WO2015118929A1 - Dispositif d'affichage - Google Patents

Dispositif d'affichage Download PDF

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Publication number
WO2015118929A1
WO2015118929A1 PCT/JP2015/051180 JP2015051180W WO2015118929A1 WO 2015118929 A1 WO2015118929 A1 WO 2015118929A1 JP 2015051180 W JP2015051180 W JP 2015051180W WO 2015118929 A1 WO2015118929 A1 WO 2015118929A1
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WO
WIPO (PCT)
Prior art keywords
display
cover plate
display device
circuit board
case body
Prior art date
Application number
PCT/JP2015/051180
Other languages
English (en)
Japanese (ja)
Inventor
正彦 中澤
雄介 山下
Original Assignee
日本精機株式会社
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 日本精機株式会社 filed Critical 日本精機株式会社
Publication of WO2015118929A1 publication Critical patent/WO2015118929A1/fr

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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
    • G02F1/133308Support structures for LCD panels, e.g. frames or bezels
    • 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
    • G02F2201/00Constructional arrangements not provided for in groups G02F1/00 - G02F7/00
    • G02F2201/50Protective arrangements
    • G02F2201/503Arrangements improving the resistance to shock

Definitions

  • the present invention relates to a display device.
  • Patent Document 1 As a conventional display device, for example, there is one disclosed in Patent Document 1.
  • the display device according to Patent Document 1 has a structure in which a transparent cover plate and a liquid crystal display device are bonded with a photo-curing adhesive.
  • the structure in which the air layer between the cover plate and the liquid crystal display device is filled with the photo-curing adhesive can reduce reflection at the air layer interface as much as possible, and maintain a good display quality. Can do.
  • the present invention has been made in view of the above circumstances, and an object thereof is to provide a display device having good vibration resistance.
  • a display device includes: A display unit comprising: a display that displays an image on a display surface; and a cover plate that is adhered to the display surface side of the display with a photocurable adhesive and has a translucent portion that allows the display surface to be visually recognized.
  • a case body located on the display side of the cover plate, recessed toward the opposite side of the cover plate, and having a recess for housing the display;
  • a storage device that is positioned closer to the display device than the cover plate and houses the display device and the case body, In the normal direction of the display surface, a gap is formed between the indicator and the recess, and the indicator and the recess do not contact,
  • the display unit is supported by a predetermined portion other than the concave portion of the case body, It is characterized by that.
  • a display device with good vibration resistance can be provided.
  • FIG. 1 is a schematic plan view of a display device according to an embodiment of the present invention.
  • FIG. 2 is a cross-sectional view taken along line AA of the display device shown in FIG. It is an exploded view of the display apparatus shown in FIG. 2, (a) shows a frame, (b) is a figure which shows a display unit. It is an exploded view of the display apparatus shown in FIG. 2, (a) shows a circuit board unit, (b) is a figure which shows a container. (A) is an enlarged view of the B part vicinity of the display apparatus shown in FIG.
  • FIG. 2B is a cross-sectional view taken along line CC of the display device illustrated in FIG. It is a schematic perspective view of a circuit board unit.
  • FIG. 7 is a cross-sectional view of the circuit board unit shown in FIG. 6 taken along line EE.
  • the display device 1 has the outer shape shown in FIG. 1 and is configured as an instrument device that is mounted on a vehicle (for example, a motorcycle) and displays a predetermined measurement amount (vehicle speed or the like).
  • a vehicle for example, a motorcycle
  • a predetermined measurement amount vehicle speed or the like.
  • each member is appropriately described with the display side of the display device 1 as “front” and the opposite side as “back” for each member. (See double-ended arrows in FIG. 2).
  • the display device 1 includes a frame body 10, a display unit 20, a circuit board unit 30, and a housing body 40.
  • the frame 10 is made of metal, and fixes the display unit 20 to the container 40 as shown in FIG. The fixing mode will be described later.
