Intelligent glasses, electronic equipment and electric plugging structure

The combined structure of male connectors, female connectors, covers and seals solves the problem of balancing waterproofness and miniaturization in small structures such as smart glasses, achieving stable electrical connection and good waterproof effect.

CN120749458APending Publication Date: 2025-10-03ZHEJIANG FUTURE ELF ARTIFICIAL INTELLIGENCE TECH CO LTD
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Patent Information

Application Number
CN202510812347.4
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-06-17
Publication Date
2025-10-03

AI Technical Summary

Technical Problem

Existing technologies have difficulty striking a balance between waterproofness and miniaturization, especially in pluggable electrical connections in small structures such as smart glasses, where there are problems of increased contact impedance and a sharp decrease in plug-in life.

Method used

A combined structure of a male connector, a female connector, a cover and a seal is adopted. The seal is squeezed between the female connector and the cover during insertion to achieve a waterproof effect on the electrical connection, and a stable connection is ensured by the positioning structure.

Benefits of technology

It achieves good waterproof sealing effect and electrical connection stability under small size conditions, and is suitable for electrical connections of small structures such as smart glasses.

✦ Generated by Eureka AI based on patent content.

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Abstract

The embodiment of the invention discloses intelligent glasses, electronic equipment and an electric plugging structure, a male connector and a female connector of the electric plugging structure are plugged in a mounting hole of a covering part, the mounting hole is provided with a first hole section and a second hole section, and the female connector is mounted in the first hole section. When the male connector and the female connector are plugged, at least part of the sealing element is extruded between the female end shell and the first hole section, when the male connector and the female connector are plugged, the first limiting section of the male connector is arranged in the second hole section, at least part of the sealing element is extruded between the first limiting section and the second hole section, and therefore a good waterproof sealing effect can be achieved when the male connector and the female connector are plugged. According to the technical scheme, the application range is wide, and the good sealing and waterproof effects of the small-size electric plugging structure can be achieved.
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Description

Technical Field

[0001] The present invention relates to the technical field of electrical connection, and more particularly to smart glasses, electronic equipment, and an electrical connection structure. Background Art

[0002] With the rapid development of science and technology, more and more smart electronic devices have entered our daily lives, and users have put forward higher and higher requirements for the lightweight and miniaturized structures of some electronic devices, such as smart wearable devices. For the pluggable electrical connections of small structures on electronic devices, higher requirements are placed on the reliability and miniaturization of the electrical connection structure. For example, for smart glasses (such as AR glasses, health monitoring glasses, etc.), the temples, as typical small structures, need to carry functional modules such as power supply and data transmission at the same time. However, existing waterproof connectors are mostly designed for larger sizes. After direct miniaturization, there are problems such as increased contact impedance and a sharp decrease in plug-in life. Existing technologies have not yet achieved a balance between waterproofness and miniaturization. Summary of the Invention

[0003] In view of this, embodiments of the present invention provide smart glasses, electronic devices, and electrical connector structures, which are beneficial for improving the waterproof effect of pluggable electrical connections of small structures.

[0004] In the first aspect, an embodiment of the present invention provides an electrical connector structure, including a male connector, a female connector, a cover and a seal, including a circuit board and a male end mounting seat, the circuit board having an exposed section, the board surface of the exposed section having multiple electrical connection points, the male end mounting seat having a connecting section and a first limiting section arranged in sequence along the plug-in and unplugging direction of the male connector, the circuit board is fixed to the male end mounting seat, and the exposed section is arranged in the connecting section, and the electrical connection point is exposed outside the male end mounting seat; the female connector includes a female end housing, a female end mounting seat and multiple electrical connection springs, the electrical connection springs are arranged on the female end mounting seat and connected to the electrical connection points Correspondingly, the female end shell has a mounting groove, the bottom of the mounting groove has a socket corresponding to the socket section, and the female end mounting seat is arranged in the mounting groove; the covering member has a mounting hole, and the mounting hole has a first hole section and a second hole section arranged in sequence; wherein, the female connector is installed in the first hole section, and at least part of the sealing member is squeezed between the female end shell and the first hole section; when the male connector is plugged into the female connector, the socket section enters the mounting groove after passing through the socket, and the first limiting section is arranged in the second hole section, and at least part of the sealing member is squeezed between the first limiting section and the second hole section.

[0005] Furthermore, at least part of the sealing member is fixedly formed on the inner wall of the mounting hole by integral molding; and / or at least part of the sealing member is fixedly formed on the outer surface of the male end mounting seat by integral molding.

