Image display device and light blocking member
Rotatable eyecups in HMDs prevent contact with the user's face or eyeglasses by adjusting their position to avoid overlap, addressing the interference issue in existing HMD designs.
Patent Information
- Application Number
- JP2021161045
- Authority / Receiving Office
- JP · JP
- Patent Type
- Patents
- Current Assignee / Owner
- Filing Date
- 2021-09-30
- Publication Date
- 2025-10-21
- Estimated Expiration
- 2041-09-30
AI Technical Summary
Existing head-mounted displays (HMDs) with light-blocking members risk contacting the user's face or eyeglasses due to their design overlapping the vertical direction, potentially interfering with wear and adjustment.
The image display device features rotatable light-shielding eyecups that can move away from or towards the user's face, positioned to avoid overlap with the face or eyeglasses, using a hinge mechanism to prevent contact during wear.
Prevents the light-blocking member from contacting the user's face or eyeglasses, ensuring comfortable and interference-free wear of the HMD.
Smart Images

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Abstract
Description
[Technical Field]
[0001] The present invention relates to an image display device having an observation optical system that guides light to the viewer's eyes, and a light blocking member provided in the image display device. [Background technology]
[0002] In recent years, there has been an increase in the use of HMDs (head-mounted displays), which are worn on the observer's head and display images in front of the observer's eyes. HMDs are used as devices that allow users to experience artificial reality (virtual reality = VR) and mixed reality (mixed reality = MR) because they allow users to easily view images on a large screen and provide stereoscopic vision. An HMD for realizing MR includes an imaging unit for capturing images of a subject corresponding to the observer's left and right eyes, a display unit for displaying a 3DCG image superimposed on the image captured by the imaging unit, and an observation optical system for projecting the image to the observer. Images are displayed on display elements such as small LCD panels corresponding to the observer's left and right eyes, and the images are enlarged through observation optical systems corresponding to each of the observer's eyes before being projected onto the observer's left and right eyes. The images captured by the imaging unit have parallax corresponding to both the left and right eyes. By creating 3DCG images as parallax images corresponding to the observer's left and right eyes and displaying them superimposed on the images captured by the imaging unit, it is possible to present a virtual 3DCG image as if it actually exists. HMDs are sometimes provided with an integrated or detachable eyecup to prevent external light entering the observation optical system from reflecting off and entering the observer's eyes, thereby interfering with the observation of the image. The eyecup is a light-blocking member that covers the periphery of the observation optical system and prevents external light from entering. [Prior art documents] [Patent documents]
[0003] [Patent Document 1] Japanese Patent Application Publication No. 2017-195515 Summary of the Invention [Problem to be solved by the invention]
[0004] Patent Document 1 discloses a head-mounted device provided with a light-blocking member that blocks external light in an area outside the eyeglasses. The light-blocking member in Patent Document 1 has openings formed in the viewer's eye sockets, making it less likely to interfere with eyeglasses. However, because the shape of the light-blocking member overlaps the viewer's face or eyeglasses in the vertical direction of the head-mounted device, there is a risk that the light-blocking member may come into contact with the viewer's face or eyeglasses when wearing the head-mounted device on the head or adjusting the position of the head-mounted device.
