Push type Type-C joint assembly jig

By using a push-type Type-C connector assembly fixture, and utilizing a push rod assembly and a magnet fixing structure, the Type-C connector can be efficiently and accurately inserted into the PCB circuit board. This solves the problems of low assembly efficiency and high cost in existing technologies, and improves production efficiency and product quality.

CN223665824UActive Publication Date: 2025-12-12SHENZHEN LINGCHUANG IND CO LTD
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Patent Information

Application Number
CN202423052395.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-10
Publication Date
2025-12-12
Estimated Expiration
2034-12-10

AI Technical Summary

Technical Problem

The assembly efficiency of Type-C connectors and PCB circuit boards is low. Existing technologies mainly rely on manual operation, resulting in low efficiency, high cost, and difficulty in guaranteeing accuracy.

Method used

Design a push-type Type-C connector assembly fixture, comprising a base plate, assembly components, and a push component. The fixture achieves precise insertion of the Type-C connector into the circuit board through a push rod assembly and a push head. Combined with a magnetic fixing and limiting structure, it ensures stability and accuracy.

Benefits of technology

It improves the assembly efficiency of Type-C connectors and PCB circuit boards, reduces labor costs, reduces assembly errors and damage risks, and enhances assembly accuracy and stability.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a push type Type-C joint assembling jig in the field of Type-C joint assembling jigs, which comprises a bottom plate, an assembling component and a pushing component are arranged on the bottom plate, the assembling component comprises a jig lower shell, a plurality of first accommodating grooves are formed in the jig lower shell side by side, a second accommodating groove is correspondingly formed in one side of each first accommodating groove, and the pushing component is arranged in the second accommodating groove. A pushing groove is correspondingly formed in the side, away from the first containing groove, of each second containing groove. The pushing assembly comprises a pushing head and a pushing rod set, the pushing head is provided with a plurality of pushing protruding blocks in one-to-one correspondence with the pushing grooves, the pushing protruding blocks are arranged in the pushing grooves, and the pushing rod set is connected with the side, away from the jig lower shell, of the pushing head. According to the utility model, the problem of low assembly efficiency of the existing Type-C joint and the PCB is solved, a plurality of assembly tasks can be processed at the same time, the assembly efficiency is improved, the operation process is greatly simplified, the assembly accuracy and speed are improved, and the production cost is reduced.
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Description

Technical Field

[0001] This utility model relates to the field of Type-C connector assembly fixture technology, specifically, to a push-type Type-C connector assembly fixture. Background Technology

[0002] In the storage industry, especially for electronic products such as card readers and other computer peripherals, Type-C connectors are more widely used. During the production process, after the solder paste application to the PCB circuit board, a Type-C connector needs to be installed, which requires plugging the Type-C connector into the PCB circuit board.

[0003] For surface mount technology (SMT) manufacturers, Type-C connectors differ from other components. While other components can be directly attached to the PCB board using magnetic adsorption or robotic arms, the Type-C interface is very compact and small. Furthermore, Type-C connectors typically need to be mounted on the edge of the PCB board, requiring higher precision and stability. This makes robotic arm operation even more difficult, as they cannot precisely control the gripping and insertion of the Type-C connector onto the PCB. Therefore, current methods typically involve manual insertion to assemble Type-C connectors onto the PCB, and only one connector can be inserted at a time. This results in low assembly efficiency, high labor costs, and increased production costs.

[0004] The above-mentioned defects urgently need to be addressed. Utility Model Content

[0005] To address the problem of low assembly efficiency of existing Type-C connectors and PCB circuit boards, this utility model provides a push-type Type-C connector assembly fixture.

[0006] The technical solution of this utility model is as follows:

[0007] A push-type Type-C connector assembly fixture includes a base plate, on which an assembly component and a push component are disposed. The assembly component includes a fixture lower shell, in which a plurality of first receiving slots are arranged side by side. A second receiving slot is disposed on one side of each first receiving slot, and a push slot is disposed on the side of each second receiving slot away from the first receiving slot.

