A rotating color light circuit assembling toy
Patent Information
- Application Number
- CN202522033159.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-22
- Publication Date
- 2026-08-21
- Estimated Expiration
- 2035-09-22
AI Technical Summary
[0002]旋转彩灯一般由电机、三色灯以及能够折射灯光的透明球形罩构成,其能够折射出多彩绚丽的灯光,但是其玩法单一,儿童会很快失去兴趣,为此我们提出一种旋转彩灯电路拼装玩具
基于旋转彩灯模块,配套控制电路,可拼装成旋转彩灯玩具,能够让儿童在玩乐中学习电路原理,增加了拼装的乐趣,利于提升学习兴趣。
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Figure CN224655987U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of circuit assembly toys, specifically a rotating colored light circuit assembly toy. Background Technology
[0002] Rotating colored lights typically consist of a motor, three-color lights, and a transparent spherical cover that refracts light, producing a variety of colorful and dazzling lights. However, their gameplay is limited, and children quickly lose interest. Therefore, we propose a rotating colored light circuit assembly toy. Utility Model Content
[0003] The technical problem to be solved by this utility model is to overcome the existing defects and provide a rotating colored light circuit assembly toy. Based on the rotating colored light module and equipped with a control circuit, it can be assembled into a rotating colored light toy, which allows children to learn circuit principles while playing, increases the fun of assembly, helps to improve learning interest, and can effectively solve the problems in the background technology.
[0004] To achieve the above objectives, this utility model provides the following technical solution: a rotating colored light circuit assembly toy, including an assembly base plate, on which base plate buckles are arranged in a rectangular array. The rear right side of the assembly base plate is engaged with a female buckle at the bottom of the battery box via the base plate buckles. The middle part of the assembly base plate is engaged with a female buckle at the bottom of the rotating colored light module via the base plate buckles. The conductive buckle of the positive terminal on the battery box is engaged with the conductive female buckle at the bottom right end of the conductive building block strip at the two nodes of the positive terminal. The conductive female buckle at the bottom left end of the conductive building block strip at the two nodes of the positive terminal is engaged with the conductive buckle at the positive terminal of the rotating colored light module. The rotating colored light module is connected to the conductive buckle of the negative terminal on the battery box via a conductive control component.
[0005] Furthermore, the rotating light module includes a module base, a support cylinder, a cylinder cover, a rotating light motor, motor fixing protrusions, a rotating light motor shaft, a transparent ball, and a mounting bracket. The middle part of the assembly base plate is snapped into the female buckle at the bottom of the module base via a base plate buckle. The upper side of the module base is fixedly connected to the bottom end of the support cylinder. Two mounting brackets are integrally formed and connected to both sides of the support cylinder. A rotating light motor is set in the middle of the support cylinder. Two motor fixing protrusions are set on both sides of the rotating light motor. The two motor fixing protrusions are respectively installed in the two mounting brackets. A cylinder cover is installed on the top of the support cylinder. The output shaft at the top of the rotating light motor is fixedly connected to the bottom end of the rotating light motor shaft. The rotating light motor shaft passes through the shaft hole on the cylinder cover. A transparent ball is installed on the top of the rotating light motor shaft.
[0006] Furthermore, the rotating colored light module also includes a circuit board, a green light, a red light, and a blue light. The circuit board is installed at the top of the inner tube, and the rotating colored light motor shaft passes through the round hole on the circuit board. The circuit board is equipped with green, red, and blue lights around the rotating colored light motor shaft, and the tops of the green, red, and blue lights pass through three light holes on the tube cover, respectively.
[0007] Furthermore, the conductive control component includes a two-node conductive block strip for the motor and a two-node conductive block strip for the negative electrode. The conductive male buckle on the negative electrode port of the module base is engaged with the conductive female buckle at the bottom right end of the two-node conductive block strip for the motor, and the conductive female buckle at the bottom left end of the two-node conductive block strip for the motor is engaged with the conductive male buckle at the top rear end of the two-node conductive block strip for the negative electrode.
