Portable Communication Devices

The foldable device's display protection structure uses a conductive sheet under the display panel to prevent collisions and maintain slimness by buffering impacts, addressing the damage risk of flexible displays.

JP7741252B2Active Publication Date: 2025-09-17SAMSUNG ELECTRONICS CO LTD
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Patent Information

Application Number
JP2024099860
Authority / Receiving Office
JP · JP
Patent Type
Patents
Current Assignee / Owner
Priority Date
2019-10-22
Filing Date
2024-06-20
Publication Date
2025-09-17
Estimated Expiration
2040-09-09

AI Technical Summary

Technical Problem

The self-moving structure of flexible displays in foldable electronic devices can be damaged by collisions with the inner walls of the housing when subjected to external impacts, and increasing cushioning space to prevent damage compromises the device's slim design.

Method used

A foldable portable communication device with a display protection structure that includes a flexible display with a conductive sheet arranged under the display panel, where the edge of the conductive sheet protrudes beyond the display panel edge and is recessed inward, providing a buffering effect against inner wall collisions without requiring additional space.

Benefits of technology

The conductive sheet effectively prevents display panel damage from external impacts by acting as a buffer, maintaining the device's slim profile by eliminating the need for extra cushioning space.

✦ Generated by Eureka AI based on patent content.

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Abstract

To provide a foldable portable communication device including a display protection structure.SOLUTION: In an electronic device 300, a first housing 310 and a second housing have a flexible display 400 which is configured to rotate with respect to a folding shaft provided by a hinge module. The flexible display is disposed such that a space 3101 is provided between a display panel 430 and an inner surface of a side wall 3102 corresponding to one of an edge of the display panel and first and second housing portions, and includes: a window layer 410 which is arranged on a first surface of the display panel; and a metal sheet layer 450 which is arranged on a second surface of the display panel. In the completely unfolded state, the edge of the metal sheet layer protrudes to the outer side over the edge of the display panel toward the inner surface of the side wall corresponding to one of the first and second housing portions.SELECTED DRAWING: Figure 7A
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Description

[Technical Field]

[0001] The present invention relates to a foldable portable communication device including a display protection structure. [Background technology]

[0002] Electronic devices have been improved to become thinner, to increase the rigidity of the electronic devices, to enhance the design aspects, and to differentiate their functional elements. Such electronic devices are gradually moving away from the standard rectangular shape and into a variety of other shapes. For example, the electronic device may have a transformable structure that allows it to be easily carried and to have a large screen display when in use.

[0003] As part of such electronic devices, foldable electronic devices that operate in a manner in which at least two housings are folded or unfolded relative to each other have been continuously released, and various improvements have been provided due to the foldable structure.

[0004] The foldable electronic device includes a hinge module, a first housing, and a second housing coupled to each other in opposing directions via the hinge module. Such a foldable electronic device operates in an "in-folding" and / or "out-folding" manner by rotating the first housing relative to the second housing through a range of 0° to 360° via a hinge module. The foldable electronic device includes a flexible display that is arranged across the first and second housings when opened at 180 degrees.

[0005] Unlike typical bar-type electronic devices, flexible displays must bend together with the housing, and thus can be positioned to enable self-movement through the support of the housing through the folding and unfolding movements of the foldable electronic device. In addition, multiple layers of a flexible display (e.g., a window layer, a display panel, or a protective layer) can be attached to each other via an adhesive (e.g., a pressure sensitive adhesive (PSA)) that can generate interlayer slip to accommodate differences in interlayer displacement due to bending operations. Thus, the electronic device may be provided with space to accommodate the self-behaving structure of the flexible display and inter-layer slippage due to folding and unfolding actions. Summary of the Invention [Problem to be solved by the invention]

[0006] However, due to the self-moving structure of the flexible display, when an external impact is applied to the foldable electronic device, such as when it is dropped, the edge of the display panel may collide with the inner wall of the housing, which may damage the display. Furthermore, if the space is increased for the purpose of cushioning to improve this, it may go against the goal of making foldable electronic devices thinner. [Means for solving the problem]

[0007] Various embodiments of the present invention may provide a foldable portable communication device that includes a display protection structure.

[0008] According to one aspect of the present invention, a portable communication device includes a housing including a first housing portion and a second housing portion, a hinge module coupled to the first housing portion and the second housing portion, wherein the first housing portion and the second housing portion are configured to rotate about a folding axis provided by the hinge module, and a flexible display received in the first housing portion and the second housing portion, the flexible display including a display panel including a first surface facing a first direction and a second surface facing a second direction opposite to the first direction when the portable communication device is in a fully unfolded state, the display panel being arranged such that a space is provided between an edge of the display panel and an inner surface of a side wall corresponding to either the first housing portion or the second housing portion, and the flexible display further includes a window cover arranged on the first surface of the display panel and a conductive sheet arranged under the second surface of the display panel, wherein an edge of the conductive sheet faces the inner surface of the side wall corresponding to either the first housing portion or the second housing portion and protrudes outward beyond the edge of the display panel when the portable communication device is in a fully unfolded state. At least a portion of the conductive sheet is recessed into the edge of the conductive sheet, and an inner edge of the recessed portion of the conductive sheet is disposed farther from the inner surface of the side wall than the edge of the conductive sheet. It is characterized by:

[0009] According to another aspect of the present invention, a portable communication device includes a first housing, a second housing, a hinge module connected to the first housing and the second housing, and a flexible display received in the first housing and the second housing, wherein the flexible display includes a display panel having a first surface facing a first direction and a second surface facing a second direction opposite to the first direction when the portable communication device is in a fully unfolded state, wherein the display panel is arranged such that a space is provided between an edge of the display panel and an inner surface of a side wall corresponding to one of the first housing and the second housing, and the display panel further includes a window cover arranged on the first surface of the display panel and a conductive sheet arranged under the second surface of the display panel, wherein at least a portion of the edge of the conductive sheet protrudes outward beyond the edge of the display panel toward the inner surface of the side wall of the first housing or the second housing to prevent collision between the display panel and the inner surface of the side wall when the portable communication device is in a fully unfolded state. At least a portion of the conductive sheet is recessed into the edge of the conductive sheet, and an inner edge of the recessed portion of the conductive sheet is disposed farther from the inner surface of the side wall than the edge of the conductive sheet. It is characterized by: [Effects of the Invention]

[0010] According to various embodiments of the present invention, at least one of the protective layers (e.g., a metal sheet layer) constituting a flexible display is disposed closer to the inner wall of the housing than the display panel, thereby preventing damage to the display panel through the buffering effect of the protective layer during external impact, and eliminating the need for a separate buffering space can help slim down the electronic device. [Brief explanation of the drawings]

[0011] [Figure 1] 1A and 1B illustrate an electronic device in an expanded state according to an embodiment of the present invention. [Figure 2] 2A and 2B are diagrams illustrating the electronic device of FIG. 1 in a folded state according to an embodiment of the present invention; [Figure 3] 1 is an exploded perspective view of an electronic device according to an embodiment of the present invention. [Figure 4A] 1 is an exploded perspective view of an electronic device including a flexible display according to an embodiment of the present invention. [Figure 4B] 1 is a diagram illustrating a configuration of an electronic device by region according to an embodiment of the present invention; [Figure 5] 1 is a perspective view illustrating a stacked structure of a flexible display according to an embodiment of the present invention. [Figure 6A] 1A and 1B are diagrams illustrating the configuration of the rear surface of a flexible display according to an embodiment of the present invention. [Figure 6B] 1A and 1B are diagrams illustrating the positional relationship between a display panel and a metal sheet layer according to an embodiment of the present invention. [Figure 7A] 7A is a partial cross-sectional view of the electronic device taken along line 7a-7a of FIG. 4B according to an embodiment of the present invention. [Figure 7B] 7B is a diagram illustrating the behavior of the flexible display of the electronic device of FIG. 7A when an external impact is applied according to an embodiment of the present invention. [Figure 8A] 8A is a partial cross-sectional view of the electronic device taken along line 8a-8a of FIG. 4B according to an embodiment of the present invention. [Figure 8B] 8B is a diagram illustrating behavior of a flexible display when an external impact is applied to the electronic device of FIG. 8A according to an embodiment of the present invention. [Figure 9A] 1 is a partial cross-sectional view showing a configuration of an electronic device according to an embodiment of the present invention. [Figure 9B] 9b is a diagram illustrating the configuration of the behavior of the flexible display of the electronic device of FIG. 9a when an external impact occurs according to an embodiment of the present invention. [Figure 10A] 1 is a partial cross-sectional view of an electronic device illustrating the configuration of metal sheet layers according to an embodiment of the present invention. [Figure 10B] 1 is a partial cross-sectional view of an electronic device illustrating the configuration of metal sheet layers according to an embodiment of the present invention. [Figure 11] 1 is a diagram illustrating an expanded state of an electronic device according to an embodiment of the present invention; [Figure 12]12 is a view illustrating a folded state of the electronic device of FIG. 11 according to an embodiment of the present invention. [Figure 13] 13 is a partial cross-sectional view of the electronic device taken along line 13-13 of FIG. 11 according to an embodiment of the present invention. DETAILED DESCRIPTION OF THE INVENTION

[0012] 1-13 discussed below, and the various embodiments used herein to illustrate the principles of the present disclosure, are for illustrative purposes only and should not be construed as limiting the scope of the present disclosure. Those skilled in the art will understand that the principles of the present disclosure may be implemented in any suitable array system or device.

