Electronic device

The electronic device addresses ergonomic issues in AR devices by incorporating a built-in PCB, display panels, and a movable nose support system, enhancing comfort and weight distribution for improved user experience.

WO2025154841A1PCT designated stage expired Publication Date: 2025-07-24LG ELECTRONICS INC
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Patent Information

Application Number
PCT/KR2024/000815
Authority / Receiving Office
WO · WO
Patent Type
Applications
Current Assignee / Owner
Filing Date
2024-01-17
Publication Date
2025-07-24

AI Technical Summary

Technical Problem

Existing electronic devices for Augmented Reality (AR) lack ergonomic design, particularly in terms of weight distribution and nose support, which can lead to discomfort during prolonged use.

Method used

The electronic device incorporates a front frame with a built-in PCB, display panels, and a nose support system featuring a movable nose pad and leveling mechanism, including a housing, mover, and nose pad, to enhance ergonomic comfort and weight distribution.

Benefits of technology

The solution provides improved ergonomic design, enhancing user comfort and reducing fatigue by distributing weight more evenly and allowing for adjustable nose support, thus improving the overall wearing experience.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present disclosure relates to an electronic device. The electronic device may comprise: a front frame to which a light-transmitting display unit is coupled; one or more temples hinged to the front frame; and a nose support coupled to the front frame, the front frame comprising: a PCB built into the front frame and extending therefrom toward the one or more temples; and display panels built into in the front frame on one side of display units and electrically connected to the PCB, and the nose support comprising: a housing fixed to the front frame; a mover that can move in the housing; and a nose pad connected to the mover.
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Description

electronic devices

[0001] The present disclosure relates to electronic devices. More specifically, it relates to electronic devices used in virtual reality (VR), augmented reality (AR), mixed reality (MR), extended reality (XR), and the like.

[0002] Virtual Reality (VR) refers to a specific environment or situation, or the technology itself, that is similar to reality but not real, created by artificial technology using computing power.

[0003] Augmented Reality (AR) is a technology that synthesizes virtual objects or information into the real environment to make them appear as objects that exist in the original environment.

[0004] Mixed reality (MR) or hybrid reality refers to the creation of new environments or information by merging virtual and real worlds. In particular, it refers to real-time interaction between real and virtual worlds.

[0005] Extended Reality (XR) encompasses virtual reality (VR), augmented reality (AR), and mixed reality (MR).

[0006] Created virtual environments and situations stimulate the user's five senses, allowing them to experience spatial and temporal experiences similar to reality, freely blurring the boundaries between reality and imagination. Users not only immerse themselves in these environments, but can also interact with the objects embodied within them, using real devices to control and command them.

[0007] Recently, research on gear used in these technical fields has been actively conducted.

[0008] The present disclosure aims to solve the above-mentioned and other problems.

[0009] Another purpose may be to provide electronic devices used in Virtual Reality (VR), Augmented Reality (AR), Mixed Reality (MR), and eXtended Reality (XR).

[0010] Another purpose may be to provide a structure for electronic devices used in Augmented Reality (AR).

[0011] Another purpose may be to provide an ergonomic structure for electronic devices used in Augmented Reality (AR).

[0012] Another purpose may be to provide an ergonomic weight distribution structure for electronic devices used in Augmented Reality (AR).

[0013] Another purpose may be to provide a user-worn structure for electronic devices used in Augmented Reality (AR).

[0014] Another purpose may be to provide a moving structure for nose support of electronic devices used in AR (Augmented Reality).

[0015] According to one aspect of the present disclosure for achieving the above or other purposes, an electronic device includes: a front frame to which a light-transmitting display unit is coupled; at least one temple hingedly connected to the front frame; and a nose support coupled to the front frame, wherein the front frame includes: a PCB built into the front frame and extending from the front frame toward the at least one temple; and a display panel built into the front frame at one side of the display unit and electrically connected to the PCB, wherein the nose support may include: a housing fixed to the front frame; a mover movable in the housing; and a nose pad connected to the mover.

[0016] The effects of the electronic device according to the present disclosure are described as follows.