[0008] The pushing assembly includes a pushing head and a pushing rod assembly. The pushing head is provided with a plurality of pushing protrusions that correspond one-to-one with the pushing groove. The pushing protrusions are disposed in the pushing groove. The pushing rod assembly is connected to the side of the pushing head away from the lower shell of the fixture.

[0009] The circuit board is placed in the first receiving slot, the Type-C connector is placed in the second receiving slot, and the push rod assembly pushes the push head to move so that the Type-C connector is plugged into the corresponding circuit board.

[0010] According to the above-described scheme of this utility model, the assembly assembly further includes an upper jig housing, one side of which is rotatably connected to the lower jig housing via a pin, so that the upper jig housing can be flipped and pressed onto the top of the lower jig housing.

[0011] According to the above-described solution of this utility model, a plurality of first limiting protrusions are provided in the first receiving groove of the lower shell of the fixture, and the four corners of the circuit board are all located on the top of the corresponding first limiting protrusions.

[0012] The upper housing of the fixture is provided with a plurality of second limiting protrusions that correspond one-to-one with the first limiting protrusion. When the upper housing of the fixture and the lower housing of the fixture are pressed together, the first limiting protrusions cooperate with the corresponding second limiting protrusions to limit the corresponding circuit board.

[0013] According to the above-described solution of this utility model, a plurality of support blocks are arranged side by side on the upper shell of the fixture. When the upper shell of the fixture is pressed together with the lower shell of the fixture, each support block is arranged between two adjacent second receiving grooves.

[0014] According to the above-described solution of this utility model, the upper shell of the fixture is provided with a plurality of pressing protrusions corresponding one-to-one with the second receiving groove. When the upper shell of the fixture is pressed together with the lower shell of the fixture, the pressing protrusions contact the corresponding Type-C connectors.

[0015] According to the present invention based on the above scheme, the assembly component further includes a first magnet and a second magnet. A first mounting position is provided on the lower housing of the fixture, and the first magnet is disposed on the first mounting position. A second mounting position is correspondingly provided on the upper housing of the fixture, and the second magnet is disposed on the second mounting position. When the upper housing of the fixture and the lower housing of the fixture are pressed together, the first magnet and the second magnet are magnetically connected.

[0016] According to the present utility model with the above-described scheme, the push rod assembly includes a push seat, a push handle, and a push rod. The push seat is connected to the base plate, one side of the push handle is hinged to the push seat, the other side of the push handle is hinged to one end of the push rod, and the other end of the push rod is connected to the push head.

[0017] According to the present utility model with the above-described solution, the push handle includes a grip rod and a linkage rod. The bottom of the grip rod is hinged to the push seat, and both sides of the grip rod are respectively hinged to the push rod through the linkage rod.

[0018] According to the above-described scheme of this utility model, the push base is provided with a toggle groove, and the bottom of the hand grip is disposed in the toggle groove through a first connecting member.

[0019] According to the present invention based on the above scheme, the push rod includes a head and a tail connected to the head, the head being connected to the push head, and the tail being hinged to the linkage rod.

[0020] According to the above-described solution of this utility model, the push head is provided with a first mounting groove, and at least a portion of the head is disposed in the first mounting groove via a second connector;

[0021] The push base is provided with a moving groove, and at least a portion of the tail is disposed in the moving groove.

[0022] According to the above-described scheme of this utility model, an elastic element is sleeved on the outer side of the tail, one end of the elastic element abuts against the head, and the other end of the elastic element abuts against the push seat.

[0023] According to the above-described scheme of this utility model, the base plate is recessed inward to form a second mounting groove, and at least a portion of the push seat is disposed in the second mounting groove.

[0024] According to the above-described scheme, the present invention further includes a fixing plate disposed on the base, the fixing plate being provided with a third mounting groove and a fourth mounting groove, at least a portion of the lower housing of the fixture being disposed in the third mounting groove, and at least a portion of the pushing head being disposed in the fourth mounting groove.

