AI interaction function module, learning tablet computer and interaction method of learning tablet computer

By integrating the AI ​​interactive display screen and homework correction function into one module and connecting them with a Pogo Pin connector, the problem of scattered functions and low integration of existing learning tablets is solved, realizing an efficient and convenient multi-functional learning experience.

CN122018642APending Publication Date: 2026-05-12BEIJING BAIGEFEICHI TECH LLC
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
BEIJING BAIGEFEICHI TECH LLC
Filing Date
2026-01-28
Publication Date
2026-05-12

AI Technical Summary

Technical Problem

Existing learning tablets lack sufficient expansion of AI interaction functions, lack display modules focused on enhanced AI interaction, and have low integration of homework correction and shooting mirrors, resulting in fragmented functions and a disjointed user experience.

Method used

Design an AI interactive function module that integrates an AI interactive display screen and an AI corner mirror for homework correction into one module, and connects it to the main body of the learning tablet via a Pogo Pin connector to achieve a modular and detachable design.

Benefits of technology

It achieves a high degree of functional integration and modularity, enhances the flexibility and convenience of user experience, reduces hardware costs, optimizes system performance and battery life, and creates an immersive multimodal learning environment.

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Abstract

The invention discloses an AI interaction function module, a learning tablet personal computer and an interaction method of the learning tablet personal computer. The AI interaction display screen is arranged on the shell; the communication unit is arranged in the shell and is used for being in communication connection with an intelligent equipment main body; and the function processor is arranged in the shell, and the function processor is configured to receive interaction data of the intelligent equipment main body through the communication unit and control the AI interaction display screen to perform interaction display. The invention provides a highly integrated and separable AI interaction function module, a corresponding learning tablet computer and an interaction method. The key point is that the AI interactive display screen and the AI corner mirror for assisting homework correction are ingeniously integrated through an innovative modular structural design, and stable, convenient and separable connection between the AI interactive display screen and the learning tablet main body is realized.
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Description

Technical Field

[0001] This invention relates to the field of learning tablet technology, specifically to an AI interactive function module, a learning tablet and its interaction method. Background Technology

[0002] With the development of smart educational devices, learning tablets have become important learning tools. However, existing learning tablets have obvious functional and structural limitations, mainly in the following two aspects: First, existing learning tablets lack sufficient expansion capabilities in AI interaction. Most devices rely solely on the main screen for interaction, lacking a dedicated display module that can be flexibly attached and focused on enhancing AI interactions (such as virtual learning partners, attention guidance, and contextualized feedback). This limits the richness of interaction methods and the depth of user experience, making it difficult to provide a more immersive and personalized interactive experience without increasing the complexity and cost of the main unit.

[0003] Secondly, the shooting mirrors used for work correction are usually fixed or independent accessories with low integration and are not effectively integrated with other extended functions of the equipment, resulting in scattered components, fragmented user experience, and the overall functional integration and portability of the device need to be improved.

[0004] Therefore, an innovative structural solution is urgently needed. First, it should be able to extend the functionality of the AI ​​interactive display screen on the learning tablet. Second, it should be able to highly integrate the AI ​​corner mirror shooting function for homework correction with the extended functionality of the AI ​​interactive display screen into a single module, and make this module easy to connect and disconnect from the host, thereby improving the integration of functions and user experience while maintaining the simplicity and flexibility of the device.

[0005] In view of this, the present invention is hereby proposed. Summary of the Invention

[0006] To address the aforementioned technical problems, this invention proposes an AI interactive function module, a learning tablet computer, and an interaction method thereof. Specifically, the following technical solution is adopted: An AI interaction function module includes: shell; An AI interactive display screen is mounted on the housing. A communication unit, disposed within the housing, is used for communication connection with the main body of the smart device; A functional processor is disposed within the housing and is configured to receive interactive data from the main body of the smart device through the communication unit and control the AI ​​interactive display screen to perform interactive display.

[0007] As an optional embodiment of the present invention, the housing is provided with a Pogo Pin connector, which is used for communication connection with the main body of the smart device.

[0008] As an optional embodiment of the present invention, an AI corner mirror is provided on the outer shell, and the AI ​​corner mirror is configured to assist the main body of the intelligent device in obtaining a complete image of the work to be corrected on the supporting plane.

[0009] As an optional embodiment of the present invention, the housing has a front wall and a back wall disposed opposite to each other, the front wall has an opening for mounting the AI ​​interactive display screen, the back wall has a stepped structure, and the Pogo Pin connector is disposed on the horizontal wall of the stepped structure.