[0005] The present invention has been made in consideration of the above-mentioned points, and aims to prevent the light-shielding member from coming into contact with the viewer's face or glasses when the image display device is worn on the head, for example. [Means for solving the problem]
[0006] The image display device of the present invention is an image display device equipped with an observation optical system that guides light to the eyes of an observer, and includes a housing in which the observation optical system is provided, a mounting part for mounting the housing on the head of the observer, and a light-shielding member that is provided on the housing and blocks external light that enters between the observation optical system and the face of the observer, and the light-shielding member is rotatable about a rotation axis that extends in the vertical direction in a direction away from the face of the observer and a direction approaching the face of the observer. When viewed along the direction in which the rotation axis extends, the lens is positioned so as not to overlap the face of the observer or the eyeglasses worn by the observer when it is spaced apart from the face of the observer, and is positioned so as to partially overlap the face of the observer or the eyeglasses worn by the observer when it is close to the face of the observer or in contact with the face of the observer. It is characterized by: [Effects of the Invention]
[0007] According to the present invention, when the image display device is worn on the head, the light blocking member can be prevented from coming into contact with the viewer's face or eyeglasses. [Brief explanation of the drawings]
[0008] [Figure 1] 1 is a perspective view showing an image display device according to an embodiment of the present invention. [Figure 2] FIG. 2 is a diagram showing the rear surface of the image display device according to the present embodiment. [Figure 3] 1 is a perspective view showing an image display device according to an embodiment of the present invention. [Figure 4] 1 is a perspective view showing a state in which the image display device according to the present embodiment is used as an HMD. [Figure 5] FIG. 1 is a side view showing a state in which the image display device according to the present embodiment is used as an HMD. [Figure 6] FIG. 1 is a side view showing a state in which the image display device according to the present embodiment is used as an HMD. [Figure 7] FIG. 1 is a perspective view showing an eyecup according to the present embodiment. [Figure 8] 1A and 1B are diagrams illustrating the upper and lower surfaces of an image display device according to an embodiment of the present invention. [Figure 9] FIG. 1 is a perspective view showing a state in which the image display device according to the present embodiment (with an eyecup attached) is used as an HMD. [Figure 10] FIG. 2 is a diagram showing the rear face of the image display device (with an eyecup attached) according to the present embodiment. [Figure 11] FIG. 1 is a perspective view showing a state in which the image display device according to the present embodiment (with an eyecup attached) is used as an HMD. [Figure 12] FIG. 1 is a top view showing a state in which the image display device according to the present embodiment (with an eyecup attached) is used as an HMD. DETAILED DESCRIPTION OF THE INVENTION
[0009] Hereinafter, preferred embodiments of the present invention will be described with reference to the accompanying drawings. [First embodiment] The image display device to which the present invention is applied is an image display device equipped with an observation optical system that guides light to the observer's eyes, and is suitable for use in an HMD (head-mounted display) or an HHD (handheld display). In this embodiment, an image display device 100 used in an HMD will be described as shown in Fig. 4, which will be described later. In this application, as shown in Fig. 4, the direction in which the observer faces when the image display device is worn on the observer's head H is defined as the forward direction, and the directions up, down, left, and right as seen from the observer are defined as up, down, left, and right.
[0010] Fig. 1 is a perspective view of the image display device 100 as seen from the rear (observer side). Also, Figs. 2(a) and 2(b) are views showing the rear surface of the image display device 100. Fig. 3 is a perspective view of the image display device 100 as seen from the front. The image display device 100 includes a housing 101 that is thin and long from front to back and that forms the exterior of the device.
[0011] 1 and 2, left and right lenses 10L and 10R that constitute the observation optical system are provided on the rear surface of the housing 101. The lenses 10L and 10R are prisms, lenses, etc. that magnify and guide images on a display unit such as an LCD (Liquid Crystal Display) or OLED (Organic Light Emitting Diode) provided inside the housing 101, and an observer views the images on the display unit by looking through the lenses 10L and 10R. Hoods 11L and 11R are provided around the lenses 10L and 10R, and as shown in FIGS. 2(a) and 2(b), the observer can adjust the positions of the lenses 10L and 10R left and right to match the observer's interpupillary distance by operating the hoods 11L and 11R.
[0012] As shown in Fig. 3, left and right imaging cameras 20L and 20R and left and right alignment cameras 21L and 21R are provided on the front surface of the housing 101. The imaging cameras 20L and 20R are stereo cameras that acquire real images to be displayed to the observer via lenses 10L and 10R. The alignment cameras 21L and 21R are stereo cameras that acquire the position and orientation of the image display device 100 by utilizing feature points such as markers and object edges from the acquired images. The alignment cameras 21L and 21R are monochrome cameras, but aim to achieve high-precision and high-fault-tolerance alignment by utilizing a wide angle of view, a high shutter speed, a long baseline length, etc. In this embodiment, the imaging cameras 20L, 20R and the alignment cameras 21L, 21R are provided separately, but the imaging cameras 20L, 20R may be configured to acquire display images and alignment information only using the imaging cameras 20L, 20R. Also, the alignment cameras 21L, 21R may be replaced with distance sensors that use ultrasonic waves, infrared rays, or the like.
[0013] A cable 90 is connected to the left end of the top surface of the housing 101. The cable 90 is arranged to extend to the side of the image display device 100. The image display device 100 communicates position information and image data with an external personal computer or controller via the cable 90, generates a display image in which a 3DCG image is superimposed on a real image, and displays the image on a display unit such as an LCD or OLED. An observer can observe the image on the display unit via an observation optical system.
