Connector fixing frame

By designing a connector mounting bracket with a main and auxiliary plate combination slot, the problem of unstable fixing of 485 communication connectors and USB to TTL connectors was solved, achieving stable fixing and convenient disassembly in a limited space, thus improving the reliability of equipment maintenance and use.

CN224191387UActive Publication Date: 2026-05-01ANYANG XIANGYU MEDICAL EQUIP
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
ANYANG XIANGYU MEDICAL EQUIP
Filing Date
2025-04-22
Publication Date
2026-05-01

AI Technical Summary

Technical Problem

In the existing technology, 485 communication connectors and USB to TTL connectors lack dedicated mounting brackets, resulting in insecure fixing, easy detachment, affecting signal transmission stability, and inconvenient disassembly for maintenance.

Method used

A connector mounting bracket was designed, comprising a main plate and an auxiliary plate, forming two detachable combination slots for fixing two types of connectors respectively. It is connected to the device via a mounting plate to achieve secure fixing and convenient disassembly.

Benefits of technology

By simultaneously securing two types of connectors within a limited space, connection failures can be prevented, maintenance convenience can be improved, and signal stability can be ensured.

✦ Generated by Eureka AI based on patent content.

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    Figure CN224191387U_ABST
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Abstract

The utility model discloses a connector fixing frame, which is applied to the technical field of connector fixing, and comprises a main sheet and an auxiliary sheet which are provided with concave cavities, the width of the auxiliary sheet is smaller than that of the main sheet, the auxiliary sheet is arranged in the concave cavity of the main sheet, the opening of the concave cavity of the auxiliary sheet is opposite to that of the concave cavity of the main sheet, and the opening of the concave cavity of the main sheet is opposite to that of the auxiliary sheet. The upper portion of the auxiliary piece and the upper portion of the main piece are provided with a first combined clamping groove with an upward opening, the main piece is provided with an installation plate used for being connected with equipment, the bottom face of the main piece is lower than the bottom face of the auxiliary piece, a second combined clamping groove with an outward opening is formed in the height difference position of the main piece and the auxiliary piece, and the opening of the second combined clamping groove is opposite to the installation plate in direction. The first connector is detachably installed in the first combined clamping groove, and the second connector is detachably installed in the second combined clamping groove. The connector fixing frame can fix two communication connectors at the same time, and is firm in fixation and convenient to disassemble.
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Description

A connector mounting bracket Technical Field

[0001] This utility model relates to the field of connector fixing technology, and in particular to a connector fixing bracket. Background Technology

[0002] Many medical devices require the simultaneous use of two types of communication connectors, such as RS-485 connectors and USB-to-TTL connectors. These connectors connect to the device via cables to convert signals. An RS-485 connector is an interface device based on the RS-485 standard, enabling serial communication between devices. A USB-to-TTL connector converts USB interface signals to TTL (Transistor-Transistor Logic) level signals. It is primarily used to enable communication between computers (or other USB devices) and various TTL-level serial communication devices.

[0003] In the existing technology, 485 communication connectors and USB to TTL connectors do not have dedicated fixing brackets. Some are glued to the equipment with foam tape, which is not secure. During transportation or long-term use, they have poor durability and are easy to fall off. If the connector falls off, the connecting wire will be pulled, resulting in poor contact. There is also the risk of short circuits caused by impact with other parts. Others are fixed to the equipment with cable ties, which are inconvenient to disassemble or cannot be disassembled for maintenance, and the fixing parts are prone to aging.

[0004] In summary, how to effectively solve the problem of not having a mounting bracket that can simultaneously secure two types of communication connectors is a problem that urgently needs to be solved by those skilled in the art. Summary of the Invention

[0005] The purpose of this invention is to provide a connector mounting bracket that can securely fix two types of communication connectors and is easy to disassemble.

