Scanning pen and tablet learning machine with same

By adopting magnetic modules and automated control technology in intelligent scan pens and tablet learning machines, the problems of cumbersome and high cost of existing equipment are solved, and more efficient and convenient user experience and device integration are achieved.

CN222980032UActive Publication Date: 2025-06-13NANJING BAIGEZHENGLIU NETWORK TECH CO LTD
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Patent Information

Application Number
CN202421974919.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-14
Publication Date
2025-06-13
Estimated Expiration
2034-08-14

AI Technical Summary

Technical Problem

The existing smart scanner and smart learning machine exist independently, the use process is cumbersome, the technical threshold is high, and it increases the cost of user purchase and charging complexity, affecting the user experience.

Method used

A scanning pen is designed, and an electromagnetic adsorption connection is made with a magnetic absorption module and the main control module automatically switches the sleep or wake-up mode according to the adsorption state. At the same time, the flat panel learning machine automatically establishes a wireless communication connection with the scanning pen through the magnetic suction module, starts the scanning program, and realizes the instant transmission and processing of image information.

Benefits of technology

It simplifies user operations, improves user experience, reduces purchasing costs and charging complexity, realizes the integration of the scanner and tablet learning machine, and improves the overall performance of the product.

✦ Generated by Eureka AI based on patent content.

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  • Figure CN222980032U_ABST
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Patent Text Reader

Abstract

The utility model discloses a scanning pen and a tablet learning machine with the scanning pen, and the scanning pen comprises a pen body; the scanning pen magnetic suction module is arranged in the pen body; the scanning pen main control module is arranged in the pen body and is in communication connection with the scanning pen magnetic attraction module, and the scanning pen main control module controls the scanning pen to enter a sleep mode when acquiring that the pen body is in an attraction state through the scanning pen magnetic attraction module. And the scanning pen main control module awakens the scanning pen to end the sleep mode when acquiring that the pen body is in the separated state through the scanning pen magnetic attraction module. The scanning pen can be matched with intelligent equipment (such as a tablet learning machine), integration of products and functions is facilitated, the use operation of a user is simplified, and the use experience of the user is improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of intelligent learning equipment, and in particular to a scanning pen and a tablet learning machine with the scanning pen. Background Art

[0002] With the development and progress of science and technology, intelligent learning machines are increasingly being used to assist students in their studies. Most of the existing intelligent learning machines on the market are in the form of tablet computers. Through customized program design, intelligent systems suitable for students to study in related fields are developed.

[0003] In addition, as another widely used intelligent learning hardware, the smart scanning pen can scan and recognize text, and display the scanned and recognized text content through the display screen. Some smart scanning pens have a translation function, which can automatically translate the recognized text content and then display it or play it by voice. Existing smart scanning pens are generally independent products with a display screen to display the scanned content. However, due to the size limitation of the smart scanning pen itself, the display screen of the smart scanning pen is small in size and has poor display effect, which greatly affects the user experience. Therefore, by installing a scanning program in the intelligent learning machine, the smart scanning pen sends the scanned content to the intelligent learning machine, which is processed and displayed by the scanning program. The display effect is significantly improved, which can greatly enhance the user experience.

[0004] However, the above method still has the following problems:

[0005] 1. The existing smart scanning pen and smart learning machine are each independent product forms. When realizing the above functions, it is necessary to open the scanning program on the smart learning machine, turn on the smart scanning pen, and then perform a series of adaptation operations before starting scanning. The process is relatively cumbersome and has a certain technical threshold. The user experience needs to be improved.

[0006] 2. The existing smart scanning pens and smart learning machines are each independent product forms, each with corresponding product accessories (charger, charging cable), which increases the user's purchase cost. They need to be charged separately for later use, and the user experience is poor.

[0007] In view of this, this utility model patent is proposed. Utility Model Content

[0008] In order to solve the above problems, the utility model proposes a scanning pen and a tablet learning machine with the scanning pen. Specifically, the following technical solutions are adopted:

[0009] A scanning pen, comprising:

[0010] Pen body;

[0011] A magnetic adsorption module for the scanning pen, which is arranged inside the pen body;

[0012] A main control module for the scanning pen, which is arranged inside the pen body and is communicatively connected to the magnetic adsorption module of the scanning pen. When the pen body is in the adsorbed state, the main control module of the scanning pen obtains the state through the magnetic adsorption module of the scanning pen to control the scanning pen to enter the sleep mode. When the pen body is in the separated state, the main control module of the scanning pen obtains the state through the magnetic adsorption module of the scanning pen to wake up the scanning pen and end the sleep mode.

[0013] As an optional implementation manner of the present utility model, the magnetic adsorption module of the scanning pen is a magnetic adsorption connector for the scanning pen. A magnetic adsorption connector installation opening is provided on the pen body, and the magnetic adsorption connector for the scanning pen is installed in the magnetic adsorption connector installation opening. The magnetic adsorption connector for the scanning pen has exposed communication output pins and communication input pins for the scanning pen. The pen body is in the adsorbed / separated state by the connection / disconnection of the communication input pins for the scanning pen.

[0014] As an optional implementation manner of the present utility model, the magnetic adsorption connector for the scanning pen has exposed power supply pins and ground pins for the scanning pen. When the pen body is in the adsorbed state, the power supply pins and ground pins for the scanning pen of the magnetic adsorption connector for the scanning pen are respectively connected to charge the scanning pen.

[0015] The present utility model also provides a tablet learning machine with the scanning pen, which includes a tablet learning host. The tablet learning host includes a host housing and a learning machine magnetic adsorption module arranged inside the host housing;

[0016] The magnetic adsorption module of the scanning pen is magnetically adsorbed and connected to the learning machine magnetic adsorption module of the tablet learning host. When the tablet learning host obtains that the scanning pen is in the separated state through the learning machine magnetic adsorption module, it automatically establishes a wireless communication connection with the scanning pen and automatically starts the scanning program.

[0017] As an optional implementation manner of the present utility model, the learning machine magnetic adsorption module is a magnetic adsorption connector for the learning machine. A magnetic adsorption connector installation opening is provided on the host housing, and the magnetic adsorption connector for the learning machine is installed in the magnetic adsorption connector installation opening. The magnetic adsorption connector for the learning machine has exposed communication output pins and communication input pins for the learning machine;

[0018] When the scanning pen is magnetically adsorbed and connected to the tablet learning host, the communication output pins for the learning machine of the magnetic adsorption connector for the learning machine are connected to the communication input pins for the scanning pen of the scanning pen, and the communication input pins for the learning machine of the magnetic adsorption connector for the learning machine are connected to the communication output pins for the scanning pen of the scanning pen;

[0019] The flat learning host obtains the adsorption / separation state of the pen body by the connection / disconnection of the communication input pin of the learning machine.

