Rotary base

By designing the transmission mechanism and conductive parts of the rotating base, the problem that LED lights cannot be installed in the moving part of the ornament is solved, and the effect of the LED lights being always powered up during rotation is achieved, improving the user experience and meeting different application needs.

CN223121369UActive Publication Date: 2025-07-18GUANGZHOU WEICHI PHOTOELECTRIC TECH CO LTD
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Patent Information

Application Number
CN202422335674.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-24
Publication Date
2025-07-18
Estimated Expiration
2034-09-24

AI Technical Summary

Technical Problem

The moving parts of existing ornaments cannot be installed with LED lights or other decorations that need to be powered on, resulting in poor user experience.

Method used

A rotating base is designed, including a cushion body, a motor, a transmission mechanism and a conductive part. The motor drives the rotating part to rotate through the transmission mechanism. The conductive ring of the conductive part is always electrically connected to the elastic member to ensure that the LED lights or decorations remain energized during the rotation.

Benefits of technology

It realizes that LED lights or decorations are always powered up during rotation, which improves the user experience, and controls the sound module and motor through separate switches, protecting the specific application scenarios of the rotating base.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a rotary base, which comprises a bin body, a motor, a transmission mechanism, a rotating part and a conductive part, the motor and the transmission mechanism are both arranged in the bin body, the transmission mechanism is connected with the motor, the transmission mechanism is also connected with the rotating part, the motor can drive the rotating part to rotate through the transmission mechanism, one part of the conductive part is arranged on the rotating part, and the other part of the conductive part is arranged on the bin body. When the motor drives the rotating part and one part of the conductive part to rotate through the transmission mechanism, the other part of the conductive part can be electrically connected with the conductive part on the rotating part all the time. The conductive ring can be electrically connected with the LED lamp or other decorations to be electrified, so that the LED lamp or other decorations to be electrified can be always in an electrified state, and the LED lamp or other decorations to be electrified can be arranged on the rotating part and rotate along with the rotating part. And the user has better use experience.
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Description

Technical Field

[0001] The utility model relates to a rotating device, in particular to a rotating base. Background Art

[0002] Ornaments are daily necessities widely used in daily life. In order to enhance aesthetics and user experience, producers will install LED lights on ornaments. In the prior art, ornaments can be divided into static ornaments and moving ornaments.

[0003] Among them, all components on the static ornaments are stationary, and at least a part of the moving ornaments can move. Whether installing LED lights or other decorative items that enhance aesthetics and user experience on static ornaments or moving ornaments, the LED lights or other decorative items can only be installed on stationary components.

[0004] Therefore, LED lights or other powered decorative items cannot be installed on the moving parts of existing ornaments, nor can users have a better experience.

[0005] To solve the above technical problems, the applicant applied for a utility model patent on August 17, 2024. The name of the utility model patent is Motor Chamber, and the application number is 2024219957432. Through the motor chamber of this ornament, LED lights or other powered decorative items can be set on the rotating part and rotate with the rotating part, which can well solve the above technical problems.

[0006] However, the applicant found that the protected subject of the above-mentioned motor chamber applied on August 17, 2024 is the "motor chamber of the ornament", which cannot play a direct protective role in some actual application scenarios. In view of the applicant's intention to protect the "rotating base", the "rotating base" includes a motor chamber, and LED lights or other powered decorative items can be directly set on the "rotating base". Summary of the Utility Model

[0007] The purpose of the present utility model is to provide a rotating base, which can solve the above problems existing in the prior art. With the applicant's R & D process, the applicant found during production and sales that compared with the utility model "Motor Chamber" applied by the applicant on August 17, 2024, the present utility model can protect specific product application scenarios and play a protective role for the rotating base. In addition, compared with the utility model named "An Integral Rotating Base" with the application number 2024220438164 applied by the applicant on August 22, 2024, the specific application scenarios are also different, which can meet different usage requirements.