[0006] To solve the above-mentioned technical problems, this utility model provides the following technical solution:

[0007] A connector mounting bracket includes a main plate and an auxiliary plate with concave cavities. The width of the auxiliary plate is smaller than the width of the main plate. The auxiliary plate is installed within the concave cavity of the main plate, and the openings of the concave cavities of the auxiliary plate and the main plate face each other. The upper part of the auxiliary plate and the main plate has an upward-facing first combined slot. The main plate is provided with a mounting plate for connecting to a device. The bottom surface of the main plate is lower than the bottom surface of the auxiliary plate, and a second combined slot with an outward-facing opening is formed at the height difference between the two. The opening of the second combined slot faces opposite to that of the mounting plate. A first connector is detachably installed in the first combined slot, and a second connector is detachably installed in the second combined slot.

[0008] Optionally, the upper edge of the sidewall of the main piece and the auxiliary piece has an upward-opening slot, the slot and the upper concave cavity form the first combined slot, the connecting line of the first connector is connected to the slot of the main piece and the main body is inserted into the slot of the auxiliary piece;

[0009] The bottom surface of the auxiliary piece is provided with a support plate, and the lower edge of the side wall of the main piece has a bayonet. The bayonet, the support plate, and the lower concave cavity form the second combined slot. The connecting line of the second connector is connected to the bayonet and its main body abuts against the support plate.

[0010] Optionally, both the main piece and the auxiliary piece include two side plates and a connecting plate. The two sides of the connecting plate are respectively connected to the first ends of the two side plates. The side plates are perpendicular to the connecting plate. The two side plates and the connecting plate form the concave cavity. The slot is provided on the side plate. The vertical center plane of the slot is the same and parallel to the connecting plate. The depth of the slot is sufficient to allow the connecting lines on both sides of the first connector to be in the horizontal direction.

[0011] Optionally, the second end of the side plate of the main piece is turned outward to form the mounting plate, and the mounting plate is provided with a U-shaped groove, the U-shaped groove being perpendicular to the slot opening, and the opening of the U-shaped groove facing outward.

[0012] Optionally, the side plate of the auxiliary piece is provided with a protrusion at its end, and the connecting plate of the main piece is provided with a vertical groove. The protrusion is connected to the groove and can move vertically along the groove to adjust the connecting lines on both sides of the first connector in the horizontal direction.

[0013] Optionally, the bottom of the connecting plate of the main piece is provided with a clamping plate, the projection of the clamping plate and the support plate on the horizontal plane coincides, and the clamping plate presses on the body of the second connector.

[0014] Optionally, the lower edge of the connecting plate extends into a protrusion at the clamping plate and the support plate, and the clamping plate and the support plate are connected to the lower edge of the protrusion.

[0015] Optionally, the bayonet is L-shaped, including a vertical groove with its opening facing downward and a horizontal groove communicating with the upper end of the vertical groove, wherein the opening orientation of the horizontal groove is the same as the opening orientation of the second combined bayonet slot.

[0016] Optionally, the vertical groove is flared outwards with a diameter larger than that of the connecting line, and the inner diameter is smaller than that of the connecting line.

[0017] Optionally, the width of the slot and the bayonet is smaller than the diameter of the corresponding connecting line, the root of the slot and the bayonet is an arc surface, and the opening end is provided with a rounded corner.

[0018] The beneficial effect of this utility model is that the connector fixing bracket provided by this utility model has a mounting plate on the main plate. The mounting plate is attached to the mounting surface of the equipment and connected by a connector, thereby connecting the connector fixing bracket to the equipment through the mounting plate.

[0019] The main piece and the auxiliary piece have concave cavities. The width of the auxiliary piece is smaller than that of the main piece. It is installed in the concave cavity of the main piece. The opening of the concave cavity of the auxiliary piece is opposite to that of the main piece. The side of the auxiliary piece closest to the opening is attached to the bottom surface of the concave cavity of the main piece.

[0020] The upper part of the auxiliary piece and the upper part of the main piece together form a first combined slot, with the opening facing upwards. The first connector is detachably installed in the first combined slot. The bottom surface of the auxiliary piece and the bottom surface of the main piece form a height difference, together forming a second combined slot. The second connector is detachably installed in the second combined slot. The opening of the second combined slot faces outwards, and the opening direction is opposite to that of the mounting plate, i.e., the opening faces the side away from the mounting plate. After the mounting plate is connected to the equipment, the side opening is exposed, which does not affect the second connector or its disassembly.

