Circuit maze puzzle electronic toy
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-03
- Publication Date
- 2026-08-11
AI Technical Summary
[0002]电碰迷宫作为一种广受欢迎的游戏设备,需要手持游戏棒,将游戏棒端部的导电环沿着带有曲折路径的导电条行进,一旦游戏棒上的导电环触碰到带有曲折路径的导电条,则手持游戏棒的人就会被电击,单一将电碰迷宫作为玩具会让儿童很快失去兴趣
1、手持绝缘游戏棒,绝缘游戏末端有导电环,导电环留有开口,电路迷宫导电条为带有曲折路径的零件,将导电环套住电路迷宫导电条的路径,从起点开始沿着路径走到终点,途中导电环不可触碰电路迷宫导电条,否则电路导通,喇叭模块上的蜂鸣器鸣叫,游戏失败
Smart Images

Figure CN224613156U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of electronic building block toys, specifically a circuit maze assembly electronic toy. Background Technology
[0002] Electric mazes, as a popular game device, require holding a game stick and moving the conductive ring at the end of the game stick along a conductive strip with a winding path. Once the conductive ring on the game stick touches the conductive strip with a winding path, the person holding the game stick will be shocked. Using electric mazes as toys alone will cause children to quickly lose interest. Utility Model Content
[0003] The technical problem this invention aims to solve is to overcome existing defects and provide a circuit maze assembly electronic toy. The toy consists of a handheld insulated game stick with a conductive ring at the end, the ring having an opening. The circuit maze's conductive strip is a component with a winding path. The player places the conductive ring around the path of the circuit maze's conductive strip, starting from the beginning and following the path to the end. The conductive ring must not touch the circuit maze's conductive strip during the journey; otherwise, the circuit will be connected, a buzzer on the speaker module will sound, and the game will fail. Based on the circuit maze module and a matching control circuit, a circuit maze can be assembled and played, allowing children to experience circuit assembly, learn circuit principles, and enjoy a circuit maze game, enhancing their learning interest. Furthermore, using this toy will not result in electric shock, effectively solving the problems in the background technology.
[0004] To achieve the above objectives, this utility model provides the following technical solution: a circuit maze assembly electronic toy, including an assembly base plate. The base plate is provided with base plate buckles arranged in a rectangular array. The base plate is engaged with the female buckle at the bottom of a circuit maze controller module via the base plate buckles. The positive terminal buckle on the circuit maze controller module is engaged with the conductive female buckle at one end of a two-node conductive block strip. The conductive female buckle at the other end of the two-node conductive block strip is engaged with the fourth conductive buckle from left to right on a seven-node conductive block strip. The conductive buckle at the top right end of the seven-node conductive block strip is engaged with the conductive female buckle at the bottom of one end of a switch block strip. The conductive female buckle at the bottom of the other end of the wooden strip is engaged with the positive conductive female buckle on the battery box. The negative conductive female buckle on the battery box is engaged with the conductive female buckle at the bottom right end of the three-node conductive building block strip two. The conductive female buckle at the bottom left end of the three-node conductive building block strip two is engaged with the conductive female buckle at the top right end of the six-node conductive building block strip. The fifth conductive female buckle from the left on the six-node conductive building block strip is engaged with the conductive female buckle at the bottom of one end of the two-node conductive building block strip three. The conductive female buckle at the bottom of the other end of the two-node conductive building block strip three is engaged with the negative port female buckle on the circuit maze controller module. The maze port female buckle on the circuit maze controller module is connected to the maze toy assembly.