  • the display unit 20 includes a display 21, a cover plate 22, a light transmissive layer 23, and an elastic member 24.
  • the display device 21 is composed of, for example, a TFT (Thin Film Transistor) type liquid crystal display (LCD) and displays an image for informing a predetermined measurement amount (for example, vehicle speed) on the display surface 21 a. .
  • a general-purpose modularized liquid crystal display is adopted as the display 21.
  • the display 21 has a boss body 21b (FIGS. 2 and 3B) protruding toward the back side. ing.
  • the display device 21 may be an organic EL display (OELD: Organic Electro-Luminescence Display).
  • the cover plate 22 is located on the front side of the display 21 and includes a transparent plate 220 and a light shielding portion 221.
  • the transparent plate 220 is made of, for example, inorganic glass or resin, and is formed into a flat plate shape (including colored transparent).
  • the light shielding part 221 is made of, for example, a light shielding printing layer formed on the back surface of the transparent plate 220. On the back surface of the transparent plate 220, there is a portion where the light shielding portion 221 is not formed, and this portion faces a window portion 221 a that allows the display surface 21 a of the display device 21 to be seen through, and a thermistor 33 a described later in the front and back direction. And a temperature measurement window 221b to be formed.
  • a warning display unit 221c including icons, symbols, and the like for notifying predetermined warning information in a so-called extracted character shape is formed in a part of the light shielding unit 221. That is, a part of the warning display part 221c has translucency. As shown in FIG. 1, the window part 221a is formed in a rectangular shape, and the warning display part 221c is located on both sides of the window part 221a. And the temperature measurement window part 221b is located side by side with the warning display part 221c located in the left side in FIG.
  • a buffer member 22a is attached to the back side of the light shielding portion 221 of the cover plate 22 by adhesion or the like.
  • the buffer member 22a is made of, for example, a sponge-like member, resin rubber, or the like, and comes into contact with the front side end portion of the case body 34.
  • the cover plate 22 is prevented from contacting the case body 34 as much as possible by the buffer member 22a and the elastic member 24 described later. With this configuration, vibrations applied to the internal structure of the display device 1 are reduced, and distortion that occurs when the display unit 20 is fixed to the container 40 with the frame body 10 is reduced.
  • the translucent layer 23 is filled between the back surface of the cover plate 22 and the display surface 21a of the display 21.
  • the cured photo-curing adhesive for example, ultraviolet (UV) curing adhesive. It is configured.
  • the cover plate 22 and the display device 21 are bonded together by a method (so-called optical carboxylating) in which the adhesive is cured by irradiating light after being overlapped with the photo-curing adhesive interposed therebetween.
  • the elastic member 24 is provided so as to cover the side peripheral portion of the cover plate 22 as shown in FIG. 2 and FIG. Paying attention to the cross-sectional shape, the elastic member 24 has a substantially U-shape and is provided so as to sandwich the end portion of the cover plate 22 (the left and right end portions in FIGS. 2 and 3B).
  • the elastic member 24 is interposed between the cover plate 22 and the frame body 10 and between the cover plate 22 and the housing body 40, and prevents water (rain water or the like) from entering from the outside of the display device 1. Functions as a waterproof packing.
  • circuit board unit 30 As shown in FIGS. 2 and 4A, the circuit board unit 30 holds the first circuit board 31, the second circuit board 32, the third circuit board 33, and these circuit boards. A case body 34 and a buffer member 35 are provided.
  • the first to third circuit boards 31 to 33 are each composed of a printed circuit board in which various electronic components are mounted on a board on which printed wiring is formed.
  • the first circuit board 31 is located behind the display 21 and is electrically connected to the display 21. Specifically, as shown in FIG. 6, a connector 31a is mounted on the back surface of the first circuit board 31, and the connector 31a and a connector 21c (see FIG. 7)), the first circuit board 31 and the display 21 are electrically connected.
  • the flexible board 50 is made of, for example, a flexible printed board (FPC (Flexible Printed Circuits)), a flexible flat cable (FFC), or the like.
