Task unlocking mechanism teenager tablet computer with growth incentive function

By introducing a flip camera mechanism, locking mechanism, and control box mechanism into a tablet computer for teenagers, combined with AI chip and IoT, the technology enables learning supervision and entertainment incentives for teenagers, solving the problem of bypassing control in existing technologies and improving the incentive effect for learning and growth.

CN121996029APending Publication Date: 2026-05-08GUANGZHOU DACHENG TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
GUANGZHOU DACHENG TECH CO LTD
Filing Date
2026-01-28
Publication Date
2026-05-08

AI Technical Summary

Technical Problem

Existing tablet computer control technologies are easily bypassed by teenagers with some knowledge of electronic products, and lack learning supervision and task unlocking incentive functions, resulting in poor control effectiveness.

Method used

A task-unlocking mechanism with built-in growth incentives for a youth tablet computer was designed. It includes a flip camera mechanism, a locking mechanism, and a control box mechanism. Through independent power supply, supervision, and locking systems, combined with an AI chip and an IoT module, it realizes learning status supervision and entertainment incentives.

Benefits of technology

This approach effectively prevents teenagers from circumventing regulations, incentivizes their learning and growth, reduces camera costs, and provides entertainment opportunities fairly and transparently through a points system, thereby minimizing conflicts between parents and teenagers.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The invention discloses a teenager tablet personal computer with a task unlocking mechanism and a growth incentive function, and belongs to the technical field of tablet personal computers. The teenager tablet personal computer with the task unlocking mechanism and the growth incentive function comprises a tablet personal computer body, a rear shell mechanism, an overturning camera shooting mechanism, a locking mechanism and a control box mechanism; a rear shell mechanism is fixed on the tablet computer body, and the rear shell mechanism comprises a shell body. Through the arrangement of the overturning camera mechanism, the locking mechanism and the control box mechanism, the device is provided with a set of power supply, supervision and locking system independent of the tablet computer body, so that learning tasks of teenagers can be supervised and stimulated, the teenagers are effectively prevented from bypassing supervision, and the learning efficiency of the teenagers is improved. Through the arrangement of the bearing, the electric slip ring stator and the turnover camera mechanism, the camera of the device can be used for front shooting and rear shooting, so that the material cost of the camera is effectively reduced, and the shooting quality is ensured.
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Description

Technical Field

[0001] This invention belongs to the field of tablet computer technology, specifically relating to a tablet computer for teenagers with a task unlocking mechanism and a built-in growth incentive function. Background Technology

[0002] Tablet computers are portable and multifunctional smart devices that use a touchscreen as their core operating method and can be used with a stylus or external keyboard. They are lightweight and easy to carry, adapting to various life scenarios. They can meet leisure needs such as audio-visual entertainment and interactive games, as well as assist in light office scenarios such as document processing and remote collaboration. In the field of learning, they can support e-textbooks, online courses, and note-taking functions, becoming a practical tool for teachers and students; in creative scenarios, they can instantly transform inspiration into digital works. Their operation is intuitive and simple, compatible with various applications, seamlessly connecting work, study, and entertainment, balancing mobility and user experience. They are convenient electronic devices that meet the diverse needs of modern life. For teenagers, tablet computers are not only convenient learning tools that can assist in looking up information and taking notes, but also leisure carriers that can meet entertainment and social needs.

[0003] To prevent teenagers from becoming overly addicted to entertainment and negatively impacting their studies and development, many parents use tablets with monitoring functions. Currently, parents often use software-based or built-in monitoring systems to control their children's tablet usage. While this method can effectively manage screen time, both have drawbacks. Firstly, teenagers can bypass software controls by uninstalling the app, closing background processes, changing the system time, or switching to an uncontrolled account in multi-user mode, rendering the control ineffective. Secondly, some educational tablets come with built-in monitoring systems, which teenagers can bypass by entering developer mode, connecting to a computer via a data cable to access engineering mode, or even flashing the firmware. Therefore, existing tablet monitoring technologies are less effective for teenagers with some knowledge of electronic products. Furthermore, many tablets with monitoring functions lack learning supervision and task-based incentive features, failing to positively impact teenagers' learning and development. Summary of the Invention

[0004] The technical problem to be solved by the present invention is to overcome the shortcomings of the prior art and provide a youth tablet computer with a task unlocking mechanism and a growth incentive function.

