Network cable terminal interface assembly and electronic equipment
By designing a network cable terminal interface assembly with rotatable connectors and covers, the problems of large space occupation and easy accumulation of dirt in network cable interfaces are solved, achieving self-protection and aesthetic effect of the interface.
Patent Information
- Application Number
- CN202510933376.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-07-07
- Publication Date
- 2025-11-21
AI Technical Summary
The existing network cable interface structure occupies a large space in the housing, making it easy for dirt and grime to accumulate, leading to poor network cable contact.
A network cable terminal interface assembly is designed, including a receiving component, a power receiving component, and a cover component. The power receiving component is rotatably installed in the receiving slot, and the cover component can rotate synchronously with the power receiving component to realize the opening or closing of the receiving port. The cover effect is enhanced by combining an energy storage component.
It effectively prevents dust accumulation, keeps the interface flat and aesthetically pleasing, and reduces the risk of poor network cable contact.
Smart Images

Figure CN120999340A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present disclosure relates to the technical field of interface devices, and particularly relates to a network cable terminal interface assembly and an electronic device. BACKGROUND
[0002] The end of the network cable in the related art is generally provided with a crystal head terminal, and an interface for inserting and connecting the crystal head terminal is opened in the corresponding electronic device. Since the shape of the crystal head terminal is similar to a cuboid, the interface opened in the shell of the electronic device also presents a concave cuboid shape. The network cable interface with the conventional structure occupies a large shell position, which on one hand affects the appearance of the shell of the electronic device, and on the other hand is easy to hide dirt and cause poor contact of the network cable.
[0003] Therefore, there is an urgent need for a network cable terminal interface with a new structure to solve the problems of the conventional network cable terminal interface. SUMMARY
[0004] The present disclosure provides a network cable terminal interface assembly and an electronic device, to solve the problem of the network cable interface in the related art that the opening occupies a large shell position and is easy to hide dirt and cause poor contact of the network cable.
[0005] The network cable terminal interface assembly provided by the present disclosure includes a receiving piece, an electrical connection piece and a cover piece.
[0006] The receiving piece is provided with a receiving groove in the receiving piece along the insertion direction;
[0007] The electrical connection piece is provided with an electrical connection part in the electrical connection piece along the insertion direction, and the electrical connection part is provided with an electrical connection pin for electrical connection;
[0008] The cover piece is arranged on the outer side of the electrical connection piece along the insertion direction;
[0009] The electrical connection piece is rotatably installed in the receiving groove;
[0010] The cover piece can surround the insertion port of the receiving groove with the insertion end, and the cover piece can rotate synchronously with the electrical connection piece in the receiving groove to open or cover the insertion port.
[0011] In an implementation manner, the network cable terminal interface assembly further includes a rotating piece;
[0012] The rotating piece is perpendicular to the insertion direction and is connected to the two opposite outer sides of the electrical connection piece;
[0013] The receiving piece is provided with a mounting station for mounting the rotating piece;
[0014] The cover can reciprocate synchronously with the electrical contact and around the rotating member to change the closing or opening range of the cover on the insertion port.
[0015] In one possible embodiment, the network cable terminal interface assembly further includes an energy storage device;
[0016] The energy storage component is disposed at the installation position and can act on the rotating component, so that the power receiving component and the cover component have a tendency to move toward the receiving groove cover.
[0017] When the cover is rotated to open or rotated to close the insertion port, the energy storage device can correspondingly increase or decrease its own potential energy.
[0018] In one possible embodiment, the installation station includes a rib assembly protruding from the receiving component;
[0019] The rib assembly has a through hole for inserting the rotating component and a receiving cavity for limiting and accommodating the energy storage component.
[0020] The energy storage component is sleeved on the outer periphery of the rotating component and is positioned and installed in the accommodating cavity.