  • the connector 21c is located on the upper end side in FIG. FIG. 6 shows a state before the flexible substrate 50 is connected to the connector 31a.
  • a light source 31b for illuminating the warning display unit 221c is mounted on the front side of the first circuit board 31.
  • the light source 31b is formed of, for example, a light emitting diode (LED: Light ⁇ ⁇ Emitting Diode) and is provided at a position facing the warning display unit 221c in the front and back direction of the display device 1 and emits light toward the front side.
  • LED Light ⁇ ⁇ Emitting Diode
  • a control unit (such as a microcomputer (not shown)) that controls the operation of the display device 1 is mounted on the first circuit board 31 (for example, mounted on the back side of the board).
  • This control unit is electrically connected to an ECU (Electronic Control Unit) (not shown) of the vehicle, and displays an image indicating the vehicle speed and the like on the display 21 based on various information about the vehicle acquired from the ECU. Display.
  • the light source 31b also performs a light emission operation under the control of the control unit.
  • the second circuit board 32 is located on the back side of the first circuit board 31 and is electrically connected to the first circuit board 31. Specifically, a connector (not shown) mounted on the back side of the first circuit board 31 and a connector (not shown) mounted on the front side of the second circuit board 32 are connected. Both are electrically connected.
  • an external connection connector (not shown) for connecting the display device 1 and the outside is mounted on the second circuit board 32 in addition to the various electronic components.
  • This external connection connector is mounted on the back side of the second circuit board 32, and is displayed from an opening (not shown) provided in the bottom 41 (FIGS. 2 and 4B) of the container 40. It is exposed to the outside of the device 1.
  • the display device 1 can be connected to an external device such as an ECU.
  • the third circuit board 33 is located on the front side of the first circuit board 31 and is closer to the end of the display device 1 than the display 21 (FIG. 2). At the left end side).
  • the third circuit board 33 is electrically connected to the first circuit board 31 by connection means such as a cable.
  • the thermistor 33a is mounted on the front side in addition to various electronic components on the third circuit board 33.
  • the thermistor 33 a is provided at a position facing the temperature measurement window 221 b in the front and back direction of the display device 1, and outputs a resistance value (signal) that changes according to a change in the ambient temperature of the display device 1.
  • the temperature measurement window 221b is translucent because it is formed by a portion of the cover plate 22 that does not have the light shielding portion 221. For this reason, the temperature change which arises with the external light which permeate
  • control unit causes the display 21 to display the ambient temperature of the display device 1 based on the resistance value output from the thermistor 33a, or when it is determined that the ambient temperature has become higher than a predetermined threshold value.
  • the display brightness of the display device 21 is lowered to prevent the display device 21 and the like from being damaged due to a temperature rise.
  • the case body 34 is made opaque (for example, white) from a resin such as polypropylene, and holds the first to third circuit boards 31 to 33.
  • the first circuit board 31 is fixed to the case body 34 from the back side by fixing means such as a screw S1.
  • the second circuit board 32 is formed on the case body 34, and is fixed to the case body 34 by a fixing means such as a screw S2 on a boss portion 341 protruding toward the back side.
  • the boss portion 341 passes through the opening 310 formed in the substrate of the first circuit board 31 and reaches from the front side to the back side of the first circuit board 31.
  • the second circuit board 32 fixed to the boss portion 341 is positioned on the back side of the first circuit board 31.
  • the third circuit board 33 is located in a concave arrangement space 342 provided on the back side of the temperature measurement window 221b, and is fixed to the case body 34 by a fixing means such as a screw S3 from the front side. In this way, the first to third circuit boards 31 to 33 are fixed (held) to the case body 34.
  • the case body 34 has a recess 343 for housing the display device 21 and a light guide 344 for guiding the light emitted from the light source 31b to the cover plate 22. Is formed.
  • the concave portion 343 is formed in a concave shape, covers the display device 21 from the back side, and houses the display device 21 so as to substantially surround the portion other than the display surface 21a.
