Decryption machine device and display device

By designing a decryption machine device that does not require physical chess pieces, combining the shell, power supply module, code input and display module, the problems of inconvenience and lack of interaction in existing decryption game products are solved, and a portable and interactive gaming experience is achieved.

CN223263393UActive Publication Date: 2025-08-26FOSHAN JIKE INNOVATION & TECH CO LTD
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Patent Information

Application Number
CN202422978648.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-03
Publication Date
2025-08-26
Estimated Expiration
2034-12-03

AI Technical Summary

Technical Problem

Existing decryption game products require physical chess pieces or beads, which are inconvenient to carry and limited use scenarios, and lack human-computer interaction functions, resulting in poor user experience.

Method used

Design a decryption machine device, adopting a structure that does not require physical chess pieces or beads, includes a shell, a power supply module, a code input module and a display module, supports human-computer interaction, and provides answer feedback through display units and indicator light components.

Benefits of technology

It realizes a gaming experience with portability and unlimited scenes, improves user interest and satisfaction, and improves the fun and interactive game through intuitive answer feedback.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present disclosure proposes a decryption machine device configured for a user to answer a question, the question being a preset secret code set including a plurality of secret codes selected from a given code set including a plurality of given codes different from each other, the decryption machine device comprising: a housing; a power supply module; the code input module is arranged on the shell and electrically connected with the power supply module, the code input module is set to at least input answers, the answers are answer code sets, the number of answer codes included in the answer code sets is the same as the number of secret codes included in the preset secret code set, and the preset secret code set comprises secret codes; the answer code is selected from the given code set; and the display module is arranged on the shell and electrically connected with the power supply module, the display module comprises at least one group of display units, and each group of display units is arranged to display a corresponding solution code set. The utility model further provides a display device.
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Description

Technical Field

[0001] The present disclosure relates to the field of decryption game products, and more specifically to a decryption machine device and a display device. Background Art

[0002] Decryption games are educational games. Existing decryption game products, such as Pearl Reasoning Chess or Divine Calculation Chess, require a separate chessboard and multi-colored chess pieces or beads, and may also require a puzzle booklet. These pieces, beads, and puzzle books are easily lost and inconvenient to carry around. They also cannot be played anywhere, as they require a specific venue. This limits the use of decryption game products. Furthermore, existing decryption game products lack human-computer interaction, making them boring and unable to maintain user interest for extended periods. These issues contribute to poor user experience and low satisfaction.

[0003] To address at least one of the problems with the prior art, a novel decryption machine is needed that does not require physical chess pieces, beads, or a puzzle booklet, is portable, and can be used in a variety of scenarios. Furthermore, the decryption machine should be as simple, compact, and cost-effective as possible, while ensuring design and manufacturing feasibility. It should also exhibit excellent human-computer interaction, enhance user interest, and improve user experience and satisfaction. Utility Model Content

[0004] To this end, the present disclosure provides a decryption device configured to allow a user to answer a question, wherein the question is a preset secret code set, the preset secret code set including multiple secret codes selected from a given code set, the given code set including multiple given codes that are different from each other, and the decryption device includes:

[0005] case;

[0006] Power supply module;

[0007] a code input module, disposed on the housing and electrically connected to the power supply module, the code input module being configured to input at least an answer to a question, the answer to the question being a set of answer codes, the number of answer codes included in the set of answer codes being the same as the number of secret codes included in the set of preset secret codes, the answer codes being selected from the given code set;

[0008] A display module is arranged on the shell and electrically connected to the power supply module. The display module includes at least one group of display units. Each group of display units is configured to display a corresponding set of answer codes when the code input module is operated to input the answer to the question.

[0009] According to different embodiments, the decryption machine device proposed in the present disclosure may further include one or more of the following further developments.

[0010] According to some embodiments, each group of display units includes a plurality of display units, and each display unit includes at least one display light element.

[0011] According to some embodiments, each display unit in each group of display units is configured to display a solution code.

[0012] According to some embodiments, each of the preset secret code sets includes a positional sequence relationship between the plurality of secret codes.

[0013] According to some embodiments, the plurality of display units of each group of display units are positioned sequentially such that the positional sequence relationship between the plurality of display units of each group of display units reflects the positional sequence relationship between the plurality of answer codes of the answer code set.

[0014] According to some embodiments, the code content of the given code is represented by at least one of color, number, letter, text, and pattern.

[0015] According to some embodiments, the decryption machine device further comprises a solution result indication module, which is electrically connected to the power supply module and configured to provide a comparison result indication regarding a comparison result between the solution code set and the preset secret code set.

[0016] According to some embodiments, the solution result indication module includes an indicator light element.

[0017] According to some embodiments, the solution result indication module is configured to provide the comparison result indication through at least one of the color, brightness, pattern, and blinking mode of the indicator light element.

[0018] According to some embodiments, the comparison result indication includes at least one of the following: whether the answer code set is consistent with the preset secret code set; the number and / or position of completely correct answer codes included in the answer code set; the number and / or position of partially correct answer codes included in the answer code set; the number and / or position of incorrect answer codes included in the answer code set;

[0019] Among them: a completely correct answer code is an answer code whose position sequence relationship and code content correspond to the preset secret code set; a partially correct answer code is an answer code whose position sequence relationship does not correspond to the preset secret code set, but whose code content is included in the preset secret code set; an incorrect answer code is an answer code whose position sequence relationship and code content do not correspond to the preset secret code set.

[0020] According to some embodiments, the answer result indication module includes a first indicator light unit corresponding to each display unit, the first indicator light unit includes the indicator light element, and is configured to provide the comparison result indication.

[0021] According to some embodiments, the first indicator light unit is configured to: provide completely correct indication information when the answer code displayed by the corresponding display unit is consistent with the position sequence relationship and code content of the secret code in the preset secret code set; and / or provide error indication information when the answer code displayed by the corresponding display unit is not consistent with the position sequence relationship and code content of the secret code in the preset secret code set; and / or provide partially correct indication information when the code content of the answer code displayed by the corresponding display unit is included in the preset secret code set but the position sequence relationship is not consistent with the preset secret code set.

[0022] According to some embodiments, the first indicator light unit is disposed near a corresponding display unit.

[0023] According to some embodiments, the first indicator light unit is arranged above, below or beside the corresponding display unit.

[0024] According to some embodiments, the first indicator light unit is further configured to provide an answer code input digit indication, for indicating which digit of the answer code to be entered is the answer code in the corresponding answer code set.

[0025] According to some embodiments, the decryptor device is configured to automatically enable the corresponding first indicator light unit to provide the comparison result indication when or after the last answer code in the answer code set is input.

[0026] According to some embodiments, the answer result indication module includes a second indicator light unit corresponding to each group of display units, the second indicator light unit includes the indicator light element, and is configured to provide the comparison result indication.

[0027] According to some embodiments, each of the second indicator light units includes a plurality of subunits, each of the subunits includes one or more indicator light elements, and the plurality of subunits are configured to provide the comparison result indication.

[0028] According to some embodiments, the plurality of subunits are arranged close to each other.

[0029] According to some embodiments, the plurality of subunits are arranged in rows and / or columns, or in a circle.

[0030] According to some embodiments, each of the subunits is arranged to provide an indication of a comparison result associated with a solution code from the input solution code set.

[0031] According to some embodiments, the comparison result indication provided by the second indicator light unit includes: the number of completely correct answer codes in the answer code set; and / or the number of partially correct answer codes in the answer code set; and / or the number of incorrect answer codes in the answer code set.

[0032] According to some embodiments, each group of display units is arranged in columns or rows, and the corresponding second indicator light unit is provided at the beginning or end of the column or row.

[0033] According to some embodiments, the decryptor device is configured to automatically enable the corresponding second indicator light unit to provide the comparison result indication when or after the last answer code in the answer code set is input.

[0034] According to some embodiments, the display module includes multiple groups of display units.

[0035] According to some embodiments, each group of display units in the plurality of groups of display units is configured to keep displaying the corresponding set of answer codes after starting to display the corresponding set of answer codes until the corresponding game session ends.

[0036] According to some embodiments, the decryption machine device is configured to end the game session in response to at least one of the following events: the input answer code set is consistent with the preset secret code set; the same number of answer code sets as the number of groups of display units are input; the game time reaches a preset time period; the number of times the answer code set is input reaches a preset number of times.

[0037] According to some embodiments, each group of display units in the multiple groups of display units is configured to keep displaying the completely correct code and / or partially correct code in the corresponding answer code set after starting to display the corresponding answer code set until the end of the corresponding game session; wherein: the completely correct answer code is an answer code whose position sequence relationship and code content both correspond to the preset secret code set; the partially correct answer code is an answer code whose position sequence relationship does not correspond to the preset secret code set, but whose code content is included in the preset secret code set.

[0038] According to some embodiments, the plurality of groups of display units are arranged into an array of display units, wherein each group of display units is arranged into rows or columns.

[0039] According to some embodiments, the first indicator light unit is configured to keep displaying the comparison result indication after starting to provide the comparison result indication until the corresponding game session ends.

[0040] According to some embodiments, the second indicator light unit is configured to keep displaying the comparison result indication after starting to provide the comparison result indication until the corresponding game session ends.

[0041] According to some embodiments, the display module is further configured to provide a comparison result indication regarding a comparison result between the answer code set and the preset secret code set.

[0042] According to some embodiments, at least one display light element of each group of display units is configured to provide an indication of the comparison result.

[0043] According to some embodiments, the display light elements of each group of display units are configured to provide the comparison result indication through at least one of displayed color, brightness, pattern, and blinking mode.

[0044] According to some embodiments, the first indicator light unit is further configured to provide an answer code input digit indication, for indicating which digit of the answer code to be entered is the answer code in the corresponding answer code set.

[0045] According to some embodiments, the decryptor device is configured to automatically activate input of the next answer code after each input of a solution code in the solution code set before completing input of a solution code set.

[0046] According to some embodiments, the decryptor device is configured to automatically activate the first indicator light unit to provide an indication of the answer code input position after each answer code in the answer code set is input before completing the input of the answer code set.

[0047] According to some embodiments, the comparison result indication and the answer code input digit indication are distinguished by at least one of a color, a pattern, a brightness or a blinking mode displayed by the corresponding first indicator light unit.

[0048] According to some embodiments, the decryptor device further comprises a bit selector configured to select an input bit of the answer code to be input, the input bit indicating which bit of the answer code to be input is in the corresponding answer code set.

[0049] According to some embodiments, the multiple display units of each group of display units are positioned in sequence so that the positional sequence relationship between the multiple display units of each group of display units reflects the positional sequence relationship between the multiple answer codes of the answer code set; wherein the bit selector is configured to select the input bit of the answer code to be entered by activating a display unit in a corresponding group of display units.

[0050] According to some embodiments, the code input module is configured to operate in association with the activated display unit, so that when the answer code is input using the code input module, the activated display unit displays the input answer code or the input answer code overwrites the answer code previously displayed by the activated display unit.

[0051] According to some embodiments, the first indicator light unit is configured to operate in association with the bit selector, so that when the corresponding display unit is activated by the bit selector, the first indicator light unit corresponding to the display unit provides the answer code input bit indication.

[0052] According to some embodiments, the decryption machine device further comprises a solution code input bit indication module, wherein the solution code input bit indication module is configured to provide a solution code input bit indication to indicate which solution code in the corresponding solution code set the solution code to be input is.

[0053] According to some embodiments, the decoded code input digit indication module includes a digit indicator light unit corresponding to each display unit, and the digit indicator light unit includes one or more digit indicator light elements.

[0054] According to some embodiments, the position indicator light unit is arranged near the corresponding display unit.

[0055] According to some embodiments, the position indicator light unit is arranged above, below or beside the corresponding display unit.

[0056] According to some embodiments, the answer code input digit indication module is configured to provide the answer code input digit indication via at least one of a color, brightness, pattern, and blinking mode of the digit indicator light element.

[0057] According to some embodiments, the answer code input bit indication module is configured to operate in association with the bit selector so that when the corresponding display unit is activated by the bit selector, the bit indicator light unit corresponding to the display unit provides the answer code input bit indication.

[0058] According to some embodiments, the display unit is further configured to provide an answer code input digit indication for indicating which digit of the answer code to be input is the answer code in the corresponding answer code set.

[0059] According to some embodiments, the answer code input bit indication is provided by at least one of a color, brightness, pattern, and blinking mode of a display light element of a corresponding display unit.

[0060] According to some embodiments, the decryptor device is configured to automatically activate input of the next answer code after each input of a solution code in the solution code set before completing input of a solution code set.

[0061] According to some embodiments, the decryptor device further comprises an answer submitter, configured to submit the solution code set.

[0062] According to some embodiments, the answer submitter is configured as a button.

[0063] According to some embodiments, the first indicator light unit is configured to operate in association with the answer submitter, so as to activate the corresponding first indicator light unit to provide the comparison result indication when or after the solution code set is submitted through the answer submitter.

[0064] According to some embodiments, the second indicator light unit is configured to operate in association with the answer submitter, so as to activate the corresponding second indicator light unit to provide the comparison result indication when or after the solution code set is submitted through the answer submitter.

[0065] According to some embodiments, the code input module is configured to select a given code as the solution code and input the selected given code as the solution code to the decryptor device.

