WO2023120486A1 - Dispositif électroluminescent décoratif - Google Patents

Dispositif électroluminescent décoratif Download PDF

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Publication number
WO2023120486A1
WO2023120486A1 PCT/JP2022/046710 JP2022046710W WO2023120486A1 WO 2023120486 A1 WO2023120486 A1 WO 2023120486A1 JP 2022046710 W JP2022046710 W JP 2022046710W WO 2023120486 A1 WO2023120486 A1 WO 2023120486A1
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WO
WIPO (PCT)
Prior art keywords
light
emitting
designable
sheet
design
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PCT/JP2022/046710
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English (en)
Japanese (ja)
Inventor
修 仁義
健 仁義
明男 齋藤
和也 村瀬
Original Assignee
株式会社ダイカン
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Publication of WO2023120486A1 publication Critical patent/WO2023120486A1/fr

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    • GPHYSICS
    • G09EDUCATION; CRYPTOGRAPHY; DISPLAY; ADVERTISING; SEALS
    • G09FDISPLAYING; ADVERTISING; SIGNS; LABELS OR NAME-PLATES; SEALS
    • G09F13/00Illuminated signs; Luminous advertising
    • G09F13/04Signs, boards or panels, illuminated from behind the insignia
    • GPHYSICS
    • G09EDUCATION; CRYPTOGRAPHY; DISPLAY; ADVERTISING; SEALS
    • G09FDISPLAYING; ADVERTISING; SIGNS; LABELS OR NAME-PLATES; SEALS
    • G09F13/00Illuminated signs; Luminous advertising
    • G09F13/04Signs, boards or panels, illuminated from behind the insignia
    • G09F13/08Signs, boards or panels, illuminated from behind the insignia using both translucent and non-translucent layers