[0005] The circuit maze control circuit board is packaged into a circuit maze controller module. The circuit maze controller module has the same assembly interface structure as other circuit modules. Starting from the middle left side and moving clockwise along the edge of the circuit maze controller module, the following sub-buttons are arranged: colored light and sound effect port, level music port, difficulty port, light port, positive terminal port, speaker port, negative terminal port, time port, mode start port, and maze port. These sub-buttons are the assembly interfaces, which facilitate the assembly with other modules to form a complete circuit. The switch block is used to control the battery box to power the circuit maze controller module. The battery box contains four batteries. The seven-node conductive block, the two-node conductive block one, and the switch block work together to connect the positive terminal of the battery box to the positive terminal of the circuit maze controller module. The three-node conductive block two and the two-node conductive block three work together to connect the negative terminal of the battery box to the negative terminal of the circuit maze controller module.
[0006] Furthermore, the maze toy assembly includes a first conductive clip, a cable, a second conductive clip, an insulated game stick, and a conductive ring. The maze port sub-clip on the circuit maze controller module engages with the first conductive clip. The first conductive clip is connected to the second conductive clip via a cable. The insulated game stick contains a conductive post, one end of which is connected to a conductive ring with an opening. The other end of the conductive post engages with the second conductive clip via a conductive post sub-clip. The insulated game stick serves as a handheld component, controlling the movement of the conductive post and conductive ring. The first conductive clip, cable, and second conductive clip connect the conductive post and conductive ring to the maze port sub-clip on the circuit maze controller module in a splicing manner.
[0007] Furthermore, the maze toy assembly also includes a circuit maze installation module, a two-node conductive block strip, and a circuit maze conductive strip. Two circuit maze installation modules are connected to the bottom of each end of the conductive strip. The conductive female buckles at the bottom of the two circuit maze installation modules are respectively engaged with the corresponding bottom plate buckles on the assembly base. The top left buckle of the six-node conductive block strip is engaged with the conductive female buckle at the bottom of one end of the two-node conductive block strip. The conductive female buckle at the bottom of the other end of the two-node conductive block strip is engaged with the conductive female buckle on one of the circuit maze installation modules. The two circuit maze installation modules are mounted on the assembly base using the bottom plate buckles, and the two circuit maze installation modules support and fix the circuit maze conductive strip.
[0008] Furthermore, it also includes a three-node conductive building block strip and a speaker module. The speaker port buckle on the circuit maze controller module is engaged with the conductive female buckle at the bottom left end of the speaker module. The conductive female buckle at the bottom right end of the speaker module is engaged with the conductive female buckle at the top front end of the three-node conductive building block strip. The conductive female buckle at the bottom rear end of the three-node conductive building block strip is engaged with the sixth conductive female buckle from left to right on the seven-node conductive building block strip.
[0009] The speaker module is connected to the positive terminal of the circuit maze controller module via a three-node conductive block strip and a seven-node conductive block strip. A buzzer is installed on the speaker module.
[0010] When using, hold the insulated game stick. The insulated game stick has a conductive ring at the end with an opening. The circuit maze conductive strip is a part with a tortuous path. Put the conductive ring through the opening and put it on the circuit maze conductive strip. Start from the starting point and walk along the path to the end point. The conductive ring must not touch the circuit maze conductive strip during the process. Otherwise, the circuit between the circuit maze controller module and the speaker module will be connected, the buzzer on the speaker module will sound, and the game will fail.
[0011] Furthermore, it also includes a level-clearing music key module. The level-clearing music port on the circuit maze controller module is engaged with a conductive female buckle at the bottom of one end of the level-clearing music key module, and the conductive female buckle at the bottom of the other end of the level-clearing music key module is engaged with a conductive female buckle at the top left end of the seven-node conductive block strip. The level-clearing music key module is used to control which music is played when passing through a level.
[0012] Furthermore, it also includes a time control key module. The time port sub-button on the circuit maze controller module engages with the conductive female buckle at the bottom of one end of the time control key module, and the conductive female buckle at the bottom of the other end of the time control key module engages with the fourth conductive sub-button from the left on the six-node conductive block strip. The time control key module is used to control the time required to pass the level; if the timeout is exceeded, the level is considered a failure.