[0008] According to one aspect of the present utility model, a rotating base is provided, which includes a base body, a bin body, a motor, a transmission mechanism, and a rotating part. The bin body and the rotating part are both arranged in the base body, the motor and the transmission mechanism are both arranged in the bin body, the transmission mechanism is connected to the motor, the transmission mechanism is also connected to the rotating part, and the motor can drive the rotating part to rotate through the transmission mechanism. The upper end of the rotating part extends out of the base body. A power supply bin is also arranged in the base body, and a power supply is arranged in the power supply bin. The power supply provides electrical energy for the motor, and the base body is fixedly arranged and does not rotate with the rotating part.

[0009] In some embodiments, it further includes a conductive part. A part of the conductive part is arranged on the rotating part. When the motor drives the rotating part and a part of the conductive part to rotate through the transmission mechanism, the other parts of the conductive part can always form an electrical connection with the conductive part on the rotating part.

[0010] In some embodiments, it further includes a sound module. The sound module is electrically connected to the power supply, and the power supply also provides electrical energy for the sound module.

[0011] In some embodiments, the conductive part includes two conductive rings, two conductive elastic parts, and a conductive main body. The two conductive rings are arranged at the lower end of the rotating part. The two conductive elastic parts and the conductive main body are electrically connected. One of the conductive elastic parts is electrically connected to one of the conductive rings, and the other conductive elastic part is electrically connected to the other conductive ring. Thus, the two conductive rings are installed at the lower end of the rotating part, and the two conductive rings can rotate with the rotating part, and the conductive elastic parts are always electrically connected to the conductive rings. Therefore, an LED lamp or other ornaments to be powered on can be arranged on the rotating part, and the LED lamp or other ornaments to be powered on are always in an energized state during the movement process.

[0012] In some embodiments, the conductive elastic part is a spring. When the conductive ring rotates with the rotating part, the conductive elastic part is always in contact with the conductive ring. Thus, after being powered on, when the conductive ring rotates, it is also always in an energized state.

[0013] In some embodiments, the rotating part is generally cylindrical as a whole, and the cross section of the conductive ring is circular ring-shaped. Thus, the rotating part and the conductive ring with such shapes can be more stable.

[0014] In some embodiments, the bin body includes an upper bin body and a lower bin body. The upper bin body and the lower bin body form an accommodation space, and the motor and the transmission mechanism are both arranged in the accommodation space. Thus, the motor and the transmission mechanism can be better fixed by the upper bin body and the lower bin body.

[0015] In some embodiments, the transmission mechanism includes a transmission pulley group and a gear group. The transmission pulley group is connected to the motor, the gear group is connected to the transmission pulley group, the motor is connected to the transmission pulley group, the gear group is connected to the transmission pulley group, and the motor is connected to the rotating part through the transmission pulley group and the gear group in sequence.

[0016] In some embodiments, the drive pulley set includes a first drive pulley, a belt, and a second drive pulley. The first drive pulley is coaxially connected to the output shaft of the motor. One end of the belt is sleeved on the first drive pulley, and the other end is sleeved on the second drive pulley. The second drive pulley is connected to the gear set. Thus, when the motor is started, the motor can drive the first drive pulley to rotate, the first drive pulley can drive the second drive pulley to rotate, and the second drive pulley can drive the gear set to rotate.

[0017] In some embodiments, the gear set includes a plurality of gears. The plurality of gears are sequentially meshed with each other to form a speed reduction structure. One of the gears is coaxially connected to the second drive pulley, and another gear is coaxially connected to the rotating part. Thus, the function of speed reduction can be achieved through the plurality of gears, so that the rotating part rotates at a set speed.

[0018] The beneficial effects of the present utility model are as follows: In the present utility model, after the motor is started, the motor can drive the rotating part to rotate through the transmission mechanism. A slip ring is provided on the rotating part, and the slip ring can rotate along with the rotating part. Since the conductive elastic member is always in contact with the slip ring, and the conductive elastic member is electrically connected to the conductive body, the slip ring can always be in an energized state. The slip ring can be electrically connected to an LED lamp or other decorative articles to be energized, so that the LED lamp or other decorative articles to be energized can always be in an energized state. The LED lamp or other decorative articles to be energized can be arranged on the rotating part and rotate along with the rotating part. It can provide a better user experience and meet the needs of users. In addition, in the present utility model, the sound module can be controlled to emit sound through a separate switch, and the motor can also be started through a separate switch, making it more convenient for users.