[0013] The following detailed description, taken in conjunction with the accompanying drawings, is provided to facilitate a comprehensive understanding of various embodiments of the present disclosure as defined by the claims and their equivalents. While numerous specific details have been included to facilitate understanding thereof, this is to be considered as illustrative only. Accordingly, those skilled in the art will recognize that various changes and modifications to the various embodiments described herein may be made without departing from the scope and spirit of the present disclosure. Moreover, descriptions of well-known functions and configurations may be omitted for the sake of clarity and conciseness. In relation to the description of the drawings, the same or similar reference numerals are used for the same or similar components.

[0014] The terms and phrases used in the following detailed description and claims are not limited to their literary meanings, but may be used in a manner that allows the contents of the present disclosure to be clearly and consistently understood. Therefore, it will be apparent to those skilled in the art that the following detailed description of various embodiments of the present disclosure is provided for illustrative purposes only and is not intended to limit the present disclosure as defined by the appended claims and equivalents thereof.

[0015] The singular forms "a," "an," and "the" may be understood to include plural referents unless the context clearly dictates otherwise. Thus, for example, a "component surface" may include one or more representations.

[0016] FIG. 1 is a diagram illustrating an electronic device 100 in an unfolded state according to an embodiment of the present invention. Referring to FIG. 1, the electronic device 100 includes a pair of housing structures (110, 120) (e.g., foldable housing structures) that are rotatably coupled via a hinge structure (e.g., hinge structure 164 in FIG. 3) so as to be folded relative to each other, a hinge cover (e.g., hinge cover 165 in FIG. 2) that covers the foldable portions of the pair of housing structures (110, 120), and a display 130 (e.g., a flexible display, a foldable display, or a first display) that is disposed in a space formed by the pair of housing structures (110, 120).

[0017] In this specification, the surface on which the display 130 is disposed is defined as the front surface of the electronic device 100 , and the surface opposite the front surface is defined as the rear surface of the electronic device 100 . Furthermore, the surfaces surrounding the space between the front and rear surfaces are defined as the sides of electronic device 100 .

[0018] In one embodiment, the pair of housing structures (110, 120) includes a first housing structure 110 including the sensor area 131d, a second housing structure 120, a first rear cover 140, and a second rear cover 150. The pair of housing structures (110, 120) of the electronic device 100 are not limited to the shapes and combinations shown in FIGS. 1 and 2, but may be embodied in other shapes, combinations and / or combinations of parts. For example, in other embodiments, first housing structure 110 and first rear cover 140 can be integrally formed, and second housing structure 120 and second rear cover 150 can be integrally formed.

[0019] According to one embodiment, the first housing structure 110 and the second housing structure 120 are disposed on opposite sides of a folding axis (A axis) and have a generally symmetrical shape with respect to the folding axis (A axis). According to one embodiment, the angle or distance between the first housing structure 110 and the second housing structure 120 changes depending on whether the state of the electronic device 100 is in an unfolded state (flat stage or unfolding state), a folded state, or an intermediate state. According to an embodiment, the first housing structure 110 differs from the second housing structure 120 in that it additionally includes a sensor region 131d in which various sensors are arranged, but other regions have shapes that are symmetrical to each other. In other embodiments, the sensor area 131d may be additionally disposed in at least a portion of the second housing structure 120 or may replace the sensor area 131d.

[0020] In one embodiment, the first housing structure 110 is connected to a hinge structure (e.g., hinge structure 164 in FIG. 3) when the electronic device 100 is in an unfolded state, and includes a first surface 111 arranged to face the front of the electronic device 100, a second surface 112 facing in the opposite direction to the first surface 111, and a first side member 113 that surrounds at least a portion of the space between the first surface 111 and the second surface 112. In one embodiment, the first side member 113 includes a first side 113a arranged parallel to the folding axis (A axis), a second side 113b extending from one end of the first side 113a in a direction perpendicular to the folding axis, and a third side 113c extending from the other end of the first side 113a in a direction perpendicular to the folding axis (A axis).

[0021] In one embodiment, the second housing structure 120 is connected to a hinge structure (e.g., hinge structure 164 in FIG. 3 ) when the electronic device 100 is in an unfolded state, and includes a third surface 121 arranged to face the front of the electronic device 100, a fourth surface 122 facing in the opposite direction to the third surface 121, and a second side member 123 that surrounds at least a portion of the space between the third surface 121 and the fourth surface 122. In one embodiment, the second side member 123 includes a fourth side 123a arranged parallel to the folding axis (A axis), a fifth side 123b extending from one end of the fourth side 123a in a direction perpendicular to the folding axis (A axis), and a sixth side 123c extending from the other end of the fourth side 123a in a direction perpendicular to the folding axis (A axis). In one embodiment, the third surface 121 may face the first surface 111 in the folded state.

[0022] In one embodiment, electronic device 100 includes a recess 101 configured to accommodate display 130 via a structural form-fit between first housing structure 110 and second housing structure 120 . The recess 101 has substantially the same size as the display 130 . In one embodiment, the sensor area 131d causes the recess 101 to have two or more different widths in a direction perpendicular to the folding axis (A axis). For example, the recess 101 has a first width (W1) between a first portion 120a parallel to the folding axis (A-axis) in the second housing structure 120 and a first portion 110a formed at the edge of the sensor area 131d in the first housing structure 110, and a second width (W2) formed by a second portion 120b of the second housing structure 110 and a second portion 110b not corresponding to the sensor area 131d in the first housing structure 110 and parallel to the folding axis (A-axis).

[0023] In this case, the second width (W2) is formed to be longer than the first width (W1). For example, the recess 101 is formed to have a first width (W1) formed from the first portion 110a of the first housing structure 110 having a mutually asymmetric shape to the first portion 120a of the second housing structure 120, and a second width (W2) formed from the second portion 110b of the first housing structure 110 to the second portion 120b of the second housing structure 120 having a mutually symmetric shape. In one embodiment, the first portion 110a and the second portion 110b of the first housing structure 110 are formed to have different distances from the folding axis (A axis). The width of the recess 101 is not limited to the example shown in the figure. In various embodiments, depending on the shape of the sensor area 131d or the asymmetrical shapes of the first and second housing structures 110 and 120, the recess 101 may have two or more different widths.

[0024] In one embodiment, at least a portion of the first housing structure 110 and the second housing structure 120 are formed from a metallic or non-metallic material having a selected amount of rigidity to support the display 130 .

[0025] In one embodiment, the sensor area 131d is formed adjacent to one corner of the first housing structure 110 and has a predetermined area. However, the arrangement, shape, or size of the sensor area 131d is not limited to the example shown in the figure. For example, in other embodiments, the sensor area 131d may be provided in another corner of the first housing structure 110 or in any area between the upper and lower corners. In other embodiments, the sensor area 131d may be disposed in at least a portion of the second housing structure 120. In other embodiments, the sensor area 131d may be arranged to extend into the first housing structure 110 and the second housing structure 120.

[0026] In one embodiment, the electronic device 100 may be configured with components for performing various functions that are exposed to the front of the electronic device 100 through the sensor area 131d or through one or more openings provided in the sensor area 131d. In various embodiments, the component may include, for example, at least one of a front camera device, a receiver, a proximity sensor, an illuminance sensor, an iris recognition sensor, an ultrasonic sensor, or an indicator.

[0027] In one embodiment, the first rear cover 140 is disposed on the second face 112 of the first housing structure 110 and has a substantially rectangular periphery. In one embodiment, at least a portion of the periphery is surrounded by a first housing structure 110 . Similarly, the second rear cover 150 is disposed on the fourth surface 122 of the second housing structure 120 and has at least a portion of its periphery surrounded by the second housing structure 120 .

[0028] In the illustrated embodiment, the first rear cover 140 and the second rear cover 150 have substantially symmetrical shapes with respect to the folding axis (A axis). In other embodiments, the first rear cover 140 and the second rear cover 150 may have various different shapes. In other embodiments, the first rear cover 140 may be integrally formed with the first housing structure 110 and the second rear cover 150 may be integrally formed with the second housing structure 120 .

[0029] In one embodiment, the first rear cover 140, the second rear cover 150, the first housing structure 110, and the second housing structure 120 are coupled together to provide a space in which various components of the electronic device 100 (e.g., a printed circuit board, an antenna module, a sensor module, or a battery) can be placed. In one embodiment, one or more components are located or visually exposed on the rear side of electronic device 100. For example, one or more components or sensors may be visually exposed through the first rear region 141 of the first rear cover 140 . In various embodiments, the sensor may include a proximity sensor, a rear-facing camera device and / or a flash. In other embodiments, at least a portion of the sub-display 152 (eg, a second display) may be visually exposed through the second rear region 151 of the second rear cover 150. In another embodiment, the electronic device 100 may include a speaker module 153 disposed through at least a portion of the second rear cover 150 .