Definitions

  • the present invention relates to a designable light-emitting device that displays characters, graphics, or patterns.
  • design light-emitting devices called lighting signs and lighting advertisements that brightly display store names and logos.
  • Such designable light-emitting devices brightly display designs such as store names and logos with light from a light source in accordance with shapes such as characters and diagrams.
  • This decorative light-emitting device is highly visible and beautiful, so it is used in various places such as displaying a brand name at the front or entrance of a store.
  • Such designable light-emitting devices have diversified from conventional neon signs and fluorescent signs to LED signs using LEDs in recent years, and various designs are required.
  • Patent Document 1 proposes an internally illuminated pseudo-metal casing called a so-called box character, in which a plurality of LEDs and their wiring are arranged in a casing formed in the character of "stock" (Patent Document 1) reference).
  • box letters such as the internally illuminated pseudo-metal casing described above use multiple LEDs and require wiring to supply power to the LEDs. For this reason, the arrangement and wiring of the LEDs and the shape of the casing differ depending on the shape of the box letter to be produced. In addition, as the size of the box character to be produced increases, the number of necessary LEDs increases, and accordingly the wiring also increases.
  • the invention of the present application has been made in view of the above-mentioned problems, and is capable of making linear shapes representing letters, figures, or patterns stand out and emitting light.
  • An object of the present invention is to provide a light-emitting device with less design.
  • the present invention provides a light-emitting sheet having a plurality of light-emitting elements arranged on a surface, a control device for controlling light emission of the plurality of light-emitting elements, and a light-emitting sheet formed in a linear shape representing characters, figures, or patterns.
  • a light-transmitting designable light-transmitting member arranged on the light-emitting surface side so that the entire character, figure, or pattern can be visually recognized from the side of the light-emitting surface, and at least the light-transmitting member on the light-emitting surface side of the light-emitting sheet.
  • the designable light-transmitting member is a designable light-emitting device formed of a light diffusing material that diffuses light from the light-emitting element.
  • a designable light-emitting device that can make linear shapes representing letters, figures, or patterns stand out and emit light, and that has a small number of parts that must be individually produced as a one-off product.
  • FIG. 2 is a partially enlarged front view of the light-emitting sheet
  • FIG. 3 is a perspective photographic image view of a designable light emitting device.
  • BB and CC range front enlarged view of the designable light emitting device.
  • FIG. 10 is a vertical cross-sectional left side view of the second embodiment of the design display member and the light-emitting sheet
  • FIG. 11 is a vertical cross-sectional left side view of the third embodiment of the design display member and the light-emitting sheet;
  • FIG. 11 is a vertical cross-sectional left side view of the fourth embodiment of the design display member and the light-emitting sheet;
  • FIG. 11 is a vertical cross-sectional left side view of the fifth embodiment of the design display member and the light-emitting sheet;
  • FIG. 10 is a perspective photographic image view of another form of the design display member and the light-emitting sheet;
  • FIG. 1 is a perspective view of a designable light emitting device 1.
  • FIG. The designable light-emitting device 1 has a cubic, hollow box-shaped exterior 7 .
  • a plurality of design display members 6 are arranged adjacent to each other without gaps on at least the front surface of the exterior 7, and the light-emitting sheet 5 is arranged on the surface thereof.
  • the shape of the exterior 7 is not limited to a cube, and various three-dimensional shapes of internal cavities can be used.
  • the overlapping design display member 6 is indicated by an imaginary line. Further, in this embodiment, the up-down direction in FIG.
  • the exterior 7 has a cubic exterior shape and a hollow box shape inside.
  • the external shape of the exterior 7 is not limited to a cube, and may be an external shape other than a cube, such as a prism, a cylinder, a pyramid, or a cone.
  • the surface of the exterior 7 is made of a magnetic material such as a metal plate, and the light-emitting sheet 5 is arranged on at least the surface.
  • the back surface of the light emitting sheet 5 is composed of a magnetized magnetic material such as a rubber magnet, or a magnetic material is arranged so that the magnetic force is exerted on the back surface, and the magnetic material is attracted to the exterior 7 by the magnetic force of the magnetic material.
  • the exterior 7 and the light-emitting sheet 5 are connected (bonded) with a tape such as a vinyl tape so as to connect the side surface of the exterior 7 and the light-emitting sheet edge 57 that is the side surface (edge) of the light-emitting sheet 5 . Therefore, the interior of the exterior 7 is hermetically sealed to the extent that rainwater or the like does not enter.
  • the method of connecting the exterior 7 and the light-emitting sheet 5 is not limited to this, and for example, a method of fixing them in the depth direction or the left-right direction by screwing may be used.
  • the video playback device 2, the transmitter 3, and the receiver 4 shown in FIG. 2 are housed. Note that one or more of the moving image reproducing device 2, the transmitter 3, and the receiver 4 may not be housed in the exterior 7 and may be provided separately.
  • the luminescent sheet 5 has a rectangular thin plate shape.
  • the luminescent sheet 5 has a thickness of 8 mm.
  • the thickness of the luminescent sheet 5 can be 3 mm to 15 mm, preferably 5 mm to 12 mm, and more preferably 8 mm to 10 mm.
  • the light-emitting sheet 5 is composed of a plurality of LEDs 50 (light-emitting portions), which are light-emitting elements, and a non-light-emitting base sheet 51 (non-light-emitting portion) in which all the LEDs 50 are arranged on one surface. Further, the light-emitting sheet 5 is provided with a magnetic layer (not shown) on the back surface. This magnetic layer is a layer of a rubber magnet provided over the entire back surface.