[0019] The seat body does not rotate along with it. Therefore, the present utility model forms the effect that the LED lamp or other decorative articles to be energized rotate independently. Compared with the utility model named Motor Chamber applied by the applicant on August 17, 2024, the "rotating base" can be protected through the present utility model. The LED lamp or other decorative articles to be energized can be directly installed on the rotating base of the present utility model to form a decorative product, making the protection of the applicant's product more comprehensive.

[0020] In addition, compared with the utility model named "An Integral Rotating Base" with the application number 2024220438164 applied by the applicant on August 22, 2024, the specific application scenarios are also different, which can meet different usage requirements. BRIEF DESCRIPTION OF THE DRAWINGS

[0021] Figure 1 It is a schematic structural diagram of a rotating base according to an embodiment of the present utility model;

[0022] Figure 2 is Figure 1 the schematic structural diagram of the rotating base with the hidden part of the base body

[0023] Figure 3 is Figure 1 the schematic structural diagram of the rotating base in another direction with the hidden part of the base body

[0024] Figure 4 is Figure 1 the exploded structural diagram of the rotating base

[0025] Figure 5 is Figure 1 the exploded structural diagram of the rotating base in another direction

[0026] Figure 6 is Figure 1 the schematic structural diagram of the bin body and other parts in the rotating base

[0027] Figure 7 is Figure 1 the partial schematic structural diagram of the rotating base

[0028] Figure 8 is Figure 7 the schematic structural diagram of part A in the rotating base

[0029] Figure 9 is Figure 1 the partial schematic structural diagram of the rotating base

[0030] Figure 10 is Figure 1 the schematic diagram of another direction of the partial structure of the rotating base

[0031] Figure 11 is Figure 1 the schematic structural diagram of another part of the rotating base

[0032] 1 - base body; 11 - bin body; 111 - upper bin body; 112 - lower bin body; 2 - motor; 3 - transmission mechanism; 31 - transmission pulley set; 311 - first transmission pulley; 312 - belt; 313 - second transmission pulley; 32 - gear set; 4 - rotating part; 5 - conductive part; 51 - conductive ring; 52 - conductive elastic part; 53 - conductive main body; 6 - power supply; 7 - sound module; 8 - LED lamp; 81 - connecting wire Specific embodiments

[0033] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present utility model.

[0034] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by those skilled in the technical field to which the present utility model belongs. The terms used herein in the description of the present utility model are only for the purpose of describing specific embodiments, and are not intended to limit the present utility model. The term "and / or" used herein includes any and all combinations of one or more of the related listed items.

[0035] Figures 1 to 11 Schematically shows the structure of the rotating base of an embodiment of the present utility model.

[0036] As Figures 1 to 11 shown, a rotating base includes a bin body 11, a motor 2, a transmission mechanism 3, a rotating part 4, and an electrical conduction part 5.

[0037] As Figures 1 to 11 shown, both the bin body 11 and the rotating part 4 can be installed in the seat body 1. The motor 2 and the transmission mechanism 3 are both installed in the bin body 11. The transmission mechanism 3 is connected to the motor 2, and the transmission mechanism 3 is also connected to the rotating part 4. The motor 2 can drive the rotating part 4 to rotate through the transmission mechanism 3. The upper end of the rotating part 4 extends out of the seat body 1. A power supply bin is also provided in the seat body 1, and a power supply 6 is arranged in the power supply bin. The power supply 6 provides electrical energy for the motor 2. The seat body 1 in the present utility model is an integral whole, and the seat body 1 will not rotate with the rotating part 4. Since the motor 2 and the transmission mechanism 3 are both installed in the bin body 11, therefore, overall, only the part of the rotating part 4 that extends out and the LED lamp installed on the rotating part 4 will rotate together.

