WO2018173313A1 - Visiocasque - Google Patents

Visiocasque Download PDF

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Publication number
WO2018173313A1
WO2018173313A1 PCT/JP2017/030296 JP2017030296W WO2018173313A1 WO 2018173313 A1 WO2018173313 A1 WO 2018173313A1 JP 2017030296 W JP2017030296 W JP 2017030296W WO 2018173313 A1 WO2018173313 A1 WO 2018173313A1
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WO
WIPO (PCT)
Prior art keywords
plate surface
base
bent
base portion
mounting
Prior art date
Application number
PCT/JP2017/030296
Other languages
English (en)
Japanese (ja)
Inventor
恒史郎 下田
Original Assignee
ブラザー工業株式会社
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 ブラザー工業株式会社 filed Critical ブラザー工業株式会社
Publication of WO2018173313A1 publication Critical patent/WO2018173313A1/fr

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Classifications

    • GPHYSICS
    • G02OPTICS
    • G02BOPTICAL ELEMENTS, SYSTEMS OR APPARATUS
    • G02B27/00Optical systems or apparatus not provided for by any of the groups G02B1/00 - G02B26/00, G02B30/00
    • G02B27/01Head-up displays
    • G02B27/017Head mounted
    • G02B27/0176Head mounted characterised by mechanical features
    • GPHYSICS
    • G02OPTICS
    • G02BOPTICAL ELEMENTS, SYSTEMS OR APPARATUS
    • G02B27/00Optical systems or apparatus not provided for by any of the groups G02B1/00 - G02B26/00, G02B30/00
    • G02B27/01Head-up displays
    • G02B27/0179Display position adjusting means not related to the information to be displayed

