Logic jointed board and jointed board assembly

By introducing light-emitting and light-and-sound components into the jigsaw puzzle game, combined with circuit control and detachable puzzle piece design, the problem of monotonous gameplay in existing jigsaw puzzle games is solved, achieving diverse visual and auditory effects and enhancing the game's fun and entertainment value.

CN224071116UActive Publication Date: 2026-04-03MODOU TECH (ZHONGSHAN) CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-28
Publication Date
2026-04-03

AI Technical Summary

Technical Problem

Existing jigsaw puzzle games have limited gameplay, high costs, poor visual and tactile effects, and lack diversity and fun.

Method used

A logic puzzle board was designed, which includes a light-emitting component and a control component. The light-emitting unit is controlled to turn on and off by coupling and disconnecting the light guide structure with the circuit board. Combined with the photoacoustic component, it provides visual and auditory effects. Various puzzle-solving methods can be realized through the detachable connection between the puzzle pieces and the logic puzzle board.

Benefits of technology

It enhances the visual and auditory effects of jigsaw puzzles, offers a variety of puzzle gameplay options, increases the fun and entertainment value of the game, and features a simple and practical structure that facilitates production and assembly.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a logic jointed board and a jointed board assembly. The logic jointed board comprises a shell assembly, a light-emitting assembly and a control assembly, the shell assembly comprises a face shell and a bottom shell, the face shell and the bottom shell define a containing cavity, and a plurality of through holes are formed in the face shell; the light-emitting assembly comprises a plurality of light-emitting units and a light guide structure, and at least part of the light guide structure is located in the through hole; light emitted by the light-emitting unit can be emitted out of the containing cavity through the light guide structure and the penetrating hole in sequence. The control assembly comprises a circuit board and a conductive element; when the light guide structure moves in the axial direction of the through hole under the action of external force, the conductive element and the circuit board are electrically coupled or disconnected, so that a circuit between the light emitting unit and the circuit board is connected or disconnected. According to the logic jigsaw and the jigsaw assembly, light can be emitted, a better visual effect is provided, various jigsaw playing methods are integrated, and the logic jigsaw and the jigsaw assembly are more interesting.
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Description

Technical Field

[0001] This application relates to the field of panel assembly structure technology, specifically to a logic panel and panel assembly. Background Technology

[0002] Jigsaw puzzles are a popular intellectual game with diverse puzzle layouts and varying levels of difficulty, making them endlessly entertaining. Most jigsaw puzzles today are made of cardboard, where a complete image is cut into different pieces, which users then assemble on the cardboard to restore the original image. Successful completion means the puzzle is correct.

[0003] However, this type of puzzle game only involves piecing together a single pattern. If you want to change the game or puzzle method, you need to change the puzzle toy, which is costly and has a limited gameplay. Moreover, this type of puzzle can only provide tactile feedback and train logic, and the tactile or visual stimulation effect on users is poor. Utility Model Content

[0004] To solve the above technical problems, it is necessary to provide a logic puzzle and puzzle components with multiple ways to play.

[0005] Firstly, this application provides a logic panel, including...

[0006] A housing assembly includes a front shell and a bottom shell connected to the front shell, the front shell and the bottom shell forming a receiving cavity, and the front shell having a plurality of through holes communicating with the receiving cavity;

[0007] A light-emitting component includes multiple light-emitting units and a light-guiding structure. At least a portion of the light-guiding structure is located in the through hole, and the light-emitting units are disposed in the receiving cavity. The light emitted by the light-emitting units can be emitted sequentially through the light-guiding structure and the through hole to the outside of the receiving cavity. The light-guiding structure can move along the axial direction of the through hole under the action of an external force.

[0008] A control component includes a circuit board and conductive elements. The circuit board is disposed in the receiving cavity and electrically connected to the light-emitting unit. The conductive elements are disposed on one side of the light-guiding structure located within the receiving cavity.

[0009] When the light guide structure moves along the axial direction of the through hole under the action of external force, the conductive element is electrically coupled or disconnected from the circuit board, so that the circuit between the light-emitting unit and the circuit board is connected or disconnected.