[0008] Furthermore, the conductive control component also includes a switch block strip, a five-node conductive block strip, a blue light three-node conductive block strip, a green light three-node conductive block strip, a red light three-node conductive block strip, and a central three-node conductive block strip. The conductive buckle of the negative terminal on the battery box is engaged with the conductive female buckle at the bottom rear end of the switch block strip. The conductive female buckle at the bottom front end of the switch block strip is engaged with the conductive buckle at the top right end of the five-node conductive block strip. The conductive buckle at the top left end of the five-node conductive block strip is engaged with the conductive female buckle at the bottom front end of the central three-node conductive block strip. The conductive female buckle at the bottom rear end of the central three-node conductive block strip is engaged with the negative terminal conductive female buckle. The conductive buckles at the top front end of the two-node conductive building block strip are engaged. The three conductive buckles on the upper side of the middle part of the five-node conductive building block strip are engaged from right to left with the conductive female buckles at the bottom front end of the blue light three-node conductive building block strip, the green light three-node conductive building block strip, and the red light three-node conductive building block strip. The conductive female buckle at the bottom rear end of the blue light three-node conductive building block strip is engaged with the blue light negative electrode conductive buckle on the module base. The conductive female buckle at the bottom rear end of the green light three-node conductive building block strip is engaged with the green light negative electrode conductive buckle on the module base. The conductive female buckle at the bottom rear end of the red light three-node conductive building block strip is engaged with the red light negative electrode conductive buckle on the module base.
[0009] Furthermore, the conductive control component also includes a switch block strip, a five-node conductive block strip, a blue light three-node conductive block strip, a green light three-node conductive block strip, a red light three-node conductive block strip, and a negative electrode three-node conductive block strip. The conductive buckle of the negative electrode on the battery box is engaged with the conductive female buckle at the bottom rear end of the negative electrode three-node conductive block strip. The conductive female buckle at the bottom front end of the negative electrode three-node conductive block strip is engaged with the conductive buckle at the top right end of the five-node conductive block strip. The conductive buckle at the top left end of the five-node conductive block strip is engaged with the conductive female buckle at the bottom front end of the switch block strip. The conductive female buckle at the bottom rear end of the switch block strip is engaged with the negative electrode three-node conductive block strip. The conductive buckles at the top front end of the two-node conductive building block strip are engaged. The three conductive buckles on the upper side of the middle part of the five-node conductive building block strip are engaged from right to left with the conductive female buckles at the bottom front end of the blue light three-node conductive building block strip, the green light three-node conductive building block strip, and the red light three-node conductive building block strip. The conductive female buckle at the bottom rear end of the blue light three-node conductive building block strip is engaged with the blue light negative electrode conductive buckle on the module base. The conductive female buckle at the bottom rear end of the green light three-node conductive building block strip is engaged with the green light negative electrode conductive buckle on the module base. The conductive female buckle at the bottom rear end of the red light three-node conductive building block strip is engaged with the red light negative electrode conductive buckle on the module base.
[0010] Furthermore, the conductive control component also includes a switch block strip, a five-node conductive block strip, a central three-node conductive block strip, a negative three-node conductive block strip, a magnetic reed switch module, and a key module. The conductive buckle on the negative terminal of the battery box engages with the conductive female buckle at the bottom rear end of the negative three-node conductive block strip. The conductive female buckle at the bottom front end of the negative three-node conductive block strip engages with the conductive buckle at the top right end of the five-node conductive block strip. The conductive buckle at the top left end of the five-node conductive block strip engages with the conductive female buckle at the bottom front end of the central three-node conductive block strip. The central three-node conductive... The conductive female buckle at the bottom rear end of the building block strip engages with the conductive male buckle at the top front end of the negative two-node conductive building block strip. The three conductive male buckles on the upper side of the middle of the five-node conductive building block strip engage with the conductive female buckles at the bottom front end of the switch building block strip, the key module, and the magnet-attracting reed switch module, from right to left. The conductive female buckle at the bottom rear end of the switch building block strip engages with the blue negative conductive male buckle on the module base. The conductive female buckle at the bottom rear end of the key module engages with the green negative conductive male buckle on the module base. The conductive female buckle at the bottom rear end of the magnet-attracting reed switch module engages with the red negative conductive male buckle on the module base.