[0006] Furthermore, the male end mounting seat has a socket extending along the plug-in and pull-out direction of the male connector, the connecting section has a first plane and a second plane arranged opposite to each other along the thickness direction, the socket passes through the first limiting section and forms a first opening on the first plane and / or the second plane, the circuit board is inserted into the socket, and the electrical connection point is exposed from the first opening.

[0007] Furthermore, the male end mounting seat also has a second limiting section, which is arranged at an end of the first limiting section away from the connecting section; the covering member has an outer end surface, and the second hole section extends to the outer end surface. When the male connector and the female connector are plugged in, the end surface of the second limiting section abuts against the outer end surface.

[0008] Furthermore, the second hole segment has a countersunk hole at one end close to the outer end surface, and the sealing member covers the countersunk hole.

[0009] Furthermore, the jack has a second opening at an end of the male end mounting base away from the connecting section, and a gap between an end of the circuit board away from the exposed section and the second opening is sealed by a first sealant.

[0010] Furthermore, the circuit board has a first board surface and a second board surface relative to each other, the first board surface is exposed in the first opening, the second board surface is arranged opposite to the first opening, and the electrical connection point is arranged on the first board surface; the inner wall of the socket opposite to the first opening is fixedly connected to the second board surface.

[0011] Furthermore, the female end mounting seat has a connecting end face, the electrical connection spring is arranged on the connecting end face, and a plug-in space is formed between the connecting end face and the inner wall of the female end shell, and the plug-in space is aligned with and connected to the socket.

[0012] Furthermore, in a first axial direction, the connecting section has a first side and a second side relative to each other, the first axial direction is perpendicular to the thickness direction of the connecting section and the plug-in and unplugging direction of the male connector, the first side and the second side respectively have positioning grooves, and the positioning grooves have a predetermined interval with the circuit board; the female connector also includes a positioning member, which is connected to the female end mounting seat, and the positioning member includes two positioning springs arranged opposite to each other at intervals, and the positioning springs have a positioning structure, and the two positioning springs include a first positioning spring corresponding to the first side and a second positioning spring corresponding to the second side; wherein, when the male connector is plugged into the female connector, the positioning structure of the first positioning spring is connected to the positioning groove of the first side, and the positioning structure of the second positioning spring is connected to the positioning groove of the second side.

[0013] Furthermore, the connection between the first hole segment and the second hole segment has a first stop surface, the female end shell has a front end and a rear end relative to each other, the connector hole is arranged at the front end, the front end is opposite to the first stop surface, and the female end shell has a third opening at one end away from the connector hole, and the third opening and the rear end are sealed by a second sealant.

[0014] Furthermore, one end of the first hole segment away from the second hole segment has a second stop surface, and the female end housing has a stop platform, which abuts against the second stop surface.

[0015] Furthermore, the sealing member includes a first bead and a second bead, the first bead is provided in the first hole section and is interference fit with the female end housing, and the second bead is provided in the second hole section and is interference fit with the first limiting section.

[0016] In the second aspect, an embodiment of the present invention further provides an electronic device, comprising a main body, a disassembly part and an electrical connection structure as described in the first aspect; the main body has a first circuit; the disassembly part is detachably connected to the main body, and the disassembly part has a second circuit; the cover and the female connector are provided on the main body, the male connector is provided on the disassembly part, the electrical connection spring is electrically connected to the first circuit, and the circuit board is electrically connected to the second circuit.

[0017] In a third aspect, an embodiment of the present invention further provides a pair of smart glasses, comprising a frame and two temples connected to the frame, and the electrical connection structure as described in the first aspect; at least one of the temples comprises a main body and a disassembly part; the main body has a first circuit; the disassembly part is detachably connected to the main body, and the disassembly part has a second circuit; the cover and the female connector are provided on the main body, the male connector is provided on the disassembly part, the electrical connection spring is electrically connected to the first circuit, and the circuit board is electrically connected to the second circuit.