  • the light-emitting sheet 5 only needs to have a magnet arranged in a part thereof so as to apply a magnetic force to a position on the back surface corresponding to the position of the outer packaging 7 .
  • thin magnets may be arranged on the rear surface corresponding to the position of the exterior 7 .
  • the light-emitting sheet 5 has all the LEDs 50 electrically connected on a flexible substrate (not shown), and is connected to the receiver 4 with a signal cable (not shown) so that all the LEDs 50 can be controlled.
  • the design display member 6 is arranged on the light-emitting sheet 5 so as to overlap the surface on which the LEDs 50 are arranged (the light-emitting surface on which the light-emitting elements emit light). Therefore, the light-emitting surface of the light-emitting sheet 5 is arranged on the front side of the designable light-emitting device 1, and the entire light-emitting surface is visible from the front side without the design display member 6.
  • two light-emitting sheets 5A and 5B having the same size and thickness are arranged adjacent to each other without gaps along the entire sides facing each other.
  • the number of light-emitting sheets 5 is not particularly limited, and may be one or more according to the size of the designable light-emitting device 1 .
  • the light-emitting sheet 5A arranged on the upper part of the design light-emitting device 1 and the light-emitting sheet 5B arranged on the lower part of the design light-emitting device 1 are arranged on the same plane.
  • the longitudinal lower side of the light-emitting sheet 5A and the longitudinal upper side of the light-emitting sheet 5B are in contact with each other at the vertical center of the design light-emitting device 1 to form a sheet joint 56 (joint).
  • the two light-emitting sheets 5A and 5B may be entirely curved in the thickness direction instead of being flat, or may be curved in a wave shape in the thickness direction.
  • the two light-emitting sheets 5A and 5B are arranged on the same plane with each other regardless of the form.
  • FIG. 2 is a block diagram showing the configuration of the designable light emitting device 1.
  • the designable light-emitting device 1 includes a moving image reproducing device 2, a transmitter 3 for transmitting moving images, a receiver 4 for receiving moving images, an exterior 7, and two light-emitting sheets 5 (5A, 5B) for displaying moving images. and a design display member 6 placed over the light-emitting surface of the light-emitting sheet 5 .
  • the video playback device 2 includes, for example, a control unit configured by a CPU, a ROM, a RAM, and the like to execute various calculations and control operations, a storage unit configured by a hard disk, a flash memory, and the like to allow reading and writing of information, A communication unit consisting of a LAN board, WiFi unit, etc., connected to the Internet by wire or wirelessly to transmit and receive data, and a touch panel, keyboard, mouse, push button, or a combination of these to enable input by contact operation. It is a computer terminal comprising an input section for receiving input, and a display section configured by a liquid crystal display, an organic EL display, or the like, for displaying images such as characters and drawings.
  • the storage unit stores moving image data.
  • This moving image data is moving image data having pixels for all LEDs 50, with one LED 50 as one pixel.
  • the moving image reproducing device 2 is connected to the transmitter 3 by a monitor cable, reproduces moving image data, and transmits the reproduced moving image data to the transmitter 3 as a video signal.
  • the motion picture reproducing device 2 is a computer terminal, but it is not limited to this form as long as it has a function of transmitting motion picture data to the transmitter 3 .
  • the video playback device 2 may be, for example, a mobile information terminal such as a smart phone or a media player.
  • the transmitter 3 is connected to the video playback device 2 by a monitor cable, and is connected to the receiver 4 by a LAN cable.
  • the transmitter 3 has a moving image data conversion function for converting moving image data received as a video signal into light emission pattern data indicating the light emission color and light emission pattern of the light emitting sheet 5 .
  • the transmitter 3 transmits the converted light emission pattern data to the receiver 4 .
  • This light emission pattern data is composed of moving image data having pixels for all LEDs 50, with one LED 50 as one pixel.
  • the receiver 4 is connected to the transmitter 3 by a LAN cable, and is connected to a plurality of luminous sheets 5 by signal cables.
  • the receiver 4 has a light emission pattern data division function for dividing the light emission pattern data.
  • the receiver 4 divides the light emission pattern data received from the transmitter 3 by the light emission pattern data division function, and transmits each divided light emission pattern data to each corresponding light emission sheet 5 .
  • the light emission pattern data is divided into light emission pattern data for each light emission sheet 5 by the light emission pattern data division function.
  • One piece of light emission pattern data after division is moving image data of the number of pixels corresponding to all the LEDs 50 of one light emitting sheet 5 .
  • the receiver 4 is connected to the transmitter 3 via a LAN cable (wired), but may be connected to the receiver 4 via wireless means such as a wireless LAN.
  • FIG. 3 is a partially enlarged front view of the light-emitting sheet 5.
  • the plurality of LEDs 50 are light-emitting elements of various light colors and all have the same shape and size.
  • the shape of the LED 50 is a square when viewed from one direction, but it is not limited to this.
  • the shape of the LED 50 can be circular or rectangular when viewed from one direction.
  • the plurality of LEDs 50 are embedded in installation holes 52 provided on one surface of the base sheet 51 and are aligned in the vertical and horizontal directions at regular intervals. Therefore, the light-emitting sheet 5 has a configuration in which the base sheet 51 (non-light-emitting portion) that does not emit light is arranged between the LEDs 50 that emit light (light-emitting portion).
  • the color of the surface of the base sheet 51 can be any appropriate color, but is preferably black so that the light emitted from the LEDs 50 is conspicuous.