[0021] During installation, the first connector is inserted downwards into the first combination slot through the top opening, and the first combination slot supports and positions the first connector. The second connector is inserted laterally into the second combination slot through the side opening, and the second combination slot supports and positions the second connector.

[0022] The connector mounting bracket provided by this utility model, with its main piece and auxiliary piece combined, forms two combined slots in different positions and orientations. This allows for the simultaneous fixing of two connectors within a limited space. The connectors are built into the combined slots, ensuring a secure fixation that prevents them from easily falling off. The brackets also provide isolation and protection for the connectors and connecting wires, reducing connection failures caused by loose mounting brackets. The combined slots have an open structure, and the connectors are detachably installed in relation to the combined slots, facilitating the installation, removal, and replacement of the connectors and improving the convenience of maintenance and repair. Attached Figure Description

[0023] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0024] Figure 1 is a structural diagram of a connector fixing frame provided in a specific embodiment of the present invention;

[0025] Figure 2 is a schematic diagram of the structure of the main piece in Figure 1;

[0026] Figure 3 is another view of the main image;

[0027] Figure 4 is a schematic diagram of the auxiliary piece in Figure 1;

[0028] Figure 5 is a schematic diagram of the connection position of the connector mounting bracket;

[0029] Figure 6 is a schematic diagram of the use of the connector mounting bracket.

[0030] Figure label:

[0031] 1-Main piece; 2-Auxiliary piece; 3-Connector fixing bracket; 4-First connector; 5-Second connector; 101-U-shaped groove; 102-First slot; 103-Second slot; 104-Bayonet; 105-Positioning port; 106-Pressure plate; 201-Third slot; 202-Fourth slot; 203-Protrusion; 204-Support plate; 301-First combined slot; 302-Second combined slot. Detailed Implementation

[0032] The core of this utility model is to provide a connector mounting bracket that can simultaneously fix two types of communication connectors, providing a secure fixation and easy disassembly.

[0033] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0034] Please refer to Figures 1 to 6. Figure 1 is a structural diagram of a connector fixing frame provided in a specific embodiment of this utility model; Figure 2 is a structural schematic diagram of the main piece in Figure 1; Figure 3 is another view of the main piece; Figure 4 is a structural schematic diagram of the auxiliary piece in Figure 1; Figure 5 is a schematic diagram of the connection position of the connector fixing frame; and Figure 6 is a schematic diagram of the use of the connector fixing frame.

[0035] In one specific embodiment, the connector mounting bracket provided by this utility model includes a main piece 1 and an auxiliary piece 2 with a concave cavity. The width of the auxiliary piece 2 is smaller than the width of the main piece 1. The auxiliary piece 2 is installed in the concave cavity of the main piece 1, and the openings of the concave cavities of the auxiliary piece 2 and the main piece 1 are opposite to each other. The upper part of the auxiliary piece 2 and the main piece 1 has a first combined slot 301 with the opening facing upward. The main piece 1 is provided with a mounting plate for connecting with a device. The bottom surface of the main piece 1 is lower than the bottom surface of the auxiliary piece 2, and a second combined slot 302 with the opening facing outward is formed at the height difference between the two. The opening of the second combined slot 302 faces opposite to that of the mounting plate. The first connector 4 is detachably installed in the first combined slot 301, and the second connector 5 is detachably installed in the second combined slot 302.

[0036] In the above structure, the main piece 1 is the main supporting part of the connector fixing frame 3. The main piece 1 is provided with a mounting plate. The mounting plate is attached to the mounting surface of the equipment and connected by a connector, thereby connecting the connector fixing frame 3 to the equipment through the mounting plate.

[0037] The main sheet 1 is a sheet-like structure with a certain thickness, in the shape of a rectangle or square, with a concave cavity in the middle. The shape of the concave cavity can be rectangular, U-shaped, or other shapes suitable for accommodating the auxiliary sheet 2.

