WO2015133488A1 - Video display device - Google Patents

Video display device Download PDF

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Publication number
WO2015133488A1
WO2015133488A1 PCT/JP2015/056239 JP2015056239W WO2015133488A1 WO 2015133488 A1 WO2015133488 A1 WO 2015133488A1 JP 2015056239 W JP2015056239 W JP 2015056239W WO 2015133488 A1 WO2015133488 A1 WO 2015133488A1
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WO
WIPO (PCT)
Prior art keywords
liquid crystal
crystal display
display device
display panel
sin
Prior art date
Application number
PCT/JP2015/056239
Other languages
French (fr)
Japanese (ja)
Inventor
智彦 大谷
代工 康宏
Original Assignee
株式会社オルタステクノロジー
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Application filed by 株式会社オルタステクノロジー filed Critical 株式会社オルタステクノロジー
Publication of WO2015133488A1 publication Critical patent/WO2015133488A1/en

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    • GPHYSICS
    • G02OPTICS
    • G02FOPTICAL DEVICES OR ARRANGEMENTS FOR THE CONTROL OF LIGHT BY MODIFICATION OF THE OPTICAL PROPERTIES OF THE MEDIA OF THE ELEMENTS INVOLVED THEREIN; NON-LINEAR OPTICS; FREQUENCY-CHANGING OF LIGHT; OPTICAL LOGIC ELEMENTS; OPTICAL ANALOGUE/DIGITAL CONVERTERS
    • G02F1/00Devices or arrangements for the control of the intensity, colour, phase, polarisation or direction of light arriving from an independent light source, e.g. switching, gating or modulating; Non-linear optics
    • G02F1/01Devices or arrangements for the control of the intensity, colour, phase, polarisation or direction of light arriving from an independent light source, e.g. switching, gating or modulating; Non-linear optics for the control of the intensity, phase, polarisation or colour 
    • G02F1/13Devices or arrangements for the control of the intensity, colour, phase, polarisation or direction of light arriving from an independent light source, e.g. switching, gating or modulating; Non-linear optics for the control of the intensity, phase, polarisation or colour  based on liquid crystals, e.g. single liquid crystal display cells
    • G02F1/133Constructional arrangements; Operation of liquid crystal cells; Circuit arrangements
    • G02F1/1333Constructional arrangements; Manufacturing methods
    • G02F1/1335Structural association of cells with optical devices, e.g. polarisers or reflectors
    • G02F1/133526Lenses, e.g. microlenses or Fresnel lenses
    • GPHYSICS
    • G02OPTICS
    • G02FOPTICAL DEVICES OR ARRANGEMENTS FOR THE CONTROL OF LIGHT BY MODIFICATION OF THE OPTICAL PROPERTIES OF THE MEDIA OF THE ELEMENTS INVOLVED THEREIN; NON-LINEAR OPTICS; FREQUENCY-CHANGING OF LIGHT; OPTICAL LOGIC ELEMENTS; OPTICAL ANALOGUE/DIGITAL CONVERTERS
    • G02F1/00Devices or arrangements for the control of the intensity, colour, phase, polarisation or direction of light arriving from an independent light source, e.g. switching, gating or modulating; Non-linear optics
    • G02F1/01Devices or arrangements for the control of the intensity, colour, phase, polarisation or direction of light arriving from an independent light source, e.g. switching, gating or modulating; Non-linear optics for the control of the intensity, phase, polarisation or colour 
    • G02F1/13Devices or arrangements for the control of the intensity, colour, phase, polarisation or direction of light arriving from an independent light source, e.g. switching, gating or modulating; Non-linear optics for the control of the intensity, phase, polarisation or colour  based on liquid crystals, e.g. single liquid crystal display cells
    • G02F1/133Constructional arrangements; Operation of liquid crystal cells; Circuit arrangements
    • G02F1/1333Constructional arrangements; Manufacturing methods
    • G02F1/13336Combining plural substrates to produce large-area displays, e.g. tiled displays
    • GPHYSICS
    • G02OPTICS
    • G02FOPTICAL DEVICES OR ARRANGEMENTS FOR THE CONTROL OF LIGHT BY MODIFICATION OF THE OPTICAL PROPERTIES OF THE MEDIA OF THE ELEMENTS INVOLVED THEREIN; NON-LINEAR OPTICS; FREQUENCY-CHANGING OF LIGHT; OPTICAL LOGIC ELEMENTS; OPTICAL ANALOGUE/DIGITAL CONVERTERS
    • G02F1/00Devices or arrangements for the control of the intensity, colour, phase, polarisation or direction of light arriving from an independent light source, e.g. switching, gating or modulating; Non-linear optics
    • G02F1/01Devices or arrangements for the control of the intensity, colour, phase, polarisation or direction of light arriving from an independent light source, e.g. switching, gating or modulating; Non-linear optics for the control of the intensity, phase, polarisation or colour 
    • G02F1/13Devices or arrangements for the control of the intensity, colour, phase, polarisation or direction of light arriving from an independent light source, e.g. switching, gating or modulating; Non-linear optics for the control of the intensity, phase, polarisation or colour  based on liquid crystals, e.g. single liquid crystal display cells
    • G02F1/133Constructional arrangements; Operation of liquid crystal cells; Circuit arrangements
    • G02F1/1333Constructional arrangements; Manufacturing methods
    • G02F1/1335Structural association of cells with optical devices, e.g. polarisers or reflectors
    • G02F1/133524Light-guides, e.g. fibre-optic bundles, louvered or jalousie light-guides