  • the light-emitting element spacing 53 between the plurality of LEDs 50 can be at least wider than the light-emitting element length 54, which is the length of the side of the LEDs 50 (the diameter if circular), and is 1.5 times the light-emitting element length 54. It is preferable that the length is equal to or greater than, and more preferably, equal to or greater than twice the light emitting element length 54 .
  • the end interval 55 between the LEDs 50 arranged at the extreme ends in the horizontal and vertical directions and the light emitting sheet edge 57 of the light emitting sheet 5 is 50% of the length of the light emitting element interval 53 .
  • the length of the end interval 55 can be in the range of 40 to 60% of the length of the light emitting element interval 53, preferably in the range of 45 to 55%, more preferably 50%. preferable.
  • the size of the LED 50 and the installation hole 52 (the size viewed from the light emitting direction) can be 0.5 mm to 3 mm, preferably 0.7 mm to 2 mm, and more preferably about 1 mm.
  • the base sheet 51 is made of an opaque rubber material and has a rectangular thin plate shape.
  • the base sheet 51 has a part of the back surface portion (the surface portion where the LEDs 50 are not arranged) is made of a rubber magnet so that the magnetic force reaches at least the back surface. That is, the base sheet 51 has a two-layer structure of a rubber material and a rubber magnet, and the magnets are arranged at least in part of the positions that abut against the exterior 7 made of the rubber material (either adhered to the outside or embedded inside). ) A one-layer structure or a one-layer structure made entirely of rubber magnets. Note that the material and shape of the base sheet 51 are not limited to these.
  • the material may be a hard plastic material such as acrylic resin instead of a rubber material.
  • the base sheet 51 may have a circular shape. Furthermore, the base sheet 51 may be provided with other means for fixing with the sheath 7, such as screw holes, without the rubber magnets.
  • the exterior 7 side also has screw holes at positions corresponding to the positions of the screw holes on the base sheet 51 side, and the base sheet 51 (light emitting sheet 5) and the exterior 7 are screwed.
  • male and female hook-and-loop fasteners may be provided on the back surface of the base sheet 51 and the surface of the exterior 7 so as to face each other.
  • the luminescent sheet 5 can be freely attached to and detached from the exterior 7 .
  • the base sheet 51 has a plurality of installation holes 52 on one surface.
  • the installation holes 52 are aligned at equal intervals in the vertical and horizontal directions perpendicular to each other, and the LEDs 50 are embedded therein. Therefore, the opening surface of the installation hole 52 is a light emitting surface.
  • the spacing between each LED 50 can be in the range of 1-5 mm, more preferably in the range of 1.5-4 mm. Note that the method of arranging the LEDs 50 on the base sheet 51 is not limited to this. For example, some or all of the LEDs 50 may be arranged on one side of the base sheet 51 without providing the installation holes 52 . 128 mounting holes 52 and LEDs 50 are arranged in the longitudinal direction of the base sheet 51 and 64 in the lateral direction.
  • the number of installation holes 52 and LEDs 50 can be 50 or more in the longitudinal direction, preferably 80 or more, and can be 25 or more in the width direction, and is 50 or more. is preferred.
  • the base sheet 51 can be of various quadrilaterals including squares, and in that case, the number of installation holes 52 and LEDs 50 should be at least in the lateral direction (since a square has no lateral sides, one side direction). It can be 25 or more, more preferably 50 or more.
  • the light-emitting sheet 5 is composed of the base sheet 51 and the LEDs 50, which are light-emitting elements, but is not limited to this form.
  • the light-emitting sheet 5 may be a monitor with a plurality of light-emitting elements.
  • FIG. 4 is a perspective photographic image view of the designable light-emitting device 1 .
  • the design display member 6 has a square thin plate shape.
  • the design display member 6 has a face (surface) having the largest area, which is equal to the size of the entire surface of the front side where the two light emitting sheets 5A and 5B are arranged side by side, and overlaps the front side surface of the light emitting sheet 5 exactly. are placed in
  • the design display member 6 is composed of a design translucent member 61 and a blank member 62 arranged other than the design translucent member 61 .
  • the design display member 6 has a design translucent member 61 in a linear shape representing characters, figures, or patterns (a design shape representing characters, figures, or patterns by strokes) in a part of a square blank member 62 . is provided.
  • the designable translucent member 61 is formed of a milky white (translucent) light diffusive and translucent material (light diffusing material). That is, the light (light rays) emitted from the light-emitting surface side of the light-emitting sheet 5 and incident on the designable translucent member 61 from the rear surface of the designable translucent member 61 passes through the interior of the designable translucent member 61. and emitted from the exposed surface on the front side (surface side).
  • the designable light-transmitting member 61 is formed in the shape of a character, a figure, or a pattern so that it can be visually recognized from the front side by a line having a certain thickness (width).
  • the designable light-transmitting member 61 has a curved shape in which the center in the width direction of the linear shape swells in a semicircular shape toward the front side (surface side) in the thickness direction.
  • the designable light-transmitting member 61 in this embodiment is formed into a design representing "B" with a border, a design representing "O” with a border, and a design representing "three semicircles with different diameters".
  • the length in the width direction (thickness of the linear line) of the translucent designable member 61 is at least equal to or longer than the light emitting element length 54 of each LED 50, and includes two or more LEDs 50 arranged in a line. It has a length, preferably a length including three or more, more preferably a length including four or more, and preferably a length including five or more.