[0038] Auxiliary piece 2 is also a sheet-like structure with a certain thickness, and its overall shape matches the concave cavity of main piece 1. The width of auxiliary piece 2 is smaller than the width of main piece 1. It is installed inside the concave cavity of main piece 1, with the opening of auxiliary piece 2 facing the opening of the concave cavity of main piece 1, and the side of auxiliary piece 2 closest to the opening fitting against the bottom surface of the concave cavity of main piece 1. The thickness of auxiliary piece 2 can be slightly less than or equal to the thickness of the concave cavity of main piece 1 to ensure that after installation, auxiliary piece 2 does not protrude from the concave cavity of main piece 1 and does not affect the connection between the mounting plate of main piece 1 and the device. The specific thickness of main piece 1 and auxiliary piece 2 is determined according to the actual dimensions required to fix the connector.

[0039] The upper part of the auxiliary piece 2 and the upper part of the main piece 1 together form a first combined slot 301 with the opening facing upwards. The first connector 4 is installed in the first combined slot 301. The bottom surface of the auxiliary piece 2 and the bottom surface of the main piece 1 form a height difference, together forming a second combined slot 302. The second connector 5 is installed in the second combined slot 302. The opening of the second combined slot 302 faces outwards, and the opening direction is opposite to that of the mounting plate, that is, the opening faces the side away from the mounting plate. After the mounting plate is connected to the equipment, the side opening is exposed, which does not affect the second connector 5 or its disassembly.

[0040] The first connector 4 and the second connector 5 are detachably connected to the first combination slot 301 and the second combination slot 302, respectively. During installation, the first connector 4 is inserted downward into the first combination slot 301 from the top opening, and the first combination slot 301 supports and positions the first connector 4. The second connector 5 is inserted laterally into the second combination slot 302 from the side opening, and the second combination slot 302 supports and positions the second connector 5.

[0041] It should be noted that the shape and size of the first combination slot 301 and the second combination slot 302 are designed according to actual application requirements, as long as they can match the first connector 4 and the second connector 5. Specifically, the first connector 4 can be a 485 communication connector, and the second connector 5 can be a USB to TTL connector. By adjusting the dimensions of the main piece 1 and the auxiliary piece 2, as well as the shape and size of the combination slots, the installation requirements of various connectors can be met, demonstrating versatility and adaptability.

[0042] The connector mounting bracket provided by this utility model, with the main piece 1 and the auxiliary piece 2 combined, forms two combined slots with different positions and orientations. This allows for the simultaneous fixing of two connectors within a limited space. The connectors are built into the combined slots, ensuring a secure fixation that prevents them from falling off. The brackets also isolate and protect the connectors and connecting wires, reducing connection failures caused by loose mounting brackets. The combined slots have an open structure, and the connectors are detachably installed in the combined slots, facilitating the installation, removal, and replacement of the connectors and improving the convenience of maintenance and repair.

[0043] Based on the above specific embodiments, the upper edge of the sidewall of the main piece 1 and the auxiliary piece 2 has an upward-opening groove, and the groove and the upper concave cavity form a first combined slot 301. The connecting line of the first connector 4 is connected to the groove of the main piece 1 and the main body is inserted into the groove of the auxiliary piece 2.

[0044] In one specific embodiment, the main plate 1 has a first slot 102 and a second slot 103 on each side wall, located at the upper edge of the side wall of the main plate 1, with the opening facing upwards. The auxiliary plate 2 has a third slot 201 and a fourth slot 202 on each side wall, located at the upper edge of the side wall of the auxiliary plate 2, with the opening facing upwards. The first slot 102, the second slot 103, the third slot 201, and the fourth slot 202, together with the concave cavity at the upper part of the main plate 1 and the auxiliary plate 2, form a first combined slot 301. The connecting wire of the first connector 4 is connected to the slot in the main plate 1, and the main body is inserted into the slot in the auxiliary plate 2, ensuring the stability of the connector. The first slot 102, the second slot 103, the third slot 201, and the fourth slot 202 are all open slots, allowing the connector to be easily installed from the top and easily removed, achieving detachable installation.

[0045] It should be noted that the size and shape of the first slot 102, the second slot 103, the third slot 201, and the fourth slot 202 are not limited. Based on the size design of the connecting wire and the main body of the first connector 4, the position of the slot is determined according to the position of the connector body and the connecting wire. When the connector is installed into the combination slot, it is ensured that the connecting wire can be smoothly embedded into the slot of the main piece 1, and the main body can be inserted into the slot of the auxiliary piece 2 to ensure the firmness of the fixation.