[0011] Compared with existing technologies, the advantages of this rotating colored light circuit assembly toy are: Based on the rotating colored light module and the matching control circuit, it can be assembled into a rotating colored light toy, which allows children to learn circuit principles while playing, increases the fun of assembly, and helps to enhance their learning interest. Attached Figure Description
[0012] Figure 1This is a schematic diagram of the structure of Embodiment 1 of the present utility model; Figure 2 This is a schematic diagram of the structure of Embodiment 2 of the present invention; Figure 3 This is a structural schematic diagram of Embodiment 3 of the present invention; Figure 4 This is a schematic diagram of the rotating colored light module in this utility model; Figure 5 This is a partial structural schematic diagram of the rotating colored light module in this utility model; In the diagram: 1. Assembled base plate; 2. Base plate clip; 3. Battery box; 4. Rotating colored light module; 41. Module base; 42. Support cylinder; 43. Cylinder cover; 44. Rotating colored light motor; 45. Motor fixing protrusion; 46. Circuit board; 47. Green light; 48. Red light; 49. Blue light; 410. Rotating colored light motor shaft; 411. Transparent ball; 412. Card slot; 5. Positive two-node conductive building block strip; 6. Motor two-node conductive building block strip; 7. Negative two-node conductive building block strip; 8. Switch building block strip; 9. Five-node conductive building block strip; 10. Blue light three-node conductive building block strip; 11. Green light three-node conductive building block strip; 12. Red light three-node conductive building block strip; 13. Middle three-node conductive building block strip; 14. Negative three-node conductive building block strip; 15. Magnet-activated reed switch module; 16. Switch module. Detailed Implementation
[0013] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0014] Example 1, please refer to Figure 1 , Figure 4 and Figure 5This utility model provides a technical solution: a rotating colored light circuit assembly toy, including an assembly base plate 1. Base plate clips 2 are arranged in a rectangular array on the assembly base plate 1. The upper right rear side of the assembly base plate 1 is connected to the female clip at the bottom of the battery box 3 via the base plate clips 2. The upper middle part of the assembly base plate 1 is connected to the female clip at the bottom of the rotating colored light module 4 via the base plate clips 2. The conductive clip at the positive terminal of the battery box 3 is connected to the conductive female clip at the bottom right end of the positive two-node conductive building block strip 5. The conductive female clip at the bottom left end of the positive two-node conductive building block strip 5 is connected to the conductive clip at the positive terminal of the rotating colored light module 4. The rotating colored light module 4 is connected to the conductive clip at the negative terminal of the battery box 3 via a conductive control component. The battery box 3 contains two AA batteries to provide power to the rotating colored light module 4. The assembly base plate 1, with the base plate clips 2, secures the battery box 3 and the rotating colored light module 4, constituting the basic elements of the assembly toy.
[0015] The rotating light module 4 includes a module base 41, a support cylinder 42, a cylinder cover 43, a rotating light motor 44, a motor fixing protrusion 45, a rotating light motor shaft 410, a transparent ball 411, and a mounting bracket 412. The upper center of the assembly base plate 1 is engaged with the bottom of the module base 41 via a base plate buckle 2. The upper side of the module base 41 is fixedly connected to the bottom end of the support cylinder 42. Two mounting brackets 412 are integrally formed and connected to both sides of the support cylinder 42. The rotating light motor 44 is located in the center of the support cylinder 42. Two motor fixing protrusions 45 are respectively provided on both sides of the support cylinder 44. The two motor fixing protrusions 45 are respectively installed in two brackets 412. The top of the support cylinder 42 is equipped with a cylinder cover 43. The output shaft of the top of the rotating colored light motor 44 is fixedly connected to the bottom end of the rotating colored light motor shaft 410. The rotating colored light motor shaft 410 passes through the shaft hole on the cylinder cover 43. A transparent ball 411 is installed on the top of the rotating colored light motor shaft 410. The transparent ball 411 includes two hemispheres, and the inner wall of the hemispheres is evenly provided with light refraction surfaces. The module base 41 serves as a base connected to the upper middle part of the assembly base plate 1 through the base plate buckle 2. The support cylinder 42 is equipped with the rotating colored light motor 44 through the motor fixing protrusions 45 and the brackets 412. The rotating colored light motor 44 drives the rotating colored light motor shaft 410 to rotate. The rotating colored light motor shaft 410 can drive the transparent ball 411 to rotate. The transparent ball 411 can refract light shining from below through the light refraction surfaces. As the transparent ball 411 rotates, it can continuously refract light in various directions. The transparent sphere 411 is used as a reflective lampshade, and its external shape can be changed as needed.
