Logic problem solving electronic game device based on array

Through the array logic problem-solving electronic game device, the host, control unit and electronic question-making module are used, combined with primary and advanced question-making components, the electronic logical problem-solving of square array games is realized, and the problem of unintuitive gameplay in the existing technology is solved, and intuitive electronic problem-solving judgment is realized.

CN223184048UActive Publication Date: 2025-08-05ZHEJIANG DREAMWEAVER MOON TOYS CO LTD
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Patent Information

Application Number
CN202421183527.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-05-28
Publication Date
2025-08-05
Estimated Expiration
2034-05-28

AI Technical Summary

Technical Problem

The prior art is difficult to electronically implement square array games, especially in the array operation area where each column in horizontal and vertical direction meets the requirements of the problem, the gameplay of the logical problem solving method is not intuitive.

Method used

An array-based logic problem-solving electronic game device is adopted, including a host, a control unit, a storage unit, an electronic question-making module and an operation area. The primary and advanced question-making components present specific features in the horizontal and vertical question-setting areas, and combined with the instruction input method of the operation unit, electronic logic game problem-solving is realized.

Benefits of technology

The electronic presentation of array logic games is realized, the problem-solving process is intuitive and automatic judgment is correct, and primary and advanced gameplay is supported.

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Abstract

The utility model relates to the field of game chessboards, in particular to an array-based logic problem solving electronic game device. Wherein the host is provided with a control unit, a storage unit, an electronic question setting module and an operation area, an array game question bank is stored in the storage unit, and the array game question bank comprises array game questions and question solving requirements corresponding to the questions. And the array game questions are presented by the electronic question setting module after being electronically converted. According to the scheme, the host is provided with a transverse question setting area and a longitudinal question setting area, the electronic question setting module at least comprises primary question display assemblies located in the transverse question setting area and the longitudinal question setting area, each row-column operation unit and each longitudinal-column operation unit are correspondingly provided with the primary question display assemblies, and the transverse question setting area and the longitudinal question setting area are located beside the operation area. An array of game questions may be presented intuitively to players. According to the scheme, the array logic game is electronized, and each column of operation unit corresponds to the primary question display component for question setting, so that the method is very intuitive.
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Description

Technical Field

[0001] The utility model relates to the field of game boards, in particular to an array-based logic problem-solving electronic game device. Background Art

[0002] With the development of electronic chessboards, many board games can be played on electronic chessboards. The board games referred to here not only refer to chess games, such as Gobang and Go, but also refer to logic games played on chessboards. For example, the Chinese utility model patent previously announced as "CN220189112U" involves a Schulte grid toy, which is an electronic version of the Schulte gameplay.

[0003] However, different chess games have different gameplay styles, and their electronic implementation structures are also completely different. Based on this, this case aims to implement a square matrix game on an electronic chessboard. The square matrix game referred to in this case refers to solving problems within the array's operating area, requiring that each horizontal and vertical column meet the requirements of the problem. For example, in an array of particles of different colors, the arrangement problem generally involves the color and number of particles. The problem is considered solved only when each horizontal and vertical column meets the required color and number of particles. Summary of the Invention

[0004] To address the aforementioned issues, the present invention aims to provide an array-based electronic logic game device that electronically presents the array logic game described in the background art, enabling electronic logic game play. Furthermore, the aforementioned arrangement allows each column of operating units to correspond to the primary display component that generates the problem, making it highly intuitive.

[0005] In order to achieve the above-mentioned purpose, the present invention adopts the following technical solutions:

[0006] An array-based logic problem-solving electronic game device includes a mainframe; an electronic problem-generating module and an operating area are constructed on the end surface of the mainframe; a control unit is provided within the mainframe and stores or is externally connected to a storage unit; the storage unit stores a database of array game questions; the operating area includes operating units arranged in a matrix, which input commands by typing, sensing, or recognition; a control unit is connected to the operating units and the electronic problem-generating module, and the control unit obtains command information from all operating units within the operating area; the device is characterized in that: a horizontal row problem-generating area is provided on the mainframe above or below the operating area, and a vertical row problem-generating area is provided on the mainframe to the left or right of the operating area; the electronic problem-generating module includes at least primary problem display components located in the horizontal and vertical problem-generating areas; each row and column of operating units in the operating area is provided with a corresponding primary problem display component, the primary problem display component being used to indicate specific features displayed externally by the operating units in the corresponding column, and the number of operating units having such specific features.