[0020] As an alternative embodiment of the present invention, the magnetic adsorption connector of the learning machine has exposed power supply pins and ground pins of the learning machine;

[0021] When the scanning pen is magnetically adsorbed and connected to the flat learning host, the power supply pin of the learning machine of the magnetic adsorption connector of the learning machine is connected to the power supply pin of the scanning pen of the scanning pen, and the ground pin of the learning machine of the magnetic adsorption connector of the learning machine is connected to the ground pin of the scanning pen of the scanning pen, and the flat learning host charges the scanning pen.

[0022] Compared with the prior art, the beneficial effects of the present invention are:

[0023] A scanning pen of the present invention realizes electromagnetic adsorption of the pen body to other intelligent devices (such as a flat learning machine) through the scanning pen magnetic adsorption module, and the main control module of the scanning pen can automatically switch the scanning pen to the sleep mode or immediately wake up according to whether the pen body is in the adsorption state or the separation state obtained by the scanning pen magnetic adsorption module. In particular, when the scanning pen of this embodiment is paired with the flat learning machine through the magnetic adsorption module, the scanning pen is adsorbed on the flat learning machine and then ends the scanning and enters the sleep mode. When the scanning pen is separated from the flat learning machine 100, it immediately wakes up and ends the sleep, and enters the scanning mode. Therefore, a scanning pen of the present invention can be better matched with intelligent devices (such as flat learning machines), which is beneficial to the integration of products and functions, simplifies the user's operation, and improves the user's experience.

[0024] The flat learning machine of the present invention realizes the integrated setting of the flat learning host and the scanning pen, and the two constitute a new overall product form. The flat learning host and the scanning pen are initially configured and the user can directly use them. When in use, when the scanning pen is removed from the flat learning host, the scanning pen automatically establishes a wireless connection with the flat learning host, and the flat learning host automatically starts the scanning program. The image information scanned by the scanning pen is immediately transmitted to the flat learning host for processing, and the processing result is displayed. Therefore, the flat learning machine of this embodiment is a new product form composed of the flat learning host and the scanning pen. When the user uses the scanning pen, they only need to take it out and put it back after use, which is simple and direct without complex operations, and greatly improves the user's experience. BRIEF DESCRIPTION OF THE DRAWINGS

[0025] Figure 1 The structural schematic diagram of the flat learning machine in the first embodiment of the present invention;

[0026] Figure 2 The schematic diagram of the pin connection between the magnetic adsorption connector of the learning machine and the magnetic adsorption connector of the scanning pen in the first embodiment of the present invention;

[0027] Figure 3 Schematic diagram of the structure of the tablet learning machine in the second embodiment of the present utility model (state where the scanning pen is inserted);

[0028] Figure 4 Schematic diagram of the structure of the tablet learning machine in the second embodiment of the present utility model (state where the scanning pen is removed);

[0029] Figure 5 Partial exploded view of the tablet learning machine in the second embodiment of the present utility model;

[0030] Figure 6 Partial cross-section of the tablet learning machine in the third embodiment of the present utility model Figure 1 ;

[0031] Figure 7 In the tablet learning machine in the third embodiment of the present utility model Figure 6 Local enlarged view at A;

[0032] Figure 8 Partial cross-section of the tablet learning machine in the third embodiment of the present utility model Figure 2 ;

[0033] Figure 9 In the tablet learning machine in the third embodiment of the present utility model Figure 8 Local enlarged view at B;

[0034] Figure 10 Schematic diagram of the unfolded state of the mainframe bracket of the tablet learning machine in the fourth embodiment of the present utility model;

[0035] Figure 11 Exploded view of the back structure of the tablet learning machine in the fourth embodiment of the present utility model Figure 1 ;

[0036] Figure 12 Schematic diagram of the back structure of the tablet learning machine in the fourth embodiment of the present utility model Figure 1 ;

[0037] Figure 13 Exploded view of the back structure of the tablet learning machine in the fourth embodiment of the present utility model Figure 2 ;

[0038] Figure 14 Exploded view of the back structure of the tablet learning machine in the fourth embodiment of the present utility model Figure 3 ;

[0039] Figure 15 Schematic diagram of the back structure of the tablet learning machine in the fourth embodiment of the present utility model Figure 2 ;

[0040] Figure 16 Schematic diagram of the three-dimensional structure of the limit bracket of the tablet learning machine in the fourth embodiment of the present utility model. Detailed implementation manners

[0041] To make the objectives, technical solutions and advantages of the embodiments of the present utility model clearer, the technical solutions in the embodiments of the present utility model will be clearly and completely described below with reference to the accompanying drawings. Apparently, the described embodiments are some but not all of the embodiments of the present utility model.

[0042] Therefore, the following detailed description of the embodiments of the present utility model is not intended to limit the scope of the present utility model claimed, but merely represents some embodiments of the present utility model. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present utility model without creative efforts shall fall within the scope of protection of the present utility model.

[0043] It should be noted that, without conflict, the embodiments in the present utility model and the features and technical solutions in the embodiments may be combined with each other.

[0044] It should be noted that like reference numerals and letters denote like items in the following drawings. Therefore, once an item is defined in one drawing, it does not need to be further defined and explained in subsequent drawings.

[0045] In the description of the present utility model, it should be noted that the orientation or positional relationship indicated by the terms "upper", "lower", etc. is based on the orientation or positional relationship shown in the drawings, or the orientation or positional relationship in which the product of the present utility model is usually placed during use, or the orientation or positional relationship commonly understood by those skilled in the art. Such terms are only for the convenience of describing the present utility model 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 thus should not be construed as limiting the present utility model. In addition, the terms "first", "second", etc. are only used for descriptive distinction and cannot be construed as indicating or implying relative importance.

[0046] Example 1

[0047] See Figure 1 As shown, a scanning pen 200 of this embodiment includes:

[0048] A pen body 201;

[0049] A scanning pen magnetic attraction module 202, disposed in the pen body 201;

[0050] The main control module of the scanning pen (not labeled) is disposed within the pen body 201 and is communicatively connected to the magnetic adsorption module 202 of the scanning pen. The main control module of the scanning pen obtains that the pen body 201 is in the adsorption state through the magnetic adsorption module 202 of the scanning pen to control the scanning pen 200 to enter the sleep mode, and the main control module of the scanning pen obtains that the pen body 201 is in the separated state through the magnetic adsorption module 202 of the scanning pen to wake up the scanning pen 200 to end the sleep mode.

[0051] In a scanning pen 200 of this embodiment, the pen body 201 realizes electromagnetic adsorption with other intelligent devices (such as a tablet learning machine) through the magnetic adsorption module 202 of the scanning pen, and the main control module of the scanning pen can automatically switch the scanning pen to enter the sleep mode or immediately wake up according to whether the pen body 201 is in the adsorption state or the separated state obtained by the magnetic adsorption module 202 of the scanning pen. In particular, when the scanning pen 200 of this embodiment is paired with the tablet learning machine 100 through the magnetic adsorption module, the scanning pen 200 adsorbs on the tablet learning machine 100 and then ends scanning and enters the sleep mode. When the scanning pen 200 is separated from the tablet learning machine 100, it is immediately woken up to end the sleep mode and enters the scanning mode. Therefore, the scanning pen 200 of this embodiment can be better matched with intelligent devices (such as tablet learning machines), which is beneficial to the integration of products and functions, simplifies the user's operation, and improves the user's experience.

