Inductor copper wire winding device
By introducing a winding platform and assembly plate into the winding device, using a groove and assembly slot design, and combining locking components and an identification scale, the problem of side instability of the winding device is solved, thereby improving the stability and accuracy of copper wire winding.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- YANGZHOU JINGTE ELECTRONIC TECHNOLOGY CO LTD
- Filing Date
- 2025-03-18
- Publication Date
- 2026-04-24
AI Technical Summary
Existing winding devices suffer from lateral instability when winding copper wire, affecting the uniformity and accuracy of the winding.
The winding platform is combined with the assembly plate, with grooves and assembly slots. The winding assembly rod and mold are used, along with locking components and identification scales, to ensure the stability and accuracy of the winding.
It improves the stability and precision of winding, ensures the uniformity of copper wire direction, and enhances operational efficiency and winding accuracy.
Smart Images

Figure CN224164143U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to a winding component, specifically to an inductor copper wire winding device. Background Technology
[0002] Copper wire is one of the most important materials for making inductor coils, playing a crucial role in electronic devices. Its high conductivity—copper is an excellent conductor with low resistivity, effectively conducting current and reducing energy loss—is essential for the energy storage and filtering functions of inductors in circuits. For example, in power supply circuits, copper wire allows current to flow smoothly, ensuring stable power output. Copper's good thermal conductivity helps dissipate heat generated during inductor operation, preventing overheating damage and extending the inductor's lifespan. Copper wire has good ductility, allowing it to be drawn into fine wires or wound into coils of various shapes to meet different inductor design requirements. Whether it's a small surface-mount inductor or a large power inductor, copper wire can be used for winding. When copper wire winding is required, a winding device is needed for the winding process.
[0003] In the prior art, CN202020800202.5 describes a rapid cable winding device. This utility model belongs to the field of cable production technology, specifically a rapid cable winding device. It includes a cable drum, with rotating shafts fixedly connected to both ends. The axes of the rotating shafts and the cable drum are collinear. A winding device is fitted onto the surface of the rotating shafts. The winding device mechanically connects the power equipment to the cable drum through simple limiting, facilitating the assembly and disassembly of the cable drum. The winding device includes support legs. This rapid cable winding device connects the rotating shafts and fixed shafts at both ends of the cable drum via the winding device. The upper end of the support legs and a sealing cover limit the rotation and fixed shafts, and a second gear drives the transmission. An external power equipment is connected and fixed to the fixed shaft, thus providing power for the rotation of the cable drum.
[0004] In the existing technology, the sealing cover and the support leg are hinged and fixed by a fixing plate, which facilitates the installation and disassembly of the cable drum and the winding device. However, it also has the problem that the side blocking cannot be performed, which makes the copper wire unstable on the side during winding. Utility Model Content
[0005] To overcome the shortcomings of unstable winding sides in existing technologies, this utility model provides an inductor copper wire winding device.
[0006] This utility model is achieved using the following technical solution: an inductor copper wire winding device, comprising a winding platform, an assembly plate at the bottom of the winding platform, a groove on the assembly plate, the winding platform being embedded in the groove, assembly slots on both sides of the assembly plate, assembly bolts in the assembly slots, a winding component on the winding platform, the winding component being a winding assembly rod, a winding mold on the winding assembly rod, a hollow tube on the winding mold, the winding assembly rod being inserted into the hollow tube, a locking component on one side of the hollow tube, and a winding side baffle on the winding mold.
[0007] The winding assembly rod is provided with an assembly threaded sleeve on one side, and the assembly threaded sleeve is assembled and connected to the drive shaft, and a motor is provided on the drive shaft.
[0008] The winding side baffle and the winding mold are welded and fixed together. A movable slot is provided on the winding side baffle, and a plug-in plate is provided in the movable slot.
[0009] The plug-in plate is inserted into the movable slot, and the plug-in plate is provided with an identification component, which is an identification scale.
[0010] A pre-processing component is provided on one side of the winding platform. The pre-processing component is a pre-processing rod, and a bottom support is provided at the bottom of the pre-processing rod.