[0038] As Figures 6 to 8 shown, the present utility model further includes an electrical conduction part 5. A part of the electrical conduction part 5 can be installed on the rotating part 4. When the motor 2 drives the rotating part 4 and a part of the electrical conduction part 5 to rotate through the transmission mechanism 3, the other parts of the electrical conduction part 5 can always form an electrical connection with the electrical conduction part 5 on the rotating part 4.

[0039] Combined with Figure 1 and Figure 2 it can be seen that the present utility model further includes a sound module 7. The sound module 7 is electrically connected to the power supply 6, and the power supply 6 also provides electrical energy for the sound module 7. Sound can be emitted through the sound module 7. For example, the sound module 7 can play music and other sounds.

[0040] As Figure 6 shown, in this embodiment, both the motor 2 and the transmission mechanism 3 can be installed in the bin body 11. The transmission mechanism 3 is connected to the motor 2 and is also connected to the rotating part 4. Therefore, when the motor 2 is started, the motor 2 can drive the rotating part 4 to rotate through the transmission mechanism 3.

[0041] Since a part of the conductive part 5 in this embodiment can be installed on the rotating part 4, when the motor 2 drives the rotating part 4 and a part of the conductive part 5 to rotate through the transmission mechanism 3, the other parts of the conductive part 5 can always form an electrical connection with the conductive part 5 on the rotating part 4. That is to say, no matter how the rotating part 4 and a part of the conductive part 5 rotate, a part of the conductive part 5 can be energized. An LED lamp or other decorative items to be energized can be installed on the rotating part 4, and the LED lamp or other decorative items to be energized are electrically connected to a part of the conductive part 5. Therefore, the LED lamp or other decorative items to be energized are always in an energized state during the rotation process.

[0042] For the specific structure of the conductive part, reference can be made to Figures 7 to 9 , the conductive part 5 includes two conductive rings 51, two conductive elastic members 52 and a conductive main body 53. The two conductive rings 51 can be installed at the lower end of the rotating part 4. The two conductive elastic members 52 and the conductive main body 53 are electrically connected. The upper conductive elastic member 52 is electrically connected to the upper conductive ring 51, and the lower conductive elastic member 52 is electrically connected to the lower conductive ring 51. The two conductive rings 51 are both installed at the lower end of the rotating part 4 and can rotate with the rotating part 4, and the conductive elastic member 52 is always electrically connected to the conductive ring 51. Therefore, an LED lamp or other decorative items to be energized can be provided on the rotating part 4, and the LED lamp or other decorative items to be energized are always in an energized state during the movement process.

[0043] As Figure 9 shown, the conductive elastic member 52 in this embodiment is a spring. When the conductive ring 51 rotates with the rotating part 4, the conductive elastic member 52 is always in a compressed state. Therefore, the conductive elastic member 52 is always in contact with the conductive ring 51. When energized, when the conductive ring 51 rotates, due to the action of the elastic force, the conductive ring 51, the conductive elastic member 52 and the conductive main body 53 are also always in an energized state. The conductive main body 53 is connected to the positive and negative poles of the power supply 6. Of course, in other embodiments, the conductive elastic member 52 can also be a spring piece. No matter what structure the conductive elastic member 52 is, as long as the conductive elastic member 52 is always in contact with the conductive ring 51 when the conductive ring 51 rotates with the rotating part 4.

[0044] In order to connect the LED lamp 8, in this embodiment, as Figure 1 and Figure 11As shown, there are two connecting wires 81. The lower ends of the two connecting wires 81 are electrically connected to the two conductive rings 51 respectively. Therefore, the power supply 6 can be electrically connected to the conductive main body 53. The conductive main body 53 provides electrical energy for the LED lamp 8 through the conductive elastic member 52, the two conductive rings 51, and the connecting wires 81. The connecting wires 81 are fixed to the rotating part 4. Therefore, the connecting wires 81 can rotate together with the rotating part 4. While the connecting wires 81 are rotating, the LED lamp 8 rotates together. The LED lamp 8 can always be in an energized state during the rotation process. Therefore, the LED lamp 8 can always be lit.