[0030] The display 130 is disposed in a space formed by the pair of housing structures (110, 120). For example, the display 130 is seated in a recess 101 formed by the pair of housing structures (110, 120) and is arranged to occupy substantially most of the front surface of the electronic device 100. Thus, the front surface of electronic device 100 includes display 130, a portion of first housing structure 110 adjacent to display 130 (eg, an edge region), and a portion of second housing structure 120 (eg, an edge region). In one embodiment, the rear of the electronic device 100 includes a first rear cover 140, a portion of the first housing structure 110 adjacent to the first rear cover 140 (e.g., an edge region), a second rear cover 150, and a portion of the second housing structure 120 adjacent to the second rear cover 150 (e.g., an edge region).

[0031] In one embodiment, the display 130 refers to a display in which at least a portion of the area can be deformed into a flat or curved surface. In one embodiment, the display 130 includes a folding area 131c, a first area 131a arranged on one side (e.g., the right side of the folding area 131c) of the folding area 131c, and a second area 131b arranged on the other side (e.g., the left side of the folding area 131c) of the folding area 131c. For example, the first region 131 a is disposed on the first surface 111 of the first housing structure 110 , and the second region 131 b is disposed on the third surface 121 of the second housing structure 120 . In one embodiment, the area division of the display 130 is exemplary, and the display 130 may be divided into multiple areas (for example, four or more, or two) according to structure or function.

[0032] For example, in the embodiment shown in FIG. 1, the areas of the display 130 may be divided by a folding area 131c or folding axis (A axis) extending parallel to the y axis, but in other embodiments, the display 130 may be divided into areas based on other folding areas (e.g., folding areas parallel to the x axis) or other folding axes (e.g., folding axes parallel to the x axis). The above-mentioned display area division is merely a physical division by a pair of housing structures (110, 120) and a hinge structure (e.g., hinge structure 164 in FIG. 3), and the display 130 is actually displayed as one entire screen via the pair of housing structures (110, 120) and a hinge structure (e.g., hinge structure 164 in FIG. 3). In one embodiment, the first region 131a and the second region 131b have a generally symmetrical shape with respect to the folding region 131c. However, unlike the second region 131b, the first region 131a includes a notch region (e.g., notch region 133 in FIG. 3) that is cut due to the presence of the sensor region 131d, but the other regions have a shape symmetrical to that of the second region 131b. For example, the first region 131a and the second region 131b include portions having symmetrical shapes and portions having asymmetrical shapes.

[0033] FIG. 2 is a diagram illustrating the electronic device 100 of FIG. 1 in a folded state according to an embodiment of the present invention. Referring to FIG. 2, the hinge cover 165 is disposed between the first housing structure 110 and the second housing structure 120 and is configured to cover internal components (eg, the hinge structure 164 of FIG. 3). In one embodiment, the hinge cover 165 is covered by a portion of the first housing structure 110 and the second housing structure 120 or exposed to the outside, depending on the operating state (flat state or folded state) of the electronic device 100.

[0034] For example, when the electronic device 100 is in the unfolded state as shown in FIG. 1, the hinge cover 165 is covered by the first housing structure 110 and the second housing structure 120 and is not exposed. For example, when the electronic device 100 is in a folded state (eg, a completely folded state) as shown in FIG. 2, the hinge cover 165 is exposed to the outside between the first housing structure 110 and the second housing structure 120. For example, when the first housing structure 110 and the second housing structure 120 are in an intermediate state in which they are folded at a certain angle, the hinge cover 165 is at least partially exposed to the outside of the electronic device 100 between the first housing structure 110 and the second housing structure 120. In this case, the exposed area may be less than in the fully folded state. In one embodiment, the hinge cover 165 may include a curved surface.

[0035] The operation of the first housing structure 110 and the second housing structure 120 and each area of ​​the display 130 according to the operating state (for example, the flat state and the folded state) of the electronic device 100 will be described below.

[0036] In one embodiment, when the electronic device 100 is in a flat state (e.g., the state of FIG. 1), the first housing structure 110 and the second housing structure 120 form a 180° angle, and the first area 131a and the second area 131b of the display are arranged to face in the same direction. The folding region 131c is flush with the first region 131a and the second region 131b.

[0037] In one embodiment, when electronic device 100 is in a folded state (eg, the state of FIG. 2), first housing structure 110 and second housing structure 120 are positioned to face each other. The first and second regions 131a and 131b of the display 130 face each other and form a small angle (eg, 0° to 10°) with each other. At least a portion of the folding region 131c is formed by a curved surface having a predetermined curvature.

[0038] In one embodiment, when the electronic device 100 is in the intermediate state, the first housing structure 110 and the second housing structure 120 are disposed at a certain angle to each other. The first region 131a and the second region 131b of the display 130 form an angle that is larger in the folded state and smaller in the unfolded state. The folding region 131c is formed of a curved surface having at least a part thereof a predetermined curvature, and the curvature at this time is smaller than that in the folded state.

[0039] FIG. 3 is an exploded perspective view of an electronic device 100 according to an embodiment of the present invention. Referring to FIG. 3, in one embodiment, the electronic device 100 includes a display 130, a support member assembly 160, at least one printed circuit board 170, a first housing structure 110, a second housing structure 120, a first rear cover 140, and a second rear cover 150. Herein, the display unit 130 (eg, the first display) may be referred to as a display module or a display assembly.

[0040] The display 130 includes a display panel 131 (eg, a flexible display panel) and one or more plates or layers 132 on which the display panel 131 is mounted. In one embodiment, the one or more plates 132 include a conductive plate (eg, a Cu sheet or a SUS sheet) disposed between the display panel 131 and the support member assembly 160 . According to one embodiment, the conductive plate is formed to have substantially the same area as the display, and is formed so that the area facing the folding area of ​​the display is bendable. The plate 132 includes at least one layer of a supporting material (eg, a graphite member) disposed on the back surface of the display panel 131 . In one embodiment, the plate 132 is formed in a shape corresponding to the display panel 131 . For example, a portion of the first plate 132 is formed in a shape corresponding to the notch region 133 of the display panel 131 .

[0041] The support member assembly 160 includes a first support member 161 (e.g., a first support plate), a second support member 162 (e.g., a second support plate), a hinge structure 164 disposed between the first support member 161 and the second support member 162, a hinge cover 165 that covers the hinge structure 164 when viewed from the outside, and at least one wiring member 163 (e.g., a flexible printed circuit board (FPCB)) that crosses the first support member 161 and the second support member 162.

[0042] In one embodiment, the support member assembly 160 is disposed between the plate 132 and at least one printed circuit board 170 . For example, the first support member 161 is disposed between the first region 131 a of the display 130 and the first printed circuit board 171 . The second support member 162 is disposed between the second region 131 b of the display 130 and the second printed circuit board 172 .

[0043] In one embodiment, the support member assembly 160 includes a wiring member 163 and at least a portion of the hinge structure 164 disposed therein. The wiring member 163 is disposed in a direction intersecting the first support member 161 and the second support member 162 (for example, in the x-axis direction). The wiring member 163 is arranged in a direction (eg, x-axis direction) perpendicular to the folding axis (eg, y-axis or folding axis (A) in FIG. 1) of the folding region 131c.

[0044] In one embodiment, the at least one printed circuit board 170 includes a first printed circuit board 171 disposed on the first support member 161 side and a second printed circuit board 172 disposed on the second support member 162 side, as described above. The first printed circuit board 171 and the second printed circuit board 172 are disposed within a space formed by the support member assembly 160, the first housing structure 110, the second housing structure 120, the first rear cover 140, and the second rear cover 150. Components for implementing various functions of the electronic device 100 are mounted on the first printed circuit board 171 and the second printed circuit board 172 .

[0045] In one embodiment, the first space of the first housing structure 110 includes a first printed circuit board 171 arranged in the space formed through the first support member 161, a first battery 191 arranged in a position facing the first swelling hole 1611 of the first support member 161, at least one sensor module 181, or at least one camera module 182. The first housing structure 110 includes a window glass 183 disposed at a position corresponding to the notch region 133 of the display 130 to protect the at least one sensor module 181 and the at least one camera module 182 . In one embodiment, the second space of the second housing structure 120 includes a second printed circuit board 172 disposed in the second space formed via the second support member 162, and a second battery 192 disposed in a position facing the second swelling hole 1621 of the second support member 162.

[0046] According to one embodiment, the first housing structure 110 and the first support member 161 are integrally formed. According to one embodiment, the second housing structure 120 and the second support member 162 are also integrally formed. According to one embodiment, a sub-display 152 is disposed in the second space of the second housing structure 120 . According to one embodiment, the sub-display 152 (eg, second display) is arranged so as to be visible from the outside through at least a partial area of ​​the second rear cover 150.

[0047] In one embodiment, the first housing structure 110 includes a first rotational support surface 114 and the second housing structure 120 includes a second rotational support surface 124 that corresponds to the first rotational support surface 114 . The first rotation support surface 114 and the second rotation support surface 124 include curved surfaces that correspond to the curved surfaces included in the hinge cover 165 .

[0048] In one embodiment, the first rotation support surface 114 and the second rotation support surface 124 cover the hinge cover 165 when the electronic device 100 is in an unfolded state (e.g., the state of FIG. 1), so that the hinge cover 165 is not exposed or is only exposed to a minimum extent at the rear of the electronic device 100. In one embodiment, when the electronic device 100 is in a folded state (e.g., the state of FIG. 2), the first rotating support surface 114 and the second rotating support surface 124 rotate along a curved surface included in the hinge cover 165 to maximize exposure of the hinge cover 165 to the rear surface of the electronic device 100.