Definitions

  • the present invention relates to a video display device, and more particularly to a video display device including a liquid crystal display device.
  • Liquid crystal display devices are used in various video display devices, for example, pachinko machines and slot machines as game machines.
  • a main display such as a large liquid crystal display device and a movable accessory (for example, a gimmick that is equipped with an LED etc. on a plastic material and moves brilliantly) are arranged.
  • a small liquid crystal display device for performing sub-displays is arranged, and sub-displays that sometimes move comically while being synchronized with the content and sound of the main display are used as a technique for exciting the effects.
  • the present invention provides a video display device capable of making the frame at the joint between two displays invisible.
  • a video display device includes a first liquid crystal display panel having a first frame, and a second liquid crystal display panel having a second frame arranged in a first direction with the first liquid crystal display panel. And first and second prism sheets disposed at a distance from the first and second liquid crystal display panels.
  • the first prism sheet includes a first base and a plurality of first triangular prisms provided on the first base, and each of the plurality of first triangular prisms includes the first liquid crystal display panel and the first liquid crystal display panel. It has an inclined surface that inclines in a direction away from the joint with the second liquid crystal display panel.
  • the second prism sheet includes a second base and a plurality of second triangular prisms provided on the second base, and each of the plurality of second triangular prisms is inclined in a direction away from the joint portion. Has an inclined surface.
  • a video display device includes a first liquid crystal display panel having a first frame, and a second liquid crystal display panel having a second frame arranged in a first direction with the first liquid crystal display panel. And first and second prism sheets disposed at a distance from the first and second liquid crystal display panels.
  • the first prism sheet includes a first base and a plurality of first triangular prisms provided on the first base, and each of the plurality of first triangular prisms includes the first liquid crystal display panel and the first liquid crystal display panel. It has an inclined surface that inclines in a direction away from the joint with the second liquid crystal display panel.
  • the second prism sheet includes a second base and a plurality of second triangular prisms provided on the second base, and each of the plurality of second triangular prisms is inclined in a direction away from the joint portion. Has an inclined surface.
  • FIG. 1 is a block diagram of a video display device according to a first embodiment.
  • the figure explaining a mode that the liquid crystal display device of 1st Embodiment was seen from the diagonal direction only by angle (theta).
  • FIG. 21 is a diagram illustrating a state in which the liquid crystal display device illustrated in FIG. 20 is viewed from the right side by an angle ⁇ .
  • FIG. 6 is a diagram illustrating an image displayed by a liquid crystal display panel according to an example. The perspective view explaining a mode that the screen was seen from the front about the liquid crystal display device concerning an example. The perspective view explaining a mode that the liquid crystal display device which concerns on an Example looked at the screen from the right side by angle (theta).
  • FIG. 1 is a block diagram of a video display apparatus 10 according to the first embodiment of the present invention.
  • the video display device 10 includes a liquid crystal display device 11, scanning drivers (scanning line driving circuits) 12-1 and 12-2, signal drivers (signal line driving circuits) 13-1 and 13-2, and a common voltage supply circuit. 14, a voltage generation circuit 15, and a control circuit 16.
  • an active matrix liquid crystal display device will be described as an example.
  • the liquid crystal display device 11 includes a sub display device 11-1 and a sub display device 11-2.
  • Each of the sub display devices 11-1 and 11-2 is provided with a plurality of scanning lines GL each extending in the row direction (X direction) and a plurality of signal lines SL each extending in the column direction (Y direction).
  • a pixel 17 is disposed in each of the intersecting regions of the plurality of scanning lines GL and the plurality of signal lines SL.
  • the plurality of pixels 17 are arranged in a matrix.
  • FIG. 2 is a circuit diagram of a pixel array included in the liquid crystal display device 11. In FIG. 2, four pixels are extracted and shown.
  • the pixel 17 includes a switching element 18, a liquid crystal capacitor Clc, and a storage capacitor Cs.
  • the source of the TFT 18 is electrically connected to the signal line SL.
  • the gate of the TFT 18 is electrically connected to the scanning line GL.
  • the drain of the TFT 18 is electrically connected to the liquid crystal capacitor Clc.
  • the liquid crystal capacitor Clc includes a pixel electrode, a common electrode, and a liquid crystal layer sandwiched between them.
  • the storage capacitor Cs is connected in parallel to the liquid crystal capacitor Clc.
  • the storage capacitor Cs has a function of suppressing the potential fluctuation generated in the pixel electrode and holding the drive voltage applied to the pixel electrode until the drive voltage corresponding to the next signal is applied.
  • the storage capacitor Cs includes a pixel electrode, a storage electrode (storage capacitor line), and an insulating film sandwiched between them.
  • a common voltage Vcom is applied to the common electrode and the storage electrode by the common voltage supply circuit 14.
  • the scanning driver 12-1 is connected to a plurality of scanning lines GL arranged in the sub display device 11-1, and receives a vertical control signal VS1 from the control circuit 16. Based on the vertical control signal VS1, the scanning driver 12-1 applies a scanning signal for controlling on and off of the TFT 18 included in the sub display device 11-1 to the scanning line GL.
  • the scanning driver 12-2 is connected to a plurality of scanning lines GL arranged in the sub display device 11-2, and receives a vertical control signal VS2 from the control circuit 16.
  • the scanning driver 12-2 applies a scanning signal for controlling on and off of the TFT 18 included in the sub display device 11-2 to the scanning line GL based on the vertical control signal VS2.
  • the signal driver 13-1 is connected to a plurality of signal lines SL provided in the sub display device 11-1, and receives a horizontal control signal HS1 and display data DT1 from the control circuit 16.
  • the signal driver 13-1 applies a gradation signal (drive voltage) corresponding to the display data DT1 to the signal line SL based on the horizontal control signal HS1.
  • the signal driver 13-2 is connected to a plurality of signal lines SL provided in the sub display device 11-2, and receives a horizontal control signal HS2 and display data DT2 from the control circuit 16.
  • the signal driver 13-2 applies a gradation signal (drive voltage) corresponding to the display data DT2 to the signal line SL based on the horizontal control signal HS2.
  • the common voltage supply circuit 14 generates a common voltage Vcom and supplies it to the sub display devices 11-1 and 11-2.
  • the control circuit 16 receives image data DT from the outside. Based on the image data DT, the control circuit 16 generates image data DT1 for the sub display device 11-1 and image data DT2 for the sub display device 11-2. The control circuit 16 sends the vertical control signals VS1 and VS2 to the scanning drivers 12-1 and 12-2, respectively, and also sends the horizontal control signals HS1 and HS2 and the image data DT1 and DT2 to the signal drivers 13-1 and 13-, respectively. Send to 2.
  • the voltage generation circuit 15 receives power from the outside.
  • the voltage generation circuit 15 generates a gate voltage necessary for generating a scanning signal and supplies it to the scanning drivers 12-1 and 12-2. Further, the voltage generation circuit 15 generates a drive voltage necessary for driving the pixel and supplies it to the signal drivers 13-1 and 13-2. In addition, the voltage generation circuit 15 generates various voltages necessary for the operation of the video display device 10 and supplies them to each circuit unit as necessary.
  • the TFT 18 included in an arbitrary pixel 17 when the TFT 18 included in an arbitrary pixel 17 is turned on, a driving voltage is applied to the pixel electrode via the signal line SL, and the voltage between the driving voltage and the common voltage Vcom is determined.
  • the alignment state of the liquid crystal changes according to the difference.
  • the transmission state of light incident on the sub display devices 11-1 and 11-2 from the light source unit (backlight) is changed, and image display is performed.
  • FIG. 3 is a plan view (a) and a sectional view (b) of the liquid crystal display device 11.
  • the sub display device 11-1 includes a rectangular screen 21-1 and a rectangular frame 20-1 surrounding the screen 21-1.
  • the sub display device 11-2 includes a rectangular screen 21-2 and a rectangular frame 20-2 surrounding the screen 21-2.
  • the frame is an area in which an image is not displayed in the same plane as the screen.
  • Images IM1 and IM2 are displayed on the screens 21-1 and 21-2, respectively.
  • FIG. 3A shows semicircle images IM1 and IM2 as an example. In FIG. 3A, the prism sheets 25-1 and 25-2 shown in FIG. 3B are not shown.
  • the sub display device 11-1 includes a case 22-1, a light source unit (backlight unit) 23-1, a liquid crystal display panel 24-1, and a prism sheet 25-1.
  • the light source unit 23-1 and the liquid crystal display panel 24-1 are accommodated in, for example, the case 22-1.
  • the liquid crystal display panel 24-1 is disposed above the light source unit 23-1.
  • the prism sheet 25-1 is disposed above the liquid crystal display panel 24-1 and is provided so as to be in contact with the upper part of the frame (edge) of the case 22-1.
  • the prism sheet 25-1 has the same size (planar shape) as the liquid crystal display panel 24-1.
  • the liquid crystal display panel 24-1 has a frame 24A-1 around it, and the inside of the frame 24A-1 is a screen.
  • the frame 24A-1 is a black portion light-shielded by the light-shielding film, and a peripheral circuit of the pixel array of the liquid crystal display panel 24-1 is disposed on the frame 24A-1.
  • the sub display device 11-2 includes a case 22-2, a light source unit 23-2, a liquid crystal display panel 24-2, and a prism sheet 25-2.
  • the liquid crystal display panel 24-2 includes a frame 24A-2 around the liquid crystal display panel 24-2.
  • the frame 20-1 in the plan view of FIG. 3A corresponds to the combined portion of the frame 24A-1 and the frame of the case 22-1 in the cross-sectional view of FIG.
  • the frame 20-2 in the plan view of FIG. 3A corresponds to the combined portion of the frame 24A-2 and the frame of the case 22-2 in the cross-sectional view of FIG.
  • the case for accommodating the liquid crystal display panel is not an essential element of the present invention, and therefore it is not necessary to particularly distinguish the frame of the liquid crystal display panel from the frame of the case, and an area (screen) in which an image is displayed. Means the frame of the liquid crystal display panel.
  • the frame 24A-1 and 4A-2 of the liquid crystal display panels 24-1 and 24-2 are respectively the frame 20-1 of the sub-display devices 11-1 and 11-2, unless otherwise specifically distinguished. , 20-2. Further, the liquid crystal display panel 24-1 and the liquid crystal display panel 24-2 are directly connected to each other except for the frames of the cases 22-1 and 22-2 at the joint portion 26 between the liquid crystal display panel 24-1 and the liquid crystal display panel 24-2.
  • the liquid crystal display device 11 is configured so as to be lined up with each other is also conceivable.
  • FIG. 4 is a cross-sectional view of the prism sheets 25-1 and 25-2.
  • FIG. 5 is a perspective view of the prism sheets 25-1 and 25-2.
  • the prism sheet 25-1 includes a base (base) 25A-1 and a plurality of triangular prisms 25B-1 provided on the entire surface of the base 25A-1.
  • the base 25A-1 has a rectangular cross section, and has the same planar shape as the outer shape of the sub display device 11-1.
  • the plurality of triangular prisms 25B-1 are arranged side by side in the horizontal direction of the screen 21-1.
  • Each triangular prism 25B-1 is composed of a triangular prism whose section is a right triangle.
  • the prism sheet 25-2 includes a base 25A-2 and a plurality of triangular prisms 25B-2 provided on the entire surface of the base 25A-2.
  • the triangular prism 25B-1 and the triangular prism 25B-2 are arranged so that their inclined surfaces face each other. That is, the triangular prism 25B-1 has an inclined surface that is inclined in a direction away from the central portion (the portion where the sub display device 11-1 and the sub display device 11-2 are in contact) (the left direction in the figure). Further, the triangular prism 25B-2 has an inclined surface that is inclined in a direction away from the central portion (right direction in the figure).
  • the screen 21-1 and the screen 21-2 are arranged side by side through the joint portion 26.
  • the liquid crystal display panel 24-1 and the liquid crystal display panel 24-2 can cooperate to display one continuous image.
  • the liquid crystal display panel 24-1 and the liquid crystal display panel 24-2 can also display individual images.
  • the control circuit 16 sends the image data DT1 to the sub display device 11-1, and sends the image data DT2 to the sub display device 11-2.
  • the control circuit 16 When the sub display device 11-1 and the sub display device 11-2 display one continuous image, the control circuit 16 generates image data DT1 and DT2 for performing such display.
  • the arrows in FIG. 4 indicate display light from the liquid crystal display panels 24-1 and 24-2.
  • the display light from the liquid crystal display panel 24-1 is refracted at the interface of the base 25A-1 of the prism sheet 25-1 and the interface of the triangular prism 25B-1.
  • the display light from the liquid crystal display panel 24-2 is refracted at the interface of the base 25A-2 of the prism sheet 25-2 and the interface of the triangular prism 25B-2.
  • FIG. 6 is a plan view when the observer views the liquid crystal display device 11 (including the sub display devices 11-1 and 11-2) through the prism sheets 25-1 and 25-2.
  • An observer can see one frame 20 and one screen 21 of the liquid crystal display device 11. Further, it seems to the observer that one continuous image IM (circle in the example of FIG. 6) is displayed on one screen 21. That is, by refracting the display light of the sub display devices 11-1 and 11-2 using the prism sheets 25-1 and 25-2, the joint portion 26 can be made invisible to the observer.
  • FIG. 7 is a cross-sectional view illustrating parameters of the prism sheet 25-2.
  • the parameter conditions of the prism sheet 25-1 are only different in the direction of the inclined surface of the prism sheet 25-2, and the parameter conditions of the prism sheet 25-2 can be applied.
  • the parameters shown in FIG. 7 are as follows. ⁇ : inclination angle of the triangular prism x: x coordinate of the triangular prism d 1 : height of the triangular prism d 2 : height of the base of the prism sheet D: distance between the prism sheet and the liquid crystal display panel x coordinate of the triangular prism Is the horizontal distance from the apex of the tilt angle (elevation angle).
  • the amount of deviation ⁇ of the light after the display light emitted from the liquid crystal display panel 24-2 passes through the prism sheet 25-2 is expressed by the following equation (1).
  • FIG. 8 is a table showing an example of the shift amount delta 0 tilt angle ⁇ and the light of the triangular prism.
  • d 1 0.25 mm
  • d 2 1.75 mm
  • D 15 mm
  • n 1.49 are used as an example.
  • the joint portion 26 when the width of each of the frames 20-1 and 20-2 is 6.46 mm (when the combined width of the frames 20-1 and 20-2 is 12.92 mm), the joint portion 26 is just invisible. That is, the display in FIG. 6 can be realized.
  • the width W1 of each of the frames 20-1 and 20-2 in the joint portion 26 is set so as to satisfy the following expression (3).
  • W1 is equal to or equal to the right side, or is smaller than the right side by, for example, a value considering manufacturing error.
  • the height d 1 of the triangular prism is not included in the conditions of the delta 0. As d 1 is reduced, the number of triangular prisms required increases, and as d 1 is increased, the number of triangular prisms required decreases. Since d 1 affects the overall height of the prism sheet, it is appropriately designed according to the required specifications.
  • the frame between the sub display devices 11-1 and 11-2 is made invisible.
  • the frame around the liquid crystal display device 11 can be made invisible.
  • FIG. 9A is a plan view of the liquid crystal display device 11 according to the first modification.
  • the prism sheet is not shown.
  • FIG. 10 is a perspective view of the prism sheets 25-1 and 25-2 according to the first modification.
  • the sub display devices 11-1 and 11-2 include the prism sheets 25-1 and 25-2 shown in FIG.
  • the prism sheet 25-1 includes a base 25A-1 and a plurality of triangular prisms 25B-1.
  • Each triangular prism 25B-1 is disposed at the end of the sub display device 11-1 (at least above the frame 20-1) and is formed in a rectangular shape.
  • the triangular prism 25B-1 is composed of four triangular prisms arranged on the four sides of the sub display device 11-1.
  • the triangular prism 25B-1 has an inclined surface inclined toward the inner side (center) of the prism sheet 25-1.
  • the triangular prism 25B-1 is provided around the base 25A-1, but the triangular prism 25B-1 is provided on the entire surface of the base 25A-1 toward the center of the base 25A-1. Also good.
  • the corners of the square triangular prism 25B-1 are rounded, but this shape is an example, and the corners of the triangular prism 25B-1 may be a right angle. Further, only three triangular prisms are shown in order to avoid complicated drawings, but actually, more triangular prisms are arranged.
  • FIG. 9B is a plan view when the observer views the liquid crystal display device 11 (including the sub display devices 11-1 and 11-2).
  • the liquid crystal display device 11 including the sub display devices 11-1 and 11-2.
  • FIG. 11A is a plan view of the liquid crystal display device 11 according to the second modification.
  • the screen of the liquid crystal display device 11 is divided into four.
  • the liquid crystal display device 11 includes four sub display devices 11-1 to 11-4. Each of the sub display devices 11-1 to 11-4 has the same configuration as the sub display device 11-1 or 11-2 described above.
  • the prism sheet is not shown.
  • Sub display devices 11-1 to 11-4 include prism sheets 25-1 to 25-4, respectively.
  • FIG. 12 is a perspective view of prism sheets 25-1 to 25-4 according to the second modification.
  • Each of the prism sheets 25-1 to 25-4 has the same configuration as the prism sheet 25-1 or 25-1 shown in the first modification except that the sizes are different.
  • FIG. 11B is a plan view when the observer looks at the liquid crystal display device 11 (including the sub display devices 11-1 to 11-4).
  • the observer can connect the joint portions of the sub display devices 11-1 to 11-4, and
  • the frame on the outer periphery of each of the sub display devices 11-1 to 11-4 can be made invisible.
  • FIG. 13 is a schematic diagram of the video display apparatus 10 according to the embodiment.
  • the video display device 10 includes a liquid crystal display device 31 and a liquid crystal display device 11 (including sub display devices 11-1 and 11-2).
  • the liquid crystal display device 31 is a general liquid crystal display device that displays a main image.
  • the sub display devices 11-1 and 11-2 function as a movable accessory (gimmick). That is, the video display device 10 includes a drive unit (not shown) that mechanically moves the sub display devices 11-1 and 11-2.
  • the sub display devices 11-1 and 11-2 include prism sheets 25-1 and 25-2, respectively. Is invisible to the observer.
  • the sub display devices 11-1 and 11-2 are arranged apart from each other.
  • the sub display devices 11-1 and 11-2 move to the center of the liquid crystal display device 31, and are arranged side by side and in contact with each other. In this case, the joints and gaps between the sub display devices 11-1 and 11-2 are hardly visible.
  • the liquid crystal display device 11 can display one continuous image.
  • the image of the liquid crystal display device 11 can be effectively immersed in the main image of the liquid crystal display device 31. Even when the frame of the sub display device 11-1 and the sub display device 11-2 is enlarged in order to reduce the impact when the sub display device 11-1 and the sub display device 11-2 come into contact with each other, Can hide the picture frame from the person.
  • FIG. 14 is a schematic diagram of a video display apparatus 10 according to another embodiment.
  • the liquid crystal display device 11 (comprising the sub display devices 11-1 and 11-2) is disposed at the center of the liquid crystal display device 31, and the sub display devices 11-1 and 11-2. Are arranged side by side and in contact with each other. At this time, the frames of the sub display devices 11-1 and 11-2 are not visible to the observer. Subsequently, as shown in FIG. 14B, the sub display devices 11-1 and 11-2 move up and down away from each other.
  • FIG. 15 is a schematic diagram of a video display device 30 according to a comparative example.
  • the video display device 30 includes a liquid crystal display device 31, and sub display devices 32-1 and 32-2.
  • Each of the sub display devices 32-1 and 32-2 includes a liquid crystal display device, but does not include the prism sheet of this embodiment.
  • the sub display devices 32-1 and 32-2 are provided with frames 33-1 and 33-2, respectively. The viewer can see the frames 33-1 and 33-2 of the sub display devices 32-1 and 32-2 as they are.
  • the sub display devices 32-1 and 32-2 are arranged apart from each other. Subsequently, as shown in FIG. 15B, the sub display devices 32-1 and 32-2 move to the center of the liquid crystal display device 31, and are arranged side by side and in contact with each other. In this case, the joint between the sub display devices 32-1 and 32-2 is visible. In addition, one image displayed by the sub display devices 32-1 and 32-2 is interrupted at the joint between the sub display devices 32-1 and 32-2. Further, since the frame on the outer periphery of the sub display devices 32-1 and 32-2 is visible to the observer, the images of the sub display devices 32-1 and 32-2 are immersed in the main image of the liquid crystal display device 31. I can't see.
  • the sub display device 32-1 and 32-2 are used as movable accessories, the sub display device is reduced in order to reduce the impact when the sub display device 32-1 and the sub display device 32-2 are in contact with each other.
  • the frame between 32-1 and the sub display device 32-2 may be enlarged.
  • the joint between the sub display device 32-1 and the sub display device 32-2 becomes larger, so that the images displayed by the sub display device 32-1 and the sub display device 32-2 are displayed. This reduces the sense of unity.
  • the video display device 10 includes the liquid crystal display panel 24-1 including the frame 24A-1, the liquid crystal display panel 24-1, and the liquid crystal display panel 24-1 arranged in the first direction.
  • the prism sheet 25-1 includes a base 25A-1 and a plurality of triangular prisms 25B-1 provided on the base 25A-1, and each of the plurality of triangular prisms 25B-1 includes a liquid crystal display panel 24-1. And an inclined surface inclined in a direction away from the joint portion 26 between the liquid crystal display panel 24-2.
  • the prism sheet 25-2 includes a base 25A-2 and a plurality of triangular prisms 25B-2 provided on the base 25A-2. Each of the plurality of triangular prisms 25B-2 is connected to the joint portion 26. It has an inclined surface which inclines in the direction of leaving.
  • the parameters of the prism sheets 25-1 and 25-2 and the widths of the frames 24A-1 and 24A-2 are the same as those of the liquid crystal display panels 24-1 and 24-2 via the prism sheets 25-1 and 25-2. When viewed from the front, the frames 24A-1 and 24A-2 at the joint portion 26 are set so as not to be seen.
  • the frames 24A-1 and 24A-2 in the joint portion 26 are displayed on the viewer. Can be invisible. Thereby, it becomes possible to perform more effective display and production by using the video display device of this embodiment as a movable accessory. For example, what is thought to be one continuous display is suddenly divided into two, so that a sense of impact and a sense of surprise can be further produced.
  • the width of the frames 24A-1 and 24A-2 can be increased. Even when the widths of -1 and 24A-2 are increased, the frames 24A-1 and 24A-2 can be made invisible.
  • the frame other than the joint portion 26 can be made invisible. Thereby, the sub image generated by the liquid crystal display panels 24-1 and 24-2 can be more effectively immersed in the main image.
  • the video display device 10 is configured so that the joint between the sub display device 11-1 and the sub display device 11-2 is not visible even when the screen is viewed obliquely by the angle ⁇ . To do.
  • FIG. 18A is a cross-sectional view illustrating parameters of the prism sheet 25-1
  • FIG. 18B is a cross-sectional view illustrating parameters of the prism sheet 25-2.
  • the optical path of the display light when the liquid crystal display device 11 is viewed from the right side of the screen by the angle ⁇ will be described.
  • Deviation amount delta L of the light after the display light emitted from the liquid crystal display panel 24-1 is transmitted through the prism sheet 25-1 is represented by the following formula (4).
  • the deviation amount delta R of the light after the display light emitted from the liquid crystal display panel 24-2 is transmitted through the prism sheet 25-2 is represented by the following formula (1).
  • the frame visible to the observer is the frame 24A-2 of the liquid crystal cover panel 24-2.
  • FIG. 19 (a) is a table showing an example of the angle ⁇ and the light amount of deviation delta 0L in the prism sheet 25-1, FIG. 19 (b), deviation of the angle ⁇ and the light in the prism sheet 25-2 It is a table
  • 40 °
  • d 1 0.25 mm
  • d 2 1.75 mm
  • D 15 mm
  • theta 20 °
  • the deviation amount delta 0R light becomes 1.89mm as shown in FIG. 19 (b). Therefore, when the liquid crystal display device 11 is configured using the above-described parameter values, when the width of the frame 20-2 at the joint portion 26 is 1.89 mm, the joint portion 26 is not visible.
  • the width W2 R of the frame 20-1 in the joint portion 26, is set to satisfy the following equation (7).
  • W2 R ⁇ ⁇ 0R d 2 ⁇ tan ( ⁇ - ⁇ R) + D ⁇ tan ⁇ R ⁇ (7)
  • ⁇ R sin ⁇ 1 ⁇ (1 / n) ⁇ sin ( ⁇ + ⁇ ) ⁇
  • ⁇ R sin ⁇ 1 ⁇ n ⁇ sin ( ⁇ R ) ⁇
  • FIG. 20 is a perspective view of the liquid crystal display device 11 configured such that the joint portion is not visible when the screen is viewed from the front.
  • the frames 24A-1 and 24A-2 of the liquid crystal display panels 24-1 and 24-2 are observed. Invisible to the person. At this time, images obtained by dividing one continuous image in half are used as the images IM1 and IM2 of the liquid crystal display panels 24-1 and 24-2.
  • FIG. 21 is a diagram for explaining a state where the liquid crystal display device 11 shown in FIG. 20 is viewed from the right side by an angle ⁇ .
  • the frame 24A-2 of the liquid crystal display panel 24-2 is visible to the observer.
  • liquid crystal display device 11 configured to prevent the joint from being seen both when the screen is viewed from the front and when the screen is viewed obliquely by the angle ⁇ will be described.
  • FIG. 22 is a diagram for explaining images displayed by the liquid crystal display panels 24-1 and 24-2 according to the embodiment.
  • the frames corresponding to the frames of the cases 22-1 and 22-2 are included in the frames 24A-1 and 24A-2 of the liquid crystal display panels 24-1 and 24-2, respectively, and the illustration is omitted.
  • the image IM1 displayed on the liquid crystal display panel 24-1 and the image IM2 displayed on the liquid crystal display panel 24-2 are configured such that the images on the joint portion side partially overlap.
  • the area AR1 of the image IM1 and the area AR2 of the image IM2 overlap.
  • FIG. 23 is a perspective view illustrating a state in which the screen is viewed from the front of the liquid crystal display device 11 according to the embodiment.
  • the liquid crystal display panels 24-1 and 24-2 are separated from the prism sheets 25-1 and 25-2 by separating the liquid crystal display panels 24-1 and 24-2.
  • -2 frames 24A-1 and 24A-2 are hidden from the viewer.
  • the observer can see one continuous image by using images other than the areas AR1 and AR2.
  • FIG. 24 is a perspective view illustrating a state where the liquid crystal display device 11 according to the embodiment is viewed from the right side by an angle ⁇ . The observer can see one continuous image by using the area AR2 of the image IM2.
  • the control circuit 16 generates image data DT1 and DT2 for displaying the images IM1 and IM2 shown in FIG. Then, the control circuit 16 sends the image data DT1 to the sub display device 11-1 (liquid crystal display panel 24-1), and sends the image data DT2 to the sub display device 11-2 (liquid crystal display panel 24-2).
  • the width of the area AR1 of the image IM1 is the same as the width of the area AR2 of the image IM2, and is denoted here as W3.
  • the overlap width W3 is obtained by subtracting “the amount of light deviation ⁇ 0R when viewing the screen from the right side by an angle ⁇ in FIG. 24” from “the amount of light deviation ⁇ 0 when viewing the screen from the front in FIG. 23”. It is calculated based on the obtained value. That is, the overlap width W3 is expressed by the following formula (8).
  • the control circuit 16 generates the image data DT1 and DT2 so as to satisfy Expression (3). This makes it possible to prevent the joint from being seen both when the screen is viewed from the front and when the screen is viewed obliquely by the angle ⁇ .
  • the frames 24A-1 and 24A-2 in the joint portion 26 are not only viewed from the front but also viewed from an angle of ⁇ . It can be made invisible to the observer.
  • each of the above embodiments can be applied particularly to a pachinko machine as a gaming machine and a slot machine.
  • each of the above embodiments is not limited to a gaming machine, and can be applied to all video display devices having a configuration in which two or more liquid crystal display panels are always or temporarily arranged side by side.
  • the present invention is not limited to the embodiment described above, and can be embodied by modifying the constituent elements without departing from the scope of the invention. Further, the above embodiments include inventions at various stages, and are obtained by appropriately combining a plurality of constituent elements disclosed in one embodiment or by appropriately combining constituent elements disclosed in different embodiments. Various inventions can be configured. For example, even if some constituent elements are deleted from all the constituent elements disclosed in the embodiments, the problems to be solved by the invention can be solved and the effects of the invention can be obtained. Embodiments made can be extracted as inventions.
  • SYMBOLS 10 Video display device, 11 ... Liquid crystal display device, 12 ... Scan driver, 13 ... Signal driver, 14 ... Common voltage supply circuit, 15 ... Voltage generation circuit, 16 ... Control circuit, 17 ... Pixel, 18 ... Switching element, 20 DESCRIPTION OF SYMBOLS ... Frame, 21 ... Screen, 22 ... Case, 23 ... Light source part, 24 ... Liquid crystal display panel, 24A ... Frame, 25 ... Prism sheet, 25A ... Base, 25B ... Triangular prism, 26 ... Seam part, 30 ... Video display device , 31, 32 ... Liquid crystal display device, 33 ... Picture frame.