[0021] In one possible embodiment, the cover member is further provided with a guide surface at the end corresponding to the insertion port;
[0022] The guide surface is configured as an inclined surface that slopes toward the inside of the receiving groove, so that the diameter of the insertion port gradually decreases along the insertion direction.
[0023] In one embodiment, the cover is provided with an insertion clip and an insertion recess;
[0024] The connector is provided with a receiving slot and a protruding plug;
[0025] When the cover is closed to the electrical connector, the insert head is inserted into the insertion hole and the protruding plug is inserted into the insertion recess.
[0026] In one possible embodiment, along the insertion direction, the power receiving part includes a terminal power receiving part and a busbar power receiving part arranged sequentially;
[0027] One end of the power-connecting pin is exposed in the power-connecting portion of the busbar, and the power-connecting pin can at least partially pass through the power-connecting portion of the busbar and protrude from the power-connecting portion of the terminal.
[0028] In one possible embodiment, the power connector is further provided with a barbed locking part;
[0029] The barb clamping part is arranged in the terminal electricity connecting part, and can limit and fix the network terminal barb inserted in the terminal electricity connecting part.
[0030] In an implementation manner, the receiving member comprises a bottom shell member and a cover shell member connected with each other in a covering manner;
[0031] The receiving groove is arranged in the bottom shell member or the cover shell member;
[0032] In the working condition of the receiving port into which the network terminal is inserted, the cover member can be flush with the bottom shell member or the cover shell member.
[0033] In addition, the present disclosure also provides an electronic device comprising the device shell and the network terminal interface assembly described above.
[0034] The receiving member is arranged in the device shell or is a part of the device shell.
[0035] Compared with the related art, the technical solution provided by the present disclosure has the following advantages:
[0036] The network terminal interface assembly provided by the present disclosure comprises a receiving groove arranged in the receiving member, and the electricity connecting member and the cover member are rotatably arranged in the receiving groove. In addition, the cover member can be rotated by the electricity connecting member to open or cover the receiving port. Therefore, when the network terminal is not inserted into the receiving port, the receiving port can be slightly opened or completely covered, which effectively avoids the problem of dust accumulation in the receiving groove. In addition, the cover member can completely cover the receiving port, so that the appearance of the receiving member is flat and beautiful.
[0037] In addition, the present disclosure also provides an electronic device comprising the network terminal interface assembly described above, which can realize all the beneficial effects of the network terminal interface assembly described above, and the details are not described herein.
[0038] It should be understood that the content described in this part is not intended to identify the key or important features of the embodiments of the present disclosure, nor is it used to limit the scope of the present disclosure. Other features of the present disclosure will become apparent through the following description. BRIEF DESCRIPTION OF DRAWINGS
[0039] The above and other objects, features and advantages of the exemplary embodiments of the present disclosure will be more apparent from the following detailed description taken in conjunction with the accompanying drawings. In the drawings, several embodiments of the present disclosure are shown by way of example and not limitation, in which:
[0040] In the drawings, the same or corresponding reference numerals indicate the same or corresponding parts.
[0041] Figure 1 A partial exploded view of the network cable terminal interface assembly is shown;
[0042] Figure 2 A partial assembly view of the network cable terminal interface assembly is shown;
[0043] Figure 3 Another perspective exploded view of the network cable terminal interface assembly is shown;
[0044] Figure 4 A schematic view of the power contact in the network cable terminal interface assembly is shown;
[0045] Figure 5 A connection view of the power contact in the network cable terminal interface assembly is shown;
[0046] Figure 6 A schematic view of the electronic device is shown.