[0005] The technical solution adopted to solve the above technical problems is: Firstly, a technical solution is provided: a task unlocking mechanism with a built-in growth incentive function for a youth tablet computer, including a tablet computer body, a back shell mechanism, a flip camera mechanism, a locking mechanism, and a control box mechanism. The back shell mechanism is fixed on the tablet computer body. The back shell mechanism includes a housing body. A connecting piece is hinged to one end of the housing body. A movable cover plate is hinged to the other end of the connecting piece. A battery is fixed on the movable cover plate. A second mounting shell is fixed on the movable cover plate. A bearing is fixed on the inner side of the second mounting shell. An electric slip ring stator is also fixed on the second mounting shell. A flip camera mechanism is mounted on the rear shell mechanism, and a locking mechanism and a buckle plate mechanism are fixed on the rear shell mechanism; A control box mechanism is also fixed on the rear shell mechanism, and a support leg mechanism is rotatably connected to the rear shell mechanism.

[0006] Furthermore, a first mounting shell is integrally fixed on the movable cover plate, a transparent window is embedded and fixed on the movable cover plate, the outer ring of the bearing is fixed to the second mounting shell, a connecting piece is fixed on the inner ring of the bearing, and a first magnetic absorbing piece is embedded and fixed on both the first mounting shell and the second mounting shell.

[0007] Through the above technical solution, the tablet computer is equipped with components such as memory, storage chip, processor, and touch screen. The movable cover can be rotated to cover one side of the screen of the tablet computer or one side of the casing through the connecting piece. Through the transparent window, the user can observe the content displayed on the tablet computer screen even when the movable cover is covering the tablet computer. The tablet computer does not have a built-in battery. The rechargeable battery is independent of the tablet computer and can power the tablet computer.

[0008] Furthermore, the housing body has a rectangular slot, a first metal plate is embedded and fixed on the housing body, a Hall sensor is embedded and fixed on the first metal plate, multiple connecting ears are integrally fixed on the housing body, and a limit groove is formed on the movable cover plate.

[0009] Through the above technical solution, the first metal sheet is a ferromagnetic metal. When the movable cover is flipped and folded on one side of the housing body, the first metal sheet is attracted to the first magnetic piece. At the same time, the Hall sensor senses the approach of the first magnetic piece and sends a signal to the flipping camera mechanism.

[0010] Furthermore, the flip camera mechanism includes a miniature servo motor fixedly installed inside the first mounting housing. The output end of the miniature servo motor is connected to a planetary reducer, and the output end of the planetary reducer is connected to the flip camera. The miniature servo motor is electrically connected to a Hall sensor. An electric slip ring rotor is fixed to the other end of the flip camera, and screw slots are provided on the flip camera.

[0011] Through the above technical solution, after receiving the signal sent by the Hall sensor, the micro servo motor will rotate at a certain angle, thereby driving the flip camera to rotate 180 degrees through the planetary reducer. Therefore, when the movable cover plate covers one side of the housing body, the flip camera can be used as a rear camera. The rectangular slot can effectively prevent the housing body from causing motion interference to the flip camera. The electric slip ring rotor and electric slip ring stator cooperate to enable the flip camera to be powered during and after rotation. The connector and screw slot are fixed by micro screws, so that the electric slip ring rotor and electric slip ring stator always remain coaxial and in contact with each other during the rotation of the flip camera, and effectively improve the rotational stability of the flip camera.

[0012] Furthermore, the locking mechanism includes a fingerprint electronic lock fixed to the movable cover plate, with fingerprint sensing modules embedded in the top and bottom of the fingerprint electronic lock, a telescopic bolt movably disposed on the fingerprint electronic lock, and a proximity sensor also embedded in the fingerprint electronic lock. The strike plate mechanism includes a strike plate body fixed to the housing body, with two trigger sensing blocks embedded in the strike plate body, and multiple bolt holes opened on the strike plate body.