[0066] According to some embodiments, the code input module comprises: a code selection unit configured to select a given code from the given code set as a solution code; and a code input unit configured to input the selected given code as the solution code into the decryptor device.

[0067] According to some embodiments, the code selection unit is configured to include a knob, and / or the code input unit is configured to include a button.

[0068] According to some embodiments, the decryptor device includes a code input module, and the code input module includes a knob and a button.

[0069] According to some embodiments, the button is integrated with the knob, and the knob is arranged around the button.

[0070] According to some embodiments, the knob is configured to include multiple gears and is rotatable to switch between the multiple gears, each gear corresponding to an answer code setting; wherein the display unit is configured to operate in association with the knob so that when the knob switches between the gears, the corresponding display unit synchronously displays the answer code corresponding to each gear.

[0071] According to some embodiments, the code input module is located at a corner of the housing.

[0072] According to some embodiments, the code input module is configured as a touch screen.

[0073] According to some embodiments, the decryptor device is arranged to automatically provide the set of preset secret codes.

[0074] According to some embodiments, the code input module is further configured to input the preset secret code set.

[0075] According to some embodiments, the decryption machine device is configured so that each game session includes a question-posing sub-session and a question-answering sub-session; wherein: in the question-posing sub-session, the code input module is configured to input the preset secret code set; in the question-answering sub-session, the code input module is configured to input the answer code set, and each group of display units of the display unit is configured to display the input answer code as the answer code is input.

[0076] According to some embodiments, the code input module includes a code selection unit and a code input unit; wherein: in the question-posing sub-link, the code selection unit is configured to select a given code from the given code set as a secret code, and the code input unit is configured to input the selected given code as a secret code into the decryption device; in the question-answering sub-link, the code selection unit is configured to select a given code from the given code set as an answer code, and the code input unit is configured to input the selected given code as an answer code into the decryption device.

[0077] According to some embodiments, in the question answering sub-session, the display module is configured to operate in association with the code input unit so that each group of display units displays a corresponding set of answer codes.

[0078] According to some embodiments, the code selection unit is configured to include a knob, and / or the code input unit is configured to include a button.

[0079] According to some embodiments, the knob is configured to include multiple gears and is rotatable to switch between the multiple gears, each gear corresponding to an answer code setting; wherein, at least in the question-answering sub-link, the display unit is configured to operate in association with the knob, so that when the knob switches between the gears, the corresponding display unit synchronously displays the answer code corresponding to each gear.

[0080] According to some embodiments, the display module further includes a given code set display unit, configured to display the given code set.

[0081] According to some embodiments, the given code set display unit includes a plurality of given code display lights, each given code display light being configured to display a given code.

[0082] According to some embodiments, the given code set display unit is configured to display the preset secret code set at the end of a game session.

[0083] According to some embodiments, the code content of the given code is represented by at least one of color, number, letter, text, and pattern.

[0084] According to some embodiments, the preset secret code set is configured to include 2-8 digit secret codes.

[0085] According to some embodiments, the decryptor device includes a display screen, and the display screen is configured to be electrically connected to the power supply module.

[0086] According to some embodiments, the display screen is configured to display at least one of the following information: game level; game time; number of consecutive clearances; the given code set; game mode; and game level.

[0087] According to some embodiments, the decryptor device includes a touch screen.

[0088] According to some embodiments, the touch screen is configured to be used for at least one of the following: game mode selection; game difficulty level selection; game level selection; game hint selection.

[0089] According to some embodiments, the decryptor device is configured to include multiple game modes.

[0090] According to some embodiments, the decryptor device further comprises a game mode selector configured to select a game mode.

[0091] According to some embodiments, the game mode includes single-player mode, human-computer mode, and multiplayer mode according to the game participants; and / or the game mode includes simple mode and expert mode according to the game difficulty.

[0092] According to some embodiments, the decryption device includes a sound module, which is electrically connected to the power supply module and is configured to provide a sound prompt.

[0093] According to some embodiments, the sound prompt includes at least one of the following prompts: power on / off prompt; game mode prompt; clearance prompt; correct answer code set prompt; incorrect answer code set prompt; operation error prompt; correct answer code prompt. BRIEF DESCRIPTION OF THE DRAWINGS

[0094] In order to more clearly illustrate the technical solutions of the embodiments of the present disclosure, the following briefly introduces the drawings required for use in the embodiments. It should be understood that the following drawings only illustrate certain embodiments of the present disclosure and should not be considered as limiting the scope. A person of ordinary skill in the art can also derive other relevant drawings based on these drawings without inventive effort. In the drawings:

[0095] Figure 1 shows a perspective view of a decryptor device according to an exemplary embodiment;

[0096] Figure 2 shows an exploded perspective view of a decryptor device according to an exemplary embodiment;

[0097] Figure 3 shows a longitudinal cross-sectional view of a decryptor device according to an exemplary embodiment;

[0098] Figure 4a A perspective view of a retaining plate of a display device according to an exemplary embodiment is shown, wherein the display device may be used in a decryption machine device according to the present disclosure;

[0099] Figure 4b A perspective exploded view of a portion of a decryption machine device according to an exemplary embodiment is shown, wherein a portion of an exemplary display device, a main control module, a display module, a comparison result indication module, a given code set display unit, and a display screen are shown;

[0100] Figure 5 An exemplary main control module of a decryption machine device and various components provided thereon are shown according to an exemplary embodiment;

[0101] Figure 6 An exploded perspective view of a portion of a decryptor device according to an exemplary embodiment is shown, showing an exemplary housing, a selector, and a main control module;

[0102] Figure 7 An exploded perspective view of a portion of a decryptor device according to an exemplary embodiment is shown, showing an exemplary selector and main control module;

[0103] Figure 8 A selector according to an exemplary embodiment is shown in plan view;

[0104] Figure 9 An exploded perspective view of a portion of a decryptor device according to an exemplary embodiment is shown, showing an exemplary housing, a selector, a main control module, and a power supply module;

[0105] Figure 10An exploded perspective view of a portion of a decryptor device according to an exemplary embodiment is shown, showing an exemplary housing, a selector, a main control module, and a power supply module;

[0106] Figure 11 A perspective cutaway view of a portion of a decryptor device according to an exemplary embodiment is shown, showing an exemplary housing, a selector, a main control module, and a power supply module;

[0107] Figure 12 A perspective cutaway view of a portion of a decryptor device is shown according to an exemplary embodiment, showing an exemplary housing and selector.

[0108] Reference Signs List

[0109] 10 decryption device; 20 display screen; 100 housing; 110 mounting shaft; 120 positioning plate; 121 first positioning recess; 122 second positioning recess; 123 third positioning recess; 130 bottom cover; 140 first matching limiter; 150 second matching limiter; 160 housing frame; 180 holding portion; 200 power supply module; 300 code input module; 310 code selection unit; 320 code input unit; 400 display module; 401 display unit; 401a first display unit; 401b second display unit; 401c third display unit; 401d fourth display unit; 402 display light element; 410 first group display unit; 420 second group display unit display unit; 430 third display unit group; 440 fourth display unit group; 450 fifth display unit group; 460 sixth display unit group; 470 seventh display unit group; 480 given code set display unit; 481 given code display light; 500 main control module; 510 circuit board; 610 first indicator light unit; 611 first indicator light element; 620 second indicator light unit; 620a subunit; 621 second indicator light element; 700 answer submitter; 350 position selector; 800 selector; 810 knob member; 811 mounting hole; 820 elastic member; 830 positioning member; 840 first limiting portion; 850 second limiting portion; 870 first arm; 871 Signal lamp; 880 second arm; 881 signal lamp; 891 magnet; 892 first Hall effect magnetic sensor; 893 second Hall effect magnetic sensor; 900 optical processing component; 900a first optical processing component portion; 900b second optical processing component portion; 900c third optical processing component portion; 900d fourth optical processing component portion; 910, 920, 940, 950 optical processing unit; 910 first optical processing unit; 920 second optical processing unit; 940 fourth optical processing unit; 950 fifth optical processing unit; 911, 921, 931, 941 light-transmitting portion; 911 first light-transmitting portion; 921 second light-transmitting portion; 941 fourth light-transmitting portion; 951 fifth light-transmitting portion; 98 0 connecting frame; 960 holding plate; 960a first holding plate portion; 960b second holding plate portion; 961, 962, 964, 965 mounting holes; 961 first mounting hole; 962 second mounting hole; 964 fourth mounting hole; 965 fifth mounting hole; 966 partition plate; 981, 982, 983, 984 light shielding portion; 9100, 9200, 9400, 9500 protrusion mounting portion; 9100 first protrusion mounting portion; 9200 second protrusion mounting portion; 9400 fourth protrusion mounting portion; 9500 fifth protrusion mounting portion; 9101, 9201, 9401, 9501 limiting structure; 9403 first portion; 9404 second portion. DETAILED DESCRIPTION

[0110] The following describes in detail the decryption device 10, selector 800, and display device according to an embodiment of the present disclosure with reference to the accompanying drawings. To further clarify the purpose, technical solutions, and advantages of this utility model, the following will provide a clear and complete description of the technical solutions in the embodiments of the present disclosure, in conjunction with the accompanying drawings. Obviously, the described embodiments are only a portion of the embodiments of the present disclosure, not all of them.

[0111] Therefore, the following detailed description of the embodiments of the present disclosure provided in conjunction with the accompanying drawings is not intended to limit the scope of the present disclosure as claimed, but merely represents selected embodiments of the present disclosure. All other embodiments derived by persons of ordinary skill in the art based on the embodiments of the present disclosure without creative effort are within the scope of protection of the present disclosure.

[0112] Unless the context otherwise defines, the singular includes the plural. Throughout the specification, the terms "including", "having", etc. are used herein to specify the presence of the features, numbers, steps, operations, elements, parts or their combination, but do not exclude the presence or addition of one or more other features, numbers, steps, operations, elements, parts or their combination.

[0113] In addition, even though terms including ordinal numbers such as "first," "second," etc. may be used to describe various components, these components are not limited by these terms, and these terms are only used to distinguish one element from other elements. For example, a first component may be referred to as a second component, and similarly, a second component may be referred to as a first component without departing from the scope of the present disclosure.

[0114] In the description of the present invention, it should be understood that the terms "up", "down", "left", "right", "inside", "outside", etc. indicate orientations or positional relationships based on the orientations or positional relationships shown in the accompanying drawings, or are the orientations or positional relationships in which the disclosed product is conventionally placed when in use, or are the orientations or positional relationships conventionally understood by those skilled in the art. These are merely for the convenience of describing the present disclosure and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore should not be understood as a limitation on the present disclosure.

[0115] like Figure 1-2 As shown, the present disclosure provides a decryption device 10 configured to allow a user to solve a problem, wherein the problem is a set of preset secret codes. According to one embodiment, the set of preset secret codes may include multiple secret codes, each of which is selected from a given code set, wherein the given code set includes multiple given codes that are different from each other.

[0116] According to some embodiments, Figure 1-3As shown in , 6 and 8-12, the decryption device 10 may include a housing 100, which is used to accommodate, hold and install other related components. The decryption device 10 may also include a power supply module 200, such as Figure 2-3 As shown in Figures 9-10 , the power supply module 200 is configured to power the power-consuming components of the decryption device 10. The power supply module 200 may include a disposable battery or a rechargeable battery. According to one embodiment, as shown in the figure, the power supply module 200 is held by the housing 100.

[0117] According to some embodiments, Figure 1-2 As shown in Figures 4-5, the decryption device 10 may further include a code input module 300, which is configured to input at least the answer to the question. The answer to the question is a set of answer codes. The number of answer codes included in the set of answer codes is the same as the number of secret codes included in the preset secret code set. The answer code is selected from the given code set mentioned above. According to some embodiments, Figure 1 As shown, the code input module 300 may be disposed on the housing 100 and electrically connected to the power supply module 200 to be powered by the power supply module 200 .

[0118] According to some embodiments, Figure 1-5 As shown, the decryption device 10 may further include a display module 400, which may include a display unit 401, such as at least one group of display units 410, 420, 430, 440, 450, 460, 470, each group of display units 410, 420, 430, 440, 450, 460, 470 being configured to display a corresponding set of solution codes. Figure 5 , each group of display units is enclosed in a dotted circle. In some embodiments, the display module 400 is disposed on the housing 100 and is electrically connected to the power supply module 200 to be powered by the power supply module 200. In some embodiments, the display module 400 is configured to operate in conjunction with the code input module 300. More specifically, each group of display units 410, 420, 430, 440, 450, 460, 470 is configured to display a corresponding answer code and answer code set when the code input module 300 is operated to input an answer to a question.

[0119] Within the meaning of the present application, each code, including a "given code," a "secret code," and an "answer code," may have a "code content," which allows a user to identify the corresponding code. A "given code" includes only the code content and does not include the positional order relationship between the codes. A "secret code" and an "answer code" may only include the code content. Additionally, a "secret code" and an "answer code" may also include the positional order relationship between the codes, i.e., the positional order relationship between the codes in the corresponding "preset secret code set" and "answer code set" has a decryption significance. More specifically, in this case, if the code content of the secret codes included in each of two preset secret code sets is the same, but the positional order relationship between the secret codes is different, then the two preset secret code sets are two different preset secret code sets. Similarly, if the code content of the answer codes included in each of two answer code sets is the same, but the positional order relationship between the answer codes is different, then the two answer code sets are two different answer code sets.

