FOLDABLE VIRTUAL REALITY DISPLAY DEVICE
20200110269 ยท 2020-04-09
Inventors
Cpc classification
G02B30/36
PHYSICS
International classification
Abstract
A foldable virtual reality display device that includes a central board, which is provided with image displays in the user's viewing direction; first and second hinges provided at the front end and the rear end of the central board; left and right image plates folded toward left and right surfaces of the central board with respect to the first hinge; and left and right lens plates folded toward both left and right surfaces of the central board with respect to the second hinge. When used, the optical axis of the left and right image plates corresponds to the optical axis of the left and right lenses, and simultaneously corresponds to the focal distance between the left and right lenses, and when carried, the left and right image plates and the left and right lens plates are folded with respect to the both left and right surfaces of the central board.
Claims
1. A foldable virtual reality display device, comprising: a central board in a thin plate shape, which is provided with image displays in the user's viewing direction; a first and a second hinges provided at the front end and the rear end of the central board; left and right image plates folded toward both left and right surfaces of the central board with respect to the first hinge and unfolded; left and right lens plates folded toward both left and right surfaces of the central board with respect to the second hinge and unfolded; wherein when used, the optical axis of the left and right image plates corresponds to the optical axis of the left and right lenses, and simultaneously corresponds to the focal distance between the left and right lenses, and when carried, the left and right image plates and the left and right lens plates are folded with respect to both left and right surfaces of the central board to be easily portable.
2. The foldable virtual reality display device according to claim 1, wherein the left and right image display structure is configured as an image display having a self-luminous structure such as LCD, OLED, QLED, and MICRO LED.
3. The foldable virtual reality display device according to claim 1, wherein at least a gyro sensor is provided in a position sensor.
4. The foldable virtual reality display device according to claim 1, wherein one among handles, glasses legs, and a band is further provided at both left and right ends of the left and right lens plates.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0021] The above and other features of the present invention will now be described in detail with reference to certain exemplary embodiments thereof illustrated the accompanying drawings which are given hereinbelow by way of illustration only, and thus are not limitative of the present invention, and wherein:
[0022]
[0023]
[0024]
[0025]
[0026] It should be understood that the appended drawings are not necessarily to scale, presenting a somewhat simplified representation of various preferred features illustrative of the basic principles of the invention. The specific design features of the present invention as disclosed herein, including, for example, specific dimensions, orientations, locations, and shapes will be determined in part by the particular intended application and use environment.
[0027] In the figures, reference numbers refer to the same or equivalent parts of the present invention throughout the several figures of the drawing.
DETAILED DESCRIPTION OF THE INVENTION
[0028] Hereinafter reference will now be made in detail to various embodiments of the present invention, examples of which are illustrated in the accompanying drawings and described below. While the invention will be described in conjunction with exemplary embodiments, it will be understood that present description is not intended to limit the invention to those exemplary embodiments. On the contrary, the invention is intended to cover not only the exemplary embodiments, but also various alternatives, modifications, equivalents and other embodiments, which may be included within the spirit and scope of the invention as defined by the appended claims.
[0029] Hereinafter, reference will now be made in detail to various embodiments of the present disclosure, examples of which are illustrated in the accompanying drawings and described below.
[0030] As shown in
[0031] In particular, if the optical axis of the left and right image plates 6, 6a does not correspond to the optical axis of the left and right lenses 5, 5a, multiple phases occur during use, and thus the image cannot be used.
[0032] In addition, if the focal distance between the left and right lenses 5, 5a does not correspond to the length of the central board 1, the focal distance between the left and right lenses 5, 5a is not matched, and thus the images cannot be used.
[0033] The left and right image display 7, 7a structure is provided with an image display having a self-luminous structure such as LCD, OLED, QLED, and MICRO LED.
[0034] The position sensor 9 includes a gyro sensor, an acceleration sensor, a geomagnetic field sensor and the like. The gyro sensor measures the tilted angle to detect the movement of the top, bottom, left, and right of the present invention. The geomagnetic field sensor serves to detect the strength and weakness of a magnetic field and supplement the gyro sensor. The acceleration sensor is combined with the gyro sensor to capture the motion of the present invention. Accordingly, one position sensor 9 system is formed by adding a sensor for detecting an image corresponding to a viewing angle which rotates depending on the rotational movement direction of the left and right image displays 7, 7a such as a gyro sensor, a geomagnetic field sensor, and an acceleration sensor form, which needs to be provided in the same direction as the left and right image display 7, 7a device rotates.