[0013] With the above technical solution, since fingerprint electronic locks are equipped with fingerprint sensing modules on both sides, users can unlock the fingerprint electronic lock by using the fingerprint sensing modules regardless of whether the movable cover is attached to the front or back of the device. When the fingerprint electronic lock is locked, the telescopic bolt extends; when the fingerprint electronic lock is unlocked, the telescopic bolt retracts. The trigger sensing block and proximity sensor work together. When the movable cover is attached to one side of the device, the proximity sensor approaches the first trigger sensing block, at which point the fingerprint electronic lock is locked, and the telescopic bolt is engaged in the corresponding bolt hole, thereby locking the movable cover. When the movable cover is attached to the other side of the device, the proximity sensor approaches the second trigger sensing block, and the fingerprint electronic lock will also activate and lock the movable cover. When the movable cover is attached to and locked to the screen of the tablet computer, the user cannot operate the tablet computer.

[0014] Furthermore, the control box mechanism includes a box body fixed to the housing body, a main control circuit board fixed inside the box body, an AI chip soldered on the main control circuit board, and the main control circuit board electrically connected to the flip camera, the battery, and the fingerprint electronic lock. The main control circuit board also has a memory and an IoT module soldered on it. The box body also has a time controller and a PLC controller fixed inside, and the main control circuit board is electrically connected to the time controller and the PLC controller.

[0015] Through the above technical solution, the control box mechanism's system is independent of the tablet's main system. When the device is locked, the flip camera can record video of the teenager. The AI ​​chip can monitor the teenager's learning status and posture through the recorded video and AI visual analysis technology. The memory stores firmware code, operating system code, and code for executing AI visual analysis. The control box mechanism can connect to the parent's mobile phone via an IoT module. Parents can set the teenager's study time tasks and reward entertainment time through software on their mobile phones. After locking the device with the locking mechanism, it is placed upright on the table. At this time, the flip camera will flip and monitor the teenager's learning process. After the teenager completes the study time task, the PLC controller and the time controller control the locking mechanism to unlock for a certain period of time. During this period, the locking mechanism will not lock, and the teenager can use the device for entertainment, thereby stimulating the teenager's learning and growth. Incentives: When the entertainment time set by the parents ends, if the cover plate is on the screen of the tablet, the locking mechanism will relock. If the teenager does not relock the device as required, the PLC controller will directly cut off the battery power after a certain period of time. When the flip camera does not capture the teenager's learning, the time controller will stop timing, thus ensuring that the teenager completes the required learning time. At the same time, parents can view the real-time footage captured by the flip camera or the playback of the learning process at any time via their mobile phones. When parents need to use the device themselves, they can unlock the device with a fingerprint electronic lock and obtain unrestricted access. Through the above process, the device can supervise the teenager's learning and growth and provide entertainment incentives through independent power supply, independent locking system, and independent monitoring system, achieving dual physical and system restrictions. This effectively prevents teenagers from bypassing the control by uninstalling the control app, closing background processes, entering safe mode, or flashing the device.

[0016] Furthermore, the support leg mechanism includes a connecting shaft rotatably connected to the connecting ear, a support leg body fixed to the outside of the connecting shaft, and an anti-slip rubber sleeve glued to the end of the support leg body.

[0017] Through the above technical solution, the connecting shaft and the connecting ear are tightly fitted rotary connections, which have a certain rotational resistance. When the user needs to place the device horizontally to watch movies, the end of the support leg body can be inserted into the limiting groove, and the movable cover can be placed flat on the table. At this time, the support leg body, the movable cover, and the tablet body form a triangular support structure, which allows the device to be placed stably on the table. The anti-slip rubber sleeve can effectively prevent the support leg body from coming off the limiting groove.

[0018] Secondly, based on the first aspect mentioned above, a task unlocking mechanism with built-in growth incentive function system is also provided, including an information collection module, an information processing module, and an instruction action module. The information collection module, information processing module, and instruction action module are all stored in a memory and read and run by an AI chip. The information collection module can collect behavioral videos of teenagers by flipping the camera mechanism.