[0013] Furthermore, it also includes a mode start control key module. The mode start port on the circuit maze controller module is engaged with the conductive female buckle at the bottom of one end of the mode start control key module. The conductive female buckle at the bottom of the other end of the mode start control key module is engaged with the third conductive female buckle from the left on the six-node conductive block strip. The mode start control key module is used to control the start and stop of the game.
[0014] Compared with existing technologies, the advantages of this circuit maze assembly electronic toy are: 1. Hold an insulated game stick with a conductive ring at the end. The conductive ring has an opening. The circuit maze's conductive strips are parts with a winding path. Place the conductive ring over the path of the circuit maze's conductive strips and walk from the starting point to the end. The conductive ring must not touch the circuit maze's conductive strips during the game; otherwise, the circuit will be completed, the buzzer on the speaker module will sound, and the game will be lost. 2. Based on the circuit maze module and equipped with control circuit, it can be used to assemble circuit mazes and play circuit maze games. This allows children to experience circuit assembly, learn circuit principles, and play circuit maze games, which can enhance their learning interest. The conductive pillars are wrapped with insulated game sticks, so there will be no electric shock when using the toy. Attached Figure Description
[0015] Figure 1 This is a schematic diagram of the structure of this utility model; Figure 2 This is a schematic diagram of the circuit labyrinth conductive strip structure in this utility model; Figure 3 This is a schematic diagram of the circuit maze controller module in this utility model; In the diagram: 1. Assembly base plate; 2. Base plate clips; 3. Music key module for level completion; 4. Difficulty control key module; 5. Seven-node conductive block strip; 6. Two-node conductive block strip (I); 7. Three-node conductive block strip (I); 8. Switch block strip; 9. Battery box; 10. Speaker module; 11. Circuit maze controller module; 12. Display screen; 13. Conductive clip (I); 14. Cable; 15. Conductive clip (II); 16. Insulated game stick; 17. Conductive ring; 18. Circuit maze installation module; 19. Two-node conductive block strip (II); 20. Circuit maze conductive strip. 21 Six-node conductive building block strip, 22 Three-node conductive building block strip II, 23 Two-node conductive building block strip III, 24 Time control key module, 25 Mode start control key module, 26 Weight reduction hole, 110 Color light sound effect port clip, 111 Level completion music port clip, 112 Difficulty port clip, 113 Light port clip, 114 Positive port clip, 115 Speaker port clip, 116 Negative port clip, 117 Time port clip, 118 Mode start port clip, 119 Maze port clip. Detailed Implementation
[0016] 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.
[0017] Example 1, please refer to Figures 1 to 3This utility model provides a technical solution: a circuit maze assembly electronic toy, including an assembly base plate 1, on which base plate buckles 2 are arranged in a rectangular array, and weight-reducing holes 26 are formed in a rectangular array on the assembly base plate 1 to reduce the weight of the assembly base plate 1 and save materials. Both the assembly base plate 1 and the base plate buckles 2 are made of insulating plastic, preventing short circuits in the components assembled on the upper side. The assembly base plate 1 is engaged with the female buckle at the bottom of the circuit maze controller module 11 via the base plate buckles 2. The maze controller module 11 is equipped with a display screen 12 to display the completion time. The positive terminal buckle 114 on the circuit maze controller module 11 is engaged with the conductive female buckle at the bottom of one end of the two-node conductive block strip 6. The conductive female buckle at the bottom of the other end of the two-node conductive block strip 6 is engaged with the fourth conductive female buckle from the left on the seven-node conductive block strip 5. Each conductive female buckle at the bottom of the seven-node conductive block strip 5 is engaged with the corresponding base plate buckle 2 on the assembly base plate 1. The conductive snap fastener at the top right end engages with the conductive female snap fastener at the bottom of one end of the switch block 8. The conductive female snap fastener at the bottom of the other end of the switch block 8 engages with the positive conductive snap fastener on the battery box 9. The female snap fastener at the bottom of the battery box 9 engages with the corresponding bottom plate snap fastener 2 on the assembly base plate 1. The negative conductive snap fastener on the battery box 9 engages with the conductive female snap fastener at the bottom right end of the three-node conductive block 22. The conductive female snap fastener at the bottom left end of the three-node conductive block 22 engages with the conductive snap fastener at the top right end of the six-node conductive block 21. The conductive female buckle at the bottom of the six-node conductive building block strip 21 is snapped into the corresponding base plate buckle 2 on the assembly base plate 1. The fifth conductive female buckle from the left on the six-node conductive building block strip 21 is snapped into the conductive female buckle at the bottom of one end of the two-node conductive building block strip 23. The conductive female buckle at the bottom of the other end of the two-node conductive building block strip 23 is snapped into the negative terminal buckle 116 on the circuit maze controller module 11. The maze port buckle 119 on the circuit maze controller module 11 is connected to the maze toy assembly.