[0025] The advantages of this utility model based on the above solution are as follows:

[0026] In the aforementioned push-type Type-C connector assembly fixture, multiple first and second receiving slots are arranged side by side in the lower housing of the fixture, which can simultaneously accommodate multiple circuit boards and Type-C connectors, thereby enabling the simultaneous handling of multiple assembly tasks and improving assembly efficiency.

[0027] In addition, the pushing assembly includes a pushing head and a pushing rod assembly. The pushing head is provided with pushing protrusions that correspond one-to-one with the pushing grooves. During assembly, the pushing head is moved by the pushing rod assembly, so that the pushing protrusions move along the pushing grooves, thereby pushing each Type-C connector to be accurately plugged into the corresponding circuit board. Compared with the traditional manual plugging method, this utility model can greatly simplify the operation process, improve the accuracy and speed of assembly, and reduce production costs. Attached Figure Description

[0028] Figure 1 This is a schematic diagram of the structure of this utility model;

[0029] Figure 2 for Figure 1 Enlarged view of section A;

[0030] Figure 3 This is a schematic diagram of the structure when the upper and lower shells of the fixture are pressed together.

[0031] Figure 4 for Figure 3 A three-dimensional sectional view of the structure at point AA;

[0032] Figure 5 for Figure 3 A three-dimensional sectional view of the structure at point BB;

[0033] Figure 6 for Figure 5 Enlarged view of section B;

[0034] Figure 7 This is an exploded view of the present invention;

[0035] Figure 8 This is a schematic diagram of the lower shell of the jig;

[0036] Figure 9 This is a schematic diagram illustrating the application of the circuit board, Type-C connector, and fixture lower housing.

[0037] Figure 10 This is a schematic diagram of the upper shell of the jig;

[0038] Figure 11 To promote the component split diagram;

[0039] Figure 12 A schematic diagram of the structure of the push head.

[0040] In the diagram, 1 represents the base plate; 11 represents the second mounting slot.

[0041] 2. Assembly components; 21. Lower housing of fixture; 211. First receiving groove; 212. Second receiving groove; 213. Pushing groove; 214. First limiting protrusion; 22. Upper housing of fixture; 221. Second limiting protrusion; 222. Support block; 223. Pressing protrusion; 23. Pin; 24. First magnet; 25. Second magnet;

[0042] 3. Push assembly; 31. Push head; 311. Push protrusion; 312. First mounting slot; 32. Push rod assembly; 321. Push seat; 3211. Actuating slot; 3212. Moving slot; 322. Push handle; 3221. Hand grip; 3222. Linkage rod; 323. Push rod; 3231. Head; 3232. Tail; 33. Elastic element;

[0043] 4. Fixing plate; 41. Third mounting slot; 42. Fourth mounting slot;

[0044] 5. Circuit board; 6. Type-C connector. Detailed Implementation

[0045] To make the technical problem to be solved, the technical solution, and the beneficial effects of this utility model clearer, the present utility model will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain this utility model and are not intended to limit this utility model.

[0046] like Figure 1 As shown, this utility model provides a push-type Type-C connector assembly fixture, including a base plate 1. An assembly component 2 and a push component 3 are provided on the base plate 1. The assembly component 2 is used to place the circuit board 5 and the Type-C connector 6 and provide assembly space for the two. The push component 3 is used to push the Type-C connector 6 to insert into the circuit board 5, thereby realizing the assembly of the two.

[0047] like Figure 1 , Figures 7 to 9 As shown, in this embodiment, the assembly component 2 includes a fixture lower shell 21. Multiple first receiving slots 211 are arranged side-by-side within the fixture lower shell 21. A second receiving slot 212 is correspondingly provided on one side of each first receiving slot 211, and the first receiving slots 211 and second receiving slots 212 communicate with each other. The multiple first receiving slots 211 and second receiving slots 212 arranged side-by-side within the fixture lower shell 21 can simultaneously accommodate multiple circuit boards 5 and Type-C connectors 6, thereby enabling the simultaneous processing of multiple assembly tasks and improving assembly efficiency.