[0010] As an optional embodiment of the present invention, the housing has a bottom wall connecting the bottom of the front wall and the back wall, and a top wall connecting the top of the front wall and the back wall. The bottom wall is a horizontal wall surface, and the middle part of the bottom wall has a mounting groove. One end of the bottom wall of the mounting groove is connected to the edge of the bottom wall, and the other end extends obliquely toward the top wall. The AI ​​corner mirror is fitted and installed on the bottom wall of the mounting groove.

[0011] This invention also provides a learning tablet computer, comprising: The learning tablet body includes a shell and a display screen. The shell has an open cavity, and the display screen covers the open cavity of the shell. The AI ​​interaction function module is mounted on the housing and is communicatively connected to the main body of the learning tablet. The AI ​​interaction function module's processor receives interaction data sent by the main body of the smart device and controls the AI ​​interaction display screen to perform interactive display.

[0012] As an optional embodiment of the present invention, a female pin assembly is provided on the side wall of the housing, and the Pogo Pin connector of the AI ​​interaction function module includes a male pin assembly. The male pin assembly and the female pin assembly are in contact and conductive to realize the communication connection between the AI ​​interaction function module and the learning tablet body.

[0013] The present invention also provides an interaction method for the aforementioned learning tablet computer, comprising: The learning tablet receives or generates interactive data and sends the interactive data to the AI ​​interactive function module; The AI ​​interaction function module displays interactive content generated based on the interaction data on the AI ​​interaction display screen to interact with the user using AI.

[0014] As an optional embodiment of the present invention, an interactive method for a learning tablet computer includes: In response to the user's command to enable the homework correction function, the learning tablet body activates the camera; The camera captures an image of the work to be corrected, reflected by the AI ​​corner mirror and placed on the support plane. The learning tablet body recognizes and analyzes the acquired images, automatically grades the assignments, and generates grading result data.

[0015] As an optional embodiment of the present invention, in an interactive method of a learning tablet computer, the main body of the learning tablet computer sends the correction result data to the AI ​​interactive function module. The AI ​​interaction function module displays the correction result data or interactive feedback information generated based on the correction result data on the AI ​​interaction display screen.

[0016] This invention provides a highly integrated, detachable AI interactive functional module, a corresponding learning tablet, and an interaction method. Its core lies in its innovative modular structural design, which cleverly integrates an AI interactive display screen with an AI corner mirror for assisting with homework correction, achieving a stable and convenient detachable connection between the display and the main body of the learning tablet. This solution brings a series of significant synergistic enhancement effects, detailed below: 1. High integration and modular design solve the pain points of scattered functions and low integration.

[0017] Multifunctional integration: The originally separate AI interactive enhanced display function and the image acquisition assistance function for homework correction (AI corner mirror) are integrated into a single physical module. This completely changes the situation of scattered functional components, inconvenient to carry, and cumbersome usage steps in traditional solutions, and achieves a high degree of integration of "one module, dual core functions", which greatly improves the functional density and practical value of the components.

[0018] Detachable Modular Architecture: This AI interaction module, as an independent unit, can be easily connected to or detached from the main learning tablet. This design gives the product unprecedented flexibility: when in-depth interaction or homework assistance is needed, the connected module provides a fully enhanced experience; for ordinary use or portability, the detached module keeps the main unit lightweight and simple. The modular design effectively balances the contradiction between functional expansion and portability.

[0019] 2. Innovative connection and structural design ensures the reliability, ease of use, and aesthetics of the connection.

[0020] Stable and efficient electrical connection: The connection method, which uses Pogo Pin (male pin assembly) to make contact with the female pin assembly on the main body side wall, provides a multi-point, robust, and low-impedance signal and power transmission channel. This connection can withstand minor vibrations during daily use, ensuring continuous, stable, and reliable AI interactive display and data transmission.

[0021] Extremely simplified user operation: The connection structure is usually supplemented with magnetic positioning design to achieve a "one-click" blind insertion experience. Users can quickly establish a stable connection and activate all enhanced functions at the same time without performing precise alignment or complicated operations, which greatly reduces the threshold for use and improves the user-friendliness and convenience.