  • one or more of the individual designs (one character, one figure, one pattern) that satisfies the above width direction length condition in the designable translucent member 61 can be one or more of the individual designs. Among them, it is preferably at least half, more preferably at least 70%, and preferably at least 90%.
  • one individual design may have one or more linear shapes that satisfy the above-mentioned width direction length condition, may be more than half, and may be more than 70%. More preferably, it is preferably 90% or more. Further, in one linear shape satisfying the above width direction length condition in the designable translucent member 61, the portion that satisfies the above width direction length condition can be 50% or more. It is more preferable to make it 10% or more, and preferably 90% or more.
  • the thickness (width) of the designable translucent member 61 may not be constant, and may be a shape that gradually becomes thicker (gradually thinner) or a shape that is thicker in one part (thin in one part). may have
  • the design translucent member 61 has a thickness of 10 mm and is made of a milky white acrylic material having a transmittance (total light transmittance) of 71.7 to 73.1%.
  • the thickness is such that it receives light emitted from the light-emitting sheet 5 arranged on the back side (emission of light), diffuses the light inside, and transmits the light to the front side.
  • the designable translucent member 61 is not limited to the configuration described above, and may be a milky white acrylic material having a thickness of 5 mm and a transmittance (total light transmittance) of 42.3%.
  • the designable translucent member 61 can have a thickness of 3 mm to 15 mm, preferably 4 mm to 12 mm, and more preferably 5 mm to 10 mm. Further, the transmittance of the designable translucent member 61 can be 10% to 90%, preferably 20% to 80%, and more preferably 30% to 70%. In addition, the transmittance of the designable light-transmitting member 61 can vary within a suitable range depending on the thickness of the designable light-transmitting member 61.
  • the degree of total light transmittance can be in the range of 10 to 60%, preferably in the range of 20 to 55%, more preferably in the range of 30 to 50%. Further, for example, if the thickness of the designable translucent member 61 is 8 mm or more and less than 15 mm, the transmittance can be in the range of 40 to 90% in total light transmittance, and is in the range of 50 to 80%. is preferred, and a range of 60 to 75% is more preferred.
  • the blank member 62 is a thin plate made of opaque plastic. Therefore, the light-emitting sheet 5 cannot be seen through the blank member 62 from the front side.
  • the blank member 62 is overlapped on the light-emitting surface side of the light-emitting sheet 5 in contact with, adjacent to, or close to.
  • the blank member 62 is a single plastic plate cut out in a linear shape with a constant thickness (width) and designed to represent "B", "O", and "three semicircles with different diameters”.
  • Blank member holes 63 representing three types of designs are provided, and design translucent members 61 are fitted into the respective blank member holes 63 . That is, the blank member 62 constitutes most or all of the design display member 6 other than the design translucent member 61 .
  • the blank member 62 is opaque in this embodiment, it is not limited to being opaque as long as it has a different degree of transmittance (transparency) from that of the designable translucent member 61 .
  • the blank member 62 may have a higher transmittance (transparency) than the translucent design member 61 .
  • FIG. 5 is a cross-sectional view of the design display member 6 and the light-emitting sheet 5 in FIG. 1 taken along line AA.
  • the design display member 6 is arranged such that a part of the design translucent member 61 overlaps the sheet joint 56 when the two light-emitting sheets 5A and 5B are overlapped.
  • the designable light-transmitting member 61 is arranged on the side of the two light-emitting sheets 5A and 5B on which the LEDs 50 emit light so as to straddle and cover the sheet joint 56 of the two light-emitting sheets 5A and 5B.
  • the thickness in the height direction (horizontal direction in the drawing), which is the direction of light transmission, of the designable translucent member 61 is configured to be greater than the thickness in the height direction (horizontal direction in the drawing) of the blank member 62 .
  • the translucent member 61 has a rear surface (left side surface in the drawing) that is flush with the rear surface of the blank member 62, and a peripheral surface (upper and lower surfaces in the drawing) of the blank member hole 63 of the blank member 62 (shown in the drawing). upper and lower surfaces) without gaps.
  • FIG. 6 is an enlarged front view of the designable light-emitting device 1 in FIG. 1 taken along line BB and CC.
  • the LEDs 50 are arranged vertically within the range of the design translucent member 61 represented by a line having a thickness (width). They are arranged so that a plurality of them are included in one left and right direction.
  • the moving image reproducing device 2 stores moving image data to be reproduced in advance.
  • the moving image reproducing device 2 may be configured to acquire moving image data from the outside in real time and transmit the data to the transmitter 3 .
  • the moving image reproduction device 2 transmits moving image data to the transmitter 3 .
  • the moving image data is a moving image corresponding to the design (characters, figures, or patterns) of the design translucent member 61 .
  • This moving image is, for example, a moving image in which the letter "B" gradually appears from the upper left, or a moving image in which "three semicircles with different diameters" gradually appear from each end.
  • a video (or a still image) in which figures such as “three semicircles” appear, or figures such as “B", “O”, and “three semicircles with different diameters” are bright and other parts are dark.
  • moving image data is used, but the image reproduced by the moving image reproducing device 2 is not limited to this. ) can be used.
  • the transmitter 3 receives the moving image data transmitted from the moving image reproducing device 2, and converts the received moving image data into light emission pattern data of the LEDs 50 by the moving image data conversion function.
  • the transmitter 3 transmits light emission pattern data to the receiver 4 .