[0052] In addition, a scanning pen 200 of this embodiment can also be connected to a magnetic charger through the magnetic adsorption module 202 of the scanning pen to realize magnetic adsorption charging of the scanning pen 200, and the charging method is simpler and more convenient.

[0053] See Figure 1 and Figure 2 As shown, the magnetic adsorption module 202 of the scanning pen described in this embodiment is a magnetic adsorption connector of the scanning pen. A magnetic adsorption connector installation opening is provided on the pen body 201, and the magnetic adsorption connector 202 of the scanning pen is installed in the magnetic adsorption connector installation opening. The magnetic adsorption connector 202 of the scanning pen has an exposed communication output pin 202-2 and a communication input pin 202-3 of the scanning pen. The pen body 201 is in the adsorption / separation state by the connection / disconnection of the communication input pin 202-3 of the scanning pen.

[0054] The scanning pen 200 of this embodiment can realize data transmission with the adsorbed intelligent device through the communication output pin 202-2 and the communication input pin 202-3 of the magnetic adsorption module 202 of the scanning pen. In addition, it can be judged whether the scanning pen 200 is in the adsorption / separation state by whether the communication input pin 202-3 is connected.

[0055] Furthermore, the magnetic connector of the scanning pen described in this embodiment has exposed power supply pins 202-1 and ground pins 202-4 of the scanning pen. When the pen body 201 is in the adsorbed state, the power supply pins 202-1 and ground pins 202-4 of the magnetic connector of the scanning pen are respectively connected to charge the scanning pen 200. In this way, while the scanning pen 200 of this embodiment is adsorbed to the intelligent device, the intelligent device can charge the scanning pen.

[0056] The scanning pen 200 of this embodiment includes a telescopic scanning head 206 installed at one end of the pen body 201. Press the telescopic scanning head 206 against the text page to be scanned. Pressing the telescopic scanning head 206 triggers scanning, and when the telescopic scanning head 206 is released, it elastically resets and automatically stops scanning.

[0057] This embodiment also provides a tablet learning machine with the scanning pen 200, including a tablet learning main unit 100, and the tablet learning main unit 100 includes a main unit housing 101 and a learning machine magnetic adsorption module 102 arranged inside the main unit housing 101;

[0058] The magnetic adsorption module 202 of the scanning pen is magnetically adsorbed and connected to the learning machine magnetic adsorption module 102 of the tablet learning main unit 100. When the scanning pen 200 is in a separated state, the tablet learning main unit 100 automatically establishes a wireless communication connection with the scanning pen 200 through the learning machine magnetic adsorption module 102 and automatically starts the scanning program.

[0059] The tablet learning machine of this embodiment realizes the integrated setting of the tablet learning main unit 100 and the scanning pen 200, and the two constitute a new overall product form. After the tablet learning main unit 100 and the scanning pen 200 are initially configured, the user can directly use them. When in use, take the scanning pen 200 off the tablet learning main unit 100, the scanning pen 200 automatically establishes a wireless connection with the tablet learning main unit 100, the tablet learning main unit 100 automatically starts the scanning program, and the image information scanned by the scanning pen 200 is immediately transmitted to the tablet learning main unit 100 for processing and the processing result is displayed. Therefore, the tablet learning machine of this embodiment is a brand-new product form combined by the tablet learning main unit 100 and the scanning pen 200. When the user uses the scanning pen, they only need to take it out and put it back after use, which is simple and direct without complex operations, greatly improving the user experience.

[0060] See Figure 1 and Figure 2As shown in the figure, the magnetic attraction module 102 of the learning machine in this embodiment is a magnetic attraction connector of the learning machine. A magnetic attraction connector installation opening is provided on the main machine housing. The magnetic attraction connector of the learning machine is installed in the magnetic attraction connector installation opening. The magnetic attraction connector of the learning machine has an exposed learning machine communication output pin 102-3 and a learning machine communication input pin 102-2. When the scanning pen 200 is magnetically attracted and connected to the tablet learning host 100, the learning machine communication output pin 102-3 of the magnetic attraction connector of the learning machine is connected to the scanning pen communication input pin 202-3 of the scanning pen 100, and the learning machine communication input pin 102-2 of the magnetic attraction connector of the learning machine is connected to the scanning pen communication output pin 202-2 of the scanning pen 100. The tablet learning host 100 obtains the adsorption / separation state of the pen body 201 through the connection / disconnection of the learning machine communication input pin 102-2.

[0061] In this embodiment, the scanning pen 200 is magnetically attracted and connected to the tablet learning host 100, which can realize data transmission. In addition, the state between the scanning pen 200 and the tablet learning host 100 is judged by whether the input pin 102-2 is connected.

[0062] Furthermore, the magnetic attraction connector of the learning machine in this embodiment has an exposed learning machine power supply pin 102-1 and a learning machine ground pin 102-4. When the scanning pen 200 is magnetically attracted and connected to the tablet learning host 100, the learning machine power supply pin 102-1 of the magnetic attraction connector of the learning machine is connected to the scanning pen power supply pin 202-1 of the scanning pen 200, and the learning machine ground pin 102-4 of the magnetic attraction connector of the learning machine is connected to the scanning pen ground pin 202-4 of the scanning pen 200. The tablet learning host 100 charges the scanning pen 200. Therefore, in this embodiment, when the tablet learning host 100 is adsorbed to the scanning pen 200, it can charge the scanning pen 200, and the user does not need to charge the scanning pen 200 separately, which greatly improves the user experience.

[0063] In addition, the tablet learning host 100 and the scanning pen 200 in this embodiment can share a set of chargers, reducing the overall purchase cost of the machine.

[0064] This embodiment also provides a control method for the tablet learning machine, including:

[0065] When the scanning pen 200 obtains that it is in a separated state from the tablet learning host 100 through the scanning pen magnetic attraction module 202, it automatically establishes a wireless communication connection with the tablet learning host 100 and enters the scanning mode.

[0066] When the scanning pen 200 is in a separated state, the tablet learning host 100 automatically establishes a wireless communication connection with the scanning pen 200 through the learning machine magnetic attraction module 102 and automatically starts the scanning program.

[0067] The scanning pen 200 transmits the scanned image information obtained by scanning to the tablet learning host 100, and the tablet learning host 100 processes the scanned image information and displays the processing result through the scanning program.

[0068] In the control method of the tablet learning machine in this embodiment, by obtaining that the scanning pen 200 and the tablet learning host 100 are in a separated state, the communication connection is automatically established, and the tablet learning host 100 automatically starts the scanning program. When the user uses it, the user only needs to remove the scanning pen 200 from the tablet learning host 100 to perform scanning, and the scanning result can be better displayed on the tablet learning host 100, greatly improving the user experience.

[0069] Further, the control method of a tablet learning machine described in this embodiment includes:

[0070] The tablet learning host 100 and the scanning pen 200 are in a separated state;

[0071] When the scanning pen 200 does not receive an operation instruction within a preset time period, the scanning pen 200 enters the sleep mode.