[0016] The external shapes include umbrella, nest, sphere, mushroom, and other models. The combined model is placed on top of the rotating colored light motor shaft 410. The transparent sphere 411 is driven by the rotating colored light motor 44, and red, green and blue lights are reflected through the transparent sphere 411 to create a colorful lighting effect. When the rotating colored light is placed in a dimly lit room at night, the transparent sphere refracts colorful lights and reflects them on the wall, which is very beautiful. The rotating colored light can also be used as stage lighting on smaller performance stages.
[0017] The rotating colored light module 4 also includes a circuit board 46, a green light 47, a red light 48, and a blue light 49. The circuit board 46 is installed at the top inside the support cylinder 42. The rotating colored light motor shaft 410 passes through a round hole on the circuit board 46. Green lights 47, red lights 48, and blue lights 49 are arranged around the rotating colored light motor shaft 410 on the circuit board 46. The tops of green lights 47, red lights 48, and blue lights 49 pass through three light holes on the cylinder cover 43. The conductive female buckle at the bottom left end of the positive two-node conductive block strip 5 engages with the conductive male buckle at the positive port on the module base 41. The positive terminal is connected to the positive terminals of the rotating colored light motor 44, green light 47, red light 48, and blue light 49 via wires. From left to right, the front side of the module base 41 also has negative conductive contacts for the red, green, and blue lights. The green light negative conductive contact is connected to the negative terminal of green light 47 via a wire, the red light negative conductive contact is connected to the negative terminal of red light 48 via a wire, and the blue light negative conductive contact is connected to the negative terminal of blue light 49 via a wire. The module base 41 includes a lower shell and an upper shell that interlock, and all the above wires are internally housed within the module base 41. Green light 47, red light 48, and blue light 49 can emit green, red, and blue light respectively. These lights illuminate the light-reflecting surface of the transparent sphere 411 and are then refracted, creating a colorful and dazzling display of light.
[0018] The conductive control component includes a two-node conductive block 6 for the motor and a two-node conductive block 7 for the negative pole. The conductive female buckle at the negative pole port on the module base 41 is engaged with the conductive female buckle at the bottom right end of the two-node conductive block 6 for the motor. The conductive female buckle at the bottom left end of the two-node conductive block 6 for the motor is engaged with the conductive female buckle at the top rear end of the two-node conductive block 7 for the negative pole. The conductive female buckle at the bottom of the two-node conductive block 7 for the negative pole is engaged with the corresponding base plate buckle 2 on the assembly base plate 1.