[0014] Operation buttons 30a to 30c that receive instructions and power operations from the observer are arranged on the top surface of the housing 101. The operation buttons 30a to 30c are arranged so that the observer can operate them by grasping the top and bottom of the housing 101. This allows the observer to operate the buttons with one hand while preventing misalignment between the observation optical system and the observer due to the reaction force when operating the operation buttons, which can occur when the operation buttons are arranged on the side of the housing 101.
[0015] 4 is a perspective view showing the image display device 100 in the form of an HMD. The housing 101 is supported so as to be suspended by the head-mounted unit 200, which is the mounting section, allowing the viewer to view images hands-free.
[0016] 5, the observer can perform a swing operation to swing the housing 101 back and forth about a tilt rotation axis 201 that extends in the left-right direction at a position above the housing 101 (arrow A1). The observer can also perform a movement operation to move the housing 101 up and down by operating a dial 202 installed on the head-mounted unit 200 (arrow A2). This, combined with the interpupillary distance adjustment function described above, allows the lenses 10L and 10R to be adjusted to the optimal viewing position. 6, the viewer can perform a flip-up operation to increase the swing range of the housing 101 around the tilt rotation axis 201. The housing 101 is held in a flipped-up position relative to the head-mounted unit 200. This allows the viewer to temporarily look directly at the outside without removing the HMD from the head H. Since the cable 90 extends to the side of the image display device 100, the housing 101 can be flipped up without the cable 90 interfering with the head-mounted unit 200.
[0017] 7 to 12, the image display device 100 according to this embodiment has eyecups 300L and 300R, which are light-shielding members, that can be detachably attached to the housing 101. The eyecups 300L and 300R block external light that enters between the lenses 10L and 10R and the viewer's face. When the eyecups 300L and 300R are attached to the housing 101, the eyecup 300L, which is a left light-shielding member, is positioned close to the viewer's left eye, and the eyecup 300R, which is a right light-shielding member, is positioned close to the viewer's right eye. The eyecups 300L and 300R are positioned symmetrically. 7 is a perspective view showing eyecups 300L and 300R. Eyecups 300L and 300R are made of resin, and have light-shielding portion 301, mounting portion 302, and hinge portion 312. When attached to housing 101, they have a shape that extends toward the viewer.
[0018] The light-shielding portion 301 has a side surface 303 and upper and lower surfaces 304a and 304b that are continuous with the side surface 303, and covers the area around the eyes of the viewer looking through the lenses 10L and 10R. The side surface 303 has a curved shape in which the central portion between the upper and lower surfaces 304a and 304b bulges outward. The outward direction refers to the direction away from the face. The upper and lower surfaces 304a and 304b become narrower toward the rear, and the light-shielding portion 301 has a shape that becomes shallower toward the rear.
[0019] The mounting portion 302 has a side surface 305 that connects to the inside of the front end portion of the side surface 303 of the light-shielding portion 301, and upper and lower surfaces 306a and 306b that are continuous with the side surface 305. An engaging protrusion 307 that protrudes downward is provided on the upper surface 306a, and an engaging protrusion 308 that protrudes upward is provided on the lower surface 306b. The hinge portion 312 rotatably connects the light blocking portion 301 and the attachment portion 302. The hinge portion 312 has a rotation shaft 310 that extends in the vertical direction. The light blocking portion 301 rotates relative to the attachment portion 302 via the hinge portion 312.
[0020] Fig. 8(a) is a diagram showing the top surface of the image display device 100, and Fig. 8(b) is a diagram showing the bottom surface of the image display device 100. As shown in Fig. 8(a), groove-shaped engagement portions 102L and 102R are formed on the left and right shoulder portions of the top surface of the housing 101. Furthermore, as shown in Fig. 8(b), recessed engagement portions 103L and 103R are formed on the left and right sides of the bottom surface of the housing 101. When attaching eyecups 300L, 300R, the elasticity of attachment portion 302 is utilized to engage engagement protrusions 307 with engagement portions 102L, 102R of image display device 100, and engagement protrusions 308 with engagement portions 103L, 103R of image display device 100. This allows eyecups 300L, 300R to be attached to the left and right side portions of housing 101, and light-shielding portion 301 can cover the area around the viewer's eyes, preventing external light from entering.
