Electronic device

The electronic device design addresses the issue of decreased wireless communication quality in closed-state devices by using a resin communication path to bypass metal interference, thereby improving communication characteristics.

JP7689271B2Active Publication Date: 2025-06-06PANASONIC INTELLECTUAL PROPERTY MANAGEMENT CO LTD
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Patent Information

Application Number
JP2023502179
Authority / Receiving Office
JP · JP
Patent Type
Patents
Current Assignee / Owner
Priority Date
2021-02-26
Filing Date
2022-01-24
Publication Date
2025-06-06
Estimated Expiration
2042-01-24

AI Technical Summary

Technical Problem

Existing electronic devices with metal housings suffer from decreased wireless communication quality when in a closed state, due to metal interference with the antenna unit.

Method used

An electronic device design featuring a first housing with a metal support plate and a communication path portion made of resin, positioned to face the antenna unit of a second metal housing when closed, allowing radio waves to pass through.

Benefits of technology

This configuration improves communication characteristics by preventing metal interference with the antenna unit, even when the device is in a closed state, thereby enhancing wireless communication quality.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

An electronic device 1 according to the present disclosure comprises: a first casing that is provided with a display unit; and a second casing that is made of a metal material, that is provided with an input unit and an antenna unit, and that is rotatably connected to the first casing via a connection part. The first casing includes: a support plate that is made of a metal material, that constitutes a back surface side of the first casing, and that supports the display unit; and a communication route unit that is made of a resin material and that is provided to the support plate. The communication route unit is disposed in a region that opposes at least a portion of the antenna unit of the second casing, when the first casing and the second casing are in a closed state of being disposed opposite each other.
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Description

[Technical field]

[0001] The present disclosure relates to electronic devices. [Background technology]

[0002] Patent Document 1 discloses an electronic device in which antenna elements are housed at both ends of one side of a base housing to which an LCD housing is rotatably connected.

[0003] Patent Document 2 discloses an electronic device in which an antenna module is disposed in an antenna section provided in a main body housing to which a display housing is rotatably connected. [Prior art documents] [Patent documents]

[0004] [Patent Document 1] JP 2020-48106 A [Patent Document 2] JP 2020-120298 A Summary of the Invention

[0005] However, the electronic devices described in Patent Documents 1 and 2 have room for improvement in terms of improving communication characteristics.

[0006] An object of the present disclosure is to provide an electronic device capable of improving communication characteristics.

[0007] An electronic device according to an embodiment of the present disclosure includes: a first housing in which a display unit is provided; a second housing made of a metal material, the second housing having an input unit and an antenna unit and rotatably connected to the first housing via a connecting unit; Equipped with the first housing includes a support plate that configures a rear side of the first housing and supports the display unit, the support plate being made of a metal material, and a communication path portion that is provided on the support plate and made of a resin material; The communication path section is disposed in an area facing at least a portion of the antenna section of the second housing when the first housing and the second housing are disposed opposite each other in a closed state.

[0008] According to the present disclosure, communication characteristics can be improved. [Brief description of the drawings]

[0009] [Figure 1] 1 is a perspective view illustrating an example of an electronic device according to an embodiment of the present disclosure. [Diagram 2] 2 is an exploded perspective view of a first housing of the electronic device shown in FIG. 1. [Diagram 3] 3 is a perspective view of a support plate of the first housing shown in FIG. 2. [Figure 4] FIG. 4 is a partial enlarged view of the support plate shown in FIG. [Diagram 5] 5 is a perspective view showing a state in which the cutout portion of the support plate shown in FIG. 4 is viewed from the opposite side. [Figure 6] 2 is an exploded perspective view of a second housing of the electronic device shown in FIG. 1. [Figure 7] 2 is a cross-sectional view showing a part including a connection portion of the electronic device shown in FIG. 1. [Figure 8] 8 is a cross-sectional view showing the electronic device shown in FIG. 7 in a closed state. DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS

[0010] (Background to this disclosure) An example of the electronic device 1 is a notebook computer (laptop PC). The notebook computer includes a first housing having a display unit, a second housing having an input unit, and a hinge unit that rotatably connects the first housing and the second housing. The hinge unit rotates at least one of the first housing and the second housing to open and close the electronic device. Specifically, the hinge unit allows the electronic device to be in an open state (open state) and a closed state (closed state). The "open state" refers to a state in which the first housing and the second housing are separated from each other and the input unit and the display unit are exposed. The "closed state" refers to a state in which the first housing and the second housing are arranged opposite each other, the input unit and the display unit face each other, and the input unit and the display unit are not exposed.

[0011] Such electronic devices, such as notebook computers, are provided with an antenna unit for use in a communication environment such as Wi-Fi (registered trademark) or Bluetooth (registered trademark).

[0012] Furthermore, remote work has become more common in recent years. Remote work is when an employee performs work at a location other than the office where they work. For example, when a user performs work at home using a notebook computer (electronic device), they may connect a separately prepared display and keyboard to the electronic device and use them instead of the keyboard and LCD (liquid crystal display) built into the electronic device. In addition, electronic devices may be used simply as repeaters. In such cases, the user may use the electronic device in a "closed state."

[0013] However, when the electronic device is used in a closed state, the antenna unit is surrounded by the first and second housings. If the first and second housings are made of a metal material, the communication of the antenna unit is hindered by the first and second housings, resulting in a problem of a decrease in the quality of wireless communication.

[0014] Therefore, the present inventors have developed an electronic device that can suppress deterioration in the quality of wireless communication even when the electronic device is in a closed state.

[0015] The electronic device according to the first aspect of the present disclosure includes: a first housing in which a display unit is provided; a second housing made of a metal material, the second housing having an input unit and an antenna unit and rotatably connected to the first housing via a connecting unit; Equipped with the first housing includes a support plate that configures a rear side of the first housing and supports the display unit, the support plate being made of a metal material, and a communication path portion that is provided on the support plate and made of a resin material; The communication path section is disposed in an area facing at least a portion of the antenna section of the second housing when the first housing and the second housing are disposed opposite each other in a closed state.

[0016] According to this configuration, even when the electronic device is in a closed state, it is possible to suppress deterioration of communication characteristics and improve communication characteristics.

[0017] In the electronic device according to the second aspect of the present disclosure, the antenna portion may be disposed in the vicinity of the connecting portion.

[0018] According to this configuration, the antenna unit can be disposed away from the user.

[0019] In the electronic device according to the third aspect of the present disclosure, the antenna unit has a substrate on which a wiring pattern is formed, The communication path portion may be disposed at a position facing at least a portion of the wiring pattern.

[0020] According to this configuration, the communication characteristics can be further improved.

[0021] In the electronic device of the fourth aspect of the present disclosure, the communication path section may be positioned outwardly of the substrate when viewed in a thickness direction of the electronic device in the closed state.

[0022] According to this configuration, radio waves output from the antenna unit are more likely to be emitted to the outside of the electronic device via the communication path unit, and radio waves from the outside of the electronic device are more likely to be incident on the antenna unit via the communication path unit, thereby further improving communication characteristics.

[0023] In the electronic device according to the fifth aspect of the present disclosure, the antenna unit has a plurality of substrates, The first housing may have a plurality of communication paths.

[0024] According to this configuration, the communication characteristics can be further improved.

[0025] In the electronic device according to the sixth aspect of the present disclosure, the communication path portion may include an anchor portion that engages with the support plate.

[0026] According to this configuration, the anchor portion can prevent the communication path portion from falling off from the first housing.

[0027] In the electronic device of the seventh aspect of the present disclosure, the support plate is provided with a notch in which the communication path portion is provided, in an area facing at least a part of the antenna portion; The cutout portion is formed of a cutout plate that defines the cutout, The cutout plate is provided with a through hole whose hole size increases from the outer surface to the inner surface of the support plate, The anchor portion includes a first anchor that protrudes from an inner surface of the communication path portion toward the notched plate and is disposed in the through hole.

