High-speed connector shell assembly with connecting socket
By using the left positioning part and the right positioning part in the connector housing, and tightly fixing it through the upper and lower shells, the problem of needing to reserve through holes in the prior art is solved. At the same time, a protective sleeve is installed at the rear of the high-speed connector to protect the plug of the connecting wire, achieving lower cost processing and better plug protection.
Patent Information
- Application Number
- CN202421712449.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-19
- Publication Date
- 2025-05-02
- Estimated Expiration
- 2034-07-19
AI Technical Summary
The existing connector housing needs to reserve through holes when fixing the PCB board, which increases processing cost and difficulty. At the same time, the rear connection socket of the high-speed connector lacks protective sleeves, resulting in no protection when plugged in.
The PCB board is positioned using the left positioning part and the right positioning part, and is pressed and fixed by the upper case and the lower case, so that there is no need to set the through holes and reduce the difficulty of processing. At the same time, a protective cover is provided on the right to protect the cable plug at the rear.
The PCB board fixation without preset through holes is achieved, reducing processing costs and difficulty, and the plug of the connecting wire is protected through protective sleeves to avoid damage during plugging.
Smart Images

Figure CN222826684U_ABST
Abstract
Description
Technical field:
[0001] The utility model relates to the technical field of network accessories, and more specifically to a high-speed connector housing component with a connecting socket. Background technology:
[0002] There are many kinds of connector shells, and their functions are also different. They are generally used to connect wire connectors, or network speed converters and other components to play a role in connection protection. The existing connector shell is generally fixed by an upper shell and a lower shell, and components such as PCB boards are installed inside. In the existing internal installation cavity, the PCB board is generally placed, and the upper shell and the lower shell are pressed and connected to the PCB board through vertical connecting through holes on the PCB board. This requires the PCB board to reserve connecting through holes during processing, which increases processing costs and difficulty. At the same time, the connection socket provided at the rear of the existing high-speed connector is generally a circular socket, which does not have components such as a protective cover. When plugging in, the outside of the plug is not protected. Utility model content:
[0003] The purpose of the utility model is to overcome the deficiencies of the prior art and provide a high-speed connector housing assembly with a connecting socket, which uses a left positioning portion and a right positioning portion to position a PCB board, and fixes the PCB board by pressing an upper shell and a lower shell, so that it does not need to preset through holes, etc., thereby reducing the difficulty of processing. At the same time, the right part of the socket provided on its right part is also provided with a protective cover, so that the plug of the rear connecting line can be placed in the protective cover for protection.
[0004] The solution of the utility model to solve the technical problem is:
[0005] A high-speed connector housing assembly with a connecting socket, comprising an upper shell and a lower shell, the upper shell and the lower shell are covered and fixed to each other, a mounting groove extending leftward and extending out of the left end of the lower shell is formed in the middle of the top surface of the lower shell, a socket mounting groove extending downward is formed in the middle of the top surface of the right part of the lower shell, a socket is inserted in the socket mounting groove, a PCB board is placed on the bottom surface of the mounting groove, and a plug-in portion at the left end of the PCB board extends out of the mounting groove;
[0006] A protective sleeve mounting groove extending downward is formed on the right end top surface of the lower shell at the right side of the socket mounting groove, the right end of the protective sleeve mounting groove extends out of the right end surface of the lower shell, the protective sleeve is inserted into the protective sleeve mounting groove, and the right end connecting part of the socket is inserted into the protective sleeve.
[0007] A side groove is formed on the front and rear inner walls of the left part of the installation groove, and the left end of the side groove extends out of the left end of the lower shell. An extension part is formed on the front and rear side walls of the left part of the PCB board, and the extension part is inserted into the corresponding side groove.
[0008] The left and right parts of the bottom of the side groove are both formed with pad parts extending upwards;
[0009] The extension portion on the corresponding side of the PCB board is pressed against the top surface of the corresponding left and right pad portions.
[0010] A left positioning part is formed on the top surface of the pad part of the left side groove, and the inner side wall of the left positioning part is an arc-shaped wall surface, which extends out of the inner side wall of the corresponding pad part. A right positioning part is formed on the top surface of the pad part of the right side groove, and the inner side wall of the right positioning part is also an arc-shaped wall surface. The left and right parts of the outer side wall of the extension part are both formed with arc-shaped side grooves. The left positioning part and the right positioning part are inserted into the corresponding arc-shaped side grooves, and the inner side walls of the left positioning part and the right positioning part are close to or close to the inner side walls of the corresponding arc-shaped grooves. The multi-positioning structure is realized by the left positioning part and the right positioning part to ensure the positioning and installation of the PCB board.