  • a gap G is formed between the display 21 and the recess 343, and the display 21 and the recess 343 do not contact each other. Therefore, the display device 21 is supported in a suspended manner on the cover plate 22 via the translucent layer 23.
  • a through hole 343b through which the boss body 21b of the display 21 passes to the first circuit board 31 side is formed in the bottom 343a of the recess 343.
  • the opening diameter of the through hole 343b is larger than the diameter of the boss body 21b, and therefore the case body 34 and the boss body 21b do not contact each other.
  • the light guide 344 is a cylindrical portion formed adjacent to the recess 343, and guides light emitted from the light source 31b to the cover plate 22 side.
  • the light guide 344 is formed so as to surround a line connecting the light source 31b and the warning display unit 221c located on the front side thereof. The light emitted from the light source 31b reaches the cover plate 22 while being efficiently reflected by the inner surface of the light guide 344 thus formed, and illuminates the warning display portion 221c.
  • the case body 34 includes a side wall portion 345 and a flange portion 346.
  • the side wall portion 345 is a wall portion having a surface that stands from the bottom portion 343a toward the front side and toward the outer peripheral side of the case body 34, as shown in FIGS. As shown in FIG. 6, the side wall 345 is formed with a plurality of heat radiation holes 345a for releasing heat generated from the display 21 or the like during operation.
  • a lead-out portion 345 b made of a notch through which the flexible substrate 50 connected to the connector 21 c of the display 21 is passed is formed in the side wall portion 345.
  • the connector 21c is mounted on the back side of the display 21 and on the upper end side in FIG.
  • the flexible board 50 connected to the connector 21c is mounted on the connector 31a (on the back side of the first circuit board 31 and on the upper end side in FIG. 1) mounted on the back side of the first circuit board 31.
  • the display 21 and the first circuit board 31 are electrically connected.
  • the lead-out part 345b facilitates the connection work of the flexible board 50 to the connector 31a, and the flexible board 50 comes into unnecessary contact with the case body 34 to cause friction with the flexible board 50. It is provided to prevent the load from being applied.
  • a first cutout portion 31c and a second cutout portion 32a are formed on the upper ends of the first circuit board 31 and the second circuit board 32 in FIG. 6, see FIG.
  • the second notch 32a formed on the second circuit board 32 is in the front-back direction with respect to the connector 31a mounted on the first circuit board 31 (the method of the display surface 21a).
  • the flange portion 346 is a portion that is formed so as to protrude from the front side end portion of the side wall portion 345 toward the outer peripheral side of the case body 34, and is fitted into a later-described stepped portion 44 a formed in the housing body 40. .
  • the case body 34 is arrange
  • the buffer member 35 is made of, for example, a sponge-like member or resin rubber, and is attached to the front side of the bottom 343a of the recess 343 by a method such as adhesion. That is, the buffer member 35 is provided in the gap G.
  • the buffer member 35 is set so that its height (height in the front and back direction) is substantially the same (including exactly the same) as the distance between the back surface of the display device 21 and the bottom portion 343a of the recess 343, or The height is set so as to be touched only when the display 21 is tilted from the horizontal state due to vibration or the like.
  • the buffer member 35 is provided to alleviate the impact applied to the display device 21 during vibration.
  • the container 40 is formed from a resin such as ABS (Acrylonitrile Butadiene Styrene copolymer) with a light shielding property (for example, black).
  • the container 40 has the bottom 41 described above and a wall 42 standing from the end of the bottom 41 toward the front side, and is formed in a box shape that opens toward the front side. That is, the container 40 has an opening 43 surrounded by the front side end of the wall 42.
  • the circuit board unit 30 is arranged inside the container 40 formed in this way. Further, a protruding portion 44 that protrudes to the outer peripheral side of the opening 43 is provided at the front end portion of the wall portion 42. A step 44 a surrounding the opening 43 is formed on the opening 43 side of the protrusion 44.