[0028] According to this configuration, the first anchor can more reliably prevent the communication path portion from falling off from the first housing.

[0029] In an electronic device according to an eighth aspect of the present disclosure, a fixing recess recessed toward an inside of the support plate is provided in a portion of the peripheral wall of the support plate connected to the notch, A dimension of the fixing recess increases in a direction in which the peripheral wall extends and in a direction away from the notch, the anchor portion includes a second anchor that protrudes from a side wall of the communication path portion in an extension direction of the side wall and is disposed in the fixing recess; An outer dimension of the second anchor may increase in a direction in which the second anchor protrudes.

[0030] According to this configuration, the second anchor can more reliably prevent the communication path portion from falling off from the first housing.

[0031] In the electronic device of the ninth aspect of the present disclosure, the support plate is made of an Mg alloy, The communication path portion may be made of polyamide resin or polycarbonate resin.

[0032] This configuration can improve the adhesion between the support plate and the communication path.

[0033] In the electronic device of the tenth aspect of the present disclosure, the second housing has an exhaust port that communicates between an inside and an outside of the second housing and has an exhaust structure part made of a resin material; The antenna portion may be disposed on the exhaust structure component.

[0034] According to this configuration, the antenna portion can be attached by utilizing the exhaust structure parts.

[0035] (Embodiment) [Overall configuration] 1 is a schematic perspective view showing an example (notebook computer) of an electronic device 1 according to an embodiment of the present disclosure. In the drawing, the X, Y, and Z directions respectively indicate the width, depth, and height directions of the electronic device 1.

[0036] The electronic device 1 includes a first housing 2 and a second housing 3. The first housing 2 and the second housing 3 are rotatably connected via a pair of hinge parts 4 provided as connecting parts. The first housing 2 rotates relative to the second housing 3 about the hinge parts 4. This allows the electronic device 1 to be in an open state and a closed state.

[0037] [First cabinet] As shown in the exploded perspective view of FIG. 2, the first housing 2 includes a support plate 5, a support frame 6, and a display unit 7. The support plate 5 is made of a metal material (e.g., an alloy). The support plate 5 constitutes the rear side of the first housing 2 and supports the display unit 7. The support plate 5 has, for example, a rectangular shape in a plan view. The support frame 6 constitutes the front side of the first housing 2 and is attached to the support plate 5. The support frame 6 has, for example, a rectangular frame shape in a plan view. The support frame 6 is made of a resin material (e.g., polycarbonate resin).

[0038] The first housing 2 is provided with a display unit 7. The display unit 7 is, for example, a liquid crystal panel. The display unit 7 is housed in a space formed by the support plate 5 and the support frame 6. The front surface of the display unit 7 is exposed from the support frame 6, and the back surface of the display unit 7 is covered by the support plate 5.

[0039] As shown in Fig. 3, the support plate 5 has a peripheral wall 17 provided along the outer edge of the support plate 5 in a plan view. The peripheral wall 17 protrudes from the inner surface of the support plate 5 toward the support frame 6. Two notches 8 are formed in the middle of the peripheral wall 17, respectively, near the inner side in the width direction of each hinge portion 4. The notches 8 are provided in an area facing at least a part of an antenna portion 28 of the second housing 3 (described later) in a closed state in which the first housing 2 and the second housing 3 are disposed opposite each other (closed state) (see Fig. 8).

[0040] As shown in Fig. 4, each cutout portion 8 is composed of a cutout plate 12 that defines the cutout. The cutout plate 12 is formed in a substantially U-shape in a plan view. The cutout plate 12 forms a cutout in an area defined by a first edge portion 9 parallel to the lower edge of the support plate 5, and a second edge portion 10 and a third edge portion 11 extending from both ends of the first edge portion 9 toward the lower edge.