[0072] In the sleep mode of the scanning pen 200, the scanning pen 200 maintains a communication connection with the tablet learning host 100 through the low-power Bluetooth BLE module. When the pen body displacement monitored by the acceleration sensor of the scanning pen 200 reaches a preset wake-up threshold, the scanning pen 200 is woken up to end the sleep mode, and the scanning pen 200 establishes a wireless communication connection with the tablet learning host 100.

[0073] Due to the above technical solution, when the scanning pen 200 and the tablet learning host 100 are in a separated state, when the scanning pen 200 is not used for scanning operations for a long time, it enters the sleep mode to reduce the power consumption of the scanning pen and obtain a longer standby time. In addition, in the sleep mode, the scanning pen 200 maintains a communication connection with the tablet learning host 100 through the low-power Bluetooth BLE module, which helps the scanning pen 200 to establish a wireless communication connection with the tablet learning host 100 immediately when it is woken up.

[0074] Optionally, the control method of a tablet learning machine described in this embodiment includes:

[0075] When the tablet learning host 100 does not receive an operation instruction within a preset time period and the scanning pen 200 is in the sleep mode, the tablet learning host 100 enters the sleep mode.

[0076] When the tablet learning host 100 is in the sleep mode, the tablet learning host 100 maintains a communication connection with the scanning pen 200 through the low-power Bluetooth BLE module. When the tablet learning host 100 receives the wake-up instruction sent by the scanning pen 200 to end the sleep mode, the tablet learning host 100 is woken up to end the sleep mode, and the tablet learning host 100 establishes a wireless communication connection with the scanning pen 200.

[0077] Before the tablet learning host 100 of this embodiment enters the sleep mode, it is necessary to consider whether the scanning pen 200 is working, and at the same time, it is necessary to consider whether the tablet learning host 100 is being used by the user. Only when both conditions are met will it enter the sleep mode to reduce the power consumption of the tablet learning host 100 and obtain a longer standby time.

[0078] The tablet learning host 100 of this embodiment includes a learning host WI FI module 103 and a learning host low-power Bluetooth BLE module 104. The scanning pen includes a scanning pen WI FI module 204, a scanning pen low-power Bluetooth BLE module 205, and an acceleration sensor module 201. A wireless communication connection is established between the learning host WI FI module 103 and the scanning pen WI FI module 204, and a low-power Bluetooth connection is established between the learning host low-power Bluetooth BLE module 104 and the scanning pen low-power Bluetooth BLE module 205. The acceleration sensor module 201 monitors the displacement of the pen body.

[0079] A control method for a tablet learning machine according to this embodiment includes:

[0080] The tablet learning host 100 and the scanning pen 200 are in an adsorbed state, and the scanning pen 200 reports the current remaining battery level to the tablet learning host 100;

[0081] When the tablet learning host 100 is in the charging state, the tablet learning host 100 charges the scanning pen 200;

[0082] When the tablet learning host 100 is not in the charging state, it is determined whether the current remaining battery level of the tablet learning host 100 is greater than a preset battery level threshold. If the determination result is yes, the tablet learning host 100 charges the scanning pen 200. During the charging process, the current remaining battery levels of the tablet learning host 100 and the scanning pen 200 are monitored, and when the remaining battery level of the scanning pen 200 reaches 100% or the remaining battery level of the tablet learning host 100 reaches the preset battery level threshold, the tablet learning host 100 stops charging the scanning pen 200. If the determination result is no, the tablet learning host 100 does not charge the scanning pen.

[0083] A control method for a tablet learning machine according to this embodiment can charge the scanning pen 200 and the tablet learning host 100 simultaneously through a charger, enabling the scanning pen 200 and the tablet learning host 100 to share the same charger. Additionally, the tablet learning host 100 can charge the scanning pen 200. Since the battery module of the tablet learning host 100 has a larger capacity, it can ensure that the scanning pen 200 is replenished in a timely manner, thereby extending the usage duration of the scanning pen 200.

[0084] A control method for a tablet learning machine according to this embodiment, when the tablet learning host 100 obtains through the learning machine magnetic attraction module 102 that the scanning pen 200 is in a separated state, it automatically establishes a wireless communication connection with the scanning pen 200, and before automatically starting the scanning program, it determines whether the application program currently running on the tablet learning host 100 has a system privilege higher than that of the scanning program. If the judgment result is yes, it refuses to start the scanning program and issues relevant prompt information. If the judgment result is yes, it starts the scanning program.

[0085] Specifically, for example, when the tablet learning host 100 is performing operations such as system update or software upgrade, and its operation privilege is higher than that of the scanning program, the scanning program cannot be started currently, and relevant prompt information is sent to remind the user.

[0086] Optionally, the control method of the tablet learning machine includes:

[0087] When the tablet learning host 100 and the scanning pen 200 are in an adsorbed state, data transmission occurs between the learning machine magnetic attraction module 102 of the tablet learning host 100 and the scanning pen magnetic attraction module 202 of the scanning pen 200. In this embodiment, not only can the tablet learning host 100 and the scanning pen 200 establish a wireless communication connection for wireless data transmission, but also the tablet learning host 100 and the scanning pen 200 can establish a limited communication connection through the learning machine magnetic attraction module 102 and the scanning pen magnetic attraction module 202 for wired data transmission.

[0088] Example 2

[0089] See Figures 3 - 5 As shown, a tablet learning machine with a scanning function according to this embodiment includes:

[0090] A tablet learning host 100, including a host housing 101 and a detection element. One side of the host housing 101 has an open scanning pen accommodation groove 105, and the detection element is arranged in the scanning pen accommodation groove 105;

[0091] The scanning pen 200 is placed into the scanning pen receiving slot 105 of the main machine housing 101. When the detection element detects that the scanning pen 200 is in the installed state, the scanning pen 200 is taken out from the scanning pen receiving slot 105 of the main machine housing 101, and the detection element detects that the scanning pen 200 is in the taken-out state;

[0092] When the flat-panel learning main machine 100 detects through the detection element that the scanning pen 200 is in the taken-out state, it controls the automatic start of the scanning program.

[0093] A flat-panel learning machine with a scanning function in this embodiment integrates the scanning pen 200 to form a new product form. When scanning with the scanning pen 200, the scanning pen 200 is taken out from the scanning pen receiving slot 105 of the flat-panel learning main machine 100 and directly used for scanning. The scanned information is transmitted to the flat-panel learning main machine 100 for processing through the scanning program and displayed in real time. The scanning process is simple and convenient, and the display effect of the scanning result is better, greatly improving the user experience.

[0094] In addition, when the scanning pen 200 of this embodiment is taken out, a wireless communication connection is immediately established between the scanning pen 200 and the flat-panel learning main machine 100. At the same time, the flat-panel learning main machine 100 automatically starts the scanning program, so that the user does not need to perform configuration operations and only needs to take out the scanning pen 200 for scanning. Therefore, in this embodiment, the detection element monitors the state between the scanning pen 200 and the flat-panel learning main machine 100. Specifically, the detection element can adopt an electromagnetic monitoring element, or a micro-motion detection switch, etc.