[0046] Based on the above specific embodiments, the bottom surface of the auxiliary piece 2 is provided with a support plate 204, and the lower edge of the side wall of the main piece 1 has a bayonet 104. The bayonet 104, the support plate 204 and the lower concave cavity form a second combined slot 302. The connecting line of the second connector 5 is connected to the bayonet 104 and the main body abuts against the support plate 204.

[0047] In one specific embodiment, the bayonet 104 is located at the lower edge of the side wall of the main piece 1, and the support plate 204 is located on the bottom surface of the auxiliary piece 2. The bayonet 104, the support plate 204, and the height difference cavity at the bottom of the main piece 1 and the auxiliary piece 2 form a second combined slot 302. The connecting wire of the second connector 5 is connected inside the bayonet 104, and the main body abuts against the support plate 204 to achieve a stable connection of the second connector 5. The second combined slot 302 has an outward opening, and the bayonet 104 is open, allowing the connector to be inserted and removed from both ends, achieving detachable installation.

[0048] The size and shape of the bayonet 104 are determined according to the size of the connecting wire of the second connector 5, and the position and size of the support plate 204 are designed according to the size of the main body of the second connector 5 to ensure that the connecting wire can be smoothly embedded in the bayonet 104, while the support plate 204 can support the main body.

[0049] In the above structure, the slots, bayonet 104 and support plate 204 of the main piece 1 and auxiliary piece 2 are combined to form two independent combined slots, which are used to install the first connector 4 and the second connector 5 respectively, realizing a stable connection and detachable connection between the two connectors.

[0050] Based on the above specific embodiments, both the main plate 1 and the auxiliary plate 2 include two side plates and a connecting plate. The two sides of the connecting plate are respectively connected to the first ends of the two side plates. The side plates are perpendicular to the connecting plate. The two side plates and the connecting plate form a concave cavity. The slot is provided on the side plate. The vertical center plane of the slot is the same and parallel to the connecting plate. The depth of the slot is sufficient to allow the connecting lines on both sides of the first connector 4 to be in the horizontal direction.

[0051] In one specific embodiment, the side plates and connecting plates are vertically arranged plate-like structures. The first ends of the two side plates are connected to the two sides of the connecting plate in the vertical direction. The connecting plate is perpendicular to the side plates, and the two side plates and the connecting plate form a concave cavity. The side plates form the two side walls of the concave cavity, and the connecting plate forms the bottom surface of the concave cavity.

[0052] The slots are located on the side plates of the main piece 1 and the auxiliary piece 2, at the upper edge of the side plates. After the auxiliary piece 2 is installed in the concave cavity of the main piece 1, the vertical center planes of the first slot 102, the second slot 103, the third slot 201, and the fourth slot 202 are the same, and the vertical center planes are parallel to the connecting plate. The slots are aligned front and back to ensure that the connecting wires and the main body of the first connector 4 can be accurately installed in the first combination slot 301.

[0053] The depths of the first slot 102 and the second slot 103 are such that the connecting wires on both sides of the first connector 4 can be smoothly inserted into the slots in the horizontal direction. The depths of the third slot 201 and the fourth slot 202 are designed to allow the main body of the first connector 4 to be inserted into the slots.

[0054] The first combination slot 301 has a simple structure. The depth and shape design of the slot ensure that the connector's connecting wires and main body can be smoothly installed and removed in the horizontal direction, improving the convenience and stability of installation.

[0055] Based on the above specific embodiments, the second end of the side plate of the main piece 1 is turned outward to form a mounting plate. The mounting plate is provided with a U-shaped groove 101, which is perpendicular to the groove opening and the opening of the U-shaped groove 101 faces outward.

