Connector female seat, installation method and electronic equipment
By designing a slidable anti-stupid structure and pin component switching mechanism, the forward and reverse plug-in function of the USB interface is realized, solving the problem that existing USB interfaces can only be inserted in one direction, and improving user convenience and connection stability.
Patent Information
- Application Number
- CN202510479737.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-16
- Publication Date
- 2025-08-08
AI Technical Summary
The existing USB interface is designed as a stupid-proof interface and can only be inserted in one direction, which makes it difficult for users to insert correctly in a narrow space or unclear view, causing inconvenience and risk of connection damage.
A connector mother seat is designed, including a support structure, anti-fixion structure, contact plate assembly and pin assembly. Through the sliding of the anti-fixion structure and the electrical connection and switching between the pin assembly and the different touch panel groups, the forward and reverse plugging function of the connector seat is realized to ensure the stable transmission of signals and power.
It improves user convenience, reduces the waste of time and risk of connection damage caused by wrong plug-in and unplugging directions, and ensures stable transmission of signals and power supplies.
Smart Images

Figure CN120453797A_ABST
Abstract
Description
Technical Field
[0001] The present disclosure relates to the field of interface technology, and in particular to a connector socket, an installation method, and an electronic device. Background Art
[0002] Among computer ports, the Universal Serial Bus (USB) interface is one that requires frequent plugging and unplugging. Existing USB interfaces are designed to be foolproof, allowing the male USB port to be plugged in one way only and preventing reverse insertion. However, in actual use, especially in limited computer space or with poor visibility, such as with USB ports on the back of a computer case, users must repeatedly try to correctly insert the male USB port into the female USB port, causing significant inconvenience. Summary of the Invention
[0003] The present disclosure provides a connector socket, an installation method and an electronic device to at least solve the above technical problems existing in the prior art.
[0004] In a first aspect of the present disclosure, a connector female socket is provided, comprising:
[0005] Support structure;
[0006] A fool-proof structure is slidably arranged along the height direction of the support structure, and the fool-proof structure is provided with a through avoidance groove;
[0007] A contact assembly is plugged into the support structure and placed in the avoidance groove, wherein the contact assembly and the foolproof structure can slide relative to each other along the height direction;
[0008] A pin assembly, welded to one end of the contact assembly that is plugged into the support structure;
[0009] A first touch panel group and a second touch panel group are fixedly mounted on the rear cover of the connector female socket, and the first touch panel group is electrically connected to the second touch panel group;
[0010] In which, the anti-foolproof structure has a first position and a second position in the height direction. When the anti-foolproof structure is in the first position, the anti-foolproof structure interacts with the pin assembly, causing the pin assembly to elastically deform and electrically connect to the first touch pad group; when the anti-foolproof structure is acted upon by an external force and is in the second position, the anti-foolproof structure is separated from the pin assembly, causing the pin assembly to be electrically connected to the second touch pad group under the action of a restoring force.
[0011] In one embodiment, the fool-proofing structure is provided with a switching rod along the width direction, and the switching rod is located on the side of the support structure away from the avoidance groove. When the fool-proofing structure is in the first position, the fool-proofing structure squeezes the pin assembly through the switching rod.
[0012] In one embodiment, a conversion groove is provided on the support structure along the height direction, and a sliding groove is provided on a side wall of the conversion groove;
[0013] The fool-proof structure is formed with a guide portion, on which a sliding block is provided that cooperates with the sliding groove. The guide portion is located in the conversion groove and can slide along the conversion groove.
[0014] In one embodiment, an elastic member is provided at the bottom of the conversion groove, and the elastic member has a normal state and a compressed state. When the anti-foolproof structure is in a first position, the elastic member is in a normal state; when the anti-foolproof structure is in a second position under the action of external force, the elastic member is in a compressed state.
[0015] In one embodiment, a pressing groove is provided in the avoidance groove at one end away from the supporting structure, and the pressing groove extends along the height direction to limit the relative movement of the contact assembly and the fool-proof structure in the height direction.
[0016] In one embodiment, the contact assembly includes a plurality of contacts arranged at intervals, one end of the contact is inserted into the support structure, the other end of the contact is inserted into the pressing groove, and two protrusions are formed on the contact, and the two protrusions are symmetrically arranged along the height direction.
[0017] In one embodiment, an arc-shaped guide surface is formed on one end of the fool-proof structure away from the supporting structure.