[0049] FIG. 4A is an exploded perspective view of an electronic device 300 including a flexible display 400 according to an embodiment of the present invention, and FIG. 4B is a diagram illustrating a configuration of each region of the electronic device 300 according to an embodiment of the present invention. The electronic device 300 of FIGS. 4A and 4B may be at least partially similar to the electronic device 100 of FIG. 1, or may further include other embodiments of an electronic device.

[0050] 4A and 4B, an electronic device 300 (e.g., electronic device 100 of FIG. 1) includes a first housing 310 (e.g., first housing structure 110 of FIG. 1) including a first surface 311 (e.g., first surface 111 of FIG. 1), a second surface 312 (e.g., second surface 112 of FIG. 1) facing in the opposite direction to the first surface 311, and a first side member 313 (e.g., first side member 113 of FIG. 1) surrounding a first space between the first surface 311 and the second surface 312. According to one embodiment, the electronic device 300 includes, in an unfolded state, a second housing 320 (e.g., second housing structure 120 in FIG. 1) including a third surface 321 (e.g., third surface 121 in FIG. 1) facing in the same direction as the first surface 311, a fourth surface 322 (e.g., fourth surface 122 in FIG. 1) facing in the same direction as the second surface 312, and a second side member 323 (e.g., second side member 123 in FIG. 1) surrounding a second space between the third surface 321 and the fourth surface 322.

[0051] According to one embodiment, the first housing 310 and the second housing 320 are pivotally mounted relative to one another via a hinge module 364 (eg, hinge structure 164 of FIG. 3). For example, the electronic device 300 remains folded or unfolded by pivoting the first housing 310 and the second housing 320 relative to one another via the hinge module 364 . According to one embodiment, in the folded state, the first surface 311 and the third surface 321 of the electronic device 300 face each other, and in the unfolded state, the first surface 311 and the third surface 321 face in the same direction. According to one embodiment, the electronic device 300 includes a flexible display 400 (eg, flexible display 130 of FIG. 1) positioned to at least partially intersect the first surface 311 and the third surface 321. According to one embodiment, the flexible display 330 is positioned to receive support from at least a portion of the first housing 310 , the hinge module 364 , and the second housing 320 .

[0052] According to various embodiments, the electronic device 300 (e.g., the electronic device 100 of FIG. 1) includes a first region (h1) facing the first housing structure 310, a second region (h2) facing the second housing structure 320, and a folding region (h3) facing the hinge module 364. According to one embodiment, the electronic device 300 is operated in a state in which the first housing 310 corresponding to the first region (h1) is folded or unfolded relative to the second housing 320 corresponding to the second region (h2) via the hinge module 364 corresponding to the folding region (h3).

[0053] According to various embodiments, the electronic device 300 includes at least one protective frame (340, 350) (eg, a decorative member or deco) disposed on top of the flexible display 400. According to one embodiment, the at least one protective frame (340, 350) includes a first protective frame 340 arranged on the top of the flexible display in a first region (h1) and a second protective frame 350 arranged on the top of the flexible display in a second region (h2). According to one embodiment, the protective frames (340, 350) are made of a polymeric or metallic material and are attached to the respective housings (310, 320) via at least one of bonding, taping, fusion, or structural bonding.

[0054] According to various embodiments, the electronic device includes a metal sheet layer 450 that is positioned below the display panel 430 and is positioned so as to at least partially overlap the display panel 430 when viewed from above the flexible display 400. According to one embodiment, when viewed from above the flexible display 400, the metal sheet layer 450 is positioned closer to the edge of the display panel 430 than the inner walls (e.g., first inner wall 3102 in FIG. 7A and second inner wall 3202 in FIG. 8A) of the first side member (e.g., first side member 113 in FIG. 1) and second side member (e.g., second side member 213 in FIG. 1) formed along the edges of the first housing 310 and second housing 320.

[0055] According to one embodiment, the metal sheet layer 450 includes edges (4501, 4502, 4503, 4504) that are formed along the edges of the display panel 430 and protrude further outward than the display panel when viewed from above the flexible display 400. For example, the metal sheet layer 450 includes a first edge 4501 facing at least a portion of the first housing 310, a second edge 4502 facing at least a portion of the second housing 320, a third edge 4503 connecting one end of the first edge 4501 to one end of the second edge 4502, and a fourth edge 4504 connecting the other end of the first edge 4501 to the other end of the second edge 4502. According to one embodiment, the third edge 4503 and the fourth edge 4504 are positioned to extend from the first housing 310 through the hinge module 364 and across the second housing 320 .

[0056] According to various embodiments, the flexible display 400 includes an edge of the display panel 430, and the first edge 4501 and portions of the third edge 4503 and fourth edge 4504 of the metal sheet layer 450 are arranged between the first protective frame 340 and the first housing 310 so as not to be exposed to the outside. According to one embodiment, the flexible display 400 includes an edge of the display panel 430, and the second edge 4502 of the metal sheet layer 450 and portions of the third edge 4503 and fourth edge 4504 are arranged between the second protective frame 35 and the second housing 320 so as not to be exposed to the outside. According to one embodiment, the flexible display 400 is arranged to be able to accommodate a slip between the first housing 310 and the second housing 320 and the first protective frame 340 and the second protective frame 350 as the electronic device 300 is folded and unfolded. According to one embodiment, the flexible display 400 experiences slip in a direction (x-axis direction) perpendicular to the rotation axis (A-axis) of the electronic device.

[0057] According to various embodiments, the pair of protective frames (340, 550) are omitted in the folding region (h3) corresponding to the hinge module 364 for the folding and unfolding operations of the first housing 310 and the second housing 320 based on the hinge structure 364. According to an embodiment, the electronic device 300 includes a protective structure 500 disposed in the folding region (h3) to protect the edges of the flexible display 400 exposed to the outside. According to one embodiment, the edge of the flexible display 400 exposed through the folding region (h3) is at least partially shielded from external view through the protective structure 500. According to one embodiment, the protective structure 500 includes a protective cap 510 arranged on the hinge housing 370 that supports the hinge module 364, and a blocking member 520 supported by the protective cap 510 and arranged to at least partially hide the edge 433 of the flexible display 400 from the outside.

[0058] According to an exemplary embodiment of the present invention, when viewed from above the flexible display 400, the metal sheet layer 450 arranged below the display panel 430 has edges (4501, 4502, 4503, 4504) arranged closer to the inner wall of the housing (310, 320) (e.g., the first inner wall 3102 in FIG. 7A and the second inner wall 3202 in FIG. 8A) than the display panel. Therefore, even if the flexible display 400 collides with one of the inner walls of the housing (310, 320) (e.g., the first inner wall 3102 in FIG. 7A and the second inner wall 3202 in FIG. 8A) due to an external impact, a cushioning effect is generated through the pre-impact of the metal sheet layer 450, thereby preventing damage to the display panel 430. According to one embodiment, the flexible display 400 has the inner walls of the first housing 310 and the second housing 320 facing the third edge 4503 of the metal sheet layer 450 and the inner walls of the first housing 310 and the second housing 320 facing the fourth edge 4504 of the metal sheet layer 450 arranged in substantially the same configuration, thereby providing substantially the same cushioning effect in the event of an external impact.

[0059] FIG. 5 is a perspective view showing a stacked structure of a flexible display 400 according to an embodiment of the present invention. The flexible display 400 of FIG. 5 may be at least partially similar to the display 130 of FIG. 1, or may further include other embodiments of a flexible display.

[0060] Referring to FIG. 5, a flexible display 400 includes a window layer 410, a polarizer (POL) 420 (e.g., a polarizing film) sequentially disposed on the rear surface of the window layer 410, a display panel 430, a polymer member 440, and a metal sheet layer 450. According to one embodiment, the window layer may include a polymer layer and a glass layer laminated to the polymer layer. According to one embodiment, the polymer layer may include PET or polyimide. According to one embodiment, the glass layer may include ultra thin glass (UTG).

[0061] According to various embodiments, the window layer 410, the polarizing layer 420, the display panel 430, the polymer member 440, and the metal sheet layer 450 are arranged to intersect at least a portion of a first surface (e.g., first surface 111 in FIG. 1) of a first housing (e.g., first housing structure 110 in FIG. 1) and a third surface (e.g., third surface 121 in FIG. 1) of a second housing (e.g., second housing structure 120 in FIG. 1). According to one embodiment, the window layer 410, the polarizing layer 420, the display panel 430, the polymer member 440, and the metal sheet layer 450 are attached to each other via adhesives (P1, P2, P3). For example, the adhesives (P1, P2, P3) may include at least one of an optical clear adhesive (OCA), a pressure sensitive adhesive (PSA), a heat-reactive adhesive, a general adhesive, or a double-sided tape. According to one embodiment, the flexible display 400 may include another adhesive member (for example, a double-sided tape or a waterproof member) at least partially disposed on one side of the metal sheet layer 450 . According to one embodiment, the flexible display 400 may be attached to a support member assembly (eg, support member assembly 160 in FIG. 3) of an electronic device (eg, electronic device 100 in FIG. 3) via a separate adhesive member.