[0095] As an optional implementation manner of this embodiment, the main machine housing 101 has a front surface, a back surface opposite to the front surface, and side surfaces surrounding the front and back surfaces. The flat-panel learning main machine 100 includes a touch display screen 107 provided on the front surface of the main machine housing 101. At least one side surface of the main machine housing 101 has the scanning pen receiving slot 105. The scanning pen receiving slot 105 is provided with an opening facing one side of the main machine housing 101, and the scanning pen 200 is inserted / removed from the side of the main machine housing 101.

[0096] In this embodiment, the scanning pen receiving slot 105 is arranged on the side surface of the main machine housing 101, enabling the scanning pen 200 to be taken in and out from the side, so that the front and back surfaces of the main machine housing 101 remain intact, and the overall design of the flat-panel learning machine is novel and beautiful.

[0097] Further, a positioning notch 108 is formed on the groove side wall of the scanning pen accommodation groove 105 on the same side as the front of the main body housing 101. The scanning pen 200 includes a pen body 201, and a protruding positioning block is arranged on the pen body 201. When the scanning pen 200 is inserted into the main body housing 101, the positioning block is correspondingly inserted into the positioning notch 108 and protrudes from the positioning notch, facilitating the removal operation of the scanning pen 200.

[0098] Specifically, the positioning block in this embodiment is a function switching button 207 arranged on the pen body 201. The function switching button 207 in this embodiment realizes the switching of the scanning function of the scanning pen 200. At the same time, the function switching button 207 is used to be inserted into the positioning notch 108 and protrude from the positioning notch, facilitating the removal operation of the scanning pen 200.

[0099] As an alternative implementation of this embodiment, the detection element in this embodiment is a learning machine magnetic attraction connector 102. The scanning pen 200 includes a pen body 201, and a scanning pen magnetic attraction connector 202 is arranged on one side of the pen body 201. When the scanning pen 200 is inserted into the scanning pen accommodation groove 105 of the main body housing 101, the learning machine magnetic attraction connector 102 and the scanning pen magnetic attraction connector 202 are attracted and conduct. The learning machine magnetic attraction connector 102 detects that the scanning pen 200 is in the inserted state. When the scanning pen 200 is taken out from the scanning pen accommodation groove 105 of the main body housing 101, the learning machine magnetic attraction connector 102 and the scanning pen magnetic attraction connector 202 are separated and disconnected, and the learning machine magnetic attraction connector 102 detects that the scanning pen 200 is in the taken-out state.

[0100] In this embodiment, by determining whether the learning machine magnetic attraction connector 102 and the scanning pen magnetic attraction connector 202 are conducting, it can be judged whether the scanning pen 200 is in the inserted state or the taken-out state. At the same time, there is a magnetic attraction between the learning machine magnetic attraction connector 102 and the scanning pen magnetic attraction connector 202, ensuring that the scanning pen 200 is stably and reliably inserted into the scanning pen accommodation groove 105 and preventing it from falling off.

[0101] As an alternative implementation of this embodiment, a first adsorption magnet 109 is arranged in the scanning pen accommodation groove 105 of this embodiment, and a second adsorption magnet 208 is arranged in the pen body 201 of the scanning pen 200. The first adsorption magnet 109 and the second adsorption magnet 208 are arranged with opposite poles facing each other. In this way, when the scanning pen 200 is inserted into the scanning pen accommodation groove 105, through the adsorption between the first adsorption magnet 109 and the second adsorption magnet 208, the reliability of the scanning pen 200 adsorbed in the scanning pen accommodation groove 105 can be further increased.

[0102] Further, the tablet learning host 100 in this embodiment includes a battery module disposed within the host housing 101, and the battery module is electrically connected to the learning machine magnetic connector 102. In this way, the tablet learning host 100 can also charge the scanning pen 200, enabling the scanning pen 200 and the tablet learning host 100 to share a charger, achieving the unification of the power supply system, simplifying the user's use, and enhancing the user experience.

[0103] Specifically, referring to Figure 2 As shown, the learning machine magnetic connector 102 in this embodiment has a learning machine power supply pin 102-1, and the scanning pen magnetic connector 202 has a scanning pen power supply pin 202-1. When the scanning pen 200 is inserted into the scanning pen receiving slot 105 of the host housing 101, the learning machine power supply pin 102-1 of the learning machine magnetic connector 102 is electrically connected to the scanning pen power supply pin 202-1 of the scanning pen magnetic connector 202.

[0104] In addition, the learning machine magnetic connector 102 in this embodiment has a learning machine communication input pin 102-2, and the scanning pen magnetic connector 202 has a scanning pen communication output pin 202-2. When the scanning pen 200 is inserted into the scanning pen receiving slot 105 of the host housing 101, the learning machine communication input pin 102-2 of the learning machine magnetic connector 102 is electrically connected to the scanning pen communication output pin 202-2 of the scanning pen magnetic connector 202. In this way, the tablet learning host 100 determines whether the scanning pen 200 is inserted into the scanning pen receiving slot 105 by whether the learning machine communication input pin 102-2 is electrically connected, and thus decides whether to automatically start the scanning program.

[0105] As an alternative implementation of this embodiment, a shock-absorbing gasket 300 is provided on the bottom wall of the scanning pen receiving slot 105. In this way, when the scanning pen 200 is inserted into the scanning pen receiving slot 105, the shock-absorbing gasket 300 can play a shock-absorbing role to avoid generating noise due to impact.

[0106] Further, the shock-absorbing gasket 300 in this embodiment is provided with an interface module avoidance opening 301. One end of the learning machine magnetic connector 102 is installed within the host housing 101, and the other end extends out of the host housing 101 and leaks out through the interface module avoidance opening 301 of the shock-absorbing gasket 300.

[0107] In summary, a tablet learning machine with a scanning function according to this embodiment is an assembled portable structure terminal that combines a tablet learning host 100 and a scanning pen 200. The scanning pen 200 is fixed by means of the designed scanning pen receiving groove 105 of the U-shaped port. Not only is the assembly smooth and the magnetic damping effect experience better, but also the utility model has a simple structure and is convenient and reliable to assemble. This assembly method is very suitable for primary and middle school students to use during learning. Currently, there is no similar product on the market. After the scanning pen 200 is assembled to the tablet learning host 100 in a portable manner, the learning efficiency is greatly improved, time is saved, and the connection between the scanning pen 200 and the tablet learning host 100 is combined and optimized. The use scenario is more convenient and reliable, which helps to improve the user experience.

[0108] Specifically, a tablet learning machine with a scanning function according to this embodiment has the following technical effects:

[0109] 1. By designing the scanning pen receiving groove 105 at the tablet learning host 100 end, the overall sense is stronger after placing the scanning pen 200, and the user experience effect is more convenient.

[0110] 2. Data is transmitted through two connection methods, wired and wireless, and the data transmission is more convenient and reliable.

