Integrated data connector
The design of the positioning rod and fixing plate solves the problem of data connectors loosening or breaking under external force, achieving stability and accuracy of data transmission and ensuring the reliability of equipment operation.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-12
- Publication Date
- 2026-03-27
AI Technical Summary
Existing data connectors are prone to loosening or disconnection when subjected to external forces, leading to data transmission interruption or signal loss, which affects the normal operation of the system and data integrity.
The system employs a positioning and locking mechanism, including a positioning rod and a fixing plate. A stable connection is achieved through positive and negative threaded rods and L-shaped inserts. Combined with the threaded connection of the positioning ball and the reinforcing collar, it ensures accurate docking and stable connection between the data receiver and the transmitter.
Stable connection of the data connector was achieved, avoiding data loss and transmission errors caused by loose or disconnected connections, thus improving the reliability of data transmission and the overall reliability of equipment operation.
Smart Images

Figure CN224053554U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to data information transmission equipment technical field especially, relates to an integrated data connector. BACKGROUND
[0002] Data connector is a kind of tool, is used to transmit and integrate data between different systems or platforms, ensure the smooth and consistency of data flow.It is widely used, covers data analysis, business intelligence, cloud computing and enterprise resource planning etc. field.Integrated data connector has high compatibility and automation capability, can seamlessly integrate multiple data sources, simplify data management process.In addition, it usually supports real-time data processing, improves the efficiency and accuracy of data processing.
[0003] Integrated data connector usually includes interface module, data conversion module, transmission protocol module and security management module.Its working principle is to connect different data sources and target systems through interface module, utilize data conversion module to unify data format, then realize efficient, stable data transmission through transmission protocol module, while security management module ensures the confidentiality and integrity of data in transmission process.The whole process is highly automated, can synchronize data in real time or timing, ensure the consistency and availability of data.
[0004] In prior art, the connection of data connector is usually connected in simple and convenient plug-in mode, so that part of data connector is loose or disconnected under external force (such as vibration, collision, etc.), resulting in data transmission interruption or signal loss, affecting the normal operation of system and the integrity of data, and frequent loosening or disconnection will also damage the connector itself.
[0005] Therefore, in view of the above problems, an integrated data connector is proposed to solve the above problems. CONTENT OF UTILITY MODEL
[0006] In order to make up for the above shortcomings, the utility model provides an integrated data connector, aims at improving the problem that part of data connector in prior art is easy to loosen or disconnect under external force.
[0007] In order to realize the above purpose, the utility model adopts the following technical scheme:
[0008] An integrated data connector, comprising data receiver and data transmitter, the left and right ends of the data receiver and the data transmitter are provided with positioning mechanism, the upper and lower sides of the data receiver and the data transmitter are provided with locking mechanism;
[0009] The locking mechanism comprises a fixed plate one and a fixed plate two, the bottom of the two fixed plate ones is fixedly connected to the upper and lower sides of the data receiver respectively, the bottom of the two fixed plate twos is fixedly connected to the upper and lower sides of the data transmitter respectively, the outside of the fixed plate one is fixedly connected with a clamping block, the inside of the fixed plate two is rotatably connected with a reversible toothed lead screw, the outside of the reversible toothed lead screw is threadedly connected with two L-shaped plug blocks;
[0010] As a further description of the above technical solution:
[0011] The two sides of the clamping block are respectively provided with two clamping grooves, and the proximal ends of the two L-shaped plug blocks are respectively detachably connected to the interiors of the two clamping grooves.
[0012] As a further description of the above technical solution:
[0013] The inside of the fixed plate two is provided with two movable grooves, and the outside of the L-shaped plug block is slidably connected to the inside of the movable groove.
[0014] As a further description of the above technical solution:
[0015] The data receiver comprises an insulating shell one, the wide mouth direction of the insulating shell one is fixedly connected with a butt joint shell one, the rear side of the butt joint shell one is fixedly connected with a copper plate, and the inside of the butt joint shell one is provided with a plurality of data connectors.
[0016] As a further description of the above technical solution:
[0017] The data receiver comprises an insulating shell two, the wide mouth direction of the insulating shell two is fixedly connected with a butt joint shell two, and the inside of the butt joint shell two is provided with a plurality of data plugs.
