Feb. 29, 2000 Recites lighting system includes at least one light string having a plurality of independently controllable light modules, each emitting light in response to an activation signal uniquely associated with the light module.
  • the lighting system preferably includes a controller coupled to the light strings for generating and transmitting activation signals to the light modules to independently control the lights of the light modules.
  • Each of the light modules may include a multi-color lighting device for emitting light of different colors such that the controller may select colors of the light emitted from each one of the light modules.
  • the lighting system may also include a plurality of address modules each associated with and coupled to one of the light strings and coupled to the controller so that the controller may transmit activation signals to the light modules of a specific light string by transmitting an address to which the associated address module will respond by enabling the light modules of the associated light string to respond to the activation signals transmitted with the address signal from the controller.
  • Light ropes useful in the present invention are available from sale@nsl-ltg.com telephone 800-527-2923 or 303-926-1100, facsimile 800-527-4358 303-926-0011 and through http://www.nsl-ltg.corn/lightrope/lrope.html.
  • the present invention also describes lighting system comprising:
  • a further aspect of the lighting system of the present invention comprises:
  • the present invention also describes a method of lighting comprising:
  • FIG. 1 is a frontal perspective of a finished product embodiment according to the invention
  • FIG. 2 is the reverse view of a finished product embodiment according to the invention.
  • FIG. 3 is a partial sectional view of an embodiment according to the invention.
  • FIG. 4 is a sectional view taken along lines 3 - 3 of FIG. 3 ;
  • FIG. 5 is a sectional view of an alternative embodiment according to the invention taken along lines 3 - 3 ;
  • FIG. 6 is a view of plurality of window pains with eroded glass and lighting.
  • FIG. 7 is a sectional view similar to FIG. 4 as taken along lines 3 - 3 of FIG. 3 .
  • FIG. 1 shows a series of framed eroded glasses 10 .
  • Each of the framed eroded glasses 10 are supplied with a light source from a rope light 12 which receives power from a power source 14 .
  • the framed eroded glasses 10 are furthered denominated separately as eroded glass 20 , eroded glass 30 , and eroded glass 40 .
  • the framed eroded glass 20 is retained in a framing unit 22
  • the framed eroded glass 30 is retained in a framing unit 32
  • the framed eroded glass 40 is retained in a framing unit 42 .
  • the framing unit 22 has two outer side walls 52 .
  • the framing unit 22 has outer top wall 56 and an outer bottom wall 58 .
  • the framing unit 22 has an inner top wall 66 and an inner bottom wall 68 .
  • the framing unit 22 has two inner side walls 72 .
  • a surface 76 extends from the two outer side walls 52 and the outer top wall 56 and the outer bottom wall 58 toward the two inner side walls 72 and the inner top wall 66 and the inner bottom wall 68 .
  • a back plate 90 is secured to the framing unit 22 .
  • the back plate 90 may partially protect the various glass components of the present invention.
  • the back plate 90 is conveniently any opaque material. If desired, the opaque material forming the back plate 90 may be a reflective material such as a mirror or metal coated film The advantage of employing a reflective material is that the light transmitted through the glass is enhanced.
  • the height dimension of the back plate 90 is less than the corresponding height dimension of the two outer side walls 52 .
  • the width dimension of the back plate 90 is less than the corresponding width dimension of the outer top wall 56 and the outer bottom wall 58 .
  • the height dimension of the back plate 90 is greater than the two inner side walls 72 .
  • the width dimension of the back plate 90 is greater than the inner top wall 66 and an inner bottom wall 68 .
  • a channel 94 is cut into the inner top wall 66 .
  • the channel 94 extends to but not through outer top wall 56 .
  • the channel 94 is also present in the inner bottom wall 68 .
  • the channel 94 extends to but not through the outer bottom wall 58 .
  • the channel 94 extends to each inner side walls 72 to but not through the two outer side walls 52 .
  • the formation of the channel 94 adds another step to the operation to form the finished product but permits a tight fit of the various components into the channel 94 .
  • a series of tabs 102 extend along the surface 76 .
  • a pair of hangers 106 extends from the outer top wall 56 of the framing unit 22 .
  • a piece of engraved glass 120 is fixedly connected into the channel 94 .
  • the engraved glass 120 may be of any aesthetically pleasing design.
  • a string of rope lights 12 shown in the channel 94 The rope lights 12 are available from sales@nsl-ltg.com.