[0017] According to at least one of the embodiments of the present disclosure, an electronic device used in VR (Virtual Reality), AR (Augmented Reality), MR (Mixed Reality), etc. can be provided.

[0018] According to at least one of the embodiments of the present disclosure, a structure of an electronic device used for AR (Augmented Reality) can be provided.

[0019] According to at least one of the embodiments of the present disclosure, an ergonomic structure of an electronic device used in AR (Augmented Reality) can be provided.

[0020] According to at least one of the embodiments of the present disclosure, an ergonomic weight distribution structure of an electronic device used in AR (Augmented Reality) can be provided.

[0021] According to at least one of the embodiments of the present disclosure, a user-worn structure of an electronic device used in AR (Augmented Reality) can be provided.

[0022] According to at least one of the embodiments of the present disclosure, a moving structure of a nose support of an electronic device used in AR (Augmented Reality) can be provided.

[0023] Further scope of the applicability of the present disclosure will become apparent from the detailed description below. However, since various modifications and variations within the spirit and scope of the present disclosure will become apparent to those skilled in the art, it should be understood that the detailed description and specific examples, such as preferred embodiments of the present disclosure, are given by way of example only.

[0024] FIGS. 1 to 16 are drawings illustrating examples of electronic devices according to embodiments of the present disclosure.

[0025] Hereinafter, embodiments disclosed in this specification will be described in detail with reference to the attached drawings. Regardless of the drawing numbers, identical or similar components are given the same reference numbers and redundant descriptions thereof will be omitted.

[0026] The suffixes "module" and "part" used for components in the following description are given or used interchangeably only for the convenience of writing specifications, and do not have distinct meanings or roles in themselves.

[0027] In addition, when describing the embodiments disclosed in this specification, if it is determined that a detailed description of a related known technology may obscure the gist of the embodiments disclosed in this specification, the detailed description thereof will be omitted. In addition, the attached drawings are only intended to facilitate easy understanding of the embodiments disclosed in this specification, and the technical ideas disclosed in this specification are not limited by the attached drawings, and should be understood to include all modifications, equivalents, and substitutes included in the spirit and technical scope of the present disclosure.

[0028] Terms that include ordinal numbers, such as first, second, etc., may be used to describe various components, but the components are not limited by these terms. These terms are used solely to distinguish one component from another.

[0029] When a component is referred to as being "connected" or "connected" to another component, it should be understood that it may be directly connected or connected to that other component, but that there may be other components intervening. Conversely, when a component is referred to as being "directly connected" or "connected" to another component, it should be understood that there are no other components intervening.

[0030] Singular expressions include plural expressions unless the context clearly indicates otherwise.

[0031] In this application, terms such as “include” or “have” are intended to specify the presence of a feature, number, step, operation, component, part or combination thereof described in the specification, but should be understood not to exclude in advance the possibility of the presence or addition of one or more other features, numbers, steps, operations, components, parts or combinations thereof.

[0032]

[0033] Referring to FIG. 1, the electronic device (100) may have an overall shape of glasses or goggles. The electronic device (100) may include a frame (110, 120) and a display unit (130).

[0034] The frame (110, 120) may include a front frame (110), a side frame (120), and a nose support (115). The front frame (110) may include a plurality of rims (111, 112), a bridge (113), and an end piece (116, 117). The bridge (113) may connect the first rim (111) and the second rim (112).

[0035] The shape of the opening of the rim (111, 112) may correspond to the shape of the display unit (130). For example, the display unit (130) may be coupled or fixed to the opening of the rim (111, 112). The first end piece (117) may face the bridge (113) with respect to the first rim (111), and the second end piece (116) may face the bridge (113) with respect to the second rim (112). The front frame (110) may be symmetrical left and right with respect to the bridge (113).

[0036] The side frame (120) may be coupled to the front frame (110). The side frame (120) may be hinge-coupled to the end pieces (116, 117). For example, the first side frame (120a) may be hinge-coupled to the first end piece (117), and the second side frame (120b) may be hinge-coupled to the second end piece (116). The side frame (120) may include temples (121a, 121b) and temple tips (122a, 122b). The temples (121a, 121b) may be hinge-coupled to the end pieces (116, 117). Temple tips (122a, 122b) can be connected to the temples (121a, 121b) facing the end pieces (116, 117) of the temples (121a, 121b).