[0062] According to various embodiments, the polymer member 440 can also be applied in a dark color (eg, black) to aid in background visibility when the display is off. According to an embodiment, the polymer member 440 may also act as a cushion to absorb external impacts from the electronic device and prevent the flexible display 400 from being damaged.

[0063] According to various embodiments, the metal sheet layer 450 is used to help stiffen the electronic device, to shield from ambient noise, and to dissipate heat emitted from surrounding heat-emitting components. According to one embodiment, the metal sheet layer 450 includes at least one of SUS (steel use stainless) (e.g., STS (stainless steel)), Cu, Al, or CLAD (e.g., a laminated member in which SUS and Al are alternately arranged). In other embodiments, the metal sheet layer 450 may include other alloy materials. According to one embodiment, the metal sheet layer 450 is integrally formed by connecting a portion facing the first housing (e.g., first housing 310 in FIG. 4A ) and a portion facing the second housing (e.g., second housing 320 in FIG. 4A ) of the electronic device (e.g., electronic device 300 in FIG. 4A ) with a bendable portion formed in a portion facing the hinge module (e.g., hinge module 364 in FIG. 4A ).

[0064] In another embodiment, the metal sheet layer 450 has a portion facing the first housing (e.g., first housing 310 in FIG. 4A) and a portion facing the second housing (e.g., second housing 320 in FIG. 4A) that are formed separately, except for a portion facing the hinge module (e.g., hinge module 364 in FIG. 4A). According to various embodiments, the flexible display 400 further includes a reinforcing plate 460 made of a metal material and disposed under the metal sheet layer for stiffening. According to one embodiment, the reinforcing plate 460 includes a first reinforcing plate 461 facing the first housing (e.g., first housing 310 in FIG. 4A) and a second reinforcing plate 462 facing the second housing (e.g., second housing 320 in FIG. 4A).

[0065] According to various embodiments, the flexible display 400 includes at least one functional member disposed between the polymer member 440 and the conductive plate 450 . According to one embodiment, the functional member may include a graphite sheet for heat dissipation, an added display, a force touch FPCB, a fingerprint sensor FPCB, an antenna radiator for communication, a heat dissipation sheet, a conductive / non-conductive tape, or an open cell sponge. According to one embodiment, when the functional member is bendable, it is positioned from the first housing (e.g., first housing 310 in FIG. 4A) through the hinge module (e.g., hinge module 364 in FIG. 4A) to at least a portion of the second housing (e.g., second housing 320 in FIG. 4A). In another embodiment, the flexible display 400 may further include a detection member for detecting input by an electromagnetic induction-type writing member. According to one embodiment, the sensing member may include a digitizer.

[0066] FIG. 6A is a diagram illustrating the configuration of the rear surface of a flexible display 400 according to an embodiment of the present invention, and FIG. 6B is a diagram illustrating the positional relationship between a display panel 430 and a metal sheet layer 450 according to an embodiment of the present invention. 6A and 6B, the flexible display 400 includes a flexible printed circuit board (FPCB) 432 arranged in a folded manner from the display panel 430 to at least a portion of the rear surface of the flexible display 400 (e.g., the second surface 4302 in FIG. 7A).

[0067] According to one embodiment, the FPCB 432 includes an extension portion 4321 extending from the display panel 430, a connection pad 4322 electrically connected from the extension portion 4321 and including a control circuit 4311, and an element placement portion 4323 electrically connected to the connection pad 4322. According to one embodiment, the control circuit 4311 includes a display driver IC (DDI) or a touch display driver IC (TDDI) mounted on a connection pad 4322 having an electrical wiring structure. According to one embodiment, the connection pad 4322 may include a separate FPCB or film including the control circuit 4311 arranged in a chip on film (COF) manner. In another embodiment, the control circuit 4311 may be a chip on panel (COP) structure mounted directly on the extension 4321 without the connection pads 4322 .

[0068] According to one embodiment, the flexible display 400 includes a plurality of elements 4324 arranged on an element arrangement portion 4323 . According to one embodiment, the flexible display 400 includes an electrical connector 433 extending from the element placement portion 4323 and electrically connected to a second printed circuit board (e.g., the second printed circuit board 172 in FIG. 3) of an electronic device (e.g., the electronic device 100 in FIG. 3). According to one embodiment, the plurality of elements 4324 may include passive elements such as touch ICs, display flash memory, ESD protection diodes, pressure sensors, or decaps. In another embodiment, when the FPCB 432 is positioned in an area of ​​the flexible display 400 facing the first housing (e.g., the first housing structure 1100 in FIG. 1), the electrical connector 433 is electrically connected to a first printed circuit board (e.g., the first printed circuit board 171 in FIG. 3) of the electronic device (e.g., the electronic device 100 in FIG. 3).

[0069] According to various embodiments, the FPCB 432 extending from the display panel 430 is folded over one edge (e.g., the second edge 4502) of the metal sheet layer 450 and then positioned in a manner that contacts the metal sheet layer 450. According to one embodiment, the metal sheet layer 450 includes a receiving portion 4502 a provided in a portion of the second edge 4502 facing the folded portion of the FPCB 432 extending from the display panel 430 . According to one embodiment, the receiving portion 4502a is recessed from the second edge 4502. Therefore, even when the FPCB 432 is folded through the receiving portion 4502a, the second edge 4502 protrudes from the FPCB 432, so that the second edge 4502 of the metal sheet layer 450 is guided to be struck first by the second housing (e.g., the second housing 320 in FIG. 4A) in the event of an external impact. In another embodiment, the FPCB 432 may be disposed to protrude from the second edge 4502 of the metal sheet layer 450, thereby providing a cushioning effect through the FPCB 432 when an external impact occurs.

[0070] 7A is a partial cross-sectional view of the electronic device 300 taken along line 7a-7a of FIG. 4B according to an embodiment of the present invention, and FIG. 7B is a diagram illustrating the behavior of the flexible display 400 in the electronic device 300 of FIG. 7A when an external impact is applied thereto according to an embodiment of the present invention. Referring to FIG. 7A, the electronic device 300 includes a first housing 310 including a first side member 313, a first protective frame 340 disposed on at least a portion of the first side member 313, and a flexible display 400 disposed between the first side member 313 and the first protective frame 340.

[0071] According to one embodiment, the flexible display 400 is arranged to be received via a first support member 3131 that extends at least partially from the first side member 313 into the interior space of the first housing 310 or is structurally coupled thereto. According to one embodiment, at least a portion of the edge of the flexible display 400 is disposed in the first space 3101 between the first inner wall 3102 of the first side member 313 and the first protective frame 340 . Therefore, the edges of the flexible display 400 are arranged so that they are not visible from the outside of the electronic device 300 .

[0072] According to various embodiments, the flexible display 400 includes a display panel 430 including a first surface 4301 facing a first direction (circled "1") and a second surface 4302 facing a second direction (circled "2") opposite to the first surface 4301. According to one embodiment, the flexible display 400 includes a window layer 410 arranged to face the first surface 4301 and a metal sheet layer 450 arranged to face the second surface 4302 . According to one embodiment, the window layer 410 includes a polymer layer 411 (eg, PET) and a glass layer 412 (eg, UTG or polyimide) disposed below the polymer layer 411 .

[0073] According to one embodiment, the flexible display 400 includes a polarizing layer 420 (eg, POL) disposed between a first surface 4301 of the display panel 430 and the glass layer 412 . According to one embodiment, the flexible display 400 includes a polymer member 440 disposed between the second surface 4302 of the display panel 430 and the metal sheet layer 450, and a first reinforcing plate (e.g., a metal plate; not shown) disposed between the metal sheet layer 450 and the first support member 3131. According to one embodiment, the respective layers are attached to each other via an adhesive (P1, P2, P3). According to one embodiment, the flexible display 400 is attached to the first support member 3131 via an adhesive member (P4). According to an embodiment, the electronic device 300 may further include a sealing member 341 disposed between the polymer layer 411 of the window layer 410 and the first protective frame 340 to prevent foreign matter from entering from the outside.

[0074] According to various embodiments, when viewed from above the flexible display 400 (e.g., when viewed from the second direction (circled "2" direction)), the metal sheet layer 450 is positioned such that the edge of the metal sheet layer 450 is closer to the first inner wall 3102 than the edge of the display panel 430. According to one embodiment, the metal sheet layer 450 is disposed to protrude more from the display panel 430 toward the first inner side wall 3102 by a first protrusion amount (d1). According to one embodiment, the first protrusion amount (d1) is determined by a first separation distance (d2) between the metal sheet layer 450 and the first inner wall 3102. According to one embodiment, the first separation distance (d2) is determined based solely on the distance in the first space 3101 that can accommodate the self-movement of the flexible display 400 and interlayer slippage due to the folding and unfolding operations of the electronic device 300. According to one embodiment, due to the arrangement structure having the first protrusion amount (d1) of the metal sheet layer 450 configured according to an exemplary embodiment of the present invention, there is no need to consider the collision of the display panel 430 due to external impact, so the first separation distance (d2) can be determined to be minimized, which can contribute to slimming down the electronic device 300.