Abstract

Provided is a video display device (10), comprising: a first liquid-crystal display panel (24) provided with a first edging (24A); a second liquid-crystal display panel (24) which is positioned side by side the first liquid-crystal display panel (24) in a first direction and is provided with a second edging (24A); and first and second prism sheets (25) which are positioned respectively with a distance between the first and second prism sheets (25) and the first and second liquid-crystal display panels (24). The first prism sheet (25) further comprises a plurality of first triangular prisms which have oblique faces which are inclined in directions away from seam parts between the first liquid-crystal display panel (24) and the second liquid-crystal display panel (24). The second prism sheet (25) further comprises a plurality of second triangular prisms which have oblique faces which are inclined in directions away from the seam parts. The first and second edgings (24A) are not visible at the seam parts when the first and second liquid-crystal display panels (24) are viewed from the front through the first and second prism sheets (25).

Description

映像表示装置Video display device
 本発明は、映像表示装置に係り、特に液晶表示装置を備えた映像表示装置に関する。 The present invention relates to a video display device, and more particularly to a video display device including a liquid crystal display device.
 液晶表示装置は、様々な映像表示装置に使用されており、例えば、遊技機としてのパチンコ機やスロットマシンなどにも使用されている。近年、パチンコ機やスロットマシンでは、大型液晶表示装置などのメイン表示と、可動役物(例えば、プラスチック素材にLEDなどを装備し、きらびやかなに光を放ちながら動くギミック)とが配置されるケースがある。また、サブ表示を行うための小型液晶表示装置が配置され、メイン表示のコンテンツ及び音に同期をしながら時にはコミカルに可動するサブ表示は、その演出を盛り上げる手法として使われている。 Liquid crystal display devices are used in various video display devices, for example, pachinko machines and slot machines as game machines. In recent years, in pachinko machines and slot machines, a main display such as a large liquid crystal display device and a movable accessory (for example, a gimmick that is equipped with an LED etc. on a plastic material and moves brilliantly) are arranged. There is. In addition, a small liquid crystal display device for performing sub-displays is arranged, and sub-displays that sometimes move comically while being synchronized with the content and sound of the main display are used as a technique for exciting the effects.
 例えば、2枚の液晶表示装置を使った表示技術において、2枚の液晶表示装置を個別に動かし、2枚の液晶表示装置が左右ぴったりに並ぶ演出を行うものがある。そして、2枚の液晶表示装置で1つの連続した表示を行ったり、これら可動の液晶表示装置が行うサブ表示を、大型液晶表示装置が行うメイン表示に没入させたりする。しかし、あたかも1枚の液晶表示装置によるサブ表示に見える効果を期待した場合、2枚の液晶表示装置の継ぎ目部においてそれぞれの額縁が見えてしまい、2つのサブ表示が明らかに分離して見えてしまう。また、液晶表示装置の額縁が目立つために、メイン表示にサブ表示が没入する効果に欠けてしまう。 For example, in a display technology using two liquid crystal display devices, there is a technique in which the two liquid crystal display devices are moved individually and the two liquid crystal display devices are lined up right and left. Then, one continuous display is performed by two liquid crystal display devices, or a sub display performed by these movable liquid crystal display devices is immersed in a main display performed by a large liquid crystal display device. However, when an effect that looks like a sub-display by one liquid crystal display device is expected, each frame can be seen at the joint portion of the two liquid crystal display devices, and the two sub-displays are clearly separated. End up. Further, since the frame of the liquid crystal display device is conspicuous, the effect that the sub display is immersed in the main display is lacking.
特開平8-136886号公報JP-A-8-136886
 本発明は、2つの表示間の継ぎ目部における額縁を見えなくすることが可能な映像表示装置を提供する。 The present invention provides a video display device capable of making the frame at the joint between two displays invisible.
 本発明の一態様に係る映像表示装置は、第1額縁を備える第1液晶表示パネルと、前記第1液晶表示パネルと第1方向に並んで配置され、第2額縁を備える第2液晶表示パネルと、前記第1及び第2液晶表示パネルと距離を空けてそれぞれ配置された第1及び第2プリズムシートとを具備する。前記第1プリズムシートは、第1土台と、前記第1土台上に設けられた複数の第1三角プリズムとを備え、前記複数の第1三角プリズムの各々は、前記第1液晶表示パネルと前記第2液晶表示パネルとの継ぎ目部から離れる方向に傾く傾斜面を有する。前記第2プリズムシートは、第2土台と、前記第2土台上に設けられた複数の第2三角プリズムとを備え、前記複数の第2三角プリズムの各々は、前記継ぎ目部から離れる方向に傾く傾斜面を有する。前記第1及び第2プリズムシートを介して前記第1及び第2液晶表示パネルを正面から見た場合に、前記継ぎ目部における第1及び第2額縁が見えないことを特徴とする。 A video display device according to an aspect of the present invention includes a first liquid crystal display panel having a first frame, and a second liquid crystal display panel having a second frame arranged in a first direction with the first liquid crystal display panel. And first and second prism sheets disposed at a distance from the first and second liquid crystal display panels. The first prism sheet includes a first base and a plurality of first triangular prisms provided on the first base, and each of the plurality of first triangular prisms includes the first liquid crystal display panel and the first liquid crystal display panel. It has an inclined surface that inclines in a direction away from the joint with the second liquid crystal display panel. The second prism sheet includes a second base and a plurality of second triangular prisms provided on the second base, and each of the plurality of second triangular prisms is inclined in a direction away from the joint portion. Has an inclined surface. When the first and second liquid crystal display panels are viewed from the front through the first and second prism sheets, the first and second frame at the joint portion are not visible.
 本発明の一態様に係る映像表示装置は、第1額縁を備える第1液晶表示パネルと、前記第1液晶表示パネルと第1方向に並んで配置され、第2額縁を備える第2液晶表示パネルと、前記第1及び第2液晶表示パネルと距離を空けてそれぞれ配置された第1及び第2プリズムシートとを具備する。前記第1プリズムシートは、第1土台と、前記第1土台上に設けられた複数の第1三角プリズムとを備え、前記複数の第1三角プリズムの各々は、前記第1液晶表示パネルと前記第2液晶表示パネルとの継ぎ目部から離れる方向に傾く傾斜面を有する。前記第2プリズムシートは、第2土台と、前記第2土台上に設けられた複数の第2三角プリズムとを備え、前記複数の第2三角プリズムの各々は、前記継ぎ目部から離れる方向に傾く傾斜面を有する。前記第1及び第2プリズムシートを介して前記第1及び第2液晶表示パネルを角度θだけ斜めから見た場合に、前記継ぎ目部における第1及び第2額縁が見えないことを特徴とする。 A video display device according to an aspect of the present invention includes a first liquid crystal display panel having a first frame, and a second liquid crystal display panel having a second frame arranged in a first direction with the first liquid crystal display panel. And first and second prism sheets disposed at a distance from the first and second liquid crystal display panels. The first prism sheet includes a first base and a plurality of first triangular prisms provided on the first base, and each of the plurality of first triangular prisms includes the first liquid crystal display panel and the first liquid crystal display panel. It has an inclined surface that inclines in a direction away from the joint with the second liquid crystal display panel. The second prism sheet includes a second base and a plurality of second triangular prisms provided on the second base, and each of the plurality of second triangular prisms is inclined in a direction away from the joint portion. Has an inclined surface. When the first and second liquid crystal display panels are viewed obliquely by an angle θ through the first and second prism sheets, the first and second picture frames at the joint portion are not visible.
 本発明によれば、2つの表示間の継ぎ目部における額縁を見えなくすることが可能な映像表示装置を提供することができる。 According to the present invention, it is possible to provide a video display device capable of making the frame at the joint portion between two displays invisible.
第1実施形態に係る映像表示装置のブロック図。1 is a block diagram of a video display device according to a first embodiment. 液晶表示装置に含まれる画素アレイの回路図。The circuit diagram of the pixel array contained in a liquid crystal display device. 液晶表示装置の平面図及び断面図。The top view and sectional drawing of a liquid crystal display device. プリズムシートの断面図。Sectional drawing of a prism sheet. プリズムシートの斜視図。The perspective view of a prism sheet. 観察者がプリズムシートを介して液晶表示装置を見た場合の平面図。The top view when an observer looks at a liquid crystal display device through a prism sheet. プリズムシートのパラメーターを説明する断面図。Sectional drawing explaining the parameter of a prism sheet. 三角プリズムの傾斜角と光のズレ量との一例を示す表。The table | surface which shows an example of the inclination-angle of a triangular prism, and the deviation | shift amount of light. 第1変形例に係る液晶表示装置の平面図。The top view of the liquid crystal display device which concerns on a 1st modification. 第1変形例に係るプリズムシートの斜視図。The perspective view of the prism sheet which concerns on a 1st modification. 第2変形例に係る液晶表示装置の平面図。The top view of the liquid crystal display device which concerns on a 2nd modification. 第2変形例に係るプリズムシートの斜視図。The perspective view of the prism sheet which concerns on a 2nd modification. 実施例に係る映像表示装置の模式図。The schematic diagram of the video display apparatus which concerns on an Example. 他の実施例に係る映像表示装置の模式図。The schematic diagram of the video display apparatus concerning another Example. 比較例に係る映像表示装置の模式図。The schematic diagram of the video display apparatus concerning a comparative example. 第1実施形態の液晶表示装置を角度θだけ斜め方向から見た様子を説明する図。The figure explaining a mode that the liquid crystal display device of 1st Embodiment was seen from the diagonal direction only by angle (theta). 第1実施形態の液晶表示装置を角度θだけ斜め方向から見た様子を説明する図。The figure explaining a mode that the liquid crystal display device of 1st Embodiment was seen from the diagonal direction only by angle (theta). 第2実施形態に係るプリズムシートのパラメーターを説明する断面図。Sectional drawing explaining the parameter of the prism sheet which concerns on 2nd Embodiment. プリズムシートにおける角度θと光のズレ量との一例を示す表。The table | surface which shows an example of angle (theta) in a prism sheet, and the deviation | shift amount of light. 正面から画面を見た場合に継ぎ目部が見えないように構成された液晶表示装置の斜視図。The perspective view of the liquid crystal display device comprised so that a joint part would not be visible when a screen is seen from the front. 図20に示した液晶表示装置を角度θだけ右側から見た様子を説明する図。FIG. 21 is a diagram illustrating a state in which the liquid crystal display device illustrated in FIG. 20 is viewed from the right side by an angle θ. 実施例に係る液晶表示パネルが表示する画像を説明する図。FIG. 6 is a diagram illustrating an image displayed by a liquid crystal display panel according to an example. 実施例に係る液晶表示装置を正面から画面を見た様子を説明する斜視図。The perspective view explaining a mode that the screen was seen from the front about the liquid crystal display device concerning an example. 実施例に係る液晶表示装置を角度θだけ右側から画面を見た様子を説明する斜視図。The perspective view explaining a mode that the liquid crystal display device which concerns on an Example looked at the screen from the right side by angle (theta).
 以下、実施形態について図面を参照して説明する。ただし、図面は模式的または概念的なものであり、各図面の寸法および比率等は必ずしも現実のものと同一とは限らないことに留意すべきである。また、図面の相互間で同じ部分を表す場合においても、互いの寸法の関係や比率が異なって表される場合もある。特に、以下に示す幾つかの実施形態は、本発明の技術思想を具体化するための装置および方法を例示したものであって、構成部品の形状、構造、配置等によって、本発明の技術思想が特定されるものではない。なお、以下の説明において、同一の機能及び構成を有する要素については同一符号を付し、重複説明は必要な場合にのみ行う。 Hereinafter, embodiments will be described with reference to the drawings. However, it should be noted that the drawings are schematic or conceptual, and the dimensions and ratios of the drawings are not necessarily the same as the actual ones. Further, even when the same portion is represented between the drawings, the dimensional relationship and ratio may be represented differently. In particular, the following embodiments exemplify an apparatus and a method for embodying the technical idea of the present invention, and the technical idea of the present invention depends on the shape, structure, arrangement, etc. of components. Is not specified. In the following description, elements having the same function and configuration are denoted by the same reference numerals, and redundant description will be given only when necessary.
 [第1実施形態]
 [1.映像表示装置10の回路構成]
 まず、映像表示装置10の回路構成の一例について説明する。図1は、本発明の第1実施形態に係る映像表示装置10のブロック図である。映像表示装置10は、液晶表示装置11と、走査ドライバ(走査線駆動回路)12-1、12-2と、信号ドライバ(信号線駆動回路)13-1、13-2と、共通電圧供給回路14と、電圧発生回路15と、制御回路16とを備える。本実施形態では、アクティブマトリクス型の液晶表示装置を例に挙げて説明する。
[First Embodiment]
[1. Circuit configuration of video display device 10]
First, an example of the circuit configuration of the video display device 10 will be described. FIG. 1 is a block diagram of a video display apparatus 10 according to the first embodiment of the present invention. The video display device 10 includes a liquid crystal display device 11, scanning drivers (scanning line driving circuits) 12-1 and 12-2, signal drivers (signal line driving circuits) 13-1 and 13-2, and a common voltage supply circuit. 14, a voltage generation circuit 15, and a control circuit 16. In the present embodiment, an active matrix liquid crystal display device will be described as an example.
 液晶表示装置11は、サブ表示装置11-1、及びサブ表示装置11-2を備える。サブ表示装置11-1、11-2の各々には、それぞれがロウ方向(X方向)に延びる複数の走査線GLと、それぞれがカラム方向(Y方向)に延びる複数の信号線SLとが配設される。複数の走査線GLと複数の信号線SLとの交差領域の各々には、画素17が配置される。複数の画素17は、マトリクス状に配置される。 The liquid crystal display device 11 includes a sub display device 11-1 and a sub display device 11-2. Each of the sub display devices 11-1 and 11-2 is provided with a plurality of scanning lines GL each extending in the row direction (X direction) and a plurality of signal lines SL each extending in the column direction (Y direction). Established. A pixel 17 is disposed in each of the intersecting regions of the plurality of scanning lines GL and the plurality of signal lines SL. The plurality of pixels 17 are arranged in a matrix.
 図2は、液晶表示装置11に含まれる画素アレイの回路図である。図2では、4つの画素を抽出して示している。画素17は、スイッチング素子18、液晶容量Clc、及び蓄積容量Csを備える。スイッチング素子18としては、例えばTFT(Thin Film Transistor)が用いられる。 FIG. 2 is a circuit diagram of a pixel array included in the liquid crystal display device 11. In FIG. 2, four pixels are extracted and shown. The pixel 17 includes a switching element 18, a liquid crystal capacitor Clc, and a storage capacitor Cs. As the switching element 18, for example, a TFT (Thin-Film-Transistor) is used.
 TFT18のソースは、信号線SLに電気的に接続される。TFT18のゲートは、走査線GLに電気的に接続される。TFT18のドレインは、液晶容量Clcに電気的に接続される。液晶容量Clcは、画素電極と、共通電極と、これらに挟まれた液晶層とにより構成される。 The source of the TFT 18 is electrically connected to the signal line SL. The gate of the TFT 18 is electrically connected to the scanning line GL. The drain of the TFT 18 is electrically connected to the liquid crystal capacitor Clc. The liquid crystal capacitor Clc includes a pixel electrode, a common electrode, and a liquid crystal layer sandwiched between them.
 蓄積容量Csは、液晶容量Clcに並列接続される。蓄積容量Csは、画素電極に生じる電位変動を抑制するとともに、画素電極に印加された駆動電圧を次の信号に対応する駆動電圧が印加されるまでの間保持する機能を有する。蓄積容量Csは、画素電極と、蓄積電極(蓄積容量線)と、これらに挟まれた絶縁膜とにより構成される。共通電極及び蓄積電極には、共通電圧供給回路14により共通電圧Vcomが印加される。 The storage capacitor Cs is connected in parallel to the liquid crystal capacitor Clc. The storage capacitor Cs has a function of suppressing the potential fluctuation generated in the pixel electrode and holding the drive voltage applied to the pixel electrode until the drive voltage corresponding to the next signal is applied. The storage capacitor Cs includes a pixel electrode, a storage electrode (storage capacitor line), and an insulating film sandwiched between them. A common voltage Vcom is applied to the common electrode and the storage electrode by the common voltage supply circuit 14.