  • the rope lights 12 may be connected in parallel or series but to avoid the ‘Christmas tree problem’ parallel lighting is preferred.
  • FIG. 4 is a cross section a portion of the framing unit 22 .
  • the frame shown in FIG. 4 is that of a picture frame.
  • a wall relief extension 128 is fixedly connected to the outer side walls 52 . Additional wall relief extensions 128 may be added outer top wall 56 and the outer bottom wall 58 and at other portions of the outer side walls 52 .
  • the wall relief extension 128 permits the dissipation of heat when the rope light 12 is in use in the framed eroded glasses 10 .
  • a frame face 134 may be utilized to retain the engraved glass 120 in the framed eroded glasses 10 .
  • eroded glass is utilized throughout the specification and claims it is to be understood that the glass may be cut, drilled, engraved, etched or the like. Typically, the glass will be purchased as a planar workpiece. The planar workpiece will then be engraved to remove a portion of the outer surface of the glass to give an aesthetically pleasing design. The non-planar surfaces generated by the engraving will reflect and refract light differently than the planar workpiece. It is preferred that that glass be clear although translucent glass may be utilized in whole or part. Colored glasses may be employed herein in whole or part as well. While the term glass is utilized herein it is understood that materials such a plexiglass or other plastics may be utilized as long as such materials are transparent or translucent.
  • FIG. 5 shows an alternative embodiment of the invention based on FIG. 3 .
  • the alternative embodiment shown in FIG. 5 demonstrates the usefulness of the present invention in a wall mounted window 140 .
  • the two outer side walls 52 extend into a wall 142 of a home to retain the piece of engraved glass 120 in place.
  • a breathable covering piece 144 is made a part of the framed eroded glasses 10 .
  • the breathable covering piece 144 serves the same purpose as the wall relief extension 128 to permit dissipation of heat when the rope light 12 is in use in the framed eroded glasses 10 .
  • a layer of protective glass 150 is utilized minimize any risk posed by the use of eroded glass in the window.
  • the lighting system according to the present invention utilizes the piece of engraved glass 120 to at least partially retain the light rope 12 in the channel 94 .
  • the direct contact of the engraved glass 120 to the light rope 12 in the channel 94 is desired as the light from the light rope 12 is more effectively transmitted through engraved glass 120 .
  • the light source is activated. As the light source is directly against the eroded glass the light is transmitted through the eroded glass. As the eroding process creates a plurality of surfaces within the glass the light is redirected as it passes through the glass. The eroded portion of the glass surface 120 then reflects and refracts the incident light bringing out the image eroded into the glass.
  • FIG. 6 is an alternative embodiment of a plurality of pieces of eroded glass 160 mounted in a window 162 .
  • the light ropes 12 extend around the window frame such that the inner most piece of eroded glass 164 has a common light rope 12 with the outer piece of eroded glass 166 and the outer piece of eroded glass 168 .
  • a frame 200 has an outer frame portion 210 .
  • the fame 200 has a backing segment 214 .
  • the outer frame portion 210 provides a covering to an inner frame portion 220 .
  • the frame 200 may be thought of as a box.
  • the inner frame portion 220 retains a transparent eroded piece of decorative glass 230 .
  • a rope light 236 is disposed along the inner frame portion 220 in close proximity to the eroded piece of transparent decorative glass 230 .
  • An opaque piece of eroded glass 240 is positioned between the backing segment 214 and the transparent eroded piece of transparent decorative glass 230 . The opaque piece of eroded glass 240 is retained by inner frame portion 220 .
  • the eroded piece of transparent decorative glass 230 and the opaque piece of eroded glass 240 may be painted. Any suitable paint which may be permanently adhered to a glass surface may be employed.
  • a photosensitive switch (not shown) may be engaged to activate the rope light 236 to generate light.
  • the photosensitive switch will, when activated, permit light from the rope light 236 to reflect from the opaque piece of eroded glass 240 .
  • the light from the rope light 236 ultimately passes through the eroded piece of transparent decorative glass 230 . In this manner, a decorative artwork having three-dimensional properties is obtained.
  • the eroded piece of transparent decorative glass 230 is visible in well-lighted conditions, such as daylight, even without the light from the rope light 236 .
  • the opaque piece of eroded glass 240 is not particularly visible when in a region of substantial light (daylight or a well lighted room), the decorative art may actually appear as two different works of art depending on whether the light from the rope light 236 is activated.