[0010] In some embodiments, the light-emitting unit is disposed on the side of the circuit board facing the through hole; the circuit board is provided with a first conductive unit and a second conductive unit, the first conductive unit is arranged around the periphery of the light-emitting unit, and the second conductive unit is arranged around the periphery of the first conductive unit and is insulated from the first conductive unit; the first conductive unit is electrically connected to one of the positive or negative terminals of the light-emitting unit, and the second conductive unit is electrically connected to the other of the positive or negative terminals of the light-emitting unit; both the first conductive unit and the second conductive unit are electrically connected to the circuit board; when the conductive element contacts the first conductive unit and the second conductive unit to achieve electrical coupling, the circuit between the light-emitting unit and the circuit board is turned on or off.

[0011] In some embodiments, an insulating gap is provided between the first conductive unit and the second conductive unit; the width of the conductive element is greater than the width of the insulating gap to cover and electrically couple the first conductive unit and the second conductive unit.

[0012] In some embodiments, the light guide structure includes a substrate and a trigger element disposed on the substrate. The substrate is disposed between the circuit board and the faceplate. The trigger element is disposed on the side of the substrate away from the circuit board. At least a portion of the trigger element is located in the through hole. The conductive element is disposed on the side of the trigger element facing the circuit board. The trigger element can move along the axial direction of the through hole under the action of an external force, so as to electrically couple or disconnect the conductive element from the circuit board, thereby making the circuit between the light-emitting unit and the circuit board conduct or disconnect.

[0013] In some embodiments, the trigger is a hollow columnar structure, and the trigger is disposed outside the light-emitting unit; the end of the trigger away from the substrate is provided with a light guide portion for guiding the light emitted by the light-emitting unit to the outside of the receiving cavity.

[0014] In some embodiments, the light guide structure further includes a deformable element that connects the trigger and the substrate, such that the trigger can move and reset along the axial direction of the through hole.

[0015] In some embodiments, the control component further includes a button passing through the housing and a battery disposed in the receiving cavity, both of which are electrically connected to the circuit board; the light guide structure is elastic.

[0016] In some embodiments, the logic panel further includes a photoacoustic component, which includes a speaker and a display screen, both of which are electrically connected to the circuit board; the bottom shell has a mounting position on the side facing the receiving cavity, the speaker is located at the mounting position, and the bottom shell also has a sound-emitting hole, which is provided corresponding to the mounting position; the display screen is located on the side of the front shell away from the bottom shell.

[0017] Secondly, this application also provides a panel assembly, including a logic panel as described above and at least one panel, wherein the panel is detachably connected to the logic panel.

[0018] In some embodiments, the sidewall of the through hole protrudes from the side of the front shell of the logic panel away from the bottom shell; one side of the panel is provided with an abutment member, which is used to abut the light guide structure so that the light guide structure can move along the axial direction of the through hole under the action of external force; a groove is provided between the abutment member and the panel, and the groove engages with the sidewall of the through hole to realize the detachable connection between the panel and the logic panel.

[0019] Compared to existing technologies, the logic puzzle provided in this application includes a light-emitting component and a control component, enabling the logic puzzle to emit light and provide a better visual effect. By setting up a circuit board, multiple puzzle-solving methods can be combined, allowing the logic puzzle to integrate various puzzle patterns. The light-emitting component provides guidance, making the product more engaging. The coupling and disconnection of the light guide structure with the circuit board controls the opening and closing of the light-emitting unit, providing guidance during puzzle solving. The correctness of the puzzle can be confirmed by the lighting and closing of the light-emitting unit, making entertainment and training more fun. The coupling of the first conductive unit, the second conductive unit, and conductive elements enables circuit conduction and disconnection, resulting in a simple and practical structure that facilitates production and assembly. The photoacoustic component provides visual and auditory effects, offering users a multi-faceted tactile experience and enhancing the puzzle's enjoyment. The puzzle assembly uses a snap-fit ​​connection between the puzzle pieces and the logic puzzle to achieve a detachable connection, resulting in a simple and practical structure. Attached Figure Description

[0020] To more clearly illustrate the technical solutions in the embodiments of this application or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only embodiments of this application. For those skilled in the art, other drawings can be obtained based on the provided drawings without creative effort.