[0056] In one specific embodiment, the second end of the side plate of the main piece 1 is bent outward to form a flange, i.e., a mounting plate. The mounting plate is perpendicular to the side plate and fits snugly against the mounting surface of the device. A U-shaped groove 101 is provided on the mounting plate. The U-shaped groove 101 of the main piece 1 and the connection hole of the external device are connected by screws, bolts, and other connectors to fix the main piece 1 to the external device, ensuring the stability of the entire connector mounting bracket 3. The U-shaped groove 101 is horizontal and perpendicular to the groove opening. The opening of the U-shaped groove 101 faces outward. The main piece 1 can move laterally along the connector through the U-shaped groove 101, thereby adjusting the position of the connector mounting bracket 3.

[0057] The main plate 1 and auxiliary plate 2 can be made of metal, which is sturdy and not easily damaged. The main plate 1 and auxiliary plate 2, together with the mounting plate, ensure the stable connection between the connector fixing frame 3 and the equipment, thereby ensuring the stability of the connector during use and avoiding poor contact due to vibration or collision.

[0058] Based on the above specific embodiments, the side plate end of the auxiliary piece 2 is provided with a protrusion 203, the connecting plate of the main piece 1 is provided with a vertical sliding groove, the protrusion 203 is connected to the sliding groove and can move vertically along the sliding groove to adjust the connecting lines on both sides of the first connector 4 in the horizontal direction.

[0059] In one specific embodiment, the side plate end of the auxiliary piece 2 has multiple protrusions 203, which are columnar or block-shaped structures. The connecting plate of the main piece 1 is provided with a positioning port 105 that mates with the protrusions 203. The protrusions 203 engage with the positioning port 105, positioning the auxiliary piece 2 on the main piece 1. It should be noted that the position of the positioning port 105 is determined through actual measurement and calculation, and after engaging with the protrusions 203, it can precisely position the auxiliary piece 2 at the required position on the main piece 1.

[0060] In a preferred embodiment, the positioning port 105 is replaced with a slide groove, which is vertically arranged and elongated in shape. The slide groove matches the protrusion 203 to ensure that the protrusion 203 can be smoothly inserted and move vertically along the slide groove.

[0061] The protrusion 203 slides along the groove, enabling the auxiliary piece 2 to move vertically, thereby adjusting the height of the slot on the auxiliary piece 2 to accommodate the first connector 4 with different body sizes; at the same time, the positions of the support surfaces of the first slot 102, the second slot 103, the third slot 201, and the fourth slot 202 can be adjusted, and each slot supports the connector to ensure that the connecting lines on both sides of the first connector 4 are in the horizontal direction, ensuring the flatness and stability of the connecting lines.

[0062] Based on the above specific embodiments, the bottom of the connecting plate of the main piece 1 is provided with a pressing plate 106. The pressing plate 106 and the support plate 204 are projected onto the horizontal plane and the pressing plate 106 presses on the body of the second connector 5.

[0063] In a preferred embodiment, the clamping plate 106 is disposed at the bottom of the connecting plate of the main piece 1, above the second combined slot 302. The clamping plate 106 and the support plate 204 are aligned horizontally, and their positions coincide in the horizontal projection. The main body of the second connector 5 abuts against the support plate 204 of the auxiliary piece 2, and the clamping plate 106 presses against the main body of the second connector 5. The distance between the clamping plate 106 and the support plate 204 is slightly less than or equal to the thickness of the main body of the second connector 5. The support plate 204 and the clamping plate 106 clamp the second connector 5, ensuring the stability of the second connector 5 during use and preventing loosening.

[0064] The support plate 204 and the clamping plate 106 are thin metal plates with elasticity. The second connector 5 is sandwiched between the support plate 204 and the clamping plate 106, which can both clamp the second connector 5 and facilitate the removal and installation of the second connector 5.

[0065] Based on the above specific embodiments, the lower edge of the connecting plate extends into a protruding plate at the clamping plate 106 and the support plate 204, and the clamping plate 106 and the support plate 204 are connected to the lower edge of the protruding plate.

[0066] In a preferred embodiment, the connecting plate, the pressing plate 106, and the support plate 204 can be integrally stamped or bent, or they can be welded or connected by fasteners.

