Rotary mirror for checking entire body

The rotary mirror system addresses the limitations of conventional mirrors by allowing multiple mirrors to rotate along a centrifugal center, providing a comprehensive view of the body from various angles while minimizing space and enhancing usability.

WO2025095524A1PCT designated stage expired Publication Date: 2025-05-08KIM JONG GWAN
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Patent Information

Application Number
PCT/KR2024/016625
Authority / Receiving Office
WO · WO
Patent Type
Applications
Current Assignee / Owner
Priority Date
2023-11-03
Filing Date
2024-10-29
Publication Date
2025-05-08

AI Technical Summary

Technical Problem

Conventional mirrors are limited in their ability to provide a clear view of the front, side, and back of the body simultaneously, requiring users to adjust angles or use multiple mirrors, which can be cumbersome and space-consuming.

Method used

A rotary mirror system comprising multiple mirrors connected to rotate along a centrifugal center, allowing for adjustable angles and compact storage, with a guide rail system for stable rotation.

Benefits of technology

Enables users to view their entire body from various angles easily, minimizes the volume of the mirror system for easier storage and handling, and provides a stable rotation effect.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention relates to a rotary mirror for checking an entire body, the rotary mirror comprising: a mirror unit having a plurality of mirrors; a connection unit which connects the respective mirrors of the mirror unit so as to be able to rotate about the center; and a guide unit which supports and guides the lower end of the mirror unit. This configuration makes it possible to check the entire body of a user from various angles by rotating the plurality of mirrors at various angles.
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Description

Rotating mirror for full body check

[0001] The present invention relates to a rotating mirror for checking the whole body, and more specifically, to a rotating mirror for checking the whole body that allows one to easily check the front, side, and back of the whole body in all directions according to the rotation angle through a plurality of mirrors.

[0002] Since the advent of bronze mirrors, mirror materials have undergone continuous improvement and development, reaching their current state. However, the limitation of mirrors reflecting only the front view has yet to be overcome. This invention provides a simple and clear way to view the front, sides, and back.

[0003] In general, a mirror is an object that reflects the shape of an object by using the reflection of light, and is a type of personal or general living tool that allows one to reflect one's own body.

[0004] These mirrors come in many different varieties, from large wall-mounted mirrors to small hand mirrors that are easy to carry around.

[0005] Each mirror has a specific size and purpose. Hand mirrors can reflect details such as the face, but are limited in reflecting the entire front.

[0006] Large mirrors can reflect the front of your face, but have limitations in reflecting specific areas such as your back or the back of your head.

[0007] There is a problem in that in order to see a specific area, such as the back of the head or the back of the head, the user must use a separate mirror, hold the mirror with his / her hand, and adjust the angle himself / herself.

[0008] Additionally, when checking the back of the head, it is difficult to check accurately because part of it is covered by the user's head.

[0009] If there is no mirror, such as outdoors, and you take a picture of your back or the back of your head using the rear camera of your smartphone, it is difficult to accurately identify the part you want to check because you are taking the picture based on your intuition.

[0010] So, you can often see people on the street using the glass windows of buildings as mirrors to reflect their side profiles.

[0011] Additionally, when multiple full-length mirrors are placed, there is a problem that they can easily fall over even with a small impact as they are mounted on a support, and they also take up a lot of space.

[0012] Prior art documents in the technical field to which the present invention belongs include Korean Utility Model Publication No. 20-0496765, Korean Utility Model Publication No. 20-0495733, Korean Patent Publication No. 10-2131521, and Korean Patent Publication No. 10-1676562.

[0013] The present invention was created to solve the above problems, and its purpose is to enable the user's body to be checked from various angles, while minimizing the volume and enabling safe use.

[0014] In order to achieve the above purpose, a full-body confirmation rotary mirror according to a preferred embodiment of the present invention includes a mirror unit having a plurality of mirrors; and a connecting unit connecting each mirror of the mirror unit so that it can rotate along a center.

[0015] In addition, the connecting portion is characterized in that each mirror of the mirror portion is connected with a different radius so that it can be covered.