Abstract

The invention described herein permits decorative or other lighting of a transparent and translucent surface, and an opaque decorative service by placing a light source within a frame and contacting the light source with the transparent or translucent surface. The light source may also be located within the frame between the transparent or translucent surface and the opaque decorative surface. The transparent, translucent surface and the opaque decorative surface may be eroded in one or more places to provide contrasting images on the transparent surface, the translucent surface and the opaque decorative surface. The transparent translucent surface and the opaque decorative surface may also be at least partially painted.

Description

    BACKGROUND OF THE INVENTION
  • 1. Field of the Invention
  • The present invention relates to decorative or other lighting of transparent or translucent surfaces by placing a light source within a frame.
  • 2. Description of the art practices
  • U.S. Pat. No. 5,695,346 Sekiguchi et al., issued Dec. 7, 1997 describes an efficient economical process is provided to produce an impressive display with outstanding marketing and advertising appeal. In the process, multiple images are formed, such as on a central processing unit, the images are striped or manipulated, eliminating rows of pixels and replacing them with pixels from other images, and portions thereof are superimposed. The superimposed images can be printed on a viewable surface of the display. A lenticular lens, fresnel lenticular lens plate, lens with a textured surface, plate lens, ultraviolet cured resinous lens, lens with an undercut, cluster of anamorphic lenses, transparent rods, or grid, can be placed in front of the images to provide a special display which has the illusion of animation, morphing or movement as the angle of sight changes. The images can also be printed directly on the back surface of the lens to provide self-contained lenticular graphics. The special display can be used to provide: an attractive calendar, post card, decoding card, business card, bookmark, computer disc case, compact disc case, laser disc case, video cassette case, audio cassette case, display box, bag, insulating cup, lid, book, mural, picture frame, game piece, jewelry, button, shoe ornament, multi-faced hanging display, premium, award display, self-standing plaque, shelf header slide-in display, bumper sticker, pen, credit card, swinging display, wag, place mat, traffic sign, compact disc, laser disc, recordable disc, monitor, television screen, computer screen, flat screen panel display, and display with multiple rotating panels, as well as other products.
  • U.S. Pat. No. 5,894,686 Parker et al., issued Apr. 29, 1999 contains a disclosure of light distribution systems include a light emitting portion, a light source for supplying light to the light emitting portion and a power source for the light source. A sealed holder or pocket may be provided for the light emitting portion. The light emitting portion may be located on an upper portion of a shoe and include a raised or relieved area from which light is emitted. The light distribution systems may include an additional light source which is directional so it can be seen at a greater distance than the light emitting portion. An information display system may also be provided, including a liquid crystal display located on an upper portion of a shoe, and a motion sensor for controlling operation of the display.
  • U.S. Pat. No. 5,923,020 Kurokawa et al., issued Jul. 13, 1999 contains a description of a lighting apparatus 1 has a convex lens 11 arranged so that its optical axis is at an angle theta with respect to the normal of an observation portion 3 a (e.g., a semiconductor substrate or the like), with a camera 5 arranged in the path of the reflected light rays. When a light-emitting portion 13 is arranged along the optical axis of the lens 11, a bright field illumination takes place. If a knob 29 is turned, the light-emitting portion 13 moves along a ball screw 25, thereby changing the illumination from a bright field illumination to a dark field illumination. When a knob 37 is turned, the light exiting the lens 11 will diverge if the light-emitting portion 13 is moved close to the lens 11, converge if the light-emitting portion 13 is moved far away from the lens 11, and be parallel if the light-emitting portion 13 is positioned at the focal point of the lens 11. By changing the position of the light-emitting portion 13 in this way, it is possible to change the illuminating angle and the illuminating angle distribution, and by adjusting the position of the light-emitting portion 13 in accordance with the optical characteristics of the object 3, it is possible to obtain a high contrast image. It is also possible for these adjustments to be carried out automatically by using an actuator, microcomputer or the like.