[0007] The present invention employs the aforementioned technical solution, which relates to an array-based logic problem-solving electronic game device, wherein a host computer is provided with a control unit, a storage unit, an electronic problem-solving module, and an operating area. The storage unit internally stores an array game problem bank, which includes array game problems and corresponding problem-solving requirements. The array game problems are electronically converted and presented by the electronic problem-solving module. The operating unit inputs instructions through keystrokes, sensing, or recognition. The control unit obtains instruction information from all operating units within the operating area, thereby electronically determining whether the problem has been solved correctly.

[0008] Based on this, the host computer in this solution is equipped with horizontal and vertical question areas. The electronic question presentation module includes at least primary question display components located in these horizontal and vertical question areas. Each row and column of operating units is equipped with a corresponding primary question display component. The horizontal and vertical question areas are located next to the operating area, visually presenting the array game questions to the player. The primary question display component here represents the specific characteristics displayed by the operating units in the corresponding column, as well as the number of operating units with these specific characteristics.

[0009] For example, the primary title display component can present a requirement that three operating units be displayed in red.

[0010] Through the above scheme, the array logic game described in the background technology can be presented electronically, realizing the electronic logic game problem-solving gameplay. In addition, the above arrangement method can make each column of operating units correspond to the primary question display component of the question it generates, which is very intuitive. After solving the problem, the control unit compares the instruction information of all operating units in the operation area with the question data retrieved from the array game question bank and presented by the electronic question-generating module, so as to automatically determine whether the solution is correct.

[0011] In a further embodiment, the primary title display component can be presented through the following two schemes:

[0012] In the first solution, the primary title display component includes multiple display units. These display units are used to represent specific features that the operating units are required to display. The number of display units corresponds to the number of operating units in their corresponding columns. That is, a corresponding number of display units are placed next to each column of operating units. A single display unit can be used to represent a specific feature, and a combination of multiple display units can be used to represent the number of specific features.

[0013] In the second solution, the primary display component includes a display unit and a digital display unit for displaying quantities. The display unit is used to represent the specific characteristics that the operating unit is required to display externally. That is, the specific characteristics are presented through a single display unit, and the quantity is presented through a digital display unit, such as a digital tube.

[0014] In advanced gameplay, the electronic question-generating module also includes advanced question display components located in the horizontal and vertical question-generating areas. The advanced question display components correspond to at least two columns of operating units and are used to represent the specific characteristics displayed externally by the corresponding multi-column operating units, as well as the number of operating units with these specific characteristics. This advanced gameplay is equipped with an advanced question display component, and the questions generated by the advanced question display component require that the corresponding multi-column operating units meet display and quantity requirements.

[0015] Similar to the primary title component, the advanced title component can also be presented in two ways:

[0016] Solution 1: The advanced title display component includes multiple display units, which are used to represent specific features that the operation unit is required to display externally. The number of display units does not exceed the number of operation units in the corresponding multiple columns.

[0017] Solution 2: The advanced display component includes a display unit and a digital display unit for displaying a quantity. The display unit is used to represent specific features that the operating unit is required to display externally.

[0018] In a specific embodiment, the display unit is constructed as a lamp bead for displaying multiple color features. The lamp bead displays different colors to represent the features that the question requires the operating unit to present. Alternatively, the display unit is a display screen for displaying shape features or pattern features, such as geometric shapes, logo patterns, etc.

[0019] It should be noted that the above-mentioned solution states that “the operating unit displays specific features externally”, which includes direct display by the operating unit and indirect display through other components attached to the operating unit. In one embodiment described below:

[0020] In this solution, the operating unit inputs instructions through identification. The device is also equipped with a variety of particles with different specific features. As three-dimensional products, the specific features on the particles can include particle shape, markings, or patterns on the particles. Furthermore, each particle is equipped with an identification mark corresponding to its specific feature; the operating unit is constructed as an identification unit. When a particle is placed on the identification unit, the control unit learns the particle features on the operating unit. In this way, the particles can be presented to the outside world through their own specific features, while being recognized internally by the operating unit through the identification mark.