 図1において、走査ドライバ12-1は、サブ表示装置11-1に配設された複数の走査線GLに接続され、制御回路16から垂直制御信号VS1を受ける。走査ドライバ12-1は、垂直制御信号VS1に基づいて、サブ表示装置11-1に含まれるTFT18のオン及びオフを制御するための走査信号を走査線GLに印加する。走査ドライバ12-2は、サブ表示装置11-2に配設された複数の走査線GLに接続され、制御回路16から垂直制御信号VS2を受ける。走査ドライバ12-2は、垂直制御信号VS2に基づいて、サブ表示装置11-2に含まれるTFT18のオン及びオフを制御するための走査信号を走査線GLに印加する。 In FIG. 1, the scanning driver 12-1 is connected to a plurality of scanning lines GL arranged in the sub display device 11-1, and receives a vertical control signal VS1 from the control circuit 16. Based on the vertical control signal VS1, the scanning driver 12-1 applies a scanning signal for controlling on and off of the TFT 18 included in the sub display device 11-1 to the scanning line GL. The scanning driver 12-2 is connected to a plurality of scanning lines GL arranged in the sub display device 11-2, and receives a vertical control signal VS2 from the control circuit 16. The scanning driver 12-2 applies a scanning signal for controlling on and off of the TFT 18 included in the sub display device 11-2 to the scanning line GL based on the vertical control signal VS2.
 信号ドライバ13-1は、サブ表示装置11-1に配設された複数の信号線SLに接続され、制御回路16から水平制御信号HS1、及び表示データDT1を受ける。信号ドライバ13-1は、水平制御信号HS1に基づいて、表示データDT1に対応する階調信号(駆動電圧)を信号線SLに印加する。信号ドライバ13-2は、サブ表示装置11-2に配設された複数の信号線SLに接続され、制御回路16から水平制御信号HS2、及び表示データDT2を受ける。信号ドライバ13-2は、水平制御信号HS2に基づいて、表示データDT2に対応する階調信号(駆動電圧)を信号線SLに印加する。 The signal driver 13-1 is connected to a plurality of signal lines SL provided in the sub display device 11-1, and receives a horizontal control signal HS1 and display data DT1 from the control circuit 16. The signal driver 13-1 applies a gradation signal (drive voltage) corresponding to the display data DT1 to the signal line SL based on the horizontal control signal HS1. The signal driver 13-2 is connected to a plurality of signal lines SL provided in the sub display device 11-2, and receives a horizontal control signal HS2 and display data DT2 from the control circuit 16. The signal driver 13-2 applies a gradation signal (drive voltage) corresponding to the display data DT2 to the signal line SL based on the horizontal control signal HS2.
 共通電圧供給回路14は、共通電圧Vcomを生成してこれをサブ表示装置11-1、11-2に供給する。 The common voltage supply circuit 14 generates a common voltage Vcom and supplies it to the sub display devices 11-1 and 11-2.
 制御回路16は、外部から画像データDTを受ける。制御回路16は、画像データDTに基づいて、サブ表示装置11-1用の画像データDT1、及びサブ表示装置11-2用の画像データDT2を生成する。制御回路16は、垂直制御信号VS1、VS2をそれぞれ走査ドライバ12-1、12-2に送り、また、水平制御信号HS1、HS2、及び画像データDT1、DT2をそれぞれ信号ドライバ13-1、13-2に送る。 The control circuit 16 receives image data DT from the outside. Based on the image data DT, the control circuit 16 generates image data DT1 for the sub display device 11-1 and image data DT2 for the sub display device 11-2. The control circuit 16 sends the vertical control signals VS1 and VS2 to the scanning drivers 12-1 and 12-2, respectively, and also sends the horizontal control signals HS1 and HS2 and the image data DT1 and DT2 to the signal drivers 13-1 and 13-, respectively. Send to 2.
 電圧発生回路15は、外部から電源を受ける。電圧発生回路15は、走査信号を生成するために必要なゲート電圧を生成してこれを走査ドライバ12-1、12-2に供給する。また、電圧発生回路15は、画素を駆動するために必要な駆動電圧を生成してこれを信号ドライバ13-1、13-2に供給する。この他にも必要に応じて、電圧発生回路15は、映像表示装置10の動作に必要な各種電圧を生成して各回路部に供給する。 The voltage generation circuit 15 receives power from the outside. The voltage generation circuit 15 generates a gate voltage necessary for generating a scanning signal and supplies it to the scanning drivers 12-1 and 12-2. Further, the voltage generation circuit 15 generates a drive voltage necessary for driving the pixel and supplies it to the signal drivers 13-1 and 13-2. In addition, the voltage generation circuit 15 generates various voltages necessary for the operation of the video display device 10 and supplies them to each circuit unit as necessary.
 このように構成された映像表示装置10において、任意の画素17に含まれるTFT18がオン状態となると、駆動電圧が信号線SLを介して画素電極に印加され、駆動電圧と共通電圧Vcomとの電圧差に応じて液晶の配向状態が変化する。これにより、光源部(バックライト)からサブ表示装置11-1、11-2に入射する光の透過状態が変化して画像表示が行われる。 In the video display device 10 configured as described above, when the TFT 18 included in an arbitrary pixel 17 is turned on, a driving voltage is applied to the pixel electrode via the signal line SL, and the voltage between the driving voltage and the common voltage Vcom is determined. The alignment state of the liquid crystal changes according to the difference. As a result, the transmission state of light incident on the sub display devices 11-1 and 11-2 from the light source unit (backlight) is changed, and image display is performed.
 [2.液晶表示装置11の構成]
 次に、液晶表示装置11の構成について説明する。図3は、液晶表示装置11の平面図(a)及び断面図(b)である。
[2. Configuration of Liquid Crystal Display Device 11]
Next, the configuration of the liquid crystal display device 11 will be described. FIG. 3 is a plan view (a) and a sectional view (b) of the liquid crystal display device 11.
 図3(a)の平面図において、サブ表示装置11-1は、矩形の画面21-1と、画面21-1の周囲を囲む矩形の額縁20-1とを備える。サブ表示装置11-2は、矩形の画面21-2と、画面21-2の周囲を囲む矩形の額縁20-2とを備える。額縁は、画面と概略同一平面内にあって画像が表示されない領域である。画面21-1、21-2にはそれぞれ、画像IM1、IM2が表示される。図3(a)では、一例として半円の画像IM1、IM2を図示している。なお、図3(a)では、図3(b)に図示されたプリズムシート25-1、25-2の図示を省略している。 3A, the sub display device 11-1 includes a rectangular screen 21-1 and a rectangular frame 20-1 surrounding the screen 21-1. The sub display device 11-2 includes a rectangular screen 21-2 and a rectangular frame 20-2 surrounding the screen 21-2. The frame is an area in which an image is not displayed in the same plane as the screen. Images IM1 and IM2 are displayed on the screens 21-1 and 21-2, respectively. FIG. 3A shows semicircle images IM1 and IM2 as an example. In FIG. 3A, the prism sheets 25-1 and 25-2 shown in FIG. 3B are not shown.
 図3(b)の断面図において、サブ表示装置11-1は、ケース22-1、光源部(バックライト部)23-1、液晶表示パネル24-1、及びプリズムシート25-1を備える。光源部23-1、及び液晶表示パネル24-1は、例えばケース22-1に収容される。液晶表示パネル24-1は、光源部23-1の上方に配置される。プリズムシート25-1は、液晶表示パネル24-1の上方に配置され、また、ケース22-1の枠(縁)の上部に接するように設けられる。プリズムシート25-1は、液晶表示パネル24-1と同じサイズ(平面形状)を有する。 3B, the sub display device 11-1 includes a case 22-1, a light source unit (backlight unit) 23-1, a liquid crystal display panel 24-1, and a prism sheet 25-1. The light source unit 23-1 and the liquid crystal display panel 24-1 are accommodated in, for example, the case 22-1. The liquid crystal display panel 24-1 is disposed above the light source unit 23-1. The prism sheet 25-1 is disposed above the liquid crystal display panel 24-1 and is provided so as to be in contact with the upper part of the frame (edge) of the case 22-1. The prism sheet 25-1 has the same size (planar shape) as the liquid crystal display panel 24-1.
 液晶表示パネル24-1は、より具体的には、その周囲に額縁24A-1を備え、額縁24A-1の内側が画面である。額縁24A-1は、遮光膜で遮光された黒色の部分であり、額縁24A-1には、液晶表示パネル24-1の画素アレイの周辺回路などが配置される。同様に、サブ表示装置11-2は、ケース22-2、光源部23-2、液晶表示パネル24-2、及びプリズムシート25-2を備える。また、液晶表示パネル24-2は、その周囲に額縁24A-2を備える。 More specifically, the liquid crystal display panel 24-1 has a frame 24A-1 around it, and the inside of the frame 24A-1 is a screen. The frame 24A-1 is a black portion light-shielded by the light-shielding film, and a peripheral circuit of the pixel array of the liquid crystal display panel 24-1 is disposed on the frame 24A-1. Similarly, the sub display device 11-2 includes a case 22-2, a light source unit 23-2, a liquid crystal display panel 24-2, and a prism sheet 25-2. The liquid crystal display panel 24-2 includes a frame 24A-2 around the liquid crystal display panel 24-2.
 図3(a)の平面図における額縁20-1は、図3(b)の断面図における額縁24A-1及びケース22-1の枠を合わせた部分に対応する。同様に、図3(a)の平面図における額縁20-2は、図3(b)の断面図における額縁24A-2及びケース22-2の枠を合わせた部分に対応する。なお、液晶表示パネルを収容するケースは、本発明の本質的な要素ではなく、よって、液晶表示パネルの額縁とケースの枠とを特に区別する必要はなく、画像が表示される領域(画面)の周辺部が液晶表示パネルの額縁を意味する。よって、特に明示して区別する場合を除いて、液晶表示パネル24-1、24-2の額縁24A-1、4A-2はそれぞれ、サブ表示装置11-1、11-2の額縁20-1、20-2と同じ意味である。また、液晶表示パネル24-1と液晶表示パネル24-2との継ぎ目部26におけるケース22-1、22-2の枠を除き、液晶表示パネル24-1と液晶表示パネル24-2とが直に並ぶようにして液晶表示装置11を構成するような例も考えられる。 The frame 20-1 in the plan view of FIG. 3A corresponds to the combined portion of the frame 24A-1 and the frame of the case 22-1 in the cross-sectional view of FIG. Similarly, the frame 20-2 in the plan view of FIG. 3A corresponds to the combined portion of the frame 24A-2 and the frame of the case 22-2 in the cross-sectional view of FIG. Note that the case for accommodating the liquid crystal display panel is not an essential element of the present invention, and therefore it is not necessary to particularly distinguish the frame of the liquid crystal display panel from the frame of the case, and an area (screen) in which an image is displayed. Means the frame of the liquid crystal display panel. Accordingly, the frame 24A-1 and 4A-2 of the liquid crystal display panels 24-1 and 24-2 are respectively the frame 20-1 of the sub-display devices 11-1 and 11-2, unless otherwise specifically distinguished. , 20-2. Further, the liquid crystal display panel 24-1 and the liquid crystal display panel 24-2 are directly connected to each other except for the frames of the cases 22-1 and 22-2 at the joint portion 26 between the liquid crystal display panel 24-1 and the liquid crystal display panel 24-2. An example in which the liquid crystal display device 11 is configured so as to be lined up with each other is also conceivable.
 図4は、プリズムシート25-1、25-2の断面図である。図5は、プリズムシート25-1、25-2の斜視図である。 FIG. 4 is a cross-sectional view of the prism sheets 25-1 and 25-2. FIG. 5 is a perspective view of the prism sheets 25-1 and 25-2.
 プリズムシート25-1は、土台(ベース)25A-1と、土台25A-1の全面に設けられた複数の三角プリズム25B-1とを備える。土台25A-1は、断面が矩形であり、サブ表示装置11-1の外形と同じ矩形の平面形状を有する。複数の三角プリズム25B-1は、画面21-1の横方向に並んで配置される。各三角プリズム25B-1は、断面が直角三角形の三角柱から構成される。同様に、プリズムシート25-2は、土台25A-2と、土台25A-2の全面に設けられた複数の三角プリズム25B-2とを備える。 The prism sheet 25-1 includes a base (base) 25A-1 and a plurality of triangular prisms 25B-1 provided on the entire surface of the base 25A-1. The base 25A-1 has a rectangular cross section, and has the same planar shape as the outer shape of the sub display device 11-1. The plurality of triangular prisms 25B-1 are arranged side by side in the horizontal direction of the screen 21-1. Each triangular prism 25B-1 is composed of a triangular prism whose section is a right triangle. Similarly, the prism sheet 25-2 includes a base 25A-2 and a plurality of triangular prisms 25B-2 provided on the entire surface of the base 25A-2.
 三角プリズム25B-1と三角プリズム25B-2とは、互いの傾斜面が向き合うによう配置される。すなわち、三角プリズム25B-1は、中央部(サブ表示装置11-1とサブ表示装置11-2とが接する部分)から離れる方向(図の左方向)に向かって傾く傾斜面を有する。また、三角プリズム25B-2は、中央部から離れる方向(図の右方向)に向かって傾く傾斜面を有する。 The triangular prism 25B-1 and the triangular prism 25B-2 are arranged so that their inclined surfaces face each other. That is, the triangular prism 25B-1 has an inclined surface that is inclined in a direction away from the central portion (the portion where the sub display device 11-1 and the sub display device 11-2 are in contact) (the left direction in the figure). Further, the triangular prism 25B-2 has an inclined surface that is inclined in a direction away from the central portion (right direction in the figure).
 画面21-1と画面21-2とは、継ぎ目部26を介して並んで配置される。液晶表示パネル24-1と液晶表示パネル24-2とは、協同して1つの連続した画像を表示することができる。もちろん、液晶表示パネル24-1と液晶表示パネル24-2とは、個別の画像を表示することもできる。前述したように、制御回路16は、サブ表示装置11-1に画像データDT1を送り、サブ表示装置11-2に画像データDT2を送る。サブ表示装置11-1とサブ表示装置11-2とが1つの連続した画像を表示する場合は、制御回路16は、そのような表示を行うための画像データDT1、DT2を生成する。 The screen 21-1 and the screen 21-2 are arranged side by side through the joint portion 26. The liquid crystal display panel 24-1 and the liquid crystal display panel 24-2 can cooperate to display one continuous image. Of course, the liquid crystal display panel 24-1 and the liquid crystal display panel 24-2 can also display individual images. As described above, the control circuit 16 sends the image data DT1 to the sub display device 11-1, and sends the image data DT2 to the sub display device 11-2. When the sub display device 11-1 and the sub display device 11-2 display one continuous image, the control circuit 16 generates image data DT1 and DT2 for performing such display.
 図4の矢印は、液晶表示パネル24-1、24-2からの表示光を示している。液晶表示パネル24-1からの表示光は、プリズムシート25-1の土台25A-1の界面、及び三角プリズム25B-1の界面で屈折する。同様に、液晶表示パネル24-2からの表示光は、プリズムシート25-2の土台25A-2の界面、及び三角プリズム25B-2の界面で屈折する。 The arrows in FIG. 4 indicate display light from the liquid crystal display panels 24-1 and 24-2. The display light from the liquid crystal display panel 24-1 is refracted at the interface of the base 25A-1 of the prism sheet 25-1 and the interface of the triangular prism 25B-1. Similarly, the display light from the liquid crystal display panel 24-2 is refracted at the interface of the base 25A-2 of the prism sheet 25-2 and the interface of the triangular prism 25B-2.
 図6は、観察者がプリズムシート25-1、25-2を介して液晶表示装置11(サブ表示装置11-1、11-2を備える)を見た場合の平面図である。観察者には、液晶表示装置11の1つの額縁20及び1つの画面21が見える。さらに、観察者には、1つの画面21に1つの連続した画像IM(図6の例では円)が表示されているように見える。すなわち、プリズムシート25-1、25-2を用いてサブ表示装置11-1、11-2の表示光を屈折させることで、観察者にとって継ぎ目部26を見えなくすることができる。 FIG. 6 is a plan view when the observer views the liquid crystal display device 11 (including the sub display devices 11-1 and 11-2) through the prism sheets 25-1 and 25-2. An observer can see one frame 20 and one screen 21 of the liquid crystal display device 11. Further, it seems to the observer that one continuous image IM (circle in the example of FIG. 6) is displayed on one screen 21. That is, by refracting the display light of the sub display devices 11-1 and 11-2 using the prism sheets 25-1 and 25-2, the joint portion 26 can be made invisible to the observer.
 以下に、プリズムシート25-1、25-2、及び額縁20-1、20-2の条件について説明する。図7は、プリズムシート25-2のパラメーターを説明する断面図である。プリズムシート25-1のパラメーターの条件は、プリズムシート25-2の傾斜面の向きが異なるだけであり、プリズムシート25-2のパラメーターの条件を応用できる。 Hereinafter, the conditions of the prism sheets 25-1 and 25-2 and the frames 20-1 and 20-2 will be described. FIG. 7 is a cross-sectional view illustrating parameters of the prism sheet 25-2. The parameter conditions of the prism sheet 25-1 are only different in the direction of the inclined surface of the prism sheet 25-2, and the parameter conditions of the prism sheet 25-2 can be applied.
 図7に示したパラメーターは、以下のような内容である。 
 α:三角プリズムの傾斜角
 x:三角プリズムのx座標
 d:三角プリズムの高さ
 d:プリズムシートの土台の高さ
 D:プリズムシートと液晶表示パネルとの距離
 なお、三角プリズムのx座標とは、傾斜角(仰角)の頂点からの水平距離である。プリズムシート25-1、25-2は、例えばアクリル(屈折率n=1.49程度)で構成される。
The parameters shown in FIG. 7 are as follows.
α: inclination angle of the triangular prism x: x coordinate of the triangular prism d 1 : height of the triangular prism d 2 : height of the base of the prism sheet D: distance between the prism sheet and the liquid crystal display panel x coordinate of the triangular prism Is the horizontal distance from the apex of the tilt angle (elevation angle). The prism sheets 25-1 and 25-2 are made of, for example, acrylic (refractive index n = 1.49 or so).
 液晶表示パネル24-2から出射した表示光がプリズムシート25-2を透過した後の光のズレ量Δは、以下の式(1)で表される。
 