[0037] The nose pads (115a, 115b) may be coupled to the bridge (113) or the rims (111, 112). For example, the first nose pad (115a) may be coupled to the first rim (111) or the bridge (113), and the second nose pad (115b) may be coupled to the second rim (112) or the bridge (113). Depending on the structure of the frame (110, 120), the nose pads (115a, 115b) may be omitted or formed integrally with the front frame (110). The nose pads (115a, 115b) may be movable up and down.

[0038]

[0039] Referring to FIG. 2 together with FIG. 1, the electronic device (100) may include a main PCB (142) and a sub PCB (141). For example, the main PCB (142) and / or the sub PCB (141) may be a flexible circuit board (F-PCB). The sub PCB (141) may be elongated and may be built into a frame (110, 120). For example, the sub PCB (141) may be built into a front frame (110), a second end piece (116), and / or a second side frame (120b). As another example, the sub PCB (141) may be built into a front frame (110), a first end piece (117), a second end piece (116), a first side frame (120a), and / or a second side frame (120b).

[0040] The main PCB (142) can be built into the frame (110, 120) and electrically connected to the sub PCB (141). For example, the main PCB (142) can be built into the first side frame (120a) and connected to the sub PCB (141).

[0041] The first battery (146a) is electrically connected to the main PCB (142) and can supply power to the main PCB (142). The second battery (146b) is electrically connected to the sub PCB (141) and can supply power to the sub PCB (141). The first speaker (145a) is electrically connected to the main PCB (142) and can receive a signal from the main PCB (142) and output sound. The second speaker (145b) is electrically connected to the sub PCB (141) and can receive a signal from the sub PCB (141) and output sound.

[0042] The first display engine (143a) and / or the second display engine (143b) may be electrically connected to the sub PCB (141). The first display panel (144a) and / or the second display panel (144b) may be electrically connected to the sub PCB (141). The first display engine (143a) may provide an image signal, a video signal, or a text signal to the first display panel (144a), and the second display engine (143b) may provide an image signal, a video signal, or a text signal to the second display panel (144b). For example, the display panels (144a, 144b) may be micro LEDs, OLEDs, or OLEDos (OLED on silicon). The display engine (143) and the display panel (144) may be referred to as an imaging module (143, 144) or an imaging engine (143, 144) or an image generator (143, 144) or a display module (143, 144).

[0043] The first display engine (143a) may be built into the first end piece (117), and the first display panel (144a) may be built into the first rim (111). The second display engine (143b) may be built into the second end piece (116), and the second display panel (144b) may be built into the second rim (112). The main camera (148) may be electrically connected to the sub PCB (141) and mounted on the front frame (110). The main camera (148) may also be built into the first end piece (117) and / or the second end piece (116).

[0044] The main camera (148) may include an image camera (148a) and depth of field (DoF) cameras (148b, 148c). The image camera (148a) may acquire external image information through an imaging element. The depth cameras (148b, 148c) may sense the depth of a subject required for determining the focal length of the image camera (148a) to improve the quality of the image information acquired by the image camera (148a). There may be a plurality of depth cameras (148b, 148c). The first depth camera (148b) may be mounted on the first end piece (117) and / or the front frame (110), and the second depth camera (148c) may be mounted on the second end piece (116) and / or the front frame (110). The image camera (148a) can obtain accurate image information by means of the dual depth cameras (148b, 148c).

[0045]

[0046] Referring to FIG. 3 together with FIG. 2, the sub PCB (141) may include a main line (141a), a first display connector (141b), a camera module connector (141d), a first display board (141c), a main board connector (141e), a second display connector (141f), a second display board (141g), and / or a sensor connector (141m).