[0021] Figure 1 This is a perspective view of the panel assembly according to an embodiment of this application;

[0022] Figure 2 This is a perspective view of the panel assembly shown in the embodiment of this application from another angle;

[0023] Figure 3 yes Figure 1 A 3D view of the logic panel shown;

[0024] Figure 4 yes Figure 1 A 3D view of the logic panel shown from another angle;

[0025] Figure 5 yes Figure 3 An exploded view of the logic panel shown;

[0026] Figure 6 yes Figure 3 An exploded view of the logic panel shown from another angle;

[0027] Figure 7 yes Figure 5 Enlarged view of point A on the circuit board of the logic panel shown;

[0028] Figure 8 yes Figure 6 Enlarged view of point B of the light guide structure of the logic panel shown;

[0029] Figure 9 yes Figure 1 The diagram shows the initial state of one way to play the puzzle components.

[0030] Figure 10 yes Figure 9 The diagram shows the assembly state of the puzzle components for gameplay.

[0031] Figure 11 yes Figure 9 The diagram shows the completed assembly state of the puzzle components, illustrating the gameplay.

[0032] Figure 12 yes Figure 1 The diagram shows the initial state of the puzzle components in another way of playing the game;

[0033] Figure 13 yes Figure 12 The diagram shows the assembly state of the puzzle components for gameplay.

[0034] Figure 14 yes Figure 12 The diagram shows the completed assembly state of the puzzle components.

[0035] Explanation of reference numerals in the attached figures:

[0036] 100. Panel assembly;

[0037] 1. Logic panel; 11. Housing assembly; 12. Light-emitting assembly; 13. Control assembly; 14. Optical and acoustic assembly; 11a. Receiving cavity; 11b. Through hole; 11c. Speaker hole; 111. Front shell; 112. Bottom shell; 113. Mounting position; 121. Light-emitting unit; 122. Light guide structure; 123. Substrate; 124. Trigger element; 125. Deformation element; 1241. Light guide section; 131. Circuit board; 132. Conductive element; 133. Button; 134. Battery; 135. First conductive unit; 136. Second conductive unit; 137. Insulation gap; 1331. Power button; 1332. Selection button; 141. Speaker; 142. Display screen; 2. Panel; 21. Abutting element; 22. Groove. Detailed Implementation

[0038] The technical solutions of the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this application, and not all embodiments. Based on the embodiments of this application, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this application.

[0039] To make the above-mentioned objectives, features and advantages of this application more apparent and understandable, the application will be further described in detail below with reference to the accompanying drawings and specific embodiments.

[0040] To enable those skilled in the art to better understand the present application, the technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present application, and not all embodiments. Based on the embodiments in the present application, all other embodiments obtained by those of ordinary skill in the art without creative effort should fall within the scope of protection of the present application.

[0041] The terms "first," "second," and "third," etc., in the specification, claims, and accompanying drawings of this application are used to distinguish different objects and not to describe a specific order. Furthermore, the term "comprising" and any variations thereof are intended to cover non-exclusive inclusion. For example, a process, method, system, product, or apparatus that comprises a series of steps or units is not limited to the listed steps or units, but may optionally include steps or units not listed, or may optionally include other steps or units inherent to these processes, methods, products, or apparatuses.

[0042] Please see Figure 1 and Figure 2This application provides a jigsaw puzzle component 100 for jigsaw puzzle games. The jigsaw puzzle component 100 includes a logic puzzle board 1 and at least one puzzle piece 2, the puzzle piece 2 being detachably connected to the logic puzzle board 1. Specifically, there are multiple puzzle pieces 2, and these pieces can have the same shape or different shapes, such as display surfaces with rectangles, squares, circles, etc., of different sizes, or other shapes, allowing different puzzle pieces 2 to be pieced together on the logic puzzle board 1 to form different shapes, thereby enhancing the game's playability. In this embodiment, the jigsaw puzzle component 100 integrates multiple puzzle patterns and sets different difficulty levels, allowing users to choose different difficulty levels for puzzle entertainment, thus improving the game's entertainment value.

[0043] Please see Figure 3 and Figure 4 , Figure 3 and Figure 4 The diagram shows perspective views of the logic puzzle 1 in the puzzle assembly 100 from different angles. In this embodiment, the front of the logic puzzle 1 has a generally square structure, which provides a larger game area for assembling the puzzle pieces 2.