[0120] According to some embodiments, the code content of a given code in a given code set is represented by at least one of color, number, letter, text, and pattern. Exemplarily, but not exclusively, the code content of the multiple given codes included in the given code set is represented by color. For example, the multiple given codes can each be one of multiple colors, such as red, orange, yellow, green, cyan, blue, purple, or other colors. Exemplarily, but not exclusively, the code content of the multiple given codes included in the given code set is represented by numbers. For example, the multiple given codes can each be one of multiple numbers, such as 1, 2, 3, 4, 5, 6, 7, 8, 9, or 0. Exemplarily, but not exclusively, the code content of the multiple given codes included in the given code set is represented by letters. Each given code can be one of the 26 English letters. Exemplarily, but not exclusively, the code content of the multiple given codes included in the given code set is represented by patterns. Each given code can be one of multiple different patterns. It should be noted that, in the context of this document, a given code set is known to the user in advance and includes given codes that the user can select, use, or enter during the game.

[0121] Furthermore, within the meaning of the present disclosure, a "preset secret code set" is equivalent to a decryption question, i.e., the preset secret code set can be pre-set before the start of a corresponding round or level of the game. According to some embodiments, the preset secret code set is provided by the user who sets the question, i.e., by a person, for example, by an opponent in a human-to-human game mode. According to other embodiments, the preset secret code set is pre-set automatically by the decryption machine device 10. In a more specific embodiment, the code contents of the multiple secret codes of the preset secret code set are set to be non-repeating. In some embodiments, the preset secret code set is set to include 2-8 digit secret codes, preferably 4-6 digit secret codes.

[0122] In the sense of the present disclosure, a "solution code set" is equivalent to a decrypted answer given to a question, and according to different game settings, the solution code set only constitutes the correct answer to the corresponding preset secret code set when the code content or the code content + code position sequence relationship of the solution codes included in the solution code set completely corresponds to the code content or the code content + code position sequence relationship of the secret codes included in the preset secret code set.

[0123] According to some embodiments, as shown in Figures 2 and 4-5, each set of display units 410, 420, 430, 440, 450, 460, and 470 may include multiple display units 401, each display unit 401 including at least one display light element 402. Exemplarily, but not exclusively, the display light element 402 may be an LED. In some embodiments, the color, brightness, and blinking pattern of the display light element 402 can be variable. In some embodiments, the display light element 402 is configured to operate independently of the other display light elements. This allows for a simple construction of the display unit 401 while achieving variable operability, enabling the operation and functionality of the decryptor device 10 to be expanded as needed through the display unit 401 with a simple structure and reasonable cost. According to some embodiments, each display unit 401 in each set of display units 410, 420, 430, 440, 450, 460, and 470 is configured to display a solution code. Thus, a group of display units 410, 420, 430, 440, 450, 460, 470 can display a set of answer codes, thereby allowing the set of answer codes to be presented in an intuitive manner, meeting user-friendliness requirements.

[0124] According to some embodiments, the preset secret code set does not include a positional order relationship between the multiple secret codes therein; for example, a preset secret code set may be the four numbers 1, 4, 5, and 7. As long as the solution to the secret code includes multiple solution codes whose code contents correspond to 1, 4, 5, and 7, respectively, the decryption is considered successful. For example, in this case, the solution code set consisting of the solution codes 5, 7, 4, and 1 entered in sequence is also considered the correct answer. According to other embodiments, each preset secret code set includes a positional order relationship between the multiple secret codes that constitute it. In this case, only the solution code set that includes multiple solution codes that satisfy this positional order relationship constitutes the correct answer to the preset secret code set; for example, a preset secret code set may be the four numbers 1, 4, 5, and 7 given in sequence. In this case, only the solution code set that satisfies this order constitutes the correct answer, that is, the solution code set must include 1, 4, 5, and 7 entered in sequence. According to some embodiments, the plurality of display units 401 of each group of display units 410, 420, 430, 440, 450, 460, 470 are positioned sequentially, thereby enabling the positional order relationship between the plurality of display units 401 of each group of display units 410, 420, 430, 440, 450, 460, 470 to reflect or present the positional order relationship between the plurality of answer codes in the answer code set. This allows a user to very intuitively determine the positional order relationship between the answer codes in the answer code set.

[0125] According to some embodiments, the decryption device 10 is further configured to provide a comparison result indication regarding the comparison between the answer, i.e., the solution code set, and the corresponding question, i.e., the preset secret code set. This provides feedback to the user, guides the user to the correct answer, improves human-computer interaction and game fun, and enhances the user experience. According to some embodiments, the comparison result indication includes at least one of the following information: whether the solution code set is consistent with the preset secret code set; the number and / or location of completely correct solution codes included in the solution code set; the number and / or location of partially correct solution codes included in the solution code set; and the number and / or location of incorrect solution codes included in the solution code set. According to some embodiments, a completely correct solution code is one that corresponds to the preset secret code set in both positional order and code content; a partially correct solution code is one whose positional order does not correspond to the preset secret code set, but whose code content is included in the preset secret code set; and an incorrect solution code is one that does not correspond to the preset secret code set in both positional order and code content. It should be noted that, in the context of this document, the consistency of the solution code set with the preset secret code set means a successful answer.

[0126] According to some embodiments, the display module 400 is configured to provide a comparison result indication regarding the comparison result between the answer, i.e., the solution code set, and the corresponding question, i.e., the preset secret code set. This provides the user with intuitive feedback on their answer, enhancing the game's fun and human-computer interaction while facilitating the user's adjustment of their answering strategy. More specifically, the at least one set of display units 410, 420, 430, 440, 450, 460, 470 is configured to provide a comparison result indication. More specifically, at least one display light element 402 of each set of display units 410, 420, 430, 440, 450, 460, 470 is configured to provide the comparison result indication. According to some embodiments, the display light element 402 of each set of display units 410, 420, 430, 440, 450, 460, 470 is configured to provide a comparison result indication through at least one of a displayed color, brightness, pattern, or blinking mode. Thus, the display unit 401 can display both the answer code and the comparison result between the answer (i.e., the answer code set) and the question (i.e., the preset secret code set). This allows for the integration of more functions with a minimized number of components, thereby simplifying the structure of the decryption device 10, facilitating a more compact overall construction, and further reducing costs. According to some embodiments, the display unit 401 in each set of display units 410, 420, 430, 440, 450, 460, 470 is configured to simultaneously display the answer code of the answer code set and provide the aforementioned comparison result indication. For example, the corresponding display light element 402 in each set of display units 410, 420, 430, 440, 450, 460, 470 can be illuminated to display the answer code, while the display light element 402 can provide the comparison result indication through at least one of color variability, brightness variability, and a flashing pattern.

[0127] According to some embodiments, the decryption device 10 may further include an answer result indication module configured to provide an indication of a comparison result between the answer (i.e., the answer code set) and the question (i.e., the preset secret code set). The answer result indication module may be electrically connected to the power supply module 200 to be powered by the power supply module 200. According to some embodiments, the answer result indication module includes indicator light elements 611 and 621. Exemplarily, but not exclusively, the indicator light elements 611 and 621 may be LEDs. According to some embodiments, the color, brightness, and blinking pattern of the indicator light elements 611 and 621 may be variable. According to some embodiments, the indicator light elements 611 and 621 may be operable independently of the other indicator light elements. This allows for a simple construction of the answer result indication module while achieving variable operability. This allows the decryption device's indication function to be expanded as needed through the answer result indication module with a simple structure and reasonable cost. According to some embodiments, the answer result indication module is configured to indicate the comparison result using at least one of the color, brightness, pattern, and blinking pattern of the indicator light elements 611 and 621.

[0128] According to some embodiments, Figure 1-5 As shown, the answer result indication module may include a first indicator light unit 610 corresponding to each display unit 401 configured to display the answer code. The first indicator light unit 610 may include the above-mentioned indicator light element, referred to as the first indicator light element 611. As a result, the first indicator light unit 610 can provide a very intuitive and clear indication of the comparison result related to the answer code displayed on the corresponding display unit 401, thereby enhancing human-computer interactivity and game convenience and improving user experience. According to some embodiments, the first indicator light unit 610 is provided below, above, or beside the corresponding display unit 401, which allows the indication information displayed by the first indicator light unit 610 to be clear at a glance and intuitively distinguished from the information displayed on the display unit 401. At the same time, the design and manufacturing feasibility are strong and the cost-effectiveness is high.

[0129] According to some embodiments, the first indicator light unit 610 is configured to: provide a completely correct indication message when the answer code displayed on the corresponding display unit 401 is consistent with the position sequence and code content of the secret codes in the preset secret code set; and / or provide an error indication message when the answer code displayed on the corresponding display unit 401 is not consistent with the position sequence and code content of the secret codes in the preset secret code set; and / or provide a partially correct indication message when the code content of the answer code displayed on the corresponding display unit 401 is included in the preset secret code set but the position sequence is not consistent with the preset secret code set. According to one embodiment, the completely correct indication message, the error indication message, the partially correct indication message, and the answer code input position indication are distinguished by at least one of the following differences in the color, pattern, brightness, or flashing mode displayed by the corresponding first indicator light unit 610.

[0130] According to some embodiments, the decryptor device 10 is configured to automatically activate or enable the corresponding first indicator light unit 610 to provide a comparison result indication when or after the last digit of the answer code in a set of answer codes is input.

[0131] According to some embodiments, Figure 1-5 As shown, the answer result indication module may include a second indicator light unit 620 corresponding to each group of display units 410, 420, 430, 440, 450, 460, and 470. The second indicator light unit 620 may include the above-mentioned indicator element, referred to as the second indicator light element 621, and is configured to provide a comparison result indication regarding the comparison between the answer, i.e., the answer code set, and the question, i.e., the preset secret code set. According to some embodiments, the second indicator light unit 620 is configured to: provide the number and / or position of correct codes (i.e., the code content included in the preset secret code set) and / or the number and / or position of incorrect codes when the positional order relationship between the codes is not included; and provide the number and / or position of completely correct answer codes, / or the number and / or position of partially correct answer codes, and / or the number and / or position of incorrect answer codes when the positional order relationship between the codes is included.

[0132] According to some embodiments, Figure 1-5As shown, each second indicator light unit 620 may include multiple subunits 620a, each subunit 620a including one or more of the aforementioned indicator light elements 621. These multiple subunits 620a are configured to provide the aforementioned comparison result indication. According to some embodiments, each subunit 620a of the second indicator light unit 620 is configured to provide a comparison result indication associated with a solution code in the input solution code set. More specifically, each subunit 620a of the second indicator light unit 620 may be configured to correspond to a display unit 401 in the set of display units 410, 420, 430, 440, 450, 460, and 470, such that each subunit 620a can provide a comparison result indication associated with the solution code displayed by the corresponding display unit 401. According to some embodiments, the multiple subunits 620a of each second indicator light unit 620 are disposed proximate to one another. Exemplarily, the multiple subunits 620a of each second indicator light unit 620 are divided into multiple rows and / or multiple columns, more specifically arranged in an array, or other patterns that can provide a comparison result indication in an intuitive and clear manner, such as a circle. According to some embodiments, each second indicator light unit 620 is arranged near a corresponding group of display units 410, 420, 430, 440, 450, 460, 470. According to some embodiments, each group of display units 410, 420, 430, 440, 450, 460, 470 is arranged in rows or columns, and the corresponding second indicator light units 620 are arranged at the ends of the rows or columns, such as the beginning and the end. Thus, the second indicator light units 620 can provide relevant information to the user intuitively and clearly, enhancing user experience satisfaction.

[0133] According to some embodiments, the decryptor device 10 is configured to automatically activate or enable the second indicator light unit 620 to provide a comparison result indication when or after the last digit of a solution code in a solution code set is input.

[0134] In some embodiments, the answer result indication module includes one of the first indicator light unit 610 and the second indicator light unit 620 described above. In some embodiments, the answer result indication module includes both the first indicator light unit 610 and the second indicator light unit 620 described above. In some embodiments, the decryption machine device 10 is configured to include multiple game modes. Accordingly, the decryption machine device may further include a game mode selector configured to select a game mode. According to some embodiments, the multiple game modes include an easy mode and an expert mode.

[0135] According to some embodiments, a solution result indication module can be configured to provide a comparison result indication in association with the positional order of the solution codes in the solution code set, including whether the solution code is a completely correct solution code, that is, whether each solution code is a completely correct solution code. Additionally, the solution result indication module can also be configured to indicate a partially correct solution code and / or an incorrect solution code in association with the positional order of the solution codes in the solution code set. For example, these embodiments can correspond to a simple mode among the multiple game modes of the decryption machine device 10. Thus, based on the comparison result indication provided by the solution result indication module, the user can clearly and intuitively determine which display unit 401 in the set of display units 410, 420, 430, 440, 450, 460, and 470 displaying each solution code in the solution code set is displaying which solution code, and whether the solution code is a correct, completely correct solution code, a partially correct solution code, or an incorrect solution code. According to some embodiments, in simple mode, only the first indicator light unit 610, as described above, is operable. In a specific embodiment, the first indicator light unit 610 can be provided in a one-to-one correspondence with the display unit 401 in each group of display units 410, 420, 430, 440, 450, 460, and 470, and in particular, can be provided in a position corresponding to the corresponding display unit 401. In the simple mode, human-computer interaction is enhanced, and relatively clear guidance for answering questions can be provided to the user.

