Wireless light beacon

Through the design of wireless beacon, wireless charging is achieved by using mutual induction coils, which solves the problem of easy breakage of connecting wires during the movement of the beacon and improves the production stability and efficiency of the molding machine.

CN223484153UActive Publication Date: 2025-10-28SAILUN GRP CO LTD
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Patent Information

Application Number
CN202423186434.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-24
Publication Date
2025-10-28
Estimated Expiration
2034-12-24

AI Technical Summary

Technical Problem

In the prior art, the connecting wires of the beacon lights are easily broken during the movement, which affects the production progress.

Method used

It adopts a wireless beacon design and uses mutual induction coils to achieve wireless charging. The fixed and mobile parts are charged by the battery through the principle of electromagnetic induction, and the laser transmitter is powered by the battery.

Benefits of technology

The problem of easy breakage of connecting wires is solved, and the production stability and efficiency of the molding machine are improved.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a wireless light beacon which comprises a fixed part and a movable part which are mutually independent, the movable part can move relative to the fixed part, a charging position is arranged on a moving path of the movable part, and the movable part is arranged right opposite to the fixed part at the charging position; the movable part and the fixed part are provided with mutual inductance coils, at the charging position, the fixed part charges the battery of the movable part according to the electromagnetic induction principle, the battery is electrically connected with the laser transmitter of the movable part, and when the movable part leaves the charging position, the battery supplies power to the laser transmitter. And in the moving process of the light beacon, a connecting line is easy to break, and the production progress is influenced.
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Description

Technical Field

[0001] This utility model belongs to the field of tire manufacturing technology, and specifically relates to a wireless beacon. Background Technology

[0002] When bonding materials to the body drum and belt drum of the molding machine, to ensure symmetrical visualization of the material bonding, auxiliary lights need to be installed on the molding machine. These lights are divided into center lights and side lights. The center light is fixed, while the side lights move according to the width of each material. During the movement of the side lights, their connecting wires are stored in a cable chain and move synchronously with the side lights. However, during continuous movement, the connecting wires are easily broken, affecting production progress. Utility Model Content

[0003] In view of the shortcomings of existing technologies, a wireless beacon is proposed to solve the technical problem that the connecting wire is easily broken during the movement of the beacon, which affects the production schedule.

[0004] To achieve the above objectives, the present invention provides the following technical solutions:

[0005] A wireless beacon includes a fixed part and a movable part, the fixed part and the movable part being independent of each other, and the movable part being movable relative to the fixed part. A charging position is provided on the moving path of the movable part, and at the charging position, the movable part is positioned directly opposite the fixed part.

[0006] The moving part and the fixed part are provided with mutual inductance coils. At the charging position, the fixed part charges the battery of the moving part using the principle of electromagnetic induction. The battery is electrically connected to the laser emitter of the moving part. When the moving part leaves the charging position, the battery supplies power to the laser emitter.

[0007] The technical solution is further configured such that the fixing part is disposed in the fixing housing, the fixing housing has a first receiving cavity inside, the fixing housing has a mounting plate on the side, and the mounting plate has mounting holes.

[0008] The technical solution is further configured such that the fixing part includes a first current converter and a transmitting coil that are electrically connected, and the first receiving cavity is provided with grooves corresponding to the first current converter and the transmitting coil respectively.

[0009] The technical solution is further configured such that the moving part is disposed in the moving housing, the moving housing has a second receiving cavity inside, the bottom of the moving housing has a connecting member, and the connecting member is connected to the linear moving component.

[0010] The technical solution is further configured such that the linear motion component includes a slider and a guide rail that are slidably connected, the connector is connected to the slider, and the fixing part is located on one side of the guide rail.

[0011] The technical solution is further configured such that the moving part includes an electrically connected receiving coil and a second current converter, the transmitting coil and the receiving coil are mutual inductance coils, the second current converter is electrically connected to the battery, and the second accommodating cavity is provided with grooves corresponding to the receiving coil, the second current converter, the battery and the laser emitter respectively, and the moving housing is provided with a laser emission window.

[0012] The technical solution is further configured such that the receiving coil is located at one end of the second receiving cavity near the fixed part, and the transmitting coil is located at one end of the first receiving cavity near the moving part.

[0013] The technical solution is further configured such that both the fixed housing and the movable housing are cylindrical structures, the cylindrical structure including an upper housing and a lower housing that are interlocked, and the upper housing and the lower housing are locked together by bolts and nuts.