[0021] The identification unit and identification mark here can adopt any existing identification technology, such as RFID technology.

[0022] In another embodiment, the operating unit inputs instructions in a typing manner and presents different specific features through luminous colors. Specifically, the operating unit is constructed as an operating button, and a light-emitting component is constructed under or on the edge of the operating button. The light-emitting component is constructed to be able to display colored lights of multiple colors or multiple lamp beads of different colors; the control unit is connected to the light-emitting component of each operating unit, and pressing the operating button can control the switch and color switching of the light-emitting component; the display unit of the electronic question-generating module is constructed as a lamp bead for displaying multiple color characteristics. In the process of solving the problem in this solution, you only need to press the operating button until the color of the light-emitting component is the desired color.

[0023] Preferably, the light-emitting component is arranged in the operation button, and the operation button is constructed as a light-transmitting button. The light is reflected through the operation button and illuminates the operation button, making the operation convenient and more intuitive.

[0024] In an alternative embodiment, the operating unit inputs commands in an inductive manner. Specifically, the operating unit is constructed as a sensing unit capable of sensing events above it, such as touch, proximity sensing (such as infrared technology), etc. A light-emitting component is constructed below or on the edge of the sensing unit, and the light-emitting component is constructed to display a plurality of colored lights or multiple light beads of different colors. The control unit is connected to the light-emitting component of each operating unit, and triggering the sensing unit can control the on / off and color switching of the light-emitting component.

[0025] In a specific solution, a circuit board is provided inside the host, and a light-emitting component is provided under or on the edge of each operating unit in the operating area of the circuit board; the circuit board is constructed with multiple lamp beads corresponding to each column of operating units in the horizontal and vertical question areas, and the multiple lamp beads are used to present questions.

[0026] In a further solution, conductive silicone is attached above the operating area of the circuit board, and a light-blocking bracket plate is provided above the conductive silicone. The light-blocking bracket plate is constructed with through holes arranged in a matrix above the operating area, and the operation buttons are arranged in each through hole and can be pressed down and popped up along the longitudinal direction of the through hole; the light-blocking bracket plate is provided with a light-transmitting hole above each display unit [lamp bead] in the horizontal and vertical title areas, and the light-transmitting hole can be used to standardize the projection direction of the display unit [lamp bead].

[0027] In a further embodiment, the system further includes a timing module, a start button, and a score display module. The timing module includes multiple display units capable of independently displaying numerical symbols. A control unit is connected to the timing module and the start button. The control unit is connected to the score display module. The control unit assigns a score based on the accuracy and time taken to solve the problem, and the score is displayed on the score display module. The score display module may employ the method described in Chinese Utility Model Patent Publication No. "CN220189112U." BRIEF DESCRIPTION OF THE DRAWINGS

[0028] Figure 1 This is a schematic diagram of the structure of the electronic game device involved in the invention.

[0029] Figure 2 A schematic diagram of a hidden single operating unit in an electronic game device.

[0030] Figure 3 This is an exploded diagram of the structure of an electronic game device.

[0031] Figure 4 Schematic diagram of the internal structure of an electronic game device.

[0032] Figure 5 Schematic diagram of the structure of the circuit board (the dotted boxes indicating the positions of the leads 61 and 62 are artificially added to facilitate understanding of the scope of the primary display component 61 and the advanced display component 62). DETAILED DESCRIPTION

[0033] The following describes in detail embodiments of the present invention, examples of which are shown in the accompanying drawings, wherein the same or similar reference numerals throughout represent the same or similar elements or elements having the same or similar functions. The embodiments described below with reference to the accompanying drawings are exemplary and are intended to explain the present invention, and should not be construed as limiting the present invention.

[0034] In the description of the present invention, it should be understood that the terms "center", "longitudinal", "lateral", "length", "width", "thickness", "up", "down", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inside", "clockwise", "counterclockwise" and the like to indicate directions or positional relationships based on the directions or positional relationships shown in the accompanying drawings, and are only for the convenience of describing the present invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific direction, be constructed and operated in a specific direction, and therefore should not be understood as a limitation on the present invention.

[0035] Furthermore, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of the technical features being referred to. Thus, a feature specified as "first" or "second" may explicitly or implicitly include one or more of such features. In the description of this utility model, unless otherwise specified, "plurality" means two or more, unless expressly limited otherwise.