[0019] Through the above technical solution, the device can record and store videos of the daily behavior of teenage users by flipping the camera mechanism.

[0020] Furthermore, the information processing module can use an AI chip to identify and analyze the video recordings of adolescent behavior collected by the information collection module, calculate the time taken for the adolescent to complete the task, and then add corresponding points to the system based on the time taken for the adolescent to complete the task.

[0021] Through the above technical solution, the device can identify beneficial behaviors of teenagers in video recordings, such as homework, housework, and exercise, calculate the duration of these beneficial behaviors, and then add points to the system based on the duration of the beneficial behaviors.

[0022] Furthermore, the instruction action module can identify the teenager's point redemption request instruction through the AI ​​chip. When the teenager consumes a certain amount of points to redeem entertainment time, the instruction action module unlocks the device through the PLC controller. When the entertainment time ends, the instruction action module disconnects the power supply to the device through the time controller.

[0023] Through the above technical solution, teenage users can redeem a certain amount of tablet entertainment time by consuming a certain number of points, thereby encouraging teenagers to actively complete positive behaviors such as learning tasks, housework tasks, and sports tasks. It can also teach teenagers to obtain entertainment opportunities within the rules, avoid unrestrained tablet use, and replace hard control with a points mechanism, making the acquisition of entertainment time more fair and transparent, and reducing conflicts between parents and teenage users.

[0024] The beneficial effects of this invention are as follows: 1. By setting up a flip camera mechanism, a locking mechanism, and a control box mechanism, the present invention enables the device to have a power supply, monitoring, and locking system independent of the tablet computer itself, thereby enabling the monitoring and motivation of teenagers' learning tasks and effectively preventing teenagers from bypassing the monitoring. 2. By configuring the bearing, the slip ring stator, and the flip camera mechanism, this invention enables the camera of the device to be used for both front and rear cameras, thereby effectively reducing the material cost of the camera and ensuring the shooting quality. Attached Figure Description

[0025] Figure 1 This is a first-view structural diagram of the present invention; Figure 2 This is a second-view structural diagram of the present invention; Figure 3 This is a schematic diagram of the tablet computer body and back cover mechanism of the present invention; Figure 4 yes Figure 3 Enlarged view of point A in the middle; Figure 5 This is a schematic diagram of the flip camera mechanism of the present invention; Figure 6 This is a schematic diagram of the locking mechanism structure of the present invention; Figure 7 This is a schematic diagram of the locking plate mechanism of the present invention; Figure 8 This is a three-dimensional cross-sectional view of the control box mechanism of the present invention; Figure 9 This is a schematic diagram of the support leg mechanism of the present invention; Figure 10 This is a schematic diagram of the growth incentive function system module of the present invention; Figure 11 This is a schematic diagram of the processing flow of the information processing module in the growth incentive function system of the present invention.

[0026] Reference numerals: 1. Tablet PC body; 2. Rear shell mechanism; 201. Shell body; 202. Connecting piece; 203. Movable cover; 204. Battery; 205. Transparent window; 206. First mounting shell; 207. Second mounting shell; 208. Bearing; 209. Slip ring stator; 210. Connector; 211. First magnetic chuck; 212. Rectangular slot; 213. First metal piece; 214. Hall sensor; 215. Connecting ear; 216. Limiting groove; 3. Flip camera mechanism; 301. Miniature servo motor; 302. Planetary reducer; 303. Flip camera; 304. 4. Slip ring rotor; 305. Screw slot; 4. Locking mechanism; 401. Fingerprint electronic lock; 402. Fingerprint sensing module; 403. Telescopic bolt; 404. Proximity sensor; 5. Strike plate mechanism; 501. Strike plate body; 502. Trigger sensing block; 503. Bolt hole; 6. Control box mechanism; 601. Box body; 602. Main control circuit board; 603. AI chip; 604. Memory; 605. IoT module; 606. Time controller; 607. PLC controller; 7. Support leg mechanism; 701. Connecting shaft; 702. Support leg body; 703. Anti-slip rubber sleeve. Detailed Implementation

[0027] To make the objectives, technical solutions, and advantages of this invention clearer, the invention will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative and not intended to limit the invention.