[0041] The cutout plate 12 protrudes from the first surface 5a (inner surface) of the support plate 5 and is provided at a position recessed from the second surface 5b (outer surface) of the support plate 5. As a result, as shown in Fig. 5, a recess 13 is formed at the position where the cutout plate 12 is provided when viewed from the second surface 5b of the support plate 5. The recess 13 prevents the thickness of the cutout plate 12 from becoming too large, thereby preventing defects such as sink marks from occurring after molding.

[0042] Returning to FIG. 4, the cutout plate 12 is formed with a plurality of through holes 14 penetrating the front and back surfaces of the cutout plate 12 along the first edge 9, the second edge 10, and the third edge 11. The through holes 14 have a hole size (opening area) that increases from the second surface 5b to the first surface 5a of the support plate. Each through hole 14 is, for example, a long hole. Specifically, the opening area of ​​the opening of the through hole 14 on the first surface 5a side is larger than the opening area of ​​the opening of the through hole 14 on the second surface 5b side. In this embodiment, each through hole 14 is completely open on the first surface 5a side, and opens in the recess 13 on the second surface 5b side by only half divided along the longitudinal direction (see FIG. 5). A first anchor 20 of a communication path section 19 described later is arranged in the through hole 14.

[0043] At the lower end of the cutout plate 12, an end wall 15 is formed, which is bent at a right angle. The end wall 15 is formed by bending the portion of the cutout plate 12 that is connected to the peripheral wall 17 in the thickness direction of the cutout plate 12. In a plan view, the end wall 15 is disposed on the inside of the support plate 5 relative to the peripheral wall 17. As a result, a step portion 15a is formed in the end wall 15. At the portion of the peripheral wall 17 that is connected to the cutout portion 8, a fixing recess 18 that is recessed inward of the support plate 5 is formed. The fixing recess 18 opens toward the step portion 15a. The dimension of the fixing recess 18 increases in the direction in which the peripheral wall 17 extends and in the direction away from the cutout portion 8. Specifically, the fixing recess 18 is composed of a rectangular recess 18a having the same width dimension from the step portion 15a side, and a circular recess 18b whose width dimension expands and then converges.

[0044] A communication path section 19 made of a resin material is disposed in the cutout section 8. The communication path section 19 is a member that serves as a path through which radio waves pass. Specifically, when the electronic device 1 is in a closed state, the communication path section 19 serves as a path through which radio waves pass from an antenna section 28 (described later) to an external device and from the external device to the antenna section 28.

[0045] The communication path section 19 can be obtained, for example, by insert molding into the support plate 5, and can be, for example, in the form of a rectangular plate in a plan view. For the communication path section 19, a synthetic resin material containing, for example, polyamide resin or polycarbonate resin can be used. Such a synthetic resin material has excellent antenna characteristics (particularly, radio wave permeability) and has high adhesive strength with the constituent material of the first housing 2, for example, an Mg alloy.

[0046] The communication path portion 19 has a first anchor 20 that protrudes from the inner surface of the communication path portion 19 toward the cutout plate 12 and is disposed in the through hole 14. The first anchor 20 contacts the inner wall that defines the through hole 14. The first anchor 20 is formed when the communication path portion 19 is insert molded. That is, during insert molding, the resin is filled into the entire through hole 14 from the back side of the support plate 5. In the through hole 14, the opening on the second surface 5b side of the support plate 5 is smaller than the opening on the first surface 5a side of the support plate 5. Due to this difference in the opening shape, the first anchor 20 engages with the cutout plate 12. Specifically, the first anchor 20 is disposed in the through hole 14 in a state of contacting the inner wall that defines the through hole 14. As a result, the first anchor 20 is fixed to the cutout plate 12 in a state where it is fitted into the through hole 14. As a result, the communication path portion 19 is less likely to fall off the support plate 5.