[0018] Embodiments of the present invention provide smart glasses, electronic devices, and an electrical connector structure. The male and female connectors of the electrical connector structure are plugged into a mounting hole in a cover. The mounting hole has a first hole section and a second hole section. The female connector is mounted in the first hole section. A sealing member is provided, at least partially extruded between the female housing and the first hole section. When the male and female connectors are plugged into each other, the male connector's first retaining section is located in the second hole section, and at least partially extruded between the first retaining section and the second hole section. This ensures a good waterproof seal when the male and female connectors are plugged into each other. This technical solution has a wide range of applications and can achieve a good sealing and waterproof effect for smaller-sized electrical connector structures. At least one temple of the smart glasses includes a main body and a detachable portion, which are electrically connected via the electrical connector structure. By applying the electrical connector structure to smart glasses, it is advantageous to ensure that the smart glasses are lightweight and compact while also ensuring stable and reliable electrical connections. BRIEF DESCRIPTION OF THE DRAWINGS

[0019] The above and other objects, features and advantages of the present invention will become more apparent through the following description of the embodiments of the present invention with reference to the accompanying drawings, in which:

[0020] Figure 1 is a schematic cross-sectional view of an electrical connector structure according to an embodiment of the present invention;

[0021] Figure 2 is a schematic top view of a male connector according to an embodiment of the present invention;

[0022] Figure 3 is a schematic cross-sectional view of a male connector according to an embodiment of the present invention;

[0023] Figure 4 is a schematic diagram of the connection between a male connector and a sealing member according to another embodiment of the present invention;

[0024] Figure 5 is a schematic structural diagram of a female connector according to an embodiment of the present invention;

[0025] Figure 6 is a schematic diagram of the connection between a male connector and a female connector according to an embodiment of the present invention;

[0026] Figure 7 is a schematic structural diagram of an electronic device according to an embodiment of the present invention;

[0027] Figure 8 is a schematic block diagram of an electronic device according to an embodiment of the present invention;

[0028] Figure 9 FIG. 1 is a schematic diagram of smart glasses according to an embodiment of the present invention.

[0029] Description of reference numerals:

[0030] AX1-first axial direction; AX2-plug-in direction; D-electronic device; 100-electrical connection structure; 200-main body; 210-first circuit; 300-disassembly part; 310-second circuit; 400-frame; 500-tip; 1-male connector; 11-circuit board; 111-exposed section; 112-electrical connection point; 113-first board surface; 114-second board surface; 12-male end mounting seat; 121-connection section; 1211-first plane; 1212-second plane; 1213-first side; 1214-second side; 1215-positioning groove; 122-first limiting section; 123-jack; 1231-first opening; 1232-second opening; 124-second Limiting section; 125-first sealant; 2-female connector; 21-female end housing; 211-mounting slot; 212-connecting jack; 213-front end; 214-rear end; 215-stop; 216-third opening; 22-female end mounting seat; 221-connecting end face; 23-electrical connection spring; 24-positioning piece; 241-first positioning spring; 242-second positioning spring; 243-positioning structure; 25-second sealant; 3-covering piece; 31-mounting hole; 311-first hole section; 3111-first stop surface; 3112-second stop surface; 312-second hole section; 3121-counterbore; 32-outer end face; 4-sealing piece; 41-first protrusion; 42-second protrusion. DETAILED DESCRIPTION

[0031] The present application is described below based on the following embodiments, but the present application is not limited to these embodiments. In the detailed description of the present application below, certain specific details are described in detail. Those skilled in the art can fully understand the present application without the description of these details. To avoid obscuring the essence of the present application, well-known methods, processes, procedures, components, and circuits are not described in detail.

[0032] Furthermore, persons of ordinary skill in the art will appreciate that the figures provided herein are for illustration purposes only and are not necessarily drawn to scale.

[0033] Unless the context clearly requires otherwise, words like “include”, “comprising” and the like throughout this application should be interpreted as including rather than exclusive or exhaustive; that is, as meaning “including but not limited to”.

[0034] In the description of this application, it should be understood that the terms "first", "second", etc. are used for descriptive purposes only and should not be understood to indicate or imply relative importance. In addition, in the description of this application, unless otherwise specified, "plurality" means two or more.

[0035] The embodiment of the present invention provides an electrical connector structure 100. Figures 1-6 The electrical connector structure 100 includes a male connector 1, a female connector 2, a cover 3, and a seal 4. The male connector 1 includes a circuit board 11 and a male mounting seat 12. The circuit board 11 is positioned on the male mounting seat 12 and has multiple electrical connection points 112 for electrical connection with the female connector 2. The electrical connection points 112 are exposed outside the male mounting seat 12. The circuit board 11 can be a rigid printed circuit board 11 or a rigid-flex board. The electrical connection points 112 can be metal contacts or other conductive structures. The male mounting seat 12 is made of insulating material. The female connector 2 includes a female housing 21, a female mounting seat 22, and multiple electrical connection springs 23. The electrical connection springs 23 are provided on the female mounting seat 22 and correspond one-to-one with the electrical connection points 112 of the male connector 1. The female housing 21 has a mounting groove 211. The female mounting seat 22 is provided in the mounting groove 211. The bottom of the mounting groove 211 has a socket 212 for inserting the male connector 1.