[0028] like Figures 1-4 As shown, a youth tablet computer with a task unlocking mechanism and a growth incentive function includes a tablet computer body 1, a rear shell mechanism 2, a flip camera mechanism 3, a locking mechanism 4, and a control box mechanism 6. The rear shell mechanism 2 is fixed on the tablet computer body 1. The rear shell mechanism 2 includes a shell body 201. One end of the shell body 201 is hinged to a connecting piece 202, and the other end of the connecting piece 202 is hinged to a movable cover plate 203. A battery 204 is fixed on the movable cover plate 203, and a second mounting shell 207 is fixed on the movable cover plate 203. A bearing 208 is fixed to the inner side of the second mounting shell 207. An electric slip ring stator 209 is also fixed to the second mounting shell 207. A first mounting shell 206 is integrally fixed to the movable cover plate 203. A transparent window 205 is embedded and fixed to the movable cover plate 203. The outer ring of the bearing 208 is fixed to the second mounting shell 207. A connector 210 is fixed to the inner ring of the bearing 208. A first magnetic absorbing piece 211 is embedded and fixed to both the first mounting shell 206 and the second mounting shell 207. A rectangular slot 212 is opened on the shell body 201. A first metal piece 213 is embedded and fixedly fixed, and a Hall sensor 214 is embedded and fixedly fixed on the first metal piece 213. Multiple connecting ears 215 are integrally fixed on the housing body 201. A limiting groove 216 is opened on the movable cover 203. The tablet computer body 1 is equipped with components such as memory, storage chip, processor, and touch screen. The movable cover 203 can rotate and cover one side of the screen of the tablet computer body 1 or one side of the housing body 201 through the connecting piece 202. Through the transparent window 205, the user can observe the content displayed on the screen of the tablet computer body 1 even when the movable cover 203 covers the tablet computer body 1. The tablet computer body 1 does not have a built-in battery. The battery 204 is independent of the tablet computer body 1 and can power the tablet computer body 1. The first metal piece 213 is a ferromagnetic metal. When the movable cover 203 is flipped and folded on one side of the housing body 201, the first metal piece 213 is attracted to the first magnetic piece 211. At the same time, the Hall sensor 214 senses the approach of the first magnetic piece 211 and sends a signal to the flip camera mechanism 3.

[0029] like Figures 2-5As shown, a flip camera mechanism 3 is mounted on the rear housing mechanism 2. The flip camera mechanism 3 includes a miniature servo motor 301 fixedly mounted inside the first mounting housing 206. The output end of the miniature servo motor 301 is connected to a planetary reducer 302, and the output end of the planetary reducer 302 is connected to a flip camera 303. The miniature servo motor 301 is electrically connected to a Hall sensor 214. An electric slip ring rotor 304 is fixed to the other end of the flip camera 303. A screw slot 305 is provided on the flip camera 303. After receiving the signal sent by the Hall sensor 214, the miniature servo motor 301 will rotate a certain angle, thereby driving the flip camera 303 through the planetary reducer 302. 3. When rotated 180 degrees, the flip camera 303 can be used as a rear camera when the movable cover 203 covers one side of the housing body 201. The rectangular slot 212 can effectively prevent the housing body 201 from causing motion interference to the flip camera 303. The electric slip ring rotor 304 cooperates with the electric slip ring stator 209 to enable the flip camera 303 to be powered during and after rotation. The connector 210 is fixed to the screw slot 305 by a micro screw, so that the electric slip ring rotor 304 and the electric slip ring stator 209 always remain coaxial and in contact with each other during the rotation of the flip camera 303, and effectively improve the rotational stability of the flip camera 303.