[0036] In this utility model, unless otherwise specified or limited, the terms "installed," "connected," "connect," "fixed," etc. should be understood in a broad sense. For example, they can refer to fixed connection, detachable connection, or integral connection; mechanical connection or electrical connection; direct connection or indirect connection through an intermediate medium; and internal communication between two components. Those skilled in the art will understand the specific meanings of the above terms in this utility model based on specific circumstances.

[0037] In the present invention, unless otherwise expressly specified or limited, a first feature being "above" or "below" a second feature may include the first and second features being in direct contact, or may include the first and second features being in contact not directly but through another feature between them. Moreover, a first feature being "above," "above," and "above" a second feature may include the first feature being directly above or obliquely above the second feature, or may simply mean that the first feature is higher in level than the second feature. A first feature being "below," "below," and "below" a second feature may include the first feature being directly below or obliquely below the second feature, or may simply mean that the first feature is lower in level than the second feature.

[0038] like Figures 1 to 5As shown, this embodiment relates to an array-based logic problem-solving electronic game device, including a host 1. An electronic question-generating module 2 and an operating area 3 are constructed on the end face of the host 1. A control unit is provided inside the host 1 and a storage unit is stored or connected externally. The storage unit stores an array game question bank internally. The storage unit can be fixed-capacity or expandable. For example, the built-in storage unit can be connected to an external memory for expansion. The external storage unit can be used as a removable storage, such as a USB flash drive, game card, etc., which can be replaced and expanded. Of course, it can also be connected to a mobile phone and tablet via Bluetooth or WiFi to replace the storage or expansion solution. The operating area 3 includes matrix-distributed operating units 31. The operating units 31 input instructions by typing, sensing, or recognition. The control unit is connected to the operating units 31 and the electronic question-generating module 2. The control unit obtains the instruction information of all operating units 31 in the operating area 3. This technical solution involves an array-based logic problem-solving electronic game device, in which a main unit 1 is provided with a control unit, a storage unit, an electronic problem-generating module 2, and an operating area 3. The control unit and storage unit are essential components of electronic devices and are therefore not shown in the accompanying drawings. The storage unit stores an array game problem bank, which includes array game problems and corresponding problem-solving requirements. The array game problems are electronically converted and presented by the electronic problem-generating module 2. The operating unit 31 inputs instructions through keystrokes, sensing, or recognition. The control unit obtains instruction information from all operating units 31 within the operating area 3, which can then be used to electronically determine whether the problem has been solved correctly.

[0039] like Figure 1 and 2 As shown in Figures 5 and 6, a horizontal question area 4 is provided on the host computer 1 above or below the operating area 3, and a vertical question area 5 is provided on the host computer 1 to the left or right of the operating area 3. The electronic question-presenting module 2 includes at least a primary question display component 61 and a high-level question display component 62 located in the horizontal question area 4 and the vertical question area 5. Each row and column of operating units 31 and each column of operating units 31 in the operating area 3 are each provided with a primary question display component 61. The primary question display component 61 is used to indicate the specific characteristics displayed by the operating unit 31 in the corresponding column and the number of operating units 31 with such characteristics. In this embodiment, the host computer 1 is provided with a horizontal question area 4 and a vertical question area 5. The electronic question-presenting module 2 includes at least a primary question display component 61 located in the horizontal question area 4 and the vertical question area 5. Each row and column of operating units 31 and each column of operating units 31 are each provided with a primary question display component 61. The horizontal question area 4 and the vertical question area 5 are located adjacent to the operating area 3 and can intuitively present the array game questions to the player. The primary title display component 61 is used to represent the specific features displayed externally by the operation unit 31 in the corresponding column, and the number of operation units 31 having the specific features.

[0040] For example, the primary title display component 61 can present a feature that requires the three operating units 31 to be displayed in red.

[0041] Through the above scheme, the array logic game described in the background technology can be presented electronically, realizing the electronic logic game problem-solving gameplay. In addition, the above arrangement method can make each column of operating units 31 correspond to the primary question display component 61 of the question it generates, which is very intuitive. After solving the problem, the control unit compares the instruction information of all operating units 31 in the operation area 3 with the question data retrieved from the array game question bank and presented by the electronic question-generating module 2, so as to automatically determine whether the problem solution is correct.