[0016] In addition, the connecting portion is characterized in that a support member is connected to the center so as to be rotatable along the center so as to be connected to each mirror of the mirror portion, and the support member of the connecting portion is arranged in the vertical direction so that each mirror of the mirror portion can be covered.

[0017] In addition, it is characterized in that a top mirror is combined on the lower surface of the support.

[0018] In addition, the support is characterized in that it is combined in a way that the length can be adjusted.

[0019] According to the rotating mirror for full body confirmation according to the present invention, the user's full body can be confirmed from various angles by having multiple mirrors rotate at various angles.

[0020] That is, you can see the side and back views reflected in other mirrors placed at appropriate angles in the front mirror together with the front view at the same time.

[0021] In addition, since multiple mirrors are arranged to overlap each other when rotated, the volume of the mirrors can be minimized, and since the mirrors are arranged on one side, the effect of easy storage and handling can be obtained.

[0022] In addition, by guiding multiple mirrors by the guide rail, the effect of allowing multiple mirrors to rotate stably by being guided along the guide rail can be obtained.

[0023] FIG. 1 is a perspective view of a full-body confirmation rotary mirror according to a first embodiment of the present invention.

[0024] Figure 2 is a plan view of a full-body confirmation rotary mirror according to the first embodiment of the present invention.

[0025] Figure 3 is an operation diagram of a support according to the first embodiment of the present invention.

[0026] FIG. 4 is a side view of a full-body verification rotary mirror according to the first embodiment of the present invention.

[0027] FIG. 5 is a perspective view of a full-body confirmation rotary mirror according to a second embodiment of the present invention.

[0028] Figure 6 is a cross-sectional view of the first to third supports according to the second embodiment of the present invention.

[0029] Figure 7 is a cross-sectional view of the first to third bundles according to the second embodiment of the present invention.

[0030] Figure 8 is a side view of the first to third moving wheels according to the second embodiment of the present invention.

[0031] Fig. 9 is a block diagram of a lighting unit according to a second embodiment of the present invention.

[0032] The advantages and features of the present invention and the methods for achieving them will become clear with reference to the embodiments described in detail below together with the accompanying drawings.

[0033] However, the present invention is not limited to the embodiments disclosed below, but can be implemented in various different forms. These embodiments are provided only to ensure that the disclosure of the present invention is complete and to fully inform those skilled in the art of the scope of the invention, and the present invention is defined only by the scope of the claims. Like reference numerals refer to like elements throughout the specification.

[0034] Hereinafter, the present invention will be described with reference to drawings for explaining a full-body confirmation rotary mirror according to embodiments of the present invention.

[0035] FIG. 1 is a perspective view of a full-body confirmation rotary mirror according to a first embodiment of the present invention, FIG. 2 is a plan view of a full-body confirmation rotary mirror according to a first embodiment of the present invention, FIG. 3 is an operation diagram of a support according to a first embodiment of the present invention, and FIG. 4 is a side view of a full-body confirmation rotary mirror according to a first embodiment of the present invention.

[0036] Referring to these drawings, the full-body confirmation rotary mirror according to the present embodiment has the feature that multiple mirrors can be rotated at various angles to reflect not only the front but also the back.

[0037] A full-body confirmation rotary mirror (100) according to the present embodiment capable of providing such effects includes a mirror portion (110), a support portion (120), and a guide portion (130).

[0038] The above mirror part (110) is intended to reflect the user's entire body and includes a first mirror plate (111), a second mirror plate (112), and a third mirror plate (113).

[0039] The above first mirror plate (111) is a mirror, and a mirror is attached to the front.

[0040] At least one first moving wheel (111a) is coupled to the lower end of the first mirror plate (111).

[0041] When the first moving wheel (111a) is formed as one, it is placed at the center of the lower part of the first mirror plate (111), and when formed as a plurality, it is placed symmetrically at the lower part of the first mirror plate (111).

[0042] The above second mirror plate (112) is a mirror, and a mirror is attached to the front.

[0043] The above second mirror plate (112) is formed to have an area equal to or smaller than that of the first mirror plate (111).

[0044] Of course, it can be formed to be larger than the area of ​​the first mirror plate (111).

[0045] At least one second moving wheel (112a) is coupled to the lower end of the second mirror plate (112).