 △=(x・tanα+d)・tan(α-β)+D・tanγ   ・・・(1)
 0≦x<d/tanα
 β=sin-1{(1/n)・sinα}
 γ=sin-1{n・sin(α-β)}
 
 額縁20-2の端(プリズムシート25-2の端)は、x=0であり、x=0の場合における光のズレ量Δは、式(1)から以下の式(2)が導かれる。
 
 △=d・tan(α-β)+D・tanγ   ・・・(2)
 β=sin-1{(1/n)・sinα}
 γ=sin-1{n・sin(α-β)}
 
 図8は、三角プリズムの傾斜角αと光のズレ量Δとの一例を示す表である。図8では、d=0.25mm、d=1.75mm、D=15mm、n=1.49を一例として用いている。
The amount of deviation Δ of the light after the display light emitted from the liquid crystal display panel 24-2 passes through the prism sheet 25-2 is expressed by the following equation (1).

Δ = (x · tan α + d 2 ) · tan (α−β) + D · tan γ (1)
0 ≦ x <d 1 / tanα
β = sin −1 {(1 / n) · sin α}
γ = sin −1 {n · sin (α−β)}

The end of the frame 20-2 (the end of the prism sheet 25-2) is x = 0, and the light shift amount Δ0 in the case of x = 0 is derived from the following equation (2) from the equation (1). It is burned.

Δ 0 = d 2 · tan (α-β) + D · tanγ (2)
β = sin −1 {(1 / n) · sin α}
γ = sin −1 {n · sin (α−β)}

Figure 8 is a table showing an example of the shift amount delta 0 tilt angle α and the light of the triangular prism. In FIG. 8, d 1 = 0.25 mm, d 2 = 1.75 mm, D = 15 mm, and n = 1.49 are used as an example.
 例えばα=40°である場合、光のズレ量Δは、図8に示すように6.46mmとなる。よって、継ぎ目部26において、額縁20-1、20-2の各々の幅が6.46mmである場合(額縁20-1、20-2を合わせた幅が12.92mmである場合)、継ぎ目部26がちょうど見えない状態となる。すなわち、図6の表示が実現できる。 For example, when α = 40 °, the amount of light deviation Δ 0 is 6.46 mm as shown in FIG. Therefore, in the joint portion 26, when the width of each of the frames 20-1 and 20-2 is 6.46 mm (when the combined width of the frames 20-1 and 20-2 is 12.92 mm), the joint portion 26 is just invisible. That is, the display in FIG. 6 can be realized.
 従って、継ぎ目部26における額縁20-1、20-2の各々の幅W1は、以下の式(3)を満たすように設定される。
 
 W1≦Δ=d・tan(α-β)+D・tanγ   ・・・(3)
 β=sin-1{(1/n)・sinα}
 γ=sin-1{n・sin(α-β)}
 
 式(3)を満たすように、額縁20-1、20-2の各々の幅W1を設定することで、観察者によって継ぎ目部26が見えない状態を実現できる。実際には、W1は、右辺とイコール又は近似であるか、例えば製造誤差を考慮した値の分だけ右辺より小さい値であることが望ましい。式(3)において、三角プリズムの高さdは、Δの条件に含まれていない。dを小さくするにつれて必要とされる三角プリズムの数が増え、dを大きくするにつれて必要とされる三角プリズムの数が減るという関係を有する。dは、プリズムシート全体の高さに影響を与えるため、求められる仕様に応じて適宜設計される。
Accordingly, the width W1 of each of the frames 20-1 and 20-2 in the joint portion 26 is set so as to satisfy the following expression (3).

W1 ≦ Δ 0 = d 2 · tan (α−β) + D · tan γ (3)
β = sin −1 {(1 / n) · sin α}
γ = sin −1 {n · sin (α−β)}