[0042] In a further solution, the primary question display component 61 and the advanced question display component 62 are required to cooperate to produce questions for the advanced stage.

[0043] The advanced question display component 62 corresponds to at least two columns of operation units 31. The advanced question display component 62 is used to represent the specific characteristics displayed by the corresponding multi-column operation unit 31, as well as the number of operation units 31 with these specific characteristics. This advanced gameplay is equipped with the advanced question display component 62. The questions it generates require that the corresponding multi-column operation unit 31 meet display and quantity requirements.

[0044] In a further embodiment, the primary title display component 61 can be presented in the following two ways:

[0045] In the first solution, both the primary title display component 61 and the advanced title display component 62 include multiple display units 600. These display units 600 are used to represent specific features that the operating units 31 are required to display. The number of display units 600 in the primary title display component 61 corresponds to the number of operating units 31 in its corresponding column; the number of display units 600 in the advanced title display component 62 does not exceed the number of operating units 31 in its corresponding columns. In this solution, a corresponding number of display units 600 are placed next to each column of operating units 31. A single display unit 600 can be used to present a specific feature, and a combination of multiple display units 600 can be used to present the number of specific features.

[0046] In the second solution, the primary title display component 61 and the advanced title display component 62 include a display unit 600 and a digital display unit for displaying quantities. The display unit 600 is used to represent a specific feature that the operating unit 31 is required to display externally. Specifically, the specific feature is presented via a single display unit 600, and the quantity is presented via a digital display unit, such as a digital display.

[0047] In a specific embodiment, the display unit 600 is constructed as a lamp bead that displays multiple color characteristics. The lamp bead displays different colors to represent the characteristics presented by the question requirement operation unit 31. Alternatively, the display unit 600 is a display screen that displays shape characteristics or pattern characteristics, such as geometric shapes or logo patterns. In comparison, using lamp beads to display different colors is a more cost-effective and preferred solution.

[0048] It should be noted that the above solution states that “the operating unit 31 displays specific features externally”, which includes direct display by the operating unit 31 and indirect display via other components attached to the operating unit 31. In one embodiment described below:

[0049] This scheme is not illustrated in the figure. Instructions are inputted through recognition by the operating unit 31. The device is also equipped with a variety of particles with different specific characteristics. As three-dimensional objects, the specific characteristics of the particles can include particle shape, markings, or patterns on the particles. Furthermore, each particle is equipped with an identification marker corresponding to its specific characteristic. The operating unit 31 is constructed as an identification unit. When a particle is placed on the identification unit, the control unit learns the particle's characteristics on the operating unit 31. This allows the particle to be presented externally through its specific characteristics and internally identified by the operating unit 31 through its identification marker. The identification unit and identification marker can utilize any existing recognition technology, such as RFID technology. For example, the particles are square, circular, pentagonal, and triangular, and their shapes represent the specific characteristics of the particles. When setting a problem, the primary problem display component 61 defines the type and number of particles to be avoided within each column of the operating area 3, while the advanced problem display component 62 defines the type and number of particles to be avoided within both columns of the operating area 3. To solve a problem, the player places the particles on the identification unit using the method they believe is correct, and the control unit learns the particle characteristics on the operating unit 31. After all the items are placed, the control unit combines the instruction information of all the operating units 31 in the operating area 3, so as to electronically determine whether the problem is solved correctly.

[0050] In such Figures 1 to 5In another embodiment shown, the operating unit 31 inputs instructions in a typing manner and presents different specific features through luminous colors. Specifically, the operating unit 31 is constructed as an operating button, and a light-emitting component 12 is constructed under or on the edge of the operating button. The light-emitting component 12 is constructed to be able to display colored lights of multiple colors or to make multiple lamp beads of different colors. The control unit is connected to the light-emitting component 12 of each operating unit 31, and pressing the operating button can control the switch and color switching of the light-emitting component 12. The display unit 600 of the electronic question-setting module 2 is constructed as a lamp bead for displaying multiple color features. In the process of solving the problem in this solution, it is only necessary to press the operating button until the color of the light-emitting component 12 is the desired color. Preferably, the light-emitting component 12 is arranged in the operating button, and the operating button is constructed as a light-transmitting button. The light is presented through the operating button and the operating button is illuminated, which is convenient and more intuitive to operate.