  • the case body 34 is disposed in the housing body 40 by fitting the flange portion 346 of the case body 34 described above into the stepped portion 44a. That is, in this way, the circuit board unit 30 is located inside the container 40.
  • the display unit 20 shown in FIG. 3B is placed on the frame 10 turned upside down from the state shown in FIG. At this time, the frame body 10 contacts only the elastic member 24 in the display unit 20.
  • the frame 10 is formed in a shape along the shape of the elastic member 24 provided on the side peripheral portion of the cover plate 22. Specifically, the frame body 10 covers the front side and the side portion side of the elastic member 24.
  • a flexible substrate 50 is connected to the display 21 of the display unit 20 in advance.
  • the circuit board unit 30 shown in FIG. 4A is placed from the display unit 21 side of the display unit 20.
  • the flexible substrate 50 is led out from the lead-out portion 345b formed in the case body 34 of the circuit board unit 30 as shown in FIG.
  • the flexible board 50 is connected to a connector 31 a mounted on the back side of the first circuit board 31.
  • This connection work is facilitated particularly by providing the second notch 32 a in the second circuit board 32.
  • the flange portion 346 of the case body 34 of the circuit board unit 30 contacts the elastic member 24 that covers the side peripheral portion of the cover plate 22.
  • the front side end portion of the case body 34 other than the flange portion 346 is in contact with the buffer member 22a, so that the case body 34 and the cover plate 22 are not directly touched.
  • the flange portion 346 formed on the case body 34 is placed so as to fit into the stepped portion 44 a formed on the housing body 40.
  • the depth d of the stepped portion 44a and the thickness t of the flange portion 346 are formed to be substantially equal.
  • the protrusion part 44 and the flange part 346 are located on the substantially same plane by the cover plate 22 side, and comprise the mounting surface in which the elastic member 24 is mounted.
  • the mounting surface is configured as described above, the elastic member 24 and the cover plate 22 are stably disposed, and the elastic member 24 is positioned between the protruding portion 44 (or the stepped portion 44a) and the flange portion 346. Thus, it is possible to prevent water from entering the inside of the apparatus satisfactorily.
  • the display device 1 is assembled by stacking the units and the like, and crimping the metal frame 10 and fixing the frame 10 to the protruding portion 44 of the container 40.
  • the cover plate 22 is not positioned in the in-plane direction of the display surface 21a (direction parallel to the display surface 21a), and mainly the out-of-plane direction (display surface 21a). The normal direction) is positioned.
  • FIGS. 5A and 5B in a state where the case body 34 is disposed in the housing body 40, the stepped portion 44 a of the housing body 40 and the flange portion of the case body 34.
  • a slight clearance is provided between the case body 346 and the case body 34 so that the case body 34 can be attached to and detached from the housing body 40. That is, the flange portion 346 is not exactly fitted to the stepped portion 44a, and the case body 34 is slightly engaged with the housing body 40 in the in-plane direction of the display surface 21a before the frame body 10 is caulked and fixed. Is arranged. That is, before fixing by the frame body 10, the cover plate 22 (or the display unit 20) placed on the case body 34 is also arranged with some play in the in-plane direction of the display surface 21a.
  • FIG. 3A shows a state before the frame body 10 is caulked.
  • the back side end portion of the standing wall portion 11 standing so as to surround the side peripheral portion of the elastic member 24 of the frame body 10 is inward with the protruding portion 44 of the housing body 40 as a fulcrum. Bend it.
  • an inclined portion 45 that is inclined without being orthogonal to the normal direction of the display surface 21a is formed on the back side of the protruding portion 44. Has been.
  • the inclined portion 45 includes a wall portion 42 that stands substantially along the normal direction of the display surface 21a from the bottom portion 41 of the container 40, a side top portion 44b that faces the standing wall portion 11 of the frame body 10 among the projecting portions 44, and It is the part that connects Then, the frame body 10 is bent with the corner portion formed by the side top portion 44 b and the inclined portion 45 as a fulcrum, and is caulked and fixed to the housing body 40.