Definitions

  • This disclosure relates to a head mounted display.
  • Patent Document 1 discloses a head mounted display including a base unit including a clip mechanism, a display unit, a ball joint that connects the base unit and the display unit, and adjusts the angle of the display unit with respect to the base unit.
  • the base unit is attached to a support (for example, a helmet or the like) disposed above the user's eyes. The user adjusts the angle of the display unit with respect to the base unit by holding the display unit with his / her palm.
  • the user can easily attach a head-mounted display equipped with a clip mechanism to the brim of a hat or helmet.
  • the mounting position of the head mounted display tends to shift.
  • the position of the head mounted display is adjusted by rotating the ball portion of the ball joint.
  • a rotational moment is applied to the clip mechanism, there is a problem that the mounting position of the head mounted display tends to shift during position adjustment.
  • This disclosure is intended to provide a head-mounted display that can effectively prevent the mounting position from shifting even if it has a rotatable adjustment portion.
  • the head-mounted display includes a mounting unit that is mounted on a support disposed at a position of a user's head, a display unit that displays an image, and the display unit that is rotatable with respect to the mounting unit.
  • the mounting portion is provided with a plate-like base portion, a connecting portion protruding from the plate surface of the base portion and connecting to the adjusting portion, and the connecting portion of the base portion.
  • the first end that is the end on the side is a first protrusion that protrudes from the plate surface at the second end of the end opposite to the direction in which the connecting portion protrudes from the plate surface.
  • a portion of the plate surface between the first end portion and the first projecting portion on the same side as the direction in which the first projecting portion projects, and a portion curved in an arc is the first end A curved portion protruding toward the portion side, and the second end side surrounded by the curved portion
  • a bent portion having a second portion extending from the bent portion toward the first end portion of the base portion.
  • the head mounted display (hereinafter referred to as “HMD”) according to the present disclosure has a display unit disposed in front of the user's eyes by the mounting unit and the adjustment unit.
  • the mounting portion includes a base portion, an opening portion, a coupling portion, a bending portion, and a bending portion, and is attached to the position of the user's head by inserting a support body from the opening portion toward the inside of the bending portion. .
  • the HMD is provided with the first protrusion at the second end opposite to the first end where the base connecting portion is provided, the first protrusion is positioned away from the connecting portion. Can be placed.
  • the force applied to the second end side of the base portion by sandwiching the support body between the first projecting portion and the bent portion acts in a direction to counteract the force by which the base portion is rotated by applying force to the connecting portion. Yes. Therefore, even if a force is applied to the connecting portion during the position adjustment of the display portion using the adjusting portion, the base portion is difficult to rotate. Therefore, even if the HMD according to the present disclosure has a rotatable adjustment unit, it is possible to effectively prevent the mounting position from shifting.
  • the connecting portion extends on one of the plate surfaces of the base portion, and the curved portion is on the plate surface opposite to the one plate surface in a direction in which the one plate surface extends. It may be provided.
  • the connecting portion is provided on the opposite side of the base portion from the side where the curved portion and the bent portion are provided, the HMD is mounted rather than the connecting portion, the bent portion and the bent portion provided on the same side of the base portion. It is difficult for the display unit or the like to touch the user's face.
  • the head mounted display includes a second protruding portion that protrudes in the same direction as the direction in which the first protruding portion protrudes on the plate surface at a position between the first protruding portion and the curved portion of the base portion. May be.
  • the support is reliably sandwiched between the base portion and the bent portion. Even if the thickness of the support is varied, a plurality of protrusions are provided, so that the HMD can hold the support having various thicknesses between the base portion and the bent portion.
  • the second projecting portion may include a fastener that is inserted into a through hole penetrating the plate surface of the base portion so as to freely advance and retract.
  • the HMD can support the support members of various thicknesses with the first protrusion and the bent portion. Can be securely clamped between.
  • the head mounted display may include a rib that extends from the curved portion toward the opening and divides the space into a first space on the base portion side and a second space on the bent portion side.
  • the HMD moves the support from the opening to the inside of the bending portion according to the thickness, shape, etc. of the support. It can be inserted into the first space or the second space.
  • the rigidity of the curved part may be higher than the rigidity of the first part of the bent part.
  • the first portion of the bent portion is more easily bent than the curved portion. Therefore, when a support body is clamped between a base part and a bending part, the 1st part of a bending part bends more largely than a curved part. Therefore, the HMD can sandwich the support body between the first protruding portion and the bent portion with a strength corresponding to the thickness of the support body.
  • the head mounted display includes an extending portion provided on the first end portion side of the base portion from an end portion of the second portion of the bent portion opposite to the opening portion, and the base portion,
  • the rigidity of the extension part and the second part of the bent part may be higher than the rigidity of the first part of the bent part.
  • the first portion of the bent portion is more easily bent than the second portion of the base portion, the extended portion, and the bent portion.
  • the extension part and the first end of the base part close to each other, the first part of the bent part bends and the opening part can be opened largely, so even if the support is thick, the first projecting part and the bent part It becomes easy to insert between.
  • the first portion of the bent portion may extend in a direction intersecting the plate surface of the base portion.
  • the support sandwiched between the base portion and the bent portion is located at any position of the first portion. It becomes easy to contact. Therefore, the HMD is fixed in a manner that is difficult to shift in a manner according to the thickness and shape of the support.
  • the head mounted display may include a third protruding portion that protrudes from the rib toward at least one of the base portion side and the bent portion side.
  • the HMD can securely fix the support portion inserted inside the curved portion between the third protruding portion and the base portion, or between the third protruding portion and the bent portion.