[0019] The conductive control assembly also includes a switch block 8, a five-node conductive block 9, a blue light three-node conductive block 10, a green light three-node conductive block 11, a red light three-node conductive block 12, and a central three-node conductive block 13. The conductive buckle on the negative terminal of the battery box 3 engages with the conductive female buckle at the bottom rear end of the switch block 8. The conductive female buckle at the bottom front end of the switch block 8 engages with the conductive buckle at the top right end of the five-node conductive block 9. The conductive female buckle at the bottom of the five-node conductive block 9 engages with the corresponding base plate buckle 2 on the assembly base plate 1. The conductive female buckle at the top left end of the five-node conductive block 9 engages with the conductive female buckle at the bottom front end of the central three-node conductive block 13. The conductive female buckle at the bottom rear end of strip 13 engages with the conductive male buckle at the top front end of the negative two-node conductive block strip 7. The three conductive male buckles on the upper side of the middle of the five-node conductive block strip 9 engage with the conductive female buckles at the bottom front end of the blue three-node conductive block strip 10, the green three-node conductive block strip 11, and the red three-node conductive block strip 12, from right to left. The conductive female buckle at the bottom rear end of the blue three-node conductive block strip 10 engages with the blue negative electrode conductive male buckle on the module base 41. The conductive female buckle at the bottom rear end of the green three-node conductive block strip 11 engages with the green negative electrode conductive male buckle on the module base 41. The conductive female buckle at the bottom rear end of the red three-node conductive block strip 12 engages with the red negative electrode conductive male buckle on the module base 41.
[0020] The method of using the conductive control component in this embodiment is as follows: After assembling the circuit and turning on the switch on the switch block 8, the green light 47, red light 48, and blue light 49 in the rotating colored lights all light up. The rotating colored light motor 44 drives the rotating colored light motor shaft 410 to rotate, and the transparent ball 411 driven by it refracts colorful and dazzling lights.
[0021] Disconnect the switch on the switch block 8. The green light 47, red light 48 and blue light 49 in the rotating colored light all go out. The rotating colored light motor 44 stops rotating. The transparent ball 411, which has stopped rotating, shows the transparent prism light refracted by the light refraction surface on its inner wall.
[0022] Example 2, please refer to Figure 2 , Figure 4 and Figure 5 This utility model provides a technical solution: a rotating colored light circuit assembly toy. This embodiment has a structure that is roughly the same as that of Embodiment 1, the difference being the different conductive control components.
[0023] The conductive control component includes a two-node conductive block 6 for the motor and a two-node conductive block 7 for the negative pole. The conductive female buckle at the negative pole port on the module base 41 is engaged with the conductive female buckle at the bottom right end of the two-node conductive block 6 for the motor. The conductive female buckle at the bottom left end of the two-node conductive block 6 for the motor is engaged with the conductive female buckle at the top rear end of the two-node conductive block 7 for the negative pole. The conductive female buckle at the bottom of the two-node conductive block 7 for the negative pole is engaged with the corresponding base plate buckle 2 on the assembly base plate 1.
[0024] The conductive control assembly also includes a switch block 8, a five-node conductive block 9, a blue light three-node conductive block 10, a green light three-node conductive block 11, a red light three-node conductive block 12, and a negative three-node conductive block 14. The negative conductive buckle on the battery box 3 engages with the conductive female buckle at the bottom rear of the negative three-node conductive block 14. The conductive female buckle at the bottom front of the negative three-node conductive block 14 engages with the conductive buckle at the top right of the five-node conductive block 9. The conductive female buckle at the bottom of the five-node conductive block 9 engages with the corresponding base plate buckle 2 on the assembly base plate 1. The conductive female buckle at the top left of the five-node conductive block 9 engages with the conductive female buckle at the bottom front of the switch block 8. The conductive female buckle at the bottom rear end of the wooden strip 8 is engaged with the conductive male buckle at the top front end of the negative two-node conductive block strip 7. The three conductive male buckles on the upper side of the middle of the five-node conductive block strip 9 are engaged from right to left with the conductive female buckles at the bottom front end of the blue three-node conductive block strip 10, the green three-node conductive block strip 11, and the red three-node conductive block strip 12. The conductive female buckle at the bottom rear end of the blue three-node conductive block strip 10 is engaged with the blue negative conductive male buckle on the module base 41. The conductive female buckle at the bottom rear end of the green three-node conductive block strip 11 is engaged with the green negative conductive male buckle on the module base 41. The conductive female buckle at the bottom rear end of the red three-node conductive block strip 12 is engaged with the red negative conductive male buckle on the module base 41.