[0047] The communication path portion 19 has a side wall 21 supported by the end wall 15, located at the step portion 15a and continuing to the peripheral wall 17. The side wall 21 extends in the direction in which the peripheral wall 17 extends. The communication path portion 19 has a second anchor 22 that protrudes from the side wall 21 in the direction in which the side wall 21 extends and is disposed in the fixing recess 18. Specifically, both ends of the side wall 21 are located at the step portion 15a, and the second anchor 22 is provided at both ends of the side wall 21. The second anchor 22 protrudes from the step portion 15a toward the fixing recess 18 of the peripheral wall 17. The outer dimension of the second anchor 22 increases in the direction in which the second anchor 22 protrudes. Specifically, the second anchor 22 is composed of a rectangular protrusion 22a having the same width dimension and a circular protrusion 22b whose width dimension expands and then converges. The rectangular protrusion 22a is disposed in the rectangular recess 18a, and the circular protrusion 22b is disposed in the circular recess 18b. The side wall 21 of the communication path portion 19 and the peripheral wall 17 are continuous with each other without any step.

[0048] The second anchor 22, like the first anchor 20, is formed when the communication path portion 19 is insert molded. That is, during insert molding, the resin is filled from the rectangular recess 18a to the circular recess 18b. Due to the difference in shape between the rectangular recess 18a and the circular recess 18b, the second anchor 22 has a structure in which the width dimension of the circular protrusion 22b is larger than that of the rectangular protrusion 22a. As a result, the second anchor 22 engages with the peripheral wall 17. Specifically, the second anchor 22 is disposed in the fixing recess 18 in a state of contact with the inner wall that defines the fixing recess 18. As a result, the second anchor 22 is fixed to the peripheral wall 17 in a state of being fitted into the fixing recess 18. As a result, the communication path portion 19 is less likely to fall off the support plate 5.

[0049] In this specification, the first anchor 20 and the second anchor 22 may be referred to as an anchor portion.

[0050] A plurality of relief recesses 23 are formed in a lattice pattern in the central portion of the inner surface of the communication path portion 19. The relief recesses 23 prevent the communication path portion 19 from having an excessively thick portion, thereby preventing deformation of the communication path portion 19 after insert molding.

[0051] [Second cabinet] The second housing 3 is rotatably connected to the first housing 2 via a hinge portion 4. The second housing 3 is made of a metal material (e.g., Mg alloy). As shown in FIG. 6, the second housing 3 includes an upper panel 24 and a lower panel 25. The upper panel 24 is provided with a keyboard 26, a touchpad 27, an antenna portion 28, etc. (see FIG. 1). The internal space defined by the upper panel 24 and the lower panel 25 houses a cooling fan 29, etc.

[0052] In this specification, the keyboard 26 and the touch pad 27 may be referred to as an input unit.

[0053] The antenna unit 28 inputs and outputs radio waves for wireless communication with an external device in accordance with a predetermined communication standard in the electronic device 1. The predetermined communication standard includes, for example, Wi-Fi (registered trademark), Bluetooth (registered trademark), and the like. The antenna unit 28 has a substrate 33 on which a wiring pattern 33a is formed. Various electronic components are mounted on the substrate 33, and the wiring pattern 33a serving as an antenna is formed on both ends of the upper surface. The wiring pattern 33a is made of, for example, a conductive material, and is capable of communication with the outside. Here, a 5G antenna is adopted for the antenna unit 28.

[0054] 7 and 8, the antenna unit 28 is provided near the hinge portion 4 of the second housing 3. In this embodiment, the antenna unit 28 is disposed between the two hinge portions 4 of the second housing 3 in a plan view. Then, in a closed state in which the first housing 2 and the second housing 3 are disposed opposite each other, at least a portion of the antenna unit 28 faces the communication path portion 19 of the first housing 2.