  • the inclined portion 45 is provided, the portion where the frame body 10 is bent by caulking is not a right angle as shown in FIG. As a result, it is possible to avoid stress concentration on a specific portion of the frame body 10, and distortion that may occur in the display device 1 when the frame body 10 is caulked, or excessive distortion that may occur in the frame body 10 itself. Can be suppressed.
  • FIG. 5B is a cross-sectional view taken along the line DD shown in FIG.
  • a horizontal portion 46 is formed perpendicular to the normal direction of the display surface 21a and along the horizontal direction. Has been.
  • the horizontal portion 46 is a wall portion 42 that stands substantially along the normal direction of the display surface 21 a from the bottom portion 41 of the container 40, and a side of the protruding portion 44 that faces the standing wall portion 11 of the frame 10. It is a part which connects the top part 44b.
  • the portion where the frame body 10 is bent by caulking and fixing within the range D is substantially perpendicular as shown in FIG. Will not be a perfect right angle due to the resilience of
  • the horizontal portion 46 is formed on a part of the projecting portion 44 of the container 40, so that the fixing structure by the frame body 10 is strengthened, and a portion other than the horizontal portion 46 is provided on the display device 1.
  • the inclined portion 45 so as to surround the outer periphery, the frame body 10 and the like are prevented from being distorted more than necessary as described above.
  • the display device 1 described above includes a display 21 that displays an image on the display surface 21a, and a translucent portion (window portion 221a) that is located on the display surface 21a side of the display 21 and that allows the display surface 21a to be visually recognized.
  • a container 40 having an opening 43 that opens toward the cover plate 22 and a protrusion 44 that surrounds the opening 43 and protrudes toward the outer periphery of the opening 43, and is displayed on the cover plate 22.
  • the cover plate 22 has the elastic member 24 attached by the caulked metal frame 10. Through It is fixed to the protrusion 44. As described above, since the cover plate 22 is fixed to the container 40 via the elastic member 24, it is possible to prevent water from entering between the cover plate 22 and the container 40. For this reason, the display device 1 has good waterproofness from the display surface 21a side (display side).
  • the display device 1 further includes a case body 34 that is positioned on the display device 21 side of the cover plate 22 and is accommodated in the housing body 40, and the display device 1 is disposed on the opposite side of the case body 34 from the cover plate 22.
  • a circuit board (first circuit board 31) that is electrically connected to the circuit board 21 is fixed, and the case body 34 is recessed from the cover plate 22 side toward the circuit board side, and stores the display 21. 343.
  • the display unit 21 is housed in the recess 343 on the front side, and the case body 34 that fixes the first circuit board 31 on the back side is provided between the display unit 21 and the first circuit board 31 in the housing body 40.
  • An arrangement space can be provided. Therefore, it is easy to secure a space for disposing other components (electronic components), and the degree of freedom in design is improved.
  • a step portion 44 a surrounding the opening portion 43 is formed on the opening portion 43 side of the protruding portion 44, and a flange portion 346 that fits into the step portion 44 a is formed in the case body 34. Since it did in this way, it is easy to assemble the case body 34 to the container 40.
  • the depth d of the stepped portion 44a and the thickness t of the flange portion 346 are substantially equal (see FIG. 5A), and the protruding portion 44 and the flange portion 346 are substantially flush with the cover plate 22 side. It is located above and constitutes a placement surface on which the elastic member 24 is placed. Since the mounting surface is configured as described above, the elastic member 24 and the cover plate 22 are stably disposed, and the elastic member 24 is positioned between the protruding portion 44 (or the stepped portion 44a) and the flange portion 346. Thus, it is possible to prevent water from entering the inside of the apparatus satisfactorily.
  • the container 40 has a wall portion 42 standing along the normal direction of the display surface 21a, and the protruding portion 44 is located at an end portion of the wall portion 42 on the cover plate 22 side, and is more than the wall portion 42.