[0036] In this embodiment, the circuit board 11 has an exposed section 111, and an electrical connection point 112 is located on at least one surface of the exposed section 111. The male mounting base 12 includes a connecting section 121 and a first retaining section 122, arranged sequentially along the insertion and removal direction AX2 of the male connector 1. The exposed section 111 of the circuit board 11 is located within the connecting section 121. The size of the connecting hole 212 matches the connecting section 121. When the male connector 1 is mated with the female connector 2, the connecting section 121 passes through the connecting hole 212 and enters the mounting slot 211. The electrical connection point 112 contacts the corresponding electrical connection spring 23, achieving electrical connection.

[0037] The cover 3 has a mounting hole 31, into which the female connector 2 is mounted. Optionally, the mounting hole 31 has a first hole section 311 and a second hole section 312, arranged in sequence, with the female connector 2 mounted and positioned in the first hole section 311. When the male connector 1 and the female connector 2 are plugged together, the plug section 121 passes through the plug hole 212 and enters the mounting groove 211. The first limiting section 122 is located in the second hole section 312, and the seal 4 is squeezed between the female housing 21 and the first hole section 311, and between the first limiting section 122 and the second hole section 312, achieving waterproofing after the male connector 1 and the female connector 2 are connected. The seal 4 can be made of vulcanized rubber, silicone rubber, polyamide (PA), polyurethane (TPU), or other waterproof sealing materials.

[0038] In some embodiments, at least a portion of the seal 4 is fixedly formed on the inner wall of the mounting hole 31 by an integral molding method. For example, the seal 4 and the female end housing 21 can be integrally formed by two-color injection molding. In some embodiments, at least a portion of the seal 4 can be fixedly formed on the outer surface of the male end mounting seat 12 by an integral molding method. For example, referring to Figure 4A portion of the seal 4 can be formed in the first limiting section 122. When the male connector 1 is inserted into the mounting hole 31, this portion of the seal 4 provided on the male connector 1 can be interference-fitted with the inner wall of the second hole section 312 and squeezed against the end surface of the female housing 21 to achieve a waterproof seal.

[0039] Reference Figures 1-4 The male mounting base 12 has a socket 123 extending along the plug-in and unplugging direction AX2 of the male connector 1. The circuit board 11 is inserted into the socket 123 to achieve positioning. The plug section 121 has a first plane 1211 and a second plane 1212 arranged opposite each other along the thickness direction. The socket 123 passes through the first limiting section 122 and forms a first opening 1231 on at least one of the first plane 1211 and the second plane 1212. Optionally, the socket 123 does not extend to the end of the plug section 121 away from the first limiting section 122. The end of the exposed section 111 abuts against the side wall of the socket 123 at the plug section 121 to achieve positioning. The electrical connection point 112 is exposed from the plug section 121 through the first opening 1231. When the plug section 121 is inserted into the female connector 2, the first plane 1211 is opposite the electrical connection spring 23, so that the electrical connection point 112 can contact the electrical connection spring 23 to achieve electrical connection.

[0040] In one embodiment, referring to Figure 1 and Figure 3 The jack 123 is formed into a slot with a first opening 1231 at the connecting section 121, and the second plane 1212 can be a closed structure. The circuit board 11 has a first board surface 113 and a second board surface 114 opposite to each other. The first board surface 113 is exposed at the first opening 1231, and the second board surface 114 is arranged opposite to the first opening 1231. The electrical connection point 112 is provided on the first board surface 113, and the inner wall of the jack 123 opposite to the first opening 1231 is fixedly connected to the second board surface 114. Optionally, refer to Figure 1 The female end mounting base 22 has a connecting end face 221, with an electrical connection spring 23 disposed thereon. A plug-in space is formed between the connecting end face 221 and the inner wall of the female end housing 21. The plug-in space is aligned with and communicates with the plug-in hole 212. When the male connector 1 and the female connector 2 are plugged together, the plug-in section 121 passes through the second hole section 312 and the plug-in hole 212 into the plug-in space. This arrangement helps reduce the thickness of the male and female connectors 1 and 2 after they are connected, thereby facilitating the application of the electrical plug structure 100 in slender or thin electronic devices D.