By setting the width W1 of each of the frames 20-1 and 20-2 so as to satisfy the expression (3), it is possible to realize a state where the joint portion 26 cannot be seen by the observer. Actually, it is desirable that W1 is equal to or equal to the right side, or is smaller than the right side by, for example, a value considering manufacturing error. In the formula (3), the height d 1 of the triangular prism is not included in the conditions of the delta 0. As d 1 is reduced, the number of triangular prisms required increases, and as d 1 is increased, the number of triangular prisms required decreases. Since d 1 affects the overall height of the prism sheet, it is appropriately designed according to the required specifications.
 [3.変形例]
 上記説明では、サブ表示装置11-1、11-2間の額縁が見えないようにしたが、同様の設計をサブ表示装置11-1、11-2の各々の周辺部に実施することにより、液晶表示装置11の周辺の額縁を見えなくすることができる。
[3. Modified example]
In the above description, the frame between the sub display devices 11-1 and 11-2 is made invisible. However, by implementing the same design on the periphery of each of the sub display devices 11-1 and 11-2, The frame around the liquid crystal display device 11 can be made invisible.
 図9(a)は、第1変形例に係る液晶表示装置11の平面図である。なお、図9(a)は、プリズムシートの図示を省略している。図10は、第1変形例に係るプリズムシート25-1、25-2の斜視図である。サブ表示装置11-1、11-2はそれぞれ、図10に示したプリズムシート25-1、25-2を備える。 FIG. 9A is a plan view of the liquid crystal display device 11 according to the first modification. In FIG. 9A, the prism sheet is not shown. FIG. 10 is a perspective view of the prism sheets 25-1 and 25-2 according to the first modification. The sub display devices 11-1 and 11-2 include the prism sheets 25-1 and 25-2 shown in FIG.
 プリズムシート25-1は、土台25A-1と、複数の三角プリズム25B-1とを備える。各三角プリズム25B-1は、サブ表示装置11-1の端部(少なくとも額縁20-1の上部)に配置され、矩形に形成される。換言すると、三角プリズム25B-1は、サブ表示装置11-1の4辺に配置された4つの三角柱から構成される。三角プリズム25B-1は、プリズムシート25-1の内側(中心)に向かって傾く傾斜面を有する。 The prism sheet 25-1 includes a base 25A-1 and a plurality of triangular prisms 25B-1. Each triangular prism 25B-1 is disposed at the end of the sub display device 11-1 (at least above the frame 20-1) and is formed in a rectangular shape. In other words, the triangular prism 25B-1 is composed of four triangular prisms arranged on the four sides of the sub display device 11-1. The triangular prism 25B-1 has an inclined surface inclined toward the inner side (center) of the prism sheet 25-1.
 なお、図10では、土台25A-1の周辺部に三角プリズム25B-1が設けられているが、土台25A-1の中央に向かって土台25A-1の全面に三角プリズム25B-1を設けてもよい。また、図10では、四角形の三角プリズム25B-1の角が丸まっているが、この形状は一例であり、三角プリズム25B-1の角が直角であってもよい。また、図面が煩雑になるのを避けるために、3つの三角プリズムしか図示していないが、実際には、より多くの三角プリズムが配置される。 In FIG. 10, the triangular prism 25B-1 is provided around the base 25A-1, but the triangular prism 25B-1 is provided on the entire surface of the base 25A-1 toward the center of the base 25A-1. Also good. In FIG. 10, the corners of the square triangular prism 25B-1 are rounded, but this shape is an example, and the corners of the triangular prism 25B-1 may be a right angle. Further, only three triangular prisms are shown in order to avoid complicated drawings, but actually, more triangular prisms are arranged.
 図9(b)は、観察者が液晶表示装置11(サブ表示装置11-1、11-2を備える)を見た場合の平面図である。プリズムシート25-1、25-2を用いてサブ表示装置11-1、11-2の表示光を屈折させることで、観察者にとって、サブ表示装置11-1、11-2の継ぎ目部、及びサブ表示装置11-1、11-2の各々の外周の額縁を見えなくすることができる。 FIG. 9B is a plan view when the observer views the liquid crystal display device 11 (including the sub display devices 11-1 and 11-2). By refracting the display light of the sub display devices 11-1 and 11-2 using the prism sheets 25-1 and 25-2, the joint of the sub display devices 11-1 and 11-2, and The frame on the outer periphery of each of the sub display devices 11-1 and 11-2 can be made invisible.
 図11(a)は、第2変形例に係る液晶表示装置11の平面図である。第2変形例では、液晶表示装置11の画面が4分割される。液晶表示装置11は、4個のサブ表示装置11-1~11-4を備える。サブ表示装置11-1~11-4の各々は、前述したサブ表示装置11-1又は11-2と同じ構成である。図11(a)は、プリズムシートの図示を省略している。 FIG. 11A is a plan view of the liquid crystal display device 11 according to the second modification. In the second modification, the screen of the liquid crystal display device 11 is divided into four. The liquid crystal display device 11 includes four sub display devices 11-1 to 11-4. Each of the sub display devices 11-1 to 11-4 has the same configuration as the sub display device 11-1 or 11-2 described above. In FIG. 11A, the prism sheet is not shown.
 サブ表示装置11-1~11-4はそれぞれ、プリズムシート25-1~25-4を備える。図12は、第2変形例に係るプリズムシート25-1~25-4の斜視図である。プリズムシート25-1~25-4の各々は、サイズが異なる以外は、第1変形例で示したプリズムシート25-1又は25-1と同じ構成である。 Sub display devices 11-1 to 11-4 include prism sheets 25-1 to 25-4, respectively. FIG. 12 is a perspective view of prism sheets 25-1 to 25-4 according to the second modification. Each of the prism sheets 25-1 to 25-4 has the same configuration as the prism sheet 25-1 or 25-1 shown in the first modification except that the sizes are different.
 図11(b)は、観察者が液晶表示装置11(サブ表示装置11-1~11-4を備える)を見た場合の平面図である。プリズムシート25-1~25-4を用いてサブ表示装置11-1~11-4の表示光を屈折させることで、観察者にとって、サブ表示装置11-1~11-4の継ぎ目部、及びサブ表示装置11-1~11-4の各々の外周の額縁を見えなくすることができる。 FIG. 11B is a plan view when the observer looks at the liquid crystal display device 11 (including the sub display devices 11-1 to 11-4). By refracting the display light of the sub display devices 11-1 to 11-4 using the prism sheets 25-1 to 25-4, the observer can connect the joint portions of the sub display devices 11-1 to 11-4, and The frame on the outer periphery of each of the sub display devices 11-1 to 11-4 can be made invisible.
 [4.実施例]
 図13は、実施例に係る映像表示装置10の模式図である。映像表示装置10は、液晶表示装置31、及び液晶表示装置11(サブ表示装置11-1、11-2を備える)を備える。液晶表示装置31は、メインの画像を表示する一般的な液晶表示装置である。
[4. Example]
FIG. 13 is a schematic diagram of the video display apparatus 10 according to the embodiment. The video display device 10 includes a liquid crystal display device 31 and a liquid crystal display device 11 (including sub display devices 11-1 and 11-2). The liquid crystal display device 31 is a general liquid crystal display device that displays a main image.
 サブ表示装置11-1、11-2は、可動役物(ギミック)として機能する。すなわち、映像表示装置10は、サブ表示装置11-1、11-2を機械的に動かす駆動部(図示せず)を備える。 The sub display devices 11-1 and 11-2 function as a movable accessory (gimmick). That is, the video display device 10 includes a drive unit (not shown) that mechanically moves the sub display devices 11-1 and 11-2.
 図13(a)に示すように、サブ表示装置11-1、11-2はそれぞれ、プリズムシート25-1、25-2を備えているので、サブ表示装置11-1、11-2の額縁は、観察者からは見えない。サブ表示装置11-1、11-2は、互いに離れて配置される。続いて、図13(b)に示すように、サブ表示装置11-1、11-2は、液晶表示装置31の中央部に移動し、左右に並んでかつ接するように配置される。この場合、サブ表示装置11-1、11-2の間の継ぎ目部や隙間がほぼ見えない。 As shown in FIG. 13A, the sub display devices 11-1 and 11-2 include prism sheets 25-1 and 25-2, respectively. Is invisible to the observer. The sub display devices 11-1 and 11-2 are arranged apart from each other. Subsequently, as shown in FIG. 13B, the sub display devices 11-1 and 11-2 move to the center of the liquid crystal display device 31, and are arranged side by side and in contact with each other. In this case, the joints and gaps between the sub display devices 11-1 and 11-2 are hardly visible.
 これにより、液晶表示装置11は、1つの連続した画像を表示することができる。また、液晶表示装置11の画像を液晶表示装置31のメイン画像に効果的に没入させることができる。また、サブ表示装置11-1とサブ表示装置11-2とが接触する際の衝撃を低減するために、サブ表示装置11-1及びサブ表示装置11-2の額縁を大きくした場合でも、観察者から額縁を見えなくすることができる。 Thereby, the liquid crystal display device 11 can display one continuous image. In addition, the image of the liquid crystal display device 11 can be effectively immersed in the main image of the liquid crystal display device 31. Even when the frame of the sub display device 11-1 and the sub display device 11-2 is enlarged in order to reduce the impact when the sub display device 11-1 and the sub display device 11-2 come into contact with each other, Can hide the picture frame from the person.
 図14は、他の実施例に係る映像表示装置10の模式図である。図14(a)において、液晶表示装置11(サブ表示装置11-1、11-2を備える)は、液晶表示装置31の中央部に配置され、また、サブ表示装置11-1、11-2は、左右に並んでかつ接するように配置されている。この時、サブ表示装置11-1、11-2の額縁は、観察者からは見えない。続いて、図14(b)に示すように、サブ表示装置11-1、11-2は、互いに離れるように上下に移動する。 FIG. 14 is a schematic diagram of a video display apparatus 10 according to another embodiment. In FIG. 14A, the liquid crystal display device 11 (comprising the sub display devices 11-1 and 11-2) is disposed at the center of the liquid crystal display device 31, and the sub display devices 11-1 and 11-2. Are arranged side by side and in contact with each other. At this time, the frames of the sub display devices 11-1 and 11-2 are not visible to the observer. Subsequently, as shown in FIG. 14B, the sub display devices 11-1 and 11-2 move up and down away from each other.
 次に、比較例について説明する。図15は、比較例に係る映像表示装置30の模式図である。映像表示装置30は、液晶表示装置31、及びサブ表示装置32-1、32-2を備える。サブ表示装置32-1、32-2の各々は、液晶表示装置で構成されるが、本実施形態のプリズムシートは備えていない。サブ表示装置32-1、32-2はそれぞれ、額縁33-1、33-2を備える。観察者には、サブ表示装置32-1、32-2の額縁33-1、33-2がそのまま見えることになる。 Next, a comparative example will be described. FIG. 15 is a schematic diagram of a video display device 30 according to a comparative example. The video display device 30 includes a liquid crystal display device 31, and sub display devices 32-1 and 32-2. Each of the sub display devices 32-1 and 32-2 includes a liquid crystal display device, but does not include the prism sheet of this embodiment. The sub display devices 32-1 and 32-2 are provided with frames 33-1 and 33-2, respectively. The viewer can see the frames 33-1 and 33-2 of the sub display devices 32-1 and 32-2 as they are.
 図15(a)に示すように、サブ表示装置32-1、32-2は、互いに離れて配置されている。続いて、図15(b)に示すように、サブ表示装置32-1、32-2は、液晶表示装置31の中央部に移動し、左右に並んでかつ接するように配置される。この場合、サブ表示装置32-1、32-2の間の継ぎ目部が見えてしまう。また、サブ表示装置32-1、32-2が表示する1つの画像は、サブ表示装置32-1、32-2の間の継ぎ目部で途切れてしまう。さらに、サブ表示装置32-1、32-2の外周の額縁が観察者に見えるため、サブ表示装置32-1、32-2の画像が液晶表示装置31のメイン画像に没入しているようには見えない。 As shown in FIG. 15A, the sub display devices 32-1 and 32-2 are arranged apart from each other. Subsequently, as shown in FIG. 15B, the sub display devices 32-1 and 32-2 move to the center of the liquid crystal display device 31, and are arranged side by side and in contact with each other. In this case, the joint between the sub display devices 32-1 and 32-2 is visible. In addition, one image displayed by the sub display devices 32-1 and 32-2 is interrupted at the joint between the sub display devices 32-1 and 32-2. Further, since the frame on the outer periphery of the sub display devices 32-1 and 32-2 is visible to the observer, the images of the sub display devices 32-1 and 32-2 are immersed in the main image of the liquid crystal display device 31. I can't see.
 特に、サブ表示装置32-1、32-2を可動役物として使用する場合、サブ表示装置32-1とサブ表示装置32-2とが接触する際の衝撃を低減するために、サブ表示装置32-1とサブ表示装置32-2との額縁を大きくする場合がある。このような対策を講じた場合、サブ表示装置32-1とサブ表示装置32-2との継ぎ目部がより大きくなるため、サブ表示装置32-1とサブ表示装置32-2とが表示する画像の一体感がより低減する。 In particular, when the sub display devices 32-1 and 32-2 are used as movable accessories, the sub display device is reduced in order to reduce the impact when the sub display device 32-1 and the sub display device 32-2 are in contact with each other. The frame between 32-1 and the sub display device 32-2 may be enlarged. When such measures are taken, the joint between the sub display device 32-1 and the sub display device 32-2 becomes larger, so that the images displayed by the sub display device 32-1 and the sub display device 32-2 are displayed. This reduces the sense of unity.
 [5.効果]
 以上詳述したように第1実施形態では、映像表示装置10は、額縁24A-1を備える液晶表示パネル24-1と、液晶表示パネル24-1と第1方向に並んで配置され、額縁24A-1を備える液晶表示パネル24-1と、液晶表示パネル24-1、24-2と距離を空けてそれぞれ配置されたプリズムシート25-1、25-2とを備える。プリズムシート25-1は、土台25A-1と、土台25A-1上に設けられた複数の三角プリズム25B-1とを備え、複数の三角プリズム25B-1の各々は、液晶表示パネル24-1と液晶表示パネル24-2との継ぎ目部26から離れる方向に傾く傾斜面を有する。また、プリズムシート25-2は、土台25A-2と、土台25A-2上に設けられた複数の三角プリズム25B-2とを備え、複数の三角プリズム25B-2の各々は、継ぎ目部26から離れる方向に傾く傾斜面を有する。そして、プリズムシート25-1、25-2のパラメーター、及び額縁24A-1、24A-2の幅は、プリズムシート25-1、25-2を介して液晶表示パネル24-1、24-2を正面から見た場合に、継ぎ目部26における額縁24A-1、24A-2が見えないように設定される。
[5. effect]
As described above in detail, in the first embodiment, the video display device 10 includes the liquid crystal display panel 24-1 including the frame 24A-1, the liquid crystal display panel 24-1, and the liquid crystal display panel 24-1 arranged in the first direction. Liquid crystal display panel 24-1 and prism sheets 25-1 and 25-2 arranged at a distance from the liquid crystal display panels 24-1 and 24-2. The prism sheet 25-1 includes a base 25A-1 and a plurality of triangular prisms 25B-1 provided on the base 25A-1, and each of the plurality of triangular prisms 25B-1 includes a liquid crystal display panel 24-1. And an inclined surface inclined in a direction away from the joint portion 26 between the liquid crystal display panel 24-2. The prism sheet 25-2 includes a base 25A-2 and a plurality of triangular prisms 25B-2 provided on the base 25A-2. Each of the plurality of triangular prisms 25B-2 is connected to the joint portion 26. It has an inclined surface which inclines in the direction of leaving. The parameters of the prism sheets 25-1 and 25-2 and the widths of the frames 24A-1 and 24A-2 are the same as those of the liquid crystal display panels 24-1 and 24-2 via the prism sheets 25-1 and 25-2. When viewed from the front, the frames 24A-1 and 24A-2 at the joint portion 26 are set so as not to be seen.
 従って第1実施形態によれば、液晶表示パネル24-1と液晶表示パネル24-2とが例えば左右に並んで配置された場合に、継ぎ目部26における額縁24A-1、24A-2を観察者から見えなくすることができる。これにより、本実施形態の映像表示装置を可動役物として使用することで、より効果的な表示及び演出を行うことが可能となる。例えば、1つの連続した表示だと思っていたものが、急に表示が2つに分かれることにより、よりインパクト感、及びよりサプライズ感を出せる。 Therefore, according to the first embodiment, when the liquid crystal display panel 24-1 and the liquid crystal display panel 24-2 are arranged side by side, for example, the frames 24A-1 and 24A-2 in the joint portion 26 are displayed on the viewer. Can be invisible. Thereby, it becomes possible to perform more effective display and production by using the video display device of this embodiment as a movable accessory. For example, what is thought to be one continuous display is suddenly divided into two, so that a sense of impact and a sense of surprise can be further produced.
 また、額縁が見えないことで、2つの小型液晶表示パネルを用いてより大型の画面を実現できる。 Also, since the frame is not visible, a larger screen can be realized using two small liquid crystal display panels.
 また、液晶表示パネル24-1と液晶表示パネル24-2とが接触する際の衝撃を緩和するために、額縁24A-1、24A-2の幅を大きくすることができ、さらに、これら額縁24A-1、24A-2の幅を大きくした場合でも、これら額縁24A-1、24A-2を見えなくすることができる。 Further, in order to reduce the impact when the liquid crystal display panel 24-1 and the liquid crystal display panel 24-2 come into contact with each other, the width of the frames 24A-1 and 24A-2 can be increased. Even when the widths of -1 and 24A-2 are increased, the frames 24A-1 and 24A-2 can be made invisible.
 また、継ぎ目部26以外の額縁を見えなくすることもできる。これにより、液晶表示パネル24-1、24-2により生成したサブ画像をメイン画像により効果的に没入させることができる。 Also, the frame other than the joint portion 26 can be made invisible. Thereby, the sub image generated by the liquid crystal display panels 24-1 and 24-2 can be more effectively immersed in the main image.
 [第2実施形態]
 第1実施形態で説明した構成では、液晶表示装置11の正面から画面を見ている場合、観察者には、サブ表示装置11-1とサブ表示装置11-2との継ぎ目部は見えない。しかし、図16及び図17に示すように、角度θだけ斜め方向から画面21-1、21-2を見た場合、観察者によって継ぎ目部26(具体的には、液晶表示パネル24-2の額縁24A-2)が見えてしまう。そこで、第2実施形態では、角度θだけ斜め方向から画面を見た場合でも、サブ表示装置11-1とサブ表示装置11-2との継ぎ目部が見えないように、映像表示装置10を構成する。
[Second Embodiment]
In the configuration described in the first embodiment, when the screen is viewed from the front of the liquid crystal display device 11, the observer cannot see the joint portion between the sub display device 11-1 and the sub display device 11-2. However, as shown in FIGS. 16 and 17, when the screens 21-1 and 21-2 are viewed from an oblique direction by the angle θ, the joint portion 26 (specifically, the liquid crystal display panel 24-2 The frame 24A-2) will be visible. Therefore, in the second embodiment, the video display device 10 is configured so that the joint between the sub display device 11-1 and the sub display device 11-2 is not visible even when the screen is viewed obliquely by the angle θ. To do.
 [1.液晶表示装置11の構成]
 図18(a)は、プリズムシート25-1のパラメーターを説明する断面図であり、図18(b)は、プリズムシート25-2のパラメーターを説明する断面図である。以下では、角度θだけ画面の右側から液晶表示装置11を見た場合における表示光の光路について説明する。
[1. Configuration of Liquid Crystal Display Device 11]
18A is a cross-sectional view illustrating parameters of the prism sheet 25-1, and FIG. 18B is a cross-sectional view illustrating parameters of the prism sheet 25-2. Hereinafter, the optical path of the display light when the liquid crystal display device 11 is viewed from the right side of the screen by the angle θ will be described.
 液晶表示パネル24-1から出射した表示光がプリズムシート25-1を透過した後の光のズレ量Δは、以下の式(4)で表される。
 