[0046] When the second moving wheel (112a) is formed as one, it is placed at the center of the lower part of the second mirror plate (112), and when formed as a plurality, it is placed symmetrically at the lower part of the second mirror plate (112).

[0047] The above third mirror plate (113) is a mirror, and a mirror is attached to the front.

[0048] The above third mirror plate (113) is formed to have an area equal to or smaller than that of the second mirror plate (112).

[0049] Of course, it can be formed to be larger than the area of ​​the second mirror plate (112).

[0050] At least one third moving wheel (113a) is coupled to the lower end of the third mirror plate (113).

[0051] When the third moving wheel (113a) is formed as one, it is placed at the center of the lower part of the third mirror plate (113), and when formed as a plurality, it is placed symmetrically at the lower part of the third mirror plate (113).

[0052] Meanwhile, the first mirror plate (111), the second mirror plate (112), and the third mirror plate (113) are not limited to mirrors attached to the front, and may also be formed of a reflective film.

[0053] The above support member (120) connects the first mirror plate (111), the second mirror plate (112) and the third mirror plate (113) so that they can rotate with each other, and includes a first support member (121), a second support member (123) and a third support member (125).

[0054] The above first support (121) is connected to the front upper portion of the first mirror plate (111) so as to extend forward.

[0055] A first bundle (122) is formed at the end of the first support (121).

[0056] The above second support (123) is connected to the upper front surface of the above second mirror plate (112) so as to extend forward.

[0057] The above second support (123) is formed shorter than the above first support (121).

[0058] A second bundle (124) is formed at the end of the second support (123).

[0059] The above second bundle (124) is rotatably coupled to the lower end of the above first bundle (122).

[0060] The third support (125) is connected to the upper front surface of the third mirror plate (113) so as to extend forward.

[0061] The third support (125) is formed shorter than the second support (123).

[0062] A third bundle (126) is formed at the end of the third support (125).

[0063] The third bundle (126) is rotatably coupled to the lower end of the second bundle (124).

[0064] As the second support (123) and the third support (125) are rotatably connected to the first bundle (122) of the first support (121), the second mirror plate (112) and the third mirror plate (113) are rotated at various angles along the center of the first bundle (122).

[0065] Each of the first support (121), second support (123) and third support (125) is formed to be adjustable in length.

[0066] For example, each of the first support (121), the second support (123), and the third support (125) may be formed in a telescopic shape.

[0067] Additionally, at least one upper mirror is attached to the lower end of each of the first support (121), the second support (123), and the third support (125).

[0068] The above guide part (130) supports and guides the lower part of the mirror part (110), and includes a first guide rail (131), a second guide rail (132), and a third guide rail (133).

[0069] The above first guide rail (131) is formed to correspond to the movement radius of the first moving wheel (111a).

[0070] The first moving wheel (111a) is guided and supported on the first guide rail (131).

[0071] The above second guide rail (132) is formed to correspond to the movement radius of the second moving wheel (112a).

[0072] The second moving wheel (112a) is guided and supported on the second guide rail (132).

[0073] The third guide rail (133) is formed to correspond to the movement radius of the third moving wheel (113a).

[0074] The third moving wheel (113a) is guided and supported on the third guide rail (133).

[0075] Accordingly, the first mirror plate (111), the second mirror plate (112), and the third mirror plate (113) are connected to each other by the support member (120) and are rotatably coupled along the center, so that they can be rotated at various angles.

[0076] The present invention is a device in which a plurality of mirrors are connected to a group with supports of different lengths centered on a front mirror, and each mirror rotates along an orbit of a concentric circle of different lengths centered on the group, thereby unfolding to an appropriate angle when in use.

[0077] Thus, when in use, the user's side and back views, etc., reflected in other mirrors are simultaneously projected in the front mirror, so the user can see his / her front, side, and back views all at once in the front mirror, as if he / she were in a kaleidoscope.

[0078] And, when finished using, it is a mirror system that rotates and stores along the orbit of the mirror, saving space.