[0047] The main line (141a) may be elongated and have a width smaller than the width of the rims (111, 112) of the front frame (110, see FIG. 1). The first display connector (141b) may be connected to the main line (141a). The first display panel (144a) may be connected to the first display connector (141b). A first display engine (143a) including electronic components for image generation may be mounted on the first display board (141c). For example, an image processing processor, a T-CON board, etc. may be mounted on the first display board (141c).

[0048] The main camera (148) can be connected to the camera module connector (141d). The main board connector (141e) can extend from the first display board (141c) or the main line (141a). The main PCB (142) can be connected to the main board connector (141e).

[0049] A second display connector (141f) may be connected to the main line (141a). A second display panel (144b) may be connected to the second display connector (141f). A second display engine (143b) including electronic components for image generation may be mounted on the second display board (141g). For example, an image processing processor, a T-CON board, etc. may be mounted on the second display board (141g).

[0050] The sensor connector (141m) can be connected to the main line (141a). Sensors that detect the external environment can be connected to the sensor connector (141m). For example, the sensor (149) can be a light sensor.

[0051] The main board connector (141e) can be connected to the main line (141a) by the first hinge FPCB (141v).

[0052] The first display unit (131) may include a first upper frame (131c) and a first display lens (131a). The first display lens (131a) may be inserted into and fixed to the first opening (111a, see FIG. 1) of the first rim (111, see FIG. 1) in a shape corresponding to the first opening (111a, see FIG. 1). The first upper frame (131c) may cover the upper surface of the first display lens (131a) and may be fixed to the first display lens (131a). The first upper frame (131c) may be coupled to the first rim (111).

[0053] The second display unit (132) may include a second upper frame (132c) and a second display lens (132a). The second display lens (132a) may be inserted into and fixed to the second opening (112a, see FIG. 1) of the second rim (112, see FIG. 1) in a shape corresponding to the second opening (112a, see FIG. 1). The second upper frame (132c) may cover the upper surface of the second display lens (132a) and may be fixed to the second display lens (132a). The second upper frame (132c) may be coupled to the second rim (112).

[0054] The first display panel (144a) is mounted on the first upper frame (131c) and can provide image light to the first display lens (131a). The first display panel cable (144ca) can be connected to the first display panel (144a).

[0055] The second display panel (144b) is mounted on the second upper frame (132c) and can provide image light to the second display lens (132a). The second display panel cable (144cb) can be connected to the second display panel (144b).

[0056] Below, the description of the first display unit (131) can be equally applied to the second display unit (132).

[0057]

[0058] Referring to FIG. 4, the front frame (110) may include a rear cover (110R), a middle cover (110M), and a front cover (110F). A sub PCB (141) may be built into the rear cover (110R). The sub PCB (141) may be coupled to the upper side of the first rim (111R) and the upper side of the second rim (112R) of the rear cover (110R). The sub PCB (141) may be mounted to the first rim (111R) and the second rim (112R) via the bridge (113R) of the rear cover (110R). The sub PCB (141) can be mounted on the upper side of the first rim (111R) of the rear cover (110R) and the first end piece (117R), and can be mounted on the upper side of the second rim (112R) of the rear cover (110R) and the second end piece (116R).

[0059] The middle cover (110M) may be coupled or fixed to the rear cover (110R). The middle cover (110M) may face the rear cover (110R) with respect to the first display unit (131) and / or the second display unit (132). The middle cover (110M) may fix the first display unit (131) and the second display unit (132) to the rear cover (110R).

[0060] The camera module (148a) of the main camera (148) can be fixed to the camera module connector (141d), and the middle cover (110M) can cover the camera module (148a) while being coupled to the rear cover (110R). The lens of the camera module (148a) can be exposed to the outside through the lens hole (CH) of the middle cover (110M) and the front cover (110F). The front cover (110F) can be coupled to or fixed to the middle cover (110M).

[0061] The first display unit (131) can be coupled to the first rims (111F, 111M, 111R) of the front cover (110F), the middle cover (110M), and the rear cover (110R), and the second display unit (132) can be coupled to the second rims (112F, 112M, 112R) of the front cover (110F), the middle cover (110M), and the rear cover (110R). The bridge (113F) of the front cover (110F), the bridge (113M) of the middle cover (110M), and / or the bridge (113R) of the rear cover (110R) can connect the first display unit (131) and the second display unit (132).