[0111] 3. Through the magnetic adsorption alignment fixing method, the insertion and extraction of the scanning pen 200 are powerfully combined with charging and data transmission.

[0112] 4. By placing it horizontally and inserting the scanning pen 200 laterally, it is more user-friendly and the display effect is more pleasant.

[0113] 5. Through the software function to combine the sampling of the scanning pen 200 end and the tablet learning host 100 end, the user can obtain a greater sense of experience on a larger screen to a greater extent, and at the same time make up for the long-term problem that the display screen of the scanning pen is small and the translation and scanning question display page turning are relatively frequent.

[0114] Example 3

[0115] See Figures 3 to 9 As shown, this embodiment provides a scanning pen integrated tablet learning machine, including:

[0116] A tablet learning host 100, including a host housing 101, and one side of the host housing 101 has an open scanning pen receiving groove 105;

[0117] A scanning pen 200, the scanning pen 200 has a loading state of being loaded into the scanning pen receiving groove 105 of the host housing 101 and an extraction state of being taken out from the scanning pen receiving groove 105 of the host housing 101. When the tablet learning host 100 detects that the scanning pen 200 is in the extraction state, it controls the automatic start of the scanning program;

[0118] The scanning pen 200 includes a pen body 201 and a scanning pen indicator installed on the pen body 201. A scanning pen status light-transmissive display part 106 is provided on the main body housing 101. A light guide component is arranged in the scanning pen accommodating groove 105. When the scanning pen 200 is in the loaded state, the light emitted by the scanning pen indicator of the scanning pen 200 is guided by the light guide component to the scanning pen status light-transmissive display part 106 for display, so as to display the current status of the scanning pen 200 in real time.

[0119] The tablet learning machine of this embodiment is an assembled portable structure terminal that combines a tablet learning main body 100 and a scanning pen 200. However, after the scanning pen 200 is loaded into the scanning pen accommodating groove 105, the local status of the scanning pen 200 needs to be shown to the user. This embodiment realizes a light guide refraction structural design method through a light guide component, and refracts and displays the scanning pen indicator on the scanning pen 200 to the scanning pen status light-transmissive display part 106 on the tablet learning main body 100 through the light guide component, making the display power consumption of the tablet learning main body 100 better, more energy-saving and environmentally friendly, having no obstacle in interacting with the user's usage scenario, greatly improving a new idea for the implementation method of the indicators of the tablet learning main body 100 and the scanning pen 200. Compared with the traditional design method that requires two sets of circuit systems, not only the lamp board and lamp bead materials are saved, but also the production and assembly links are more concise and reliable after the new light guide structure implementation method. In the after-sales link, the after-sales light display risk is greatly reduced by reducing the components, improving the quality of the tablet learning machine, and thus enhancing the user's satisfaction with this tablet learning machine.

[0120] As an optional implementation manner of this embodiment, the main body housing 101 of this embodiment has a front surface, a back surface opposite to the front surface, and side surfaces surrounding the front and back surfaces. The tablet learning main body 100 includes a touch display screen 107 provided on the front surface of the main body housing 101. At least one side surface of the main body housing 101 has the scanning pen accommodating groove 105. The scanning pen accommodating groove 105 is provided with an open side facing the main body housing 101. The scanning pen 200 is loaded / removed from the side of the main body housing 101. The scanning pen status light-transmissive display part 106 is located on the front surface of the main body housing 101 and is arranged close to the scanning pen accommodating groove 105.

[0121] In this embodiment, the scanning pen status light-transmissive display part 106 is arranged on the front surface of the main body housing 101 of the tablet learning main body 100. After the scanning pen 200 is loaded into the scanning pen accommodating groove 105, the machine status of the scanning pen 200 can still be visually observed. Specifically, the machine status of the scanning pen 200 includes a sleep state, a charging state, a full state, a low battery state, etc.

[0122] Specifically, refer to Figures 6 - 9As shown in the figure, the scanning pen indicator light in this embodiment is installed on the side of the pen body 201. The light guide assembly includes a first light guide body 401 and a second light guide body 402. The first end of the first light guide body 401 is docked with the scanning pen indicator light, the second end of the first light guide body 401 is docked with the first end of the second light guide body 402, and the second end of the second light guide body 402 is docked with the scanning pen status light-transmitting display part 106. The first light guide body 401 has a reflecting mirror surface 401A that reflects light from the first light guide body 401 into the second light guide body 402. The light guide assembly in this embodiment can guide the scanning pen indicator light on the side of the scanning pen 200 to the front of the tablet learning host 100 through the first light guide body 401 and the second light guide body 402 for real-time status display.

[0123] Further, a light guide body installation opening 110 is formed on the bottom wall of the scanning pen accommodation groove 105 in this embodiment. The first light guide body 401 is installed in the light guide body installation opening 110. The first end of the first light guide body 401 is located outside the host housing 101 and is docked with the scanning pen indicator light. The second end of the first light guide body 401 is located inside the host housing 101 and is docked with the second light guide body 402. The second light guide body 402 is located inside the host housing 101.

[0124] Specifically, the end of the first end of the first light guide body 401 in this embodiment is a vertical end face, and the vertical end face is docked with the scanning pen indicator light. The end of the second end of the first light guide body 401 is inclined to form the reflecting mirror surface 401A. The reflecting mirror surface 401A emits light to the horizontal plane on the top side of the second end of the first light guide body 401, and the top side horizontal plane is docked with the second light guide body 402. In this embodiment, the first light guide body 401 reflects the horizontally propagating light to the vertically propagating direction through the setting of the reflecting mirror surface 401A, so as to guide it to the scanning pen status light-transmitting display part 106 for display.

[0125] As an alternative implementation of this embodiment, the scanning pen status light-transmitting display part 106 in this embodiment is a light-transmitting hole formed on the front of the host housing 101. A display lamp cover is installed on the light-transmitting hole. The end of the first end of the second light guide body 402 is docked with the horizontal plane on the top side of the second end of the first light guide body 401, and the end of the second end of the second light guide body 402 is inserted into the light-transmitting hole.

[0126] Further, on the outer wall of the first side of the second end of the second light guide body 402 in this embodiment, there is a clamping groove body 402A. Inside the main body housing 101, there is a vertical rib 125, and the clamping groove body 402A is clamped on the vertical rib 125. On the horizontal plane of the top side of the second end of the first light guide body 401, there is a horizontal rib 401C, and the horizontal rib 401C abuts against and limits the position of the outer wall of the second side of the first end of the second light guide body 402. The outer wall of the second side of the first end of the second light guide body 402 is arranged opposite to the outer wall of the first side of the second end. In this way, the upper and lower sides of the first end and the second end of the second light guide body 402 can be limited and installed, ensuring the stability of the installation of the second light guide body 402.

[0127] On the outer peripheral wall of the first end of the first light guide body 401 in this embodiment, there is an annular rib 401B, and the annular rib 401B abuts against the outer peripheral wall of the light guide body installation opening 110.