[0014] The beneficial effects of the utility model are:

[0015] By installing mutual inductance coils in the moving and fixed parts and using wireless charging to power the laser emitter, the problem of the connecting wires easily breaking during the movement of the beacon is solved, thus improving the stability and production efficiency of the forming machine. Attached Figure Description

[0016] Figure 1 This is a schematic diagram of a wireless beacon in an embodiment of this utility model;

[0017] Figure 2 This is a schematic diagram of the electromagnetic induction principle in an embodiment of this utility model.

[0018] In the attached diagram: 1. Transmitting coil; 2. First current converter; 3. Fixed upper housing; 4. Fixed lower housing; 5. Receiving coil; 6. Second current converter; 7. Battery; 8. Laser emitter; 9. Movable upper housing; 10. Movable lower housing; 11. Connector; 12. Mounting plate. Detailed Implementation

[0019] To enable those skilled in the art to better understand the technical solution of this utility model, the technical solution of this utility model will be clearly and completely described below with reference to the accompanying drawings. Based on the embodiments in this application, other similar embodiments obtained by those skilled in the art without creative effort should all fall within the scope of protection of this application. Furthermore, directional terms mentioned in the following embodiments, such as "up," "down," "left," and "right," are only for reference to the directions in the accompanying drawings; therefore, the directional terms used are for illustrative purposes and not for limiting the invention.

[0020] The present invention will be further described below with reference to the accompanying drawings and preferred embodiments.

[0021] According to an embodiment of this utility model, a wireless beacon is provided. Please refer to [link / reference]. Figure 1 and Figure 2 It includes a fixed part and a movable part, the fixed part and the movable part are independent of each other, and the movable part can move relative to the fixed part. A charging position is provided on the moving path of the movable part, and at the charging position, the movable part is positioned directly opposite the fixed part.

[0022] The moving part and the fixed part are provided with mutual inductance coils. At the charging position, the fixed part charges the battery 7 of the moving part using the principle of electromagnetic induction. The battery 7 is electrically connected to the laser emitter 8 of the moving part. When the moving part leaves the charging position, the battery 7 supplies power to the laser emitter 8.

[0023] It should be noted that by setting mutual inductance coils in the moving and fixed parts and using wireless charging to power the laser emitter 8, the problem of the connecting wires being easily broken during the movement of the beacon is solved, thus improving the stability and production efficiency of the molding machine.

[0024] Specifically, the fixed part serves as the power supply unit, while the movable part receives and converts current to enable the laser emitter 8 to emit laser light. When the movable part does not need to move, it is in the charging position, facing the fixed part, which is in a power-on state, and the battery 7 is fully charged. When the movable part needs to move, it leaves the charging position, and the battery 7 supplies power to the laser emitter 8. Since the laser emitter 8 does not require much power to operate, it can be powered for a relatively long time, maintaining its long-term operation. When the movable part returns to the charging position, it supplies power to the battery 7 wirelessly.

[0025] In the wireless beacon of this embodiment, please refer to Figure 1 and Figure 2 The fixing part is disposed in the fixing housing, the fixing housing has a first receiving cavity inside, the fixing housing has a mounting plate 12 on the side, and the mounting plate 12 has mounting holes.

[0026] It should be noted that mounting holes are provided at all four corners of the mounting plate 12, and fixing bolts and nuts are installed in the mounting holes to fix the mounting shell to the external mounting structure.

[0027] In the wireless beacon of this embodiment, please refer to Figure 1 and Figure 2 The fixing part includes a first current converter 2 and a transmitting coil 1 that are electrically connected, and the first receiving cavity is provided with grooves corresponding to the first current converter 2 and the transmitting coil 1 respectively.

[0028] It should be noted that the first current converter 2 and the transmitting coil 1 are respectively installed in their corresponding grooves, which helps to improve installation stability; in particular, the shape and size of the grooves are matched with the first current converter 2 and the transmitting coil 1 respectively.

[0029] In the wireless beacon of this embodiment, please refer to Figure 1 and Figure 2 The movable part is disposed in the movable housing, the movable housing has a second receiving cavity inside, and the bottom of the movable housing is provided with a connector 11, which is connected to the linear moving component.

[0030] Specifically, the linear motion component includes a slider and a guide rail that are slidably connected, the connector 11 is connected to the slider, and the fixing part is located on one side of the guide rail.

[0031] It should be noted that the connector 11 is mounted on the slider, and the movable housing moves back and forth on the guide rail via the slider to realize the movement function of the movable part.

[0032] In the wireless beacon of this embodiment, please refer to Figure 1 and Figure 2 The movable part includes a receiving coil 5 and a second current converter 6 that are electrically connected. The transmitting coil 1 and the receiving coil 5 are mutual inductance coils. The second current converter 6 is electrically connected to the battery 7. The second accommodating cavity is provided with grooves corresponding to the receiving coil 5, the second current converter 6, the battery 7 and the laser emitter 8 respectively. The movable housing is provided with a laser emission window.