[0062]

[0063] Referring to FIG. 5, the leveling module (115) may be coupled to or built into the bridge (113R) and / or the rim (111R, 112R) of the rear cover (110R). The nose arm (115c) may be connected to the leveling module (115), and the nose pads (115a, 115b) may be connected to the nose arm (115c). The leveling module (115) may move the nose arm (115c) and / or the nose pads (115a, 115b) up and down.

[0064] The hinge module (200) can be connected or coupled to the end pieces (116R, 117R). The first hinge module (200a) can be connected or coupled to the first end piece (117R), and the second hinge module (200b) can be connected or coupled to the second end piece (116R).

[0065]

[0066] Referring to FIGS. 6 and 7, the main PCB (142) may be embedded in the temple (121a) of the first side frame (120a). The first side frame (120a) may be hinge-connected to the first end piece (117, see FIG. 4). The first switch (152) may be exposed to the outside through the temple (121a) of the first side frame (120a). For example, the first switch (152) may be a camera shutter. The main PCB (142) may be referred to as a first main board (142).

[0067] The first speaker (145a) is electrically connected to the main PCB (142) and can be built into the temple (121a) of the first side frame (120a). The first battery (146a) can be built into the temple tip (122a) of the first side frame (120a). The first battery (146a) can be electrically connected to the main PCB (142) by a wire (146w). The first battery (146a) can supply power to the main PCB (142).

[0068] The side frames (120a, 120b) may be provided with ear portions (123a, 123b) that connect the temples (121a, 121b) and the temple tips (122a, 122b). The wire (146w) may electrically connect the first battery (146a) and the main PCB (142) within the temple (121a) of the first side frame (120a), the ear portion (123a), and the temple tip (122a).

[0069] The weight of the battery (146a) may be relatively heavy due to other electronic components. The battery (146a) may be built into the temple tip (122a), and other electronic components may be built into the front frame (110, see FIG. 4) and the temple (121a).

[0070] The terminal board (141n) may be built into the temple tip (122a). An electrode (EL) may be formed on one surface of the terminal board (141n). There may be a plurality of electrodes (EL). The plurality of electrodes (EL) may be arranged in a row. For example, the terminal board (141n) may be a PCB. As another example, the terminal board (141n) may be an F-PCB. The terminal board (141n) may include a connection board (141w). The terminal board (141n) may be connected to the main PCB (142) by the connection board (141w). A terminal hole (EH) may be formed in the temple tip (122a). The terminal hole (EH) may be exposed to the outside of the temple tip (122a). There may be a plurality of terminal holes (EH), and the plurality of terminal holes (EH) may correspond to a plurality of electrodes (EL).

[0071] The magnetic body (M) can be embedded in the temple tip (122a). The magnetic body (M) is positioned around the terminal hole (EH) and can be fixed to the inner surface of the temple tip (122a). The magnetic body (M) can be positioned on both sides of a plurality of terminal holes (EH).

[0072] A heat dissipation hole may be formed on the upper and / or lower side of the temple (121a). The heat dissipation hole (121v) may be referred to as a heat dissipation slot (121v), a heat dissipation opening (121v), or an air path opening (121v). An air filter (121c) may cover the heat dissipation hole (121v). The air filter (121c) may be referred to as a heat dissipation cover (121c) or an opening cover (121c).

[0073] The touch pad (151) may be connected to the main PCB (142). The touch pad (151a) may include a touch panel (151a) and a panel electrode (151b). The touch panel (151a) may be located on the outer surface of the main PCB (142) and may face the outer surface of the main PCB (142). For example, the touch panel (151a) may be an electrostatic sensitive panel. As another example, the touch panel (151a) may be a pressure sensitive panel. The panel electrode (151b) may electrically connect the main PCB (142) and the touch panel (151a).

[0074] The flat board (141s) can be built into the temple (121b) of the second side frame (120b). The flat board (141s) can be referred to as a second main board (141s).