 △=(x・tanα+d)・tan(α-β)+D・tanγ  ・・・(4)
 0≦x<d/tanα
 β=sin-1{(1/n)・sin(α-θ)}
 γ=sin-1{n・sin(α-β)}
 
 また、液晶表示パネル24-2から出射した表示光がプリズムシート25-2を透過した後の光のズレ量Δは、以下の式(1)で表される。
 
 △=(x・tanα+d)・tan(α-β)+D・tanγ  ・・・(5)
 0≦x<d/tanα
 β=sin-1{(1/n)・sin(α+θ)}
 γ=sin-1{n・sin(α-β)}
 
 角度θだけ画面の右側から液晶表示装置11を見た場合、観察者に見える額縁は、液晶表紙パネル24-2の額縁24A-2である。x=0の場合における光のズレ量Δ0Rは、式(5)から以下の式(6)が導かれる。
 
 △0R=d・tan(α-β)+D・tanγ   ・・・(6)
 β=sin-1{(1/n)・sin(α+θ)}
 γ=sin-1{n・sin(α-β)}
 
 図19(a)は、プリズムシート25-1における角度θと光のズレ量Δ0Lとの一例を示す表であり、図19(b)は、プリズムシート25-2における角度θと光のズレ量Δ0Rとの一例を示す表である。図19では、α=40°、d=0.25mm、d=1.75mm、D=15mm、n=1.49を一例として用いている。
Deviation amount delta L of the light after the display light emitted from the liquid crystal display panel 24-1 is transmitted through the prism sheet 25-1 is represented by the following formula (4).

△ L = (x · tanα + d 2) · tan (α-β L) + D · tanγ L ··· (4)
0 ≦ x <d 1 / tanα
β L = sin −1 {(1 / n) · sin (α−θ)}
γ L = sin −1 {n · sin (α−β L )}

Further, the deviation amount delta R of the light after the display light emitted from the liquid crystal display panel 24-2 is transmitted through the prism sheet 25-2 is represented by the following formula (1).

△ R = (x · tanα + d 2) · tan (α-β R) + D · tanγ R ··· (5)
0 ≦ x <d 1 / tanα
β R = sin −1 {(1 / n) · sin (α + θ)}
γ R = sin −1 {n · sin (α−β R )}

When the liquid crystal display device 11 is viewed from the right side of the screen by the angle θ, the frame visible to the observer is the frame 24A-2 of the liquid crystal cover panel 24-2. The following equation (6) is derived from the equation (5) for the amount of light deviation Δ0R in the case of x = 0.

0R = d 2 · tan (α-β R ) + D · tan γ R (6)
β R = sin −1 {(1 / n) · sin (α + θ)}
γ R = sin −1 {n · sin (α−β R )}

Figure 19 (a) is a table showing an example of the angle θ and the light amount of deviation delta 0L in the prism sheet 25-1, FIG. 19 (b), deviation of the angle θ and the light in the prism sheet 25-2 It is a table | surface which shows an example with quantity (DELTA) 0R . In FIG. 19, α = 40 °, d 1 = 0.25 mm, d 2 = 1.75 mm, D = 15 mm, and n = 1.49 are used as an example.
 例えばθ=20°である場合、光のズレ量Δ0Rは、図19(b)に示すように1.89mmとなる。よって、上記したパラメーターの値を用いて液晶表示装置11を構成した場合、継ぎ目部26における額縁20-2の幅が1.89mmである場合、継ぎ目部26がちょうど見えない状態となる。 If for example, theta = 20 °, the deviation amount delta 0R light becomes 1.89mm as shown in FIG. 19 (b). Therefore, when the liquid crystal display device 11 is configured using the above-described parameter values, when the width of the frame 20-2 at the joint portion 26 is 1.89 mm, the joint portion 26 is not visible.
 従って、角度θだけ画面の右側から液晶表示装置11を見た場合、継ぎ目部26における額縁20-1の幅W2は、以下の式(7)を満たすように設定される。
 
 W2≦Δ0R=d・tan(α-β)+D・tanγ   ・・・(7)
 β=sin-1{(1/n)・sin(α+θ)}
 γ=sin-1{n・sin(α-β)}
 
 式(7)を満たすように、額縁20-1の幅W2を設定することで、角度θだけ画面の右側から液晶表示装置11を見た場合、観察者から継ぎ目部26が見えない状態を実現できる。
Therefore, when viewed by an angle θ from the right side of the screen of the liquid crystal display device 11, the width W2 R of the frame 20-1 in the joint portion 26, is set to satisfy the following equation (7).

W2 R ≦ Δ 0R = d 2 · tan (α-β R) + D · tanγ R ··· (7)
β R = sin −1 {(1 / n) · sin (α + θ)}
γ R = sin −1 {n · sin (α−β R )}

To satisfy equation (7), by setting the width W2 R of the frame 20-1, when viewed by an angle θ from the right side of the screen of the liquid crystal display device 11, a state where the joint portion 26 is not visible from the observer realizable.
 また、継ぎ目部26における額縁20-2の幅W2を、上記式(7)と同じ幅W2にすることで、角度θだけ画面の左側から液晶表示装置11を見た場合、観察者から継ぎ目部26が見えない状態を実現できる。 Further, when the liquid crystal display device 11 is viewed from the left side of the screen by an angle θ by setting the width W2 L of the frame 20-2 at the joint portion 26 to the same width W2 R as the above formula (7), from the observer A state in which the joint portion 26 is not visible can be realized.
 [2.実施例]
 図20は、正面から画面を見た場合に継ぎ目部が見えないように構成された液晶表示装置11の斜視図である。図20に示すように、観察者が正面から画面を見る場合を想定して液晶表示装置11を設計した場合、液晶表示パネル24-1、24-2の額縁24A-1、24A-2は観察者から見えない。この時、液晶表示パネル24-1、24-2の画像IM1、IM2には、1つの連続した画像を半分に分けた画像が用いられる。
[2. Example]
FIG. 20 is a perspective view of the liquid crystal display device 11 configured such that the joint portion is not visible when the screen is viewed from the front. As shown in FIG. 20, when the liquid crystal display device 11 is designed on the assumption that the observer views the screen from the front, the frames 24A-1 and 24A-2 of the liquid crystal display panels 24-1 and 24-2 are observed. Invisible to the person. At this time, images obtained by dividing one continuous image in half are used as the images IM1 and IM2 of the liquid crystal display panels 24-1 and 24-2.
 図21は、図20に示した液晶表示装置11を角度θだけ右側から見た様子を説明する図である。図21では、液晶表示パネル24-2の額縁24A-2が観察者から見える。 FIG. 21 is a diagram for explaining a state where the liquid crystal display device 11 shown in FIG. 20 is viewed from the right side by an angle θ. In FIG. 21, the frame 24A-2 of the liquid crystal display panel 24-2 is visible to the observer.
 以下に、正面から画面を見た場合と、角度θだけ斜めから画面を見た場合との両方において、継ぎ目部が見えないように構成された液晶表示装置11の実施例について説明する。 Hereinafter, an embodiment of the liquid crystal display device 11 configured to prevent the joint from being seen both when the screen is viewed from the front and when the screen is viewed obliquely by the angle θ will be described.
 図22は、実施例に係る液晶表示パネル24-1、24-2が表示する画像を説明する図である。図22において、ケース22-1、22-2の枠に対応する額縁はそれぞれ、液晶表示パネル24-1、24-2の額縁24A-1、24A-2に含まれるものとして、図示を省略する。液晶表示パネル24-1が表示する画像IM1と、液晶表示パネル24-2が表示する画像IM2とは、継ぎ目部側の画像が一部重複するように構成される。図22では、画像IM1の領域AR1と、画像IM2の領域AR2とは重複している。 FIG. 22 is a diagram for explaining images displayed by the liquid crystal display panels 24-1 and 24-2 according to the embodiment. In FIG. 22, the frames corresponding to the frames of the cases 22-1 and 22-2 are included in the frames 24A-1 and 24A-2 of the liquid crystal display panels 24-1 and 24-2, respectively, and the illustration is omitted. . The image IM1 displayed on the liquid crystal display panel 24-1 and the image IM2 displayed on the liquid crystal display panel 24-2 are configured such that the images on the joint portion side partially overlap. In FIG. 22, the area AR1 of the image IM1 and the area AR2 of the image IM2 overlap.
 図23は、実施例に係る液晶表示装置11を正面から画面を見た様子を説明する斜視図である。図23の例では、図20の例に比べて、液晶表示パネル24-1、24-2とプリズムシート25-1、25-2との距離を離すことで、液晶表示パネル24-1、24-2の額縁24A-1、24A-2を観察者から見えないようにしている。図23では、観察者は、領域AR1、AR2以外の画像を利用することで、1つの連続した画像を見ることができる。 FIG. 23 is a perspective view illustrating a state in which the screen is viewed from the front of the liquid crystal display device 11 according to the embodiment. In the example of FIG. 23, as compared with the example of FIG. 20, the liquid crystal display panels 24-1 and 24-2 are separated from the prism sheets 25-1 and 25-2 by separating the liquid crystal display panels 24-1 and 24-2. -2 frames 24A-1 and 24A-2 are hidden from the viewer. In FIG. 23, the observer can see one continuous image by using images other than the areas AR1 and AR2.
 図24は、実施例に係る液晶表示装置11を角度θだけ右側から画面を見た様子を説明する斜視図である。観察者は、画像IM2の領域AR2を利用することで、1つの連続した画像を見ることができる。 FIG. 24 is a perspective view illustrating a state where the liquid crystal display device 11 according to the embodiment is viewed from the right side by an angle θ. The observer can see one continuous image by using the area AR2 of the image IM2.
 制御回路16は、図22に示した画像IM1、IM2を表示するための画像データDT1、DT2を生成する。そして、制御回路16は、サブ表示装置11-1(液晶表示パネル24-1)に画像データDT1を送り、サブ表示装置11-2(液晶表示パネル24-2)に画像データDT2を送る。 The control circuit 16 generates image data DT1 and DT2 for displaying the images IM1 and IM2 shown in FIG. Then, the control circuit 16 sends the image data DT1 to the sub display device 11-1 (liquid crystal display panel 24-1), and sends the image data DT2 to the sub display device 11-2 (liquid crystal display panel 24-2).
 次に、画像の重複領域の幅に関する条件について説明する。画像IM1の領域AR1の幅と、画像IM2の領域AR2の幅とは、同じであり、ここではW3と表記する。 Next, the conditions regarding the width of the overlapping area of the image will be described. The width of the area AR1 of the image IM1 is the same as the width of the area AR2 of the image IM2, and is denoted here as W3.
 オーバーラップ幅W3は、“図23における正面から画面を見た場合の光のズレ量Δ”から“図24における角度θだけ右側から画面を見た場合の光のズレ量Δ0R”を引いた値に基づいて算出される。すなわち、オーバーラップ幅W3は、以下の式(8)で表される。
 
 W3≧d{tan(α-β)-tan(α-β)}+D(tanγ-tanγ)   ・・・(8)
 β=sin-1{(1/n)・sinα}
 γ=sin-1{n・sin(α-β)}
 β=sin-1{(1/n)・sin(α+θ)}
 γ=sin-1{n・sin(α-β)}
 
 実際には、W3は、右辺とイコール又は近似であるか、例えば製造誤差を考慮した値の分だけ右辺より大きい値であることが望ましい。制御回路16は、式(3)を満たすように画像データDT1、DT2を生成する。これにより、正面から画面を見た場合と、角度θだけ斜めから画面を見た場合との両方において、継ぎ目部が見えないようにすることができる。
The overlap width W3 is obtained by subtracting “the amount of light deviation Δ 0R when viewing the screen from the right side by an angle θ in FIG. 24” from “the amount of light deviation Δ 0 when viewing the screen from the front in FIG. 23”. It is calculated based on the obtained value. That is, the overlap width W3 is expressed by the following formula (8).