[0075] According to various embodiments, when viewed from above the flexible display 400, the polymer layer 411 is formed to be the same as the glass layer 412 or larger so as to have a second protrusion amount (d3) in the inner wall direction (x-axis direction). According to one embodiment, the polymer layer 411 is formed to be larger than the glass layer 412, thereby protecting the glass layer 412 and helping to prevent glass fragments from scattering when the glass layer is broken. According to an embodiment, the adhesive (P1) is disposed between the glass layer 412 and the polarizing layer 420 so as to be smaller than the glass layer 412 when viewed from above the flexible display 400. For example, the non-adhesive area 4121 disposed between the glass layer 412 and the polarizing layer 420 can help reduce the black matrix (BM) area of ​​the flexible display 400 . According to one embodiment, the polymer member 440 between the display panel 430 and the metal sheet layer 450 can also help reduce the first protrusion amount (d1) of the metal sheet layer 450 by providing an area 4401 that is smaller than the display panel 430.

[0076] Referring to FIG. 7B, when the electronic device 300 is in an unfolded state and an external impact such as a drop occurs, the flexible display 400 movably arranged between the first protective frame 340 and the first housing 310 can move toward the first inner wall 3102 (in the x-axis direction). In such a case, the edge of the metal sheet layer 450, which is arranged to protrude beyond the display panel 430, can receive the initial impact by first contacting the first inner wall 3102 of the first side member 313 of the first housing 310, and the display panel 430 can be protected from damage by receiving a relatively small impact.

[0077] FIG. 8A is a partial cross-sectional view of an electronic device 300 taken along line 8a-8a of FIG. 4B according to an embodiment of the present invention, and FIG. 8B is a diagram illustrating the behavior of the flexible display 400 of the electronic device 300 of FIG. 8A when an external impact is applied thereto according to an embodiment of the present invention. In describing Figures 8A and 8B, components that are substantially the same as those in Figures 7A and 7B are given the same symbols, and since the arrangement structure of the flexible display 400 is substantially the same, detailed description thereof will be omitted.

[0078] Referring to FIG. 8A, the electronic device 300 includes a second housing 320 including a second side member 323, a second protective frame 350 disposed on at least a portion of the second side member 323, and a flexible display 400 disposed between the second side member 323 and the second protective frame 350. According to one embodiment, the flexible display 400 is arranged to be received via a second support member 3231 that extends at least partially from the second side member 323 in the interior space of the second housing 320 or is structurally coupled thereto. According to one embodiment, at least a portion of the edge of the flexible display 400 is disposed in the second space 3201 between the second inner wall 3202 of the second side member 323 and the second protective frame 350 . Therefore, the edges of the flexible display 400 are arranged so that they are not visible from the outside of the electronic device 300 . According to an embodiment, the electronic device 300 may further include a sealing member 351 disposed between the polymer layer 411 of the window layer 410 and the second protective frame 350 to prevent foreign matter from entering from the outside.

[0079] According to various embodiments, when viewed from above the flexible display 400 (e.g., when viewed from the second direction (circled "2" direction)), the metal sheet layer 450 is positioned such that the edge of the metal sheet layer 450 is closer to the second inner wall 3202 than the edge of the display panel 430. According to one embodiment, the metal sheet layer 450 is disposed to protrude more than the display panel 430 toward the second inner side wall 3202 by a first protrusion amount (d1). According to one embodiment, the first protrusion amount (d1) is determined by a first separation distance (d2) between the metal sheet layer 450 and the first inner wall 3202. According to one embodiment, the first separation distance (d2) is determined based solely on the distance in the second space 3201 that can accommodate the self-behavior of the flexible display 400 due to the folding and unfolding operations of the electronic device 300 and accommodate interlayer slippage. According to one embodiment, due to the arrangement structure having the first protrusion amount (d1) of the metal sheet layer 450 configured according to an exemplary embodiment of the present invention, there is no need to consider the collision of the display panel 430 due to external impact, so the first separation distance (d1) is determined to be minimized, which can contribute to slimming down the electronic device 300.

[0080] According to various embodiments, the flexible display 400 includes an FPCB 432 that extends from the display panel 430 , folds toward the second surface 4302 , and is attached to the metal sheet layer 450 . According to one embodiment, the folded portion of the FPCB 432 protrudes from the display panel 430 in a direction toward the second inner surface 3202 (negative x-axis direction). According to one embodiment, the folded portion of the FPCB 432 can be accommodated in the accommodation portion 4302a formed in the metal sheet layer 450 so as to be recessed from the edge, and therefore has a protrusion amount less than the first protrusion amount (d1) of the metal sheet layer 450. Therefore, when the flexible display 400 is subjected to an external impact, the edge of the metal sheet layer 450 may be hit first.

[0081] Referring to FIG. 8B, when the electronic device 300 is in an unfolded state and an external impact such as a drop occurs, the flexible display 400, which is movably arranged between the second protective frame 350 and the second housing 320, moves toward the second inner wall 3202 (in the -x-axis direction). In such a case, the edge of the metal sheet layer 450 arranged to protrude from the FPCB 432 first comes into contact with the second inner wall 3202 of the second side member 323 of the second housing 320, thereby receiving the initial impact, and the display panel 430 can be protected from damage by receiving a relatively small impact.

[0082] FIG. 9A is a partial cross-sectional view showing the configuration of an electronic device 300 according to an embodiment of the present invention, and FIG. 9B is a diagram illustrating the behavior of the flexible display 400 in the electronic device 300 of FIG. 9A when an external impact is applied thereto. In describing Figures 9A and 9B, components that are substantially the same as those in the electronic device 300 of Figures 8A and 8B are denoted by the same reference numerals, and the layout structure of the flexible display 400 is substantially the same, so detailed description thereof will be omitted.

[0083] Referring to FIG. 9A, the flexible display 400 includes an FPCB 432 extending from a display panel 430 , folded toward a second surface 4302 , and attached to a metal sheet layer 450 . According to one embodiment, the folded portion of the FPCB 432 protrudes to have a third protrusion amount (d4) greater than that of the metal sheet layer 450 in a direction from the display panel 430 toward the second inner surface 3202 (-x-axis direction). Therefore, when the flexible display 400 is subjected to an external impact, the folded portion of the FPCB 432 receives the impact first. According to one embodiment, the third protrusion amount (d4) is determined by the second separation distance (d5) between the metal sheet layer 450 and the first inner wall 3202.

[0084] According to one embodiment, the second separation distance (d5) is determined based solely on the distance in the second space 3201 that can accommodate the self-behavior of the flexible display 400 and accommodate interlayer slippage due to the folding and unfolding operations of the electronic device 300. According to one embodiment, due to the arrangement structure having the third protrusion amount (d4) through the folded portion of the FPCB 432 in accordance with an exemplary embodiment of the present invention, it is not necessary to consider the collision of the display panel 430 due to an external impact, so the second separation distance (d2) is determined to be minimized, which can contribute to slimming down the electronic device 300. According to one embodiment, the first separation distance (d2) and the second separation distance (d5) may be substantially the same. According to one embodiment, the first protrusion amount (d1) and the third protrusion amount (d4) may be substantially the same.

[0085] Referring to FIG. 9B, when the electronic device 300 is in an unfolded state and an external impact such as a drop occurs, the flexible display 400, which is movably arranged between the second protective frame 350 and the second housing 320, moves toward the second inner wall 3202 (in the -x-axis direction). In such a case, the folded portion of the FPCB 432, which is arranged to protrude from the metal sheet layer 450, first comes into contact with the second inner wall 3202 of the second side member 323 of the second housing 320, thereby receiving the initial impact, and the display panel 430 is protected from damage by receiving a relatively small impact.

[0086] 10A and 10B are partial cross-sectional views of electronic device 300 illustrating the configuration of metal sheet layer 450 according to an embodiment of the present invention. In describing Figures 10A and 10B, components that are substantially the same as those in the electronic device 300 of Figures 7A and 7B are given the same reference numerals, and the layout structure of the flexible display 400 is substantially the same, so detailed description thereof will be omitted.

[0087] Referring to FIG. 10A, the end of the metal sheet layer 450 includes a bent portion 4511 that is bent in a certain direction to provide rigidity reinforcement. According to an embodiment, the folding direction of the bending portion 4511 is determined by the folding method of the electronic device 300 . For example, when the electronic device 300 is folded in an in-folding manner as shown in the figure, the layers of the flexible display 400 (e.g., the window layer 410, the polarizing layer 420, the display panel 430, the polymer member 440, or the metal sheet layer 450) experience interlayer slip that gradually increases in length as it moves toward the window layer 410 along the first inclined line (L1). Therefore, the bending portion 4511 is folded in a second direction (the circled "2" direction) so as not to hinder interlayer slippage of layers (e.g., the window layer 410, the polarizing layer 420, the display panel 430, or the polymer member 440) disposed on top of the metal sheet layer 450.

[0088] Referring to FIG. 10B, the bending portion 4512 is formed to face the back surface of the metal sheet layer 450 after being folded in the second direction (the circled "2" direction) through a hemming process.

[0089] FIG. 11 is a diagram illustrating an electronic device 600 in an unfolded state according to an embodiment of the present invention, and FIG. 12 is a diagram illustrating the electronic device 600 of FIG. 11 in a folded state according to an embodiment of the present invention. Referring to Figures 11 and 12, the electronic device 600 includes a first housing 610 including a first surface 611, a second surface 612 facing in the opposite direction to the first surface 611, and a first side member 613 surrounding a first space between the first surface 611 and the second surface 612. According to one embodiment, the electronic device 600 includes, in an unfolded state, a second housing 620 including a third surface 621 facing in the same direction as the first surface 611, a fourth surface 622 facing in the same direction as the second surface 612, and a second side member 623 enclosing a second space between the third surface 621 and the fourth surface 622.