[0055] When viewed in the thickness direction (Z direction) of the electronic device 1, the communication path section 19 is disposed outside the antenna section 28, and in a plan view, is shifted toward the depth direction with respect to the wiring pattern 33a. In this manner, the communication path section 19 is disposed at a position shifted to a portion that faces diagonally upward with respect to the wiring pattern 33a of the antenna section 28. This makes it easier for radio waves output from the wiring pattern 33a of the antenna section 28 toward an external device to be output to the outside of the electronic device 1 (indicated by a two-dot chain arrow in FIG. 8). In addition, radio waves input from an external device to the wiring pattern 33a of the antenna section 28 are also easier to be input to the wiring pattern 33a.

[0056] As shown in FIG. 7, a heat dissipating fin 30 is disposed downstream of the cooling fan 29 in the airflow direction. In this embodiment, the downstream of the cooling fan 29 in the airflow direction is the side where the hinge portion 4 is provided. Further downstream of the heat dissipating fin 30, a louver 31 made of a resin material is disposed as an exhaust structure part. The louver 31 has a substantially U-shaped cross section, and a plurality of slit-shaped exhaust ports 31a are formed at predetermined intervals in the width direction. The exhaust ports 31a communicate the inside and outside of the second housing 3. The louver 31 is disposed in a cutout portion 32 between the hinge portions 4 formed in the upper panel 24. The antenna portion 28 is disposed in the space surrounded by the louver 31. The board 33 is screwed to the edge portion constituting the cutout portion 32. In this screwed state, the board 33 is located in the upper part of the space surrounded by the louver 31, and does not obstruct the flow of air from the cooling fan. Furthermore, by aligning the substrate 33 with the air flow, a good flow state can be ensured, and the substrate 33 can also be appropriately cooled.

[0057] [effect] According to the electronic device 1 having the above configuration, the following effects can be achieved. (1) Even when the electronic device 1 having the first housing 2 and the second housing 3 is in a closed state, radio waves can be input and output to and from the antenna unit 28 via the communication path unit 19 made of a resin material provided in the first housing 2. This makes it possible to prevent the first housing 2 and the second housing 3 from interfering with the wireless communication of the antenna unit 28, and to prevent deterioration of communication characteristics. As a result, the communication characteristics can be improved. (2) Since the antenna unit 28 is provided in the second housing 3, no space is required in the first housing 2 for arranging the antenna unit 28, and the width of the support frame 6 can be reduced. This allows the area of ​​the first housing 2 that the display unit 7 occupies to be increased. (3) The communication path section 19 can be formed integrally with the first housing 2 by insert molding. Moreover, by forming an anchor section in the communication path section 19, the attachment strength to the first housing 2 is increased. Moreover, the resin material used for the communication path section 19 is polyamide resin or polycarbonate resin, which provides excellent adhesion strength to the metal material (Mg alloy) constituting the first housing 2. Therefore, the attachment state of the communication path section 19 to the first housing 2 can be made strong. (4) The antenna unit 28 can be attached to the top panel 24 of the second housing 3. This makes it possible to suppress an increase in the number of parts and achieve a compact configuration. (5) The antenna unit 28 is disposed inside the louver 31 (exhaust structure part) which is the airflow path from the cooling fan 29. This makes it possible to effectively cool the antenna unit 28, which employs a 5G antenna for which heat generation is a particular problem. (6) The antenna unit 28 is disposed within the louver 31 along the flow of air from the cooling fan 29. Therefore, the air flow is not impeded and can be smoothly exhausted to the outside of the second housing 3.

[0058] [Other embodiments] In the above embodiment, an example was described in which wiring patterns were formed on both ends of the substrate constituting the antenna unit 28, but the number of wiring patterns 33a is not limited to two, and may be one or three or more. In this case, the communication path unit 19 may be provided at a position corresponding to each wiring pattern 33a. In this case, the communication path unit 19 is preferably provided at a position shifted in the depth direction relative to the wiring pattern 33a in the closed position, as described above.