[0048] like Figure 1 , Figure 2 , Figures 7 to 9As shown, in this embodiment, each of the second receiving slots 212 of the fixture lower shell 21 is provided with a corresponding pushing slot 213 on the side away from the first receiving slot 211, and the pushing slot 213 communicates with the second receiving slot 212. The pushing assembly 3 includes a pushing head 31 and a pushing rod assembly 32. The pushing head 31 is provided with a plurality of pushing protrusions 311 corresponding one-to-one with the pushing slots 213. The pushing protrusions 311 are disposed in the pushing slots 213, ensuring that each Type-C connector 6 can be accurately pushed to the corresponding circuit board 5, which not only improves the accuracy of assembly, but also reduces damage and rework caused by improper insertion. In addition, the pushing rod assembly 32 is connected to the side of the pushing head 31 away from the fixture lower shell 21. The circuit board 5 is placed in the first receiving slot 211, and the Type-C connector 6 is placed in the second receiving slot 212. The pushing rod assembly 32 pushes the pushing head 31 to move so that the Type-C connector 6 is inserted into the corresponding circuit board 5. During assembly, the push rod assembly 32 pushes the push head 31 to move, thereby causing the push protrusion 311 to move along the push groove 213, which in turn pushes each Type-C connector 6 to be precisely inserted into the corresponding circuit board 5. Compared with the traditional manual insertion method, this utility model can greatly simplify the operation process, reduce the risk of assembly errors and damage caused by human factors, improve the accuracy and speed of assembly, reduce the labor intensity of workers, and reduce production costs.

[0049] like Figure 1 , Figure 2 As shown, in this embodiment, the height of the pushing protrusion 311 on the pushing head 31 is greater than the depth of the pushing groove 213 of the lower housing 21 of the fixture, ensuring that the pushing protrusion 311 can always remain in the pushing groove 213 during the pushing process, so that the pushing head 31 can stably push the Type-C connector 6 to assemble with the circuit board 5, preventing the pushing head 31 from coming out of the pushing groove 213 and improving the stability of the assembly.

[0050] like Figure 1 , Figure 2 , Figure 7 , Figure 10 As shown, in this embodiment, the assembly assembly 2 also includes a fixture upper shell 22. One side of the fixture upper shell 22 is rotatably connected to the fixture lower shell 21 via a pin 23, so that the fixture upper shell 22 can be flipped and pressed onto the top of the fixture lower shell 21. The fixture upper shell 22 provides additional fixing force through physical contact, ensuring that the circuit board 5 and the Type-C connector 6 will not shift due to vibration or external force during the assembly process, thereby enhancing the stability of the assembly and reducing the possibility of assembly errors. In addition, the rotatable connection achieved by the pin 23 allows the fixture upper shell 22 to be easily flipped, thereby simplifying the assembly process. Workers do not need to use additional tools or equipment to fix or disassemble the fixture upper shell 22.

[0051] like Figures 3 to 6 , Figure 10 As shown, in this embodiment, the first receiving groove 211 of the lower housing 21 of the fixture is provided with a plurality of first limiting protrusions 214. The four corners of the circuit board 5 are all located on the top of the corresponding first limiting protrusions 214, so that the circuit board 5 can be accurately positioned in the predetermined position when placed, thereby achieving stable installation of the circuit board 5. In addition, the upper housing 22 of the fixture is provided with a plurality of second limiting protrusions 221 corresponding one-to-one with the first limiting protrusions 214. When the upper housing 22 of the fixture and the lower housing 21 of the fixture are pressed together, the first limiting protrusions 214 cooperate with the corresponding second limiting protrusions 221 to form a clamping structure to limit the corresponding circuit board 5, thereby enhancing the fixing effect of the circuit board 5 in the vertical direction and preventing the circuit board 5 and the Type-C connector 6 from moving or misaligning during the assembly process. This not only improves the accuracy of assembly, but also reduces the rework rate and cost caused by assembly errors.