[0047] Explanation of the reference signs in the drawing: 1, receiving member; 11, receiving groove; 111, receiving port; 12, mounting station; 13, bottom shell member; 14, cover shell member;
[0048] 2, power contact; 21, power contact portion; 211, terminal power contact portion; 212, wire harness power contact portion; 213, power contact pin; 22, receiving card hole; 23, protruding plug; 24, barbed clamping portion;
[0049] 3, cover member; 31, guide surface; 32, clamping head; 33, receiving recess;
[0050] 4, rotating member; 5, energy storage member; 6, device housing. DETAILED DESCRIPTION
[0051] In order to make the objectives, features and advantages of the present disclosure more obvious and easy to understand, the technical solutions in the embodiments of the present disclosure will be described clearly and completely below with reference to the drawings in the embodiments of the present disclosure. Obviously, the described embodiments are only part of the embodiments of the present disclosure, rather than all the embodiments. Based on the embodiments in the present disclosure, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present disclosure.
[0052] The embodiments of the present disclosure will be described in detail below with reference to the drawings.
[0053] In combination with Figure 1 , Figure 2 and Figure 3As shown, the embodiment of the present disclosure provides a network terminal interface assembly, which comprises a receiving member 1, an electrical connecting member 2 and a cover member 3; the receiving member 1 is provided with a receiving groove 11 in the receiving member 1 along a receiving direction; the electrical connecting member 2 is provided with an electrical connecting part 21 in the electrical connecting member 2 along the receiving direction, and the electrical connecting part 21 is provided with an electrical connecting pin 213 protruding from the electrical connecting part 21 for electrical connection; the cover member 3 is arranged on the outside of the electrical connecting member 2 along the receiving direction and covers the electrical connecting member 2;
[0054] Wherein, the electrical connecting member 2 is rotatably installed in the receiving groove 11; the cover member 3 can surround the receiving end port 111 of the receiving groove 11 with the receiving end to form a receiving end port 111 for the network terminal to be inserted, and the cover member 3 can rotate synchronously with the electrical connecting member 2 in the receiving groove 11 to open or cover the receiving end port 111.
[0055] The network terminal interface assembly provided by the embodiment of the present disclosure can be specifically but not limitedly applied to the network terminal interface of a notebook computer, an all-in-one computer or a computer.
[0056] When the network terminal interface assembly is assembled, first, the cover member 3 is arranged and covered on the outside of the electrical connecting member 2 along the receiving direction, and then the electrical connecting member 2 is rotatably installed in the receiving groove 11 of the receiving member 1 along the receiving direction, so that the cover member 3 can surround the receiving end of the receiving groove 11 to form a receiving end port 111 for the network terminal to be inserted, and the cover member 3 can rotate synchronously with the electrical connecting member 2 in the receiving groove 11 to open or cover the receiving end port 111.
[0057] Moreover, the electrical connecting part 21 in the electrical connecting member 2 can be electrically connected to the electrical element in the receiving member 1 through a cable, so that when the network terminal is inserted into the receiving end port 111, the network terminal can push and rotate the electrical connecting member 2, so as to drive the cover member 3 to rotate to further increase the opening amplitude of the receiving end port 111, so that the network terminal can enter the receiving groove 11 and be electrically connected to the electrical connecting pin 213 in the electrical connecting part 21, so as to realize the electrical connection between the network terminal and the electrical element; when the network terminal is pulled out of the receiving groove 11, the network terminal no longer pushes the electrical connecting member 2, so that the electrical connecting member 2 and the cover member 3 can be reset and rotated, and the cover member 3 can at least partially cover the receiving end port 111 to reduce the opening amplitude of the receiving end port 111 or completely cover the receiving end port 111, so as to avoid that the receiving end port 111 is directly and greatly exposed, so that the receiving end port 111 occupies a smaller space position in the working condition without the network terminal being inserted, and effectively avoids the problem of dust accumulation in the receiving groove 11.
[0058] In summary, the network terminal interface assembly provided by the embodiment of the present disclosure can drive the cover member 3 to rotate through the electrical connection member 2, and can open or cover the receiving port 111, so that the receiving port 111 in the network terminal interface assembly can be slightly opened or completely covered when the network terminal is not inserted, thereby effectively avoiding the problem of dirt accumulation in the receiving groove 11. When the network terminal interface assembly is applied to the electronic device shell, the receiving port 111 can be covered by the cover member 3, thereby avoiding being directly and greatly exposed, and the influence on the appearance of the electronic device shell is small.