[0128] As an optional implementation manner of this embodiment, a shock-absorbing gasket 300 is provided on the bottom wall of the scanning pen accommodating groove 105. A light guide body avoidance opening 302 is opened on the shock-absorbing gasket 300, and the first end of the first light guide body 401 passes through the light guide body avoidance opening 302 to be docked with the scanning pen indicator light.

[0129] The scanning pen indicator light in this embodiment includes a light-emitting lamp bead 208 and a lamp shade 210. An indicator light opening 209 is opened on the side wall of the pen body 201. The light-emitting lamp bead 208 is installed inside the pen body 201. One end of the lamp shade 210 is limit-installed inside the indicator light opening 209 and covers the light-emitting lamp bead 208, and the other end of the lamp shade 210 is inserted into the indicator light opening 209.

[0130] In summary, a scanning pen integrated flat learning machine in this embodiment has the following technical effects:

[0131] 1. After the scanning pen 200 is assembled to the fixed position of the scanning pen accommodating groove 105 of the flat learning main machine 100 to indicate each function display, the circuit management system, lamp beads, small boards, wiring harnesses, etc. at the flat learning main machine 100 end are saved, and the cost is more optimized.

[0132] 2. After the indication of the scanning pen 200 end is guided to the flat learning main machine 100 end to reduce materials, the reliability of the hardware and software is more optimized.

[0133] 3. After the optical path is changed by the reflection principle of the reflection mirror surface 401A of the first light guide body 401, the light loss is effectively protected, and the display effect is softer.

[0134] 4. Through the application of multiple lenses and diffusion on the optical path, there is a function of increasing the light in the propagation of colored light.

[0135] 5. Control the light display through the software at the 200-end of the scanning pen, so that the function is displayed on the 100-end of the tablet learning host and interacts with the user. To a greater extent, the user can obtain a more environmentally friendly and energy-saving hardware product, reduce the number of LED lamp beads. Calculated according to a production volume of 1 million units, the savings per lamp bead are already very significant. At the same time, consumers can have a better experience.

[0136] Example 4

[0137] See Figures 10 - 16 As shown, a tablet learning machine according to this embodiment includes:

[0138] A tablet learning host 100, including a host housing 101;

[0139] A host bracket, including a bracket plate body 111. The two sides of the top end of the bracket plate body 111 are respectively rotatably connected to the back of the host housing 101 through a rotating shaft 117. A first limiting convex block 116 is arranged on the back of the bracket plate body 111, and a second limiting convex block 121 is arranged on the back 112 of the host housing 101;

[0140] During the process of the bracket plate body 111 rotating and unfolding relative to the host housing 101, the first limiting convex block 116 abuts against the second limiting convex block 121 to limit the unfolding angle of the bracket plate body 111 relative to the host housing 101. The bottom end of the bracket plate body 111 contacts the support surface 500 to support the tablet learning host 100.

[0141] For the tablet learning machine according to this embodiment, the unfolding of the bracket plate body 111 can realize the support of the tablet learning host 100, which is convenient for users to use. At the same time, after the bracket plate body 111 is unfolded, the first limiting convex block 116 abuts against the second limiting convex block 121 to keep the unfolding angle unchanged, ensuring the support stability of the tablet learning host 100.

[0142] As an alternative embodiment of this embodiment, the back 112 of the host housing 101 has a concave bracket accommodating groove 120. On both sides of the top end of the back of the bracket plate body 111, bracket rotating shaft seats 115 are respectively provided. Rotating shaft holes 123 are opened on the groove walls on both sides of the top end of the bracket accommodating groove 120. One end of the rotating shaft 117 is fixedly installed on the bracket rotating shaft seat 115, and the other end is rotatably installed in the rotating shaft hole 123. The first limiting convex block 116 is arranged on the back of the bracket plate body 111 and inside the bracket rotating shaft seat 115, and the second limiting convex block 121 is arranged at the top end of the bracket accommodating groove 120 and inside the rotating shaft hole 123. In this way, the first limiting convex block 116 and the second limiting convex block 121 of this embodiment are arranged on the rotation path of the bracket plate body 111, so that after the bracket plate body 111 is unfolded, the first limiting convex block 116 abuts against the second limiting convex block 121 to keep the unfolding angle unchanged.

[0143] Specifically, the first limiting convex block 116 of this embodiment includes a first bottom wall fixed to the back of the bracket plate body 111, a first horizontal top wall opposite to the first bottom wall, and a first peripheral side wall connecting the first bottom wall and the first horizontal top wall. The first peripheral side wall includes a first inclined side wall and a second inclined side wall parallel to the central axis of the rotating shaft 117.

[0144] The second limiting convex block 121 of this embodiment includes a first sub-block body 121A and a second sub-block body 121B. The first sub-block body 121A includes a second bottom wall fixed to the bottom wall of the bracket accommodating groove 120, a second horizontal top wall opposite to the second bottom wall, and a second peripheral side wall connecting the second bottom wall and the second top wall. The second peripheral side wall includes a third inclined side wall and a fourth inclined side wall parallel to the central axis of the rotating shaft 117. The second sub-block body 121B has a fifth inclined side wall parallel to the central axis of the rotating shaft 117, and the fifth inclined side wall is connected to the fourth inclined side wall and is arranged at a certain angle.

[0145] In this embodiment, the bracket plate body 111 rotates and retracts into the bracket accommodating groove 120. The first horizontal top wall of the first limiting convex block 116 is parallel to or abuts against the second horizontal top wall of the second limiting convex block 121. During the rotation and unfolding process of the bracket plate body 111, the first horizontal top wall of the first limiting convex block 116 abuts against the fifth inclined side wall of the second limiting convex block 121 to limit the unfolding angle of the bracket plate body 111 relative to the host housing 101.

[0146] The second limiting bump 121 of this embodiment includes a first sub-block 121A and a second sub-block 121B, with a gap therebetween for avoiding interference during the unfolding process of the support plate body 111 and not interfering with the unfolding of the support plate body 111. When the first horizontal top wall of the first limiting bump 116 abuts against the fifth inclined side wall of the second sub-block 121B, the support plate body 111 is unfolded in place.

[0147] Furthermore, a tablet learning machine of this embodiment needs to be able to withstand a certain thrust and maintain the unfolded state after the support plate body 111 is unfolded to adapt to the failure of the support of the support plate body 111 caused by accidental thrust. Therefore, in the middle of the top of the back of the support plate body 111 of this embodiment, there is a third limiting bump 119. A limiting bracket installation opening 122 is opened on the bottom wall of the middle part of the top of the support accommodating groove 120. A limiting bracket 600 is installed on the inner wall of the back 112 of the main machine housing 101 corresponding to the limiting bracket installation opening 122. The third limiting bump 119 passes through the limiting bracket installation opening 122 and is assembled with the limiting bracket 600. After the support plate body 111 is rotated and unfolded in place, the third limiting bump 119 abuts against and limits the limiting bracket 600.

[0148] In this embodiment, by providing a third limiting bump 119 in the middle of the support plate body 111 to abut against and limit the limiting bracket 600, the support of the support plate body 111 can be further increased. The thrust test can reach 50N, fully meeting the support use requirements for the daily work and study of the tablet learning host 100.