[0052] like Figures 3 to 6 , Figure 10 As shown in this embodiment, multiple support blocks 222 are arranged side by side on the upper housing 22 of the fixture. When the upper housing 22 of the fixture and the lower housing 21 of the fixture are pressed together, each support block 222 is arranged between two adjacent second receiving grooves 212. The support blocks 222 can play a supporting role, effectively preventing excessive compression between the upper housing 22 of the fixture and the lower housing 21 of the fixture during the pressing process, avoiding problems such as fixture deformation, damage or component loosening caused by excessive pressing, thereby ensuring the integrity and functionality of the fixture.

[0053] like Figures 3 to 6 , Figure 10 As shown, in this embodiment, the upper housing 22 of the fixture is provided with a plurality of pressing protrusions 223 corresponding one-to-one with the second receiving groove 212. When the upper housing 22 of the fixture is pressed with the lower housing 21 of the fixture, the pressing protrusions 223 contact the corresponding Type-C connector 6, thereby limiting the Type-C connector 6 in the vertical direction. Furthermore, there is an assembly gap between the pressing protrusions 223 and the corresponding Type-C connector 6, which facilitates the later pushing of the Type-C connector 6, thereby facilitating the insertion of the Type-C connector 6 with the corresponding circuit board 5. This ensures that the Type-C connector 6 will not be misaligned or shaken during the assembly process, thereby improving the accuracy and reliability of the assembly.

[0054] like Figure 1 , Figure 2As shown, in this embodiment, the assembly component 2 further includes a first magnet 24 and a second magnet 25. A first mounting position is provided on the lower housing 21 of the fixture, and the first magnet 24 is mounted on the first mounting position. A corresponding second mounting position is provided on the upper housing 22 of the fixture, and the second magnet 25 is mounted on the second mounting position. When the upper housing 22 and the lower housing 21 of the fixture are pressed together, the first magnet 24 and the second magnet 25 are magnetically attracted to each other, enhancing the connection strength between the upper and lower housings of the fixture and preventing significant shaking after the upper housing 22 flips and is pressed together with the lower housing 21, thereby ensuring the accuracy and reliability of the assembly. Furthermore, due to the magnetic force of the first magnet 24 and the second magnet 25, the upper and lower housings of the fixture automatically align to the correct position during pressing, thereby improving the assembly accuracy and helping to ensure the correct fit between the internal components of the fixture, further improving the overall quality and performance of the product.

[0055] like Figure 7 , Figure 11 , Figure 12 As shown, in this embodiment, the push rod assembly 32 of the push component 3 includes a push base 321, a push handle 322, and a push rod 323. The push base 321 is connected to the base plate 1. One side of the push handle 322 is hinged to the push base 321, and the other side of the push handle 322 is hinged to one end of the push rod 323. The other end of the push rod 323 is connected to the push head 31. Thus, the push handle 322 drives the push rod 323 to move forward, thereby realizing the insertion of the Type-C connector 6 and the corresponding circuit board 5. Specifically, the push handle 322 includes a grip rod 3221 and a linkage rod 3222. The bottom of the grip rod 3221 is hinged to the push base 321. Both sides of the grip rod 3221 are hinged to the push rod 323 through the linkage rod 3222. When the user pushes the grip rod 3221, the force is quickly transmitted to the push rod 323 through the linkage rod 3222, thereby pushing the push head 31 forward. This ensures the high efficiency of force transmission, enabling the Type-C connector 6 to be accurately and quickly plugged into the circuit board 5.

[0056] like Figure 7 , Figure 11 , Figure 12As shown, in this embodiment, the push base 321 is provided with a toggle groove 3211, and the bottom of the grip lever 3221 is disposed in the toggle groove 3211 through a first connector, allowing the grip lever 3221 to rotate around the first connector, thereby pushing the push rod 323 to move through the linkage rod 3222, thus realizing the insertion of the Type-C connector 6 and the circuit board 5. The toggle groove 3211 provides a clear movement trajectory for the grip lever 3221, allowing the grip lever 3221 to move within a specific path or range, making the operation more precise and controllable. The operator can achieve the insertion of the Type-C connector 6 through a simple rotation action without complex operation or adjustment. In addition, the first connector can be designed as a pin. Of course, in actual design, the structure of the first connector can be designed according to actual needs.