[0059] In an implementation manner, the network terminal interface assembly further comprises a rotating member 4; the rotating member 4 is perpendicular to the receiving direction and is correspondingly connected to two opposite outer sides of the electrical connection member 2; the receiving member 1 is correspondingly provided with a mounting station 12 for mounting the rotating member 4; and the cover member 3 can be reciprocally rotated with the electrical connection member 2 and around the rotating member 4, so as to change the covering or opening amplitude of the cover member 3 to the receiving port 111.
[0060] Specifically, in combination with Figure 1 and Figure 4 Further detailed description, the rotating member 4 can be specifically but not limited to a rotating shaft, and the rotating shaft can be arranged in two opposite width outer sides which are perpendicular to the receiving direction and connected to the electrical connection member 2, and the receiving member 1 is further correspondingly provided with a mounting station 12 for mounting the rotating member 4, and the mounting station 12 can be but not limited to a mounting hole for mounting the rotating shaft.
[0061] In this way, when the network terminal is correspondingly inserted into the receiving port 111, the network terminal can correspondingly push the electrical connection member 2, and make the electrical connection member 2 rotate around the rotating shaft, so as to correspondingly drive the cover member 3 to rotate and further increase the opening amplitude of the receiving port 111; in this way, when the network terminal is pulled out of the receiving groove 11, the network terminal no longer pushes the electrical connection member 2, and the electrical connection member 2 and the cover member 3 can be reversely reset and rotated around the rotating shaft, and the cover member 3 can cover the receiving port 111 by a certain amplitude or completely.
[0062] The specific arrangement of the rotating member 4 and the mounting station 12 has the advantages of simple structure and can effectively realize the rotation of the cover member 3 to increase or decrease the opening of the receiving port 111.
[0063] In an implementation manner, the network terminal interface assembly further comprises an energy storage member 5; the energy storage member 5 is arranged in the mounting station 12 and can act on the rotating member 4, so that the electrical connection member 2 and the cover member 3 have a tendency to cover the receiving groove 11; in the working condition of rotating opening or rotating covering the receiving port 111, the energy storage member 5 can correspondingly increase or correspondingly decrease its potential energy.
[0064] Specifically, in combination withFigure 1 and Figure 4 In further detail, the energy storage member 5 can be specifically but not limited to a torsion spring, and the energy storage member 5 can be correspondingly sleeved on the outer circumferential portion of the rotating member 4, so that the torsion spring can apply a continuous torque to the electrical connection member 2 through the rotating member 4 under the action of its torsion force, and make the electrical connection member 2 and the cover member 3 have a tendency to cover the receiving slot 11, so that when the network terminal interface assembly is not plugged into the network terminal, the cover member 3 can continuously cover the receiving port 111.
[0065] Moreover, when the network terminal is inserted into the receiving port 111, the torsion torque of the torsion spring can be temporarily overcome, so that the energy storage member 5 can correspondingly increase its elastic potential energy, and make the cover member 3 rotate to further increase the opening amplitude of the receiving port 111; when the network terminal is pulled out of the receiving port 111, the energy storage member 5 can quickly release its elastic potential energy, so that the cover member 3 can quickly rotate to reset, and realize automatic and rapid covering of the receiving port 111.
[0066] The specific arrangement of the energy storage member 5 has the beneficial effects of simple structure and continuously covering the receiving port 111 by the cover member 3 in normal state.
[0067] In an implementable manner, the installation station 12 includes a rib plate assembly protruding from the receiving member 1; the rib plate assembly is provided with a through hole for inserting the rotating member 4 and a containing cavity for limiting and containing the energy storage member 5; the energy storage member 5 is sleeved on the outer circumferential portion of the rotating member 4 and is limited and installed in the containing cavity.