[0136] According to some embodiments, the solution result indication module can be configured to provide ambiguous prompts. According to some embodiments, the solution result indication module can be configured to only indicate the number of completely correct codes, partially correct codes, and / or incorrect codes in the solution code set, without providing a comparison result indication associated with a specific solution code. For example, these embodiments may correspond to the expert mode among the multiple game modes of the decryptor device 10. In some embodiments, in expert mode, only the second indicator light unit 620 described above is operational. In expert mode, the difficulty of solving problems increases, which can stimulate the user's desire for challenge, further develop the user's intellectual activities, and help the user develop more rigorous intellectual thinking.

[0137] Therefore, the decryption machine device 10 proposed in the present disclosure allows operation in game modes of different difficulty levels, meeting the diverse needs of users while ensuring high cost-effectiveness.

[0138] According to some embodiments, Figure 1-2As shown in Figures 4-5, the display module 400 includes multiple groups of display units 410, 420, 430, 440, 450, 460, and 470, each of which is configured to display a corresponding set of input answer codes. In some embodiments, the multiple groups of display units 410, 420, 430, 440, 450, 460, and 470 are arranged in an array of display units 401, wherein each group of display units is arranged in rows or columns. According to some embodiments, each group of display units 410, 420, 430, 440, 450, 460, and 470 in the multiple groups of display units is configured to maintain display of the corresponding set of answer codes after initially displaying the corresponding set of answer codes until the corresponding game session ends. This further enhances human-computer interactivity and allows users to more quickly find the correct answer and complete the question based on the previously entered set of answer codes, thereby improving user interest and experience. According to some other embodiments, each group of display units 410, 420, 430, 440, 450, 460, 470 in the multiple groups of display units is configured to keep displaying the completely correct code and / or partially correct code in the corresponding answer code set after starting to display the corresponding answer code set until the corresponding game session ends.

[0139] In some embodiments, the decryption machine device 10 is configured to terminate a game session upon at least one of the following events: the entered solution code set matches a preset secret code set, i.e., the correct answer is entered, successfully solving the puzzle; the same number of solution code sets as the number of display units are entered; the game time reaches a preset time period, and the game session can be configured to automatically terminate upon reaching the preset time period; or the number of solution code sets entered reaches a preset number. Within the meaning of the present disclosure, a game session is a "hand," "level," or "round" of the game, and more specifically, the process of solving a preset secret code set constitutes a game session.

[0140] For example, Figure 1-2As shown in Figures 4-5 , the decryption device 10 can be configured to include seven groups of display units, namely, a first group of display units 410, a second group of display units 420, a third group of display units 430, a fourth group of display units 440, a fifth group of display units 450, a sixth group of display units 460, and a seventh group of display units 470. Each group of display units includes four display units 401. The preset secret code set may include a four-digit secret code. Of course, the number of groups of display units and the number of display units in each group are exemplary and variable. For example, assuming that the game session has not yet ended when the third answer code set is entered, that is, when the third group of display units 430 displays the third answer code set, the first group of display units 410 will continue to display the entered first answer code set or a portion thereof, and the second group of display units 420 will also continue to display the entered second answer code set or a portion thereof. During subsequent game sessions, the third group of display units 430 will also continue to display the entered third answer code set or a portion thereof, and so on.

[0141] According to some embodiments, each group of display units 410, 420, 430, 440, 450, 460, and 470 in the multiple groups of display units can be set to keep displaying the comparison result indication after starting to display the corresponding comparison result indication until the end of the corresponding game session. This further enhances human-computer interactivity and allows users to find the correct answer to complete the question more quickly based on the previously entered answer code set, thereby enhancing user interest and experience.

[0142] In some embodiments, the first indicator light unit 610 described in any of the above embodiments is configured to maintain the display of the comparison result indication after it begins providing the comparison result indication until the corresponding game session ends. This further enhances human-computer interaction and allows the user to more quickly find the correct answer and complete the question based on the comparison result indication of the previously entered solution code set, thereby increasing user interest and experience.

[0143] In some embodiments, the second indicator light unit 620 described in any of the above embodiments is configured to maintain the display of the comparison result indication after it begins providing the comparison result indication until the corresponding game session ends. This further enhances human-computer interaction and allows the user to more quickly find the correct answer and complete the question based on the comparison result indication of the previously entered solution code set, thereby increasing user interest and experience.

[0144] According to some embodiments, Figure 1As shown, the decryption device 10 further includes an answer submitter 700, which is configured to submit a solution code set. More specifically, after a solution code set is input via the code input module 300, the answer submitter 700 can be operated to submit the solution code set to the decryption device 10. According to some embodiments, the answer submitter 700 can be configured in the form of a button or a touch screen. According to some embodiments, the answer submitter 700 can be configured to be shared with at least a portion of the code input module 300, more specifically, with the code input unit 320 of the code input module 300, which will be described below.

[0145] According to some embodiments, the first indicator light units 610 may be configured to operate in conjunction with the answer submitter 700 so that upon or after a solution code set is submitted via the answer submitter 700, the corresponding first indicator light units 610 are activated or enabled to provide a comparison result indication. For example, if the answer submitter 700 is operated to submit a second solution code set, the first indicator light units 600 corresponding to the second group of display units 420 may be enabled to provide a comparison result indication regarding the comparison result between the second solution code set and the preset secret code result; optionally, these first indicator light units 600 may continue to display the comparison result indication until the game session ends.

[0146] Additionally or alternatively, the second indicator light units 620 may be configured to operate in conjunction with the answer submitter 700 so that upon or after a solution code set is submitted via the answer submitter 700, the corresponding second indicator light units 620 are activated or enabled to provide a comparison result indication. For example, if the answer submitter 700 is operated to submit a second solution code set, the second indicator light units 620 corresponding to the second group of display units 420 may be enabled to provide a comparison result indication regarding the comparison result between the second solution code set and the preset secret code result; optionally, these second indicator light units 620 may continue to display the comparison result indication until the end of the game session.

[0147] In some embodiments, as Figure 1-5As shown, the display module 400 also includes a given code set display unit 480, which is configured to display a given code set, more specifically, to maintain the display of the given code set during the game session. This allows users to intuitively understand the codes that can be selected. In some embodiments, the given code set display unit 480 is configured to include multiple given code display lights 481, each of which can be configured to display a given code. In some embodiments, the multiple given code display lights 481 are arranged in rows and / or columns. In some embodiments, the given code set display unit 480 is configured to display the corresponding preset secret code set at the end of the game session. This makes it easier for users to understand the question and answer information of each game session, allowing users to quickly master game skills.

[0148] According to some embodiments, Figure 1 As shown, code input module 300 is configured to select a given code as a solution code and input the selected given code as the solution code into decryptor device 10. In some embodiments, code input module 300 may include a code selection unit 310 and a code input unit 320. Code selection unit 310 is configured to select a given code from a given code set as the solution code, and code input unit 320 is configured to input the selected given code as the solution code into decryptor device 10. More specifically, code input module 300 is configured to sequentially select and input each solution code in a solution code set when inputting the solution code set.

[0149] In some embodiments, as Figure 1 As shown, the code selection unit 310 may include or be implemented as a knob. The knob may be configured to include multiple gears, each corresponding to a given code. When the knob is rotated to a corresponding gear, the given code corresponding to the gear is selected. In some embodiments, the display unit 401 is configured to operate in conjunction with the knob serving as the code selection unit 310, so that when the knob is switched between various gears, the corresponding display unit 401 synchronously displays the answer code corresponding to each gear.

[0150] In some embodiments, the decryption machine device 10 is configured to automatically provide a preset secret code set. More specifically, at the beginning of each game session, the decryption machine device 10 has already completed the question setting and therefore directly enters the question answering sub-session.

[0151] In some embodiments, the code input module 300 is further configured to input a preset secret code set. More specifically, the preset secret code set is input into the decryption device 10 via the code input module 300. According to some embodiments, the decryption device 10 may be configured such that each game session includes a question-posing sub-session and a question-answering sub-session. More specifically, at the start of each game session, the question-posing sub-session proceeds first, followed by the question-answering sub-session. In some embodiments, during the question-posing sub-session, the code input module 300 is configured to input the preset secret code set into the decryption device 10; while during the question-answering sub-session, the code input module 300 is configured to input the answer code set into the decryption device. The display module 400 then displays the entered answer code and answer code set as the answer code and answer are entered. In some embodiments, the code input module 300 may include a code selection unit 310 and a code input unit 320. During the question-posing sub-step, code selection unit 310 is configured to select a given code from a given code set as a secret code, and code input unit 320 is configured to input the selected given code as the secret code into decryption device 10. During the question-answering sub-step, code selection unit 310 is configured to select a given code from a given code set as an answer code, and code input unit 320 is configured to input the selected given code as the answer code into decryption device 10. In some embodiments, code selection unit 310 may include or be implemented as a knob, and the knob may include multiple positions, each corresponding to a given code. When the knob is rotated to a corresponding position, the given code corresponding to that position is selected. More specifically, display unit 401 is configured to operate in conjunction with the knob serving as code selection unit 310, such that when the knob is switched between positions, corresponding display unit 401 synchronously displays the answer code corresponding to each position.

[0152] In some embodiments, as Figure 1 As shown, the code input unit 320 described in any of the above embodiments can be configured to include a button or be implemented as a button.

[0153] In some embodiments, as Figure 1 As shown, the code selection unit 310 and the code input unit 320 as described in any of the above embodiments are integrated with each other and are provided as a single module. More specifically, the knob as the code selection unit 310 and the button as the code input unit 320 are integrated, and more specifically, the knob can be provided around the button. This allows the code input module 300 to be implemented in a compact structure. In some embodiments, as Figure 1As shown, the decryption device 10 may include only one code input module 300, which includes a knob as a code selection unit 310 and a button as a code input unit 320. In other embodiments, the code input module 300 may be configured as a touch screen, thereby allowing the user to enter the answer code by touch. In some embodiments, the answer submitter 700 may be configured to be shared with the code input unit 320.

[0154] In some embodiments, as Figure 1 As shown, the code input module 300 as described in any of the above embodiments is located in a corner of the shell 100, such as the lower right corner, the lower left corner, or the upper right corner, which makes it convenient for the user to input the answer code while not hindering the user from observing the answer code displayed on the setting display unit 401 and / or the comparison result indication provided by the answer result indication module while entering the answer code.

[0155] According to some embodiments, decryptor device 10 is further configured to provide an input position indication regarding the input position of the answer code to be entered, thereby indicating which position of the answer code in the corresponding answer code set the answer code to be entered is. This is particularly applicable when the predetermined secret code set includes a positional order relationship between multiple secret codes.

[0156] In some embodiments, the plurality of display units 401 in each group of display units 410, 420, 430, 440, 450, 460, 470 are positioned in sequence so that the positional order relationship between the plurality of display units 401 in each group of display units 410, 420, 430, 440, 450, 460, 470 can reflect or present the positional order relationship between the plurality of answer codes in the answer code set. More specifically, each display unit 401 in a group of display units 410, 420, 430, 440, 450, 460, 470 corresponds to the answer code position of a corresponding position in the answer code set, for example, Figure 5Schematically, a group of display units 410, 420, 430, 440, 450, 460, and 470 may include a first display unit 401a, a second display unit 401b, a third display unit 401c, and a fourth display unit 401d, which are arranged in sequence. The input answer code displayed on the first display unit 401a may be the first answer code in the corresponding answer code set. Similarly, the input answer code displayed on the second display unit 401b may be the second answer code in the corresponding answer code set, and so on. Thus, by indicating the position of the corresponding display unit 401 in the group of display units 410, 420, 430, 440, 450, 460, and 470, a corresponding answer code input position indication may be provided to indicate which answer code in the corresponding answer code set the answer code to be input belongs to.

[0157] In some embodiments, a display unit 401 in a group of display units 410, 420, 430, 440, 450, 460, and 470 is further configured to provide an answer code input position indication, indicating which answer code in the corresponding answer code set the answer code to be entered belongs to. In some embodiments, the answer code input position indication is provided by at least one of the color, brightness, pattern, and blinking mode of the display light element 402 of the corresponding display unit 401. By way of example, but not exclusive, a corresponding display unit 401 in a group of display units 410, 420, 430, 440, 450, 460, and 470 can be configured to provide an answer code input position indication by emitting white light or blinking. More specifically, the display unit 401 is configured to operate differently when displaying the answer code than when displaying the answer code input position indication, thereby facilitating user differentiation between the different indications. This provides clear guidance for answer code entry, intuitively informing the user which answer code to enter. Furthermore, this allows for more functionality to be implemented with a reduced number of components, further enhancing human-machine interaction while promoting overall compactness and further improving cost-effectiveness.

[0158] In some embodiments, the first indicator light unit 610 is further configured to provide an answer code input digit indication, indicating which answer code in the corresponding answer code set the answer code to be entered belongs to. In some embodiments, the first indicator light unit 610 is configured to provide the answer code input digit indication using at least one of color, brightness, pattern, or blinking pattern. More specifically, the first indicator light unit 610 is configured to operate differently when providing a comparison result indication than when providing an answer code input digit indication, thereby making it easier for the user to distinguish between the different indications. In some embodiments, the comparison result indication and the answer code input digit indication are distinguished by at least one of the following: color, pattern, brightness, or blinking pattern displayed by the corresponding first indicator light unit 610. This provides the user with clear guidance on answer code entry, intuitively informing them which answer code to enter. Furthermore, this allows for more functionality with a reduced number of components, further enhancing human-computer interaction while promoting overall compactness and cost-effectiveness.