[0030] like Figure 1 , Figure 2 , Figure 6 and Figure 7As shown, a locking mechanism 4 and a latching plate mechanism 5 are fixed on the rear shell mechanism 2. The locking mechanism 4 includes a fingerprint electronic lock 401 fixed on the movable cover plate 203. Fingerprint sensing modules 402 are embedded in the top and bottom of the fingerprint electronic lock 401. A telescopic latch 403 is movably disposed on the fingerprint electronic lock 401. A proximity sensor 404 is also embedded in the fingerprint electronic lock 401. Since fingerprint sensing modules 402 are provided on both sides of the fingerprint electronic lock 401, the user can unlock the fingerprint electronic lock 401 through the fingerprint sensing modules 402 regardless of whether the movable cover plate 203 is in contact with the front or back of the device. When the fingerprint electronic lock 401 is locked, the telescopic latch 403 extends; when the fingerprint electronic lock 401 is unlocked, the telescopic latch 403 retracts. The latching plate mechanism 5 includes components fixed to the shell body 2. The latch plate body 501 on 01 has two trigger sensing blocks 502 embedded and fixed on it. The latch plate body 501 has multiple latch holes 503. The trigger sensing blocks 502 are matched with the proximity sensor 404. When the movable cover 203 is in contact with one side of the device, the proximity sensor 404 approaches the first trigger sensing block 502. At this time, the fingerprint electronic lock 401 locks, and the telescopic latch 403 is inserted into the corresponding latch hole 503, thereby locking the movable cover 203. When the movable cover 203 is in contact with the other side of the device, the proximity sensor 404 approaches the second trigger sensing block 502. The fingerprint electronic lock 401 will also be activated and lock the movable cover 203. When the movable cover 203 is in contact with and locked to the screen of the tablet computer body 1, the user cannot operate the tablet computer body 1.

[0031] like Figures 1-8As shown, a control box mechanism 6 is also fixed on the rear shell mechanism 2. The control box mechanism 6 includes a box body 601 fixed on the shell body 201. A main control circuit board 602 is fixed inside the box body 601. An AI chip 603 is soldered onto the main control circuit board 602. The main control circuit board 602 is electrically connected to the flip camera 303, the battery 204, and the fingerprint electronic lock 401. A memory 604 and an IoT module 605 are also soldered onto the main control circuit board 602. A time controller 606 and a PLC controller 607 are also fixed inside the box body 601. The main control circuit board 602 is electrically connected to the time controller 606 and the PLC controller 607 to control the box mechanism. The system of component 6 is independent of the system of the tablet computer body 1. When the device is locked, the flip camera component 3 can record video of the teenager. The AI ​​chip 603 can monitor the teenager's learning status and posture through the recorded video and AI visual analysis technology. The memory 604 stores firmware code, operating system code, and code for performing AI visual analysis. The control box component 6 can connect to the parent's mobile phone through the Internet of Things module 605. The parent can set the teenager's study time tasks and reward entertainment time through the software on the mobile phone. After locking the device through the locking mechanism 4 and placing it upright on the table, the flip camera component 3 will flip and record the teenager's... The learning process is monitored. After the teenager completes the learning task, the PLC controller 607 and the time controller 606 control the locking mechanism 4 to unlock for a certain period. During this time, the locking mechanism 4 will not lock, allowing the teenager to use the device for entertainment, thus incentivizing their learning and growth. When the entertainment time set by the parents ends, if the movable cover 203 covers the screen of the tablet PC 1, the locking mechanism 4 will relock. If the teenager does not relock the device as required, the PLC controller 607 will directly cut off the power supply to the battery 204 after a certain period. This is done when the flip camera 3 does not capture the teenager learning. When the screen is displayed, the time controller 606 will stop the timer, thus ensuring that the teenager completes the required amount of study time. At the same time, parents can view the real-time footage captured by the flip camera 3 or the playback of the study process at any time via their mobile phones. When parents need to use the device themselves, they can unlock the device and obtain unrestricted access through the fingerprint electronic lock 401. Through the above process, the device can supervise the teenager's learning and growth and provide entertainment incentives through independent power supply, independent locking system and independent monitoring system, achieving dual physical and system restrictions. This effectively prevents teenagers from bypassing the control by uninstalling the control app, closing background processes, entering safe mode or flashing the device.