  • U.S. Pat. No. 6,030,089 issued Feb. 29, 2000 to Parker et al., discloses a light distribution system includes an area light emitting portion, a light source for supplying light to an input edge of the light emitting portion for conduction within the light emitting portion and emission therefrom, and a power source for the light source. A holder may be provided for the light emitting portion. The holder may be made of a flexible material to permit the holder to conform to a contoured surface such as the arm or other body part of a person. Also, a flexible band or belt may be provided for personal wear. The light distribution system may include an additional light source which is directional so it can be seen at a greater distance than the area light emitting portion. An information display system controlled by an interactive switch may also be provided for displaying selected information
  • U.S. Pat. No. 6,031,343 issued to Recknagel et al., Feb. 29, 2000 Recites lighting system includes at least one light string having a plurality of independently controllable light modules, each emitting light in response to an activation signal uniquely associated with the light module. The lighting system preferably includes a controller coupled to the light strings for generating and transmitting activation signals to the light modules to independently control the lights of the light modules. Each of the light modules may include a multi-color lighting device for emitting light of different colors such that the controller may select colors of the light emitted from each one of the light modules. The lighting system may also include a plurality of address modules each associated with and coupled to one of the light strings and coupled to the controller so that the controller may transmit activation signals to the light modules of a specific light string by transmitting an address to which the associated address module will respond by enabling the light modules of the associated light string to respond to the activation signals transmitted with the address signal from the controller.
  • Light ropes useful in the present invention are available from sale@nsl-ltg.com telephone 800-527-2923 or 303-926-1100, facsimile 800-527-4358 303-926-0011 and through http://www.nsl-ltg.corn/lightrope/lrope.html.
  • To the extent that the foregoing patents and citations are relevant to the present invention they are herein incorporated by reference.
  • SUMMARY OF THE INVENTION
  • The present invention also describes lighting system comprising:
      • a frame member;
        • said frame member having a void portion;
      • an electrical light source emitter for emitting an electrical light;
        • said void for at least partially receiving said electrical light source emitter;
      • a transparent or translucent glass member;
        • said transparent or translucent glass member disposed such that said electrical light source emitter, when emitting light, substantially contacts said transparent or translucent glass member;
      • an opaque glass member located within said void portion;
        provided further that said opaque glass member does not substantially interfere with the transmission of electrical light from said electrical light source emitter through said transparent or translucent glass member.
  • A further aspect of the lighting system of the present invention comprises:
      • a frame member;
        • said frame member having a void portion;
      • an electrical light source emitter for emitting an electrical light;
        • said void for at least partially receiving said electrical light source emitter;
      • at least one transparent or translucent glass member;
      • an opaque glass member located within said void portion;
        • said electrical light source emitter, when emitting light, disposed between said transparent or translucent glass member, and said opaque glass member;
          provided further that said opaque glass member does not substantially interfere with the transmission of electrical light from said electrical light source emitter through said transparent or translucent glass member.
  • The present invention also describes a method of lighting comprising:
      • emitting an electrical light generated by an electrical light source emitter from within a frame member;
      • said frame member having a void portion;
      • said frame member further comprising at least one decorative transparent or translucent glass member, and at least one decorative opaque glass member;