[0090] According to various embodiments, the first housing 610 and the second housing 620 are pivotally mounted relative to one another via a hinge module 664 . For example, the electronic device 600 remains folded or unfolded by pivoting the first housing 610 and the second housing 620 relative to one another via the hinge module 664 . According to one embodiment, when electronic device 600 is folded, second surface 611 and fourth surface 621 face each other, and when unfolded, first surface 611 and third surface 621 face in the same direction. According to one embodiment, electronic device 600 includes a flexible display 630 (eg, flexible display 400 of FIG. 4A) positioned to at least partially intersect first surface 611 and third surface 621. According to one embodiment, the flexible display 630 is positioned to receive support from at least a portion of the first housing 610, the hinge module 664, and the second housing 620.

[0091] According to various embodiments, when the electronic device 600 is folded, the second surface 612 and the fourth surface 622 face each other, and the first surface 611 and the third surface 621 face outward, thereby exposing the flexible display 630 to the outside. According to one embodiment, the electronic device 600 includes a protrusion 614 disposed on at least a portion of the second surface 612 and formed higher than the second surface 612 . According to one embodiment, the first housing 610 is formed larger than the second housing 620 .

[0092] According to one embodiment, when the electronic device 600 is folded, the fourth surface 622 of the second housing 620 partially faces the second surface 612 of the first housing 610, and the protrusion 614 is located on the remaining portion of the second surface 612 that is not facing. In such a case, the electronic device 600 may be folded in a fitted together manner such that the third surface 621 of the second housing 620 coincides with the outer surface 614 of the protrusion. According to one embodiment, the electronic device 600 includes at least one camera device 6141 disposed on the protrusion 614 . Although not shown, the electronic device 600 may include substantially all of the components of the electronic devices (100, 300) shown in FIGS. 1-3 and / or 4A-9B.

[0093] FIG. 13 is a partial cross-sectional view of an electronic device 600 taken along line 13-13 of FIG. 11 according to an embodiment of the present invention. In describing Figure 13, components that are substantially the same as those in the electronic device 300 of Figures 7A and 7B are given the same symbols, and since the layout structure of the flexible display 630 is substantially the same, detailed description thereof will be omitted.

[0094] Referring to FIG. 13, the electronic device 600 includes a second housing 620 including a second side member 623, a protective frame 340 disposed on at least a portion of the second side member 623, and a flexible display 630 disposed between the second side member 623 and the protective frame 340. According to one embodiment, the flexible display 630 is positioned to receive support via a member 6231 that extends at least partially from the second side member 623 into the interior space of the second housing 620 or is structurally coupled thereto. According to one embodiment, at least a portion of the edge of the flexible display 630 is disposed in the space 6101 between the second side member 623 and the protective frame 340 . Therefore, the edges of the flexible display 630 are positioned so that they are not visible from the outside of the electronic device 600. According to an embodiment, the electronic device 600 further includes a sealing member 341 disposed between the polymer layer 411 of the window layer 410 and the protective frame 340 to prevent foreign matter from entering from the outside.

[0095] According to various embodiments, the end of the metal sheet layer 450 includes a bent portion 4513 that is bent in a certain direction to provide additional rigidity. According to one embodiment, the folding direction of the bending portion 4513 is determined by the folding manner of the electronic device 600 . For example, when the electronic device 600 is folded in an out-folding manner as shown in the figure, interlayer slip occurs in the layers of the flexible display 630 (e.g., the window layer 410, the polarizing layer 420, the display panel 430, the polymer member 440, or the metal sheet layer 450), the length of which gradually decreases as the layer moves toward the window layer 410 along the second inclined line (L2). Therefore, the bending portion 4513 is bent in a first direction (the circled "1" direction) so as not to hinder interlayer slippage of layers disposed on top of the metal sheet layer 450 (e.g., the window layer 410, the polarizing layer 420, the display panel 430, or the polymer member 440). In other embodiments, the bending portion 4513 can be bent in a second direction (circled "2" direction). In another embodiment, the bending portion 4513 may be formed in a manner that faces the surface of the metal sheet layer 450 after being bent in a first direction (circled "1") or a second direction (circled "2") through a hemming process.

[0096] According to various embodiments, the flexible display (400, 630) has been illustrated and described as having an edge interrupted by a space provided between the housing (310, 320) and the protective frame (340, 350). However, without being limited thereto, the flexible display (400, 630) according to an exemplary embodiment of the present invention may also be arranged without a protective frame (340, 350) such that the edges are interrupted by spaces provided through the structure of the housing (310, 320) itself.

[0097] According to various embodiments, an electronic device (e.g., electronic device 300 in FIG. 4A ) includes a hinge module (e.g., hinge module 364 in FIG. 4A ), a first housing (e.g., first housing 310 in FIG. 4A ) coupled to the hinge module, a second housing (e.g., second housing 320 in FIG. 4A ) coupled to the hinge module so as to be foldable relative to the first housing, and a flexible display (e.g., flexible display 400 in FIG. 4A ) disposed via at least a portion of the first housing and the second housing, the flexible display including a display panel (e.g., display panel 4301 in FIG. 7A ) having a first surface facing a first direction (e.g., the circled “1” direction in FIG. 7A ) when the electronic device is in an unfolded state and a second surface facing a direction opposite to the first surface (e.g., display panel 4302 in FIG. 7A ). The electronic device includes a flexible display including a display panel (e.g., a splay panel 430), a window layer (e.g., the window layer 410 in FIG. 7A) disposed on a first surface thereof, and a metal sheet layer (e.g., the metal sheet layer 450 in FIG. 7A) disposed on a second surface thereof, wherein the display panel, the window layer, and the metal sheet layer are arranged such that a separation distance (e.g., the first separation distance (d2) in FIG. 7A) between the display panel and the inner walls of the first and second housings (e.g., the first inner wall 3102 in FIG. 7A and the second inner wall 3202 in FIG. 8A) is different from each other when the electronic device is in an unfolded state and a folded state, and interlayer slip occurs; and the metal sheet layer is arranged so as to at least partially overlap the display panel when viewed from above the flexible display, and is positioned closer to the inner walls of the first and second housings than the display panel.

[0098] According to various embodiments, the window layer includes a polymer layer (e.g., polymer layer 411 in FIG. 7A) and a glass layer (e.g., glass layer 4120 in FIG. 7A) disposed between the polymer layer and the display panel, and the polymer layer may be positioned so as to at least partially overlap the glass layer when viewed from above the display and may be positioned closer to the inner wall than the glass layer.

[0099] According to various embodiments, the glass layer and the display panel may be attached at least partially via an adhesive (eg, adhesive (P1) in FIG. 7A). According to various embodiments, the adhesive may be positioned so as to overlap at least the active area of ​​the display panel when viewed from above the flexible display.

[0100] According to various embodiments, the display may further include a polarizing layer (eg, polarizing layer 420 in FIG. 7A) disposed between the display panel and the glass layer. According to various embodiments, the display device may further include a touch panel disposed between the glass layer and the polarizing layer, between the polarizing layer and the display panel, or within the display panel.

[0101] According to various embodiments, the display panel may further include at least one auxiliary material layer (eg, polymer member 440 in FIG. 5) disposed between the metal sheet layer and the display panel.

[0102] According to various embodiments, the metal sheet layer may further include a first protective frame (e.g., first protective frame 340 in FIG. 7A ) that is coupled to the first housing by sandwiching a first edge of the metal sheet layer that faces the first housing, and a second protective frame (e.g., second protective frame 350 in FIG. 8A ) that is coupled to the second housing by sandwiching a second edge of the metal sheet layer that faces the second housing.

[0103] According to various embodiments, the flexible display may be movably positioned in the space between the first housing and the first protective frame and between the second housing and the second protective frame (e.g., the first space 3101 in FIG. 7A and the second space 3201 in FIG. 8A). According to various embodiments, the space may be sized to accommodate an edge of the flexible display when the electronic device is in a folded state and an unfolded state.

[0104] According to various embodiments, the metal sheet layer may be formed to a size such that all edges of the metal sheet layer are visible outside the edges of the display panel when viewed from above the flexible display. According to various embodiments, the flexible display can be positioned such that the edge of the metal sheet layer is selectively adjacent to the inner wall by the folding action of the electronic device.

[0105] According to various embodiments, the flexible display includes a flexible printed circuit board (FPCB) (e.g., FPCB 432 in FIG. 8A ) extending from the display panel and contacting at least a portion of the metal sheet layer through bending, and the metal sheet layer may include a receiving portion (e.g., receiving portion 4502a in FIG. 8A ) formed to be recessed from an edge (e.g., second edge 4502 in FIG. 8A ) to accommodate the bent portion of the FPCB. According to various embodiments, the receiving portion may be formed to a depth such that the bent portion of the FPCB does not protrude beyond the edge of the metal sheet layer.