[0025] The method of using the conductive control component in this embodiment is as follows: Once the circuit is assembled, the green light 47, red light 48, and blue light 49 in the rotating colored lights will all light up. When the switch on the switch block 8 is closed, the rotating colored light motor 44 will drive the rotating colored light motor shaft 410 to rotate, and the transparent ball 411 driven by it will refract colorful and dazzling lights.
[0026] When the switch on the switch block 8 is turned off, the green light 47, red light 48 and blue light 49 in the rotating colored light are still lit, the rotating colored light motor 44 stops rotating, the transparent ball 411 stops rotating, and the light refracted by the transparent ball 411 becomes static light.
[0027] Example 3, please refer to Figures 3 to 5 This utility model provides a technical solution: a rotating colored light circuit assembly toy. This embodiment has a structure that is roughly the same as that of Embodiment 1, the difference being the different conductive control components.
[0028] The conductive control component includes a two-node conductive block 6 for the motor and a two-node conductive block 7 for the negative pole. The conductive female buckle at the negative pole port on the module base 41 is engaged with the conductive female buckle at the bottom right end of the two-node conductive block 6 for the motor. The conductive female buckle at the bottom left end of the two-node conductive block 6 for the motor is engaged with the conductive female buckle at the top rear end of the two-node conductive block 7 for the negative pole. The conductive female buckle at the bottom of the two-node conductive block 7 for the negative pole is engaged with the corresponding base plate buckle 2 on the assembly base plate 1.
[0029] The conductive control assembly also includes a switch block 8, a five-node conductive block 9, a central three-node conductive block 13, a negative three-node conductive block 14, a magnetic reed switch module 15, and a key module 16. The negative conductive latch on the battery box 3 engages with the conductive female latch at the bottom rear of the negative three-node conductive block 14. The conductive female latch at the bottom front of the negative three-node conductive block 14 engages with the conductive latch at the top right end of the five-node conductive block 9. The conductive female latch at the bottom of the five-node conductive block 9 engages with the corresponding base plate latch 2 on the assembly base plate 1. The conductive latch at the top left end of the five-node conductive block 9 engages with the conductive female latch at the bottom front end of the central three-node conductive block 13. The conductive female buckle at the bottom rear end of the node conductive block strip 13 is engaged with the conductive male buckle at the top front end of the negative two-node conductive block strip 7. The three conductive male buckles on the upper side of the middle of the five-node conductive block strip 9 are engaged from right to left with the conductive female buckles at the bottom front end of the switch block strip 8, the key module 16, and the reed switch module 15. The conductive female buckle at the bottom rear end of the switch block strip 8 is engaged with the negative blue light conductive male buckle on the module base 41. The conductive female buckle at the bottom rear end of the key module 16 is engaged with the negative green light conductive male buckle on the module base 41. The conductive female buckle at the bottom rear end of the reed switch module 15 is engaged with the negative red light conductive male buckle on the module base 41. The reed switch module 15 is equipped with a reed switch.
[0030] The method of using the conductive control component in this embodiment is as follows: Once the circuit is assembled, the rotating colored light motor 44 drives the transparent ball 411 to rotate via the rotating colored light motor shaft 410. When the magnet is closed, it attracts the reed switch on the reed switch module 15, and the red light 48 lights up. The transparent ball 411 only refracts the red light.
[0031] After assembling the circuit, the rotating colored light motor 44 drives the transparent ball 411 to rotate via the rotating colored light motor shaft 410. When the switch on the switch module 16 is pressed, the green light 47 lights up, and the transparent ball 411 only refracts the green light.
[0032] Once the circuit is assembled, the rotating colored light motor 44 drives the transparent ball 411 to rotate via the rotating colored light motor shaft 410. When the switch on the switch block 8 is closed, the blue light 49 lights up, and the transparent ball 411 only refracts blue light.
[0033] It should be noted that, in this document, relational terms such as "first" and "second" are used only to distinguish one entity or operation from another, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Furthermore, the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such process, method, article, or apparatus.