[0032] like Figure 2 and Figure 9As shown, a support leg mechanism 7 is rotatably connected to the rear shell mechanism 2. The support leg mechanism 7 includes a connecting shaft 701 rotatably connected to the connecting ear 215. A support leg body 702 is fixed to the outside of the connecting shaft 701. An anti-slip rubber sleeve 703 is glued to the end of the support leg body 702. The connecting shaft 701 and the connecting ear 215 are tightly fitted and rotatably connected, which has a certain rotational resistance. When the user needs to place the device horizontally to watch movies, the end of the support leg body 702 can be inserted into the limiting groove 216, and the movable cover plate 203 can be placed flat on the table. At this time, the support leg body 702, the movable cover plate 203 and the tablet body 1 form a triangular support structure, so that the device can be stably placed on the table. The anti-slip rubber sleeve 703 can effectively prevent the support leg body 702 from falling out of the limiting groove 216.

[0033] like Figure 10 and Figure 11 As shown, a task unlocking mechanism with built-in growth incentive system includes an information acquisition module, an information processing module, and an instruction / action module. All three modules are stored in a memory 604 and read and executed by an AI chip 603. The information acquisition module can capture video recordings of teenagers' behavior by flipping the camera mechanism 3. The device can record and store videos of the daily behavior of teenage users. The information processing module can identify and analyze the video recordings of teenagers' behavior captured by the information acquisition module using the AI ​​chip 603, calculate the teenager's task completion time, and add corresponding points to the system based on the completion time. The device can identify beneficial behaviors in the video recordings, such as homework, housework, and exercise, and calculate... The system calculates the duration of these beneficial behaviors and adds points to the system based on the duration. The instruction action module can identify the teenager's point redemption request through the AI ​​chip 603. When the teenager consumes a certain number of points to redeem entertainment time, the instruction action module unlocks the device through the locking mechanism 4 via the PLC controller 607. When the entertainment time ends, the instruction action module disconnects the power supply to the device through the time controller 606. Teen users can redeem a certain amount of tablet entertainment time by consuming a certain number of points, thereby encouraging teenagers to actively complete positive behaviors such as learning tasks, housework tasks, and sports tasks. It can also teach teenagers to obtain entertainment opportunities within the rules, avoid unrestrained tablet use, and replace hard control with a point mechanism, making the acquisition of entertainment time more fair and transparent, and reducing conflicts between parents and teenagers.

[0034] The above description is merely a preferred embodiment of the present invention and is not intended to limit the scope of protection of the present invention.

Claims

1. A task unlocking mechanism with a built-in growth incentive function for a youth tablet computer, comprising a tablet computer body (1), a back cover mechanism (2), a flip camera mechanism (3), a locking mechanism (4), and a control box mechanism (6), characterized in that: The tablet computer body (1) is fixed with a rear shell mechanism (2). The rear shell mechanism (2) includes a shell body (201). One end of the shell body (201) is hinged with a connecting piece (202). The other end of the connecting piece (202) is hinged with a movable cover plate (203). A battery (204) is fixed on the movable cover plate (203). A second mounting shell (207) is fixed on the movable cover plate (203). A bearing (208) is fixed on the inner side of the second mounting shell (207). An electric slip ring stator (209) is also fixed on the second mounting shell (207). The rear shell mechanism (2) is equipped with a flip camera mechanism (3), and the rear shell mechanism (2) is fixed with a locking mechanism (4) and a buckle plate mechanism (5). The rear shell mechanism (2) is also fixed with a control box mechanism (6), and a support leg mechanism (7) is rotatably connected to the rear shell mechanism (2).

2. A task unlocking mechanism for a youth tablet computer with a built-in growth incentive function according to claim 1, characterized in that, The movable cover plate (203) is integrally fixed with a first mounting shell (206), and a transparent window (205) is inlaid and fixed on the movable cover plate (203). The outer ring of the bearing (208) is fixed to the second mounting shell (207), and a connector (210) is fixed on the inner ring of the bearing (208). The first mounting shell (206) and the second mounting shell (207) are both inlaid and fixed with a first magnetic absorbing piece (211).