  • the frame body 10 is bent along the inclined portion 45 (see FIG. 5A). Since it did in this way, as above-mentioned, distortion can be suppressed to the frame 10 at the time of crimping as much as possible.
  • the inclined portion 45 is provided so as to surround the opening 43 leaving a part (range D shown in FIG. 1), and in the part (in the range D),
  • a horizontal portion 46 that is connected to the wall portion 42 and substantially orthogonal to the normal direction is provided (see FIG. 5B). Since it did in this way, as mentioned above, the cover plate 22 can be fixed to the container 40 firmly and stably, suppressing distortion to the frame 10 at the time of crimping as much as possible.
  • the display device 1 further includes a third circuit board 33 (an example of a temperature sensor board) on which a thermistor 33a (an example of a temperature sensor) is mounted, and between the recess 343 and the flange part 346 of the case body 34.
  • An arrangement space 342 in which the third circuit board 33 is arranged is formed.
  • the display device 1 described above is bonded to the display 21 that displays an image on the display surface 21a and the display surface 21a side of the display 21 with a photocurable adhesive (translucent layer 23).
  • a display unit 20 including a cover plate 22 having a translucent portion (window portion 221a) that can be visually recognized, and a case body 34 that is positioned closer to the display device 21 than the cover plate 22,
  • a case body 34 that has a recess 343 that is recessed toward the opposite side and accommodates the display device 21, and a housing body 40 that is located on the display device 21 side of the cover plate 22 and accommodates the display device 21 and the case body 34
  • the display device 1 includes a gap G (see FIG.
  • the display unit 20 is (including being supported via a resilient member 24) is supported at a predetermined portion other than the recess 343 of the case body 34.
  • the display 21 is suspended from the cover plate 22 and is not brought into contact with the recess 343, so that vibration applied to the display 21 when an impact is applied is suppressed as much as possible. Can do. That is, the display device 1 has good vibration resistance.
  • a buffer member 35 is provided in the gap G.
  • the height of the buffer member 35 (height in the front and back direction) is substantially the same as the distance (height of the gap G) between the back surface of the display 21 and the bottom portion 343a of the recess 343 (including exactly the same). It is preferable to set so that the display 21 is touched only when the display 21 is tilted from the horizontal state due to vibration or the like.
  • the display device 1 is electrically connected to the display 21 and has a first circuit board 31 on which a light source 31b that illuminates a warning display unit 221c formed on the cover plate 22 is mounted, A second circuit board 32 electrically connected to the circuit board 31 and positioned on the opposite side of the cover plate 22 of the first circuit board 31, and the case body 34 is opposite to the cover plate 22 On the side, the first circuit board 31 and the second circuit board 32 are held so that they are laminated. As described above, the case body 34 holds the first circuit board 31 and the second circuit board 32 in a laminated form in the normal direction of the display surface 21a (that is, in the thickness direction of the display device 1). Therefore, the display device 1 can be configured compactly.
  • the display unit 20 has an elastic member 24 provided so as to cover the side periphery of the cover plate 22, and the cover plate 22 protrudes through the elastic member 24 by the caulked metal frame 10.
  • the cover plate 22 is fixed to the portion 44, and is positioned in the normal direction of the display surface 21 a by being placed on the flange portion 346 across the elastic member 24, and the protruding portion of the frame body 10 via the elastic member 24. By being fixed to 44, positioning is also performed in a direction orthogonal to the normal direction.
  • the cover plate 22 before the cover plate 22 is fixed to the container 40 with the frame body 10, the cover plate 22 has a certain degree of freedom in the in-plane direction of the display surface 21a. The distortion of the display device 1 that may occur at the time can be suppressed as much as possible.
  • the display 21 and the first circuit board 31 are electrically connected by the flexible substrate 50 and stand along the normal direction of the display surface 21 a in the recess 343 that houses the display 21.
  • a lead-out part 345b made of a notch through which the flexible substrate 50 passes is formed. Since it did in this way, assembling is prepared as mentioned above.