[0011] The outstanding effects of the utility model are:
[0012] It uses a left positioning part and a right positioning part to position the PCB board, and fixes the PCB board by pressing the upper shell and the lower shell, so that it does not need to preset through holes, etc., reducing the difficulty of processing. At the same time, the right part of the socket is also provided with a protective cover, so that the plug of the rear connecting line can be placed in the protective cover for protection. Description of the drawings:
[0013] Figure 1 It is a structural schematic diagram of the utility model;
[0014] Figure 2 It is a partial structural schematic diagram of the utility model without the upper shell and other components;
[0015] Figure 3 yes Figure 2 Schematic diagram of the local structure without the PCB board and other components;
[0016] Figure 4 It is a partial structural schematic diagram of the upper shell of the utility model;
[0017] Figure 5 It is a partial structural schematic diagram of the utility model without the lower shell and other components. Specific implementation method:
[0018] For example, see Figures 1 to 5As shown, a high-speed connector housing assembly with a connecting socket includes an upper shell 10 and a lower shell 20, the upper shell 10 and the lower shell 20 are covered and fixed, the middle part of the top surface of the lower shell 20 is formed with a mounting groove 21 extending leftward and extending out of the left end of the lower shell 20, the middle part of the top surface of the right part of the lower shell 20 is formed with a socket mounting groove 22 extending downward, a socket 30 is inserted into the socket mounting groove 22, the socket 30 is matched with the socket mounting groove 22, and the top of the socket 30 extends out of the top of the socket mounting groove 22, a PCB board 40 is placed on the bottom surface of the mounting groove 21, and the left end plug-in portion of the PCB board 40 extends out of the mounting groove 21;
[0019] A protective cover mounting groove 23 extending downward is formed on the right end top surface of the lower shell 20 at the right side of the socket mounting groove 22, and the right end of the protective cover mounting groove 23 extends out of the right end surface of the lower shell 20. The protective cover 50 is inserted into the protective cover mounting groove 23 and cooperates with the protective cover mounting groove 23, and its top extends out of the protective cover mounting groove 23, and the right end connecting part of the socket 30 is inserted into the protective cover 50.
[0020] Furthermore, a side groove 211 is formed on the front and rear inner walls of the left portion of the mounting groove 21, and the left end of the side groove 211 extends out of the left end of the lower shell 20. An extension portion 41 is formed on the front and rear side walls of the left portion of the PCB board 40, and the extension portion 41 is inserted into the corresponding side groove 211.
[0021] Furthermore, the left and right parts of the bottom of the side groove 211 are formed with a pad part 212 extending upward;
[0022] The extension portion 41 on the corresponding side of the PCB board 40 is pressed against the top surface of the corresponding left and right pad portions 212 .
[0023] Furthermore, a left positioning portion 213 is formed on the top surface of the pad portion 212 on the left side of the side groove 211, and the inner side wall of the left positioning portion 213 is an arc-shaped wall surface, which extends out of the corresponding inner side wall of the pad portion 212, and a right positioning portion 214 is formed on the top surface of the right pad portion 212, and the inner side wall of the right positioning portion 214 is also an arc-shaped wall surface, and the left and right parts of the outer wall of the extension portion 41 are both formed with arc-shaped side grooves, and the left positioning portion 213 and the right positioning portion 214 are inserted into the corresponding arc-shaped side grooves, and the inner side walls of the left positioning portion 213 and the right positioning portion 214 are close to or close to the inner side walls of the corresponding arc-shaped grooves.
[0024] Through the above structure, the PCB board 40 is positioned for installation through the side groove 211, the left positioning portion 213 and the right positioning portion 214, so that the installation does not need to be fixed and limited by bolts.
[0025] Furthermore, the lower portions of the front and rear inner side walls of the right portion of the mounting slot 21 are both formed with strip-shaped raised portions 215 , and the front and rear bottom surfaces of the right portion of the PCB board 40 are pressed against the top surfaces of the corresponding strip-shaped raised portions 215 .
[0026] Furthermore, a threading connection groove 221 extending downward is formed on the top surface of the left side wall of the socket mounting groove 22, and the left portion of the threading connection groove 221 is connected to the mounting groove 21. The threading connection groove 221 can be used to place an electrical connection line so that the socket 30 is electrically connected to the PCB board 40.
[0027] Furthermore, an upper groove is formed on the bottom surface of the top plate of the upper shell 10 directly above the socket mounting groove 22, and the upper part of the socket 30 is inserted into the upper groove and matched with the upper groove, and the top surface of the socket 30 is pressed against the top surface of the upper groove, and an upper protective mounting groove is also formed on the bottom surface of the top plate of the upper shell 10 directly above the protective cover mounting groove 23, and the right end of the upper protective mounting groove extends out of the right end surface of the upper shell 10, and the upper part of the protective cover 50 is inserted into the upper protective mounting groove, and the top surface of the protective cover 50 is pressed against the top surface of the upper protective mounting groove and matched with the upper protective mounting groove.
[0028] Furthermore, the front and rear portions of the left portion of the bottom surface of the top plate of the upper shell 10 are formed with an upper support plate 11 extending downward, and the bottom surface of the upper support plate 11 is pressed against the top surface of the front and rear portions of the PCB board 40. The PCB board 40 is pressed upward by the upper support plate 11, so that it is fixed between the upper shell 10 and the lower shell 20 and is firmly fixed.