[0041] The socket 123 has a second opening 1232 at the end of the male end mounting seat 12 away from the connecting section 121. When the circuit board 11 is connected to the male end mounting seat 12, the circuit board 11 can be inserted into the socket 123 from the second opening 1232. An adhesive can be used to fix the circuit board 11 and the inner wall of the socket 123. For example, in an optional embodiment, a hot melt adhesive film can be provided between the circuit board 11 and the inner wall of the socket 123 to achieve fixation of the circuit board 11 after insertion. The gap between the end of the circuit board 11 away from the exposed section 111 and the second opening 1232 can also be sealed by a first sealant 125. The first sealant 125 can be a hot melt adhesive, a polyurethane adhesive, a UV curing adhesive or other adhesives. Thus, the hot melt adhesive film and the first sealant 125 can achieve fixation and gap filling between the circuit board 11 and the socket 123, which can further enhance the waterproof effect of the male end mounting seat 12. The end of the circuit board 11 away from the exposed section 111 can lead out corresponding lines to achieve electrical connection with an external circuit. Optionally, a flexible printed circuit board 11 (FPC) can be used as the lead-out structure of the end of the circuit board 11 away from the exposed section 111.

[0042] In some embodiments, insert injection molding or other methods may be used to integrally form the male terminal mounting seat 12 covering a portion of the circuit board 11 outside the circuit board 11 .

[0043] In some embodiments, the male end mounting base 12 further includes a second limiting section 124, which is disposed at an end of the first limiting section 122 away from the plugging section 121. The second limiting section 124 is larger than the first limiting section 122 in a direction perpendicular to the plugging and unplugging direction AX2 of the male connector 1, thereby forming a step structure between the second limiting section 124 and the first limiting section 122. The cover 3 has an outer end surface 32, and the second hole section 312 extends to the outer end surface 32. When the male connector 1 is plugged into the female connector 2, the first limiting section 122 is inserted into the second hole section 312, while the second limiting section 124 abuts against the outer end surface 32, thereby limiting the insertion of the male connector 1.

[0044] In some embodiments, reference Figure 1 The second hole section 312 has a countersunk hole 3121 at one end near the outer end surface 32, and a portion of the seal 4 covers the countersunk hole 3121. When the male connector 1 is connected to the female connector 2, the second limiting section 124 squeezes the seal 4 in the countersunk hole 3121, which can improve the waterproof sealing effect.

[0045] Reference Figure 2 and Figure 6In the first axial direction AX1, the plug section 121 has a first side 1213 and a second side 1214 opposite to each other, wherein the first axial direction AX1 is perpendicular to the thickness direction of the plug section 121 and the plugging direction AX2 of the male connector 1. The first side 1213 and the second side 1214 respectively have a positioning groove 1215, and the positioning groove 1215 has a predetermined distance from the circuit board 11. Figure 5 and Figure 6 The female connector 2 also includes a positioning member 24, which is connected to the female end mounting base 22 and can be embedded in the female end mounting base 22. The positioning member 24 includes two positioning springs spaced apart from each other. Each positioning spring has a positioning structure 243 that can be connected and engaged with the positioning groove 1215. For example, it can be a protrusion structure, a hook structure, etc. The two positioning springs include a first positioning spring 241 corresponding to the first side 1213 and a second positioning spring 242 corresponding to the second side 1214. During the mating process between male connector 1 and female connector 2, the insertion section 121 is located between the two positioning springs, and the positioning structure 243 of the positioning spring slides along the side wall of the insertion section 121. When the positioning structure 243 moves to the positioning groove 1215, under the elastic action of the positioning spring, the positioning structure 243 of the first positioning spring 241 connects with the positioning groove 1215 on the first side 1213, and the positioning structure 243 of the second positioning spring 242 connects with the positioning groove 1215 on the second side 1214. This can achieve the engagement of male connector 1 and female connector 2, prevent the connection from being loose, and achieve a stable electrical connection between male connector 1 and female connector 2. In addition, the insertion status of male connector 1 into female connector 2 can be detected by detecting the movement or force of the positioning spring.

[0046] In some embodiments, reference Figure 1 A stepped hole structure is formed between the first hole section 311 and the second hole section 312, and a first stop surface 3111 is provided at the connection point. The female end housing 21 has a front end 213 and a rear end 214 relative to each other. The connector 212 is provided at the front end 213. The seal 4 covers the first stop surface 3111. When the female end housing 21 is inserted into the first hole section 311, the front end 213 is opposite to the first stop surface 3111 and squeezes the seal 4 on the first stop surface 3111. This arrangement is conducive to improving waterproofness. Optionally, the end of the female end housing 21 away from the connector 212 has a third opening 216. The third opening 216 and the rear end 214 are sealed by a second sealant 25. The second sealant 25 can be a hot melt adhesive, a polyurethane adhesive, a UV curing adhesive or other adhesives. Thus, the second sealant 25 can further improve the waterproof effect of the female connector 2.