[0079] FIG. 5 is a perspective view of a full-body confirmation rotary mirror according to a second embodiment of the present invention, FIG. 6 is a cross-sectional view of first to third supports according to a second embodiment of the present invention, FIG. 7 is a cross-sectional view of first to third bundles according to a second embodiment of the present invention, FIG. 8 is a side view of first to third moving wheels according to a second embodiment of the present invention, and FIG. 9 is a block diagram of a lighting unit according to a second embodiment of the present invention.

[0080] A full-body confirmation rotary mirror (200) according to the present embodiment capable of providing such effects includes a mirror portion (210), a support portion (220), and a guide portion (230).

[0081] The above mirror part (210) is intended to reflect the user's entire body and includes a first mirror plate (211), a second mirror plate (212), and a third mirror plate (213).

[0082] The above first mirror plate (211) is a mirror, and a mirror is attached to the front.

[0083] At least one first moving wheel (211a) is coupled to the lower end of the first mirror plate (211).

[0084] When the first moving wheel (211a) is formed as one, it is placed at the center of the lower part of the first mirror plate (211), and when formed as a plurality, it is placed symmetrically at the lower part of the first mirror plate (211).

[0085] The above second mirror plate (212) is a mirror, and a mirror is attached to the front.

[0086] The above second mirror plate (212) is formed to have an area equal to or smaller than that of the first mirror plate (211).

[0087] Of course, it can be formed to be larger than the area of ​​the first mirror plate (211).

[0088] At least one second moving wheel (212a) is coupled to the lower end of the second mirror plate (212).

[0089] When the second moving wheel (212a) is formed as one, it is placed at the center of the lower part of the second mirror plate (212), and when formed as a plurality, it is placed symmetrically at the lower part of the second mirror plate (212).

[0090] The above third mirror plate (213) is a mirror, and a mirror is attached to the front.

[0091] The above third mirror plate (213) is formed to have an area equal to or smaller than that of the second mirror plate (212).

[0092] Of course, it can be formed to be larger than the area of ​​the second mirror plate (212).

[0093] At least one third moving wheel (213a) is coupled to the lower end of the third mirror plate (213).

[0094] When the third moving wheel (213a) is formed as one, it is placed at the center of the lower part of the third mirror plate (213), and when formed as a plurality, it is placed symmetrically at the lower part of the third mirror plate (213).

[0095] Meanwhile, the first mirror plate (211), the second mirror plate (212), and the third mirror plate (213) are not limited to mirrors attached to the front, and may also be formed of a reflective film.

[0096] The above support member (220) connects the first mirror plate (211), the second mirror plate (212) and the third mirror plate (213) so that they can rotate with each other, and includes a first support member (221), a second support member (223) and a third support member (225).

[0097] The above first support (221) is connected to the front upper portion of the first mirror plate (211) so as to extend forward.

[0098] A first bundle (222) is formed at the end of the first support (221).

[0099] The above second support (223) is connected to the upper front surface of the above second mirror plate (212) so as to extend forward.

[0100] The second support (223) is formed shorter than the first support (221).

[0101] A second bundle (224) is formed at the end of the second support (223).

[0102] The second bundle (224) is rotatably coupled to the lower end of the first bundle (222).

[0103] The third support (225) is connected to the front upper portion of the third mirror plate (213) so as to extend forward.

[0104] The third support (225) is formed shorter than the second support (223).

[0105] A third bundle (226) is formed at the end of the third support (225).

[0106] The third bundle (226) is rotatably coupled to the lower end of the second bundle (224).

[0107] As the second support (223) and the third support (225) are rotatably connected to the first bundle (222) of the first support (221), the second mirror plate (212) and the third mirror plate (213) are rotated at various angles along the center of the first bundle (222).

[0108] The above guide part (230) supports and guides the lower part of the mirror part (210), and includes a first guide rail (231), a second guide rail (232), and a third guide rail (233).

[0109] The above first guide rail (231) is formed to correspond to the movement radius of the first moving wheel (211a).

[0110] The first moving wheel (211a) is guided and supported on the first guide rail (231).

[0111] The above second guide rail (232) is formed to correspond to the movement radius of the second moving wheel (212a).

[0112] The second moving wheel (212a) is guided and supported on the second guide rail (232).