  • the mounting part is stably fixed to the support part, even if the position adjustment using the adjustment part is performed, the mounting position of the HMD is not easily displaced.
  • HMD1A It is a perspective view which shows the usage example of HMD1A. It is a perspective view of HMD1A. It is a side view of HMD1A. It is a side view of HMD1A in the state where mounting part 8A was attached to collar H1. It is a side view of HMD1B. It is a side view of HMD1C. It is a side view of HMD1D.
  • a head-mounted display (hereinafter, referred to as “HMD”) 1A is a video transmission type HMD.
  • the HMD 1A is used while being supported by a hat H worn by the user U on the head.
  • the HMD 1A includes a mounting portion 8A, an arm portion 9, an adjusting portion 72 (first ball joint 2 and second ball joint 3 (see FIG. 2)), and a display portion 4.
  • the upper side, lower side, left side, right side, front side and rear side of the HMD 1A are defined.
  • the upper side, lower side, left side, right side, front side, and rear side of the HMD 1A correspond to, for example, the upper right side, the lower left side, the upper left side, the lower right side, the front side, and the back side in FIG.
  • the upper side, the lower side, the left side, the right side, the front side, and the rear side of the HMD 1A correspond to the upper side, the lower side, the right side, the left side, the front side, and the rear side, respectively, for the user U. 3 to 7, the second ball joint 3, the arm portion 9, and the display portion 4 are omitted.
  • the hat H when the user U wears the hat H, the hat H is arranged at the position of the user U's head.
  • the hat H may be a dedicated one for placing the HMD 1A on the head of the user U, or may be a general-purpose work cap or the like.
  • the hat H is an example of a support for supporting the HMD 1A on the user's head. Instead of the hat H, the HMD 1A may be supported by a helmet or the like.
  • the mounting portion 8A is made of a flexible material such as resin or metal (for example, stainless steel). As shown in FIG. 2, the mounting portion 8A includes a base portion 81, a connecting portion 82A, a bending portion 83, a bending portion 84, an opening portion 85, an extending portion 86, and the like. In the following, in order to facilitate understanding, the description will be divided into parts such as the base part 81, the connecting part 82A, the bending part 83, the bending part 84, the opening part 85, the extension part 86, etc. The portion 8A is not divided into the respective members of these portions, but is an integral member as a whole.
  • the base portion 81 is an elongated plate-like member having a thickness in the vertical direction and extending in the left-right direction.
  • the connecting portion 82A is a member that protrudes substantially vertically upward from the upper surface (first plate surface 811) of the base portion 81 at a position to the right of the base portion 81.
  • the connecting portion 82 ⁇ / b> A includes a plate-like portion 821 and a socket mounting portion 822.
  • the plate-like portion 821 has a plate shape having a thickness in the left-right direction and extending upward from the first plate surface 811.
  • the socket attachment portion 822 is a portion provided on the upper end portion on the opposite side to the base portion 81 side of the right surface of the plate-like portion 821 in order to attach the socket 22 to the connecting portion 82A. Since the HMD 1A has the connecting portion 82A protruding upward from the first plate surface 811, the socket 22 is disposed above the face of the user U with the mounting portion 8A mounted on the collar H1 of the cap H. it can. Therefore, the arm unit 9, the display unit 4, and the like are unlikely to contact the user U's face.
  • the curved portion 83 is an arc-shaped plate-like member that protrudes to the right below the connecting portion 82A with respect to the base portion 81, and protrudes downward from the lower surface (second plate surface 812) of the base portion 81.
  • the bent portion 84 includes a first portion 841, a bent portion 842, and a second portion 843.
  • the first portion 841 is a portion extending from the lower end portion of the bending portion 83 toward the left end portion 818 of the base portion 81.
  • the bent portion 842 is a portion where the end portion of the first portion 841 on the opposite side (upper side) of the curved portion 83 is bent in a direction away from the second plate surface 812.
  • the second portion 843 is a portion that extends obliquely downward to the right from the lower end of the bent portion 842.
  • the extending portion 86 is a plate-like member that extends rightward from an end portion (right end portion) opposite to the bent portion 842 of the second portion 843.
  • the base portion 81, the bending portion 83, and the bending portion 84 of the mounting portion 8A constitute a clip mechanism 89 that can sandwich a plate-like object having a predetermined thickness inserted into the space 10 from the opening 85.
  • the user U can enlarge the size of the opening 85 in the vertical direction by pinching the right end portion 819 of the base portion 81 and the extending portion 86, for example.
  • the user U releases the proximity of the right end portion 819 of the base portion 81 and the extending portion 86 after inserting the flange H1 (see FIG. 1) of the hat H into the space 10 from the opened opening 85.
  • the collar H1 can be sandwiched between the clip mechanism 89, and the mounting portion 8A can be mounted on the hat H.
  • the arm portion 9 has a substantially rod shape, and is made of, for example, resin, metal or the like.
  • the arm portion 9 extends in the vertical direction when viewed from the front.
  • the upper end portion of the arm portion 9 is connected to the connecting portion 82A via the first ball joint 2 described later.
  • the lower end part of the arm part 9 is connected to the display part 4 mentioned later via the 2nd ball joint 3 mentioned later.
  • the mounting unit 8A and the arm unit 9 hold the display unit 4 on the head of the user U in a state where the mounting unit 8A is mounted on the right end of the brim H1 of the hat H worn by the user U.
  • the user U can arrange the display unit 4 on the front side of the left eye.
  • the user U may reverse the mounting portion 8A in the left-right direction and mount it on the left end of the collar H1 of the hat H. In this case, the user U can arrange the display unit 4 on the front side of the right eye. .
  • the first ball joint 2 includes a ball stud 21 and a socket 22.
  • the ball stud 21 includes a sphere portion 21A, a rod portion 21B, and a base portion 21C (see FIG. 3).
  • the spherical portion 21A is a spherical portion.
  • the spherical body portion 21 ⁇ / b> A is provided at the end of the ball stud 21 opposite to the arm portion 9 side.
  • the rod portion 21B is a cylindrical portion that extends rightward from the spherical portion 21A.
  • the bar portion 21 ⁇ / b> B is inserted into a circular hole 22 ⁇ / b> A provided in the socket 22.
  • the diameter of the cross section of the rod portion 21B is smaller than the diameter of the spherical portion 21A.
  • the base 21C is connected to the opposite side of the sphere 21A side of the bar 21B (see FIG. 3).
  • the base portion 21 ⁇ / b> C fits into a recess (not shown) formed in the upper end portion of the left surface of the arm portion 9. As a result, the ball stud 21 is fixed to the arm portion 9.
  • the rod part 21B of the ball stud 21 extends from the upper end part of the arm part 9 along a virtual line 212 extending radially from the center 211 of the spherical part 21A.