[0044] Please see Figure 5 and Figure 6An exploded view of a logic panel 1 is shown. The logic panel 1 includes a housing assembly 11, a light-emitting assembly 12, a control assembly 13, and a photoacoustic assembly 14. The housing assembly 11 includes a front shell 111 and a bottom shell 112 connected to the front shell 111. The front shell 111 and the bottom shell 112 enclose a receiving cavity 11a. The front shell 111 has multiple through holes 11b communicating with the receiving cavity 11a. The light-emitting assembly 12 includes multiple light-emitting units 121 and a light-guiding structure 122. At least a portion of the light-guiding structure 122 is located in the through holes 11b. The light-emitting units 121 are located in the receiving cavity 11a. Light emitted from the light-emitting units 121 can sequentially pass through the light-guiding structure 122 and the through holes 11b to exit the receiving cavity 11a. The light-guiding structure 122 can move along the axial direction of the through holes 11b under external force. The photoacoustic assembly 13 includes a circuit board 131 and a conductive element 132. The circuit board 131 is disposed in the receiving cavity 11a and electrically connected to the light-emitting unit 121. The conductive element 132 is disposed on one side of the light guide structure 122 located in the receiving cavity 11a. The photoacoustic assembly 14 includes a speaker 141 and a display screen 142. Both the speaker 141 and the display screen 142 are electrically connected to the circuit board 131. The bottom shell 112 has a mounting position 113 on the side facing the receiving cavity 11a. The speaker 141 is disposed in the mounting position 113. The bottom shell 112 also has a sound-emitting hole 11c, which is disposed corresponding to the mounting position 113. The display screen 142 is disposed on the side of the front shell 111 away from the bottom shell 112. The display screen 142 is used to display preset information or other information such as scores or time.

[0045] In this embodiment, when the light guide structure 122 can move along the axial direction of the through hole 11b under the action of external force, the conductive element 132 is electrically coupled or disconnected from the circuit board 131, so that the circuit between the light-emitting unit 121 and the circuit board 131 is connected or disconnected.

[0046] When the conductive element 132 is electrically coupled to the circuit board 131, the circuit between the light-emitting unit 121 and the circuit board 131 is either connected or disconnected; when the conductive element 132 is disconnected from the circuit board 131, the circuit between the light-emitting unit 121 and the circuit board 131 can also be either connected or disconnected. In this embodiment, there are two modes for the light-emitting unit 121 to light up and turn off: one is to directly control the light-emitting unit 121 to light up and turn off through the circuit board 131; the other is to achieve the light-emitting unit 121 to light up and turn off through the electrical coupling or disconnection of the conductive element 132 and the circuit board 131. For example, if initially the circuit board 131 is selected to control the light-emitting unit 121 to light up, and then the conductive element 132 is electrically coupled to the circuit board 131, the light-emitting unit 121 will turn off; if initially the circuit board 131 is selected to control the light-emitting unit 121 to turn off, and then the conductive element 132 is electrically coupled to the circuit board 131, the light-emitting unit 121 will light up. The specific light-emitting and extinguishing modes of the light-emitting unit 121 are determined by the game mode. Different game modes allow the light-emitting unit 121 to choose different implementation methods for light-emitting and extinguishing.

[0047] For example, in one mode, when the panel 2 is assembled on the logic panel 1, the panel 2 abuts against the light guide structure 122, causing the light guide structure 122 to move along the through hole 11b into the receiving cavity 11a, so that the conductive element 132 is electrically coupled to the circuit board 131, thereby making the circuit between the light-emitting unit 121 and the circuit board 131 conductive, and the light-emitting unit 121 emits light. The light passes through the light guide structure 122 and the through hole 11b, thus being exposed to the outside and observed by the user. When the panel 2 is held on the logic panel 1, the light-emitting unit 121 remains lit. When the panel 2 is removed from the logic panel 1, the light guide structure 122 resets under its own elastic force, that is, moves along the through hole 11b in the axial direction away from the receiving cavity 11a, thereby disconnecting the conductive element 132 from the circuit board 131, so that the circuit between the light-emitting unit 121 and the circuit board 131 is disconnected, thereby turning off the light-emitting unit 121 and ceasing to emit light. In this embodiment, the light-emitting unit 121 is an LED lamp bead.

