Multifunctional signal conversion wire harness
By designing a multi-functional signal conversion harness, using elbow connectors, self-locking clips, and QR code labels, the problem of messy wiring and insufficient stability in multi-device connections of traditional conversion harnesses is solved, achieving a stable connection and clear identification, and improving the reliability of equipment operation and management efficiency.
Patent Information
- Application Number
- CN202520152299.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-22
- Publication Date
- 2026-02-27
- Estimated Expiration
- 2035-01-22
AI Technical Summary
Traditional conversion harnesses are inconvenient when connecting multiple different types of devices, resulting in messy wiring, insufficient connection stability, and a tendency to cause errors and signal interruptions.
The design incorporates a multi-functional signal conversion harness, featuring elbow connectors, self-locking clips, locking screws, and QR code labels. By using different types of connectors and branch identification signs, the connection stability and recognizability are enhanced.
It achieves robust and clear identification of multi-device connections, avoids connection errors and signal interruptions, and improves the reliability of equipment operation and management efficiency.
Smart Images

Figure CN223957042U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to the technical field of conversion harness, specifically relates to a multifunctional signal conversion harness. BACKGROUND
[0002] In the era of the wide application of electronic equipment, conversion harness is widely used in the connection and signal transmission process of various equipment, and the traditional conversion harness is single in structure, is inconvenient when connecting multiple different types of equipment, and lacks effective organization and identification mode in the connection of multiple branches, which can cause line confusion, lead to connection errors and affect the normal operation of equipment. UTILITARY MODEL
[0003] The utility model aims at providing a multifunctional signal conversion harness, which aims at solving the above technical problems.
[0004] In order to achieve the above object, the utility model provides the following technical scheme: a multifunctional signal conversion harness, including elbow connector, the tail end of the elbow connector is connected with main braided mesh cable through the tail shell of integrated injection molding, the main braided mesh cable is connected with first rubber shell connector through first branch braided mesh cable, the main braided mesh cable is connected with second rubber shell connector through second branch braided mesh cable, both sides of the second rubber shell connector are equipped with first self-locking buckle, the main braided mesh cable is connected with third rubber shell connector through third branch braided mesh cable, the outside of the third rubber shell connector is equipped with second self-locking buckle, the main braided mesh cable is still connected with injection molding connector through fourth branch braided mesh cable, both sides of the injection molding connector are equipped with locking screw rod, the main braided mesh cable is still connected with fourth rubber shell connector through fifth branch braided mesh cable, the tail end of the main braided mesh cable is connected with fifth rubber shell connector.
[0005] As a preferred embodiment of the utility model, the plug-in end of the elbow connector is rotatably connected with a locking nut, and the inner side of the locking nut is provided with a locking thread.
[0006] As a preferred embodiment of the utility model, the main braided mesh cable and the first branch braided mesh cable, the second branch braided mesh cable, the third branch braided mesh cable, the fourth branch braided mesh cable, the fifth branch braided mesh cable and the fifth rubber shell connector are all covered with double-layer thermoplastic sleeve.
[0007] As a preferred of the utility model, the outside of the main braided mesh cable is further sleeved with a two-dimensional code label paper, the surface of the two-dimensional code label paper is printed with a two-dimensional code mark, the outside of the first branch braided mesh cable, the second branch braided mesh cable, the third branch braided mesh cable, the fourth branch braided mesh cable and the fifth branch braided mesh cable is sleeved with a corresponding branch signboard.
[0008] As a preferred of the utility model, the pin of the second rubber shell connector is 12pin, the pin of the injection molding connector is 9pin, and the pin of the third rubber shell connector is 6pin.
[0009] Compared with the prior art, the utility model has the beneficial effects that:
[0010] 1) The multifunctional signal conversion wire harness of the utility model can meet the connection needs of various devices through the setting of various types of connectors, different types of connectors can realize the connection of various devices, and the first self-locking buckle of the second rubber shell connector, the second self-locking buckle of the third rubber shell connector and the locking screw rod of the injection molding connector can effectively increase the stability of the connection when the connector is connected with the device, so that the problems such as signal transmission interruption caused by loose connection are avoided.