[0021] Fig. 9 is a perspective view showing the image display device 100 in a state where the eyecups 300L and 300R are attached and the image display device 100 is used as an HMD. Fig. 10 is a view showing the rear face of the image display device 100 in a state where the eyecups 300L and 300R are attached.
[0022] The eyecups 300L, 300R have attachment portions 302 that are located on the side of the housing 101 and in front of (on the object side of) the eyepiece-side surfaces of the lenses 10L, 10R, and are shaped to extend from the attachment portion 302 toward the viewer. This results in a shape and structure that, as shown in Figures 10(a) and 10(b), does not have any parts that would interfere with the eyeglasses 95 in the viewer's line of sight, even when the eyecups 300L, 300R are attached. In this way, even when the viewer is wearing eyeglasses 95, there are no parts that would interfere with the eyeglasses 95 in the viewer's line of sight, and the presence or absence of the eyecups 300L, 300R does not affect the range in which the distance of the lenses 10L, 10R from the viewer can be adjusted. Also, as shown in Figure 10(b), the side surface 303 of the light-shielding portion 301 of the eyecups 300L and 300R has a curved shape that bulges outward (away from the face), and a space 309 is provided inside the curved shape to store the temples 95a of the glasses 95.
[0023] FIG. 11 is a perspective view of the image display device 100 with the eyecups 300L and 300R attached, as seen from the rear. As shown in FIG. 11 , the eyecups 300L and 300R are configured to be rotatable about a rotation shaft 310 extending in the vertical direction. Specifically, the light blocking portion 301 is rotatable with respect to the mounting portion 302 via the rotation shaft 310 of the hinge portion 312 extending in the vertical direction at an angle of 70° or more, approximately 90° in this case. The viewer can grasp the light blocking portion 301 and rotate it in a direction away from or toward the viewer's face by opening or closing it to the left or right (arrow A3). The viewer rotates the light blocking portion 301 in a direction toward the viewer's face, and the light blocking portion 301 abuts against the housing 101 or the viewer's face, thereby coming into proximity to or in contact with the viewer's face. Furthermore, the viewer rotates the light blocking portion 301 in a direction away from the viewer's face, and the light blocking portion 301 abuts against the housing 101 or the attachment portion 302, thereby moving the light blocking portion 301 away from the viewer's face. In this way, the light blocking portion 301 can transition between a state in close proximity to or in contact with the viewer's face and a state away from the viewer's face. Furthermore, the rotation axis 310 of the hinge portion 312 is disposed on the side of the housing 101 and in front of (on the objective side of) the eyepiece-side surfaces of the lenses 10L and 10R. Therefore, it is possible to prevent the rotational path of the light blocking portion 301 when it rotates from interfering with the face or the eyeglasses 95.
[0024] 12 is a top view of image display device 100, with eyecups 300L and 300R attached to housing 101, worn on the head of a viewer wearing eyeglasses 95. In other words, Fig. 12 is a view of image display device 100 as seen along the direction in which rotation axis 310 extends. Note that head-mounted unit 200 is omitted from the illustration for ease of viewing.
[0025] 12(a) is a diagram showing a state in which the light blocking portion 301 is in proximity to or in contact with the viewer's face. In this state, a part of the light blocking portion 301, specifically the upper surface 304a and the lower surface 304b, is positioned so as to overlap the viewer's face or the eyeglasses 95. If the viewer performs a rocking operation, a vertical movement operation, or a flip-up operation on the housing 101 from this state, the light blocking portion 301 may interfere with and come into contact with the viewer's face or the eyeglasses 95. Therefore, before performing the above-mentioned operation, the viewer rotates the light blocking portion 301 in a direction away from the viewer's face to bring the light blocking portion 301 into a state away from the viewer's face.
[0026] 12(b) is a diagram showing a state in which the light blocking portion 301 is separated from the viewer's face. In this state, the light blocking portion 301 is positioned so as not to overlap the viewer's face or the eyeglasses 95. Even if the viewer performs a rocking operation, a vertically moving operation, or a flip-up operation on the housing 101 from this state, the light blocking portion 301 can be prevented from coming into contact with the viewer's face or the eyeglasses 95. Note that even when the image display device 100 is attached to or detached from the head, by similarly keeping the light blocking portion 301 separated from the viewer's face, the light blocking portion 301 can be prevented from coming into contact with the viewer's face or the eyeglasses 95.