[0029] Among them, in this embodiment, a movable shell 300 and a handle 400 are installed on the upper shell 10 and the lower shell 20. This structure is basically consistent with the structure and effect described in a high-speed connector shell component with Chinese patent announcement number CN218386028U. Therefore, it can be inserted into the port and locked, and the movable shell 300 can be pulled out by moving it to the right, which is convenient for plugging and unplugging. Since it is basically the same as the structure of a high-speed connector shell component with Chinese patent announcement number CN218386028U, it is a well-known content and therefore will not be described in detail here.
[0030] The above implementation modes are only used to illustrate the present invention, but not to limit the present invention. Ordinary technicians in the relevant technical field can make various changes and modifications without departing from the spirit and scope of the present invention. Therefore, all equivalent technical solutions also belong to the scope of the present invention. The scope of patent protection of the present invention should be limited by the claims.
Claims
1. A high-speed connector housing assembly with a connecting socket, comprising an upper housing (10) and a lower housing (20), wherein the upper housing (10) and the lower housing (20) are covered and fixed to each other, characterized in that: A mounting groove (21) extending leftward and extending out of the left end of the lower shell (20) is formed in the middle of the top surface of the lower shell (20); a socket mounting groove (22) extending downward is formed in the middle of the top surface of the right part of the lower shell (20); a socket (30) is inserted into the socket mounting groove (22); a PCB board (40) is placed on the bottom surface of the mounting groove (21); and a plug-in portion at the left end of the PCB board (40) extends out of the mounting groove (21); A protective sleeve mounting groove (23) extending downward is formed on the top surface of the right end of the lower shell (20) at the right side of the socket mounting groove (22); the right end of the protective sleeve mounting groove (23) extends out of the right end surface of the lower shell (20); the protective sleeve (50) is inserted into the protective sleeve mounting groove (23); and the right end connecting portion of the socket (30) is inserted into the protective sleeve (50).
2. A high-speed connector housing assembly with a connecting socket according to claim 1, characterized in that: A side groove (211) is formed on the front and rear inner side walls of the left portion of the installation groove (21), and the left end of the side groove (211) extends out of the left end of the lower shell (20). An extension portion (41) is formed on the front and rear side walls of the left portion of the PCB board (40), and the extension portion (41) is inserted into the corresponding side groove (211).
3. A high-speed connector housing assembly with a connecting socket according to claim 2, characterized in that: The left and right parts of the bottom of the side groove (211) are both formed with a cushion block part (212) extending upward; The extension portion (41) on the corresponding side of the PCB board (40) is pressed against the top surface of the corresponding left and right pad portions (212).
4. A high-speed connector housing assembly with a connecting socket according to claim 3, characterized in that: A left positioning portion (213) is formed on the top surface of the pad portion (212) on the left side of the side groove (211); the inner side wall of the left positioning portion (213) is an arc-shaped wall surface, which extends out of the inner side wall of the corresponding pad portion (212); a right positioning portion (214) is formed on the top surface of the pad portion (212) on the right side; the inner side wall of the right positioning portion (214) is also an arc-shaped wall surface; the left and right parts of the outer side wall of the extension portion (41) are both formed with an arc-shaped side groove; the left positioning portion (213) and the right positioning portion (214) are inserted into the corresponding arc-shaped side groove; the inner side walls of the left positioning portion (213) and the right positioning portion (214) are close to or in close contact with the inner side walls of the corresponding arc-shaped grooves.
5. A high-speed connector housing assembly with a connecting socket according to claim 1, characterized in that: The lower parts of the front and rear inner side walls of the right part of the installation groove (21) are both formed with strip-shaped raised parts (215), and the front and rear bottom surfaces of the right part of the PCB board (40) are pressed against the top surfaces of the corresponding strip-shaped raised parts (215).
6. A high-speed connector housing assembly with a connecting socket according to claim 1, characterized in that: A wire threading connection groove (221) extending downward is formed on the top surface of the left side wall of the socket installation groove (22), and the left part of the wire threading connection groove (221) is communicated with the installation groove (21).
7. A high-speed connector housing assembly with a connecting socket according to claim 6, characterized in that: An upper groove is formed on the bottom surface of the top plate of the upper shell (10) directly above the socket mounting groove (22), the upper part of the socket (30) is inserted into the upper groove, and the top surface of the socket (30) is pressed against the top surface of the upper groove. An upper protective mounting groove is also formed on the bottom surface of the top plate of the upper shell (10) directly above the protective cover mounting groove (23), the right end of the upper protective mounting groove extends out of the right end surface of the upper shell (10), the upper part of the protective cover (50) is inserted into the upper protective mounting groove, and the top surface of the protective cover (50) is pressed against the top surface of the upper protective mounting groove.
8. A high-speed connector housing assembly with a connecting socket according to claim 1, characterized in that: The front and rear parts of the left part of the bottom surface of the top plate of the upper shell (10) are both formed with an upper support plate (11) extending downward, and the bottom surface of the upper support plate (11) is pressed against the top surface of the front and rear parts of the PCB board (40).
Citation Information
Patent Citations
High-speed connector shell assembly
CN218386028U