[0067] For the one-piece molded structure, the lower edge of the connecting plate extends at the position of the clamping plate 106 and the support plate 204, and a protruding plate extends from the lower edge of the connecting plate. The protruding plate is parallel to the connecting plate along its direction. The connecting plate has space in other positions besides the clamping plate 106 and the support plate 204, which not only facilitates bending or stamping of the clamping plate 106 and the support plate 204; the connection between the clamping plate 106 and the support plate 204 and the lower edge of the protruding plate also facilitates the insertion and removal of the second connector 5.

[0068] Based on the above specific embodiments, the bayonet 104 is L-shaped, including a vertical groove with the opening facing downward and a horizontal groove communicating with the upper end of the vertical groove. The opening orientation of the horizontal groove is the same as the opening orientation of the second combined bayonet 302.

[0069] In a preferred embodiment, the bayonet 104 is L-shaped, including a vertical groove and a horizontal groove. The opening of the vertical groove faces downward, and the lower end of the vertical groove is located at the lower edge of the side plate of the main piece 1. The horizontal groove communicates with the upper end of the vertical groove. The connecting wire of the second connector 5 enters from the opening of the vertical groove, moves upward along the vertical groove, and turns at the upper end of the vertical groove to enter the horizontal groove. The vertical groove and the horizontal groove provide double fixation for the connecting wire, ensuring that the connecting wire of the second connector 5 will not loosen during use.

[0070] The opening of the transverse groove faces the same direction as the opening of the second combination slot 302. The body of the second connector 5 enters laterally from the side opening of the second combination slot 302, and the direction of the connecting line entering laterally from the opening of the transverse groove is the same. That is, the connecting line and the body of the second connector 5 are inserted in the same direction during installation, which is convenient for installation.

[0071] Of course, the opening orientation of the transverse groove can be opposite to that of the opening orientation of the second combination slot 302. The body of the second connector 5 is pushed laterally backward from the side opening of the second combination slot 302, and the connecting line is pushed laterally forward from the opening of the transverse groove. The connecting line and the body of the second connector 5 are inserted in opposite directions and pushed out in opposite directions during installation, thus mutually restraining each other and preventing the second connector 5 from coming out of the second combination slot 302.

[0072] Based on the above specific embodiments, the vertical groove is flared outwards with a diameter larger than that of the connecting wire, while the inner diameter is smaller than that of the connecting wire.

[0073] In a preferred embodiment, the vertical groove is flared outwards, with a diameter greater than or equal to that of the connecting wire, facilitating smooth insertion of the connecting wire. The inner diameter of the vertical groove is smaller than that of the connecting wire, allowing the connecting wire to be held in place by the narrowing inner opening of the vertical groove after insertion into the horizontal groove, thus limiting the connection wire and preventing it from loosening or coming out. Simultaneously, the horizontal groove further secures the connecting wire, providing a more stable connection.

[0074] Based on the above specific embodiments, the width of the slot and the bayonet 104 is smaller than the diameter of the corresponding connecting line, the root of the slot and the bayonet 104 is an arc surface, and the end of the opening is provided with a rounded corner.

[0075] In a preferred embodiment, the width of the slot and the latch 104 is determined according to the size of the connecting wire, ensuring that the connecting wire can be smoothly inserted and tightly fitted. The width of the slot and the latch 104 is smaller than the diameter of the corresponding connecting wire, ensuring that the connecting wire can be firmly held in place and preventing loosening. The root of the slot and the latch 104 is an arc surface, which makes smooth contact with the connecting wire. This not only reduces wear on the connecting wire caused by the slot and the latch 104, but also reduces stress concentration and improves the strength and reliability of the structure. The opening ends of the slot and the latch 104 are provided with rounded corners. The rounded corners can prevent the connecting wire from being scratched when inserted or removed, and also help guide the connecting wire smoothly into the slot.

[0076] The various embodiments in this specification are described in a progressive manner, with each embodiment focusing on the differences from other embodiments. The same or similar parts between the various embodiments can be referred to each other.

[0077] The connector mounting bracket provided by this utility model has been described in detail above. Specific examples have been used to illustrate the principle and implementation of this utility model. The descriptions of the embodiments above are only for the purpose of helping to understand the method and core idea of ​​this utility model. It should be noted that those skilled in the art can make various improvements and modifications to this utility model without departing from its principles, and these improvements and modifications also fall within the protection scope of the claims of this utility model. Therefore, this utility model is not limited to the embodiments shown herein, but is to be accorded the widest scope consistent with the principles and novel features disclosed herein.