[0018] In one embodiment, the device further includes a shell, on which a spring is provided, and the shell, the supporting structure and the back cover are connected.
[0019] A second aspect of the present disclosure provides a method for installing a connector socket, comprising the following steps:
[0020] Slidingly connect the guide portion of the foolproof structure with the conversion slot of the support structure;
[0021] Insert one end of the contact assembly into the support structure and the other end into the pressure groove of the anti-foolproof structure;
[0022] Inserting the pin assembly and the contact assembly into one end of the support structure and welding them;
[0023] fixing the first touch panel group and the second touch panel group on the back cover;
[0024] The outer shell is sleeved on the outer periphery of the fool-proof structure and inserted on the supporting structure, and the outer shell, the supporting structure and the back cover are fixedly connected.
[0025] According to a third aspect of the present disclosure, an electronic device is provided, comprising the connector socket as described in the above-mentioned embodiment.
[0026] The disclosed female connector achieves reversible insertion and reversible operation of the male connector through the sliding of a fool-proof structure and the switching of electrical connections between the pin assembly and different contact pad groups. This significantly improves user convenience and reduces the time wasted and risk of connection damage caused by incorrect insertion and removal directions. During the reversible insertion process, a design of an avoidance groove that runs through the fool-proof structure ensures reliable contact between the contact assembly and the male connector. The design of the pin assembly, first contact pad group, and second contact pad group ensures stable signal and power transmission, avoiding signal interruption and transmission errors.
[0027] It should be understood that the contents described in this section are not intended to identify the key or important features of the embodiments of the present disclosure, nor are they intended to limit the scope of the present disclosure. Other features of the present disclosure will become readily understood through the following description. BRIEF DESCRIPTION OF THE DRAWINGS
[0028] The above and other objects, features and advantages of the exemplary embodiments of the present disclosure will become readily understood by reading the detailed description below with reference to the accompanying drawings, in which several embodiments of the present disclosure are shown by way of example and not limitation, wherein:
[0029] In the drawings, the same or corresponding reference numerals denote the same or corresponding parts.
[0030] Figure 1 The figure shows the overall structure of a female connector according to an embodiment of the present disclosure;
[0031] Figure 2 An exploded view of a connector socket according to an embodiment of the present disclosure is shown;
[0032] Figure 3 A partial cross-sectional view of a connector female socket according to an embodiment of the present disclosure is shown;
[0033] Figure 4 An exploded view of the internal structure of a connector socket according to an embodiment of the present disclosure is shown;
[0034] Figure 5 A schematic structural diagram of a connector female socket according to an embodiment of the present disclosure is shown when the foolproof structure is in a first position;
[0035] Figure 6A schematic structural diagram of a connector female socket according to an embodiment of the present disclosure is shown when the foolproof structure is in the second position;
[0036] Figure 7 A schematic diagram showing the position conversion of a pin assembly of a connector socket according to an embodiment of the present disclosure is shown;
[0037] Figure 8 A partial side view of a connector socket according to an embodiment of the present disclosure is shown;
[0038] Figure 9 A schematic diagram of the overall structure of a connector male socket plugged into a connector female socket according to an embodiment of the present disclosure is shown.
[0039] Explanation of the accompanying drawings: 1. Support structure; 2. Anti-foolproof structure; 3. Contact assembly; 4. Pin assembly; 5. First touch panel group; 6. Second touch panel group; 7. Back cover; 8. Housing; 9. Connector male socket; 11. Conversion slot; 12. Slide slot; 21. Avoidance slot; 22. Switching lever; 23. Guide part; 24. Slider; 25. Elastic part; 26. Pressing groove; 27. Arc-shaped guide surface; 31. Contact; 61. Intercepting plate; 81. Spring piece; 91. Anti-foolproof plate; 92. Slot; 311. Protrusion; 312. Pressing part. DETAILED DESCRIPTION
[0040] To make the purposes, features, and advantages of the present disclosure more apparent and understandable, the technical solutions in the embodiments of the present disclosure will be clearly and completely described below in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present disclosure, not all of them. All other embodiments obtained by those skilled in the art based on the embodiments of the present disclosure without creative work shall fall within the scope of protection of the present disclosure.