[0047] In some embodiments, the first hole section 311 has a second stop surface 3112 at one end away from the second hole section 312, and the female end housing 21 has a stop platform 215, which abuts against the second stop surface 3112. This stepped stop structure is conducive to further improving the waterproof performance of the female connector 2.

[0048] In some embodiments, reference Figure 1 The seal 4 includes a first bead 41 and a second bead 42. The first bead 41 is disposed in the first hole section 311 and can be arranged around the axis of the first hole section 311. The second bead 42 is disposed in the second hole section 312 and can be arranged around the axis of the second hole section 312. The first bead 41 has an interference fit with the female housing 21, and the second bead 42 has an interference fit with the first limiting section 122, thereby effectively preventing liquid infiltration.

[0049] In the electrical connector structure 100 of the embodiment of the present invention, the male connector 1 and the female connector 2 are plugged into the mounting hole 31 of the cover 3. The mounting hole 31 has a first hole section 311 and a second hole section 312. The female connector 2 is installed in the first hole section 311. By providing a seal 4, at least part of the seal 4 is squeezed between the female end housing 21 and the first hole section 311. When the male connector 1 and the female connector 2 are plugged in, the first limiting section 122 of the male connector 1 is provided in the second hole section 312, and at least part of the seal 4 is squeezed between the first limiting section 122 and the second hole section 312. This can achieve a good waterproof sealing effect when the male connector 1 and the female connector 2 are plugged in. This technical solution has a wide range of applications and can achieve a good sealing and waterproof effect for a smaller-sized electrical connector structure 100.

[0050] Another aspect of the embodiment of the present invention also relates to an electronic device D, referring to Figure 7 and Figure 8 The electronic device D includes a main body 200, a disassembly part 300 and an electrical connection structure 100 of at least some of the above embodiments. The disassembly part 300 is connected to the main body 200 in a detachable manner, for example, it can be connected by plugging. The main body 200 has a first circuit 210, and the disassembly part 300 has a second circuit 310. The electrical connection structure 100 serves as both a physical connection structure between the main body 200 and the disassembly part 300 and an electrical connection structure between the first circuit 210 and the second circuit 310. Among them, the cover 3 and the female connector 2 are provided on the main body 200, the male connector 1 is provided on the disassembly part 300, the electrical connection spring 23 is electrically connected to the first circuit 210, and the circuit board 11 is electrically connected to the second circuit 310.

[0051] In an application scenario, refer to Figure 9The electronic device D is a pair of glasses. The smart glasses include a frame 400 and two temples 500 connected to the frame 400. At least one temple 500 includes a main body 200 and a detachable portion 300. The electrical connector structure 100 is applied to the temple 500 to achieve a pluggable electrical connection between the two sections (the main body 200 and the detachable portion 300). While maintaining the size of the temple 500, it can effectively improve the waterproof effect of the circuit in the slender temple 500 and ensure the stability and reliability of the electrical connection.

[0052] The foregoing is merely a preferred embodiment of the present application and is not intended to limit the present application. Persons skilled in the art will readily appreciate that the present application is susceptible to various modifications and variations. Any modifications, equivalent substitutions, or improvements made within the spirit and principles of the present application shall be included within the scope of protection of the present application.

Claims

1. A pair of smart glasses, characterized in that: include: Frame (400); Two temples (500) are respectively connected to the mirror frame (400), at least one of the temples (500) comprises a main body (200) and a detachable portion (300), the main body (200) having a first circuit (210), the detachable portion (300) being detachably connected to the main body (200), and the detachable portion (300) having a second circuit (310); as well as An electrical connector structure (100), comprising: A male connector (1) is provided at the disassembly portion (300), the male connector (1) comprising a circuit board (11) and a male end mounting seat (12), the circuit board (11) being electrically connected to the second circuit (310), the circuit board (11) having an exposed section (111), the surface of the exposed section (111) having a plurality of electrical connection points (112), the male end mounting seat (12) having a plug section (121) and a first limiting section (122) sequentially arranged along the plugging and unplugging direction (AX2) of the male connector (1), the circuit board (11) being fixed to the male end mounting seat (12), the exposed section (111) being provided at the plug section (121), and the electrical connection points (112) being exposed outside the male end mounting seat (12); A female connector (2) is provided on the main body (200), the female connector (2) comprising a female end housing (21), a female end mounting seat (22) and a plurality of electrical connection springs (23), the electrical connection springs (23) being electrically connected to the first circuit (210), the electrical connection springs (23) being provided on the female end mounting seat (22) and corresponding to the electrical connection point (112), the female end housing (21) having a mounting groove (211), the bottom of the mounting groove (211) having a plug hole (212) corresponding to the plug section (121), and the female end mounting seat (22) being provided in the mounting groove (211); A covering member (3) is provided on the main body (200) and has a mounting hole (31), wherein the mounting hole (31) has a first hole section (311) and a second hole section (312) which are sequentially arranged; and Seal (4); The female connector (2) is mounted on the first hole section (311), and at least a portion of the sealing member (4) is squeezed between the female end housing (21) and the first hole section (311); When the male connector (1) and the female connector (2) are plugged in, the plug section (121) passes through the plug hole (212) and enters the installation groove (211), the first limiting section (122) is arranged in the second hole section (312), and at least part of the sealing member (4) is squeezed between the first limiting section (122) and the second hole section (312).