[0022] Optimized space utilization and industrial design: The connection interface and module body are integrated into the side wall of the device, avoiding any protrusions or openings on the main exterior surface of the host, maintaining the simplicity and integrity of the product's front and back. Details such as the stepped structure on the module shell, the Pogo Pin mounting position, and the tilted mounting groove for the AI ​​corner mirror are all meticulously planned, resulting in a harmonious and compact structure after the module is connected to the host, demonstrating excellent industrial design capabilities.

[0023] 3. Significant cost advantages and performance optimization.

[0024] A low-cost alternative to high-end hardware solutions: An innovative optical path, using a single AI corner mirror to reflect images onto the host's front-facing camera, cleverly replaces the traditional dedicated rear camera or complex binocular camera system. This achieves the same image-searching functionality while significantly reducing hardware bill of materials (BOM cost), enhancing the product's price competitiveness.

[0025] System performance and power consumption optimization: The module's built-in functional processor can independently or collaboratively handle AI interactive display tasks, effectively offloading the computing load from the main processor of the learning tablet and avoiding system lag under multitasking. Meanwhile, centralized power supply and data transmission management also contribute to overall energy consumption optimization, potentially extending the device's battery life.

[0026] 4. It has pioneered a new immersive, multimodal intelligent learning and interaction experience.

[0027] Dual-screen collaboration and scenario-based interaction: The main display screen and the AI ​​interactive display screen on the module can each perform their own functions and work together. For example, the main screen displays the main learning content, while the AI ​​interactive screen focuses on displaying virtual partners, motivational animations, step prompts and other interactive elements to create a more immersive and attractive multimodal learning environment.

[0028] The "Image-Search-Feedback" closed-loop experience: In homework correction scenarios, the integrated design achieves seamless functional linkage: the AI-powered corner mirror assists the host camera in capturing images of desktop assignments and performing correction analysis. The generated correction results or tutoring information can be instantly displayed to the user through the AI ​​interactive screen on the same module. This smooth closed loop from "image acquisition" to "intelligent feedback" greatly improves the efficiency and consistency of learning tutoring.

[0029] 5. It has enhanced the product's market competitiveness and potential for ecosystem expansion.

[0030] Creating a distinct product differentiation: The integrated and detachable smart module design constitutes a unique product selling point and technological barrier, making it stand out among many homogeneous learning tablet products and enhancing its market competitiveness.

[0031] Laying the foundation for ecosystem expansion: Standardized module interfaces and clear communication protocols make it possible to develop more functional expansion modules in the future (such as other sensor modules, professional display modules, etc.), which is conducive to building a smart hardware ecosystem with learning tablets as the main body and extending the product life cycle.

[0032] In summary, the technical solution of this invention, through the core design concept of "integrated design, separable connection, and dual-function collaboration," not only effectively solves a series of specific technical problems in the prior art, such as poor functional expandability, low component integration, fragmented user experience, and high cost, but also redefines the interactive form of learning tablets as a whole, bringing users a new generation of intelligent learning device solutions that are powerful, easy to use, have a smooth experience, and are cost-optimized. Attached Figure Description

[0033] Figure 1 3D structural diagram of the AI ​​interaction function module in this embodiment of the invention Figure 1 ; Figure 2 3D structural diagram of the AI ​​interaction function module in this embodiment of the invention Figure 2 ; Figure 3 An exploded view of the AI ​​interaction function module in an embodiment of the present invention; Figure 4 A schematic diagram illustrating the connection method between the learning tablet body and the AI ​​interaction function module in an embodiment of the present invention; Figure 5 A schematic diagram of the structure of the AI ​​corner mirror in an embodiment of the present invention; Figure 6 This invention provides a schematic diagram of the automatic correction shooting range of a learning tablet computer. Detailed Implementation

[0034] To make the objectives, technical solutions, and advantages of the embodiments of the present invention clearer, the technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments.

[0035] Therefore, the following detailed description of embodiments of the present invention is not intended to limit the scope of the claimed invention, but merely illustrates some embodiments of the invention. All other embodiments obtained by those skilled in the art based on the embodiments of the present invention without inventive effort are within the scope of protection of the present invention.

[0036] It should be noted that, unless otherwise specified, the embodiments and features and technical solutions in the present invention can be combined with each other.

[0037] It should be noted that similar labels and letters in the following figures indicate similar items. Therefore, once an item is defined in one figure, it does not need to be further defined and explained in subsequent figures.