[0041] Reference Figure 1 、 Figure 2 、 Figure 3 、 Figure 5 、 Figure 6 and Figure 9As shown, a connector female socket according to an embodiment of the present disclosure is shown, comprising a support structure 1, an anti-fool structure 2, a contact assembly 3, a pin assembly 4, a first touch panel group 5 and a second touch panel group 6. The anti-fool structure 2 is arranged to slide along the height direction of the support structure 1, and the anti-fool structure 2 is provided with a through avoidance groove 21. The contact assembly 3 is plugged into the support structure 1 and placed in the avoidance groove 21. The contact assembly 3 and the anti-fool structure 2 can slide relative to each other along the height direction. The pin assembly 4 is welded to one end of the contact assembly 3 that is plugged into the support structure 1. The first touch panel group 5 and the second touch panel group 6 are fixedly mounted on the back cover 7 of the connector female socket, and the first touch panel group 5 is electrically connected to the second touch panel group 6. Among them, the anti-foolproof structure 2 has a first position and a second position in the height direction. When the anti-foolproof structure 2 is in the first position, the anti-foolproof structure 2 interacts with the pin assembly 4, causing the pin assembly 4 to elastically deform and electrically connect to the first touch panel group 5; when the anti-foolproof structure 2 is acted upon by an external force and is in the second position, the anti-foolproof structure 2 is separated from the pin assembly 4, causing the pin assembly 4 to be electrically connected to the second touch panel group 6 under the action of the restoring force.
[0042] In this embodiment, the support structure 1 is used to fix and support the various components of the connector female seat to ensure that the relative position relationship between the various components is stable. The anti-fool structure 2 has a first position and a second position in the height direction, and cooperates with the pin assembly 4 to realize the electrical connection switching between the pin assembly 4 and different contact plate groups. Since the connector male seat 9 is provided with an anti-fool plate 91, when the connector male seat 9 is inserted into the connector female seat in the normal direction, the anti-fool structure 2 of the connector female seat is in the first position, and the anti-fool plate 91 of the connector male seat 9 is plugged under the anti-fool structure 2; when the connector male seat 9 is inserted into the connector female seat in the reverse direction, the anti-fool structure 2 moves to the second position under the external force of the anti-fool plate 91 of the connector male seat 9. The contact assembly 3 and the anti-fool structure 2 can slide relative to each other in the height direction, and the contact assembly 3 is used to realize electrical connection with the corresponding contacts on the connector male seat 9, thereby completing the transmission of signals and power. Specifically, since the contact assembly 3 is placed in the avoidance groove 21, and the avoidance groove 21 passes through the anti-foolproof structure 2 and is hollowed out, the upper and lower surfaces of the contact assembly 3 are both connected to the outside of the anti-foolproof structure 2. When the connector male seat 9 is inserted into the connector female seat in the normal direction, the corresponding contacts on the connector male seat 9 can make electrical contact with the lower surface of the contact assembly 3. When the connector male seat 9 is inserted into the connector female seat in the reverse direction, the position of the contact assembly 3 remains unchanged. It is only that the anti-foolproof structure 2 is moved to the second position by external force, and the corresponding contacts on the connector male seat 9 can make electrical contact with the upper surface of the contact assembly 3. The pin assembly 4 is elastic and is welded to the end of the contact assembly 3 that is plugged into the support structure 1. When the anti-foolproof structure 2 is in different positions, the pin assembly 4 will undergo elastic deformation or achieve electrical connection with different contact plate groups under the action of the restoring force. Specifically, the first touch panel group 5 and the second touch panel group 6 are arranged along the length direction of the connector socket, and the second touch panel group 6 is located between the support structure 1 and the first touch panel group 5. The first touch panel group 5 includes a plurality of first touch panels, and the plurality of first touch panels are arranged side by side along the width direction of the connector socket. The second touch panel group 6 includes a plurality of second touch panels, and the plurality of second touch panels are arranged side by side along the width direction of the connector socket. Taking the example that the number of the first touch panels and the second touch panels are both four, the first touch panels can be set as the positive power supply electrode, the positive data electrode, the negative data electrode, and the negative power supply electrode from left to right. Correspondingly, the second touch panels can be set as the negative power supply electrode, the negative data electrode, the positive data electrode, and the positive power supply electrode from left to right. The uniformly defined first touch panels and the second touch panels are interconnected by leads to match the change in signal polarity when the connector male socket 9 is plugged in forward and reverse, ensuring that the power supply and data signals can be transmitted along the correct path under different plugging conditions.