[0113] The third guide rail (233) is formed to correspond to the movement radius of the third moving wheel (213a).

[0114] The third moving wheel (213a) is guided and supported on the third guide rail (233).

[0115] Accordingly, the first mirror plate (211), the second mirror plate (212), and the third mirror plate (213) are connected to each other by the support member (220) and are rotatably coupled along the center, so that they can be rotated at various angles.

[0116] Furthermore, a sponge is attached to the rear surface of each of the second mirror plate and the third mirror plate at a position facing the mirror attached to the first mirror plate and the mirror attached to the second mirror plate.

[0117] The above sponge prevents each mirror from being broken by impact when the first mirror plate and the second mirror plate are in close contact with the second mirror plate and the third mirror plate.

[0118] A full-body confirmation rotary mirror (200) according to the present embodiment capable of providing such effects includes a mirror portion (210), a support portion (220), a guide portion (230), and a lighting portion (240).

[0119] The above mirror part (210) is intended to reflect the user's entire body and includes a first mirror plate (211), a second mirror plate (212), and a third mirror plate (213).

[0120] The above first mirror plate (211) is a mirror, and a mirror is attached to the front.

[0121] At least one first moving wheel (211a) is coupled to the lower end of the first mirror plate (211).

[0122] When the first moving wheel (211a) is formed as one, it is placed at the center of the lower part of the first mirror plate (211), and when formed as a plurality, it is placed symmetrically at the lower part of the first mirror plate (211).

[0123] A first protrusion (211b) is formed on the upper front surface of the first mirror plate (211).

[0124] A first catch (211c) is formed at the end of the first protrusion (211b).

[0125] The above second mirror plate (212) is a mirror, and a mirror is attached to the front.

[0126] The above second mirror plate (212) is formed to have an area equal to or smaller than that of the first mirror plate (211).

[0127] Of course, it can be formed to be larger than the area of ​​the first mirror plate (211).

[0128] At least one second moving wheel (212a) is coupled to the lower end of the second mirror plate (212).

[0129] When the second moving wheel (212a) is formed as one, it is placed at the center of the lower part of the second mirror plate (212), and when formed as a plurality, it is placed symmetrically at the lower part of the second mirror plate (212).

[0130] A second protrusion (212b) is formed on the upper front surface of the second mirror plate (212).

[0131] A second catch (212c) is formed at the end of the second protrusion (212b).

[0132] The above third mirror plate (213) is a mirror, and a mirror is attached to the front.

[0133] The above third mirror plate (213) is formed to have an area equal to or smaller than that of the second mirror plate (212).

[0134] Of course, it can be formed to be larger than the area of ​​the second mirror plate (212).

[0135] At least one third moving wheel (213a) is coupled to the lower end of the third mirror plate (213).

[0136] When the third moving wheel (213a) is formed as one, it is placed at the center of the lower part of the third mirror plate (213), and when formed as a plurality, it is placed symmetrically at the lower part of the third mirror plate (213).

[0137] A third protrusion (213b) is formed on the upper front surface of the third mirror plate (213).

[0138] A third catch (213c) is formed at the end of the third protrusion (213b).

[0139] Meanwhile, the first mirror plate (211), the second mirror plate (212), and the third mirror plate (213) are not limited to mirrors attached to the front, and may also be formed of a reflective film.

[0140] The above support member (220) connects the first mirror plate (211), the second mirror plate (212) and the third mirror plate (213) so that they can rotate with each other, and includes a first support member (221), a second support member (223) and a third support member (225).

[0141] The above first support (221) is connected to the front upper portion of the first mirror plate (211) so as to extend forward.

[0142] A first joining hole (221a) is formed at one end of the first support (221) to be joined with the first protrusion (211b).

[0143] The first protrusion (211b) is fixed to the first connecting hole (221a) so as to be movable in the forward and backward direction by the first catch (211c).

[0144] A first elastic body (221b) that pulls the first protrusion (211b) is coupled to the first coupling hole (221a).

[0145] A first bundle (222) is formed at the other end of the first support (221).

[0146] A first inlet hole (222a) is formed on one side of the lower surface of the first bundle (222).