2. The smart glasses according to claim 1, wherein: At least part of the sealing member (4) is fixedly formed on the inner wall of the mounting hole (31) by integral molding; and / or At least a portion of the sealing member (4) is fixedly formed on the outer surface of the male end mounting seat (12) by integral molding.

3. The smart glasses according to claim 1, wherein: The male end mounting seat (12) has a socket (123) extending along the plugging and unplugging direction (AX2) of the male connector (1); the connecting section (121) has a first plane (1211) and a second plane (1212) arranged opposite to each other along the thickness direction; the socket (123) passes through the first limiting section (122) and forms a first opening (1231) on the first plane (1211) and / or the second plane (1212); the circuit board (11) is inserted into the socket (123), and the electrical connection point (112) is exposed from the first opening (1231).

4. The smart glasses according to claim 3, wherein: The male end mounting seat (12) further comprises a second limiting section (124), wherein the second limiting section (124) is provided at an end of the first limiting section (122) away from the connecting section (121); The cover (3) has an outer end surface (32), the second hole section (312) extends to the outer end surface (32), and when the male connector (1) and the female connector (2) are plugged in, the end surface of the second limiting section (124) abuts against the outer end surface (32).

5. The smart glasses according to claim 4, characterized in that: The second hole section (312) has a countersunk hole (3121) at one end close to the outer end surface (32), and the sealing member (4) covers the countersunk hole (3121).

6. The smart glasses according to claim 3, wherein: The jack (123) has a second opening (1232) at one end of the male end mounting seat (12) away from the connecting section (121), and a gap between the second opening (1232) and one end of the circuit board (11) away from the exposed section (111) is sealed by a first sealant (125).

7. The smart glasses according to claim 3, wherein: The circuit board (11) has a first board surface (113) and a second board surface (114) opposite to each other, the first board surface (113) is exposed at the first opening (1231), the second board surface (114) is arranged opposite to the first opening (1231), and the electrical connection point (112) is arranged on the first board surface (113); The inner wall of the insertion hole (123) opposite to the first opening (1231) is fixedly connected to the second plate surface (114).

8. The smart glasses according to claim 7, wherein: The female end mounting seat (22) has a connection end surface (221), the electrical connection spring (23) is arranged on the connection end surface (221), and a plug-in space is formed between the connection end surface (221) and the inner wall of the female end housing (21), and the plug-in space is aligned with and communicated with the socket (212).

9. The smart glasses according to claim 1, wherein: In a first axial direction (AX1), the connecting section (121) has a first side (1213) and a second side (1214) opposite to each other, the first axial direction (AX1) being perpendicular to the thickness direction of the connecting section (121) and the plugging and unplugging direction (AX2) of the male connector (1), the first side (1213) and the second side (1214) respectively having a positioning groove (1215), and the positioning groove (1215) and the circuit board (11) having a predetermined spacing; The female connector (2) further comprises: A positioning member (24) is connected to the female end mounting seat (22), the positioning member (24) includes two positioning springs arranged opposite to each other at intervals, the positioning springs have a positioning structure (243), and the two positioning springs include a first positioning spring (241) corresponding to the first side (1213) and a second positioning spring (242) corresponding to the second side (1214); When the male connector (1) and the female connector (2) are plugged in, the positioning structure (243) of the first positioning spring piece (241) is connected to the positioning groove (1215) of the first side (1213), and the positioning structure (243) of the second positioning spring piece (242) is connected to the positioning groove (1215) of the second side (1214).