[0043] In summary, the connector female socket of the present disclosure achieves the forward and reverse plugging function of the connector male socket 9 through the sliding of the anti-foolproof structure 2 and the switching of the electrical connection between the pin assembly 4 and different contact pad groups, greatly improving user convenience and reducing the time wasted and the risk of connection damage caused by incorrect plugging and unplugging directions. During the forward and reverse plugging process, the avoidance groove 21 designed to penetrate the anti-foolproof structure 2 ensures reliable contact between the contact assembly 3 and the connector male socket 9. The design of the pin assembly 4, the first contact pad group 5, and the second contact pad group 6 ensures stable transmission of signals and power, avoiding signal interruption and transmission errors.
[0044] Reference Figure 4 、 Figure 7 and Figure 8 As shown, in one embodiment, the anti-fool structure 2 is provided with a switching rod 22 along the width direction, and the switching rod 22 is located on the side of the support structure 1 away from the avoidance groove 21. When the anti-fool structure 2 is in the first position, the anti-fool structure 2 squeezes the pin assembly 4 through the switching rod 22.
[0045] In this embodiment, the switching rod 22 is located on the side of the support structure 1 away from the avoidance groove 21, so that the switching rod 22 can accurately interact with the pin assembly 4 during the movement of the anti-fool structure 2. When the anti-fool structure 2 is in the first position, the anti-fool structure 2 squeezes the pin assembly 4 through the switching rod 22, causing the pin assembly 4 to elastically deform, thereby achieving electrical connection with the first contact plate group 5. At this time, if the connector male seat 9 is inserted in the normal direction, the contact assembly 3 and the contacts on the connector male seat 9 are in normal contact, and power and signals can be transmitted smoothly. When the connector male seat 9 is inserted in the reverse direction, the anti-fool plate 91 of the connector male seat 9 will apply external force to the anti-fool structure 2, causing the anti-fool structure 2 to move to the second position in the height direction. During this process, the anti-fool structure 2 is separated from the pin assembly 4, and the switching rod 22 no longer squeezes the pin assembly 4. The pin assembly 4 recovers its deformation under the action of its own restoring force and achieves electrical connection with the second touch plate group 6. Since the first touch panel group 5 and the second touch panel group 6 are pre-set by a specific circuit connection method, whether the connector male socket 9 is inserted forward or backward, it can ensure that the power and signal are transmitted along the correct path. Figure 7 As shown, in order to facilitate the switching of the pin assembly 4 between the first touch pad group 5 and the second touch pad group 6, the first touch pad group 5 and the second touch pad group 6 are located on the arc surface of the same circle, wherein the circle takes the welding point of the pin assembly 4 and the contact sheet assembly 3 as the center and the length of the pin assembly 4 as the radius, thereby preventing the contact pad group from blocking the pin assembly 4 from switching. In addition, referring to Figure 8As shown, the second touch panel group 6 can also be designed to have a structure with an intercepting plate 61. When the pin assembly 4 rebounds under the action of the restoring force to contact the second touch panel group 6, the pin assembly 4 stops moving after touching the intercepting plate 61, thereby completing the electrical connection with the second touch panel group 6.
[0046] In one embodiment, a conversion slot 11 is formed in the height direction of the support structure 1, and a slide slot 12 is formed on the side wall of the conversion slot 11. The foolproof structure 2 is formed with a guide portion 23, and a slider 24 is provided on the guide portion 23 to cooperate with the slide slot 12. The guide portion 23 is located in the conversion slot 11 and can slide along the conversion slot 11.
[0047] In this embodiment, the design of the conversion groove 11 provides space for the movement of the anti-fool structure 2. A slide groove 12 is provided on the side wall of the conversion groove 11. The function of the slide groove 12 is to cooperate with the corresponding components on the anti-fool structure 2 to accurately guide and limit the sliding of the anti-fool structure 2. The guide portion 23 is located in the conversion groove 11. Under the interaction between the slider 24 and the slide groove 12, the guide portion 23 can slide smoothly along the conversion groove 11. This design makes the sliding of the anti-fool structure 2 on the support structure 1 more stable and precise, and effectively avoids the shaking, offset and other situations of the anti-fool structure 2 during movement. When the connector male socket 9 is inserted, the anti-fool structure 2 can accurately move to the corresponding position in the conversion groove 11 according to the insertion direction and force of the male socket, and realize the correct cooperation with other components such as the pin assembly 4, thereby completing the switching of the signal transmission path.