[0059] In the embodiment, an example in which the antenna unit 28 has one substrate 33 has been described, but the present invention is not limited to this. The antenna unit 28 may have multiple substrates 33. In this case, the first housing 2 may be provided with multiple cutouts 8 in areas facing at least a part of the wiring patterns 33a of the multiple substrates 33 when the electronic device 1 is in a closed state. The second housing may have multiple communication path units 19 arranged in the multiple cutouts 8.

[0060] Although the present disclosure has been fully described in connection with the preferred embodiments with reference to the accompanying drawings, various changes and modifications will be apparent to those skilled in the art, and such changes and modifications should be understood to be included within the scope of the present invention as defined by the appended claims, unless they depart therefrom. [Industrial Applicability]

[0061] The present disclosure is useful for various electronic devices including notebook computers equipped with antennas. [Explanation of symbols]

[0062] 1...Electronic equipment 2…First cabinet 3…Second housing 4…Hinge section 5…Support plate 6…Support frame 7...Display section 8…Notch 9…First edge 10...Second edge 11...Third edge 12...Notched plate 13…Hollow 14...Through hole 15...End wall 17...Peripheral wall 18…Fixing recess 19...Communication path section 20…First anchor 21…Side wall 22…Second anchor 23...Relief recess 24…Top panel 25…Bottom panel 26…Keyboard 27…Touchpad 28…Antenna section 29…Cooling fan 30…Heat dissipation fin 31…Louver 31a…Exhaust port 32...Resection part 33...Substrate 33a...Wiring pattern

Claims

1. a first housing in which a display unit is provided; a second housing made of a metal material, the second housing having an input unit and an antenna unit and rotatably connected to the first housing via a connecting portion; Equipped with the first housing includes a support plate that configures a rear side of the first housing and supports the display unit, the support plate being made of a metal material, and at least one communication path portion that is provided on the support plate and made of a resin material; the at least one communication path section is disposed in a region facing at least a part of the antenna section of the second housing in a closed state in which the first housing and the second housing are disposed opposite each other, the at least one communication path portion includes an anchor portion that engages with the support plate; The support plate is provided with through holes whose hole size increases from one surface to the other surface, the anchor portion includes a first anchor protruding from an inner surface of the at least one communication path portion toward the support plate and disposed in the through hole; electronic equipment.

2. The electronic device according to claim 1 , wherein the antenna portion is disposed in the vicinity of the connecting portion.

3. The antenna unit has at least one substrate on which a wiring pattern is formed, The electronic device according to claim 1 , wherein the at least one communication path portion is disposed at a position facing at least a part of the wiring pattern.

4. The electronic device according to claim 3 , wherein the at least one communication path portion is disposed at a position shifted outward from the at least one substrate when viewed in a thickness direction of the electronic device in the closed state.

5. The at least one substrate is a plurality of substrates. The at least one communication path unit is a plurality of communication path units.

5. The electronic device according to claim 3 or 4.

6. The support plate has a notch in an area facing at least a part of the antenna portion, in which the at least one communication path portion is arranged, The cutout portion is formed of a cutout plate that defines the cutout, The electronic device according to claim 1 , wherein the through hole is provided in the cutout plate.

7. A fixing recess is provided in a peripheral wall of the support plate at a portion connected to the notch, the fixing recess being recessed toward an inside of the support plate, A dimension of the fixing recess increases in a direction in which the peripheral wall extends and in a direction away from the notch, the anchor portion includes a second anchor that protrudes from a side wall of the at least one communication path portion in an extension direction of the side wall and is disposed in the fixing recess; The electronic device according to claim 6 , wherein an outer dimension of the second anchor increases in a protruding direction of the second anchor.

8. The electronic device according to claim 1 , wherein the support plate is made of an Mg alloy, and the at least one communication path portion is made of a polyamide resin or a polycarbonate resin.

9. the second housing has an exhaust port that communicates between the inside and the outside of the second housing and has an exhaust structure part made of a resin material; The electronic device according to claim 1 , wherein the antenna portion is disposed on the exhaust structure component.

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