[0033] It should be noted that the receiving coil 5, the second current converter 6, the battery 7, and the laser emitter 8 are installed in the corresponding grooves in the order listed above, which helps to improve the installation stability; in particular, the shape and size of the grooves are matched with the receiving coil 5, the second current converter 6, the battery 7, and the laser emitter 8, respectively.

[0034] Of particular importance is that the receiving coil 5 is located at one end of the second receiving cavity near the fixed part, and the transmitting coil 1 is located at one end of the first receiving cavity near the moving part.

[0035] In the wireless beacon of this embodiment, please refer to Figure 1 and Figure 2 Both the fixed housing and the movable housing are configured as cylindrical structures, and the cylindrical structure includes an upper housing and a lower housing that are interlocked, and the upper housing and the lower housing are locked together by bolts and nuts.

[0036] Specifically, the fixed housing includes a fixed upper housing 3 and a fixed lower housing 4, which are fastened together and locked with bolts and nuts; the movable housing includes a movable upper housing 9 and a movable lower housing 10, which are fastened together and locked with bolts and nuts.

[0037] In use, the positions of the first current converter 2 and the transmitting coil 1 are fixed. When the power supply provides alternating current to the first current converter 2, the current is converted from alternating current to direct current. This current is then transmitted to the receiving coil 5 via the transmitting coil 1 using the principle of electromagnetic induction. The receiving coil 5 receives the electromagnetic field and converts it back into alternating current, which is then converted into direct current by the second current converter 6 to charge the battery 7. Simultaneously, the battery 7 powers the laser emitter 8 to emit the laser. When the mobile unit requires movement, the battery 7, which has a power storage function, provides the power.

[0038] As the moving part moves back and forth along its movement path, the fixed part uses one of the positions along that path as a charging position. When the moving part reaches the charging position, it charges the battery 7 using the charging method described above. When the moving part leaves the charging position, the battery 7 starts supplying power, enabling the laser emitter 8 to emit laser light at any time.

[0039] The present invention has been described in detail above. The above description is only a preferred embodiment of the present invention and should not be construed as limiting the scope of the present invention. All equivalent changes and modifications made in accordance with the scope of this application should still fall within the scope of the present invention.

Claims

1. A wireless beacon, characterized in that, It includes a fixed part and a movable part, the fixed part and the movable part are independent of each other, and the movable part can move relative to the fixed part. A charging position is provided on the moving path of the movable part, and at the charging position, the movable part is positioned directly opposite the fixed part. The moving part and the fixed part are provided with mutual inductance coils. At the charging position, the fixed part charges the battery of the moving part using the principle of electromagnetic induction. The battery is electrically connected to the laser emitter of the moving part. When the moving part leaves the charging position, the battery supplies power to the laser emitter.

2. The wireless beacon according to claim 1, characterized in that, The fixing part is disposed in the fixing housing, the fixing housing has a first receiving cavity inside, the fixing housing has a mounting plate on the side, and the mounting plate has mounting holes.

3. The wireless beacon according to claim 2, characterized in that, The fixing part includes a first current converter and a transmitting coil that are electrically connected, and the first receiving cavity is provided with grooves that correspond to the first current converter and the transmitting coil respectively.

4. The wireless beacon according to claim 3, characterized in that, The movable part is disposed in the movable housing, the movable housing has a second receiving cavity inside, and a connector is disposed at the bottom of the movable housing, the connector being connected to the linear motion component.

5. The wireless beacon according to claim 4, characterized in that, The linear motion assembly includes a slider and a guide rail that are slidably connected. The connector is connected to the slider, and the fixing part is located on one side of the guide rail.

6. The wireless beacon according to claim 4, characterized in that, The movable part includes an electrically connected receiving coil and a second current converter. The transmitting coil and the receiving coil are mutually inducting coils. The second current converter is electrically connected to the battery. The second accommodating cavity is provided with grooves corresponding to the receiving coil, the second current converter, the battery, and the laser emitter, respectively. The movable housing is provided with a laser emission window.

7. The wireless beacon according to claim 6, characterized in that, The receiving coil is located at one end of the second receiving cavity near the fixed part, and the transmitting coil is located at one end of the first receiving cavity near the moving part.

8. The wireless beacon according to any one of claims 4-7, characterized in that, Both the fixed housing and the movable housing are configured as cylindrical structures, and the cylindrical structure includes an upper housing and a lower housing that are interlocked, and the upper housing and the lower housing are locked together by bolts and nuts.