[0048] In another mode, initially, the light-emitting element emits light. When the panel 2 is assembled onto the logic panel 1, the panel 2 abuts against the light-guiding structure 122, causing the light-guiding structure 122 to move along the through hole 11b into the receiving cavity 11a. This causes the conductive element 132 to be electrically coupled to the circuit board 131, thus disconnecting or short-circuiting the circuit between the light-emitting unit 121 and the circuit board 131, and turning off the light-emitting unit 121. When the panel 2 remains on the logic panel 1, the light-emitting unit 121 remains off. When the panel 2 is removed from the logic panel 1, the light-guiding structure 122 resets under its own elastic force, that is, it moves along the through hole 11b in the axial direction away from the receiving cavity 11a, thus disconnecting the conductive element 132 from the circuit board 131, thereby making the circuit between the light-emitting unit 121 and the circuit board 131 conductive, and causing the light-emitting unit 121 to emit light.

[0049] Specifically, to achieve the aforementioned electrical connection design between the light-emitting unit 121 and the circuit board 131, the light-emitting unit 121 is disposed on the side of the circuit board 131 facing the through hole 11b. Please refer to... Figure 7 The circuit board 131 is provided with a first conductive unit 135 and a second conductive unit 136. The first conductive unit 135 is arranged around the light-emitting unit 121, and the second conductive unit 136 is arranged around the first conductive unit 135 and insulated from it. The first conductive unit 135 is electrically connected to one of the positive or negative terminals of the light-emitting unit 121, and the second conductive unit 136 is electrically connected to the other of the positive or negative terminals of the light-emitting unit 121. Both the first conductive unit 135 and the second conductive unit 136 are electrically connected to the circuit board 131. When the conductive element 132 contacts the first conductive unit 135 and the second conductive unit 136 to achieve electrical coupling, the circuit between the light-emitting unit 121 and the circuit board 131 is either connected or disconnected. In this embodiment, both the first conductive unit 135 and the second conductive unit 136 are conductive paths formed by conductive metal on the circuit board 131. For example, both the first conductive unit 135 and the second conductive unit 136 are made of copper foil, with gold or tin plating on the surface to prevent oxidation.

[0050] In this embodiment, the number of light-emitting units 121 corresponds one-to-one with the number of through holes 11b, the number of first conductive units 135 and second conductive units 136 corresponds one-to-one with the number of light-emitting units 121, and the number of conductive elements 132 also corresponds one-to-one with the number of light-emitting units 121.

[0051] To achieve electrical isolation between the first conductive unit 135 and the second conductive unit 136, an insulating gap 137 is provided between them. The width of the conductive element 132 is greater than the width of the insulating gap 137 to cover and electrically couple the first conductive unit 135 and the second conductive unit 136. Specifically, the width of the insulating gap 137 is greater than or equal to 0.5 mm, that is, the distance between the first conductive unit 135 and the second conductive unit 136 is greater than or equal to 0.5 mm, to prevent mis-conduction in a non-triggered state. The width of the conductive element 132 is greater than or equal to 1 mm, thereby covering the insulating gap 137 and conducting the first conductive unit 135 and the second conductive unit 136. In one embodiment, the light-emitting unit 121 has positive and negative electrodes. The positive electrode of the light-emitting unit 121 is connected to the first conductive unit 135 through a wire on the circuit board 131, and the negative electrode of the light-emitting unit 121 is connected to the second conductive unit 136 through a wire on the circuit board 131.

[0052] In this embodiment, the light guide structure 122 includes a substrate 123 and a trigger 124 disposed on the substrate 123. The substrate 123 is disposed between the circuit board 131 and the faceplate 111. The trigger 124 is disposed on the side of the substrate 123 away from the circuit board 131, and at least a portion of the trigger 124 is located in the through hole 11b. The conductive element 132 is disposed on the side of the trigger 124 facing the circuit board 131. Under the action of external force, the trigger 124 can move along the axial direction of the through hole 11b, realizing the electrical coupling or disconnection of the conductive element 132 and the circuit board 131, so that the circuit between the light-emitting unit 121 and the circuit board 131 is connected or disconnected. Specifically, in this embodiment, the light guide structure 122 is a silicone part with a certain elasticity, which can undergo a certain displacement or deformation under the action of external force, and can automatically reset after the external force disappears. In this embodiment, the conductive element 132 is a conductive coating, which is coated on the side of the trigger 124 facing the circuit board 131.