[0045] As can be seen from Figure 8 and Figure 9 , the rotating part 4 is generally cylindrical as a whole, and the cross-section of the conductive ring 51 is circular ring-shaped. The rotating part 4 and the conductive ring 51 in this shape can be more stable. That is to say, when the rotating part 4 rotates circularly, the conductive ring 51 will also rotate circularly.

[0046] In this embodiment, as Figure 1 shown, the bin body 11 includes an upper bin body 111 and a lower bin body 112. The upper bin body 111 and the lower bin body 112 form an accommodation space. Both the motor 2 and the transmission mechanism 3 can be installed in the accommodation space, and the motor 2 and the transmission mechanism 3 can be fixed by the upper bin body 111 and the lower bin body 112. Of course, in other embodiments, the structure of the bin body 11 is not limited to the above shape, as long as the bin body 11 can play the role of accommodating the motor 2 and the transmission mechanism 3.

[0047] The structure of the transmission mechanism 3 will be described below: The transmission mechanism 3 includes a transmission pulley group 31 and a gear group 32. The transmission pulley group 31 is connected to the motor 2, the gear group 32 is connected to the transmission pulley group 31, the motor 2 is connected to the transmission pulley group 31, the gear group 32 is connected to the transmission pulley group 31, and the motor 2 is connected to the rotating part 4 through the transmission pulley group 31 and the gear group 32 in sequence.

[0048] The structure of the transmission pulley group 31 will be described in detail below: The transmission pulley group 31 includes a first transmission pulley 311, a belt 312, and a second transmission pulley 313. The first transmission pulley 311 is coaxially connected to the output shaft of the motor 2. One end of the belt 312 is sleeved on the first transmission pulley 311, and the other end is sleeved on the second transmission pulley 313. The second transmission pulley 313 is connected to the gear group 32. When the motor 2 starts, the motor 2 can drive the first transmission pulley 311 to rotate. The first transmission pulley 311 can drive the second transmission pulley 313 to rotate, and the second transmission pulley 313 can drive the gear group 32 to rotate.

[0049] The structure of the gear set 32 will be described in detail below. The gear set 32 includes multiple gears that are sequentially meshed with each other to form a speed reduction structure. One of the gears is coaxially connected to the second transmission wheel 313, and another gear is coaxially connected to the rotating part 4. The multiple gears can achieve the function of speed reduction, enabling the rotating part 4 to rotate at a set speed. Since the gear set 32 can be set according to the actual situation, thereby adjusting the transmission ratio, the specific structure of the gear set 32 can be as Figure 10 shown, and the setting of the gear set 32 is often a conventional means. Therefore, it will not be elaborated here.

[0050] In the present utility model, after the motor 2 is started, the motor 2 can drive the rotating part 4 to rotate through the transmission mechanism 3. A slip ring 51 is provided on the rotating part 4, and the slip ring 51 can rotate along with the rotating part 4. Since the conductive elastic member 52 is always in contact with the slip ring 51, and the conductive elastic member 52 is electrically connected to the conductive body 53, the slip ring 51 can always be in an energized state. The slip ring 51 can be electrically connected to an LED lamp or other ornaments to be energized, so that the LED lamp or other ornaments to be energized can always be in an energized state. The LED lamp or other ornaments to be energized can be arranged on the rotating part 4 and rotate along with the rotating part 4. In addition, in the present utility model, the sound module can be controlled to emit sound through a separate switch, and the motor can be started through a separate switch, making it more convenient for users. The base of the present utility model does not rotate, so the present utility model forms the effect that the LED lamp or other ornaments to be energized rotate independently. Compared with the utility model named "Motor Chamber" applied by the applicant on August 17, 2024, the "rotating base" can be protected through the present utility model. The LED lamp or other ornaments to be energized can be directly installed on the rotating base of the present utility model to form an ornament product, making the protection of the applicant's product more comprehensive.