[0048] Reference Figure 5 and Figure 6 As shown, in one embodiment, an elastic member 25 is provided at the bottom of the conversion slot 11, and the elastic member 25 has a normal state and a compressed state. When the anti-foolproof structure 2 is in the first position, the elastic member 25 is in the normal state; when the anti-foolproof structure 2 is in the second position under the action of external force, the elastic member 25 is in the compressed state.
[0049] In this embodiment, the elastic member 25 may be a spring or a rubber dome. When the elastic member 25 is in a normal state, the elastic member 25 acts on the anti-foolproof structure 2 to keep the anti-foolproof structure 2 in the first position. At this time, if the connector male socket 9 is inserted in the normal direction, the anti-foolproof structure 2 remains in the first position, and the contacts on the connector male socket 9 are in close contact with the contact assembly 3 to achieve electrical connection. If the connector male socket 9 is inserted in the reverse direction, the anti-foolproof structure 2 is pushed to move to the second position, and the elastic member 25 is compressed into a compressed state. During this process, the pin assembly 4 is separated from the first contact plate group 5 and electrically connected to the second contact plate group 6. When the connector male socket 9 is removed, the elastic member 25 returns to its normal state due to its own elastic potential energy, pushing the anti-foolproof structure 2 automatically back to the first position along the conversion slot 11, ensuring that the connector female socket returns to its initial state and is ready for the next use.
[0050] Reference Figure 4 As shown, in one embodiment, a pressing groove 26 is provided in the avoidance groove 21 at one end away from the support structure 1 , and the pressing groove 26 extends in the height direction to limit the relative movement of the contact assembly 3 and the foolproof structure 2 in the height direction.
[0051] In this embodiment, the pressure groove 26 is used to limit the relative movement of the contact assembly 3 and the anti-fool structure 2 in the height direction. A portion of the contact assembly 3 is located within the avoidance groove 21 and interacts with the pressure groove 26. When the anti-fool structure 2 slides on the support structure 1, the pressure groove 26 prevents the free end of the contact assembly 3 from moving outside the avoidance groove 21. The pressure groove 26 limits the free end of the contact assembly 3, preventing the male connector 9 from being blocked by the free end of the contact assembly 3 when inserted into the female connector.
[0052] In one embodiment, the contact assembly 3 includes a plurality of contacts 31 arranged at intervals, one end of the contact 31 is inserted into the support structure 1, and the other end of the contact 31 is inserted into the pressing groove 26. Two protrusions 311 are formed on the contact 31, and the two protrusions 311 are symmetrically arranged along the height direction.
[0053] In this embodiment, the spaced contacts 31 can effectively prevent mutual interference between the contacts 31, ensuring the independence and accuracy of signal transmission. One end of each contact 31 is inserted into the support structure 1 and welded to the pin in the corresponding pin assembly 4, and the other end is inserted into the pressing groove 26. The pressing groove 26 precisely limits the position of the contact 31 to prevent excessive relative movement between the contact 31 and the anti-foolproof structure 2. The contact 31 is composed of two sets of metal sheets that are symmetrical in the upper and lower parts. The ends of the two sets of metal sheets away from the support structure 1 are bent away from each other to form a protrusion 311, and then merged to form a pressing portion 312. The pressing portion 312 is located in the pressing groove 26 and can slide up and down relative to the pressing groove 26.
[0054] In one embodiment, an arc-shaped guide surface 27 is formed on one end of the fool-proof structure 2 away from the supporting structure 1 .
[0055] In this embodiment, the curved guide surface 27 provides excellent guidance, allowing the male connector 9 to gradually align with the correct insertion position of the female connector during insertion, regardless of any deviation in the male connector's insertion angle. This allows for smoother insertion of the male connector 9. For example, when the male connector 9 is inserted in the reverse direction, the curved guide surface 27 guides the male connector 9, causing the foolproof structure 2 to move to the second position, electrically connecting the pin assembly 4 to the second contact pad group 6, ensuring proper signal transmission even during reverse insertion. The entire process effectively protects the internal structure of the connector.
[0056] Reference Figure 1 and Figure 9 As shown, in one embodiment, the connector socket further includes a shell 8 , on which a spring 81 is provided, and the shell 8 , the support structure 1 and the back cover 7 are connected.