[0053] To ensure better transmission of light emitted from the light-emitting unit 121 through the light guide structure 122, the trigger 124 has a hollow columnar structure and is positioned over the light-emitting unit 121. A light guide portion 1241 is provided at the end of the trigger 124 away from the substrate 123 to guide the light emitted from the light-emitting unit 121 to the outside of the receiving cavity 11a. It can be understood that the light guide portion 1241 is located within the through hole 11b, allowing the light from the light-emitting unit 121 to be transmitted through the light guide portion 1241.

[0054] Please see Figure 8To enable the movement of the trigger 124, the light guide structure 122 further includes a deformable element 125. The deformable element 125 connects the trigger 124 and the substrate 123, allowing the trigger 124 to move and reset along the axial direction of the through hole 11b. Specifically, the two ends of the deformable element 125 are respectively connected to the trigger 124 and the substrate 123, thereby enabling the trigger 124 to move and reset relative to the substrate 123 along the axial direction of the through hole 11b under the action of external force.

[0055] In this embodiment, the sidewall of the through hole 11b protrudes from the side of the front shell 111 of the logic panel 1 away from the bottom shell 112; one side of the panel 2 is provided with an abutment 21, which abuts against the light guide structure 122, so that the light guide structure 122 can move along the axial direction of the through hole 11b under the action of external force; a groove 22 is provided between the abutment 21 and the panel 2, and the groove 22 engages with the sidewall of the through hole 11b to realize the detachable connection between the panel 2 and the logic panel 1. In other embodiments, the panel 2 can be detachably connected to the logic panel 1 using other detachable methods such as magnetic attraction.

[0056] To facilitate adjusting the difficulty of the jigsaw puzzle game levels or making selection confirmations, the control component 13 also includes a button 133 passing through the faceplate 111 and a battery 134 disposed in the receiving cavity 11a. Both the battery 134 and the button 133 are electrically connected to the circuit board 131; the light guide structure 122 is elastic. The battery 134 makes the jigsaw puzzle assembly 100 easy to carry and use. The button 133 includes a power button 1331 and a selection button 1332. The power button 1331 can be used for powering on / off and confirmation, distinguished by a long press or short press. The selection button 1332 allows selection of game levels via a short press, and the preset level information is displayed on the display screen 142. The button 133 may also include volume buttons to adjust the volume of the speaker 141.

[0057] The puzzle assembly 100 provided in this embodiment integrates multiple game modes on the circuit board 131, such as free mode, adventure mode, challenge mode, etc. After selecting one of the game modes by using the left and right buttons 133, the power button 1331 is used to confirm and then enter the game mode.

[0058] Please see Figures 9 to 11The diagram illustrates the assembly steps of the puzzle component 100 in one gameplay mode. In the free mode, 88 levels are preset, ranging from easy to difficult, and users can select different levels. When a level is selected, some LED beads in the through holes 11b light up. The user needs to select different puzzle pieces 2 based on the lit LED beads to assemble the lit parts, causing the abutment 21 inside the puzzle piece 2 to abut the trigger 124, turning off the LED beads. Then, the remaining puzzle pieces 2 are assembled onto the remaining through holes 11b. After all pieces are assembled, the control component 13 determines that the assembly is correct, then controls all LED beads to light up and controls the speaker 141 to emit music to indicate that the level is passed, thus proceeding to the next level.

[0059] Please see Figures 12 to 14 The diagram illustrates the assembly steps of the puzzle component 100 in one gameplay mode. In the challenge mode, there are 88 preset levels, ranging from easy to difficult. Users can only progress from level 1 to level 88. When the game reaches a level, some LED beads in the through holes 11b light up. The user needs to select different puzzle pieces 2 based on the lit LED beads to assemble the lit parts, causing the abutment 21 inside the puzzle piece 2 to abut the trigger 124, turning off the LED beads. Then, the remaining puzzle pieces 2 are assembled onto the remaining through holes 11b. Once all pieces are assembled, the control component 13 determines that the assembly is correct, then controls all LED beads to light up and controls the speaker 141 to emit music to indicate that the level is passed, thus proceeding to the next level.

[0060] The above-described embodiments are only used to illustrate the technical solutions of this application, and are not intended to limit it. Although this application has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some of the technical features. Such modifications or substitutions do not cause the essence of the corresponding technical solutions to deviate from the scope of the technical solutions of the embodiments of this application.