  • the socket 22 supports the sphere part 21A of the ball stud 21 so as to be slidable.
  • the socket 22 is connected to the socket mounting portion 822 of the connecting portion 82A.
  • the ball stud 21 can rotate in the direction indicated by the arrow 2A with the virtual line 212 as an axis. Further, the ball stud 21 is a range in which the rod portion 21B does not contact the hole 22A of the socket 22 (a range surrounded by a virtual conical surface 214 connecting the center 211 of the spherical portion 21A and the inner end of the wall portion 221). ) In the direction indicated by the arrow 2B. Therefore, when the spherical portion 21A of the ball stud 21 slides with respect to the socket 22, the first ball joint 2 rotates about the mounting portion 8A and the arm portion 9 about the center 211 of the spherical portion 21A. Connect as possible.
  • the second ball joint 3 includes a ball stud 31 and a socket 32.
  • the ball stud 21 includes a sphere portion 31A, a rod portion 31B, and a base portion (not shown).
  • the shapes of the spherical portion 31A, the rod portion 31B, and the base portion are the same as the shapes of the spherical portion 21A, the rod portion 21B, and the base portion 21C of the ball stud 21.
  • the rod portion 31 ⁇ / b> B is inserted into a circular hole 32 ⁇ / b> A provided in the socket 32.
  • the base fits into a recess (not shown) formed at the lower end of the left surface of the arm 9. As a result, the ball stud 31 is fixed to the arm portion 9.
  • the rod portion 31B of the ball stud 31 extends from the lower end portion of the arm portion 9 along a virtual line 312 extending radially from the center 311 of the spherical portion 31A.
  • the socket 32 slidably supports the spherical portion 31A of the ball stud 31.
  • the socket 32 is connected to the display unit 4 and supports the ball part 31A of the ball stud 31 so as to be slidable.
  • the ball stud 31 can rotate in the direction indicated by the arrow 3A around the virtual line 312. Further, the ball stud 31 is a range in which the rod portion 31B does not contact the hole 32A of the socket 32 (a range surrounded by a virtual conical surface 314 connecting the center 311 of the spherical portion 31A and the inner end of the wall portion 321). ) In the direction indicated by the arrow 3B. Therefore, when the spherical portion 31A of the ball stud 31 slides with respect to the socket 32, the second ball joint 3 rotates about the arm portion 9 and the display portion 4 about the center 311 of the spherical portion 31A. Connect as possible.
  • the adjustment unit 72 and the arm unit 9 are interposed between the display unit 4 and the mounting unit 8A.
  • the adjustment unit 72 can adjust the position of the display unit 4 with respect to the left eye of the user U by adjusting the position of the display unit 4 with respect to the mounting unit 8A to be rotatable.
  • the display unit 4 includes a housing 41.
  • the housing 41 has a hollow box shape.
  • the connection portion 43 extends from the right end portion of the rear surface of the housing 41 toward the rear side.
  • a socket 32 of the second ball joint 3 is connected to the connection portion 43.
  • the left side of the housing 41 is opened.
  • the left side of the lens unit housed in the housing 41 is exposed.
  • a half mirror 42 is provided in the opening of the housing 41.
  • a lens unit, a focus adjustment mechanism, and a liquid crystal unit are accommodated in the housing 41.
  • the half mirror 42, the lens unit, and the liquid crystal unit are arranged in order from the left side to the right side.
  • the focus adjustment mechanism has an operation member 44.
  • the operation member 44 is disposed on the front surface of the housing 41.
  • the liquid crystal unit emits image light by displaying an image.
  • the lens unit guides the image light emitted from the liquid crystal unit to the half mirror 42.
  • the focus adjustment mechanism moves the lens unit in the left-right direction according to the rotation of the operation member 44.
  • the user U can adjust the focus of the display unit 4 by rotating the operation member 44.
  • the half mirror 42 has a rectangular plate shape. One of the two surfaces of the half mirror 42 faces obliquely rearward to the right. The other surface of the both surfaces of the half mirror 42 faces left diagonally forward.
  • the half mirror 42 can reflect a part of incident light (for example, 50%) and transmit the other part.
  • the half mirror 42 can reflect the image light that passes through the lens unit and enters from the right side to the rear side.
  • the left eye of the user U can visually recognize a virtual image based on the image light reflected rearward by the half mirror 42.
  • the half mirror 42 can transmit light from the outside to the rear side.
  • the base portion 81 is provided with a first protruding portion 813, a second protruding portion 814, a nut 816, and a screw 815.
  • the first protruding portion 813 is a portion that protrudes downward from the second plate surface 812 at the left end portion 818 of the base portion 81.
  • the second protruding portion 814 is similar to the first protruding portion 813 from the second plate surface 812 at a position between the first protruding portion 813 and the position where the curved portion 83 protrudes downward from the second plate surface 812. It is a part protruding downward.
  • the nut 816 is fixed to the first plate surface 811 of the base portion 81 at a position between the first protruding portion 813 and the curved portion 83 in the left-right direction.
  • the nut 816 is provided at a position closer to the curved portion 83 than the second projecting portion 814 in the left-right direction.
  • the nut 816 is provided with a screw hole 816A through which the shaft portion of the screw 815 is inserted.
  • the screw hole 816A passes through the first plate surface 811 and the second plate surface 812 where the nut 816 is provided.
  • the shaft portion of the screw 815 has such a length that the screw tip 815A, which is the lower end portion of the screw 815, is disposed below the second plate surface 812 in a state where the screw 815 is fastened to the nut 816.
  • the screw 815 is movable up and down with respect to the screw hole 816A in accordance with the degree of fastening with respect to the nut 816.
  • the degree to which the screw tip 815A protrudes downward from the second plate surface 812 is changed according to the degree to which the screw 815 advances and retreats in the vertical direction with respect to the screw hole 816A.
  • a rib 87 extending from the left surface of the bending portion 83 toward the left is provided at the approximate center in the vertical direction of the bending portion 83.
  • the rib 87 divides the space 10 surrounded by the base portion 81, the bending portion 83, and the bent portion 84 into a space 10A on the base portion 81 side and a space 10B on the bent portion 84 side.
  • the first portion 841 of the bent portion 84 extends obliquely leftward and upward from the lower end portion of the curved portion 83 toward the first protruding portion 813 in a direction intersecting the second plate surface 812.
  • the upper end portion of the first portion 841 is connected to the bent portion 842.
  • the bent portion 84 extends diagonally downward to the left from the upper end portion of the first portion 841, and then is folded back diagonally downward to the right.
  • the second portion 843 is connected to the lower end of the bent portion 842 and extends obliquely downward to the right substantially parallel to the first portion 841.