        wherein the emitted electrical light passes through at least one of send decorative transparent or translucent glass member and reflects from said decorative opaque glass surface.
    BRIEF DESCRIPTION OF THE DRAWINGS
  • The foregoing and other features of the present invention will become apparent to one skilled in the art to which the present invention relates upon consideration of the following description of the invention with reference to the accompanying drawings, wherein:
  • FIG. 1 is a frontal perspective of a finished product embodiment according to the invention;
  • FIG. 2 is the reverse view of a finished product embodiment according to the invention;
  • FIG. 3 is a partial sectional view of an embodiment according to the invention;
  • FIG. 4 is a sectional view taken along lines 3-3 of FIG. 3;
  • FIG. 5 is a sectional view of an alternative embodiment according to the invention taken along lines 3-3;
  • FIG. 6 is a view of plurality of window pains with eroded glass and lighting; and,
  • FIG. 7 is a sectional view similar to FIG. 4 as taken along lines 3-3 of FIG. 3.
  • With more particular reference to the drawings the following is set forth.
  • DETAILED DESCRIPTION OF THE INVENTION
  • FIG. 1 shows a series of framed eroded glasses 10. Each of the framed eroded glasses 10 are supplied with a light source from a rope light 12 which receives power from a power source 14.
  • The framed eroded glasses 10 are furthered denominated separately as eroded glass 20, eroded glass 30, and eroded glass 40. The framed eroded glass 20 is retained in a framing unit 22, the framed eroded glass 30 is retained in a framing unit 32 and the framed eroded glass 40 is retained in a framing unit 42.
  • As best seen in FIG. 2 is the reverse view of the framing unit 22. The framing unit 22 has two outer side walls 52. The framing unit 22 has outer top wall 56 and an outer bottom wall 58.
  • The framing unit 22 has an inner top wall 66 and an inner bottom wall 68. The framing unit 22 has two inner side walls 72. A surface 76 extends from the two outer side walls 52 and the outer top wall 56 and the outer bottom wall 58 toward the two inner side walls 72 and the inner top wall 66 and the inner bottom wall 68.
  • A back plate 90 is secured to the framing unit 22. The back plate 90 may partially protect the various glass components of the present invention. The back plate 90 is conveniently any opaque material. If desired, the opaque material forming the back plate 90 may be a reflective material such as a mirror or metal coated film The advantage of employing a reflective material is that the light transmitted through the glass is enhanced.
  • The height dimension of the back plate 90 is less than the corresponding height dimension of the two outer side walls 52. The width dimension of the back plate 90 is less than the corresponding width dimension of the outer top wall 56 and the outer bottom wall 58.
  • The height dimension of the back plate 90 is greater than the two inner side walls 72. The width dimension of the back plate 90 is greater than the inner top wall 66 and an inner bottom wall 68.
  • A channel 94 is cut into the inner top wall 66. The channel 94 extends to but not through outer top wall 56. The channel 94 is also present in the inner bottom wall 68. The channel 94 extends to but not through the outer bottom wall 58. The channel 94 extends to each inner side walls 72 to but not through the two outer side walls 52.
  • The formation of the channel 94 adds another step to the operation to form the finished product but permits a tight fit of the various components into the channel 94.
  • A series of tabs 102 extend along the surface 76. A pair of hangers 106 extends from the outer top wall 56 of the framing unit 22.
  • As best seen in FIG. 3, is a portion of the obverse the framing unit 22 shown in FIG. 2. A piece of engraved glass 120 is fixedly connected into the channel 94. The engraved glass 120 may be of any aesthetically pleasing design.
  • A string of rope lights 12 shown in the channel 94. The rope lights 12 are available from sales@nsl-ltg.com. The rope lights 12 may be connected in parallel or series but to avoid the ‘Christmas tree problem’ parallel lighting is preferred.
  • As best seen in FIG. 4 is a cross section a portion of the framing unit 22. The frame shown in FIG. 4 is that of a picture frame. A wall relief extension 128 is fixedly connected to the outer side walls 52. Additional wall relief extensions 128 may be added outer top wall 56 and the outer bottom wall 58 and at other portions of the outer side walls 52. The wall relief extension 128 permits the dissipation of heat when the rope light 12 is in use in the framed eroded glasses 10.