[0057] In this embodiment, the male connector 9 is provided with a slot 92 corresponding to the spring 81. When the male connector 9 is inserted, the spring 81 and the slot 92 cooperate to provide a certain elastic clamping force, making the connection between the male and female connectors tighter, preventing loosening during use, and effectively improving the stability of the connection. The shell 8, support structure 1, and back cover 7 are interconnected to form a stable whole, enhancing the structural strength of the female connector. At the same time, the enveloping shell 8 also provides protection for the internal components, reducing the erosion of the female connector by external factors such as dust and moisture, and can extend the service life of the female connector.
[0058] The present disclosure also provides a method for installing a connector female socket, comprising the following steps:
[0059] S1. Slidingly connect the guide portion 23 of the foolproof structure 2 to the conversion slot 11 of the support structure 1;
[0060] S2. Connect one end of the contact assembly 3 to the support structure 1 and the other end to the pressing groove 26 of the anti-foolproof structure 2;
[0061] S3, plug the pin assembly 4 and the contact assembly 3 into one end of the support structure 1 and weld them;
[0062] S4, fixing the first touch panel group 5 and the second touch panel group 6 on the back cover 7;
[0063] S5. Slide the outer shell 8 onto the outer periphery of the fool-proof structure 2 and insert it onto the support structure 1, and fix the outer shell 8, the support structure 1 and the back cover 7 together.
[0064] In this embodiment, in S1, it is necessary to set the elastic member 25 at the bottom of the conversion groove 11 to ensure that the elastic member 25 is firmly installed and will not loosen or fall off. Then, it is necessary to ensure that the guide portion 23 can slide smoothly into the conversion groove 11, and the slider 24 on the guide portion 23 is tightly matched with the slide groove 12 on the side wall of the conversion groove 11, so that the anti-fool structure 2 can slide stably on the support structure 1. In S2, when plugging the contact assembly 3 and the support structure 1, it is necessary to confirm the position and angle of the contact assembly 3 to ensure that the contact assembly 3 is tightly matched with the support structure 1 and the anti-fool structure 2 to avoid loosening or offset. In S3, the pin assembly 4 and the contact assembly 3 are welded through one end of the support structure 1. During welding, it is necessary to use appropriate welding technology and equipment to ensure welding quality. The welding points should be firm and reliable to avoid problems such as cold solder joints and short circuits, so as to ensure that the signal can be smoothly transmitted from the contact assembly 3 to the subsequent contact plate group. In S4, during the fixing process of the first touch panel group 5 and the second touch panel group 6, it is necessary to ensure that the installation position of the touch panel group is accurate and the spacing between each touch panel meets the design requirements. In S5, it is necessary to ensure that the position of the spring piece 81 on the housing 8 can correctly match the corresponding slot 92 on the connector male seat 9. When fixing the connection, a suitable fixing method can be adopted, such as snap connection, screw connection or bonding, etc., to ensure that the housing 8, the support structure 1 and the back cover 7 are firmly connected to form a stable whole, thereby enhancing the structural strength and protective performance of the connector female seat. The installation method of the connector female seat disclosed in the present invention can ensure that the various components of the connector female seat are accurately installed in place, achieve close fit between the various components, effectively avoid problems such as unstable signal transmission and loose connection caused by improper installation, improve the installation quality of the connector female seat, and thus improve the performance and reliability of the electronic equipment. It can be understood that the order of the above steps can be adaptively changed according to actual production needs. It is only necessary to ensure that the connector female seat after installation reaches the structure described above and obtains the desired use effect.
[0065] The present disclosure also provides an electronic device, comprising the connector socket in the above-mentioned embodiment.
[0066] In this embodiment, the electronic device may include but is not limited to a laptop computer, a computer host, a television, a learning machine or a game console, etc. Since the electronic device is provided with the connector socket in the aforementioned embodiment, its beneficial effects are the same as those described above, so no further details will be given here.
[0067] It should be understood that the various forms of the processes shown above can be used to reorder, add, or delete steps. For example, the steps described in this disclosure can be performed in parallel, sequentially, or in a different order, as long as the desired results of the technical solutions disclosed in this disclosure can be achieved. This is not limited herein.
[0068] Furthermore, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of technical features being referred to. Thus, a feature defined as "first" or "second" may explicitly or implicitly include at least one such feature. Throughout the present disclosure, "plurality" means two or more, unless otherwise specifically defined.