[0106] According to various embodiments, when viewed from above the flexible display, the amount of protrusion of the metal sheet layer from the display panel toward the inner wall (e.g., the first protrusion amount (d1) in FIG. 7A) can be determined by the separation distance between the metal sheet layer and the inner wall (e.g., the first separation distance (d2) in FIG. 7A).

[0107] According to various embodiments, the end of the metal sheet layer can further include a fold (eg, fold 4511 in FIG. 10A) that is bent in the first direction or the second direction. According to various embodiments, the folding direction of the folding portion may be determined by the interlayer slip direction of the window layer, the display panel, or the metal sheet layer in the unfolded and folded states of the electronic device.

[0108] According to various embodiments, an electronic device (e.g., electronic device 300 in FIG. 4A ) includes a hinge module (e.g., hinge module 364 in FIG. 4A ), a first housing (e.g., first housing 310 in FIG. 4A ) coupled to the hinge module, a second housing (e.g., second housing 3200 in FIG. 4A ) coupled to the hinge module so as to be foldable relative to the first housing, and a flexible display (e.g., flexible display 400 in FIG. 4A ) disposed via at least a portion of the first housing and the second housing, the flexible display including a first surface (e.g., first surface 4301 in FIG. 7A ) facing a first direction (e.g., the circled “1” direction in FIG. 7A ) when the electronic device is in an unfolded state, and a display panel (e.g., 8A )。 The flexible display includes a flexible display including a window layer (e.g., window layer 410 in FIG. 7A ) disposed on a first surface thereof and a metal sheet layer (e.g., metal sheet layer 450 in FIG. 7A ) disposed on a second surface thereof, and the flexible display is movably arranged on the first housing and the second housing in a direction (e.g., the x-axis direction in FIG. 4A ) perpendicular to a first rotation axis (e.g., rotation axis (A) in FIG. 4B ) when the electronic device is in a folded state and an unfolded state. The metal sheet layer is arranged to at least partially overlap the display panel when viewed from above the flexible display, and may be arranged at a position closer to the inner walls of the first housing and the second housing (e.g., the first inner wall 3102 in FIG. 7A and the second inner wall 3202 in FIG. 8A ) than the display panel.

[0109] According to various embodiments, the window layer includes a polymer layer and a glass layer disposed between the polymer layer and the display panel, and the polymer layer may be positioned so as to at least partially overlap the glass layer when viewed from above the display and may be positioned closer to the inner wall than the glass layer. According to various embodiments, the glass layer and the display panel are at least partially attached via an adhesive, and the adhesive may be positioned so as to overlap at least the active area of ​​the display panel when viewed from above the flexible display.

[0110] The embodiments of the present invention disclosed in this specification and the drawings are presented as specific examples to easily explain the technical contents according to the embodiments of the present invention and to facilitate understanding of the embodiments of the present invention, and are not intended to limit the scope of the embodiments of the present invention. Therefore, the scope of the embodiments of the present invention should be interpreted as including all modifications or variations derived based on the technical concept of the embodiments of the present invention in addition to the embodiments disclosed herein. [Explanation of symbols]

[0111] 100, 300 electronic equipment 101 Recess 110 First housing structure 110a (first housing structure) first part 110b second part (of first housing structure) 111 (first housing structure) first surface 112 (first housing structure) second surface 113 (first housing structure) first side member 113a (first side surface of first side surface member) 113b (first side member) second side 113c (first side member) third side 114 First rotating support surface 120 Second housing structure 120a (of the second housing structure) first part 120b (second housing structure) second part 121 (Second housing structure) third surface 122 (Second housing structure) fourth surface 123 (second housing structure) second side member 123a (of the second side member) fourth side 123b (5th side of the second side member) 123c (6th side of the second side member) 124 Second rotating support surface 130 Display 131a First area (of the display) 131b Second area (of the display) 131c Folding area (of the display) 131d Sensor Area 132 Plates 133 Notch area 140 First rear cover 141 1st posterior area 150 Second rear cover 151 2nd posterior area 152 Sub-display 153 Speaker Module 160 Support member assembly 161 first support member 162 second support member 163 Wiring materials 164 Hinge structure 165 Hinge cover 170 Printed Circuit Board 171 1st printed circuit board 172 2nd printed circuit board 181 Sensor Module 182 Camera Module 183 Window Glass 191 Battery No. 1 192 Second Battery 310 First Housing 320 Second Housing 340, 350 protective frame 364 Hinge Module 370 Hinge Housing 400 Flexible Display 500 protection structure 510 Protective Cap 520 Blocking member

Claims

1. 1. A portable communication device, comprising: a housing including a first housing portion and a second housing portion; a hinge module coupled to the first housing portion and the second housing portion; wherein the first housing portion and the second housing portion are configured to rotate about a folding axis provided by the hinge module; a flexible display received in the first housing portion and the second housing portion; The flexible display comprises: a display panel including a first surface facing a first direction and a second surface facing a second direction opposite the first direction when the portable communication device is in a fully unfolded state; wherein the display panel is arranged such that a space is provided between an edge of the display panel and an inner surface of a side wall corresponding to either the first housing portion or the second housing portion; a window cover disposed on a first surface of the display panel; a conductive sheet disposed below the second surface of the display panel; When the portable communication device is in a fully unfolded state, an edge of the conductive sheet faces an inner surface of the side wall corresponding to either the first housing portion or the second housing portion and protrudes outward beyond an edge of the display panel; At least a portion of the conductive sheet is recessed into an edge of the conductive sheet; 10. A portable communication device according to claim 9, wherein an inner edge of the recessed portion of the conductive sheet is positioned farther from the inner surface of the side wall than the edge of the conductive sheet.

2. 2. The portable communication device according to claim 1, wherein an edge of the conductive sheet is positioned so as to contact the inner surface of the side wall.

3. a portion of the conductive sheet facing an inner surface of the side wall corresponding to either the first housing portion or the second housing portion and protruding outward beyond the edge of the display panel includes a bending portion; The portable communication device according to claim 1 , wherein the bent portion comprises a portion of the conductive sheet bent in a predetermined direction.

4. 4. The portable communication device of claim 3, wherein the predetermined direction of the folded portion of the conductive sheet is positioned so as not to be hindered by interlayer slip within the flexible display during folding and unfolding of the portable communication device.

5. 4. The portable communication device according to claim 3, wherein the predetermined direction of the folded portion of the conductive sheet faces the first surface of the display panel.

6. 4. The portable communication device according to claim 3, wherein the predetermined direction of the folded portion of the conductive sheet faces the second surface of the display panel.

7. 4. The portable communication device according to claim 3, wherein the predetermined direction of the folded portion of the conductive sheet faces the inside of the display panel.

8. 10. The portable communication device of claim 1, further comprising an adhesive tape section disposed between the conductive sheet and one or more of the first housing portion or the second housing portion.

9. a protective frame disposed on one or more of the first housing portion or the second housing portion; The portable communication device according to claim 1 , further comprising: a sealing member disposed between the flexible display and the protective frame.

10. 1. A portable communication device, comprising: A first housing; A second housing; a hinge module coupled to the first housing and the second housing; a flexible display received in the first housing and the second housing; The flexible display comprises: a display panel including a first surface facing a first direction and a second surface facing a second direction opposite the first direction when the portable communication device is in a fully unfolded state; wherein the display panel is disposed such that a space is provided between an edge of the display panel and an inner surface of a side wall corresponding to one of the first housing and the second housing; a window cover disposed on a first surface of the display panel; a conductive sheet disposed below the second surface of the display panel; When the portable communication device is in a fully unfolded state, an edge of the conductive sheet faces an inner surface of the side wall of the first housing or the second housing, and protrudes outward beyond an edge of the display panel so as to prevent at least a portion of the edge of the conductive sheet from colliding with the inner surface of the side wall, and At least a portion of the conductive sheet is recessed into an edge of the conductive sheet; 10. A portable communication device according to claim 9, wherein an inner edge of the recessed portion of the conductive sheet is positioned farther from the inner surface of the side wall than the edge of the conductive sheet.

11. a portion of the conductive sheet facing an inner surface of the side wall corresponding to one of the first housing and the second housing and protruding outward beyond the edge of the display panel includes a bending portion; The portable communication device according to claim 10, wherein the bent portion comprises a portion of the conductive sheet bent in a predetermined direction.

12. 12. The portable communication device of claim 11, wherein the predetermined orientation of the folded portion of the conductive sheet is positioned so as not to be hindered by interlayer slip within the flexible display during folding and unfolding of the portable communication device.

13. The portable communication device of claim 11 , wherein the predetermined direction of the folded portion of the conductive sheet faces the first surface of the display panel.

14. The portable communication device of claim 11 , wherein the predetermined direction of the folded portion of the conductive sheet faces the second surface of the display panel.

15. The portable communication device according to claim 11, wherein the predetermined direction of the folded portion of the conductive sheet faces the inside of the display panel.

16. 11. The portable communication device of claim 10, further comprising an adhesive tape section disposed between the conductive sheet and one or more of the first housing or the second housing.

17. a protective frame disposed on one or more of the first housing or the second housing; The portable communication device according to claim 10, further comprising: a sealing member disposed between the flexible display and the protective frame.

18. The portable communication device of claim 10 , wherein the conductive sheet includes a bendable portion formed at a position corresponding to a folding region of the flexible display when the portable communication device is at least partially folded.

Citation Information

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