[0027] Furthermore, the hinge portions 312 of the eyecups 300L and 300R of this embodiment are configured so that the light shielding portion 301 generates a biasing force at a predetermined angle α. Here, if the angle of the light shielding portion 301 when it is close to or in contact with the viewer's face as shown in Figure 12(a) is defined as 0°, and the angle of the light shielding portion 301 when it is away from the viewer's face as shown in Figure 12(b) is defined as β, then the relationship is 0°<α<β. 12(a), when the light blocking portion 301 is positioned in a range greater than angle 0° and smaller than angle α, the hinge portion 312 biases the light blocking portion 301 in a direction that brings the light blocking portion 301 even closer to the viewer's face. Here, the range in which the light blocking portion 301 is positioned greater than angle 0° and smaller than angle α corresponds to an example of a case in which the light blocking portion 301 is positioned on the side closer to the viewer's face. In this way, when the light blocking portion 301 is positioned on the side closer to the viewer's face, the biasing in the direction that brings the light blocking portion 301 even closer to the viewer's face makes it easier to maintain the light blocking portion 301 in a state close to or in contact with the viewer's face.
[0028] 12(b), when the light shielding portion 301 is positioned in a range greater than the angle α and smaller than the angle β, the hinge portion 312 biases the light shielding portion 301 in a direction further away from the viewer's face. Here, the range in which the light shielding portion 301 is greater than the angle α and smaller than the angle β corresponds to an example of a case in which the light shielding portion 301 is positioned on the side farther away from the viewer's face. In this way, when the light shielding portion 301 is positioned on the side farther away from the viewer's face, the biasing in the direction further away from the viewer's face prevents the light shielding portion 301 from inadvertently approaching the viewer's face.
[0029] As described above, the eyecups 300L, 300R can rotate about the rotation axis 310 in a direction away from the viewer's face and in a direction toward the viewer's face. Therefore, when the image display device 100 is worn on the head, for example, by rotating the eyecups 300L, 300R in a direction away from the viewer's face, it is possible to prevent the eyecups 300L, 300R from coming into contact with the viewer's face or eyeglasses.
[0030] Furthermore, when viewed along the direction in which the rotation shaft 310 extends, the eyecups 300L, 300R are positioned so that when they are close to or in contact with the viewer's face, they partially overlap the viewer's face or the eyeglasses 95 worn by the viewer. On the other hand, when they are spaced apart from the viewer, the eyecups 300L, 300R are positioned so that they do not overlap the viewer's face or the eyeglasses 95 worn by the viewer. Therefore, when the image display device 100 is worn on the head, for example, by keeping the eyecups 300L, 300R spaced apart from the viewer's face, it is possible to prevent the eyecups 300L, 300R from coming into contact with the viewer's face or eyeglasses.
[0031] Although the present invention has been described above with reference to the embodiments, the above embodiments are merely illustrative of specific examples of how the present invention can be implemented, and the technical scope of the present invention should not be construed as being limited by these embodiments. In other words, the present invention can be implemented in various forms without departing from its technical concept or main features.
[0032] In this embodiment, the case where the eyecups 300L, 300R are detachably attached to the housing 101 has been described, but they may be non-detachably attached. In this case, the housing 101 itself may be formed with a rotation axis 310, and the light-shielding unit 301 may be configured to rotate directly with respect to the housing 101.
[0033] In the present embodiment, the case where the light blocking portion 301 comes into proximity to or contact with the viewer's face by abutting against the housing 101 or the viewer's face has been described, but the present invention is not limited to this. For example, the light blocking portion 301 may be configured so that it comes into proximity to or contacts the viewer's face by abutting between a rotating member and a non-rotating member of the members that make up the hinge portion 312. In the present embodiment, the case where the light blocking portion 301 comes into contact with the housing 101 or the attachment portion 302 to move the light blocking portion 301 away from the viewer's face has been described, but the present invention is not limited to this. For example, the light blocking portion 301 may be configured to come into contact with a rotating member and a non-rotating member of the members that make up the hinge portion 312 to move the light blocking portion 301 away from the viewer's face. [Explanation of symbols]
[0034] 10L, 10R: Lens 100: Image display device 101: Housing 200: Head-mounted unit 300L, 300R: Eyecup 310: Rotating shaft
Claims
1. An image display device having an observation optical system that guides light to an observer's eye, a housing in which the observation optical system is provided; a mounting portion for mounting the housing on the viewer's head; a light blocking member provided in the housing for blocking external light entering between the observation optical system and the face of the observer, The light blocking member is The display device is rotatable about a rotation axis extending in a vertical direction in a direction away from the viewer's face and a direction approaching the viewer's face, When viewed along the direction in which the rotation axis extends, When the optical disc is spaced apart from the face of the observer, the optical disc is positioned so as not to overlap the face of the observer or glasses worn by the observer; An image display device characterized in that, when the image display device is in close proximity to or in contact with the viewer's face, the image display device is positioned so as to partially overlap the viewer's face or eyeglasses worn by the viewer.