  • A frame face 134 may be utilized to retain the engraved glass 120 in the framed eroded glasses 10. While the term eroded glass is utilized throughout the specification and claims it is to be understood that the glass may be cut, drilled, engraved, etched or the like. Typically, the glass will be purchased as a planar workpiece. The planar workpiece will then be engraved to remove a portion of the outer surface of the glass to give an aesthetically pleasing design. The non-planar surfaces generated by the engraving will reflect and refract light differently than the planar workpiece. It is preferred that that glass be clear although translucent glass may be utilized in whole or part. Colored glasses may be employed herein in whole or part as well. While the term glass is utilized herein it is understood that materials such a plexiglass or other plastics may be utilized as long as such materials are transparent or translucent.
  • FIG. 5 shows an alternative embodiment of the invention based on FIG. 3. The alternative embodiment shown in FIG. 5 demonstrates the usefulness of the present invention in a wall mounted window 140. The two outer side walls 52 extend into a wall 142 of a home to retain the piece of engraved glass 120 in place.
  • A breathable covering piece 144 is made a part of the framed eroded glasses 10. The breathable covering piece 144 serves the same purpose as the wall relief extension 128 to permit dissipation of heat when the rope light 12 is in use in the framed eroded glasses 10. A layer of protective glass 150 is utilized minimize any risk posed by the use of eroded glass in the window.
  • The lighting system according to the present invention utilizes the piece of engraved glass 120 to at least partially retain the light rope 12 in the channel 94. The direct contact of the engraved glass 120 to the light rope 12 in the channel 94 is desired as the light from the light rope 12 is more effectively transmitted through engraved glass 120.
  • In use, and referring to FIG. 4, the light source is activated. As the light source is directly against the eroded glass the light is transmitted through the eroded glass. As the eroding process creates a plurality of surfaces within the glass the light is redirected as it passes through the glass. The eroded portion of the glass surface 120 then reflects and refracts the incident light bringing out the image eroded into the glass.
  • As best seen in FIG. 6 is an alternative embodiment of a plurality of pieces of eroded glass 160 mounted in a window 162. The light ropes 12 extend around the window frame such that the inner most piece of eroded glass 164 has a common light rope 12 with the outer piece of eroded glass 166 and the outer piece of eroded glass 168.
  • As is best seen in the FIG. 7 is a further embodiment of the present invention. A frame 200 has an outer frame portion 210. The fame 200 has a backing segment 214. The outer frame portion 210 provides a covering to an inner frame portion 220. The frame 200 may be thought of as a box.
  • The inner frame portion 220 retains a transparent eroded piece of decorative glass 230. A rope light 236 is disposed along the inner frame portion 220 in close proximity to the eroded piece of transparent decorative glass 230. An opaque piece of eroded glass 240 is positioned between the backing segment 214 and the transparent eroded piece of transparent decorative glass 230. The opaque piece of eroded glass 240 is retained by inner frame portion 220.
  • If desired the eroded piece of transparent decorative glass 230 and the opaque piece of eroded glass 240 may be painted. Any suitable paint which may be permanently adhered to a glass surface may be employed.
  • A photosensitive switch (not shown) may be engaged to activate the rope light 236 to generate light. The photosensitive switch will, when activated, permit light from the rope light 236 to reflect from the opaque piece of eroded glass 240. The light from the rope light 236 ultimately passes through the eroded piece of transparent decorative glass 230. In this manner, a decorative artwork having three-dimensional properties is obtained.
  • The eroded piece of transparent decorative glass 230 is visible in well-lighted conditions, such as daylight, even without the light from the rope light 236. As the opaque piece of eroded glass 240 is not particularly visible when in a region of substantial light (daylight or a well lighted room), the decorative art may actually appear as two different works of art depending on whether the light from the rope light 236 is activated.