3. A task unlocking mechanism for a youth tablet computer with a built-in growth incentive function according to claim 1, characterized in that, The housing body (201) has a rectangular slot (212), a first metal plate (213) is embedded and fixed on the housing body (201), a Hall sensor (214) is embedded and fixed on the first metal plate (213), a plurality of connecting ears (215) are integrally fixed on the housing body (201), and a limit groove (216) is provided on the movable cover plate (203).

4. A task unlocking mechanism for a youth tablet computer with a built-in growth incentive function according to claim 2, characterized in that, The flip camera mechanism (3) includes a micro servo motor (301) fixedly installed inside the first mounting shell (206). The output end of the micro servo motor (301) is connected to a planetary reducer (302). The output end of the planetary reducer (302) is connected to a flip camera (303). The micro servo motor (301) is electrically connected to a Hall sensor (214). An electric slip ring rotor (304) is fixed at the other end of the flip camera (303). A screw slot (305) is provided on the flip camera (303).

5. A task unlocking mechanism for a youth tablet computer with a built-in growth incentive function according to claim 1, characterized in that, The locking mechanism (4) includes a fingerprint electronic lock (401) fixed on the movable cover plate (203). The fingerprint electronic lock (401) has fingerprint sensing modules (402) embedded in its top and bottom. The fingerprint electronic lock (401) has a telescopic latch (403) movably provided on its surface. The fingerprint electronic lock (401) also has a proximity sensor (404) embedded in its surface. The latch plate mechanism (5) includes a latch plate body (501) fixed on the housing body (201). The latch plate body (501) has two trigger sensing blocks (502) embedded in its surface. The latch plate body (501) has multiple latch holes (503).

6. A task unlocking mechanism for a youth tablet computer with a built-in growth incentive function according to claim 1, characterized in that, The control box mechanism (6) includes a box body (601) fixed on the housing body (201). A main control circuit board (602) is fixed inside the box body (601). An AI chip (603) is soldered on the main control circuit board (602). The main control circuit board (602) is electrically connected to a flip camera (303), a battery (204), and a fingerprint electronic lock (401). A memory (604) and an Internet of Things module (605) are also soldered on the main control circuit board (602). A time controller (606) and a PLC controller (607) are also fixed inside the box body (601). The main control circuit board (602) is electrically connected to the time controller (606) and the PLC controller (607).

7. A task unlocking mechanism for a youth tablet computer with a built-in growth incentive function according to claim 3, characterized in that, The support leg mechanism (7) includes a connecting shaft (701) rotatably connected to the connecting ear (215), a support leg body (702) is fixed to the outside of the connecting shaft (701), and an anti-slip rubber sleeve (703) is glued to the end of the support leg body (702).

8. A task unlocking mechanism with built-in growth incentive function system, applied to a youth tablet computer with a task unlocking mechanism with built-in growth incentive function as described in any one of claims 1-7, characterized in that, It includes an information acquisition module, an information processing module, and an instruction action module. The information acquisition module, information processing module, and instruction action module are all stored in a memory (604) and are read and run by an AI chip (603). The information acquisition module can collect behavioral videos of teenagers by flipping the camera mechanism (3).

9. A task unlocking mechanism system with built-in growth incentive function according to claim 8, characterized in that, The information processing module can identify and analyze the video recordings of adolescent behavior collected by the information collection module through the AI ​​chip (603), calculate the task completion time of the adolescent, and then add corresponding points to the system based on the task completion time of the adolescent.

10. A task unlocking mechanism system with built-in growth incentive function according to claim 8, characterized in that, The instruction action module can identify the teenager's points redemption request instruction through the AI ​​chip (603). When the teenager consumes a certain amount of points to redeem entertainment time, the instruction action module unlocks the device through the PLC controller (607) and the locking mechanism (4). When the entertainment time ends, the instruction action module disconnects the power supply to the device through the time controller (606).