[0051] In an alternative embodiment, the operating unit inputs commands in an inductive manner. Specifically, the operating unit is constructed as a sensing unit capable of sensing events above it, such as touch, proximity sensing (such as infrared technology), etc. A light-emitting component is constructed below or on the edge of the sensing unit, and the light-emitting component is constructed to display a plurality of colored lights or multiple light beads of different colors. The control unit is connected to the light-emitting component of each operating unit, and triggering the sensing unit can control the on / off and color switching of the light-emitting component.

[0052] In a specific embodiment, the host computer 1 is internally provided with a circuit board 11. Light-emitting components 12 are provided below or on the edges of each operating unit 31 within the operating area 3. Multiple light beads (i.e., display units 600) are configured on the circuit board 11, corresponding to each column of operating units 31 in both the horizontal and vertical question areas 4 and 5. These light beads are used to present questions. In a further embodiment, conductive silicone rubber 13 is attached above the operating area 3 of the circuit board 11. A light-blocking support plate 14 is provided above the conductive silicone rubber 13. The light-blocking support plate 14 has a matrix of through-holes 141 arranged above the operating area 3. Operation buttons are arranged in each through-hole 141 and can be pressed down and released longitudinally along the through-hole 141. The light-blocking support plate 142 is provided above each display unit 600 (lamp beads) in both the horizontal and vertical question areas 4 and 5. These light-blocking holes 142 regulate the projection direction of the display unit 600 (lamp beads). The main unit above the light-transmitting hole 142 is a light-transmitting panel to allow light to pass through.

[0053] In a further embodiment, the system further includes a timing module, a start button, and a score display module. The timing module includes multiple display units capable of independently displaying numerical symbols. A control unit is connected to the timing module and the start button. The control unit is also connected to the score display module. The control unit assigns a score based on the accuracy and time taken to solve the problem, and the score is displayed on the score display module. The score display module may employ the method described in Chinese utility model patent publication number "CN220189112U."

[0054] Throughout this specification, reference to terms such as "one embodiment," "some embodiments," "examples," "specific examples," or "some examples" means that the specific features, structures, materials, or characteristics described in conjunction with that embodiment or example are included in at least one embodiment or example of the present invention. In this specification, schematic representations of the above terms do not necessarily refer to the same embodiment or example. Furthermore, the specific features, structures, materials, or characteristics described may be combined in any suitable manner in any one or more embodiments or examples.

[0055] Although the embodiments of the present invention have been shown and described above, it can be understood that the above embodiments are illustrative and cannot be understood as limitations on the present invention. Ordinary technicians in this field can change, modify, replace and modify the above embodiments within the scope of the present invention without departing from the principles and purpose of the present invention.

Claims

1. An array-based logic problem-solving electronic game device, comprising a host (1); an electronic question-generating module (2) and an operating area (3) are constructed on an end surface of the host (1); a control unit is provided inside the host (1) and stores or is externally connected to a storage unit; the storage unit stores an array game question bank inside, the operating area (3) includes matrix-distributed operating units (31), the operating units (31) input instructions in a typing, sensing or recognition manner, the control unit is connected to the operating units (31) and the electronic question-generating module (2), and the control unit obtains instruction information of all operating units (31) in the operating area (3); the characteristics are: A horizontal question area (4) is provided on the host computer (1) above or below the operation area (3), and a vertical question area (5) is provided on the host computer (1) to the left or right of the operation area (3); the electronic question-generating module (2) comprises at least primary question display components (61) located in the horizontal question area (4) and the vertical question area (5); each row and column operation unit (31) and each column operation unit (31) of the operation area (3) are provided with a corresponding primary question display component (61), and the primary question display component (61) is used to represent a specific feature displayed externally by the operation unit (31) in the corresponding column, and the number of operation units (31) having the specific feature.

2. The array-based logic problem-solving electronic game device according to claim 1, wherein: The primary title display component (61) includes a plurality of display units (600), the display units (600) are used to represent specific features that the operating unit (31) is required to display externally, and the number of display units (600) corresponds to the number of operating units (31) in their corresponding columns; or the primary title display component (61) includes a display unit (600) and a digital display unit for displaying a number, and the display unit (600) is used to represent specific features that the operating unit (31) is required to display externally.