[0159] In some embodiments, decryptor device 10 may be configured to automatically activate the input of the next solution code after each solution code is entered, before completing the input of a solution code set. Here, "activating the input of the next solution code" means allowing the user to enter the next solution code. More specifically, "next" refers to the immediately following solution code.

[0160] In some embodiments, the decryption machine device 10 is configured to automatically activate or enable the corresponding first indicator light unit 610 to provide an answer code input position indication after each answer code in the answer code set is input before completing the input of the answer code set. More specifically, the decryption machine device 10 is configured to automatically activate or enable the first indicator light unit 610 corresponding to the next display unit to provide an answer code input position indication, which allows the first indicator light unit 610 to guide the user's answer code input operation.

[0161] In some embodiments, decryptor device 10 may further include a solution code input digit indication module configured to provide a solution code input digit indication, indicating which digit of the solution code in the corresponding solution code set the solution code to be entered belongs to. In some embodiments, the solution code input digit indication module is configured to be held by housing 100. More specifically, the solution code input digit indication module is configured to be electrically connected to power supply module 200 for power supply by power supply module 200. In some embodiments, the solution code input digit indication module may include a digit indicator light unit corresponding to each display unit 401, each digit indicator light unit including one or more digit indicator light elements. Exemplarily, but not exclusively, the digit indicator light elements may be LEDs. In some embodiments, the digit indicator light elements may have variable color, brightness, or blinking pattern to indicate the solution code input digit. In some embodiments, the digit indicator light elements may be configured to operate independently of other digit indicator light elements. In some embodiments, the solution code input digit indication module is configured to indicate the solution code input digit using at least one of the digit indicator light element's color, brightness, pattern, or blinking pattern. In one embodiment, the digit indicator light unit is positioned adjacent to the corresponding display unit 40. More specifically, the position indicator light unit may be disposed above, below, or beside the corresponding display unit 40 .

[0162] In some embodiments, decryptor device 10 may further include a bit selector 350 configured to select an input bit of a solution code to be entered, where the input bit indicates the bit position of the solution code to be entered within a corresponding solution code set. More specifically, decryptor device 10 is configured to activate input of the solution code when bit selector 350 is operated to select the input bit of the solution code to be entered, i.e., to allow entry of the solution code. The configuration of bit selector 350 allows a user to freely select which bit position of the solution code to enter within a solution code set.

[0163] In some embodiments, the digit selector 350 is configured to select an input digit of the answer code to be entered by activating a display cell 401 in a corresponding group of display cells 410, 420, 430, 440, 450, 460, and 470. More specifically, the multiple display cells 401 in each group of display cells 410, 420, 430, 440, 450, 460, and 470 are positioned sequentially so that the positional order relationship between the multiple display cells in each group reflects the positional order relationship between the multiple answer codes in the answer code set. In this case, because the display cells 401 operate in conjunction with the code input module 300, activating a display cell 401 selects the answer code digit corresponding to that display cell 401, thereby allowing entry of that answer code digit. This allows the user to intuitively and clearly select an input digit. More specifically, the code input module 300 is configured to operate in conjunction with the activated display unit 401, such that when a solution code is entered using the code input module, the activated display unit 401 displays the entered solution code, or the entered solution code overwrites the solution code previously displayed by the activated display unit 401. The latter case also resets the solution code, allowing the user to freely change the entered solution code, adjust the answer, and enhance the fun of the game. In some embodiments, the bit selector 350 can be configured as a knob, button, key, or touch unit. In some embodiments, the decryptor device 10 can include only one bit selector 350, which is operable to select any display unit 401. According to some embodiments, the bit selector 350 can be configured to be shared with at least a portion of the code input module 300; more specifically, the bit selector 350 can be configured to be shared with the code input unit 320. Alternatively, the decryptor device 10 may include a bit selector provided corresponding to each display unit 401, so that when the bit selector is operated, the display unit 401 corresponding to the bit selector is activated or deactivated.

[0164] According to some embodiments, the first indicator light unit 610 may be configured to operate in association with the bit selector 350 so that when the corresponding display unit 401 is activated by the bit selector 350 , the first indicator light unit 610 corresponding to the display unit 401 provides an indication of the input bit of the answer code.

[0165] According to some embodiments, the answer code input bit indication module may be configured to operate in association with the bit selector 350 so that when the corresponding display unit 401 is activated by the bit selector 350 , the bit indicator light unit corresponding to the display unit 401 provides an answer code input bit indication.

[0166] In some embodiments, as Figure 1As shown by way of example, the decryption device 10 may further include a display screen 20, which is electrically connected to the power supply module 200 to be powered by the power supply module 200. The display screen 20 may be disposed on the housing 100 to be held by the housing 100. According to some embodiments, the display screen 20 is configured to display at least one of the following information: game mode; game level; game level; game time (i.e., the elapsed time or remaining time of the current game session); the number of consecutive clears; a given code set; and the like.

[0167] In some embodiments, the decryptor device 10 may further include a touch screen, which is configured to implement at least one of the following: game mode selection; game difficulty level selection; game level selection; game hint selection; and the like.

[0168] According to some embodiments, the decryption machine device 10 is configured to include multiple game modes. For example, based on the difficulty level of the game, the multiple game modes may include the aforementioned simple mode and expert mode. Furthermore, within each of the simple and expert modes, the decryption machine device 10 may be further divided into multiple game levels based on varying difficulty levels, and each game level may include one or more game levels. A game level may correspond to one of the aforementioned game sessions. In some embodiments, the game modes may include single-player mode, human-versus-computer mode, multiplayer mode, etc., depending on the game participants. In some embodiments, the decryption machine device 10 may also include a wireless transmission and reception module or a wired transmission and reception module. In some embodiments, the decryption machine device 10 may also include one or more game mode selectors for selecting a game mode. In some embodiments, the decryption machine device 10 may also include a game level selector for selecting a game level. In some embodiments, the decryption machine device 10 may also include a game level selector for selecting a game level.

[0169] According to one aspect, Figure 6-12 As shown, the present disclosure also provides a selector 800. This selector 800 can be used, for example, in a gaming machine that includes multiple gaming states or modes to select a gaming state or mode. According to some embodiments, the selector 800 can be configured to rotate relative to the housing 100 of the gaming machine, and more specifically, configured to rotate relative to the housing 100 between at least two functional positions, each of which can correspond to a state of the gaming machine (e.g., off, on) or a gaming mode.

[0170] In some embodiments, the selector 800 may include a knob 810 configured to be rotatable relative to the housing 100 between at least two functional positions. Figure 9-10As shown, the housing 100 is provided with one of the mounting shaft 110 or the mounting hole, and the knob member 810 may be provided with the other of the mounting shaft or the mounting hole 811, and the knob member 810 is rotatably provided on the housing 100 via the cooperation between the mounting shaft 110 and the mounting hole 811. According to some embodiments, the selector 800 may further include a positioning structure, and the positioning structure is used to position the knob member 810 at various positions. In some embodiments, the positioning structure may include an elastic member 820 connected to the knob member 810 and a positioning member 830 connected to the elastic member 820, and the elastic member 820 is, for example, configured to be connected to the knob member 810 and the positioning member 830 at two opposite ends. The positioning member 830 is optionally provided integrally with the elastic member 820. The elastic member 820 is illustratively a compressible spring. A mating positioning structure that cooperates with the positioning member 830 may be provided on the housing 100 of the game console. According to one embodiment, as Figure 9-10 As shown, the cooperating positioning structure includes a positioning plate 120, which may be provided with at least two positioning recesses 121, 122, 123, each of which corresponds to a functional position of the selector 800. More specifically, when the knob 810 is in a certain functional position, the positioning member 830 is located in the corresponding positioning recess 121, 122, 123. More specifically, when the knob 810 is not in any functional position, the positioning member 830 abuts against the positioning plate 120 and the elastic member 820 is compressed between the positioning member 830 and the knob 810; as the knob 810 rotates, the knob 810 rotates with the elastic member 820 and the positioning member 830. When the knob 810 is rotated to the functional position, as the positioning member 830 moves to the positioning recesses 121, 122, 123, the elastic member 820 applies a certain elastic urging force to press the positioning member 830 into the positioning recesses 121, 122, 123, thereby giving the user a tactile sensation to let the user know that the knob 810 is now in the functional position, and the knob 810 can be positioned in the functional position. In a specific embodiment, as Figure 1-11 As shown, the positioning member 830 is configured as a spherical member, such as a steel ball.

[0171] According to some embodiments, the selector 800 is further provided with a functional position identification member, which is connected to the knob member 810 so as to be movable with the knob member 810 and is used to provide a functional position indication about the functional position to allow the user to clearly know which functional position they are currently in.

[0172] In some embodiments, as Figure 7 、 9As shown in Figure 10, the knob member 810 can also be provided with a first limiting portion 840 and a second limiting portion 850. The first limiting portion 840 and the second limiting portion 850 are configured to respectively limit the first rotation end position and the second rotation end position of the knob member 810, and the first rotation end position and the second rotation end position respectively correspond to a functional position. The knob member 810 is configured to be rotatable between the first rotation end position and the second rotation end position. More specifically, the housing 100 is further provided with a first matching limiting portion 140 and a second matching limiting portion 150, which respectively cooperate with the first limiting portion 840 and the second limiting portion 850 to achieve limiting. According to one embodiment, the first limiting portion 840 and the second limiting portion 850 are each configured as a protrusion of the knob member 810.

[0173] In some embodiments, the knob 810 can be configured to rotate relative to the housing 100 between three functional positions: an off position, a first game mode position, and a second game mode position. More specifically, the positioning plate 120 of the housing 100 can be provided with a first positioning recess 121 corresponding to the off position, a second positioning recess 122 corresponding to the first game mode, and a third positioning recess 123 corresponding to the third game mode. In the off position, the positioning member 830 is received in the first positioning recess 121; in the first game mode position, the positioning member 830 is received in the second positioning recess 122; and in the second game mode position, the positioning member 830 is received in the third positioning recess 123.

[0174] In some embodiments, as Figure 6-12 As shown, the functional position identification member includes a first arm 870 and a second arm 880 connected to the knob member 810 and protruding relative to the knob member and capable of rotating with the knob member 810. According to one embodiment, when the knob member 810 is in the off position, as shown in FIG. Figure 8-9 As shown, the first arm 870 and the second arm 870 are stored or hidden inside the housing 100, thereby indicating that the device is currently in the off state; when the knob 810 is in the first game mode position, as shown Figure 10-11 As shown, the first arm 870 extends out of the housing 100, thereby indicating that the first game mode is currently in effect. According to a specific embodiment, the first game mode may be a human-machine game mode or a single-player game mode. Thus, only the first arm 870 extending out of the housing 100 can intuitively indicate the current game mode. When the knob 810 is in the second game mode position, as shown in FIG. Figure 12 As shown, the first arm 870 and the second arm 880 are both extended out of the housing 100, thereby indicating that the second game mode is currently in play. According to a specific embodiment, the second game mode may be a player versus player mode. Thus, by extending both arms out of the housing 100, the current game mode is intuitively indicated. In some embodiments, as Figure 6-12 As shown, the first arm 870 and the second arm 880 may be provided with indicators, which can also be used to indicate the current state or game mode. More specifically, the indicators can be configured as signal lights 871 and 881, and the states of the signal lights 871 and 881 can be used to indicate the game state or mode. More specifically, the signal lights 871 and 881 can operate independently of each other, and their color, brightness, flashing pattern, etc. can be changed to provide corresponding indication information. For example, when the knob 810 is in the first game mode position, the signal light 871 on the first arm 870 is illuminated; when the knob 810 is in the second game mode position, the signal lights 871 and 881 on the first arm 870 and the second arm 880 are both illuminated. Exemplarily, the signal lights 871 and 881 can also be set to indicate the current game status. For example, if the signal lights 871 and 881 display yellow, it means that the current stage is the question-posing sub-stage; if the signal lights 871 and 881 display blue, it means that the current stage is the question-answering sub-stage; if the signal lights 871 and 881 display green, it means that the corresponding party wins; if the signal lights 871 and 881 display red, it means that the corresponding party loses.