[0038] In the description of this invention, it should be noted that the terms "upper," "lower," etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings, or the orientation or positional relationship commonly used when the product of this invention is in use, or the orientation or positional relationship commonly understood by those skilled in the art. These terms are only for the convenience of describing this invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of this invention. In addition, the terms "first," "second," etc., are only used to distinguish descriptions and should not be construed as indicating or implying relative importance.

[0039] See Figures 1-3 As shown, an AI interaction function module in this embodiment includes: Outer shell 102; An AI interactive display screen 101 is mounted on the housing 102; A communication unit, disposed within the housing 102, is used for communication connection with the main body of a smart device (such as a learning tablet computer); A functional processor is disposed within the housing 102. The functional processor is configured to receive interactive data from the main body of the smart device through the communication unit and control the AI ​​interactive display screen 101 to perform interactive display.

[0040] The AI ​​interaction module provided in this embodiment, through modular and independent design, decouples the enhanced AI interaction display capabilities from the main body of the smart device, achieving the following beneficial technical effects: This module achieves flexibility in functional expansion and customization of user experience. As an independent external component, it can be connected to or detached from the main smart device as needed. When connected, it provides users with a dedicated auxiliary display screen for AI interaction, significantly enhancing the immersive experience and information display dimensions. When detached, it does not affect the basic functions and portability of the main smart device. This detachable modular design meets the diverse needs of users in different scenarios, increasing the freedom and flexibility of product use.

[0041] This design enhances the focus and system performance of AI interaction. The module integrates a dedicated functional processor and an AI interactive display screen, forming a subsystem specifically for handling and executing AI interactive display tasks. This design allows complex AI interactive computation and rendering tasks to be handled independently by the module or collaboratively with the host, effectively offloading the computing load from the main processor of the smart device. This avoids system lag or resource contention issues that may occur when a single host is simultaneously handling core learning applications and high-intensity AI interaction, ensuring the smoothness and real-time performance of the interactive display.

[0042] Hardware resource configuration and overall integration have been optimized. Connection and data exchange with the main unit are achieved through communication units (such as Pogo Pin, Bluetooth, etc.), eliminating the need for complex display driver circuits or occupying limited screen area on the main smart device, resulting in a simpler main unit design. Simultaneously, integrating the AI ​​interactive display screen into a separate module allows for the use of more professional screen types suitable for specific interaction scenarios (such as low power consumption and high refresh rates), achieving optimized hardware resource configuration and elegant integration of overall functions.

[0043] This enhances the product's functional expandability and compatibility. The module defines a clear functional and physical interface, allowing it to function as a standardized expansion accessory. A single smart device can support multiple modules with similar or different functions, and the same module can also be adapted to different models or generations of smart devices, facilitating product ecosystem expansion and user function upgrades, and extending the product lifecycle.

[0044] In summary, this embodiment not only provides users with a powerful and optional AI interaction enhancement solution, but also brings significant improvements in system performance, design flexibility, and product scalability through an innovative modular architecture.

[0045] See Figure 3 As shown, the AI ​​interactive display screen 101 in this embodiment includes an inner screen 1012 and an outer screen 1011.

[0046] To facilitate a convenient communication connection between the AI ​​interaction module and the main body of the smart device in this embodiment, a Pogo Pin connector 200 is provided on the outer casing 102. The Pogo Pin connector 200 is used for communication between the module and the main body of the smart device. In addition to enabling communication, the Pogo Pin connector 200 also solves the power supply problem for the AI ​​interaction module. If a battery is installed inside the outer casing 102 of the AI ​​interaction module, the battery can also be charged through the Pogo Pin connector 200.

[0047] As an optional implementation of this embodiment, an AI corner mirror 300 is provided on the outer shell 102. The AI ​​corner mirror 300 is configured to assist the main body of the intelligent device in acquiring a complete image of the work to be corrected on the supporting plane P (see reference). Figure 6 ).

[0048] This embodiment of an AI interaction function module integrates an AI corner mirror 300, which further produces beneficial technical effects of synergistic enhancement: This solution achieves a high degree of integration between physical functionality and function, creating a multi-functional, all-in-one enhanced accessory. It creatively integrates two core extended functions—enhanced AI interactive display and image-assisted acquisition—within a single AI interactive module. Users only need to connect this single module to simultaneously access both advanced functions, completely eliminating the previous cumbersome process of handling interactive and shooting accessories separately. This integrated design significantly improves the accessory's functional density and practical value.