[0035] That is, when the user 14 wears the present invention and rotates to the left as shown in
[0036] As shown in
[0037] The first hinge 2 connects a left lens fixing plate 4 and a right lens fixing plate 4a, which are rotated vertically and folded toward both left and right surfaces of the central board 1, respectively, and thus the left lens fixing plate 4 is provided with the left lens 5 and the right lens fixing plate 5 is provided with the right lens 5a, respectively.
[0038] The second hinge 3 connects a left image fixing plate 6 and a right image fixing plate 6a, which are rotated vertically and folded toward both left and the right surfaces of the central board 1, respectively, and thus the left and right image fixing plates 6, 6a are provided with the left image plate 7 and the right image plate 7a, respectively.
[0039] A position sensor 9 such as a gyro sensor for measuring the position of an image is provided at the rear end of the left and right image plates 7, 7a or the central board 1.
[0040] In the present invention as described above, it is important that the left and right lens plates 4, 4a and the left and right image displays 7, 7a are provided at a position where respective optical axes thereof correspond to each other so as not to occur multiple phases of the virtual reality image during use.
[0041] The length of the central board 1 is configured to be equal to the focal distance between the left and right lenses 5, 5a. That is, the distance between the left and right lenses 5, 5a is configured to be equal to the distance between the left and right lenses 5, 5a and the image surface of the left and right image plates 7, 7a.
[0042] For example, if the focal distance between the left and right lenses 5, 5a is 50 mm, the length of the central board 1 is also set as 50 mm.
[0043] An interval between the optical axes of the left and right image plates 6, 6a unfolded when used is fixed as 63 to 65 mm. Therefore, the width of a screen will be within 126 to 130 mm.
[0044] In addition, an interval between the optical axes of the left and right lenses 5, 5a and the left and right lens plates 4, 4a unfolded when used is also configured to be the same, so that the interval between the left and right eyes of a person corresponds to the optical axis of the left and right image plates 6, 6a and the optical axis of the left and right lenses 5, 5a, thereby watching the VR stereoscopic image.
[0045] As shown in
[0046] According to the present invention as shown in
[0047] In the structure of the present invention as shown in
[0048] In addition, as shown in
[0049] A wearing space B in which the nose of the user 12 can be entered needs to be formed between the left and right lenses 5, 5a as shown in
[0050] As shown in
[0051] The left and right image displays 7, 7a provided in the left and right image plates 6, 6a may be formed in various screen ratios such as 8:9, 16:9, 32:9 and the like.
[0052] The left and right image displays 7, 7a may be formed with an image display 71 provided with a self-luminous panel 73 structure such as LCD, OLED, QLED, and micro LED having a self-luminous source, as shown in
[0053] In the present invention, an image input, a power supply, and image control may be performed by a separate control device 8 as shown in
[0054] While the foldable virtual reality display device according to the present invention is used as shown in
[0055] The structure of the present invention may be significantly reduced to more than to 1/10 in volume and by more than to 1/9 in weight, as compared to the normal size, 12 cm10 to 20 cm20 cm=2400 cm.sup.3 to 4800 cm.sup.3, the normal weight, 300 to 470 g of a normal VR headset equipped with existing video displays, and thus is portable.
[0056] In addition, the viewing angle of a conventional device using a smart phone which is divided by two, that is, the viewing angle is magnified twice to a 16:9 screen compared to an 8:9 screen.
[0057] Further, since the position sensor 9 is provided at a position at which the left and right image displays 7, 7a rotate, it is possible to provide a virtual reality image of the corresponding viewing angle provided by the viewing angle of 360 up, down, left, and right according to the user's rotation.
[0058] Therefore, since the present invention is a minimum volume of VR device having a pocket structure, it is possible to watch the virtual reality image at any time regardless of the place without a separate smart phone by carrying it.
[0059] The invention has been described in detail with reference to preferred embodiments thereof. However, it will be appreciated by those skilled in the art that changes may be made in these embodiments without departing from the principles and spirit of the invention, the scope of which is defined in the appended claims and their equivalents.