[0034] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A rotating colored light circuit assembly toy, comprising an assembly base plate (1), wherein base plate clips (2) are arranged in a rectangular array on the assembly base plate (1), characterized in that, The upper right rear side of the assembly base plate (1) is connected to the female buckle at the bottom of the battery box (3) via the base plate buckle (2). The upper middle part of the assembly base plate (1) is connected to the female buckle at the bottom of the rotating light module (4) via the base plate buckle (2). The conductive buckle of the positive electrode on the battery box (3) is connected to the conductive female buckle at the bottom right end of the conductive block strip (5) at the two nodes of the positive electrode. The conductive female buckle at the bottom left end of the conductive block strip (5) at the two nodes of the positive electrode is connected to the conductive buckle at the positive port on the rotating light module (4). The rotating light module (4) is connected to the conductive buckle of the negative electrode on the battery box (3) via the conductive control component.
2. The rotating colored light circuit assembly toy according to claim 1, characterized in that: The rotating colored light module (4) includes a module base (41), a support cylinder (42), a cylinder cover (43), a rotating colored light motor (44), a motor fixing protrusion (45), a rotating colored light motor shaft (410), a transparent ball (411), and a mounting bracket (412). The upper center of the assembly base plate (1) is connected to the bottom of the module base (41) by a base plate buckle (2). The upper side of the module base (41) is fixedly connected to the bottom end of the support cylinder (42). Two mounting brackets (412) are integrally formed and connected to both sides of the support cylinder (42). The support cylinder (42) is located in the middle of the center. The unit is equipped with a rotating colored light motor (44), and two motor fixing protrusions (45) are respectively provided on both sides of the rotating colored light motor (44). The two motor fixing protrusions (45) are respectively installed in two card seats (412). The top of the support cylinder (42) is equipped with a cylinder cover (43). The output shaft at the top of the rotating colored light motor (44) is fixedly connected to the bottom end of the rotating colored light motor shaft (410). The rotating colored light motor shaft (410) passes through the shaft hole on the cylinder cover (43). A transparent ball (411) is installed on the top of the rotating colored light motor shaft (410).
3. The rotating colored light circuit assembly toy according to claim 2, characterized in that: The rotating colored light module (4) also includes a circuit board (46), a green light (47), a red light (48) and a blue light (49). The circuit board (46) is installed on the top of the inner tube (42). The rotating colored light motor shaft (410) passes through the round hole on the circuit board (46). The circuit board (46) is surrounded by the rotating colored light motor shaft (410). The tops of the green light (47), red light (48) and blue light (49) pass through the three lamp holes on the tube cover (43).
4. The rotating colored light circuit assembly toy according to claim 3, characterized in that: The conductive control component includes a two-node conductive block strip (6) for the motor and a two-node conductive block strip (7) for the negative pole. The conductive buckle of the negative pole port on the module base (41) is engaged with the conductive female buckle at the bottom right end of the two-node conductive block strip (6) for the motor, and the conductive female buckle at the bottom left end of the two-node conductive block strip (6) for the motor is engaged with the conductive buckle at the top rear end of the two-node conductive block strip (7) for the negative pole.
5. A rotating colored light circuit assembly toy according to claim 4, characterized in that: The conductive control component also includes a switch block strip (8), a five-node conductive block strip (9), a blue light three-node conductive block strip (10), a green light three-node conductive block strip (11), a red light three-node conductive block strip (12), and a middle three-node conductive block strip (13). The conductive buckle of the negative terminal on the battery box (3) is engaged with the conductive female buckle at the bottom rear end of the switch block strip (8). The conductive female buckle at the bottom front end of the switch block strip (8) is engaged with the conductive buckle at the top right end of the five-node conductive block strip (9). The conductive buckle at the top left end of the five-node conductive block strip (9) is engaged with the conductive female buckle at the bottom front end of the middle three-node conductive block strip (13). The conductive female buckle at the bottom rear end of the middle three-node conductive block strip (13) is engaged with the negative terminal. The conductive buckle at the top front end of the two-node conductive block strip (7) is engaged with the conductive buckle at the top front end of the five-node conductive block strip (9). The three conductive buckles on the upper side of the middle part of the five-node conductive block strip (9) are engaged with the conductive female buckles at the bottom front end of the three-node conductive block strip (10), the three-node conductive block strip (11), and the three-node conductive block strip (12) of the blue light from right to left. The conductive female buckle at the bottom rear end of the three-node conductive block strip (10) of the blue light is engaged with the negative conductive buckle of the blue light on the module base (41). The conductive female buckle at the bottom rear end of the three-node conductive block strip (11) of the green light is engaged with the negative conductive buckle of the green light on the module base (41). The conductive female buckle at the bottom rear end of the three-node conductive block strip (12) of the red light is engaged with the negative conductive buckle of the red light on the module base (41).