[0075] The temple (121b) of the second side frame (120b) can be hinge-connected to the second end piece (116, see FIG. 4) by a hinge (200b, see FIG. 4). The second hinge (200b) can hinge-connect the second side frame (120b) to the second end piece (116).

[0076] The second speaker (145b) may be built into the temple (121b) of the second side frame (120b). The second battery (146b) may be built into the temple tip (122b) of the second side frame (120b). A wire (146w) may electrically connect the second battery (146b) to the flat board (141s). For example, the wire (146w) may be built into the second temple tip (122b), the ear portion (123b) and / or the second temple (121b) and electrically connect the second battery (146b) to the flat board (141s).

[0077] The weight of the battery (146b) may be relatively heavy due to other electronic components. The battery (146b) may be built into the temple tip (122b), and other electronic components may be built into the front frame (110) and the temple (121b).

[0078]

[0079] Referring to FIGS. 8 and 9, the nose support (115) may include a support housing (1151), a leveling block (1152, 1154), a mover (1153), a nose arm (115c), and a nose pad (115a, 115b). The nose support (115) may be referred to as a glasses supporter (115), a front frame leveler (115), or a leveling module (115).

[0080] The support housing (1151) can be built into the bridge (113) of the front frame (110). The support housing (1151) can be coupled and fixed to the bridge (113) of the front frame (110). The nose arm (115c) and / or the nose pad (115a, 115b) can move toward or away from the support housing (1151). The mover (1153) can move inside the support housing (1151), and the nose arm (115c) can be fixed to the mover (1153). The leveling block (1152, 1154) can be coupled to the mover (1153), come into contact with the support housing (1151), and limit the movement of the mover (1153).

[0081]

[0082] Referring to FIGS. 10 to 12, the support housing (1151) may have a box shape with one side open. The support housing (1151) may include a front wall (1151a1), a rear wall (1151a2), and side walls (1151a3, 1151a4). The front wall (1151a1) may face the rear wall (1151a2), and the side walls (1151a3, 1151a4) may connect the front wall (1151a1) and the rear wall (1151a2). The bottom (1151L) may connect the front wall (1151a1), the rear wall (1151a2), and the side walls (1151a3, 1151a4), and may have a bottom hole (1151h).

[0083] The rear wall (1151a2) may include a plurality of holes (1151c). The plurality of holes (1151c) may be arranged to be spaced apart from each other in the vertical direction. The holes (1151c) may form rows and columns. The holes (1151c) may form two columns and three rows. The side walls (1151a3, 1151a4) may include a moving guide (1151b). The moving guide (1151b) may have a rib shape protruding from the side walls (1151a3, 1151a4). The moving guides (1151b) may be a pair, and the pair of moving guides (1151b) may face each other. The fastening portion (1151d) may protrude outward from the side walls (1151a3, 1151a4). The fastening member (1151d) can be fixed to the inside of the bridge (113, see Fig. 8) of the front frame (110, see Fig. 8).

[0084] The leveling block (1152) may include a mover connector (1152b) and a guide head (1152a). The mover connector (1152b) may be inserted into the mover (1153) and coupled with the mover (1153). The guide head (1152a) may be formed on the upper end of the mover connector (1152b). The cross-section of the guide head (1152a) may correspond to the cross-section of the support housing (1151). The guide head (1152a) may be moved in the vertical direction of the support housing (1151) by the moving guide (1151b) inside the support housing (1151).

[0085] The leveling block (1152) may include a stopping unit (1154). The stopping unit (1154) may include a ball housing (1154a) and a ball (1154b). The ball housing (1154a) may be coupled to one side of the guide head (1152a), and the ball (1154b) may be rotated with a portion of the ball housing (1154a) exposed to the outside. The ball (1154b) and the ball housing (1154a) may face the holes (1151c) of the rear wall (1151a2), and each of the plurality of balls (1154b) and the ball housings (1154a) may be aligned with each of the holes (1151c).