[0018] As a further description of the above technical solution:
[0019] The positioning mechanism comprises a positioning rod one and a positioning rod two, the outer walls of the two positioning rod ones are respectively fixedly connected to the left and right ends of the insulating shell one, the outer walls of the two positioning rod twos are respectively fixedly connected to the left and right ends of the insulating shell two, one end of the positioning rod one is rollingly connected with a plurality of positioning balls, one end of the positioning rod one is fixedly connected with a butt joint column, the outside of the positioning rod one is threadedly connected with a reinforcing sleeve ring, and the outer wall of the positioning rod two is fixedly connected with a limiting ring.
[0020] As a further description of the above technical solution:
[0021] A plurality of positioning grooves are formed on the positioning rod two, and the shapes of the positioning grooves are respectively matched with the shapes of the positioning balls and the butt joint column.
[0022] As a further description of the above technical solution:
[0023] The outer side of the positioning rod two is provided with a threaded groove, and the inner side of the reinforcing sleeve ring is threadedly connected to the outer side of the positioning rod two.
[0024] The utility model has the advantages of the following:
[0025] 1. In the utility model, the clamping block enters the fixed plate two by the close adhesion of the fixed plate one and the fixed plate two, the two L-shaped insertion blocks move towards each other under the limitation of the movable groove, and are inserted into the clamping block slot, so that the fixed plate one and the fixed plate two are tightly connected, thereby realizing the stability of the connection part of the whole integrated data connector during butt joint, ensuring the stability and accuracy of data transmission, avoiding data loss, transmission error and other problems caused by loose or disconnected connection parts, guaranteeing the efficient and reliable transmission of various data, reducing the frequent maintenance and debugging of equipment due to unstable connection, and improving the overall reliability of equipment operation.
[0026] 2. In the utility model, the positioning rod one and the positioning rod two move towards each other to realize advanced butt joint positioning, the butt joint column on the positioning rod one is inserted into the positioning rod two to complete preliminary guidance, the positioning ball is finely adjusted at multiple angles in the positioning groove to ensure accurate butt joint, and finally the reinforcing sleeve ring on the outer side of the positioning rod one is rotated to be threadedly connected with the positioning rod two, so that the two are tightened by the self-locking thread, the butt joint is reinforced, stable butt joint is completed, and accurate butt joint of the data connector is realized, thereby guaranteeing the accuracy and efficiency of data transmission, avoiding errors, omissions or delays of data due to butt joint deviation, and ensuring stable and smooth data interaction between different equipment. BRIEF DESCRIPTION OF DRAWINGS
[0027] Figure 1 A three-dimensional schematic view of an integrated data connector is provided for the utility model;
[0028] Figure 2 A structural explosion view of an integrated data connector is provided for the utility model;
[0029] Figure 3 A structural schematic view of a data receiver of an integrated data connector is provided for the utility model;
[0030] Figure 4 A structural schematic view of a data transmitter of an integrated data connector is provided for the utility model;
[0031] Figure 5 A structural schematic view of a positioning mechanism of an integrated data connector is provided for the utility model;
[0032] Figure 6 A structural schematic view of a locking mechanism of an integrated data connector is provided for the utility model.
[0033] LEGEND:
[0034] 1, data receiver; 101, insulating shell one; 102, metal copper plate; 103, butt joint shell one; 104, data connector; 2, data transmitter; 201, insulating shell two; 202, butt joint shell two; 203, data plug; 3, positioning mechanism; 301, positioning rod one; 302, positioning ball; 303, butt joint column; 304, reinforcing collar; 305, positioning rod two; 306, limiting ring; 4, locking mechanism; 401, fixed plate one; 402, clamping block; 403, clamping groove; 404, fixed plate two; 405, positive and negative toothed rod; 406, L-shaped insertion block; 407, movable groove. DETAILED DESCRIPTION
[0035] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.