  • the extending portion 86 is provided from the right end portion of the second portion 843 toward the right and extends substantially in parallel with the base portion 81.
  • the thickness of the base portion 81, the bending portion 83, the second portion 843 of the bent portion 84, and the extending portion 86 is thicker than the thickness of the first portion 841 of the bent portion 84.
  • the base portion 81, the bending portion 83, the bending portion 84, and the extending portion 86 are integrally formed of the same material, the second portion of the base portion 81, the bending portion 83, and the bending portion 84.
  • the rigidity of 843 and the extending part 86 is higher than the rigidity of the first part 841 of the bent part 84. Therefore, the first portion 841 is more flexible than the base portion 81, the curved portion 83, and the second portion 843.
  • the clip The mechanism 89 can stably hold various flanges H1.
  • the extending portion 86 extends from the right end portion of the second portion 843 substantially in parallel with the base portion 81, the user U sandwiches the right end portion 819 of the base portion and the extending portion 86 from above and below, Can be easily pinched.
  • the first portion 841 of the bent portion 84 is more easily bent than the right end portion 819 of the base portion 81 and the extension portion 86. . That is, the right end portion 819 and the extending portion 86 of the base portion 81 pinched by the user U when expanding the size of the opening portion 85 are less likely to bend than the first portion 841 of the bent portion 84.
  • the user U When the brim H1 to be inserted into the space 10 is relatively thick, the user U needs to widen the opening 85 larger. The user U pinches the right end portion 819 of the base portion 81 and the extending portion 86 from above and below to bend the first portion 841 of the bent portion 84, and the size of the opening portion 85 in the up and down direction. Can be easily spread.
  • the mounting portion 8A in a state where the collar H1 of the hat H (see FIG. 1) is sandwiched by the clip mechanism 89 will be described.
  • the user U pinches the right end portion 819 and the extending portion 86 of the base portion 81 to widen the size of the opening 35 in the vertical direction.
  • the user U inserts the brim H1 into the space 10 from the widened opening 85 and stops pinching the right end portion 819 and the extending portion 86, so that the widened opening 85 returns to its original shape.
  • the brace fitting part 8A can be attached to the brim H1.
  • the thickness and shape of the collar H1 are various.
  • the mounting portion 8 ⁇ / b> A can be inserted into the space 10 ⁇ / b> A on the base portion 81 side of the space 10 by disposing the tip of the flange H ⁇ b> 1 on the upper side of the rib 87. . Further, as shown in FIG. 4B, the mounting portion 8 ⁇ / b> A arranges the tip of the flange H ⁇ b> 1 below the rib 87 and inserts the flange H ⁇ b> 1 into the space 10 ⁇ / b> B on the bent portion 84 side of the space 10. be able to.
  • a rotational moment with the position where the connecting portion 82 ⁇ / b> A is provided in the base portion 81 as a fulcrum can act on the base portion 81. Since the base portion 81 is provided with a length in the left-right direction, the rotational moment is likely to act in a direction in which the base portion 81 is rotated in the left-right direction with the position where the connecting portion 82A is provided as a fulcrum.
  • the base 81 is on the side opposite to the right end 819, which is the side where the connecting portion 82A is provided.
  • the first protruding portion 813 contacts the upper surface of the flange H1 from above.
  • the bent portion 842 of the bent portion 84 comes into contact with the lower surface of the flange H1 from below.
  • the flange H1 is bent with the first protrusion 813 at the left end portion 818 of the base portion 81 that is opposite to the connecting portion 82A to which the adjustment portion 72 and the display portion 4 are connected to the mounting portion 8A.
  • the left end portion 818 that is farthest leftward from the connecting portion 82A is fixed to the flange H1.
  • the restoring force for restoring the shape of the flange H1 sandwiched and compressed between the first protruding portion 813 and the bent portion 842 is upward with respect to the left end portion 818 of the base portion 81 where the first protruding portion 813 is provided. Act on. A downward reaction force with respect to the restoring force is generated at the left end portion 818 of the base portion 81 where the first projecting portion 813 is provided.
  • the second projecting portion 813 and the connecting portion 82A are positioned at a position between the left and right directions.
  • the protrusion 814 contacts the upper surface of the flange H1 from above.
  • the lower surface of the flange H ⁇ b> 1 pushed down by the second protrusion 814 contacts the first portion 841 of the bent portion 84.
  • the first portion 841 extends obliquely leftward and upward from the lower end portion of the bending portion 83 in a direction intersecting the second plate surface 812.
  • the lower surface of the flange H ⁇ b> 1 pushed down by the second protrusion 814 is likely to come into contact with any portion of the first portion 841, as compared with the case where the first portion 841 extends substantially parallel to the base portion 81.
  • the collar H1 comes into contact with any part of the first portion 841, the collar H1 is sandwiched in the vertical direction by the second projecting portion 814 and the first portion 841, so the mounting portion 8A for the collar H1 The position is stable. Therefore, even if the position of the display unit 4 is adjusted using the adjustment unit 72, the mounting unit 8A is less likely to be displaced with respect to the collar H1.
  • the thickness, shape, rigidity, etc. of the collar H1 are various.
  • the collar H1 is inserted into the space 10A from the opening 85 as shown in FIG. 4 (A), or the collar H1 as shown in FIG. 4 (B).
  • the right end of the brim H1 may be on the upper side of the rib 87 depending on the degree of insertion of the brim H1 into the space 10A. Placed.
  • the flange H1 is clamped in the vertical direction by the screw tip 815A and the rib 87 by fastening the screw 815 to the screw hole 816A so that the screw tip 815A contacts the upper surface of the flange H1.
  • the degree of fastening of the screw 815 with respect to the screw hole 816A the degree to which the screw tip 815A protrudes downward from the second plate surface 812 can be adjusted. Therefore, the screw tip 815A and the rib 87 have various thicknesses H1. Can be pinched. Therefore, the mounting portion 8A can stabilize the mounting position with respect to the brim H1, even if the thickness of the brim H1 varies.
  • the right end of the brim H1 is below the rib 87 depending on the degree of insertion of the brim H1 into the space 10B. Inserted into. In this case, the upper surface of the right end portion of the brim H1 whose shape is to be restored upward is pressed against the rib 87, so that the position of the mounting portion 8A with respect to the brim H1 is stabilized. Note that the user U further protrudes the screw tip 815A downward from the second plate surface 812, and sandwiches the brim H1 between the screw tip 815A and the first portion 841, so that the mounting portion 8A is attached to the brim H1. May be further fixed.
  • the HMD 1 ⁇ / b> A places the display unit 4 in front of the user U by the mounting unit 8 ⁇ / b> A and the adjustment unit 72.