[0057] like Figure 7 , Figure 11 , Figure 12 As shown, in this embodiment, the push rod 323 includes a head 3231 and a tail 3232 connected to the head 3231. The head 3231 is connected to the push head 31, and the tail 3232 is hinged to the linkage rod 3222. Specifically, the push head 31 is provided with a first mounting groove 312, and at least a portion of the head 3231 is disposed within the first mounting groove 312 via a second connector, ensuring that the head 3231 can be stably mounted on the push head 31. The push seat 321 is provided with a moving groove 3212, and at least a portion of the tail 3232 is disposed within the moving groove 3212, allowing the tail 3232 to move within the moving groove 3212. This ensures that the push rod 323 can move along the trajectory of the moving groove 3212 when subjected to force, thereby achieving precise control of the push head 31. Furthermore, the second connector can be designed as a bolt. Of course, in actual design, the structure of the second connector can be designed according to actual needs.

[0058] like Figure 7 , Figure 11 , Figure 12As shown, in this embodiment, an elastic element 33 is sleeved on the outer side of the tail 3232 of the push rod 323. One end of the elastic element 33 abuts against the head 3231, and the other end of the elastic element 33 abuts against the push seat 321, ensuring that the elastic element 33 can effectively transmit force and provide a rebound force. When the operator pushes the grip rod 3221 and pushes the push head 31 forward through the push rod 323 to connect the Type-C connector 6 to the circuit board 5, the elastic element 33 is compressed; when the operator releases the grip rod 3221, the elastic element 33 begins to return to its original shape and provides a rebound force to the push rod 323, so that the push rod 323 automatically returns to its original position, simplifying the operation process and improving work efficiency. In addition, the elastic element 33 can be designed as a spring. Of course, in actual design, the structure of the elastic element 33 can be designed according to actual needs.

[0059] like Figure 1 , Figure 7 As shown, in this embodiment, the base plate 1 is recessed inward to form a second mounting groove 11. At least a portion of the push seat 321 is disposed within the second mounting groove 11, allowing the push seat 321 to fit more tightly against the base plate 1, thereby optimizing the overall structure of the equipment. Furthermore, the push seat 321 is connected to the base plate 1 via a third connector, thus stably mounting the push seat 321 onto the base plate 1. This ensures that the push seat 321 will not detach or loosen from the base plate 1 under stress, thereby guaranteeing the overall stability and reliability of the equipment. Additionally, the third connector can be designed as a bolt; however, in actual design, the structure of the third connector can be designed according to actual needs.

[0060] like Figure 1 , Figure 7 As shown, in this embodiment, a fixing plate 4 is also provided on the base. The fixing plate 4 is provided with a third mounting groove 41 and a fourth mounting groove 42. At least a portion of the lower housing 21 of the fixture is disposed in the third mounting groove 41 through a fourth connector, preventing the lower housing 21 from moving during operation and ensuring the stability and positional accuracy of the lower housing 21. In addition, at least a portion of the pushing head 31 is disposed in the fourth mounting groove 42, allowing the pushing head 31 to move within the fourth mounting groove 42, thereby connecting the Type-C connector 6 to the circuit board 5. Furthermore, the fourth connector can be designed as a bolt. Of course, in actual design, the structure of the fourth connector can be designed according to actual needs.

[0061] In use, the circuit board 5 is first placed in the first receiving groove 211 of the lower housing 21 of the fixture, and then the Type-C connector 6 is placed in the second receiving groove 212 of the lower housing 21 of the fixture. Then the upper housing 22 of the fixture is placed on top of the lower housing 21 of the fixture. The push handle 322 is then pulled forward, and the push head 31 is driven by the push rod 323 to slowly move the Type-C connector 6 toward the circuit board 5 until the Type-C connector 6 is inserted into the circuit board 5. The assembly is then complete. The push handle 322 is released, and the process is repeated.