[0036] Referring to Figures 2 to 4 , the present application provides an embodiment: an integrated data connector, comprising a data receiver 1 and a data transmitter 2, the left and right ends of the data receiver 1 and the data transmitter 2 are provided with a positioning mechanism 3, when the data receiver 1 and the data transmitter 2 need to be butt jointed, the positioning mechanism 3 can quickly and accurately determine the relative position of the two, ensuring that each interface of the data receiver 1 and the data transmitter 2 can be accurately aligned. The upper and lower sides of the data receiver 1 and the data transmitter 2 are provided with a locking mechanism 4, when the data receiver 1 and the data transmitter 2 are butt jointed through the positioning mechanism 3, the locking mechanism 4 is used to lock the connection between the data receiver 1 and the data transmitter 2, avoiding the connection of the data receiver 1 and the data transmitter 2 from being affected by various external forces, such as vibration, collision, etc., resulting in loosening or disconnection.
[0037] The data receiver 1 comprises an insulating shell 101 for protecting the internal electrical elements from the external environment and preventing current leakage. The wide mouth of the insulating shell 101 is fixedly connected with a docking shell 103 for protecting the subsequent data docking structure. The rear side of the docking shell 103 is fixedly connected with a metal copper plate 102 which has good conductivity and heat dissipation, so that the metal copper plate 102 can ensure that the temperature inside the data receiver 1 is within the normal range while improving the stability and speed of data transmission. The inside of the docking shell 103 is provided with a plurality of data connectors 104 which can accurately identify and receive data signals and transmit them to the internal processing circuit of the data receiver 1 for further processing, and the integrated design of the plurality of data connectors 104 enables the data receiver 1 to simultaneously receive data signals from multiple different sources.
[0038] The data receiver 1 comprises an insulating shell 201 which functions the same as the insulating shell 101 to protect the internal electrical elements and prevent current leakage. The wide mouth of the insulating shell 201 is fixedly connected with a docking shell 202 which is used in cooperation with the docking shell 103, and a sealing gasket is arranged between the docking shell 103 and the docking shell 202 to achieve good sealing effect, thereby preventing dust from entering the docking area and interfering with data transmission. The inside of the docking shell 202 is provided with a plurality of data plugs 203 which can accurately transmit these signals to the data connectors 104.
[0039] Referring to Figure 1 , Figure 2 and Figure 6The locking mechanism 4 comprises a fixed plate one 401 and a fixed plate two 404. The bottom of the two fixed plate ones 401 is fixedly connected to the upper and lower sides of the data receiver 1 respectively, and the bottom of the two fixed plate twos 404 is fixedly connected to the upper and lower sides of the data transmitter 2 respectively. The fixed plate one 401 is fixed on the docking shell one 103, and the fixed plate two 404 is fixed on the docking shell two 202, so that the fixed plate one 401 and the fixed plate two 404 can be tightly fitted when the data receiver 1 and the data transmitter 2 are docked, to facilitate subsequent locking operation. The outside of the fixed plate one 401 is fixedly connected with a clamping block 402. When the data receiver 1 and the data transmitter 2 are docked, the clamping block 402 will cooperate with the components on the fixed plate two 404 to realize the locking function. The inside of the fixed plate two 404 is rotatably connected with a reversible toothed lead screw 405, and the outside of the reversible toothed lead screw 405 is threadedly connected with two L-shaped plug blocks 406. When the reversible toothed lead screw 405 rotates, due to the design of the reversible tooth, the two L-shaped plug blocks 406 threadedly connected to the outside of the reversible toothed lead screw 405 will move towards or away from each other. Two clamping grooves 403 are respectively formed in the two sides of the clamping block 402, and the proximal ends of the two L-shaped plug blocks 406 are respectively detachably connected to the inside of the two clamping grooves 403. When the reversible toothed lead screw 405 rotates, the L-shaped plug blocks will move along the axial direction of the lead screw until their proximal ends are inserted into the clamping grooves 403 on the two sides of the clamping block 402, thereby tightly connecting the fixed plate one 401 and the fixed plate two 404 together. The inside of the fixed plate two 404 is provided with two movable grooves 407, and the outside of the L-shaped plug blocks 406 is slidably connected to the inside of the movable grooves 407. The movable grooves 407 are used to limit the rotational movement of the L-shaped plug blocks 406, so that the L-shaped plug blocks 406 only move linearly along the axial direction of the reversible toothed lead screw 405.