  • the mounting portion 8A includes a base portion 81, a connecting portion 82A, a bending portion 83, a bending portion 84, and an opening portion 85, and the head H of the user U is inserted by inserting the collar H1 of the hat H from the opening portion 85 into the space 10. Mounted at the position of the part.
  • connection unit 82A When the position of the display unit 4 is adjusted using the adjustment unit 72 in a state where the HMD 1A is mounted on the collar H1 of the hat H, a force is applied to the connection unit 82A, so that the connection unit 82A of the base unit 81 is provided. A rotational moment with the position taken as a fulcrum can act on the base portion 81. Since the HMD 1A has the first protruding portion 813 provided at the left end portion 818 opposite to the right end portion 819 side where the connecting portion 82A of the base portion 81 is provided, the first protruding portion 813 is separated from the connecting portion 82A. Can be placed at the position.
  • the force applied to the left end portion 818 side of the base portion 81 by sandwiching the flange H1 in the vertical direction between the first projecting portion 813 and the bent portion 84 causes the base portion 81 to move in the left-right direction by applying force to the connecting portion 82A. It can act in the direction of canceling the force that is rotated by. Therefore, even if a force is applied to the connecting portion 82A during the position adjustment of the display unit 4 using the adjusting unit 72, the base unit 81 is difficult to rotate. Therefore, even if the HMD 1A has the rotatable adjustment portion 72, it is possible to effectively prevent the mounting position of the mounting portion 8A with respect to the flange H1 from shifting.
  • the connecting portion 82A has an arm portion 9, a display portion 4, etc., rather than the connecting portion 82A protruding on the second plate surface 812 side where the curved portion 83 and the bent portion 84 are provided with respect to the base portion 81.
  • the second plate surface 812 of the base portion 81 is provided with a screw tip 815A inserted through the second protrusion 814 and the screw hole 816A in addition to the first protrusion 813 so as to protrude downward.
  • the flange H1 inserted into the space 10 from the opening 85 can contact the second protrusion 814 and the screw tip 815A in addition to the first protrusion 813. Therefore, the flange H1 is securely clamped between the base portion 81 and the bent portion 84.
  • the thickness, shape, and the like of the collar H1 are various, since the second projection 814 that projects downward from the second plate surface 812 is provided, the HMD 1A has various collars H1 formed between the base portion 81 and the bent portion 84. Can be pinched in between.
  • the degree to which the screw tip 815A protrudes downward from the second plate surface 812 can be adjusted by adjusting the degree of fastening of the screw 815 to the screw hole 816A. Therefore, the HMD 1 ⁇ / b> A can securely hold the various flanges H ⁇ b> 1 between the first protruding portion 813 and the bent portion 84.
  • the rib 87 divides the space 10 surrounded by the base portion 81, the bending portion 83, and the bent portion 84 into a space 10A on the base portion 81 side and a space 10B on the bent portion 84 side. Therefore, when the user U mounts the mounting portion 8A on the collar H1, whether the collar H1 is inserted into the space 10A from the opening 85 or the collar H1 is inserted into the space 10B from the opening 85.
  • the thickness can be selected according to the thickness. Therefore, the mounting portion 8A can stabilize the mounting position with respect to the flange H1 even if the thickness, shape, and the like of the flange H1 are various.
  • the rigidity of the curved portion 83 is higher than the rigidity of the first portion 841 of the bent portion 84. Therefore, the HMD 1A bends the first portion 841 rather than the base portion 81, the bending portion 83, and the second portion 843 in accordance with the thickness of the flange H1 sandwiched between the base portion 81, the bending portion 83, and the bending portion 84. Can do.
  • the first portion 841 of the bent portion 84 is more easily bent than the right end portion 819 of the base portion 81 and the extension portion 86. . That is, when the size of the opening 85 is increased, the right end portion 819 and the extending portion 86 of the base portion 81 pinched by the user U are less likely to bend than the first portion 841 of the bent portion 84. Therefore, the user U can easily widen the size of the opening 85 in the vertical direction by pinching the right end portion 819 and the extending portion 86 of the base portion 81 from above and below. Therefore, the mounting portion 8A can widen the opening 85 with a size corresponding to the thickness of the flange H1 when the mounting portion 8A is mounted.
  • the first portion 841 of the bent portion 84 extends from the lower end portion of the curved portion 83 obliquely to the left and in the direction intersecting the second plate surface 812. For this reason, for example, compared with the case where the first portion 841 extends substantially parallel to the base portion 81, the lower surface of the flange H ⁇ b> 1 held between the first protruding portion 813 and the bent portion 84 is any portion of the first portion 841. Easy to contact. Therefore, the mounting portion 8A is fixed to be difficult to shift with respect to the flange H1.
  • the HMD 1B includes a mounting portion 8B.
  • the mounting portion 8B includes a connecting portion 82B instead of the connecting portion 82A (see FIG. 2) of the mounting portion 8A of the HMD 1A (see FIG. 2).
  • Other configurations are the same as those of the first embodiment.
  • the connecting portion 82B is a member that protrudes substantially vertically downward from the second plate surface 812 of the base portion 81 at a position to the right of the base portion 81. That is, the connecting portion 82B is provided on the lower side, which is the same side as the bending portion 83, with respect to the base portion 81.
  • the plate-like portion 821 of the connecting portion 82B has a plate shape having a thickness in the left-right direction and extending downward from the second plate surface 812.
  • the socket mounting portion 822 of the connecting portion 82B is provided on the lower end portion on the opposite side of the right surface of the plate-like portion 821 from the base portion 81 side.
  • the HMD 1B Since the connecting portion 82B protrudes downward from the second plate surface 812, the HMD 1B is arranged with the socket 22 close to the face of the user U with the mounting portion 8B mounted on the collar H1 of the cap H. it can. Therefore, the arm part 9, the display part 4 and the like can be arranged close to the user U's face.
  • the HMD 1B When the position of the display unit 4 is adjusted using the adjusting unit 72 in the HMD 1B, a force is applied to the connecting unit 82B, so that a rotational moment about the position where the connecting unit 82B of the base unit 81 is provided becomes a base unit. 81 can be affected. Since the HMD 1B is provided with the first protrusion 813 at the left end 818 opposite to the right end 819 where the connection part 82B of the base 81 is provided, the first protrusion 813 is separated from the connection 82B. Can be placed at the position.