10. The smart glasses according to claim 1, wherein: The connection between the first hole section (311) and the second hole section (312) is provided with a first stop surface (3111); the female end housing (21) has a front end (213) and a rear end (214) opposite to each other; the connector (212) is provided at the front end (213); the front end (213) is opposite to the first stop surface (3111); the female end housing (21) has a third opening (216) at one end away from the connector (212); the third opening (216) and the rear end (214) are sealed by a second sealant (25).

11. The smart glasses according to claim 10, wherein: An end of the first hole section (311) away from the second hole section (312) has a second stop surface (3112), and the female end housing (21) has a stop platform (215), and the stop platform (215) abuts against the second stop surface (3112).

12. The smart glasses according to claim 1, wherein: The sealing member (4) comprises a first bead (41) and a second bead (42), wherein the first bead (41) is arranged in the first hole section (311) and is interference-fitted with the female end housing (21), and the second bead (42) is arranged in the second hole section (312) and is interference-fitted with the first limiting section (122).

13. An electronic device, characterized in that: The electronic device (D) comprises: The main body (200) has a first circuit (210); a detachable portion (300) detachably connected to the main body (200), wherein the detachable portion (300) has a second circuit (310); and An electrical connector structure (100), the electrical connector structure (100), the electrical connector structure (100) comprising: A male connector (1) is provided at the disassembly portion (300), the male connector (1) comprising a circuit board (11) and a male end mounting seat (12), the circuit board (11) being electrically connected to the second circuit (310), the circuit board (11) having an exposed section (111), the surface of the exposed section (111) having a plurality of electrical connection points (112), the male end mounting seat (12) having a plug section (121) and a first limiting section (122) sequentially arranged along the plugging and unplugging direction (AX2) of the male connector (1), the circuit board (11) being fixed to the male end mounting seat (12), the exposed section (111) being provided at the plug section (121), and the electrical connection points (112) being exposed outside the male end mounting seat (12); A female connector (2) is provided on the main body (200), the female connector (2) comprising a female end housing (21), a female end mounting seat (22) and a plurality of electrical connection springs (23), the electrical connection springs (23) being electrically connected to the first circuit (210), the electrical connection springs (23) being provided on the female end mounting seat (22) and corresponding to the electrical connection point (112), the female end housing (21) having a mounting groove (211), the bottom of the mounting groove (211) having a plug hole (212) corresponding to the plug section (121), and the female end mounting seat (22) being provided in the mounting groove (211); A covering member (3) is provided on the main body (200) and has a mounting hole (31), wherein the mounting hole (31) has a first hole section (311) and a second hole section (312) which are sequentially arranged; and Seal (4); The female connector (2) is mounted on the first hole section (311), and at least a portion of the sealing member (4) is squeezed between the female end housing (21) and the first hole section (311); When the male connector (1) and the female connector (2) are plugged in, the plug section (121) passes through the plug hole (212) and enters the installation groove (211), the first limiting section (122) is arranged in the second hole section (312), and at least part of the sealing member (4) is squeezed between the first limiting section (122) and the second hole section (312).

14. An electrical connector structure, characterized in that: include: A male connector (1) comprises a circuit board (11) and a male end mounting seat (12); the circuit board (11) has an exposed section (111); the surface of the exposed section (111) has a plurality of electrical connection points (112); the male end mounting seat (12) has a connecting section (121) and a first limiting section (122) sequentially arranged along the plugging and unplugging direction (AX2) of the male connector (1); the circuit board (11) is fixed to the male end mounting seat (12); the exposed section (111) is arranged on the connecting section (121); and the electrical connection points (112) are exposed outside the male end mounting seat (12); A female connector (2) comprises a female end housing (21), a female end mounting seat (22) and a plurality of electrical connection springs (23), wherein the electrical connection springs (23) are arranged on the female end mounting seat (22) and correspond to the electrical connection points (112), the female end housing (21) has a mounting groove (211), the bottom of the mounting groove (211) has a connecting hole (212) corresponding to the connecting section (121), and the female end mounting seat (22) is arranged in the mounting groove (211); A cover (3) having a mounting hole (31), wherein the mounting hole (31) has a first hole section (311) and a second hole section (312) arranged in sequence; and Seal (4); The female connector (2) is mounted on the first hole section (311), and at least a portion of the sealing member (4) is squeezed between the female end housing (21) and the first hole section (311); When the male connector (1) and the female connector (2) are plugged in, the plug section (121) passes through the plug hole (212) and enters the installation groove (211), the first limiting section (122) is arranged in the second hole section (312), and at least part of the sealing member (4) is squeezed between the first limiting section (122) and the second hole section (312).