[0011] 2) The two-dimensional code label paper (127) of the main braided mesh cable and the branch signboard of each branch braided mesh cable can provide clear identification information for the user. The detailed information of the conversion wire harness can be obtained by scanning the two-dimensional code, and the branch signboard can quickly distinguish different branches for the user, so that the installation, maintenance and management of the conversion wire harness are facilitated, and the occurrence of connection errors is effectively prevented. BRIEF DESCRIPTION OF DRAWINGS
[0012] The accompanying drawings are used to provide a further understanding of the utility model, and constitute a part of the specification, and are used to explain the utility model together with embodiments of the utility model, and do not constitute a limitation to the utility model. In the drawings:
[0013] Figure 1 It is a structural schematic view of the utility model;
[0014] Figure 2 It is a structural schematic view of the elbow connector of the utility model;
[0015] Figure 3 It is a structural schematic view of the second rubber shell connector of the utility model;
[0016] Figure 4 It is a structural schematic view of the third rubber shell connector of the utility model;
[0017] Figure 5The utility model discloses a structure diagram of plug end of injection molding connector.
[0018] In the figure: 100, elbow connector; 101, locking nut; 110, tail shell; 120, main braided mesh cable; 121, first branch braided mesh cable; 122, second branch braided mesh cable; 123, third branch braided mesh cable; 124, fourth branch braided mesh cable; 125, fifth branch braided mesh cable; 126, double-layer thermoplastic sleeve; 127, two-dimensional code label paper; 200, first glue shell connector; 300, second glue shell connector; 310, first self-locking buckle; 400, third glue shell connector; 410, second self-locking buckle; 500, injection molding connector; 510, locking screw; 600, fourth glue shell connector; 700, fifth glue shell connector. DETAILED DESCRIPTION
[0019] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model.
[0020] EMBODIMENT
[0021] Please refer to Figures 1-5 The utility model provides following technical scheme: a kind of multifunctional signal conversion wire harness, including elbow connector 100, it is characterized by: tail end of elbow connector 100 is connected with main braided mesh cable 120 by tail shell 110 of integrally injection molding, main braided mesh cable 120 is connected with first glue shell connector 200 by first branch braided mesh cable 121, main braided mesh cable 120 is connected with second glue shell connector 300 by second branch braided mesh cable 122, both sides of second glue shell connector 300 are equipped with first self-locking buckle 310, main braided mesh cable 120 is connected with third glue shell connector 400 by third branch braided mesh cable 123, the outside of third glue shell connector 400 is equipped with second self-locking buckle 410, main braided mesh cable 120 is also connected with injection molding connector 500 by fourth branch braided mesh cable 124, both sides of injection molding connector 500 are threadedly connected with locking screw 510, main braided mesh cable 120 is also connected with fourth glue shell connector 600 by fifth branch braided mesh cable 125, tail end of main braided mesh cable 120 is connected with fifth glue shell connector 700.
[0022] Specifically, elbow connector 100 can be connected to a specific device, and the tail end of the elbow connector 100 is firmly connected to the main braided mesh cable 120 through the tail shell 110 of integrally injection molding, thereby ensuring the stability between the elbow connector 100 and the main braided mesh cable 120 and enabling the signal to be smoothly transmitted.
[0023] The main braided mesh cable 120 serves as a main cable, and the plurality of branch braided mesh cables can be connected to different rubber shell connectors respectively, so that the conversion wire harness can be connected to different devices through different connectors, and a signal transmission system for connecting multiple devices can be constructed according to the interface requirements of different devices.
[0024] The first self-locking buckle 310 on the two sides of the second rubber shell connector 300, the second self-locking buckle 410 on the outer side of the third rubber shell connector 400, and the locking screw 510 on the two sides of the injection molding connector 500 are connected to the devices by using the self-locking buckle or the locking screw, thereby enhancing the stability of the connector and ensuring that the conversion wire harness can be stably connected to the devices in different use environments, and effectively avoiding problems such as signal transmission interruption caused by loose connection.
[0025] In this embodiment, the plug-in end of the elbow connector 100 is rotationally connected to a locking nut 101, and the inner side of the locking nut 101 is provided with a locking thread.
[0026] Specifically, when the elbow connector 100 is inserted into the corresponding device interface, the locking nut 101 is rotated to cooperate with the corresponding structure at the device interface by using the locking thread, so that the connection between the elbow connector 100 and the device interface is more secure, effectively preventing the elbow connector 100 from loosening due to external forces and other factors during use, and ensuring the stability of signal transmission.
[0027] In this embodiment, the main braided mesh cable 120 and the first branch braided mesh cable 121, the second branch braided mesh cable 122, the third branch braided mesh cable 123, the fourth branch braided mesh cable 124, the fifth branch braided mesh cable 125, and the fifth rubber shell connector 700 are all covered with a double-layer thermoplastic sleeve 126.