  • the receiver 4 receives the light emission pattern data transmitted from the transmitter 3, and divides the received light emission pattern data so as to correspond to the two light emission sheets 5A and 5B by the light emission pattern data division function.
  • the moving image data displayed in the square display area is divided so that the upper half is displayed on the luminous sheet 5A and the lower half is displayed on the luminous sheet 5B.
  • the receiver 4 outputs the divided light emission pattern data to the light emission sheets 5A and 5B, and controls the light emission colors and light emission patterns of all the LEDs 50 . Therefore, the receiver 4 functions as a control device for the luminescent sheet 5 .
  • the receiver 4 is used as the control device, but the transmitter 3 or the video playback device 2 may be used as the control device.
  • All the LEDs 50 of the luminous sheet 5 are controlled by the receiver 4 . Then, the LED 50 emits light in the front direction so as to correspond to the light emission pattern data. The light (light rays) emitted by the light emission is diffused inside the design translucent member 61 and is transmitted in the front direction. At this time, the design of the design translucent member 61, which shines evenly and evenly, is clearly visible from the front side (the side where the light-emitting surface can be visually recognized). That is, the receiver 4 executes design emphasizing light emission for controlling light emission of the LEDs 50 so as to emphasize the design of the designable translucent member 61 with a light emission pattern corresponding to the position of the designable translucent member 61 and the design shape. do.
  • the designable light-emitting device 1 includes a light-emitting sheet 5 having a plurality of LEDs 50 (light-emitting elements) arranged on its surface, and a designable light-transmitting device formed of a light diffusing material formed in a linear shape representing characters, figures, or patterns.
  • a member 61 and a blank member 62 arranged in an area other than the design translucent member 61 are provided, and the receiver 4 emits design emphasizing light emission by causing the LEDs 50 to emit light so as to correspond to the position of the design translucent member 61. It is a configuration to control. With this configuration, linear shapes representing characters, graphics, or patterns can be made to stand out and emit light. Further, since the LED 50 at the position corresponding to the designable translucent member 61 is not directly visible, the designable translucent member 61 does not look like dots, and the light is diffused within the designable translucent member 61. Since the designable light-transmitting member 61 uniformly emits light, the design of the designable light-transmitting member 61 can be clearly recognized. In addition, compared to the conventional box letters that must be produced according to individual orders even for the housing, since there are fewer parts that must be individually produced as a one-off product, the designable light emitting device 1 can be inexpensive. .
  • the blank member 62 is made of a material whose transmittance (transparency) for transmitting light is different from the transmittance (transparency) of the design translucent member 61 .
  • the boundary line between the designable translucent member 61 and the blank member 62 becomes clear, and the design of the designable translucent member 61 can be recognized more clearly.
  • the blank member 62 an opaque material, only the design translucent member 61 can emit light, and the design can be clearly recognized.
  • the receiver 4 controls the light emission of the LED 50 by light emission pattern data converted from video data.
  • the color and brightness of light emitted from the LEDs 50 can be changed in various ways, and an effect in which the design translucent member 61 changes in various colors and brightness can be realized.
  • the receiver 4 controls the light emission of all the LEDs 50 of the plurality of light-emitting sheets 5, and at least part of the designable translucent member 61 (including the designable translucent member 61) is composed of the two light-emitting sheets 5A. , 5B so as to straddle the sheet seam 56 .
  • the designable light-transmitting member 61 is composed of the two light-emitting sheets 5A. , 5B so as to straddle the sheet seam 56 .
  • the designable translucent member 61 exists on the sheet joint 56, the light from the LED 50 is diffused within the designable translucent member 61, and the upper portion of the sheet joint 56 is not darkened and is uniform. It can emit light.
  • the distance between the edge LEDs 50 and the edge 57 of the light-emitting sheet is half the distance between the adjacent LEDs 50, so that the distance between the LEDs 50 in the portion straddling the sheet seam 56 is the same as the distance between the LEDs 50 in other portions. becomes.
  • the design translucent member 61 at the sheet seam 56 does not become slightly dark or slightly bright, and can emit light uniformly.
  • the edge spacing 55 which is the spacing between the LEDs 50 arranged at the extreme ends in the horizontal and vertical directions and the edge of the light-emitting sheet 5, is 40 to 60% of the light-emitting element spacing 53.
  • the designable translucent member 61 is milky white and has a thickness in the range of 5 mm to 12 mm and a transmittance (total light transmittance) in the range of 30 to 80%. With this configuration, the design of the designable light-transmitting member 61 can be clearly seen from a distance, and the designable light-transmitting member 61 has transparency to the extent that the LED 50 at the position corresponding to the designable light-transmitting member 61 cannot be visually recognized. can.
  • the LEDs 50 provided at positions facing the rear surface of the design translucent member 61 are caused to emit light, and the other LEDs 50 are not caused to emit light. Only the translucent member 61 emits light clearly and brightly to make the sign stand out, and the design translucent member 61 can be made bright and conspicuous by not causing the LEDs 50 in other portions to emit light.
  • the LEDs 50 at positions not facing the rear surface of the designable translucent member 61 do not emit light, so that light leaks out from appropriate gaps, etc., and the light-emitting sheets 5A and 5B and the designable translucent member 61 provide effects and visual recognition. Clear visibility can be obtained without disturbing the line shapes representing the desired characters, figures, or patterns.