[0049] This enhances the module's functional positioning and market competitiveness. The integrated module is no longer just a simple display extension or camera accessory, but a "smart learning enhancement terminal" deeply optimized for learning scenarios. Its unique multi-functional integrated design creates significant technical features and product selling points, enhancing the product's differentiated competitiveness in the smart education hardware market and better meeting users' comprehensive needs for device multi-functionality, portability, and a complete user experience.

[0050] In conclusion, the solution of integrating the AI ​​Corner Mirror 300 into the AI ​​Interactive Function Module, through ingenious physical integration and functional synergy, not only solves the core problems of scattered components and low integration in traditional solutions, but also creates a new intelligent learning expansion mode that is smooth in experience, convenient to use, and powerful in function, with significant technical effects.

[0051] Furthermore, in one embodiment of the AI ​​interactive function module, the housing 102 has a front wall and a back wall arranged opposite to each other. The front wall has a mounting opening for mounting the AI ​​interactive display screen 101, and the back wall has a stepped structure 103. The Pogo Pin connector 200 is disposed on the horizontal wall of the stepped structure. Thus, when installing the AI ​​interactive function module on the main body of the smart device, the stepped structure 103 can be placed on top of the main body of the smart device. The Pogo Pin connector 200 on the stepped structure 103 can directly contact and conduct with the Pogo Pin connector on the top of the main body of the smart device. The stepped structure 103 can also abut against the top of the screen of the main body of the device, ensuring simple and convenient assembly of the AI ​​interactive function module and the main body of the smart device, as well as stability after assembly.

[0052] The outer casing 102 described in this embodiment has a bottom wall connecting the bottom of the front wall and the back wall, and a top wall connecting the top of the front wall and the back wall. The bottom wall is a horizontal wall surface, and the middle part of the bottom wall has a mounting groove 104. One end of the bottom wall of the mounting groove 104 is connected to the edge of the bottom wall, and the other end extends obliquely toward the top wall. The AI ​​corner mirror 300 is fitted and installed on the bottom wall of the mounting groove 104.

[0053] In this embodiment, the bottom wall is a horizontal wall, which facilitates placement when the AI ​​interaction function module is detached from the main body of the smart device. Furthermore, the installation of the AI ​​corner mirror 300 in this embodiment allows the AI ​​corner mirror 300 to face the work to be corrected on the supporting plane when the AI ​​interaction function module is installed on the main body of the smart device. This enables the camera of the main body of the smart device to acquire a complete image of the work to be corrected through the AI ​​corner mirror 300 for automatic correction.

[0054] See Figure 5 As shown, in this embodiment, the main body of the smart device is configured to form a preset angle β with the supporting plane; the AI ​​corner mirror 300 has a first side L1 close to the camera of the main body of the smart device and a second side L2 opposite to the first side L2, and the lens width D between the first side L1 and the second side L2 is not greater than 12mm; the preset angle β is configured to cooperate with the lens width D, so that the camera can obtain a complete image of the work to be corrected on the supporting plane through the AI ​​corner mirror 300.

[0055] Based on the above technical solution, this embodiment uses a small-sized AI corner mirror 300 to achieve automatic correction of the main body of the intelligent device, which has the following technical effects: Significantly reducing the size of the corner mirror and optimizing product appearance and portability: By controlling the lens width D of the AI ​​Corner Mirror 300 to within 12mm (for example, a significant reduction from the commonly seen 30mm), the local structure of the AI ​​interaction function module integrated into the AI ​​Corner Mirror 300 becomes thinner and more compact. This effectively reduces the overall protruding volume of the AI ​​interaction function module, making the product appearance more concise and aesthetically pleasing, significantly improving the product's portability and grip comfort, and providing greater room for innovation in industrial design (ID).

[0056] While reducing size, the integrity of the shooting function is ensured: by coordinating and optimizing the support angle (preset angle β) of the protective case with the specific small-sized lens width D, the effective light path reflection area that may be lost due to the reduction in lens size is precisely compensated. This design of angle and size ensures that the camera can capture a complete and intact image of the work to be corrected on the support plane through the small-sized AI corner mirror 300, solving the technical problems of incomplete shooting, wasted field of view, or image ghosting caused by simply reducing the size of the lens, thus achieving structural miniaturization without sacrificing the core correction function.

[0057] Furthermore, the length L1 of the first side is less than the length L2 of the second side.

[0058] The small-sized AI corner mirror 300 described in this embodiment includes a third side connecting one end of the first side L1 and the second side L2, and a fourth side connecting the other end of the first side L1 and the second side L2. The first side L1, the second side L2, the third side, and the fourth side together form an isosceles trapezoidal structure.