[0018] The maze toy assembly includes conductive clip 13, cable 14, conductive clip 2 15, insulated play stick 16, and conductive ring 17. The maze port sub-clamp 119 on the circuit maze controller module 11 engages with conductive clip 13. Conductive clip 13 is connected to conductive clip 2 15 via cable 14. The insulated play stick 16 contains a conductive post, one end of which is connected to the conductive ring 17. The conductive ring 17 has an opening, and the other end of the conductive post engages with conductive clip 2 15 via a conductive post sub-clamp. The insulated play stick 16 serves as a handheld component, controlling the movement of the conductive post and conductive ring 17. Conductive clip 13, cable 14, and conductive clip 2 15 are connected to the maze port sub-clamp 119 on the circuit maze controller module 11 in a splicing manner.
[0019] The maze toy assembly also includes a circuit maze mounting module 18, two-node conductive building block strips 19, and a circuit maze conductive strip 20. Two circuit maze mounting modules 18 are connected to the bottom of each end of the conductive strip 20. The conductive female buckles at the bottom of the two circuit maze mounting modules 18 are respectively engaged with the corresponding base plate buckles 2 on the assembly base plate 1. The top left buckle of the six-node conductive building block strip 21 is engaged with the conductive female buckle at the bottom of one end of the two-node conductive building block strip 19, and the conductive female buckle at the bottom of the other end of the two-node conductive building block strip 19 is engaged with the conductive female buckle on one of the circuit maze mounting modules 18. The two circuit maze mounting modules 18 are mounted on the assembly base plate 1 using the base plate buckles 2, and the two circuit maze mounting modules 18 support and fix the circuit maze conductive strip 20.
[0020] It also includes a three-node conductive building block strip 7 and a speaker module 10. The speaker port buckle 115 on the circuit maze controller module 11 is engaged with the conductive female buckle at the bottom left end of the speaker module 10. The conductive female buckle at the bottom right end of the speaker module 10 is engaged with the conductive female buckle at the top front end of the three-node conductive building block strip 7. The conductive female buckle at the bottom rear end of the three-node conductive building block strip 7 is engaged with the sixth conductive female buckle from left to right on the seven-node conductive building block strip 5.
[0021] The speaker module 10 is connected to the positive terminal of the circuit maze controller module 11 via a three-node conductive block strip 7 and a seven-node conductive block strip 5. A buzzer is installed on the speaker module 10.
[0022] When using, hold the insulated game stick 16. The end of the insulated game stick 16 has a conductive ring 17 with an opening. The circuit maze conductive strip 20 is a part with a tortuous path. Put the conductive ring 17 through the opening and put it over the circuit maze conductive strip 20. Start from the starting point and walk along the path to the end point. The conductive ring 17 must not touch the circuit maze conductive strip 20 during the process. Otherwise, the circuit between the circuit maze controller module 11 and the speaker module 10 will be connected, the buzzer on the speaker module 10 will sound, and the game will fail.