Claims (11)

1-18. (canceled)
19. A lighting system comprising:
a frame member;
said frame member having a void portion extending entirely around said frame member;
an electrical light source emitter for emitting an electrical light;
said void at least partially receiving said electrical light source emitter;
an eroded transparent or translucent glass member having a plurality of edge surfaces;
said eroded transparent or translucent glass member disposed in said void such that said electrical light source emitter, contacts said eroded transparent or translucent glass member on each of said plurality of edge surfaces;
an opaque glass backing member located within said frame;
provided further that said opaque glass backing member does not substantially interfere with the transmission of electrical light from said electrical light source emitter through said eroded transparent or translucent glass member.
20. The lighting system according to claim 19 wherein said eroded transparent or translucent glass is eroded on a surface facing said opaque glass backing member.
21. The lighting system according to claim 19 wherein said electrical light source emitter is a rope light.
22. The lighting system according to claim 19 wherein said opaque glass backing member is located within said void portion.
23. The lighting system according to claim 19 wherein said opaque glass backing member is painted or eroded on the side facing said eroded transparent or translucent glass member.
24. A lighting system comprising:
a frame member;
said frame member having a void portion extending entirely around said frame member;
an electrical light source emitter for emitting an electrical light;
said void at least partially receiving said electrical light source emitter;
an at least partially painted transparent or translucent glass member having a plurality of edge surfaces
said at least partially painted transparent or translucent glass member disposed in said void such that said electrical light source emitter, contacts said at least partially painted transparent or translucent glass member on each of said plurality of edge surfaces;
a reflective opaque glass backing member located within said frame member;
said reflective opaque glass backing member having the reflective surface facing said at least partially painted transparent or translucent glass member;
provided further that said reflective opaque glass backing member does not substantially interfere with the transmission of electrical light from said electrical light source emitter through said at least partially painted transparent or translucent glass member.
25. The lighting system according to claim 24 wherein at least partially painted transparent or translucent glass member is eroded on a surface facing said reflective opaque glass backing member.
26. The lighting system according to claim 24 wherein said electrical light source emitter is a rope light.
27. The lighting system according to claim 24 wherein said reflective opaque glass backing member is located within said void portion.
28. The lighting system according to claim 24 wherein said reflective opaque glass backing member is painted or eroded on the said facing said at least partially painted transparent or translucent glass member.
US11/522,764 2006-09-18 2006-09-18 Lighting system Abandoned US20080120882A1 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
US11/522,764 US20080120882A1 (en) 2006-09-18 2006-09-18 Lighting system

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
US11/522,764 US20080120882A1 (en) 2006-09-18 2006-09-18 Lighting system

Publications (1)

Publication Number Publication Date
US20080120882A1 true US20080120882A1 (en) 2008-05-29

Family

ID=39462245

Family Applications (1)

Application Number Title Priority Date Filing Date
US11/522,764 Abandoned US20080120882A1 (en) 2006-09-18 2006-09-18 Lighting system

Country Status (1)

Country Link
US (1) US20080120882A1 (en)

Cited By (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20120092855A1 (en) * 2008-06-02 2012-04-19 Sony Electronics Inc. Flat panel tv stand providing floating appearance
US20130065478A1 (en) * 2011-09-13 2013-03-14 Kids Ii, Inc. Crib soother
US20130125436A1 (en) * 2010-08-05 2013-05-23 Brendan Morris Vallar Image Display Apparatus
US9303849B1 (en) * 2013-10-04 2016-04-05 Marvin Leon Martinez Flat panel concealment apparatus with a graphic and ambient light method
US9375103B1 (en) 2014-05-21 2016-06-28 David R. Hoppaugh Illuminated image assembly
US9669323B2 (en) 2014-09-10 2017-06-06 Kids Ii, Inc. Children's toy
DE102019006015B4 (en) 2019-08-26 2023-04-06 Selahattin Günes Process/technology for the production of illuminating, hand-painted pictures with immaterial colored light as a partial "color substitute" for material colors and for achieving a perfect, material color "black".

Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2634530A (en) * 1949-12-10 1953-04-14 Panocular Corp Edge lighted display
US4922384A (en) * 1989-06-08 1990-05-01 Mechtronics Corporation Illuminated display with half-silvered mirrors and discrete refractor plates
US5027258A (en) * 1989-06-19 1991-06-25 Inotec Gmbh Gesellschaft Fur Innovative Technik Display unit
US20020133993A1 (en) * 2000-06-06 2002-09-26 Mueller Christine Ann Lighting system

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2634530A (en) * 1949-12-10 1953-04-14 Panocular Corp Edge lighted display
US4922384A (en) * 1989-06-08 1990-05-01 Mechtronics Corporation Illuminated display with half-silvered mirrors and discrete refractor plates
US5027258A (en) * 1989-06-19 1991-06-25 Inotec Gmbh Gesellschaft Fur Innovative Technik Display unit
US20020133993A1 (en) * 2000-06-06 2002-09-26 Mueller Christine Ann Lighting system
US7107712B2 (en) * 2000-06-06 2006-09-19 Christine Ann Mueller Lighting system

Cited By (10)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20120092855A1 (en) * 2008-06-02 2012-04-19 Sony Electronics Inc. Flat panel tv stand providing floating appearance
US8523299B2 (en) * 2008-06-02 2013-09-03 Sony Corporation Flat panel TV stand providing floating appearance
US20130125436A1 (en) * 2010-08-05 2013-05-23 Brendan Morris Vallar Image Display Apparatus
US8984784B2 (en) * 2010-08-05 2015-03-24 The Shadow Gap Company Llp Image display apparatus
US20130065478A1 (en) * 2011-09-13 2013-03-14 Kids Ii, Inc. Crib soother
US9272225B2 (en) * 2011-09-13 2016-03-01 Kids Ii, Inc. Crib soother
US9303849B1 (en) * 2013-10-04 2016-04-05 Marvin Leon Martinez Flat panel concealment apparatus with a graphic and ambient light method
US9375103B1 (en) 2014-05-21 2016-06-28 David R. Hoppaugh Illuminated image assembly
US9669323B2 (en) 2014-09-10 2017-06-06 Kids Ii, Inc. Children's toy
DE102019006015B4 (en) 2019-08-26 2023-04-06 Selahattin Günes Process/technology for the production of illuminating, hand-painted pictures with immaterial colored light as a partial "color substitute" for material colors and for achieving a perfect, material color "black".

Similar Documents

Publication Publication Date Title
US7107712B2 (en) Lighting system
US20080120882A1 (en) Lighting system
KR101233616B1 (en) Optical device with dual function of illumination and forming a figurative image
US8681071B2 (en) Lighted multiple panel display
US20060284788A1 (en) Infinity tunnel display system with floating dynamic image
KR101996330B1 (en) Apparatus to display solid lighting image in midair and its displaying method
TWI398832B (en) Multiple reflection panel
GB2232520A (en) Display device
KR102181529B1 (en) Display apparatus having infinity depth space background
JP6618048B2 (en) Illumination device and image recording medium
KR101911467B1 (en) Lighting advertising panel
US6667576B1 (en) Optical-effect light
WO2003091973A8 (en) Image display device with microlight sources and soft light panel
KR102025513B1 (en) The presentation equipment and method for reflecting halo effect of ornaments
US20030037473A1 (en) Apparatus for displaying a transparency
JP2000047613A (en) Multiple-display type display tool
JP3221002U (en) Decorative lighting
US8074386B2 (en) Integrated mirror and graphics display system
JPH07119159B2 (en) Decorative wall decorations
KR20160052853A (en) Transparent LCD device
US20230249492A1 (en) Device with backlit colored display and method of manufacture
CN211426958U (en) 3D light film and light structure that floats that combines together with optical element
JP3864342B2 (en) Display board
CN213023957U (en) Holographic effect image display device
JP3052358U (en) Bright display device using lighting equipment

Legal Events

Date Code Title Description
STCB Information on status: application discontinuation

Free format text: ABANDONED -- FAILURE TO RESPOND TO AN OFFICE ACTION