[0175] In some embodiments, the selector 800 may also include a functional position sensing component, which is configured to generate a sensing signal, which can be sent to the dedicated main control module 500 of the game console, so that the dedicated main control module 500 can activate the corresponding game state or mode based on whether the sensing signal is received or the corresponding sensing signal is received. According to some embodiments, the functional position sensing component may include a first sensing member and a second sensing member provided at at least one functional position, and the first sensing member and the second sensing member can sense each other to generate a sensing signal. The first sensing member is configured to be able to rotate with the knob member 810, so that when the knob member 810 is in a functional position where the second sensing member is provided, the first sensing member can sense each other with the second sensing member in the functional position and generate a sensing signal. In some embodiments, as Figure 9-11As shown, the first sensing element is configured as a magnet 891 fixed relative to the knob 810, and the second sensing element includes a first Hall effect magnetic sensor 892 and a second Hall effect magnetic sensor 893, respectively disposed at the first and second game mode positions. Thus, when the knob 810 is in the off position, the magnet 891 cannot sense the first or second Hall effect magnetic sensor 892, 893, and therefore no sensing signal is generated. The dedicated main control module 500 is configured to shut down the decryptor device 10 at this time. When the knob 810 is in the first game mode position, the magnet 891 can sense the first Hall effect magnetic sensor 892 in the first functional position to generate a first sensing signal. Based on the receipt of the first sensing signal, the main control module 500 controls the decryptor device 10 to enter the first game mode. When the knob 810 is in the second game mode position, the magnet 891 can sense the second Hall effect magnetic sensor 893 in the second functional position to generate a second sensing signal. Based on the receipt of the second sensing signal, the dedicated main control module 500 controls the decryptor device 10 to enter the second game mode. According to some embodiments, the second sensing element may be directly disposed on the circuit board 510 of the main control module 500 .

[0176] According to some embodiments, in the off position, such as Figure 8 As shown, the second arm 880 is configured to abut against the retaining portion 180 on the housing 100 , thereby further ensuring that the knob member 810 is firmly retained in the off position.

[0177] According to some embodiments, the decryption device 10 may include the aforementioned selector 800. It should be noted that although the aforementioned selector 800 proposed in this disclosure is proposed in conjunction with the decryption device 10 proposed in this disclosure, it is clear that the selector 800 can be applied to mode selection of any device as long as there are no technical obstacles.

[0178] In some embodiments, the decryption device 10 may further include a sound module, which is electrically connected to the power module 200 to be powered by the power module 200 and configured to provide sound prompts. In some embodiments, the sound prompts include at least one of the following prompts: a power on / off prompt; a game mode prompt; a level clearance prompt; a correct code set solution prompt; an incorrect code set solution prompt; an operation error prompt; a correct code solution prompt; and the like.

[0179] In some embodiments, as Figure 2-7As shown, the decryptor device may further include a dedicated main control module 500, which may be configured to be electrically connected to the power supply module 200 so as to be powered by the power supply module 200. In addition, the dedicated main control module 500 is further configured to be communicatively connected with other operational or functional modules or components of the decryptor device 10, for example, to control the operation of the functional modules or components in response to the operation of some operational modules or components.

[0180] According to some embodiments, the dedicated main control module 500 is configured to communicate with the code input module 300 and the display module 400 so as to control the corresponding display unit 401 to display the entered answer code in response to the code input module 300 entering the answer code.

[0181] According to some embodiments, the dedicated main control module 500 is configured to be in communication with the code input module 300 so as to be able to receive the answer code set input by the code input module 300. More specifically, the dedicated main control module 500 is further configured to compare the input answer code set with the preset secret code set and provide a comparison result.

[0182] According to some embodiments, the dedicated main control module 500 is configured to be in communication with the answer result indication module so as to be able to control the answer result indication module to provide a comparison result indication regarding the comparison result based on the comparison result. According to some embodiments, the dedicated main control module 500 is configured to control the first indicator light unit 610 to maintain the display of the comparison result indication after it begins providing the comparison result indication until the corresponding game session ends. According to some embodiments, the dedicated main control module 500 is configured to control the second indicator light unit 620 to maintain the display of the comparison result indication after it begins providing the comparison result indication until the corresponding game session ends.

[0183] According to some embodiments, the dedicated main control module 500 is configured to control each display unit group 410, 420, 430, 440, 450, 460, 470 in the plurality of display units to keep displaying the corresponding answer code set after starting to display the corresponding answer code set until the corresponding game session ends. According to some embodiments, the dedicated main control module 500 controls each display unit group 410, 420, 430, 440, 450, 460, 470 in the plurality of display units to keep displaying the completely correct code and / or partially correct code in the corresponding answer code set after starting to display the corresponding answer code set until the corresponding game session ends.

[0184] According to some embodiments, the dedicated main control module 500 is configured to, before completing the input of a set of answer codes, activate the input of the next answer code in response to the input of an answer code in the set of answer codes. According to some embodiments, the dedicated main control module 500 is configured to, before completing the input of a set of answer codes, control the corresponding first indicator light unit 610 to provide an answer code input indication in response to the input of an answer code in the set of answer codes.

[0185] According to some embodiments, the bit selector 350 is configured to be communicatively connected to the dedicated main control module 500. The dedicated main control module 500 is configured to activate the input of the answer code corresponding to the bit in response to the input bit selection operation of the bit selector 350. According to some embodiments, the dedicated main control module 500 is configured to control the bit indicator light unit corresponding to the display unit 401 of the corresponding bit to provide an indication of the input bit of the answer code in response to the input bit selection operation of the bit selector 350.

[0186] According to some embodiments, the answer submitter 700 is configured to be in communication with the dedicated main control module 500. According to some embodiments, the dedicated main control module 500 is configured to control the corresponding first indicator light unit 610 and / or the corresponding second indicator light unit 620 to provide a comparison result indication in response to the submission of the answer code set. According to some embodiments, the dedicated main control module 500 is configured to control the display unit 401 to simultaneously display the answer code set and provide a comparison result indication in response to the submission of the answer code set.

[0187] According to some embodiments, the dedicated main control module 500 is configured to control a given code set display unit 480 to display a preset secret code set at the end of a game session.

[0188] According to some embodiments, at least one of the mode selector, the game level selector, and the game level selector is in communication with the dedicated main control module 500. According to some embodiments, the display screen 20 is in communication with the dedicated main control module 500. According to some embodiments, the touch screen is in communication with the dedicated main control module 500.

[0189] According to some embodiments, the display light element 402 is disposed on the circuit board 510 of the dedicated main control module 500; and / or the indicator light elements 611 and 621 are disposed on the circuit board 510 of the dedicated main control module 500; and / or the given code display light 481 is disposed on the circuit board 510 of the dedicated main control module 500; and / or the position indicator light element is disposed on the circuit board 510 of the dedicated main control module 500. This allows full utilization of the space within the decryptor device 10 and eliminates the need for connecting wires between the corresponding light elements and the circuit board 510, thereby saving space and cost and allowing a very compact structure to be formed in a very cost-effective manner.

[0190] In some embodiments, the preset secret code set may include 2-8 digit secret codes. The decryption device 10 may be configured to have different game modes depending on the number of secret codes included in the preset secret code set. For example, the decryption device 10 may include a 2-digit secret code game mode, a 3-digit secret code game mode, a 4-digit secret code game mode, a 5-digit secret code game mode, a 6-digit secret code game mode, a 7-digit secret code game mode, and an 8-digit secret code game mode, and the decryption device 10 may be configured to switch between these different game modes to activate or enable the corresponding game mode. According to some embodiments, the number of operable display units 401 in each group of display units 410, 420, 430, 440, 450, 460, and 470 of the display module 400 changes accordingly depending on the game mode. For example, in the 2-digit secret code game mode, only two display units 401 in each group of display units are operable; in the 4-digit secret code game mode, only four display units 401 in each group of display units are operable; and so on. In other words, each group of display units 410, 420, 430, 440, 450, 460, 470 is configured so that all or part of the display units in the group are operable according to the corresponding game mode, but not necessarily all of the display units are operable. More specifically, the main control module 500 is configured to enable the operable display units 401 in each group of display units according to the game mode. Similarly, the main control module 500 can also be configured to enable all or part of the first indicator light unit 610 and / or the second indicator light unit 620 and / or the position indicator light element and / or the given code display light 481 corresponding to each group of display units according to the game mode.

[0191] According to another aspect, the present disclosure further provides a display device, more specifically a display device for the decryption device 10 according to any one of the above embodiments. The display device is configured to avoid visual fatigue of the user, and will not cause any damage to the user's eyes even if the display device is used for a long time. Figure 2-3As shown in Figures 4b and 4c, according to some embodiments, a display device includes a light-processing component 900 and a light-emitting component. The light-emitting component may include multiple light-emitting units, each of which may further include one or more light-emitting elements. In a specific embodiment, the light-emitting element is a lamp, such as an LED. In some embodiments, the lamp element has variable color, brightness, and blinking pattern. More specifically, the lamp elements are configured to operate independently of each other. The light-processing component is configured to process light emitted by the light-emitting component and present desired display content. In some embodiments, the light-processing component 900 includes a light-blocking portion and a light-transmitting portion. The light-blocking portion is configured to prevent light from passing through, while the light-transmitting portion is configured to allow light to pass through. The light-blocking and light-transmitting portions work together to control the display content that can be presented by the light emitted by the light-emitting component after being processed by the light-processing component 900. The display content may include, for example, patterns, including rectangles of varying sizes, squares of varying sizes, circles, triangles, hexagons, or other arbitrary shapes. In some embodiments, the light-transmitting portion may be a material cutout; alternatively, the light-transmitting portion may be in the form of a light-transmitting plate, such as an at least translucent white plate.

[0192] In some embodiments, as Figure 4b As shown, a light processing unit 910, 920, 940, 950 is provided for each light emitting unit, and each light processing unit 910, 920, 940, 950 includes a light-transmitting portion 911, 921, 941, 951 and a light-shielding portion 981, 982, 983, 984. In some embodiments, the light processing member 900 may include light processing units 910, 920, 940, 950 having different configurations, for example, to allow different display contents, such as display patterns or shapes, to be presented by using light processing units 910, 920, 940, 950 having different configurations. In some embodiments, the multiple light processing units 910, 920, 940, and 950 can be formed as a single unit. More specifically, the light processing unit 900 can be provided as a single unit. More specifically, the multiple light processing units 910, 920, 940, and 950 of the light processing unit 900 are held together as a single unit via a connecting frame 980. The connecting frame 980 also serves as a light shielding member and can therefore be referred to as a light shielding connecting frame. In some embodiments, the light processing units 910, 920, 940, and 950 can be provided separately from one another.

[0193] In some embodiments, as Figure 1-3 As shown in FIG4a, the display device is further provided with a retaining plate 960, which is configured to at least retain the optical processing member 900 and optionally also provide a certain degree of protection for the optical processing member 900. According to some embodiments, as Figure 2 and 4aAs shown, the retaining plate 960 can be provided as a single piece. Alternatively, the retaining plate 960 can include multiple parts that are separate from each other. According to some embodiments, as Figure 4a As shown, the retaining plate 960 may be provided with mounting holes 961, 962, 964, 965, more specifically, the mounting holes are provided through the retaining plate 960. In some embodiments, as shown Figure 1 and 3 As shown, the transparent portions 911 , 921 , 941 , 951 can be installed in corresponding mounting holes 961 , 962 , 964 , 965 so that the outward-facing surfaces of the transparent portions 911 , 921 , 941 , 951 are generally flush with or slightly protruding relative to the outward-facing surface of the retaining plate 960 .

[0194] According to some embodiments, Figure 4b As shown, each light processing unit 910, 920, 940, 950 may include a protruding mounting portion 9100, 9200, 9400, 9500, and the protruding mounting portion 9100, 9200, 9400, 9500 may be protrudingly arranged relative to at least a portion of the connecting frame 980 and / or at least a portion of the light-shielding portions 981, 982, 983, 984, and the light-transmitting portions 911, 921, 941, 951 are arranged at the free ends of the protruding mounting portions 9100, 9200, 9400, 9500, so that the protruding mounting portions 9100, 9200, 9400, 9500 can extend into the corresponding mounting holes 961, 962, 964, 965 and at this time allow the light-transmitting portions 911, 921, 941, 951 to present corresponding display content at the mounting holes 961, 962, 964, 965. According to one embodiment, the protrusion mounting portions 9100, 9200, 9400, 9500 can be installed in the corresponding mounting holes 961, 962, 964, 965 in an interference fit manner. According to one embodiment, the protrusion mounting portions 9100, 9200, 9400, 9500 can be snap-fitted into the corresponding mounting holes 961, 962, 964, 965. In some embodiments, as Figure 4b As shown, the protruding mounting parts 9100, 9200, 9400, 9500 are provided with limiting structures 9101, 9201, 9401, 9501, and the retaining plate 960 is provided with a matching limiting structure. The limiting structures 9101, 9201, 9401, 9501 of the protruding mounting parts 9100, 9200, 9400, 9500 can cooperate with the matching limiting structure of the retaining plate 960 to limit the depth of the light-transmitting parts 911, 921, 941, 951 inserted into the mounting holes 961, 962, 964, 965. According to one embodiment, as Figure 3As shown, the protrusion mounting parts 9100, 9200, 9400, 9500 include a hollow structure, and at least a portion of the peripheral wall of the protrusion mounting parts 9100, 9200, 9400, 9500 is configured as the above-mentioned light shielding parts 981, 982, 983, 984; optionally, the light shielding parts 981, 982, 983, 984 constitute the peripheral wall of the protrusion mounting parts 9100, 9200, 9400, 9500. In some embodiments, the peripheral wall of the protrusion mounting parts 9100, 9200, 9400, 9500 is configured around the corresponding light emitting unit. Figure 4b As shown, in some embodiments, one or some protrusion mounting portions 9500 include a first part 9403 and a second part 9404 that are integrated or connected together, wherein the light-transmitting portion 951 is arranged at the free end of the first part 9403, the first part 9403 is installed in the corresponding mounting hole 965, and the second part 9404 is arranged around the corresponding light-emitting unit.