[0059] In this embodiment, the first side L1 is connected to the third and fourth sides by a rounded corner transition.

[0060] In this embodiment, the length L1 of the first side and the width D of the lens satisfy the following condition: L1≥D; the ratio of the length L2 of the second side to the length L1 of the first side is between 1.5:1 and 3:1.

[0061] In this embodiment, the main body of the smart device is at a preset angle β of 65°±1° with respect to the supporting plane.

[0062] like Figure 4 As shown, this embodiment also provides a learning tablet computer, including: The learning tablet body 400 includes a housing and a display screen. The housing has an open cavity, and the display screen covers the open cavity of the housing. The AI ​​interaction function module 100 is disposed on the housing and is communicatively connected to the learning tablet body 400. The AI ​​interaction function module 100's function processor receives the interaction data sent by the smart device main body 400 and controls the AI ​​interaction display screen 101 to perform interactive display.

[0063] Furthermore, in this embodiment, a female pin assembly is provided on the side wall of the housing, and the Pogo Pin connector of the AI ​​interaction function module 100 includes a male pin assembly. The male pin assembly and the female pin assembly are in contact and conductive to realize the communication connection between the AI ​​interaction function module and the learning tablet body.

[0064] This embodiment, through the specific configuration of the contact conduction structure between the male and female pin components, brings the following significant technical effects to the detachable connection between the AI ​​interaction function module 100 and the learning tablet body 400: A stable and reliable electrical and mechanical connection is achieved. The cooperation between the male and female pin assemblies provides a multi-point, compact physical connection interface with a certain contact pressure. This structure ensures the stability and low impedance characteristics of the power and data signal transmission paths, effectively resisting minor vibrations or shaking during daily use and preventing connection interruptions, thereby guaranteeing the continuous reliability of AI interactive display and data transmission.

[0065] This greatly simplifies the user connection process and enhances the ease of use. The connection structure is typically designed as a non-directional or foolproof blind-plug interface. When assembling the module, users do not need precise alignment or cumbersome screw fixing; they only need to roughly attach the module to the corresponding position on the side wall of the main body. Relying on magnetic or snap-fit ​​auxiliary positioning mechanisms, the male and female pin components will automatically align and achieve reliable conductivity. This "one-click" operation method drastically simplifies the user process, enables rapid activation of enhanced functions, and improves the overall usability and user-friendliness of the product.

[0066] This design facilitates a compact, modular design, enhancing product aesthetics and maintainability. Integrating the connection interfaces into the side wall fully utilizes the side space of the equipment, avoiding protrusions or openings on the front or back of the main unit, thus maintaining the simplicity and integrity of the main exterior. This side-connection method allows for a seamless, integrated form where modules smoothly connect to the main unit's contours. Simultaneously, the modular, standardized pin interface design facilitates production assembly, testing, and subsequent repairs and replacements, reducing manufacturing and maintenance costs.

[0067] This provides an efficient infrastructure channel for the multi-functional integrated module. Through this set of high-bandwidth, high-reliability electrical connection channels, it not only transmits display data and commands to the AI ​​interactive display screen and provides power and data interaction for the module's built-in processor, but also provides signal and power support to other functional units integrated within the same module (such as auxiliary lighting LEDs and status sensors required for the AI ​​corner mirror). A single interface enables centralized management and service of complex multi-functional modules, serving as a key technological foundation supporting highly integrated designs.

[0068] It strikes a balance between separability and functional integrity. Physically, the connection structure allows for the "separability" of modules, meeting the core needs of users for on-demand use and easy storage. Simultaneously, electrically and logically, it enables complete "functional integration" upon connection, allowing the separated modules to quickly become organic extensions of the host's functional system. This design cleverly resolves the contradiction between the lack of flexibility in fixed integration and the disjointed experience of external accessories.

[0069] In summary, the male and female pin assembly connection scheme disclosed in this embodiment is not only an efficient electrical interconnection method, but also a key physical support for realizing product modularization, intelligence, and user experience optimization. With its stable, convenient, and compact characteristics, it strongly supports the reliable implementation and smooth experience of the aforementioned AI interactive function module 100 and its integrated enhanced functions on the entire device.