Claims

1. A logic tile, characterized by, Comprising A shell assembly comprising a face shell and a bottom shell connected with the face shell, the face shell and the bottom shell enclosing a containing cavity, the face shell being provided with a plurality of through holes communicating with the containing cavity; A light emitting assembly comprising a plurality of light emitting units and a light guide structure, at least part of the light guide structure being located in the through hole, the light emitting units being arranged in the containing cavity; the light emitted by the light emitting units can be sequentially emitted to the outside of the containing cavity through the light guide structure and the through hole; the light guide structure can move along the axial direction of the through hole under the action of an external force; A control assembly comprising a circuit board and a conductive element, the circuit board being arranged in the containing cavity and electrically connected with the light emitting units, the conductive element being arranged on the side of the light guide structure located in the containing cavity; wherein When the light guide structure moves along the axial direction of the through hole under the action of an external force, the conductive element and the circuit board are electrically coupled or disconnected, so that the circuit between the light emitting units and the circuit board is turned on or disconnected.

2. The logic tile of claim 1, wherein, The light emitting units are arranged on the side of the circuit board facing the through hole; the circuit board is provided with a first conductive unit and a second conductive unit, the first conductive unit is arranged around the periphery of the light emitting units, and the second conductive unit is arranged around the periphery of the first conductive unit and is insulated from the first conductive unit; one of the positive electrode or the negative electrode of the light emitting unit is electrically connected with the first conductive unit, and the other of the positive electrode or the negative electrode of the light emitting unit is electrically connected with the second conductive unit; the first conductive unit and the second conductive unit are both electrically connected with the circuit board; when the conductive element contacts the first conductive unit and the second conductive unit to achieve electrical coupling, the circuit between the light emitting units and the circuit board is turned on or disconnected.

3. The logic tile of claim 2, wherein, An insulating gap is provided between the first conductive unit and the second conductive unit; the width of the conductive element is greater than the width of the insulating gap to cover and electrically couple the first conductive unit and the second conductive unit.

4. The logic tile of claim 1, wherein, The light guide structure comprises a substrate and a trigger arranged on the substrate, the substrate is arranged between the circuit board and the face shell, the trigger is arranged on the side of the substrate away from the circuit board, at least part of the trigger is located in the through hole, and the conductive element is arranged on the side of the trigger facing the circuit board; the trigger can move along the axial direction of the through hole under the action of an external force, so as to electrically couple or disconnect the conductive element and the circuit board, so that the circuit between the light emitting units and the circuit board is turned on or disconnected.

5. The logic tile of claim 4, wherein, The trigger is a hollow columnar structure, the trigger is arranged outside the light emitting unit; a light guide part is arranged at the end of the trigger away from the substrate for guiding the light emitted by the light emitting unit to the outside of the containing cavity.

6. The logic tile of claim 4, wherein, The light guide structure further comprises a deformation member connecting the trigger and the substrate, so that the trigger can move along the axial direction of the through hole and reset.

7. The logic tile of claim 1, wherein, The control assembly further comprises a button arranged in the surface shell and a battery arranged in the accommodating cavity, the battery and the button are electrically connected with the circuit board; the light guide structure is elastic.

8. The logic tile of claim 1, wherein, The logic puzzle further comprises a light and sound assembly, the light and sound assembly comprises a speaker and a display screen, the speaker and the display screen are electrically connected with the circuit board; a mounting position is arranged on the side of the bottom shell facing the accommodating cavity, the speaker is arranged in the mounting position, a speaker hole is further arranged on the bottom shell, the speaker hole is arranged corresponding to the mounting position; the display screen is arranged on the side of the surface shell away from the bottom shell.

9. A panel assembly, characterized by The logic puzzle comprises a logic puzzle and at least one puzzle piece, the puzzle piece is detachably connected with the logic puzzle.

10. The panel assembly of claim 9, wherein, The side wall of the through hole protrudes from the side of the surface shell of the logic puzzle away from the bottom shell; one side of the puzzle piece is provided with an abutting member, the abutting member is used for abutting the light guide structure, so that the light guide structure can move along the axial direction of the through hole under the action of external force; the abutting member and the puzzle piece have a groove, the groove is clamped with the side wall of the through hole to realize the detachable connection between the puzzle piece and the logic puzzle.