[0147] The above first inlet hole (222a) is formed at a position adjacent to the first support (221).

[0148] A first spring (222b) is coupled to the inside of the first inlet hole (222a).

[0149] A first fixing protrusion (222c) is formed at the end of the first spring (222b).

[0150] The end of the first fixed protrusion (222c) has a gentle dome shape.

[0151] The above first fixing protrusion (222c) is connected to the first inlet hole (222a) so that it can be pulled in and out, and is pulled out by the elasticity of the first spring (222b) or pushed in by the upper surface of the second bundle (224) to be described later.

[0152] The above second support (223) is connected to the upper front surface of the above second mirror plate (212) so as to extend forward.

[0153] A second joining hole (223a) is formed at one end of the second support (223) to be joined with the second protrusion (212b).

[0154] The second protrusion (212b) is fixed to the second connecting hole (223a) so as to be movable in the forward and backward direction by the second catch (212c).

[0155] A second elastic body (223b) that pulls the second protrusion (212b) is coupled to the second connecting hole (223a).

[0156] The second support (223) is formed shorter than the first support (221).

[0157] A second bundle (224) is formed at the other end of the second support (223).

[0158] A first fixing hole (224a) is formed on the upper surface of the second bundle (224) at a position facing the first fixing protrusion (222c).

[0159] The first fixing protrusion (222c) is fixed in the first fixing hole (224a) when withdrawn.

[0160] A second inlet hole (224b) is formed on one side of the lower surface of the second bundle (224).

[0161] A second spring (224c) is coupled to the inside of the second inlet hole (224b).

[0162] A second fixing protrusion (224d) is formed at the end of the second spring (224c).

[0163] The end of the second fixed protrusion (224d) has a gentle dome shape.

[0164] The second fixed protrusion (224d) is connected to the second inlet hole (224b) so that it can be pulled in and out, and is pulled out by the elasticity of the second spring (224c) or pushed in by the upper surface of the third bundle (226) to be described later.

[0165] The second bundle (224) is rotatably coupled to the lower end of the first bundle (222).

[0166] The third support (225) is connected to the front upper portion of the third mirror plate (213) so as to extend forward.

[0167] A third connecting hole (225a) is formed at one end of the third support (225) to be connected to the third protrusion (213b).

[0168] The third protrusion (213b) is fixed to the third connecting hole (225a) so as to be movable in the forward and backward direction by the third catch (213c).

[0169] A third elastic body (225b) that pulls the third protrusion (213b) is coupled to the third connecting hole (225a).

[0170] The third support (225) is formed shorter than the second support (223).

[0171] A third bundle (226) is formed at the end of the third support zone.

[0172] A second fixing hole (226a) is formed on the upper surface of the third bundle (226) at a position facing the second fixing protrusion (224d).

[0173] The second fixing protrusion (224d) is fixed in the second fixing hole (226a) when withdrawn.

[0174] Here, the first fixing protrusion (222c) and the second fixing protrusion (224d) are pulled out in a state where the first support (221), the second support (223), and the third support (225) are arranged to cover each other, thereby fixing the support portion (220).

[0175] Additionally, the support member (220) can be rotated again through an external force of a certain level or higher.

[0176] The third bundle (226) is rotatably coupled to the lower end of the second bundle (224).

[0177] As the second support (223) and the third support (225) are rotatably connected to the first bundle (222) of the first support (221), the second mirror plate (212) and the third mirror plate (213) are rotated at various angles along the center of the first bundle (222).

[0178] The above guide part (230) supports and guides the lower part of the mirror part (210), and includes a first guide rail (231), a second guide rail (232), and a third guide rail (233).

[0179] The above first guide rail (231) is formed to correspond to the movement radius of the first moving wheel (211a).

[0180] The first moving wheel (211a) is guided and supported on the first guide rail (231).

[0181] The above second guide rail (232) is formed to correspond to the movement radius of the second moving wheel (212a).

[0182] The second moving wheel (212a) is guided and supported on the second guide rail (232).

[0183] The third guide rail (233) is formed to correspond to the movement radius of the third moving wheel (213a).

[0184] The third moving wheel (213a) is guided and supported on the third guide rail (233).