[0028] Specifically, the main braided mesh cable 120 and the branch braided mesh cables and the fifth rubber shell connector 700 are connected at the connection positions covered with the double-layer thermoplastic sleeve 126, which can enhance the strength of the connection positions and prevent the connection positions from being broken or damaged due to external force pulling, bending, and the like. Meanwhile, the double-layer thermoplastic sleeve 126 can also seal the connection positions, effectively preventing moisture, dust, and other impurities from entering the connection positions, avoiding problems such as signal transmission affected by impurities or corrosion of the connection positions, thereby improving the reliability and service life of the conversion wire harness as a whole.
[0029] In this embodiment, the main braided mesh cable 120 is further sleeved with a two-dimensional code label paper 127, the surface of the two-dimensional code label paper 127 is printed with a two-dimensional code mark, and the first branch braided mesh cable 121, the second branch braided mesh cable 122, the third branch braided mesh cable 123, the fourth branch braided mesh cable 124, and the fifth branch braided mesh cable 125 are all sleeved with corresponding branch identification plates.
[0030] Specifically, by setting the two-dimensional code label paper 127, the user can obtain comprehensive information of the conversion harness by scanning the two-dimensional code on the two-dimensional code label paper 127, and the branch identification board can enable the user to quickly and intuitively identify each branch during the connection process, accurately connect each branch to the corresponding device interface, and effectively avoid connection errors and improve work efficiency during the installation, maintenance and management of the conversion harness.
[0031] In the embodiment, the pin of the second rubber shell connector 300 is 12pin, the pin of the injection connector 500 is 9pin, and the pin of the third rubber shell connector 400 is 6pin.
[0032] Specifically, the different pin numbers of the second rubber shell connector 300, the injection connector 500 and the third rubber shell connector 400 can enable the connector to connect different devices and realize data transmission or power supply function between multiple devices.
[0033] The above is only the preferred embodiment of the present application, and does not limit the present application in any form. Although the present application is disclosed as the preferred embodiment, it is not intended to limit the present application. Any skilled person in the art can make some changes or modifications to the above-mentioned technical content without departing from the scope of the present application. Any simple modification, equivalent change and modification of the above-mentioned embodiment within the scope of the present application are all within the scope of the present application.
Claims
1. A multi-functional signal conversion wire harness characterized by, The elbow connector (100) is characterized in that: the tail end of the elbow connector (100) is connected with a main braided mesh cable (120) through a tail shell (110) integrally injection molded, the main braided mesh cable (120) is connected with a first glue shell connector (200) through a first branch braided mesh cable (121), the main braided mesh cable (120) is connected with a second glue shell connector (300) through a second branch braided mesh cable (122), both sides of the second glue shell connector (300) are provided with a first self-locking buckle (310), the main braided mesh cable (120) is connected with a third glue shell connector (400) through a third branch braided mesh cable (123), the outer side of the third glue shell connector (400) is provided with a second self-locking buckle (410), the main braided mesh cable (120) is also connected with an injection molded connector (500) through a fourth branch braided mesh cable (124), both sides of the injection molded connector (500) are threadedly connected with locking screws (510), the main braided mesh cable (120) is also connected with a fourth glue shell connector (600) through a fifth branch braided mesh cable (125), and the tail end of the main braided mesh cable (120) is connected with a fifth glue shell connector (700).
2. The multi-functional signal conversion wire harness according to claim 1, characterized by: The plug-in end of the elbow connector (100) is rotationally connected with a locking nut (101), and the inner side of the locking nut (101) is provided with a locking thread.
3. The multi-functional signal conversion wire harness according to claim 1, characterized by: The connection parts of the main braided mesh cable (120) and the first branch braided mesh cable (121), the second branch braided mesh cable (122), the third branch braided mesh cable (123), the fourth branch braided mesh cable (124), the fifth branch braided mesh cable (125) and the fifth glue shell connector (700) are all covered with double-layer thermoplastic sleeves (126).
4. The multi-functional signal conversion wire harness according to claim 1, characterized by: The main braided mesh cable (120) is further sleeved with a two-dimensional code label paper (127), the surface of the two-dimensional code label paper (127) is printed with a two-dimensional code mark, and the outer parts of the first branch braided mesh cable (121), the second branch braided mesh cable (122), the third branch braided mesh cable (123), the fourth branch braided mesh cable (124) and the fifth branch braided mesh cable (125) are all sleeved with corresponding branch markboards.
5. The multi-functional signal conversion wire harness according to claim 1, characterized by: The pin of the second glue shell connector (300) is 12pin, the pin of the injection molded connector (500) is 9pin, and the pin of the third glue shell connector (400) is 6pin.