[0069] The above description is merely a specific embodiment of the present disclosure, but the scope of protection of the present disclosure is not limited thereto. Any changes or substitutions that can be easily conceived by a person skilled in the art within the technical scope disclosed in this disclosure should be included in the scope of protection of the present disclosure. Therefore, the scope of protection of the present disclosure should be based on the scope of protection of the claims.
Claims
1. A female connector, characterized in that: include: Support structure (1); A fool-proof structure (2) is slidably arranged along the height direction of the support structure (1), and the fool-proof structure (2) is provided with a through avoidance groove (21); A contact assembly (3) is plugged into the support structure (1) and placed in the avoidance groove (21), wherein the contact assembly (3) and the foolproof structure (2) are capable of sliding relative to each other along the height direction; A pin assembly (4) is welded to one end of the contact assembly (3) that is plugged into the support structure (1); A first touch panel group (5) and a second touch panel group (6) are fixedly mounted on the rear cover (7) of the connector female seat, and the first touch panel group (5) is electrically connected to the second touch panel group (6); The fool-proofing structure (2) has a first position and a second position in the height direction. When the fool-proofing structure (2) is located at the first position, the fool-proofing structure (2) interacts with the pin assembly (4), causing the pin assembly (4) to elastically deform and be electrically connected to the first touch panel group (5); when the fool-proofing structure (2) is acted upon by an external force and is located at the second position, the fool-proofing structure (2) is separated from the pin assembly (4), causing the pin assembly (4) to be electrically connected to the second touch panel group (6) under the action of a restoring force.
2. The connector female socket according to claim 1, characterized in that: The fool-proof structure (2) is provided with a switching rod (22) along the width direction, and the switching rod (22) is located on a side of the support structure (1) away from the avoidance groove (21). When the fool-proof structure (2) is in the first position, the fool-proof structure (2) squeezes the pin assembly (4) through the switching rod (22).
3. The connector female socket according to claim 1, characterized in that: A conversion groove (11) is provided on the support structure (1) along the height direction, and a sliding groove (12) is provided on the side wall of the conversion groove (11); The fool-proof structure (2) is formed with a guide portion (23), and a slider (24) is provided on the guide portion (23) that cooperates with the slide groove (12). The guide portion (23) is located in the conversion groove (11) and can slide along the conversion groove (11).
4. The connector female socket according to claim 3, characterized in that: An elastic member (25) is provided at the bottom of the conversion groove (11), and the elastic member (25) has a normal state and a compressed state. When the fool-proof structure (2) is located in a first position, the elastic member (25) is in the normal state; when the fool-proof structure (2) is located in a second position under the action of an external force, the elastic member (25) is in a compressed state.
5. The connector female socket according to claim 1, characterized in that: A pressing groove (26) is provided at one end of the avoidance groove (21) away from the support structure (1), and the pressing groove (26) extends along the height direction and is used to limit the relative movement of the contact assembly (3) and the fool-proof structure (2) in the height direction.
6. The connector female socket according to claim 5, characterized in that: The contact assembly (3) comprises a plurality of contact pieces (31) arranged at intervals, one end of the contact piece (31) is plugged into the support structure (1), and the other end of the contact piece (31) is plugged into the pressing groove (26), and two protrusions (311) are formed on the contact piece (31), and the two protrusions (311) are symmetrically arranged along the height direction.
7. The connector female socket according to claim 1, characterized in that: An arc-shaped guide surface (27) is formed on one end of the fool-proof structure (2) away from the supporting structure (1).
8. The connector female socket according to claim 1, characterized in that: It also includes a shell (8), on which a spring piece (81) is provided. The shell (8), the support structure (1) and the back cover (7) are connected.
9. The method for installing a connector female socket according to any one of claims 1 to 8, characterized in that: The following steps are involved: Slidingly connecting the guide portion (23) of the fool-proof structure (2) to the conversion groove (11) of the support structure (1); Connect one end of the contact assembly (3) to the support structure (1), and insert the other end into the pressing groove (26) of the fool-proof structure (2); Inserting the pin assembly (4) and the contact assembly (3) on one end of the support structure (1) and welding them; Fixing the first touch panel group (5) and the second touch panel group (6) on the back cover (7); The outer shell (8) is sleeved on the outer periphery of the fool-proof structure (2) and inserted into the support structure (1), and the outer shell (8), the support structure (1) and the back cover (7) are fixedly connected.
10. An electronic device, characterized in that: Comprising the connector female socket as described in any one of claims 1-8.