[0068] Specifically, in combination with Figure 3 In further detail, the installation station 12 is specifically arranged as a rib plate assembly protruding from the receiving member 1, and the rib plate assembly can be correspondingly and spacedly arranged on both sides of the receiving slot 11, and the through holes in the rib plate assembly can be correspondingly and respectively inserted and installed by the rotating members 4 on both sides of the electrical connection member 2.
[0069] In addition, the rib plate assembly can also be correspondingly and spacedly formed with a containing cavity for limiting and containing the energy storage member 5, so that the energy storage member 5 can be arranged in the installation station 12 by being sleeved on the outer circumferential portion of the rotating member 4 and being installed in the containing cavity.
[0070] The specific arrangement of the installation station 12 has the beneficial effects of simple structure and stable limiting and installation of the rotating member 4 and the energy storage member 5.
[0071] In an implementable manner, the cover member 3 is further provided with a guide surface 31 at a side corresponding to the receiving port 111; the guide surface 31 is arranged as an inclined surface inclined towards the inside of the receiving slot 11, so as to gradually reduce the caliber of the receiving port 111 along the receiving direction.
[0072] Specifically, in combination withFigure 4 Further in detail, the cover 3 is further provided with a guide surface 31 at the end corresponding to the receiving port 111, which can be a flat strip surface and inclined towards the inside of the receiving groove 11, so that the receiving port 111 can correspondingly form a gradually reduced caliber in the receiving direction. Thus, when the network terminal is inserted into the receiving port 111 in the receiving direction, the guide surface 31 can correspondingly guide the network terminal to slide, so that the network terminal can be more efficiently inserted into the receiving groove 11 through the receiving port 111.
[0073] Of course, the guide surface 31 can also be correspondingly provided as a concave arc surface or a convex arc surface, as long as it can gradually reduce the caliber of the receiving port 111 in the receiving direction.
[0074] In an implementation manner, the cover 3 is provided with an insertion clamping head 32 and a receiving recess 33; the electrical connection member 2 is provided with a receiving clamping hole 22 and a protruding plug 23; in the working condition that the cover 3 covers the electrical connection member 2, the insertion clamping head 32 is clamped and inserted into the receiving clamping hole 22, and the protruding plug 23 is clamped and inserted into the receiving recess 33.
[0075] Specifically, in combination with Figure 1 and Figure 3 Further in detail, the insertion clamping head 32 can be specifically but not limitedly provided as a protrusion along the thickness direction of the cover 3, the receiving recess 33 can be specifically but not limitedly provided as a recess along the thickness direction of the cover 3, the receiving clamping hole 22 can be correspondingly provided along the thickness direction of the electrical connection member 2, and the protruding plug 23 can be specifically but not limitedly provided as a protrusion along the length direction of the electrical connection member 2. Thus, when the cover 3 is installed to cover the electrical connection member 2, the receiving recess 33 in the cover 3 can be first clamped and inserted into the protruding plug 23 in the electrical connection member 2 along the length direction, and then the insertion clamping head 32 in the cover 3 can be clamped and inserted into the receiving clamping hole 22 in the electrical connection member 2 along the thickness direction. Through clamping and insertion in two different directions, the covering stability and firmness of the cover 3 to the electrical connection member 2 can be fully ensured.
[0076] In an implementation manner, along the receiving direction, the electrical connection part 21 includes a terminal electrical connection part 211 and a wire row electrical connection part 212 arranged in sequence; one end of the electrical connection pin 213 is exposed to the wire row electrical connection part 212, and the electrical connection pin 213 can at least partially pass through the wire row electrical connection part 212 and protrude from the terminal electrical connection part 211.