  • the force applied to the left end portion 818 side of the base portion 81 by sandwiching the flange H1 in the vertical direction between the first protruding portion 813 and the bent portion 84 causes the base portion 81 to move in the left-right direction by applying force to the connecting portion 82B. It can act in the direction of canceling the force that is rotated by. Therefore, even if a force is applied to the connecting portion 82B when adjusting the position of the display unit 4 using the adjusting unit 72, the base unit 81 is difficult to rotate. Therefore, even if the HMD 1B has the rotatable adjustment portion 72, the mounting position of the mounting portion 8B with respect to the flange H1 can be effectively prevented from shifting.
  • the HMD 1C includes a mounting portion 8C.
  • the mounting portion 8C includes ribs 871 and 872 instead of the rib 87 (see FIG. 2) of the mounting portion 8A of the HMD 1A (see FIG. 2).
  • Other configurations are the same as those of the first embodiment.
  • the rib 871 extends from the left surface at a position higher than the approximate center in the vertical direction of the curved portion 83 toward the left.
  • the rib 872 extends leftward from a position below the rib 871 on the left surface of the curved portion 83. Accordingly, the ribs 871 and 872 are configured such that the space 10 surrounded by the base portion 81, the curved portion 83, and the bent portion 84 is separated from the space 10A closer to the base portion 81 than the rib 871, the lower side of the rib 871, and the rib 872.
  • the upper space 10 ⁇ / b> B and the space 10 ⁇ / b> C closer to the bent portion 84 than the rib 872 are partitioned.
  • the mounting portion 8C can place the tip of the brim H1 on the upper side of the rib 871 and insert the brim H1 into the space 10A. Further, the mounting portion 8C can place the tip of the brim H1 between the rib 871 and the rib 872 and insert the brim H1 into the space 10B. Further, the mounting portion 8C can place the tip of the brim H1 below the rib 872 and insert the brim H1 into the space 10C.
  • the mounting portion 8C can change the position of the tip of the flange H1 inserted into the space 10 according to the shape of the flange H1 and the like. Can be placed in an appropriate position. Therefore, even if the position adjustment of the display part 4 using the adjustment part 72 is performed, HMD1C can make the mounting part 8C hard to shift
  • the HMD 1D includes a mounting portion 8D.
  • the mounting portion 8D includes a third protruding portion 87A on the rib 87 (see FIG. 2) of the mounting portion 8A of the HMD 1A (see FIG. 2).
  • Other configurations are the same as those of the first embodiment.
  • the third protruding portion 87A protrudes upward from the upper surface of the left end portion of the rib 87 toward the base portion 81 side.
  • the mounting portion 8D can sandwich the flange H1 between the screw tip 815A and the third protruding portion 87A. Therefore, even if the position adjustment of the display unit 4 using the adjustment unit 72 is performed, the mounting unit 8D is less likely to be displaced with respect to the collar H1.
  • the third protruding portion 87A may protrude downward from the lower surface of the rib 87 toward the bent portion 84 side.
  • the rib 87 may be provided with both a third protrusion 87A that protrudes upward from the upper surface of the rib 87 and a third protrusion 87A that protrudes downward from the lower surface of the rib 87.
  • the third protrusion 87 ⁇ / b> A is not limited to the left end of the rib 87, and may be provided at any position on the upper surface or the lower surface of the rib 87.
  • a plurality of third protrusions 87 ⁇ / b> A may be provided on the upper surface of the rib 87, and a plurality of third protrusions 87 ⁇ / b> A may be provided on the lower surface of the rib 87.
  • the right end portion 819 is an example of the “first end portion” of the present disclosure.
  • the left end 818 is an example of the “second end” in the present disclosure.
  • the first plate surface 811 is an example of “one plate surface” of the present disclosure.
  • the second plate surface 812 is an example of the “plate surface opposite to the direction in which one plate surface extends” of the present disclosure.
  • the screw hole 816A is an example of the “through hole” of the present disclosure.
  • the screw 815 is an example of the “second protrusion” and the “fastener” of the present disclosure.
  • the space 10A is an example of the “first space” in the present disclosure.
  • the space 10B is an example of the “second space” of the present disclosure.
  • the first protruding portion 813 and the second protruding portion 814 may be provided so as to protrude downward over the entire front and rear direction of the base portion 81, or in a partial region of the base portion 81 in the front and rear direction. It may be provided in a pin shape or the like protruding downward.
  • the first protrusion 813 and the second protrusion 814 are provided in a pin shape protruding downward from the second plate surface 812, the first protrusion 813, the second protrusion 814, and the screw tip 815A of the screw 815 are They may be arranged in a straight line in the left-right direction at the same position in the front-rear direction of the two plate surfaces 812.
  • the first protrusion 813, the second protrusion 814, and the screw tip 815A of the screw 815 are not aligned in a straight line at the same position in the front-rear direction of the second plate surface 812, and are not aligned with the second plate surface 812 of the base portion 81.
  • a plurality of second protrusions 814 and a plurality of screws 815 may be provided. Further, the screw 815 and the nut 816 may be provided at a position closer to the left end portion 818 of the base portion 81 than the second projecting portion 814.
  • a latch pin or the like that can be moved back and forth with respect to a through hole that penetrates the first plate surface 811 and the second plate surface 812 of the base portion 81 may be provided.
  • the latch pin functions as the second projecting portion of the present disclosure by projecting the tip of the latch pin downward from the second plate surface 812 in the same manner as the first projecting portion 813.
  • the material of the base portion 81, the bending portion 83, the second portion 843 of the bending portion 84, and the extending portion 86 may be higher than the material of the first portion 841 of the bending portion 84, the base portion 81, bending
  • the rigidity of the portion 83, the second portion 843 of the bent portion 84, and the extending portion 86 may be higher than the rigidity of the first portion 841 of the bent portion 84.
  • the thickness of the first portion 841 of the bent portion 84 may not be thinner than the thickness of the base portion 81, the curved portion 83, the second portion 843 of the bent portion 84, and the extending portion 86.
  • the mechanism for rotatably connecting the display unit 4 to the mounting units 8A, 8B, 8C, and 8D is not limited to a ball joint, and may be another adjustment mechanism such as a universal joint or a rubber mount.
  • the display unit 4 may use a two-dimensional display device such as a digital mirror device (DMD) or an organic EL instead of the liquid crystal unit.
  • the display unit 4 may use a retinal scanning type projection device (Retinal Scanning Display) that projects light two-dimensionally scanned onto the user's retina.
  • the display unit 4 may use an optical path deflecting member such as a prism or a diffraction grating instead of the half mirror 42.
  • the display unit 4 may emit the image light of the image displayed on the liquid crystal unit directly to the rear side so that the image light is emitted directly to the user's eyes without passing through the half mirror 42 or the like. In this case, the display unit 4 may not have the half mirror 42.