[0040] Referring to Figure 1 , Figure 2 and Figure 5, the positioning mechanism 3 comprises a positioning rod one 301 and a positioning rod two 305, the outer walls of the two positioning rod ones 301 are fixedly connected to the left and right ends of the insulating shell one 101 respectively, the outer walls of the two positioning rod twos 305 are fixedly connected to the left and right ends of the insulating shell two 201 respectively, so that the positioning rod one 301 and the positioning rod two 305 move synchronously to realize advanced docking when the data receiver 1 and the data transmitter 2 are docked, so that the advanced positioning effect is realized. A plurality of positioning balls 302 are rollingly connected to one end of the positioning rod one 301, the spherical surface of the positioning ball 302 can realize multi-angle fine adjustment in the positioning groove, even if there is a certain deviation in the docking process, accurate docking can also be realized through the rolling and fine adjustment of the positioning ball 302. The one end of the positioning rod one 301 is fixedly connected with a docking column 303, the docking column 303 plays a preliminary guiding and positioning role, ensuring the accuracy of the data receiver 1 and the data transmitter 2 in the docking direction. A plurality of positioning grooves are formed in the positioning rod two 305, the shapes of the positioning grooves are matched with the shapes of the positioning ball 302 and the docking column 303 respectively, so that the close cooperation between the positioning rod one 301 and the positioning rod two 305 is realized. The outer side of the positioning rod one 301 is threadedly connected with a reinforcing sleeve ring 304, the outer side of the positioning rod two 305 is provided with a threaded groove, the inner side of the reinforcing sleeve ring 304 is threadedly connected to the outer side of the positioning rod two 305, by rotating the reinforcing sleeve ring 304, the reinforcing sleeve ring 304 is moved along the thread of the positioning rod one 301 to the positioning rod two 305 and is threadedly connected with the threaded groove in the outer side of the positioning rod two 305, so that when the reinforcing sleeve ring 304 is threadedly connected with the positioning rod two 305, an axial tension is generated by the self-locking characteristic of the thread, the positioning rod one 301 and the positioning rod two 305 are tightly pulled together, so that the connection between the data receiver 1 and the data transmitter 2 is further reinforced. The outer wall of the positioning rod two 305 is fixedly connected with a limiting ring 306, the limiting ring 306 plays a role of limiting the movement range of the reinforcing sleeve ring 304, so as to prevent the reinforcing sleeve ring 304 from sliding out of the positioning rod one 301.
[0041] Working principle: before docking, the positioning rod one 301 and the positioning rod two 305 move towards each other to realize advanced docking positioning. The docking column 303 on the positioning rod one 301 is inserted into the positioning rod two 305 to realize preliminary guiding, and then the positioning ball 302 is multi-angle fine adjusted in the positioning groove of the positioning rod two 305 to ensure accurate docking. Subsequently, the reinforcing sleeve ring 304 on the outer side of the positioning rod one 301 is rotated to move along the thread to the positioning rod two 305 and is connected with the threaded groove in the outer side of the positioning rod two 305, an axial tension is generated by the self-locking of the thread, the positioning rod one 301 and the positioning rod two 305 are pulled tightly, the connection between the two is reinforced, so that the accurate and stable docking of the data receiver 1 and the data transmitter 2 is completed.
[0042] When the data receiver 1 is connected with the data transmitter 2 again, the fixed plate 401 on the docking shell 103 on the upper and lower sides of the data receiver 1 is tightly attached to the fixed plate 404 on the docking shell 202 on the upper and lower sides of the data transmitter 2, so that the clamping block 402 enters the fixed plate 404, and then the positive and negative toothed rod 405 is rotated, due to the design of the positive and negative teeth, the two L-shaped insertion blocks move towards each other due to the shape limitation of the movable slot 407, and the proximal end of the two L-shaped insertion blocks is inserted into the clamping groove 403 on the two sides of the clamping block 402, so as to realize the fastening connection of the fixed plate 401 and the fixed plate 404, and when it is needed to disconnect the data receiver 1 and the data transmitter 2, the L-shaped insertion block 406 is reversely moved to be separated from the clamping groove 403 on the two sides of the clamping block 402 by reversely rotating the positive and negative toothed rod 405, so as to realize the unlocking operation, the overall operation is simple, the stability of the connection is improved, and the operation difficulty is reduced.