[0023] The circuit maze control circuit board is packaged into a circuit maze controller module 11. The circuit maze controller module 11 has the same assembly interface as other circuit modules. Starting from the middle left side and proceeding clockwise along the edge of the circuit maze controller module 11, the following are arranged sequentially: colored light and sound effect port 110, level-clearing music port 111, difficulty port 112, light port 113, positive terminal port 114, speaker port 115, negative terminal port 116, time port 117, and mode start terminal. The snap-on 118 and the maze port snap-on 119 are the assembly interfaces, which facilitate the assembly with other modules to form the entire circuit. The switch block 8 is used to control the battery box 9 to supply power to the circuit maze controller module 11. The battery box 9 contains four batteries. The seven-node conductive block 5, the two-node conductive block 1 6 and the switch block 8 work together to connect the positive terminal of the battery box 9 to the positive terminal of the circuit maze controller module 11. The three-node conductive block 2 22 and the two-node conductive block 3 23 work together to connect the negative terminal of the battery box 9 to the negative terminal of the circuit maze controller module 11.
[0024] Example 2, please refer to Figures 1 to 3 This utility model provides a technical solution: a circuit maze assembly electronic toy. This embodiment is structurally similar to Embodiment 1, with the difference being: It also includes a music key module 3 for level completion, a time control key module 24, a mode start control key module 25, and a difficulty control key module 4.
[0025] The music port 111 on the circuit maze controller module 11 is engaged with the conductive female buckle at the bottom of one end of the music key module 3. The conductive female buckle at the bottom of the other end of the music key module 3 is engaged with the conductive female buckle at the top left end of the seven-node conductive block strip 5. The music key module 3 is used to control what music is played when passing a level.
[0026] The time port sub-button 117 on the circuit maze controller module 11 engages with the conductive female button at the bottom of one end of the time control key module 24. The conductive female button at the bottom of the other end of the time control key module 24 engages with the fourth conductive sub-button from the left on the six-node conductive block strip 21. The time control key module 24 is used to control the time required to pass the level; if the timeout is exceeded, the level is considered a failure.
[0027] The mode start port sub-button 118 on the circuit maze controller module 11 is engaged with the conductive female button at the bottom of one end of the mode start control key module 25. The conductive female button at the bottom of the other end of the mode start control key module 25 is engaged with the third conductive sub-button from the left on the six-node conductive block strip 21. The mode start control key module 25 is used to control the start and stop of the game.
[0028] The difficulty port sub-button 112 on the circuit maze controller module 11 is engaged with the conductive female buckle at the bottom front of the difficulty control key module 4. The conductive female buckle at the bottom rear of the difficulty control key module 4 is engaged with the second conductive sub-button from the left on the seven-node conductive block strip 5. The difficulty control key module 4 is used to control the difficulty level of the game. For example, the buzzer on the speaker module 10 will be triggered only when the conductive ring 17 and the circuit maze conductive strip 20 come into contact more than once. At this time, the difficulty is reduced. The difficulty can also be changed in other ways, such as shortening the completion time. If the time is exceeded, the game will fail. When the function of changing the completion time overlaps with that of the time control key module 24, either the time control key module 24 or the difficulty control key module 4 can be installed.
[0029] It is worth noting that each node on each conductive block is equipped with a conductive female buckle and a conductive male buckle, and the conductive female buckle and the conductive male buckle of each node are connected by wires.
[0030] 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.