W3 ≧ d 2 {tan (α−β) −tan (α−β R )} + D (tan γ−tan γ R ) (8)
β = sin −1 {(1 / n) · sin α}
γ = sin −1 {n · sin (α−β)}
β R = sin −1 {(1 / n) · sin (α + θ)}
γ R = sin −1 {n · sin (α−β R )}

Actually, it is desirable that W3 is equal or approximate to the right side, or is larger than the right side by, for example, a value considering manufacturing error. The control circuit 16 generates the image data DT1 and DT2 so as to satisfy Expression (3). This makes it possible to prevent the joint from being seen both when the screen is viewed from the front and when the screen is viewed obliquely by the angle θ.
 [3.効果]
 以上詳述したように第2実施形態によれば、正面から画面を見た場合だけでなく、角度θだけ斜めから画面を見た場合でも、継ぎ目部26における額縁24A-1、24A-2を観察者から見えなくすることができる。
[3. effect]
As described above in detail, according to the second embodiment, the frames 24A-1 and 24A-2 in the joint portion 26 are not only viewed from the front but also viewed from an angle of θ. It can be made invisible to the observer.
 また、一部が重複した2つの画像IM1、IM2を液晶表示パネル24-1、24-2に表示させることで、1つの連続した画像を表示できる。 Further, by displaying two images IM1 and IM2 partially overlapping on the liquid crystal display panels 24-1 and 24-2, one continuous image can be displayed.
 なお、第1実施形態の変形例を第2実施形態に適用することも可能である。 Note that a modification of the first embodiment can also be applied to the second embodiment.
 上記各実施形態は、特に、遊技機としてのパチンコ機、及びスロットマシンに適用することが可能である。しかし、上記各実施形態は、遊技機に限定されるものではなく、2つ以上の液晶表示パネルが常時又は一時的に並んで配置されるような構成を有する映像表示装置全般に適用できる。 The above embodiments can be applied particularly to a pachinko machine as a gaming machine and a slot machine. However, each of the above embodiments is not limited to a gaming machine, and can be applied to all video display devices having a configuration in which two or more liquid crystal display panels are always or temporarily arranged side by side.
 本発明は、上記実施形態に限定されるものではなく、その要旨を逸脱しない範囲内で、構成要素を変形して具体化することが可能である。さらに、上記実施形態には種々の段階の発明が含まれており、1つの実施形態に開示される複数の構成要素の適宜な組み合わせ、若しくは異なる実施形態に開示される構成要素の適宜な組み合わせにより種々の発明を構成することができる。例えば、実施形態に開示される全構成要素から幾つかの構成要素が削除されても、発明が解決しようとする課題が解決でき、発明の効果が得られる場合には、これらの構成要素が削除された実施形態が発明として抽出されうる。 The present invention is not limited to the embodiment described above, and can be embodied by modifying the constituent elements without departing from the scope of the invention. Further, the above embodiments include inventions at various stages, and are obtained by appropriately combining a plurality of constituent elements disclosed in one embodiment or by appropriately combining constituent elements disclosed in different embodiments. Various inventions can be configured. For example, even if some constituent elements are deleted from all the constituent elements disclosed in the embodiments, the problems to be solved by the invention can be solved and the effects of the invention can be obtained. Embodiments made can be extracted as inventions.
 10…映像表示装置、11…液晶表示装置、12…走査ドライバ、13…信号ドライバ、14…共通電圧供給回路、15…電圧発生回路、16…制御回路、17…画素、18…スイッチング素子、20…額縁、21…画面、22…ケース、23…光源部、24…液晶表示パネル、24A…額縁、25…プリズムシート、25A…土台、25B…三角プリズム、26…継ぎ目部、30…映像表示装置、31、32…液晶表示装置、33…額縁。 DESCRIPTION OF SYMBOLS 10 ... Video display device, 11 ... Liquid crystal display device, 12 ... Scan driver, 13 ... Signal driver, 14 ... Common voltage supply circuit, 15 ... Voltage generation circuit, 16 ... Control circuit, 17 ... Pixel, 18 ... Switching element, 20 DESCRIPTION OF SYMBOLS ... Frame, 21 ... Screen, 22 ... Case, 23 ... Light source part, 24 ... Liquid crystal display panel, 24A ... Frame, 25 ... Prism sheet, 25A ... Base, 25B ... Triangular prism, 26 ... Seam part, 30 ... Video display device , 31, 32 ... Liquid crystal display device, 33 ... Picture frame.

Claims (9)

  1.  第1額縁を備える第1液晶表示パネルと、
     前記第1液晶表示パネルと第1方向に並んで配置され、第2額縁を備える第2液晶表示パネルと、
     前記第1及び第2液晶表示パネルと距離を空けてそれぞれ配置された第1及び第2プリズムシートと、
     を具備し、
     前記第1プリズムシートは、第1土台と、前記第1土台上に設けられた複数の第1三角プリズムとを備え、前記複数の第1三角プリズムの各々は、前記第1液晶表示パネルと前記第2液晶表示パネルとの継ぎ目部から離れる方向に傾く傾斜面を有し、
     前記第2プリズムシートは、第2土台と、前記第2土台上に設けられた複数の第2三角プリズムとを備え、前記複数の第2三角プリズムの各々は、前記継ぎ目部から離れる方向に傾く傾斜面を有し、
     前記第1及び第2プリズムシートを介して前記第1及び第2液晶表示パネルを正面から見た場合に、前記継ぎ目部における第1及び第2額縁が見えないことを特徴とする映像表示装置。
    A first liquid crystal display panel comprising a first frame;
    A second liquid crystal display panel arranged in a first direction with the first liquid crystal display panel and having a second frame;
    First and second prism sheets respectively disposed at a distance from the first and second liquid crystal display panels;
    Comprising
    The first prism sheet includes a first base and a plurality of first triangular prisms provided on the first base, and each of the plurality of first triangular prisms includes the first liquid crystal display panel and the first liquid crystal display panel. Having an inclined surface inclined in a direction away from the joint portion with the second liquid crystal display panel;
    The second prism sheet includes a second base and a plurality of second triangular prisms provided on the second base, and each of the plurality of second triangular prisms is inclined in a direction away from the joint portion. Has an inclined surface,
    An image display device, wherein the first and second picture frames at the joint portion are not visible when the first and second liquid crystal display panels are viewed from the front through the first and second prism sheets.
  2.  前記第1及び第2三角プリズムの各々の傾斜角α、前記第1及び第2土台の各々の高さd、前記第1及び第2プリズムシートの屈折率n、前記距離Dとすると、
     前記継ぎ目部における第1及び第2額縁の各々の幅W1は、
     W1≦d・tan(α-β)+D・tanγ
     β=sin-1{(1/n)・sinα}
     γ=sin-1{n・sin(α-β)}
     を満たすことを特徴とする請求項1に記載の映像表示装置。
    When the inclination angle α of each of the first and second triangular prisms, the height d 2 of each of the first and second bases, the refractive index n of the first and second prism sheets, and the distance D,
    The width W1 of each of the first and second picture frames at the joint portion is:
    W1 ≦ d 2 · tan (α-β) + D ・ tanγ
    β = sin −1 {(1 / n) · sin α}
    γ = sin −1 {n · sin (α−β)}
    The video display device according to claim 1, wherein:
  3.  前記第1プリズムシートは、前記継ぎ目部以外の第1額縁の上方に設けられ、前記第1土台の中央に向かって傾く複数の三角プリズムを備え、
     前記第2プリズムシートは、前記継ぎ目部以外の第2額縁の上方に設けられ、前記第2土台の中央に向かって傾く複数の三角プリズムを備えることを特徴とする請求項1に記載の映像表示装置。
    The first prism sheet is provided above the first frame other than the joint, and includes a plurality of triangular prisms inclined toward the center of the first base,
    2. The image display according to claim 1, wherein the second prism sheet includes a plurality of triangular prisms provided above a second frame other than the joint portion and inclined toward a center of the second base. apparatus.
  4.  前記第1及び第2液晶表示パネルは、可動役物であることを特徴とする請求項1に記載の映像表示装置。 The image display device according to claim 1, wherein the first and second liquid crystal display panels are movable accessories.
  5.  第1額縁を備える第1液晶表示パネルと、
     前記第1液晶表示パネルと第1方向に並んで配置され、第2額縁を備える第2液晶表示パネルと、
     前記第1及び第2液晶表示パネルと距離を空けてそれぞれ配置された第1及び第2プリズムシートと、
     を具備し、
     前記第1プリズムシートは、第1土台と、前記第1土台上に設けられた複数の第1三角プリズムとを備え、前記複数の第1三角プリズムの各々は、前記第1液晶表示パネルと前記第2液晶表示パネルとの継ぎ目部から離れる方向に傾く傾斜面を有し、
     前記第2プリズムシートは、第2土台と、前記第2土台上に設けられた複数の第2三角プリズムとを備え、前記複数の第2三角プリズムの各々は、前記継ぎ目部から離れる方向に傾く傾斜面を有し、
     前記第1及び第2プリズムシートを介して前記第1及び第2液晶表示パネルを角度θだけ斜めから見た場合に、前記継ぎ目部における第1及び第2額縁が見えないことを特徴とする映像表示装置。
    A first liquid crystal display panel comprising a first frame;
    A second liquid crystal display panel arranged in a first direction with the first liquid crystal display panel and having a second frame;
    First and second prism sheets respectively disposed at a distance from the first and second liquid crystal display panels;
    Comprising
    The first prism sheet includes a first base and a plurality of first triangular prisms provided on the first base, and each of the plurality of first triangular prisms includes the first liquid crystal display panel and the first liquid crystal display panel. Having an inclined surface inclined in a direction away from the joint portion with the second liquid crystal display panel;
    The second prism sheet includes a second base and a plurality of second triangular prisms provided on the second base, and each of the plurality of second triangular prisms is inclined in a direction away from the joint portion. Has an inclined surface,
    The first and second picture frames in the joint portion are not visible when the first and second liquid crystal display panels are viewed through the first and second prism sheets obliquely by an angle θ. Display device.
  6.  前記第1及び第2三角プリズムの各々の傾斜角α、前記第1及び第2土台の各々の高さd、前記第1及び第2プリズムシートの屈折率n、前記距離Dとすると、
     前記継ぎ目部における第1及び第2額縁の各々の幅W2は、
     W2≦d・tan(α-β)+D・tanγ
     β=sin-1{(1/n)・sin(α+θ)}
     γ=sin-1{n・sin(α-β)}
     を満たすことを特徴とする請求項5に記載の映像表示装置。
    When the inclination angle α of each of the first and second triangular prisms, the height d 2 of each of the first and second bases, the refractive index n of the first and second prism sheets, and the distance D,
    The width W2 of each of the first and second picture frames at the joint portion is:
    W2 ≦ d 2 · tan (α−β R ) + D · tan γ R
    β R = sin −1 {(1 / n) · sin (α + θ)}
    γ R = sin −1 {n · sin (α−β R )}
    The video display device according to claim 5, wherein:
  7.  前記第1及び第2液晶表示パネルに画像データを送る制御回路をさらに具備し、
     前記第1及び第2液晶表示パネルの各々の画像は、前記継ぎ目部側に配置された重複領域を備え、
     前記重複領域の幅W3は、
     W3≧d{tan(α-β)-tan(α-β)}+D(tanγ-tanγ
     β=sin-1{(1/n)・sinα}
     γ=sin-1{n・sin(α-β)}
     を満たすことを特徴とする請求項6に記載の映像表示装置。
    A control circuit for sending image data to the first and second liquid crystal display panels;
    Each of the images of the first and second liquid crystal display panels includes an overlapping region disposed on the joint portion side,
    The width W3 of the overlapping region is
    W3 ≧ d 2 {tan (α−β) −tan (α−β R )} + D (tan γ−tan γ R )
    β = sin −1 {(1 / n) · sin α}
    γ = sin −1 {n · sin (α−β)}
    The video display device according to claim 6, wherein:
  8.  前記第1プリズムシートは、前記継ぎ目部以外の第1額縁の上方に設けられ、前記第1土台の中央に向かって傾く複数の三角プリズムを備え、
     前記第2プリズムシートは、前記継ぎ目部以外の第2額縁の上方に設けられ、前記第2土台の中央に向かって傾く複数の三角プリズムを備えることを特徴とする請求項5に記載の映像表示装置。
    The first prism sheet is provided above the first frame other than the joint, and includes a plurality of triangular prisms inclined toward the center of the first base,
    The video display according to claim 5, wherein the second prism sheet includes a plurality of triangular prisms that are provided above a second frame other than the joint and are inclined toward the center of the second base. apparatus.
  9.  前記第1及び第2液晶表示パネルは、可動役物であることを特徴とする請求項5に記載の映像表示装置。 6. The video display device according to claim 5, wherein the first and second liquid crystal display panels are movable accessories.
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Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP3165960A1 (en) * 2015-11-06 2017-05-10 Young Lighting Technology Inc. Display apparatus
CN108333827A (en) * 2018-01-10 2018-07-27 惠州市华星光电技术有限公司 A kind of display device for realizing that black surround phenomenon is eliminated in splicing
US10067369B2 (en) 2015-11-06 2018-09-04 Champ Vision Display Inc. Display apparatus with a prism module including a corner prism set disposed on a corner region
US10504451B2 (en) 2016-08-08 2019-12-10 Champ Vision Display Inc. Display apparatus with multi screens and display signal control method thereof
US10809959B2 (en) 2017-10-25 2020-10-20 Champ Vision Display Inc. Multi-screen display device

Citations (10)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH10293542A (en) * 1997-04-17 1998-11-04 Sharp Corp Image display device
JP2003050554A (en) * 2001-08-08 2003-02-21 Sony Corp Liquid crystal display device
JP2003169271A (en) * 2001-11-30 2003-06-13 Toshiba Corp Image display device
JP2004029785A (en) * 2002-06-17 2004-01-29 Samsung Electronics Co Ltd Multiple display device having optical path shift means
JP2005017614A (en) * 2003-06-25 2005-01-20 Seiko Epson Corp Image display apparatus
JP2006346349A (en) * 2005-06-20 2006-12-28 Toyomaru Industry Co Ltd Display device and game machine equipped with the display device
JP2009042407A (en) * 2007-08-08 2009-02-26 Nec Access Technica Ltd Display apparatus
JP2009198688A (en) * 2008-02-20 2009-09-03 Sharp Corp Display
WO2011132528A1 (en) * 2010-04-23 2011-10-27 シャープ株式会社 Display device, display system, display control method for same, electronic device, program, computer-readable recording medium, and light guide element
JP2013054129A (en) * 2011-09-01 2013-03-21 Toshiba Corp Video display device

Family Cites Families (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH0210394A (en) * 1988-06-29 1990-01-16 Hitachi Ltd Image display panel and fresnel lens applied to the same

Patent Citations (10)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH10293542A (en) * 1997-04-17 1998-11-04 Sharp Corp Image display device
JP2003050554A (en) * 2001-08-08 2003-02-21 Sony Corp Liquid crystal display device
JP2003169271A (en) * 2001-11-30 2003-06-13 Toshiba Corp Image display device
JP2004029785A (en) * 2002-06-17 2004-01-29 Samsung Electronics Co Ltd Multiple display device having optical path shift means
JP2005017614A (en) * 2003-06-25 2005-01-20 Seiko Epson Corp Image display apparatus
JP2006346349A (en) * 2005-06-20 2006-12-28 Toyomaru Industry Co Ltd Display device and game machine equipped with the display device
JP2009042407A (en) * 2007-08-08 2009-02-26 Nec Access Technica Ltd Display apparatus
JP2009198688A (en) * 2008-02-20 2009-09-03 Sharp Corp Display
WO2011132528A1 (en) * 2010-04-23 2011-10-27 シャープ株式会社 Display device, display system, display control method for same, electronic device, program, computer-readable recording medium, and light guide element
JP2013054129A (en) * 2011-09-01 2013-03-21 Toshiba Corp Video display device

Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP3165960A1 (en) * 2015-11-06 2017-05-10 Young Lighting Technology Inc. Display apparatus
US10012857B2 (en) 2015-11-06 2018-07-03 Champ Vision Display Inc. Display apparatus including a prism module
US10067369B2 (en) 2015-11-06 2018-09-04 Champ Vision Display Inc. Display apparatus with a prism module including a corner prism set disposed on a corner region
US10504451B2 (en) 2016-08-08 2019-12-10 Champ Vision Display Inc. Display apparatus with multi screens and display signal control method thereof
US10809959B2 (en) 2017-10-25 2020-10-20 Champ Vision Display Inc. Multi-screen display device
CN108333827A (en) * 2018-01-10 2018-07-27 惠州市华星光电技术有限公司 A kind of display device for realizing that black surround phenomenon is eliminated in splicing

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