  • the LEDs 50 at positions not facing the rear surface of the translucent design member 61 do not emit light, it is possible to prevent unnecessary power from being used.
  • the back surface of the light emitting sheet 5 is a rubber magnet or a magnetic material is arranged so that the magnetic force is applied to the back surface of the light emitting sheet 5, it can be used by being attracted not only to a flat surface but also to a curved surface or a spherical surface. can be done.
  • the blank member 62 may be made of a translucent material having a lower transmittance (transparency) than the design translucent member 61 instead of an opaque material.
  • the boundary line between the designable translucent member 61 and the blank member 62 can be visually recognized as dimly shining, and the design can be changed.
  • the LED 50 that emits light in the shape of the designable translucent member 61 emits light so that the brightness gradually decreases toward the edge of the designable translucent member 61 toward the outside.
  • the area around 61 can be dimly illuminated.
  • the blank member 62 can diffuse the light of the LED 50 emitted in a place where the design translucent member 61 does not exist, for example, a pattern such as a flower formed by the light emission pattern of the LED 50 can be placed on the blank member 62. You can create effects such as placing multiple lights and making them glow vaguely.
  • the blank member 62 may be formed by a transparent light guide plate.
  • the LED 50 at the position corresponding to the blank member 62 can be visually recognized. Therefore, the design represented by the design translucent member 61 can be rendered such that the LEDs 50 cannot be visually recognized, and the light emission pattern of the LEDs 50 corresponding to the blank member 62 can be rendered visually visible in dots.
  • a plurality of receivers 4 may be provided and the plurality of receivers 4 may be connected to one transmitter 3 .
  • one luminous pattern can be displayed on a plurality of luminous sheets 5 . Therefore, for example, only one transmitter 3 can be provided inside the store for a plurality of light-emitting sheets 5 and design display members 6 provided outside the store, improving convenience.
  • FIG. 7A is a vertical cross-sectional left side view of the second embodiment of the design display member 6 and the light-emitting sheet 5
  • FIG. 7B is a vertical cross-sectional left side view of the third embodiment of the design display member 6 and the light-emitting sheet 5
  • 7C is a vertical left side view of the design display member 6 and the light emitting sheet 5 in the fourth embodiment
  • FIG. 7D is a vertical left side view of the design display member 6 and the light emitting sheet 5 in the fifth embodiment.
  • the shape of the designable translucent member 61 can be formed so as to swell in the outer peripheral direction from a portion embedded in the blank member 62 .
  • the designable translucent member 61 has an embedded portion 611 embedded in the blank member 62 and a design portion 615 exposed on the front side.
  • the embedded portion 611 has a shape corresponding to the blank member hole 63 (the same width as the hole and the same height as the hole height), and is fitted into the blank member hole 63 . Specifically, the embedded portion 611 has the same width as the width of all or part of the blank member hole 63 and has a height equal to or less than the height of the blank member hole 63 . The embedded portion 611 is embedded in at least a portion of the blank member hole 63 . Therefore, the designable translucent member 61 is fixed to the blank member 62 by the embedding portion 611 .
  • the design portion 615 is formed continuously from the embedding portion 611, is formed to be wider than the width of the embedding portion 611, and has a design end portion 612 which is the end portion of the design shape having the widest width in the outer peripheral direction. . At this time, the length of the design portion 615 in the width direction becomes the design portion width 614 that is the width of the design portion 615 .
  • the design portion width 614 is longer (thicker) than the embedding portion width 613, which is the width of the embedding portion 611, so as to expand to both sides in the width direction.
  • the boundary line between the embedded portion 611 and the blank member 62 is not visually recognized due to the designed portion 615 .
  • the shape from the embedded portion 611 to the design end portion 612 hides the boundary line between the embedded portion 611 and the blank member 62 when viewed from the front side (the boundary line between the embedded portion 611 and the blank member 62 is hidden). is not visible).
  • the cross section in the front depth direction of the design shape of the designable translucent member 61 may be spherical with a diameter larger than the width of the embedding portion 611 (see FIG. 7A).
  • the portion from the embedding portion 611 to the design end portion 612 may be linearly inclined (see FIG. 7B).
  • the cross section in the front depth direction of the design shape of the designable translucent member 61 may be a semicircular shape whose diameter is larger than the width of the embedding portion 611 (see FIG. 7C).
  • the embedding portion 611 and the design end portion 612 may be continuously and linearly inclined (see FIG. 7D).
  • FIG. 8 is a perspective photographic image view of the design display member 6 and the luminescent sheet 5 in another form.
  • magnetic screws may be provided in the exterior 7 at positions where the vicinity of the end of the light emitting sheet 5 overlaps.
  • screws fixed in the depth direction can be provided at positions corresponding to the magnets arranged on the light-emitting sheet 5 of the exterior 7 so as to overlap.
  • a screw adjustment screw
  • the position of the light emitting sheet 5 can be arranged further in the depth direction.
  • a screw (adjustment screw) provided on the exterior the position of the light emitting sheet 5 can be arranged in the front direction.
  • a plurality of light-emitting sheets 5 can be reliably arranged on the same plane. Therefore, it is possible to provide the designable light-emitting device 1 that emits light more uniformly without causing a difference in light distance (unevenness in the amount of light) due to a shift in the depth direction.
  • This invention can be used for the manufacture and sale of designable light-emitting devices that are installed and used as advertisements.