[0070] Specifically, the female needle assembly includes multiple female needles, which are mounted on the side wall of the housing and at least partially exposed; the male needle assembly includes multiple retractable male needles, each retractable male needle including a male needle shaft, a male needle tube, and a telescopic spring. The male needle shaft is retractably mounted inside the male needle tube via the telescopic spring. The male needle tube is fixed to the functional expansion module 100, and the male needle shaft extends out of the expansion module. The male needle shafts of the male needle assembly and the female needles of the female needle assembly are in one-to-one contact. When the male needle shaft is pressed back to the conductive position relative to the male needle tube, the male needle assembly and the female needle assembly are in contact and connected.

[0071] Optionally, the female needle assembly described in this embodiment is fixed to the side wall of the housing by in-mold injection molding.

[0072] Optionally, the male pin assembly is fixed to the plastic housing of the functional expansion module by cold pressing.

[0073] The learning tablet computer in this embodiment includes: A female needle magnet is disposed inside the housing and close to the female needle assembly; A male pin magnet is disposed within the functional expansion module 100 and is located close to the male pin assembly; The male needle magnet and the female needle magnet attract each other, achieving contact and conductivity between the male needle assembly and the female needle assembly.

[0074] Specifically, the male needle assembly in this embodiment includes a first male needle group 3 and a second male needle group 4, and the female needle assembly includes a first female needle group 7 and a second female needle group 8. The first male needle group 3 and the first female needle group 7 are in corresponding contact and conduction, and the second male needle group 4 and the second female needle group 8 are in corresponding contact and conduction.

[0075] The male needle magnet in this embodiment includes a first male needle magnet 1 and a second male needle magnet 2. The first male needle magnet 1 is disposed on the side of the first male needle group 3 away from the second male needle group 4, and the second male needle magnet 2 is disposed on the side of the second male needle group 4 away from the first male needle group 3. The female needle magnet includes a first female needle magnet 5 and a second female needle magnet 6. The first female needle magnet 5 is disposed on the side of the first female needle group 7 away from the second female needle group 8, and the second female needle magnet 6 is disposed on the side of the second female needle group 8 away from the first female needle group 7. The first male needle magnet 1 and the first female needle magnet 5 attract each other, and the second male needle magnet 2 and the second female needle magnet 6 attract each other.

[0076] The female needle assembly 7 described in this embodiment includes a first female needle cable 9 and a second female needle cable 10. The first female needle cable 9 is electrically connected to the first female needle group 7, and the second female needle cable 10 is electrically connected to the second female needle group 8.

[0077] This embodiment also provides an interaction method for the aforementioned learning tablet computer, including: The learning tablet receives or generates interactive data and sends the interactive data to the AI ​​interactive function module; The AI ​​interaction function module displays interactive content generated based on the interaction data on the AI ​​interaction display screen to interact with the user using AI.

[0078] This embodiment of an interactive method for a learning tablet computer includes: In response to the user's command to enable the homework correction function, the learning tablet body activates the camera; The camera captures an image of the work to be corrected, reflected by the AI ​​corner mirror and placed on the support plane. The learning tablet body recognizes and analyzes the acquired images, automatically grades the assignments, and generates grading result data.

[0079] This embodiment of an interactive method for a learning tablet computer includes: The learning tablet sends the correction result data to the AI ​​interaction function module. The AI ​​interaction function module displays the correction result data or interactive feedback information generated based on the correction result data on the AI ​​interaction display screen.

[0080] An interactive method for a learning tablet computer according to this embodiment further includes a state perception and feedback step: The learning tablet computer collects state data related to the user's state in real time through its sensors or cameras; The learning tablet computer analyzes the state data to determine the user's current state category; Based on the state category, it generates corresponding interactive prompt data and sends it to the AI ​​interactive function module; The AI ​​interactive display screen of the AI ​​interactive function module dynamically displays visual feedback content matching the state category according to the interactive prompt data.

[0081] In an interactive method for a learning tablet computer according to this embodiment, the user state category includes at least one of a focused state, a distracted state, and a fatigued state; the visual feedback content includes positive incentive animations for maintaining or encouraging a focused state, warning icons or text for reminding of a distracted state, and soothing images or prompts for suggesting a rest.

[0082] In an interactive method for a learning tablet computer according to this embodiment, when the user's state category is a focused state and the duration exceeds a first preset threshold, the visual feedback content is to display learning progress rewards or virtual achievement icons.

[0083] An interactive method for a learning tablet computer according to this embodiment further includes: when the user's state category is a distracted state or a fatigued state, and the duration exceeds a second preset threshold, the AI ​​interactive function module outputs a tactile or auditory reminder signal through its built-in micro vibration motor or speaker, and the AI ​​interactive display screen synchronously displays the corresponding reminder content.