[0086] The mover (1153) may include a block connector (1153a) and a moving grip (1153b). The mover connector (1152b) of the leveling block (1152) may be inserted into the block connector (1153a). The moving grip (1153b) may be spaced apart from the block connector (1153a) and may extend from the block connector (1153a). The moving grip (1153b) may face the block connector (1153a).

[0087]

[0088] Referring to FIGS. 13 and 14, the leveling block (1152) and the mover (1153) can move up and down with respect to the support housing (1151, see FIG. 12). When the leveling block (1152) and the mover (1153) are aligned and positioned at the top of the support housing (1151), the ball (1154b) can be inserted into the uppermost hole (1151c) among the holes (1151c) formed in the rear wall (1151a2) of the support housing (1151). The ball (1154b) can protrude from the ball housing (1154a) and be inserted into the hole (1151c) formed in the rear wall (1151a2) to limit the vertical movement of the leveling block (1152) and the mover (1153).

[0089] The moving grip (1153b) of the mover (1153) may be located at the rear of the bridge (113) of the front frame (110). The moving grip (1153b) may face the rear of the bridge (113) of the front frame (110) and cover a portion of the rear of the bridge (113).

[0090] The nose arm (115c) and nose pad (115a, 115b) may be positioned relatively higher than the position described later with respect to the bridge (113).

[0091]

[0092] Referring to FIGS. 15 and 16, the leveling block (1152) and the mover (1153) can move up and down with respect to the support housing (1151, see FIG. 12). When the leveling block (1152) and the mover (1153) move from the top to the bottom of the support housing (1151), the ball (1154b) can be inserted into the hole (1151c) located at the lowest side among the holes (1151c) formed in the rear wall (1151a2) of the support housing (1151). The ball (1154b) can protrude from the ball housing (1154a) and be inserted into the hole (1151c) formed in the rear wall (1151a2) to limit the up and down movement of the leveling block (1152) and the mover (1153).

[0093] The moving grip (1153b) of the mover (1153) can be positioned by moving downward from the rear of the bridge (113) of the front frame (110). The moving grip (1153b) can slide and move from the rear of the bridge (113) of the front frame (110) and be positioned downward from the rear of the bridge (113).

[0094] The nose arm (115c) and nose pad (115a, 115b) can be moved downward relative to the bridge (113) to be adjusted to fit the user's face.

[0095]

[0096] Referring to FIGS. 1 to 16, an electronic device may include: a front frame to which a light-transmitting display unit is coupled; at least one temple hingedly connected to the front frame; and a nose support coupled to the front frame, wherein the front frame may include: a PCB built into the front frame and extending from the front frame toward the at least one temple; and a display panel built into the front frame at one side of the display unit and electrically connected to the PCB, wherein the nose support may include: a housing fixed to the front frame; a mover movable in the housing; and a nose pad connected to the mover.

[0097] The above nose support further includes: a leveling block coupled to the mover and moving within the housing, wherein the leveling block can contact the inside of the housing while moving within the housing.

[0098] The leveling block may include: a guide head at least partially in contact with the inner surface of the housing; a mover connector extending from the guide head and fixed to the mover; and a stopping unit mounted on the guide head and stepwise engaged with the inner surface of the housing.

[0099] The housing includes: a plurality of holes formed on an inner surface of the housing, and the plurality of holes can be arranged to be spaced apart from each other in the direction of movement of the leveling block.

[0100] The stopping unit comprises: a ball housing coupled to the guide head; and a ball inserted into the ball housing and rotating in the ball housing, wherein the ball can be inserted into or removed from a plurality of holes formed on the inner surface of the housing as the leveling block moves.

[0101] The above nose support may further include a nose arm fixed to the mover and extended to be connected to the nose pad.

[0102] The above mover may include: a block connector connected to the mover connector of the leveling block; and a moving grip extending from the block connector and extending to the outer surface of the front frame.

[0103] The front frame may include: a first rim forming a first opening; a first rim adjacent to the first rim and forming a second opening; and a bridge positioned between the first rim and the second rim and connecting the first rim and the second rim, and the display unit may include: a first display unit coupled to the first opening; and a second display unit coupled to the second opening, and the display panel may include: a first display panel positioned on one side of the first display unit, embedded in the first rim, and electrically connected to the PCB; and a second display panel positioned on one side of the second display unit, embedded in the second rim, and electrically connected to the PCB.