[0031] 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 circuit maze assembly electronic 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 assembly base plate (1) is connected to the female buckle at the bottom of the circuit maze controller module (11) via the base plate buckle (2). The positive port buckle (114) on the circuit maze controller module (11) is connected to the conductive female buckle at the bottom of one end of the two-node conductive block strip (6). The conductive female buckle at the bottom of the other end of the two-node conductive block strip (6) is connected to the fourth conductive buckle from left to right on the seven-node conductive block strip (5). The conductive female buckle at the top right end of the seven-node conductive block strip (5) is connected to the conductive female buckle at the bottom of one end of the switch block strip (8). The conductive female buckle at the bottom of the other end of the switch block strip (8) is connected to the positive conductive female buckle on the battery box (9). The negative conductive buckle on the circuit maze controller module (11) is engaged with the conductive female buckle at the bottom right end of the three-node conductive block strip (22). The conductive female buckle at the bottom left end of the three-node conductive block strip (22) is engaged with the conductive buckle at the top right end of the six-node conductive block strip (21). The fifth conductive buckle from left to right on the six-node conductive block strip (21) is engaged with the conductive female buckle at the bottom of one end of the two-node conductive block strip (23). The conductive female buckle at the bottom of the other end of the two-node conductive block strip (23) is engaged with the negative port buckle (116) on the circuit maze controller module (11). The maze port buckle (119) on the circuit maze controller module (11) is connected to the maze toy assembly.
2. The circuit maze assembly electronic toy according to claim 1, characterized in that: The maze toy assembly includes an insulated game stick (16) and a conductive ring (17). The maze port buckle (119) on the circuit maze controller module (11) is engaged with conductive buckle one (13). Conductive buckle one (13) is connected to conductive buckle two (15) via cable (14). A conductive post is provided inside the insulated game stick (16). One end of the conductive post is connected to the conductive ring (17). An opening is provided on the conductive ring (17). The other end of the conductive post is engaged with conductive buckle two (15) via conductive post buckle.
3. The electronic toy for assembling a circuit maze according to claim 2, characterized in that: The maze toy assembly also includes a circuit maze installation module (18), a two-node conductive building block strip (19), and a circuit maze conductive strip (20). The bottom ends of the circuit maze conductive strip (20) are respectively connected to two circuit maze installation modules (18). The conductive female buckles at the bottom of the two circuit maze installation modules (18) are respectively engaged with the corresponding bottom plate buckles (2) on the assembly base plate (1). The top buckle at the left end of the six-node conductive building block strip (21) is engaged with the conductive female buckle at the bottom of one end of the two-node conductive building block strip (19). The conductive female buckle at the bottom of the other end of the two-node conductive building block strip (19) is engaged with the conductive female buckle on one of the circuit maze installation modules (18).
4. The electronic toy for assembling a circuit maze according to claim 1, characterized in that: It also includes a three-node conductive building block strip (7) and a speaker module (10). The speaker port buckle (115) on the circuit maze controller module (11) is engaged with the conductive female buckle at the bottom left end of the speaker module (10). The conductive female buckle at the bottom right end of the speaker module (10) is engaged with the conductive female buckle at the top front end of the three-node conductive building block strip (7). The conductive female buckle at the bottom rear end of the three-node conductive building block strip (7) is engaged with the sixth conductive female buckle from left to right on the seven-node conductive building block strip (5).
5. The circuit maze assembly electronic toy according to claim 1, characterized in that: It also includes a music key module (3), where the music port buckle (111) on the circuit maze controller module (11) is engaged with the conductive female buckle at the bottom of one end of the music key module (3), and the conductive female buckle at the bottom of the other end of the music key module (3) is engaged with the conductive female buckle at the top of the left end of the seven-node conductive block strip (5).
6. The electronic toy for assembling a circuit maze according to claim 1, characterized in that: It also includes a time control key module (24), where the time port sub-button (117) on the circuit maze controller module (11) is engaged with the conductive female button at the bottom of one end of the time control key module (24), and the conductive female button at the bottom of the other end of the time control key module (24) is engaged with the fourth conductive sub-button from left to right on the six-node conductive block strip (21).
7. The electronic toy for assembling a circuit maze according to claim 1, characterized in that: It also includes a mode start control key module (25), a mode start port sub-button (118) on the circuit maze controller module (11) and a conductive female button at the bottom of one end of the mode start control key module (25), and a conductive female button at the bottom of the other end of the mode start control key module (25) and a conductive female button at the third conductive sub-button from the left on the six-node conductive block strip (21).