[0051] In addition, compared with the utility model named "An Integral Rotating Base" with the application number 2024220438164 applied by the applicant on August 22, 2024, the specific application scenarios of the rotating base of the present application are also different, which can meet different usage requirements.

[0052] The present utility model is not limited to the above optional embodiments. Anyone can obtain other various forms of products under the inspiration of the present utility model. However, no matter what changes are made in its shape or structure, as long as the technical solutions fall within the scope defined by the claims of the present utility model, they are all within the protection scope of the present utility model.

Claims

1. A rotating base, characterized in that: It includes a base body (1), a bin body (11), a motor (2), a transmission mechanism (3) and a rotating part (4). The bin body (11) and the rotating part (4) are both arranged in the base body (1), the motor (2) and the transmission mechanism (3) are both arranged in the bin body (11), the transmission mechanism (3) is connected to the motor (2), the transmission mechanism (3) is also connected to the rotating part (4), the motor (2) can drive the rotating part (4) to rotate through the transmission mechanism (3), the upper end of the rotating part (4) extends out of the base body (1), a power supply bin is also arranged in the base body (1), a power supply (6) is arranged in the power supply bin, and the power supply (6) supplies electric energy to the motor (2). The base body (1) is fixedly arranged and does not rotate following the rotating part (4).

2. The rotating base according to claim 1, characterized in that: It further includes a conductive part (5). A part of the conductive part (5) is arranged on the rotating part (4). When the motor (2) drives the rotating part (4) and a part of the conductive part (5) to rotate through the transmission mechanism (3), the other part of the conductive part (5) can always form an electrical connection with the conductive part (5) on the rotating part (4).

3. The rotating base according to claim 2, wherein: It further includes a sound module (7). The sound module (7) is electrically connected to the power supply (6), and the power supply (6) also supplies electric energy to the sound module (7).

4. The rotating base according to claim 3, characterized in that: The conductive part (5) includes two conductive rings (51), two conductive elastic parts (52) and a conductive main body (53). The two conductive rings (51) are arranged at the lower end of the rotating part (4). The two conductive elastic parts (52) and the conductive main body (53) are electrically connected. One of the conductive elastic parts (52) is electrically connected to one of the conductive rings (51), and the other conductive elastic part (52) is electrically connected to the other conductive ring (51).

5. The rotating base according to claim 4, wherein: The conductive elastic part (52) is a spring. When the conductive ring (51) rotates following the rotating part (4), the conductive elastic part (52) is always in contact with the conductive ring (51).

6. The rotating base according to claim 5, wherein: The rotating part (4) is integrally cylindrical, and the cross section of the conductive ring (51) is circular ring-shaped.

7. The rotating base according to claim 6, characterized in that: The bin body (11) includes an upper bin body (111) and a lower bin body (112). The upper bin body (111) and the lower bin body (112) form an accommodating space, and the motor (2) and the transmission mechanism (3) are both arranged in the accommodating space.

8. The rotating base according to any one of claims 1 to 7, characterized in that: The transmission mechanism (3) includes a transmission pulley set (31) and a gear set (32). The transmission pulley set (31) is connected to the motor (2), the gear set (32) is connected to the transmission pulley set (31), the motor (2) is connected to the transmission pulley set (31), and the motor (2) is connected to the rotating part (4) through the transmission pulley set (31) and the gear set (32) in sequence.

9. The rotating base according to claim 8, wherein: The drive pulley set (31) includes a first drive pulley (311), a belt (312), and a second drive pulley (313). The first drive pulley (311) is coaxially connected to the output shaft of the motor (2). One end of the belt (312) is sleeved on the first drive pulley (311), and the other end is sleeved on the second drive pulley (313). The second drive pulley (313) is connected to the gear set (32).

10. The rotating base according to claim 9, characterized in that: The gear set (32) includes a plurality of gears. The plurality of gears are sequentially meshed with each other to form a speed reduction structure. One of the gears is coaxially connected to the second drive pulley (313), and another gear is coaxially connected to the rotating part (4).