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  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Engineering & Computer Science (AREA)
  • Theoretical Computer Science (AREA)
  • Illuminated Signs And Luminous Advertising (AREA)

Abstract

L'invention concerne un dispositif électroluminescent décoratif qui est capable d'émettre de la lumière tout en mettant en valeur une forme linéaire représentant un personnage, une figure ou un motif, et qui comporte peu de parties qui doivent chacune être individuellement produites en tant que produit unique. Un dispositif électroluminescent décoratif 1 comprend : une feuille électroluminescente 5 comportant une pluralité de DEL 60 disposées sur une surface ; un récepteur 4 servant à commander l'émission de lumière de la pluralité de DEL ; un élément décoratif de transmission de lumière 61 qui est doté d'une propriété de transmission de la lumière, qui se présente sous une forme linéaire représentant un personnage, une figure ou un motif, et qui est disposé sur le côté de la surface d'émission de lumière de la feuille électroluminescente 5 de telle sorte que la totalité du personnage, de la figure ou du motif est visible depuis le côté à partir duquel la surface d'émission de lumière est regardée ; et un élément d'ébauche 62 disposé sur le côté de surface d'émission de lumière de la feuille électroluminescente 5 et au moins dans une région autre que l'élément décoratif de transmission de lumière 61. Le récepteur 4 est conçu pour mettre en œuvre une émission lumineuse qui met la conception en valeur en amenant la DEL 60 correspondant à la position de l'élément décoratif de transmission de lumière 61 à émettre de la lumière. L'élément décoratif de transmission de lumière 61 est constitué d'un matériau de diffusion de lumière qui diffuse la lumière provenant de l'élément électroluminescent 60.
PCT/JP2022/046710 2021-12-20 2022-12-19 Dispositif électroluminescent décoratif WO2023120486A1 (fr)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
JP2021-206401 2021-12-20
JP2021206401A JP7155382B1 (ja) 2021-12-20 2021-12-20 意匠性発光装置

Publications (1)

Publication Number Publication Date
WO2023120486A1 true WO2023120486A1 (fr) 2023-06-29

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JP (1) JP7155382B1 (fr)
WO (1) WO2023120486A1 (fr)

Citations (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS5017343Y1 (fr) * 1970-11-30 1975-05-28
JPS5571377U (fr) * 1978-11-08 1980-05-16
JPH1145062A (ja) * 1997-07-29 1999-02-16 Yuuho:Kk 表示装置
JP3114499U (ja) * 2005-03-14 2005-10-27 株式会社コウシュウ 看板装置
JP3118430U (ja) * 2005-11-08 2006-01-26 猷祥 蕭 発光構造体
JP3124598U (ja) * 2006-06-01 2006-08-24 弘 原 内照式表示器
JP2007271862A (ja) * 2006-03-31 2007-10-18 Tanaka Mokuzai Kogyo Kk パターン発光機能付き戸
JP3188817U (ja) * 2013-09-12 2014-02-13 アイエネ企画株式会社 看板の表面照度を上げるled面発光シート

Patent Citations (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS5017343Y1 (fr) * 1970-11-30 1975-05-28
JPS5571377U (fr) * 1978-11-08 1980-05-16
JPH1145062A (ja) * 1997-07-29 1999-02-16 Yuuho:Kk 表示装置
JP3114499U (ja) * 2005-03-14 2005-10-27 株式会社コウシュウ 看板装置
JP3118430U (ja) * 2005-11-08 2006-01-26 猷祥 蕭 発光構造体
JP2007271862A (ja) * 2006-03-31 2007-10-18 Tanaka Mokuzai Kogyo Kk パターン発光機能付き戸
JP3124598U (ja) * 2006-06-01 2006-08-24 弘 原 内照式表示器
JP3188817U (ja) * 2013-09-12 2014-02-13 アイエネ企画株式会社 看板の表面照度を上げるled面発光シート

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JP7155382B1 (ja) 2022-10-18

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