[0195] According to some embodiments, Figure 1 and 4b As shown, the light-emitting element includes a display unit 401 according to any of the embodiments of the decryption device 10 described above, and the light-processing element 900 includes a light-processing unit corresponding to each display unit 401, referred to as a first light-processing unit 910. According to some embodiments, the first light-processing unit 910 includes a protruding mounting portion, referred to as a first protruding mounting portion 9100, with a first light-transmitting portion 911 disposed on the first protruding mounting portion 9100. The retaining plate 960 includes a mounting hole for mounting the first protruding mounting portion 9100, referred to as a first mounting hole 961. The first light-transmitting portion 911 extends into the first mounting hole 961. More specifically, the first light-transmitting portion 911 is disposed substantially flush with or slightly protruding from the outer surface of the retaining plate 960.

[0196] According to some embodiments, as 1 and Figure 4b As shown, the light-emitting component includes a first indicator light unit 610 according to any one of the embodiments of the decryption device 10 described above, and the light-processing component 900 includes a light-processing unit corresponding to each first indicator light unit 610, referred to as a second light-processing unit 920. According to some embodiments, the second light-processing unit 920 includes a protruding mounting portion, referred to as a second protruding mounting portion 9200, and a second light-transmitting portion 921 is provided on the second protruding mounting portion 9200; the retaining plate 960 includes a mounting hole for mounting the second protruding mounting portion 9200, referred to as a second mounting hole 962. The second light-transmitting portion 921 extends into the second mounting hole 962, and more specifically, the second light-transmitting portion 921 is provided to be substantially flush with or slightly protruding relative to the outer surface of the retaining plate 960. In some embodiments, as Figure 3 and 4bAs shown, the first indicator light unit 610 is disposed adjacent to the corresponding display unit 401. In this case, the second mounting hole 962 and the corresponding first mounting hole 961 may be separated from each other via a relatively thin partition plate 966.

[0197] According to some embodiments, as 1 and Figure 4b As shown, the light-emitting element includes a second indicator light unit 620 according to any of the embodiments of the decryption device 10 described above, and the light-processing element 900 includes a light-processing unit corresponding to each second indicator light unit 620, referred to as a third light-processing unit. According to some embodiments, the third light-processing unit includes a protruding mounting portion, referred to as a third protruding mounting portion, with a third light-transmitting portion disposed on the third protruding mounting portion; the retaining plate 960 includes a mounting hole for mounting the third protruding mounting portion 0, referred to as a third mounting hole. The third light-transmitting portion extends into the third mounting hole; more specifically, the third light-transmitting portion is disposed substantially flush with or slightly protruding from the outer surface of the retaining plate. According to other embodiments, the light-processing element 900 includes a light-processing unit corresponding to each subunit 620a of the second indicator light unit 620, referred to as a fourth light-processing unit 940. According to some embodiments, the fourth optical processing unit 940 includes a protruding mounting portion, referred to as a fourth protruding mounting portion 9400, and the fourth light-transmitting portion 941 is disposed on the fourth protruding mounting portion 9400. The retaining plate 960 includes a mounting hole for mounting the fourth protruding mounting portion 9400, referred to as a fourth mounting hole 964. The fourth light-transmitting portion 941 extends into the fourth mounting hole 964. More specifically, the fourth light-transmitting portion 941 is disposed substantially flush with or slightly protruding from the outer surface of the retaining plate 960.

[0198] According to some embodiments, as 1 and Figure 4b As shown, the light-emitting element includes a given code display light 481 according to any of the embodiments of the decryption device 10 described above, and the light-processing element 900 includes a light-processing unit corresponding to each given code display light 481, referred to as a fifth light-processing unit 950. According to some embodiments, the fifth light-processing unit 950 includes a protruding mounting portion, referred to as a fifth protruding mounting portion 9500, with a fifth light-transmitting portion 951 disposed on the fifth protruding mounting portion 9500. The retaining plate 960 includes a mounting hole, referred to as a fifth mounting hole 965, for mounting the fifth protruding mounting portion 9600. The fifth light-transmitting portion 951 extends into the fifth mounting hole 965. More specifically, the fifth light-transmitting portion 951 is disposed substantially flush with or slightly protruding from the outer surface of the retaining plate 960.

[0199] According to some embodiments, Figure 1 and 4bAs shown, at least two of the first light processing unit 910, the second light processing unit 920, the third light processing unit or the fourth light processing unit 940, and the fifth light processing unit 950 are configured differently from each other to present different display patterns. This allows the user to intuitively obtain a variety of different display information, enhancing user experience satisfaction.

[0200] According to some embodiments, Figure 4b As shown, the retaining plate 960 includes a first retaining plate portion 960a and a second retaining plate portion 960b. The first retaining plate portion 960a is provided with a plurality of first mounting holes 961 and a plurality of second mounting holes 962, as well as a plurality of third mounting holes or a plurality of fourth mounting holes 964. The second retaining plate portion 960b is provided with a plurality of fifth mounting holes 965. Optionally, the first retaining plate portion 960a and the second retaining plate portion 960b are provided separately from each other. According to some embodiments, the optical processing member 900 includes a first optical processing member portion 900a, a second optical processing member portion 900b, and a third optical processing member portion 900c. The first optical processing member portion 900a may include a plurality of first optical processing units 910 and a plurality of second optical processing units 920. The second optical processing member portion 900b may include a plurality of third optical processing units or a plurality of fourth optical processing units 940. The third optical processing member portion 900c may include a plurality of fifth optical processing units 950. Alternatively, the first optical processing member portion 900a, the second optical processing member portion 900b and the third optical processing member portion 900c are provided separately from each other, or alternatively, the first optical processing member portion 900a and the second optical processing member portion 900b are provided as an integral member.

[0201] According to some embodiments, Figure 4b As shown, the optical processing component 900 further includes an optical processing component portion 900d corresponding to the display screen 20 according to any of the above embodiments, referred to as the fourth optical processing component portion 900d. Optionally, the third optical processing component portion 900c and the fourth optical processing component portion 900d are configured as an integral part.

[0202] According to some embodiments, Figure 4b As shown, the light-emitting element is disposed on the circuit board 510 of the main control module 500, and the connecting frame 980 of the optical processing element 900 can also be configured to be supported by the circuit board 510. More specifically, the protruding mounting portions 9100, 9200, 9400, 9500 of the optical processing units 910, 920, 940, 950 can be configured so that the ends of their peripheral walls abut against the circuit board 510, so that the peripheral walls of the protruding mounting portions 9100, 9200, 9400, 9500 are disposed around the corresponding light-emitting units.

[0203] According to some embodiments, Figure 2As shown, in an embodiment where the display device is used for a decryptor device 10, the retaining plate 960 may be a part of the housing 100 of the decryptor device 10, for example, a cover of the housing 100. It should be noted that the display device proposed in the present disclosure is not limited to the decryptor device proposed in the present disclosure.

[0204] In some embodiments, as Figure 2 As shown, the housing 100 forms a storage cavity. More specifically, the housing may include a housing frame 160, a cover plate 960, and a bottom cover 130. The cover plate 960 and the bottom cover 130 may be mounted to the housing frame 160. The housing 100 may enclose a storage cavity. Optionally, the display device may be disposed in the storage cavity. Optionally, the main control module 500 may be housed in the storage cavity. Optionally, the battery module 200 may be housed in the storage cavity. Of course, other components may be disposed in the storage cavity as needed.

[0205] According to some embodiments, the decryptor device 10 comprises the display device described above.

[0206] The exemplary implementations of the decryption device 10, selector 800 and display device proposed in the present invention are described in detail above with reference to preferred embodiments. However, it will be understood by those skilled in the art that, without departing from the concept of the present invention, various modifications and variations can be made to the above-mentioned specific embodiments, and various combinations of the various technical features and structures proposed in the present invention can be made without exceeding the scope of protection of the present invention.

[0207] The scope of the present disclosure is not limited by the above-described embodiments but by the appended claims and their equivalents.

Claims

1. A decryption device, characterized in that: The decryption device is configured to be used by a user to solve a problem, wherein the problem is a preset secret code set, the preset secret code set includes a plurality of secret codes selected from a given code set, and the given code set includes a plurality of given codes that are different from each other. The decryption device comprises: case; Power supply module; a code input module, disposed on the housing and electrically connected to the power supply module, the code input module being configured to input at least an answer to a question, the answer to the question being a set of answer codes, the number of answer codes included in the set of answer codes being the same as the number of secret codes included in the set of preset secret codes, the answer codes being selected from the given code set; a display module, disposed on the housing and electrically connected to the power supply module, the display module comprising at least one group of display units, each group of display units being configured to display a corresponding set of answer codes; wherein each group of display units includes a plurality of display units, each display unit includes at least one display light element, and each display unit in each group of display units is configured to display a solution code; The decryption device further includes a solution result indication module, which is electrically connected to the power supply module and configured to provide a comparison result indication regarding a comparison result between the solution code set and the preset secret code set. The solution result indication module includes: a first indicator light unit corresponding to each display unit, the first indicator light unit including an indicator light element and configured to provide an indication of the comparison result, the first indicator light unit being arranged above, below, or beside the corresponding display unit; and / or A second indicator light unit is arranged corresponding to each group of display units, the second indicator light unit includes an indicator light element, each of the second indicator light units includes a plurality of subunits, each of the subunits includes one or more indicator light elements, and the plurality of subunits are configured to provide an indication of the comparison result, wherein each group of display units is arranged in columns or rows, and the corresponding second indicator light unit is arranged at the beginning or end of the column or row.

2. The decryption device according to claim 1, characterized in that: The plurality of display units of each group of display units are positioned in sequence so that the positional sequence relationship between the plurality of display units of each group of display units reflects the positional sequence relationship between the plurality of answer codes of the answer code set.

3. The decryption device according to claim 1, characterized in that: The code content of the given code includes at least one of color, number, letter, text, and pattern.

4. The decryption device according to claim 1, characterized in that: The comparison result indication includes at least one of the color, brightness, pattern, and blinking mode of the first indicator light element and / or the second indicator light element.

5. The decryption device according to any one of claims 1 to 4, characterized in that: The comparison result indication includes at least one of the following: completely correct indication information; and / or error indication information; and / or partially correct indication information.

6. The decryption device according to any one of claims 1 to 4, characterized in that: The first indicator light unit is further configured to provide an answer code input digit indication for indicating which digit of the answer code to be input is the answer code in the corresponding answer code set.

7. The decryption device according to any one of claims 1 to 4, characterized in that: The plurality of subunits are disposed close to each other.

8. The decryption device according to claim 7, characterized in that: The plurality of subunits are arranged in rows and / or columns, or in a circle.

9. The decryption device according to any one of claims 1 to 4, characterized in that: Each of the subunits is configured to provide an indication of a comparison result associated with a solution code from the input solution code set.

10. The decryption device according to any one of claims 1 to 4, characterized in that: The comparison result indication includes: The number of completely correct answer codes in the set of answer codes; and / or The number of partially correct answer codes in the set of answer codes; and / or The number of incorrect answer codes in the answer code set.

11. The decryption device according to any one of claims 1 to 4, characterized in that: The display module includes multiple groups of display units.

12. The decryption device according to claim 11, characterized in that: The multiple groups of display units are arranged into an array of display units.

13. The decryption device according to claim 6, characterized in that: The decryptor device further comprises a bit selector, the bit selector being configured to select an input bit of a solution code to be input, the input bit indicating which bit of the solution code to be input is located in the corresponding solution code set.

14. The decryption device according to claim 13, characterized in that: The bit selector is arranged to select an input bit of the answer code to be entered by activating a display cell in a corresponding group of display cells.

15. The decryption device according to any one of claims 1 to 4, characterized in that: The decryption device further comprises a solution code input bit indication module, wherein the solution code input bit indication module is configured to provide a solution code input bit indication to indicate which solution code in the corresponding solution code set the solution code to be input is.

16. The decryption device according to claim 15, characterized in that: The decoded code input position indication module includes a position indicator light unit corresponding to each display unit, and the position indicator light unit includes one or more position indicator light elements.

17. The decryption device according to claim 16, characterized in that: The position indicator light unit is arranged near the corresponding display unit.

18. The decryption device according to claim 17, characterized in that: The position indicator light unit is arranged above, below or beside the corresponding display unit.

19. The decryption device according to claim 18, characterized in that: The answer code input digit indication module is configured to provide the answer code input digit indication through at least one of the color, brightness, pattern, and blinking mode of the digit indicator light element.

20. The decryption device according to claim 16, characterized in that: The decryptor device further comprises a bit selector, the bit selector being configured to select an input bit of a solution code to be input, the input bit indicating which bit of the solution code to be input is located in the corresponding solution code set.

21. The decryption device according to claim 20, characterized in that: The bit selector is arranged to select an input bit of the answer code to be entered by activating a display cell in a corresponding group of display cells.

22. The decryption device according to any one of claims 1 to 4, characterized in that: The display unit is further configured to provide an answer code input digit indication for indicating which digit of the answer code to be input is the answer code in the corresponding answer code set.

23. The decryption device according to claim 22, characterized in that: The answer code input bit indication is provided by at least one of the color, brightness, pattern, and blinking mode of a display light element of a corresponding display unit.