Claims

1. A connector mounting bracket, characterized in that, The device includes a main piece (1) and an auxiliary piece (2) having concave cavities. The width of the auxiliary piece (2) is smaller than the width of the main piece (1). The auxiliary piece (2) is installed in the concave cavity of the main piece (1), and the openings of the concave cavities of the auxiliary piece (2) and the main piece (1) are opposite to each other. The upper part of the auxiliary piece (2) and the main piece (1) has an upward-facing first combination slot (301). The main piece (1) is provided with a mounting plate for connecting to the device. The bottom surface of the main piece (1) is lower than the bottom surface of the auxiliary piece (2), and a second combination slot (302) with an outward-facing opening is formed at the height difference between the two. The opening of the second combination slot (302) is opposite to that of the mounting plate. A first connector (4) is detachably installed in the first combination slot (301), and a second connector (5) is detachably installed in the second combination slot (302).

2. The connector mounting bracket according to claim 1, characterized in that, The upper edge of the sidewall of the main piece (1) and the auxiliary piece (2) has an upward-opening slot. The slot and the upper concave cavity form the first combined slot (301). The connecting line of the first connector (4) is connected to the slot of the main piece (1) and the main body is inserted into the slot of the auxiliary piece (2). The bottom surface of the auxiliary piece (2) is provided with a support plate (204). The lower edge of the sidewall of the main piece (1) has a slot (104). The slot (104), the support plate (204) and the lower concave cavity form the second combined slot (302). The connecting line of the second connector (5) is connected to the slot (104) and the main body abuts against the support plate (204).

3. The connector mounting bracket according to claim 2, characterized in that, The main piece (1) and the auxiliary piece (2) each include two side plates and a connecting plate. The two sides of the connecting plate are respectively connected to the first ends of the two side plates. The side plates are perpendicular to the connecting plate. The two side plates and the connecting plate form the concave cavity. The slot is provided on the side plate. The vertical center plane of the slot is the same. The vertical center plane is parallel to the connecting plate. The depth of the slot is sufficient to make the connecting lines on both sides of the first connector (4) run in the horizontal direction.

4. The connector mounting bracket according to claim 3, characterized in that, The second end of the side plate of the main piece (1) is turned outward to form the mounting plate. The mounting plate is provided with a U-shaped groove (101). The U-shaped groove (101) is perpendicular to the groove opening and the opening of the U-shaped groove (101) faces outward.

5. The connector mounting bracket according to claim 3, characterized in that, The auxiliary piece (2) has a protrusion (203) at the end of its side plate, and the main piece (1) has a vertical groove on its connecting plate. The protrusion (203) is connected to the groove and can move vertically along the groove to adjust the connecting lines on both sides of the first connector (4) in the horizontal direction.

6. The connector mounting bracket according to claim 2, characterized in that, The bottom of the connecting plate of the main piece (1) is provided with a pressing plate (106). The pressing plate (106) and the support plate (204) are projected on the horizontal plane and the pressing plate (106) presses on the body of the second connector (5).

7. The connector mounting bracket according to claim 6, characterized in that, The lower edge of the connecting plate extends into a protrusion at the clamping plate (106) and the support plate (204), and the clamping plate (106) and the support plate (204) are connected to the lower edge of the protrusion.

8. The connector mounting bracket according to claim 2, characterized in that, The bayonet (104) is L-shaped and includes a vertical groove with its opening facing downward and a horizontal groove communicating with the upper end of the vertical groove. The opening orientation of the horizontal groove is the same as the opening orientation of the second combined slot (302).

9. The connector mounting bracket according to claim 8, characterized in that, The vertical groove is flared outwards with a diameter larger than that of the connecting wire, while the inner diameter is smaller than that of the connecting wire.

10. The connector mounting bracket according to claim 8, characterized in that, The width of the slot and the bayonet (104) is smaller than the diameter of the corresponding connecting line. The root of the slot and the bayonet (104) is an arc surface, and the opening end is provided with a rounded corner.