3. The array-based logic problem-solving electronic game device according to claim 1, wherein: The electronic question-generating module (2) further includes an advanced question display component (62) in the horizontal question-generating area (4) and the vertical question-generating area (5), wherein the advanced question display component (62) corresponds to at least two columns of operation units (31), and the advanced question display component (62) is used to characterize specific features displayed externally by the corresponding multiple columns of operation units (31), and the number of operation units (31) having the specific features.

4. The array-based logic problem-solving electronic game device according to claim 3, wherein: The advanced title display component (62) includes a plurality of display units (600), the display units (600) are used to represent specific features that the operating unit (31) is required to display externally, and the number of display units (600) does not exceed the number of operating units (31) in the corresponding multiple columns; or the advanced title display component (62) includes a display unit (600) and a digital display unit for displaying a number, and the display unit (600) is used to represent specific features that the operating unit (31) is required to display externally.

5. The array-based logic problem-solving electronic game device according to claim 2 or 4, characterized in that: The display unit (600) is constructed as a lamp bead for displaying multiple color features, or a display screen for displaying shape features or pattern features.

6. The array-based logic problem-solving electronic game device according to claim 1, wherein: It also includes a plurality of particles with different specific characteristics, each particle is equipped with an identification mark corresponding to its specific characteristics; the operating unit (31) is constructed as an identification unit, and when a particle is placed on the identification unit, the control unit obtains the characteristics of the particle on the operating unit (31).

7. The array-based logic problem-solving electronic game device according to claim 1, wherein: The operating unit (31) is constructed as an operating button, and a light-emitting component (12) is constructed below or on the edge of the operating button. The light-emitting component (12) is constructed to be able to display a plurality of colored lights or to make a plurality of light beads of different colors; the control unit is connected to the light-emitting component (12) of each operating unit (31), and pressing the operating button can control the switch and color switching of the light-emitting component (12); the display unit (600) of the electronic question-generating module (2) is constructed as a light bead for displaying a plurality of color characteristics.

8. The array-based logic problem-solving electronic game device according to claim 7, wherein: The luminous component (12) is arranged in the operating button, and the operating button is constructed as a light-transmitting button.

9. The array-based logic problem-solving electronic game device according to claim 1, wherein: The operating unit (31) is constructed as a sensing unit capable of sensing events above it, and a light-emitting component (12) is constructed below or on the edge of the sensing unit. The light-emitting component (12) is constructed to be able to display a plurality of colored lights or to display a plurality of light beads of different colors. The control unit is connected to the light-emitting component (12) of each operating unit (31), and triggering the sensing unit can control the switch and color switching of the light-emitting component (12).

10. The array-based logic problem-solving electronic game device according to claim 1, wherein: The control unit compares the instruction information of all the operating units (31) in the operating area (3) with the question data retrieved from the array game question bank and presented by the electronic question-generating module (2).

11. The array-based logic problem-solving electronic game device according to claim 7, wherein: A circuit board (11) is provided inside the host (1), and a light-emitting component (12) is provided below or on the edge of each operating unit (31) in the operating area (3) of the circuit board (11); and a plurality of light beads are constructed on the circuit board (11) corresponding to each column of operating units (31) in the horizontal column title area (4) and the vertical column title area (5).

12. The array-based logic problem-solving electronic game device according to claim 11, wherein: Conductive silicone (13) is attached above the operating area (3) of the circuit board (11), and a light-shielding bracket plate (14) is provided above the conductive silicone (13). The light-shielding bracket plate (14) is constructed with through holes (141) arranged in a matrix above the operating area (3). An operating button is arranged in each through hole (141) and can be pressed down and popped up longitudinally along the through hole (141). The light-shielding bracket plate (14) is provided with a light-transmitting hole (142) above each display unit (600) in the horizontal title area (4) and the vertical title area (5). The light-transmitting hole (142) can be used to regulate the projection direction of the display unit (600), and the host above the light-transmitting hole (142) is a light-transmitting panel.

Citation Information

Patent Citations

  • Schilt square toy

    CN220189112U