24. The decryption device according to claim 23, characterized in that: The decryptor device further comprises a bit selector, the bit selector being configured to select an input bit of a solution code to be input, the input bit indicating which bit of the solution code to be input is located in the corresponding solution code set.

25. The decryption device according to claim 24, characterized in that: The bit selector is arranged to select an input bit of the answer code to be entered by activating a display cell in a corresponding group of display cells.

26. The decryption device according to any one of claims 1 to 4, characterized in that: The decryptor device further comprises an answer submitter configured to submit the solution code set.

27. The decryption device according to claim 26, characterized in that: The answer submitter is configured as a button.

28. The decryption device according to any one of claims 1 to 4, characterized in that: The code input module is configured to select a given code as a solution code and input the selected given code as the solution code to the decryptor device.

29. The decryption device according to claim 28, characterized in that The code input module includes: a code selection unit configured to select a given code from the given code set as a solution code; and The code input unit is configured to input the selected given code as a solution code into the decryptor device.

30. The decryption machine device according to claim 29, characterized in that: The code selection unit is configured to include a knob, and / or The code input unit is configured to include a button.

31. The decryption device according to claim 30, characterized in that: The decryption device includes a code input module, and the code input module includes a knob and a button.

32. The decryption device according to claim 31, characterized in that: The button is integrated with the knob, and the knob is arranged around the button.

33. The decryption machine device according to any one of claims 1 to 4, characterized in that: The code input module is located at a corner of the housing.

34. The decryption device according to any one of claims 1 to 4, characterized in that: The code input module is configured as a touch screen.

35. The decryption machine device according to any one of claims 1 to 4, characterized in that: The code input module is further configured to input the preset secret code set.

36. The decryption machine device according to any one of claims 1 to 4, characterized in that: The display module further includes a given code set display unit, configured to display the given code set.

37. The decryption device according to claim 36, characterized in that: The given code set display unit includes a plurality of given code display lights, each of which is configured to display a given code.

38. The decryption machine device according to any one of claims 1 to 4, characterized in that: The preset secret code set is configured to include 2-8 digit secret codes.

39. The decryption device according to any one of claims 1 to 4, characterized in that: The decryption device includes a display screen, which is electrically connected to the power supply module. The display screen is configured to display at least one of the following information: Game levels; Game time; Number of consecutive clearances; the given code set; Game Mode; Game level.

40. The decryption machine device according to any one of claims 1 to 4, characterized in that: The decryptor device includes a touch screen, and the touch screen is configured to be used for at least one of the following: Game mode selection; Game difficulty level selection; Game level selection; Game prompt selection.

41. The decryption machine device according to any one of claims 1 to 4, characterized in that: The decryptor device further comprises a game mode selector configured to select a game mode.

42. The decryption machine device according to any one of claims 1 to 4, characterized in that: The decryption device includes a sound module, which is electrically connected to the power supply module and is configured to provide a sound prompt, wherein the sound prompt includes at least one of the following prompts: Power on / off prompt; Game mode tips; Tips for clearing levels; Correct hints for answering code collection; Answer code collection error prompts; Operation error prompts; Correctly answer the code hints.

43. A decryption device, characterized in that: The decryption device is configured to be used by a user to solve a problem, wherein the problem is a preset secret code set, the preset secret code set includes a plurality of secret codes selected from a given code set, and the given code set includes a plurality of given codes that are different from each other. The decryption device comprises: case; Power supply module; a code input module, disposed on the housing and electrically connected to the power supply module, the code input module being configured to input at least an answer to a question, the answer to the question being a set of answer codes, the number of answer codes included in the set of answer codes being the same as the number of secret codes included in the set of preset secret codes, the answer codes being selected from the given code set; a display module, disposed on the housing and electrically connected to the power supply module, the display module comprising at least one group of display units, each group of display units being configured to display a corresponding set of answer codes; Each group of display units includes multiple display units, each display unit includes at least one display light element, each display unit in each group of display units is configured to display a solution code, and at least one display light element in each group of display units is further configured to display a comparison result indication regarding the comparison result between the solution code set and the preset secret code set.

44. The decryption device according to claim 43, characterized in that: The comparison result indicates at least one of a color, brightness, pattern, and blinking mode displayed by the display light elements of each group of display units.

45. The decryption machine device according to claim 43, characterized in that The comparison result indication includes at least one of the following: completely correct indication information; and / or error indication information; and / or partially correct indication information.

46. ​​The decryption device according to any one of claims 43 to 45, characterized in that: The code input module is configured to select a given code as a solution code and input the selected given code as the solution code into the decryptor device; Wherein, the code input module includes: a code selection unit configured to select a given code from the given code set as a solution code; and The code input unit is configured to input the selected given code as a solution code into the decryptor device.

47. The decryption device according to claim 46, characterized in that: The code selection unit is configured to include a knob, and / or The code input unit is configured to include a button.

48. The decryption machine device according to claim 47, characterized in that The decryption device includes a code input module, and the code input module includes a knob and a button.

49. The decryption machine device according to claim 48, characterized in that The button is integrated with the knob, and the knob is arranged around the button.

50. The decryption machine device according to claim 49, characterized in that The knob is configured to include a plurality of gears and is rotatable to switch between the plurality of gears, each gear corresponding to a solution code setting.

51. The decryption machine device according to claim 48, characterized in that The code input module is located at a corner of the housing.

52. A decryption device, characterized in that: The decryption device is configured to be used by a user to solve a problem, wherein the problem is a preset secret code set, the preset secret code set includes a plurality of secret codes selected from a given code set, and the given code set includes a plurality of given codes that are different from each other. The decryption device comprises: case; Power supply module; a code input module, disposed on the housing and electrically connected to the power supply module, the code input module being configured to input at least an answer to a question, the answer to the question being a set of answer codes, the number of answer codes included in the set of answer codes being the same as the number of secret codes included in the set of preset secret codes, the answer codes being selected from the given code set; a display module, disposed on the housing and electrically connected to the power supply module, the display module comprising at least one group of display units, each group of display units being configured to display a corresponding set of answer codes; The code input module is configured to select a given code as a solution code and input the selected given code as the solution code into the decryptor device; Wherein, the code input module includes: a code selection unit configured to select a given code from the given code set as a solution code; and The code input unit is configured to input the selected given code as a solution code into the decryptor device.

53. The decryption machine device according to claim 52, characterized in that: The code selection unit is configured to include a knob, and / or The code input unit is configured to include a button.

54. The decryption machine device according to claim 53, characterized in that The decryption device includes a code input module, and the code input module includes a knob and a button.

55. The decryption machine device according to claim 54, characterized in that: The button is integrated with the knob, and the knob is arranged around the button.

56. The decryption machine device according to claim 55, characterized in that The knob is configured to include a plurality of gears and is rotatable to switch between the plurality of gears, each gear corresponding to a solution code setting.

57. The decryption machine device according to claim 54, characterized in that The code input module is located at a corner of the housing.

58. The decryption machine device according to any one of claims 52 to 57, characterized in that Each group of display units includes a plurality of display units, each display unit includes at least one display light element, and each display unit in each group of display units is configured to display a solution code.

59. The decryption machine device according to claim 58, characterized in that The decryption device further includes a solution result indication module, the solution result indication module being electrically connected to the power supply module and configured to provide a comparison result indication regarding a comparison result between the solution code set and the preset secret code set, the solution result indication module including: a first indicator light unit corresponding to each display unit, the first indicator light unit including an indicator light element and configured to provide an indication of the comparison result, the first indicator light unit being arranged above, below, or beside the corresponding display unit; and / or A second indicator light unit is arranged corresponding to each group of display units, the second indicator light unit includes an indicator light element, each of the second indicator light units includes a plurality of subunits, each of the subunits includes one or more indicator light elements, and the plurality of subunits are configured to provide an indication of the comparison result, wherein each group of display units is arranged in columns or rows, and the corresponding second indicator light unit is arranged at the beginning or end of the column or row.

60. The decryption machine device according to claim 59, characterized in that: The plurality of display units of each group of display units are positioned in sequence so that the positional sequence relationship between the plurality of display units of each group of display units reflects the positional sequence relationship between the plurality of answer codes of the answer code set.

61. The decryption machine device according to any one of claims 52 to 57, characterized in that: The code content of the given code includes at least one of color, number, letter, text, and pattern.

62. The decryption machine device according to claim 59, characterized in that The comparison result indication includes at least one of the color, brightness, pattern, and blinking mode of the first indicator light element and / or the second indicator light element.

63. The decryption machine device according to claim 59, characterized in that The comparison result indication includes at least one of the following: completely correct indication information; and / or error indication information; and / or partially correct indication information.

64. The decryption machine device according to claim 59, characterized in that The plurality of subunits are disposed close to each other.

65. The decryption machine device according to claim 64, characterized in that The plurality of subunits are arranged in rows and / or columns, or in a circle.

66. The decryption device according to any one of claims 59, characterized in that: Each of the subunits is configured to provide an indication of a comparison result associated with a solution code from the input solution code set.

67. The decryption machine device according to claim 59, characterized in that The comparison result indication includes: The number of completely correct answer codes in the set of answer codes; and / or The number of partially correct answer codes in the set of answer codes; and / or The number of incorrect answer codes in the answer code set.

68. The decryption machine device according to claim 58, characterized in that The display module includes multiple groups of display units.

69. The decryption machine device according to claim 68, characterized in that The multiple groups of display units are arranged into an array of display units.

70. The decryption machine device according to any one of claims 52 to 57, characterized in that: The decryptor device further comprises an answer submitter configured to submit the solution code set.

71. The decryption machine device according to claim 70, characterized in that The answer submitter is configured as a button.

72. A display device, characterized in that The display device is used for a decryption machine device according to any one of claims 1 to 71.

73. The display device according to claim 72, characterized in that The display device includes: a light-emitting element, the light-emitting element comprising a plurality of light-emitting units, each light-emitting unit comprising one or more light-emitting elements; and The light processing component is configured to process the light emitted by the light emitting component and present the required display content.

74. The display device according to claim 73, characterized in that The light emitting elements are lamp elements, the color, brightness, and blinking pattern of the lamp elements are variable, and the lamp elements are configured to be independently operable.

75. The display device according to claim 74, characterized in that The optical processing element includes a light-shielding portion and a light-transmitting portion, wherein the light-shielding portion is configured to prevent light from passing through and the light-transmitting portion is configured to allow light to pass through; The light shielding portion and the light transmitting portion cooperate with each other to control the display content that can be presented by the light emitted by the light emitting component after being processed by the light processing component.

76. The display device according to claim 75, characterized in that The light-transmitting portion is configured as a hollowed-out portion of a material; or The light-transmitting portion is provided in the form of a light-transmitting plate.

77. The display device according to claim 75, characterized in that A light processing unit is provided for each of the light emitting units, and one light processing unit includes a light transmitting portion and a light shielding portion.

78. The display device according to claim 75, characterized in that The light processing member includes light processing units with different structures, so as to present different display contents via the light processing units with different structures.

79. The display device according to claim 77 or 78, characterized in that The plurality of light processing units are formed as an integral piece.

80. The display device according to claim 77 or 78, characterized in that The light processing component is provided as an integral component.

81. The display device according to claim 79, wherein The plurality of light processing units of the light processing member are held as an integral piece via a connection frame, and the connection frame is provided as a light shielding member.

82. The display device according to any one of claims 75 to 78, characterized in that The display device is further provided with a holding plate, and the holding plate is configured to hold at least the light processing component.

83. The display device according to claim 82, characterized in that The retaining plate is provided as a single piece; or the retaining plate includes a plurality of parts that are separate from each other.

84. The display device according to claim 82, wherein: The holding plate is provided with mounting holes, and the light transmitting portions are mounted in corresponding mounting holes so that outwardly facing surfaces of the light transmitting portions are flush with or slightly protrude relative to the outwardly facing surface of the holding plate.

85. The display device according to claim 84, characterized in that Each light processing unit includes a protruding mounting portion, which is protruding relative to at least a portion of the light-shielding portion, and the light-transmitting portion is arranged at the free end of the protruding mounting portion so that the protruding mounting portion extends into the corresponding mounting hole and allows the light-transmitting portion to present corresponding display content at the mounting hole.

86. The display device according to claim 85, characterized in that The protruding mounting portion is mounted in the corresponding mounting hole by interference fit or snap fit.

87. The display device according to claim 85, characterized in that The protrusion mounting portion is provided with a limiting structure, and the retaining plate is provided with a matching limiting structure. The limiting structure of the protrusion mounting portion and the matching limiting structure of the retaining plate cooperate with each other to limit the depth of the light-transmitting portion inserted into the mounting hole.

88. The display device according to claim 85, characterized in that The protrusion mounting portion includes a hollow structure, and at least a portion of a peripheral wall of the protrusion mounting portion is configured as the light shielding portion.

89. The display device according to claim 88, characterized in that The light shielding portion constitutes a peripheral wall of the protrusion mounting portion.

90. The display device according to claim 88, wherein The peripheral wall of the protrusion mounting portion is arranged around the corresponding light emitting unit.

91. The display device according to claim 85, wherein The protruding mounting portion includes a first part and a second part that are integrated or connected together, wherein the light-transmitting portion is arranged at the free end of the first part, the first part is installed in the corresponding mounting hole, and the second part is arranged around the corresponding light-emitting unit.