[0062] It should be understood that those skilled in the art can make improvements or modifications based on the above description, and all such improvements and modifications should fall within the protection scope of the appended claims.

[0063] The present utility model patent has been described above with reference to the accompanying drawings. Obviously, the implementation of the present utility model patent is not limited to the above-described manner. Any improvements made by adopting the inventive concept and technical solution of the present utility model patent, or the direct application of the inventive concept and technical solution of the present utility model patent to other occasions without modification, are all within the protection scope of the present utility model.

Claims

1. A push-type Type-C connector assembly fixture, characterized in that, The assembly includes a base plate, on which an assembly component and a pushing component are provided. The assembly component includes a lower housing of a fixture, in which a plurality of first receiving slots are arranged side by side. A second receiving slot is provided on one side of each first receiving slot, and a pushing slot is provided on the side of each second receiving slot away from the first receiving slot. The pushing assembly includes a pushing head and a pushing rod assembly. The pushing head is provided with a plurality of pushing protrusions that correspond one-to-one with the pushing groove. The pushing protrusions are disposed in the pushing groove. The pushing rod assembly is connected to the side of the pushing head away from the lower shell of the fixture. The circuit board is placed in the first receiving slot, the Type-C connector is placed in the second receiving slot, and the push rod assembly pushes the push head to move so that the Type-C connector is plugged into the corresponding circuit board.

2. The push-type Type-C connector assembly fixture according to claim 1, characterized in that, The assembly assembly also includes a jig upper shell, one side of which is rotatably connected to the jig lower shell by a pin, so that the jig upper shell can be flipped and pressed onto the top of the jig lower shell.

3. The push-type Type-C connector assembly fixture according to claim 2, characterized in that, The first receiving groove of the lower shell of the fixture is provided with a plurality of first limiting protrusions, and the four corners of the circuit board are all located on the top of the corresponding first limiting protrusions. The upper housing of the fixture is provided with a plurality of second limiting protrusions that correspond one-to-one with the first limiting protrusion. When the upper housing of the fixture and the lower housing of the fixture are pressed together, the first limiting protrusions cooperate with the corresponding second limiting protrusions to limit the corresponding circuit board.

4. The push-type Type-C connector assembly fixture according to claim 2, characterized in that, The upper shell of the fixture is provided with a plurality of support blocks arranged side by side. When the upper shell of the fixture is pressed together with the lower shell of the fixture, each support block is disposed between two adjacent second receiving slots.

5. The push-type Type-C connector assembly fixture according to claim 2, characterized in that, The upper housing of the fixture is provided with a plurality of pressing protrusions that correspond one-to-one with the second receiving groove. When the upper housing of the fixture is pressed together with the lower housing of the fixture, the pressing protrusions contact the corresponding Type-C connectors.

6. The push-type Type-C connector assembly fixture according to claim 1, characterized in that, The push rod assembly includes a push base, a push handle, and a push rod. The push base is connected to the base plate. One side of the push handle is hinged to the push base, and the other side of the push handle is hinged to one end of the push rod. The other end of the push rod is connected to the push head.

7. The push-type Type-C connector assembly fixture according to claim 6, characterized in that, The push handle includes a grip rod and a linkage rod. The bottom of the grip rod is hinged to the push seat, and both sides of the grip rod are respectively hinged to the push rod via linkage rods.

8. The push-type Type-C connector assembly fixture according to claim 7, characterized in that, The push base is provided with a toggle groove, and the bottom of the hand grip is set in the toggle groove through a first connector.

9. The push-type Type-C connector assembly fixture according to claim 7, characterized in that, The push rod includes a head and a tail connected to the head. The head is connected to the push head, and the tail is hinged to the linkage rod.

10. The push-type Type-C connector assembly fixture according to claim 9, characterized in that, The push head is provided with a first mounting groove, and at least a portion of the head is disposed in the first mounting groove via a second connector; The push base is provided with a moving groove, and at least a portion of the tail is disposed in the moving groove.