2. An image display device having an observation optical system that guides light to an observer's eye, a housing in which the observation optical system is provided; a mounting portion for mounting the housing on the viewer's head; a light blocking member provided in the housing for blocking external light entering between the observation optical system and the face of the observer, The light blocking member is an image display device that is rotatable about a rotation axis that extends in a vertical direction at a position to the side of the housing and forward of an eyepiece-side surface of the observation optical system, in a direction away from the face of the observer and a direction toward the face of the observer.
3. An image display device having an observation optical system that guides light to an observer's eye, a housing in which the observation optical system is provided; a mounting portion for mounting the housing on the viewer's head; a light blocking member provided in the housing for blocking external light entering between the observation optical system and the face of the observer, The light blocking member is The display device is rotatable about a rotation axis extending in a vertical direction in a direction away from the viewer's face and a direction approaching the viewer's face, An image display device characterized in that it can be rotated around the rotation axis from a state close to or in contact with the viewer's face by an angle of 70° or more in a direction away from the viewer's face.
4. An image display device having an observation optical system that guides light to an observer's eye, a housing in which the observation optical system is provided; a mounting portion for mounting the housing on the viewer's head; a light blocking member provided in the housing for blocking external light entering between the observation optical system and the face of the observer, The light blocking member is The display device is rotatable about a rotation axis extending in a vertical direction in a direction away from the viewer's face and a direction approaching the viewer's face, An image display device that is detachable from the housing.
5. An image display device having an observation optical system that guides light to an observer's eye, a housing in which the observation optical system is provided; a mounting portion for mounting the housing on the viewer's head; a light blocking member provided in the housing for blocking external light entering between the observation optical system and the face of the observer, The light blocking member is The display device is rotatable about a rotation axis extending in a vertical direction in a direction away from the viewer's face and a direction approaching the viewer's face, When the camera is positioned on a side away from the viewer's face, The image display device is characterized in that it is biased in a direction further away from the viewer's face.
6. An image display device having an observation optical system that guides light to an observer's eye, a housing in which the observation optical system is provided; a mounting portion for mounting the housing on the viewer's head; a light blocking member provided in the housing for blocking external light entering between the observation optical system and the face of the observer, The light blocking member is the display device is rotatable about a rotation axis extending in a vertical direction in a direction away from the viewer's face and a direction approaching the viewer's face, The housing includes: An image display device characterized in that the image display device is capable of swinging relative to the mounting portion around a tilt rotation axis that extends in the left-right direction at a position above the housing.
7. The light blocking member is 7. The image display device according to claim 1, wherein a left light-shielding member positioned adjacent to the left eye of the observer and a right light-shielding member positioned adjacent to the right eye of the observer are positioned symmetrically.
8. When the light blocking member is located on the side close to the face of the viewer, 8. The image display device according to claim 1, wherein the image display device is biased in a direction closer to the viewer's face.
9. 9. The image display device according to claim 1, wherein the light-shielding member is rotatable about the rotation axis in a direction away from the viewer's face and the housing, and in a direction approaching the viewer's face.
10. a light-shielding member provided in an image display device including an observation optical system that guides light to an observer's eye, a housing in which the observation optical system is provided, and a mounting part for mounting the housing on the observer's head, the light-shielding member blocking external light that enters between the observation optical system and the observer's face, the light-shielding member comprising: a mounting portion that is detachably attached to the housing; a light-shielding portion connected to the mounting portion, A light-shielding member characterized in that the light-shielding portion is rotatable between the mounting portion and the mounting portion around a rotation axis extending in the vertical direction in a direction away from the viewer's face and a direction approaching the viewer's face.
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