6. A rotating colored light circuit assembly toy according to claim 4, characterized in that: The conductive control component also includes a switch block strip (8), a five-node conductive block strip (9), a blue light three-node conductive block strip (10), a green light three-node conductive block strip (11), a red light three-node conductive block strip (12), and a negative electrode three-node conductive block strip (14). The conductive buckle of the negative electrode on the battery box (3) is engaged with the conductive female buckle at the bottom rear end of the negative electrode three-node conductive block strip (14). The conductive female buckle at the bottom front end of the negative electrode three-node conductive block strip (14) is engaged with the conductive buckle at the top right end of the five-node conductive block strip (9). The conductive buckle at the top left end of the five-node conductive block strip (9) is engaged with the conductive female buckle at the bottom front end of the switch block strip (8). The conductive female buckle at the bottom rear end of the switch block strip (8) is engaged with the negative electrode... The conductive buckle at the top front end of the two-node conductive block strip (7) is engaged with the conductive buckle at the top front end of the five-node conductive block strip (9). The three conductive buckles on the upper side of the middle part of the five-node conductive block strip (9) are engaged with the conductive female buckles at the bottom front end of the three-node conductive block strip (10), the three-node conductive block strip (11), and the three-node conductive block strip (12) of the blue light from right to left. The conductive female buckle at the bottom rear end of the three-node conductive block strip (10) of the blue light is engaged with the negative conductive buckle of the blue light on the module base (41). The conductive female buckle at the bottom rear end of the three-node conductive block strip (11) of the green light is engaged with the negative conductive buckle of the green light on the module base (41). The conductive female buckle at the bottom rear end of the three-node conductive block strip (12) of the red light is engaged with the negative conductive buckle of the red light on the module base (41).
7. A rotating colored light circuit assembly toy according to claim 4, characterized in that: The conductive control component also includes a switch block strip (8), a five-node conductive block strip (9), a middle three-node conductive block strip (13), a negative three-node conductive block strip (14), a magnetic reed switch module (15), and a key module (16). The conductive buckle of the negative terminal on the battery box (3) is engaged with the conductive female buckle at the bottom rear end of the negative three-node conductive block strip (14). The conductive female buckle at the bottom front end of the negative three-node conductive block strip (14) is engaged with the conductive buckle at the top right end of the five-node conductive block strip (9). The conductive buckle at the top left end of the five-node conductive block strip (9) is engaged with the conductive female buckle at the bottom front end of the middle three-node conductive block strip (13). (13) The conductive female buckle at the bottom of the rear end is connected to the conductive female buckle at the top of the front end of the two-node conductive block strip (7) of the negative pole. The three conductive female buckles on the upper side of the middle part of the five-node conductive block strip (9) are connected from right to left to the conductive female buckles at the bottom of the front end of the switch block strip (8), the key module (16) and the reed switch module (15) attracted by the magnet. The conductive female buckle at the bottom of the rear end of the switch block strip (8) is connected to the blue negative electrode conductive female buckle on the module seat (41). The conductive female buckle at the bottom of the rear end of the key module (16) is connected to the green negative electrode conductive female buckle on the module seat (41). The conductive female buckle at the bottom of the rear end of the reed switch module (15) attracted by the magnet is connected to the red negative electrode conductive female buckle on the module seat (41).