[0011] Compared to existing technologies, the combination of the winding platform and the assembly plate in this utility model allows the winding platform to be embedded into the assembly plate through a groove. The assembly plate has assembly slots and bolts on both sides, ensuring the stability and detachability of the winding platform, facilitating maintenance and replacement. The winding mold is equipped with a hollow tube into which the winding assembly rod is inserted, which helps to accurately control the direction and tension of the copper wire, ensuring the uniformity and accuracy of the winding. A locking component is provided on one side of the hollow tube to further fix the position of the winding assembly rod, preventing displacement during the winding process and improving the winding accuracy. The identification scale on the plug-in plate helps the operator quickly and accurately adjust and identify the winding position, improving operating efficiency. Attached Figure Description
[0012] Figure 1 This is a schematic diagram of the structure of this utility model;
[0013] Figure 2 This is a schematic diagram of the structure of this utility model;
[0014] Figure 3 This is a schematic diagram of the structure of this utility model;
[0015] In the diagram: 1 is the winding platform, 2 is the assembly plate, 3 is the assembly slot, 4 is the winding assembly rod, 5 is the hollow tube, 6 is the winding side baffle, 7 is the drive shaft, 8 is the motor, 9 is the plug-in plate, and 10 is the identification scale. Detailed Implementation
[0016] The present invention will now be further described in conjunction with the accompanying drawings and specific embodiments. It should be noted that, without conflict, the various embodiments or technical features described below can be arbitrarily combined to form new embodiments.
[0017] An inductor copper wire winding device includes a winding platform 1, an assembly plate 2 at the bottom of the winding platform 1, a groove on the assembly plate 2 into which the winding platform 1 is embedded, assembly slots 3 on both sides of the assembly plate 2, and assembly bolts in the assembly slots 3. A winding component, a winding assembly rod 4, is mounted on the winding platform 1. A winding mold is mounted on the winding assembly rod 4, and a hollow tube 5 is mounted on the winding mold. The winding assembly rod 4 is inserted into the hollow tube 5, and a locking component is mounted on one side of the hollow tube 5. A winding side baffle 6 is mounted on the winding mold.
[0018] The winding platform 1 is embedded into the assembly plate 2 through a groove. The assembly plate has assembly slots and bolts on both sides, which ensures the stability and disassembly of the winding platform 1, making it easy to maintain and replace. Different winding molds can be replaced according to different winding requirements.
[0019] The winding mold is equipped with a hollow tube 5 into which the winding assembly rod 4 is inserted. This helps to precisely control the direction and tension of the copper wire, ensuring the uniformity and accuracy of the winding. A locking component is provided on one side of the hollow tube 5 to further fix the position of the winding assembly rod, preventing displacement during the winding process and improving the winding accuracy.
[0020] A threaded sleeve is provided on one side of the winding assembly rod 4. The threaded sleeve is assembled and connected to the drive shaft 7. A motor 8 is provided on the drive shaft 7. The motor drives the winding assembly rod 4 to move. With the cooperation of the motor 8 and the winding assembly rod 4, the copper wire can be wound and stored efficiently, making the winding of the copper wire more convenient.
[0021] The winding side baffle 6 and the winding mold are welded and fixed together. A movable slot is provided on the winding side baffle 6, and a plug-in plate 9 is provided in the movable slot. The plug-in plate 9 is inserted into the movable slot. The plug-in plate is provided with an identification component, which is an identification scale 10. The movable slot and plug-in plate 9 on the winding side baffle 6 allow the user to adjust the position of the plug-in plate as needed, which facilitates the operator to replace the plug-in plate 9 independently. The identification scale 10 on the plug-in plate 8 can help the operator quickly and accurately adjust and identify the winding position, thereby improving the operating efficiency.
[0022] The above embodiments are merely preferred embodiments of this utility model and should not be construed as limiting the scope of protection of this utility model. Any non-substantial changes and substitutions made by those skilled in the art based on this utility model shall fall within the scope of protection claimed by this utility model.
Claims
1. An inductor copper wire winding device, comprising a winding platform, an assembly plate at the bottom of the winding platform, a groove on the assembly plate into which the winding platform is embedded, assembly slots on both sides of the assembly plate, assembly bolts in the assembly slots, and a winding component on the winding platform, characterized in that: The winding component is a winding assembly rod, on which a winding mold is provided. A hollow tube is provided on the winding mold. The winding assembly rod is inserted into the hollow tube. A locking component is provided on one side of the hollow tube. A winding side baffle is provided on the winding mold.
2. The inductor copper wire winding device according to claim 1, characterized in that: The winding assembly rod is provided with an assembly threaded sleeve on one side, and the assembly threaded sleeve is assembled and connected to the drive shaft, and a motor is provided on the drive shaft.
3. The inductor copper wire winding device according to claim 2, characterized in that: The winding side baffle and the winding mold are welded and fixed together. A movable slot is provided on the winding side baffle, and a plug-in plate is provided in the movable slot.
4. The inductor copper wire winding device according to claim 3, characterized in that: The plug-in plate is inserted into the movable slot, and the plug-in plate is provided with an identification component, which is an identification scale.
5. The inductor copper wire winding device according to claim 1, characterized in that: A pre-processing component is provided on one side of the winding platform. The pre-processing component is a pre-processing rod, and a bottom support is provided at the bottom of the pre-processing rod.
Citation Information
Patent Citations
Rapid cable winding device
CN212174094U