[0185] The first guide rail (231), second guide rail (232), and third guide rail (233) are formed in a wave shape.

[0186] When the first moving wheel (211a), the second moving wheel (212a), and the third moving wheel (213a) are guided along the wave shape, the first protrusion (211b), the second protrusion (212b), and the third protrusion (213b) correspond to each other and move from the first coupling hole (221a), the second coupling hole (223a), and the third coupling hole (225a).

[0187] Accordingly, the first mirror plate (211), the second mirror plate (212), and the third mirror plate (213) are connected to each other by the support member (220) and are rotatably coupled along the center, so that they can be rotated at various angles.

[0188] The above lighting unit (240) is for irradiating light downward from the support unit (220), and a main LED (241) is coupled to the lower end of the third bundle (226), and at least one sub LED (242) is coupled to the lower end of each of the first support unit (221), the second support unit (223), and the third support unit (225).

[0189] Additionally, a pressure sensor (243) is coupled to the first anchoring hole (224a) and the second anchoring hole (226a).

[0190] The above pressure sensor (243) turns off the sub LED (242) when the first fixing protrusion (222c) and the second fixing protrusion (224d) are fixed in the first fixing hole (224a) and the second fixing hole (226a).

[0191] In addition, the pressure sensor (243) turns on the sub-LED (242) when the first fixing protrusion (222c) and the second fixing protrusion (224d) are removed from the first fixing hole (224a) and the second fixing hole (226a).

[0192] Of course, the above sub-LED (242) can be arbitrarily operated by a separate switch.

[0193] Furthermore, a fixing wire (250) is attached to the upper surface of the first bundle (222) so that the center of the mirror portion (210) is supported.

[0194] The upper end of the above fixed wire (250) is connected to the ceiling, and the lower end is connected to the upper end of the first bundle (222).

[0195] According to the rotating mirror for full body confirmation according to the present invention, the user's full body can be confirmed from various angles by having multiple mirrors rotate at various angles.

[0196] In addition, since multiple mirrors are arranged to overlap each other when rotated, the volume of the mirrors can be minimized, and since the mirrors are arranged on one side, the effect of easy storage and handling can be obtained.

[0197] In addition, by guiding multiple mirrors by the guide rail, the effect of allowing multiple mirrors to rotate stably by being guided along the guide rail can be obtained.

[0198] Those skilled in the art will appreciate that the present invention can be implemented in other specific forms without altering the technical concept or essential characteristics thereof. Therefore, the embodiments described above should be understood as illustrative in all respects and not restrictive. The scope of the present invention is indicated by the scope of the utility model claims described below rather than the detailed description above, and all changes or modifications derived from the meaning and scope of the utility model claims and their equivalent concepts should be interpreted as being included within the scope of the present invention.

[0199] *Explanation of symbols*

[0200] 100: Rotating mirror for full body check

[0201] 110: Mirror section 111: First mirror plate

[0202] 111a: First moving wheel 112: Second mirror plate

[0203] 112a: Second moving wheel 113: Third mirror plate

[0204] 113a: Third moving wheel 120: Support

[0205] 121: First support 122: First bundle

[0206] 123: Second support 124: Second bundle

[0207] 125: Third support 126: Third bundle

[0208] 130: Guide section 131: First guide rail

[0209] 132: Second guide rail 133: Third guide rail

Claims

1. A mirror section having multiple mirrors; and A full-body rotation mirror including a connecting part that connects each mirror of the above mirror part so that it can rotate along a center.

2. In paragraph 1, A full-body rotation mirror characterized in that the connecting portion is connected with different radii so that each mirror of the mirror portion can be covered.

3. In paragraph 2, A support member is connected to the above connecting portion so as to be rotatable along the center so as to be connected to each mirror of the above mirror portion, A full-body rotation mirror characterized in that the support of the above connecting part is arranged in an up-and-down direction so that each mirror of the above mirror part can be covered.

4. In paragraph 3, A full-body rotation mirror characterized in that a top mirror is combined on the lower surface of the above support.

5. In paragraph 3, A full-body rotation mirror characterized in that the above support is connected in a length-adjustable manner.

Citation Information

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