[0077] Specifically, in combination with Figure 4 and Figure 5In further detail, the terminal connecting part 21 is provided with a terminal connecting part 211 and a wire connecting part 212 in sequence along the insertion direction, and one end of the terminal pin 213 is exposed to the wire connecting part 212, so that the wire can be directly connected to the one end of the terminal pin 213 to realize the electrical connection between the terminal connecting part 21 and the electronic element in the receiving part 1; in addition, the terminal pin 213 can at least partially pass through the wire connecting part 212 and protrude from the terminal connecting part 211, so that the terminal pin 213 protruding from the terminal connecting part 211 can be used for electrical connection with the network terminal inserted into the receiving groove 11, thereby realizing the electrical connection of the network terminal-receiving part 2-electronic element in sequence.
[0078] In addition, when the network terminal is pulled out of the receiving groove 11, the terminal pin 213 in the terminal connecting part 211 can be separated from the network terminal, so that the connection can be disconnected.
[0079] The specific arrangement of the terminal connecting part 21 and the terminal pin 213 has the beneficial effects of simple structure, convenient connection and convenient separation with the network terminal.
[0080] In an embodiment, the receiving part 2 is further provided with a barb clamping part 24; the barb clamping part 24 is protrudingly arranged in the terminal connecting part 211 and can limit and fix the network terminal inserted into the terminal connecting part 211.
[0081] Specifically, in combination with Figure 4 and Figure 5 In further detail, the barb clamping part 24 can be but not limited to a plurality of clamping platforms arranged side by side and spaced apart from each other, and the height of the clamping platforms arranged towards the insertion port 111 gradually decreases, so that when the network terminal is inserted into the receiving groove 11, the clamping platforms can form a barb clamping with the stop groove in the network terminal, so that the network terminal can be limited and fixed in the receiving groove 11, thereby improving the connection firmness of the network terminal.
[0082] In an embodiment, the receiving part 1 includes a bottom shell part 13 and a cover shell part 14 connected with each other; the receiving groove 11 is formed in the bottom shell part 13 or the cover shell part 14; under the working condition of the insertion port 111 into which the network terminal is inserted, the cover part 3 can be flush with the bottom shell part 13 or the cover shell part 14.
[0083] Specifically, in combination with Figure 2 and Figure 3In further detail, the receiving member 1 is specifically configured as a bottom shell member 13 and a cover shell member 14 connected with each other in a covering manner, and the receiving groove 11 is correspondingly formed in the bottom shell member 13, so that when the cover shell member 14 covers the bottom shell member 13, the receiving groove 11 on the bottom side of the receiving member 1 is downwardly open, and the cover member 3 in the network cable terminal interface assembly can be movably arranged in the receiving groove 11 of the bottom shell member 13, and in the working condition of the network cable terminal inserted into the receiving port 111, the cover member 3 can be flush with the bottom shell member 13, so as to ensure that the appearance of the bottom shell member 13 is flat and beautiful.
[0084] In addition, the electronic device provided by the embodiment of the present disclosure comprises the device shell 6 and the network cable terminal interface assembly described above, and the receiving member 1 is arranged in the device shell 6 or is a part of the device shell 6.
[0085] Specifically, in combination with Figure 6 In further detail, the electronic device can be specifically but not limited to a notebook computer, and of course, the electronic device can also be an all-in-one computer or a computer host. Since the electronic device comprises the network cable terminal interface assembly described above, all the beneficial effects of the network cable terminal interface assembly can be achieved, and no additional description is given here.
[0086] In addition, the terms "first", "second" are only used for description purposes, and cannot be understood as indicating or implying relative importance or implicitly indicating the number of the indicated technical features. Therefore, the features defined as "first" and "second" can explicitly or implicitly include at least one of the features. In the description of the present disclosure, the meaning of "a plurality of" is two or more, unless otherwise specifically limited.
[0087] The above is only a specific embodiment of the present disclosure, but the protection scope of the present disclosure is not limited thereto, and any person skilled in the art can easily think of changes or replacements within the technical range disclosed by the present disclosure, which should be covered within the protection scope of the present disclosure. Therefore, the protection scope of the present disclosure should be subject to the protection scope of the claims.