[0084] In this embodiment, an interactive method for a learning tablet computer includes a homework grading mode where the visual feedback content further includes: dynamically displaying a grading progress indicator animation on the AI ​​interactive display screen during the grading process; and displaying differentiated result feedback animations based on the grading results after completion, wherein a celebratory animation is displayed for homework results that are all correct or have a high accuracy rate; and an encouraging animation combined with error prompts is displayed for homework results that contain errors.

[0085] An interactive method for a learning tablet computer in this embodiment further includes a schedule management interaction: the learning tablet computer sends schedule reminder information to the AI ​​interaction function module; the AI ​​interaction function module's AI interaction display screen displays the time, the next learning task reminder, or the rest reminder in a predetermined style.

[0086] The above embodiments are only used to illustrate the present invention and are not intended to limit the technical solutions described herein. Although the present invention has been described in detail with reference to the above embodiments, the present invention is not limited to the specific embodiments described above. Therefore, any modifications or equivalent substitutions to the present invention, as well as all technical solutions and improvements that do not depart from the spirit and scope of the invention, are covered within the scope of the claims of the present invention.

Claims

1. An AI interaction function module, characterized in that, include: shell; An AI interactive display screen is mounted on the housing. A communication unit, disposed within the housing, is used for communication connection with the main body of the smart device; A functional processor is disposed within the housing and is configured to receive interactive data from the main body of the smart device through the communication unit and control the AI ​​interactive display screen to perform interactive display.

2. The AI ​​interaction function module according to claim 1, characterized in that, The housing is provided with a Pogo Pin connector, which is used for communication connection with the main body of the smart device.

3. The AI ​​interaction function module according to claim 2, characterized in that, The outer casing is equipped with an AI corner mirror, which is configured to assist the main body of the intelligent device in acquiring a complete image of the work to be corrected on the supporting plane.

4. The AI ​​interaction function module according to claim 3, characterized in that, The housing has a front wall and a back wall arranged opposite to each other. The front wall has an opening for mounting the AI ​​interactive display screen. The back wall has a stepped structure. The Pogo Pin connector is located on the horizontal wall of the stepped structure.

5. The AI ​​interaction function module according to claim 4, characterized in that, The housing has a bottom wall connecting the bottom of the front wall and the back wall, and a top wall connecting the top of the front wall and the back wall. The bottom wall is a horizontal wall surface and has a mounting groove in the middle. One end of the bottom wall of the mounting groove is connected to the edge of the bottom wall, and the other end extends obliquely toward the top wall. The AI ​​corner mirror is fitted and mounted on the bottom wall of the mounting groove.

6. A learning tablet computer, characterized in that, include: The learning tablet body includes a shell and a display screen. The shell has an open cavity, and the display screen covers the open cavity of the shell. The AI ​​interaction function module as described in any one of claims 1-5 is disposed on the housing and is communicatively connected to the learning tablet body; The AI ​​interaction function module's processor receives interaction data sent by the main body of the smart device and controls the AI ​​interaction display screen to perform interactive display.

7. A learning tablet computer according to claim 6, characterized in that, A female pin assembly is provided on the side wall of the housing, and the Pogo Pin connector of the AI ​​interaction function module includes a male pin assembly. The male pin assembly and the female pin assembly are in contact and conductive to realize the communication connection between the AI ​​interaction function module and the learning tablet body.

8. An interactive method for a learning tablet computer as described in claim 6 or 7, characterized in that, include: The learning tablet receives or generates interactive data and sends the interactive data to the AI ​​interactive function module; The AI ​​interaction function module displays interactive content generated based on the interaction data on the AI ​​interaction display screen to interact with the user using AI.

9. The interactive method for a learning tablet computer according to claim 8, characterized in that, include: In response to the user's command to enable the homework correction function, the learning tablet body activates the camera; The camera captures an image of the work to be corrected, reflected by the AI ​​corner mirror and placed on the support plane. The learning tablet body recognizes and analyzes the acquired images, automatically grades the assignments, and generates grading result data.

10. The interactive method for a learning tablet computer according to claim 9, characterized in that, The learning tablet sends the correction result data to the AI ​​interaction function module. The AI ​​interaction function module displays the correction result data or interactive feedback information generated based on the correction result data on the AI ​​interaction display screen.