  • a connector 31a connected to the flexible substrate 50 is mounted on the second circuit board 32 side of the first circuit board 31.
  • the display surface 21a method is mounted.
  • a notch 32a is formed in a portion facing the connector 31a in the line direction. Since it did in this way, assembling is prepared as mentioned above.
  • the display device according to the present invention can be applied as a display device for a moving body such as an automobile, a motorcycle, or a work machine, and is particularly suitable as a vehicle instrument used in an environment with vibration.
  • Case body 341 Boss part 342 ... Disposition space 343 ... Recess part 343a ... Bottom part 343b ... Through hole 344 ... Light guide 345 ... Side wall part 345a ... Heat radiation hole 345b ... Leader part 346 ... Flange part 35 ... shock absorbing member 40 ... container 41 ... bottom part 42 ... wall part 43 ... opening part 44 ... projection part 44a ... step part 44b ... side top part 45 ... inclined part 46 ... horizontal part 50 ... flexible substrate

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  • Physics & Mathematics (AREA)
  • Nonlinear Science (AREA)
  • Mathematical Physics (AREA)
  • Chemical & Material Sciences (AREA)
  • Crystallography & Structural Chemistry (AREA)
  • General Physics & Mathematics (AREA)
  • Optics & Photonics (AREA)
  • Devices For Indicating Variable Information By Combining Individual Elements (AREA)
  • Liquid Crystal (AREA)

Abstract

 La présente invention concerne un dispositif d'affichage, qui excelle en terme de résistance aux vibrations. Un dispositif d'affichage (1) comprend : une unité d'affichage (20) ayant un dispositif d'affichage (21) pour afficher une image sur une surface d'affichage (21a), et une plaque de couverture (22) liée au côté de surface d'affichage (21a) du dispositif d'affichage (21) avec un adhésif photodurcissable, la plaque de couverture (22) ayant une section de transmission de lumière pour rendre la surface d'affichage (21a) visible ; un corps de boîtier (34) situé plus près du côté de dispositif d'affichage (21) que de la plaque de couverture (22), le corps de boîtier (34) ayant une concavité (343) pour recevoir le dispositif d'affichage (21) et étant bosselé vers un côté opposé à la plaque de couverture (22) ; et un corps de logement (40) pour recevoir le dispositif d'affichage (21) et le corps de boîtier (34). Le corps de logement (40) est situé plus près du côté de dispositif d'affichage (21) que de la plaque de couverture (22). Un espace (G) est formé entre le dispositif d'affichage (21) et la concavité (343) dans la direction normale de la surface d'affichage (21a), le dispositif d'affichage (21) et la concavité (343) n'étant pas en contact, et l'unité d'affichage (20) étant soutenue par une partie prescrite du corps de boîtier (34) autre que la concavité (343).
PCT/JP2015/051180 2014-02-06 2015-01-19 Dispositif d'affichage WO2015118929A1 (fr)

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JP2014021509A JP6287287B2 (ja) 2014-02-06 2014-02-06 表示装置

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JP6323710B2 (ja) * 2014-05-23 2018-05-16 日本精機株式会社 表示装置
JP6361338B2 (ja) * 2014-07-10 2018-07-25 Agc株式会社 表示装置付き透明基板及びテーブル
JP6613079B2 (ja) * 2015-08-31 2019-11-27 積水化学工業株式会社 表示装置
WO2017098558A1 (fr) * 2015-12-07 2017-06-15 堺ディスプレイプロダクト株式会社 Dispositif d'affichage
JP2018049192A (ja) 2016-09-23 2018-03-29 株式会社デンソー 表示装置
JP6916991B2 (ja) * 2017-07-24 2021-08-11 日本精機株式会社 表示装置
JP7156370B2 (ja) * 2018-04-26 2022-10-19 日本精機株式会社 液晶表示装置
WO2020202502A1 (fr) * 2019-04-03 2020-10-08 三菱電機株式会社 Dispositif d'information embarqué

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