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  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Optics & Photonics (AREA)

Abstract

L'invention concerne un visiocasque (HMD) qui comporte une partie de réglage rotative mais ne glisse pas hors de sa position. Un HMD (1A) selon l'invention comprend une partie de montage (8A), une partie de réglage (72) et une partie d'affichage (4). Une partie de base (81) de la partie de montage (8A) a une première partie en saillie qui fait saillie vers le bas depuis une seconde surface de plaque (812) au niveau d'une partie d'extrémité gauche (818). Une partie de liaison (82A) fait saillie vers le haut depuis une première surface de plaque (811). Une partie incurvée (83) fait saillie vers le bas depuis la seconde surface de plaque (812). Une partie courbe (84) comprend une première section (841) qui s'étend depuis une partie d'extrémité inférieure de la partie incurvée (83) vers la partie d'extrémité gauche (818), une section courbe (842) au niveau de laquelle une partie d'extrémité supérieure de la première section (841) se courbe dans la direction opposée de la seconde surface de plaque (812), et une seconde section (843) qui s'étend diagonalement vers le bas et vers la droite depuis la section courbe (842). Une ouverture (85), au niveau de laquelle un espace (10) qui est renfermé par la partie de base (81), la partie incurvée (83) et la partie courbe (84), s'ouvre vers la gauche, est formée entre la seconde surface de plaque (812) et la section courbe (842).
PCT/JP2017/030296 2017-03-23 2017-08-24 Visiocasque WO2018173313A1 (fr)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
JP2017057826A JP6458821B2 (ja) 2017-03-23 2017-03-23 ヘッドマウントディスプレイ
JP2017-057826 2017-03-23

Publications (1)

Publication Number Publication Date
WO2018173313A1 true WO2018173313A1 (fr) 2018-09-27

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Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/JP2017/030296 WO2018173313A1 (fr) 2017-03-23 2017-08-24 Visiocasque

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JP (1) JP6458821B2 (fr)
WO (1) WO2018173313A1 (fr)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2021188222A3 (fr) * 2020-02-06 2022-02-03 Galvion Ltd. Système de vision pour casque intégré renforcé
US11832677B2 (en) 2021-05-12 2023-12-05 Galvion Incorporated System for forming a deep drawn helmet

Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2007336166A (ja) * 2006-06-14 2007-12-27 Shimadzu Corp 頭部装着型表示装置
JP2009179897A (ja) * 2008-01-30 2009-08-13 Ssc:Kk つば付帽子装着用ライト
WO2016068123A1 (fr) * 2014-10-28 2016-05-06 株式会社日立エルジーデータストレージ Dispositif de visiocasque

Family Cites Families (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2008006250A (ja) * 2006-06-28 2008-01-17 Naoyuki Tatebayashi 片手用洗濯バサミ

Patent Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2007336166A (ja) * 2006-06-14 2007-12-27 Shimadzu Corp 頭部装着型表示装置
JP2009179897A (ja) * 2008-01-30 2009-08-13 Ssc:Kk つば付帽子装着用ライト
WO2016068123A1 (fr) * 2014-10-28 2016-05-06 株式会社日立エルジーデータストレージ Dispositif de visiocasque

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2021188222A3 (fr) * 2020-02-06 2022-02-03 Galvion Ltd. Système de vision pour casque intégré renforcé
US11733528B2 (en) 2020-02-06 2023-08-22 Galvion Ltd. Rugged integrated helmet vision system
US11832677B2 (en) 2021-05-12 2023-12-05 Galvion Incorporated System for forming a deep drawn helmet

Also Published As

Publication number Publication date
JP2018160838A (ja) 2018-10-11
JP6458821B2 (ja) 2019-01-30

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