[0104] The front frame comprises: a first end piece formed on the first rim and facing the bridge with respect to the first rim; and a second end piece formed on the second rim and facing the bridge with respect to the second rim, wherein the at least one temple comprises: a first temple hingedly connected to the first end piece; and a second temple hingedly connected to the second end piece, wherein the nose support can be coupled to the bridge.

[0105] Information provided by the above display panel can be displayed on the light transmission path of the above display unit.

[0106]

[0107] Any or all of the embodiments of the present disclosure described above are not mutually exclusive or distinct. Any or all of the embodiments of the present disclosure described above may have their respective components or functions combined or used together.

[0108] For example, it means that a configuration A described in a particular embodiment and / or drawing can be combined with a configuration B described in another embodiment and / or drawing. That is, even if a combination between configurations is not directly described, it means that a combination is possible, except in cases where a combination is described as impossible.

[0109] The above detailed description should not be construed as limiting in any respect and should be considered illustrative only. The scope of the present invention should be determined by a reasonable interpretation of the appended claims, and all modifications within the equivalent scope of the present invention are intended to be included within the scope of the present invention.

Claims

1. Front frame to which the light-transmitting display unit is combined; At least one temple hingedly connected to said front frame; and, Including a nose support coupled to the above front frame, The above front frame: A PCB built into said front frame and extending from said front frame toward said at least one temple; and, A display panel is included on one side of the display section and is built into the front frame and electrically connected to the PCB. The above nose support: A housing fixed to the above front frame; a mover movable in the above housing; and, An electronic device comprising a nose pad connected to said mover.

2. In paragraph 1, The above nose support: further comprising a leveling block coupled to the above mover and moving within the housing; The above leveling block is, An electronic device that moves within the housing and contacts the inner side of the housing.

3. In paragraph 2, The above leveling blocks are: A guide head having at least a portion in contact with the inner surface of the housing; A mover connector extending from the above guide head and fixed to the mover; and, An electronic device comprising a stopping unit mounted on the guide head and stepwise engaged with the inner surface of the housing.

4. In paragraph 3, The above housing: comprising a plurality of holes formed on the inner surface of the housing; The above multiple holes are, Electronic devices arranged so as to be spaced apart from each other in the direction of movement of the above leveling blocks.

5. In paragraph 4, The above stopping unit: A ball housing coupled to the above guide head; and, A ball is inserted into the ball housing and includes a ball that rotates in the ball housing, The above ball, An electronic device that is inserted into or removed from a plurality of holes formed on the inner surface of the housing as the leveling block moves.

6. In paragraph 1, The above nose support: An electronic device further comprising a nose arm secured to said mover and extended and connected to said nose pad.

7. In paragraph 3, The above mover: A block connector connected to the mover connector of the above leveling block; and, An electronic device comprising a moving grip extending from the block connector and extending to an outer surface of the front frame.

8. In paragraph 1, The above front frame: First rim forming the first opening; a first rim adjacent to the first rim and forming a second opening; and, A bridge positioned between the first rim and the second rim and connecting the first rim and the second rim, The above display section: A first display unit coupled to the first opening; and, Including a second display unit coupled to the second opening, The above display panel: A first display panel positioned on one side of the first display portion, built into the first rim, and electrically connected to the PCB; An electronic device comprising a second display panel positioned on one side of the second display portion, built into the second rim, and electrically connected to the PCB.

9. In paragraph 8, The above front frame: A first end piece formed on the first rim, facing the bridge, and formed on the first rim; and A second end piece is formed on the second rim, facing the bridge, and comprising: At least one of the above temples: a first temple hingedly connected to the first end piece; and, comprising a second temple hingedly connected to the second end piece; The above nose support is, An electronic device coupled to the above bridge.

10. In paragraph 1, An electronic device in which information provided by the display panel is displayed on the light transmission path of the display unit.

Citation Information

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