Claims
1. A network cable terminal interface assembly, characterized in that, include: The receiving part (1) has a receiving groove (11) in the receiving part (1) along the insertion direction; The power connector (2) is provided with a power receiving part (21) along the insertion direction, and the power receiving part (21) is provided with a power receiving pin (213) for power connection. The cover (3) is provided along the insertion direction and covers the outside of the electrical connector (2); The electrical connector (2) is rotatably mounted in the receiving groove (11); The cover (3) can form a receiving port (111) for inserting network cable terminals with the receiving end of the receiving groove (11), and the cover (3) can rotate synchronously with the power receiving member (2) in the receiving groove (11) to open or close the receiving port (111) accordingly.
2. The network cable terminal interface assembly according to claim 1, characterized in that, It also includes a rotating component (4); The rotating member (4) is perpendicular to the insertion direction and is connected to the two opposite outer sides of the electrical connector (2); The receiving component (1) is provided with a corresponding installation station (12) for installing the rotating component (4); The cover (3) can reciprocate synchronously with the power receiving member (2) and around the rotating member (4) to change the closing or opening range of the cover (3) on the insertion port (111).
3. The network cable terminal interface assembly according to claim 2, characterized in that, It also includes energy storage components (5); The energy storage component (5) is disposed at the installation station (12) and can act on the rotating component (4) so that the power connection component (2) and the cover component (3) have a tendency to move towards the receiving groove (11) to close; When the cover (3) is rotated to open or rotated to close the insertion port (111), the energy storage device (5) can correspondingly increase or decrease its own potential energy.
4. The network cable terminal interface assembly according to claim 3, characterized in that, The installation station (12) includes a rib plate assembly protruding from the receiving part (1); The rib assembly has a through hole for inserting the rotating part (4) and a cavity for limiting and accommodating the energy storage part (5); The energy storage component (5) is sleeved on the outer periphery of the rotating component (4) and is limited and installed in the accommodating cavity.
5. The network cable terminal interface assembly according to claim 1, characterized in that, The cover (3) is further provided with a guide surface (31) at the end corresponding to the insertion port (111); The guide surface (31) is configured as an inclined surface that is inclined toward the inside of the receiving groove (11) so that the diameter of the insertion port (111) gradually decreases along the insertion direction.
6. The network cable terminal interface assembly according to claim 5, characterized in that, The cover (3) is provided with an insertion clip (32) and an insertion recess (33); The electrical connector (2) is provided with a receiving card hole (22) and a protruding plug (23); When the cover (3) covers the electrical connector (2), the insert head (32) is inserted into the insertion hole (22), and the protruding plug (23) is inserted into the insertion recess (33).
7. The network cable terminal interface assembly according to claim 1, characterized in that, Along the insertion direction, the power receiving part (21) includes a terminal power receiving part (211) and a busbar power receiving part (212) arranged sequentially; One end of the power-connecting pin (213) is exposed in the power-connecting portion (212) of the busbar, and the power-connecting pin (213) can at least partially pass through the power-connecting portion (212) of the busbar and protrude from the terminal power-connecting portion (211).
8. The network cable terminal interface assembly according to claim 7, characterized in that, The electrical connector (2) is also provided with a barbed snap-fit part (24); The barb mounting part (24) is protruding in the terminal contact part (211) and can limit and fix the barb of the network cable terminal inserted in the terminal contact part (211).
9. The network cable terminal interface assembly according to any one of claims 1 to 8, characterized in that, The receiving component (1) includes a bottom shell component (13) and a cover shell component (14) that are connected to each other; The receiving groove (11) is formed in the bottom shell (13) or the cover shell (14); When the network cable terminal is inserted into the insertion port (111), the cover (3) can be flush with the bottom shell (13) or the cover shell (14).
10. An electronic device, characterized in that, Includes a device housing (6) and a network cable terminal interface assembly as described in any one of claims 1 to 9; The receiving component (1) is disposed in the equipment housing (6), or the receiving component (1) is part of the equipment housing (6).