[0043] When working, the insulating shell protection element of the data receiver 1 prevents current leakage, the docking shell protects the docking structure, the copper plate 102 ensures normal temperature and improves transmission stability, the data joint 104 receives signals, and the corresponding structure of the data transmitter 2 cooperates with the data joint 104, the data plug 203 transmits signals to the data joint 104, and data transmission is realized.
[0044] Finally, it should be noted that: the above only for the preferred embodiments of the present application, and not for limiting the present application, although the present application has been described in detail with reference to the foregoing embodiments, for those skilled in the art, it can still modify the technical solutions recorded in the foregoing embodiments, or make equivalent replacement for part of the technical features, any modification, equivalent replacement, improvement, etc. made within the spirit and principles of the present application shall be included in the protection scope of the present application.
Claims
1. An integrated data connector comprising a data receiver (1) and a data transmitter (2), characterized in that: The data receiver (1) and the left and right ends of the data transmitter (2) are provided with positioning mechanisms (3), and the upper and lower sides of the data receiver (1) and the data transmitter (2) are provided with locking mechanisms (4); The locking mechanism (4) comprises a fixed plate one (401) and a fixed plate two (404), the bottoms of the two fixed plate ones (401) are respectively fixedly connected to the upper and lower sides of the data receiver (1), the bottoms of the two fixed plate twos (404) are respectively fixedly connected to the upper and lower sides of the data transmitter (2), the outer part of the fixed plate one (401) is fixedly connected with a clamping block (402), the inner part of the fixed plate two (404) is rotatably connected with a reversible toothed rod (405), and the outer side of the reversible toothed rod (405) is threadedly connected with two L-shaped insertion blocks (406).
2. An integrated data connector as defined in claim 1, wherein: Two clamping grooves (403) are formed in the two sides of the clamping block (402), and the proximal ends of the two L-shaped insertion blocks (406) are respectively detachably connected to the inner parts of the two clamping grooves (403).
3. An integrated data connector as defined in claim 1, wherein: Two movable grooves (407) are formed in the inner part of the fixed plate two (404), and the outer side of the L-shaped insertion block (406) is slidably connected to the inner part of the movable groove (407).
4. The integrated data connector of claim 1, wherein: The data receiver (1) comprises an insulating shell one (101), the wide-mouth direction of the insulating shell one (101) is fixedly connected with a butt joint shell one (103), the rear side of the butt joint shell one (103) is fixedly connected with a copper plate (102), and the inner part of the butt joint shell one (103) is provided with a plurality of data connectors (104).
5. An integrated data connector as defined in claim 4, wherein: The data receiver (1) comprises an insulating shell two (201), the wide-mouth direction of the insulating shell two (201) is fixedly connected with a butt joint shell two (202), and the inner part of the butt joint shell two (202) is provided with a plurality of data plugs (203).
6. An integrated data connector as defined in claim 5, wherein: The positioning mechanism (3) comprises a positioning rod one (301) and a positioning rod two (305), the outer walls of the two positioning rod ones (301) are respectively fixedly connected to the left and right ends of the insulating shell one (101), the outer walls of the two positioning rod twos (305) are respectively fixedly connected to the left and right ends of the insulating shell two (201), one end of the positioning rod one (301) is rollingly connected with a plurality of positioning balls (302), one end of the positioning rod one (301) is fixedly connected with a butt joint column (303), the outer side of the positioning rod one (301) is threadedly connected with a reinforcing sleeve ring (304), and the outer wall of the positioning rod two (305) is fixedly connected with a limiting ring (306).
7. An integrated data connector as defined in claim 6, wherein: A plurality of positioning grooves are formed in the positioning rod two (305), and the shapes of the positioning grooves are respectively matched with the shapes of the positioning balls (302) and the butt joint column (303).
8. An integrated data connector as defined in claim 6, wherein: A threaded groove is formed in the outer side of the positioning rod two (305), and the inner side of the reinforcing sleeve ring (304) is threadedly connected to the outer side of the positioning rod two (305).