[0149] Furthermore, the third limiting bump 119 of this embodiment has a first limiting inclined surface, the limiting bracket 600 has a limiting hole 601, and there is a second limiting inclined surface 602 on the inner wall surface below the limiting hole 601. The third limiting bump 119 is inserted into the limiting hole 601. After the support plate body 111 is rotated and unfolded in place, the first limiting inclined surface of the third limiting bump 119 abuts against and limits the second limiting inclined surface 602 of the limiting bracket 600.

[0150] Optionally, there are multiple third limiting bumps 119 in this embodiment, and the limiting bracket 600 is provided with limiting holes 601 corresponding to the number of the third limiting bumps 119.

[0151] As an optional implementation manner of this embodiment, in the middle of the top of the back of the support plate body 111 of this embodiment, there is a protruding shaft body 118. Both ends of the protruding shaft body 118 are rotatably installed on the side walls on both sides of the limiting bracket installation opening 122, and the third limiting bump 119 is arranged on the protruding shaft body 118.

[0152] In addition, mounting holes are respectively formed on the upper and lower sides of the limiting hole 601 on the limiting support 600 of this embodiment, and the limiting support 600 is fastened to the inner wall of the back 112 of the main body housing 101 through fastening screws 700 passing through the mounting holes.

[0153] As an alternative implementation of this embodiment, the main body support of this embodiment includes an adsorption magnet 114, and the adsorption magnet 114 is arranged at the bottom end of the back of the support plate body 111. During the process of the support plate body 111 rotating and retracting into the support accommodation groove 120, the adsorption magnet 114 adsorbs the main body housing 101. When the main body housing 101 of this embodiment adopts a metal housing, after the support plate body 111 retracts into the support accommodation groove 120, the adsorption magnet 114 can directly adsorb the main body housing 101 to avoid accidental deployment.

[0154] A ferromagnetic body 124 is arranged at the bottom end of the support accommodation groove 120 of this embodiment. During the process of the support plate body 111 rotating and retracting into the support accommodation groove 120, the adsorption magnet 114 adsorbs the ferromagnetic body 124. By arranging the ferromagnetic body 124 on the main body housing 101 in this embodiment, the adsorption effect between the adsorption magnet 114 and the main body housing 101 is ensured after the support plate body 111 retracts into the support accommodation groove 120; it can also achieve the suction and engagement of the support plate body 111 when the main body housing 101 adopts a non-metallic material.

[0155] Furthermore, a buffer pad is arranged at the top end of the adsorption magnet 114 and / or the top end of the ferromagnetic body 124 of this embodiment to buffer and dampen the suction process, avoid noise, and improve the user experience.

[0156] In summary, for the flat-panel learning machine of this embodiment, the disclosed implementation method of the folding support structure of the main body support realizes the function of manufacturing the folding main body support using high-strength engineering plastics by redesigned the support method of the main body support. Through the fixed scheme of the two ends of the rotating shaft 117 and the support and fixation of the middle limiting support 600, the limiting contact realizes the damping effect, and the structural design implementation method of the magnet adsorption after the main body support is retracted in place. It is not only simple and reliable in assembly, and the thrust test can reach 50N, fully meeting the support use requirements of the user for the daily work and study of the tablet.

[0157] A tablet learning machine according to this embodiment, with an integrated folding support solution for the host bracket, not only has a simple and beautiful appearance, obvious cost advantages, but also stronger reliability in force support. Through the use of plastic and fiberglass materials, the strength of the host bracket is better. This design implementation method is very suitable for tablet learning machines. Currently, no similar products on the market adopt this integrated folding bracket design. Different from meeting user needs through external brackets or leather case brackets, using the folding effect of this utility model bracket is more convenient and reliable in actual use, reducing the need for external brackets such as sheaths to help users achieve the support requirement, and greatly improving the user experience in learning and working.

[0158] Example 5

[0159] This embodiment also provides a computer-readable storage medium storing a computer-executable program, which when executed, implements the control method of a tablet learning machine in Embodiment 1.

[0160] The computer-readable storage medium in this embodiment may include data signals propagated in a baseband or as part of a carrier wave, which carry readable program codes. Such propagated data signals can take various forms, including but not limited to electromagnetic signals, optical signals, or any suitable combination of the above. The computer-readable storage medium can also be any readable medium other than the readable storage medium, and this computer-readable medium can send, propagate, or transmit a program for use by or in conjunction with an instruction execution system, apparatus, or device. The program codes contained on the computer-readable storage medium can be transmitted using any appropriate medium, including but not limited to wireless, wired, optical fiber, RF, etc., or any suitable combination of the above.

[0161] This embodiment also provides an electronic device, including a processor and a memory. The memory is used to store a computer-executable program, and when the computer program is executed by the processor, the processor executes the control method of a tablet learning machine in Embodiment 1.

[0162] The electronic device is presented in the form of a general computing device. The processor can be one or multiple and work collaboratively. This utility model does not exclude distributed processing, that is, the processors can be dispersed in different physical devices. The electronic device of this utility model is not limited to a single entity, but can also be the sum of multiple physical devices.

[0163] The memory stores a computer-executable program, usually machine-readable code. The computer-readable program can be executed by the processor so that the electronic device can execute the method of this utility model, or at least part of the steps in the method.

[0164] The memory includes volatile memory, such as random access memory cells (RAM) and / or cache memory cells, and may also be non-volatile memory, such as read-only memory cells (ROM).

[0165] It should be understood that the electronic device of the present invention may also include elements or components not shown in the above examples. For example, some electronic devices also include a display unit such as a display screen, and some electronic devices also include human-computer interaction elements, such as buttons, keyboards, etc. As long as the electronic device can execute the computer-readable program in the memory to implement at least part of the steps of the method of the present invention, it can be considered as the electronic device covered by the present invention.

[0166] From the above description of the embodiments, those skilled in the art can easily understand that the present invention can be implemented by hardware capable of executing a specific computer program, such as the system of the present invention, and the electronic processing unit, server, client, mobile phone, control unit, processor, etc. included in the system. The present invention can also be implemented by computer software that executes the method of the present invention, such as control software executed by a microprocessor, an electronic control unit, a client, a server, etc. However, it should be noted that the computer software that executes the method of the present invention is not limited to being executed in one or a specific number of hardware entities, and it can also be implemented in a distributed manner by unspecified specific hardware. For computer software, the software product can be stored in a computer-readable storage medium (which can be a CD-ROM, a USB flash drive, a mobile hard disk, etc.), or can be distributed and stored on the network, as long as it can enable the electronic device to execute the method according to the present invention.

[0167] The above embodiments are only used to illustrate the present invention and do not limit the technical solutions described in the present invention. Although this specification has described the present invention in detail with reference to the above respective embodiments, the present invention is not limited to the above specific embodiments. Therefore, any modification or equivalent replacement to the present invention; and all technical solutions and their improvements that do not depart from the spirit and scope of the present invention are covered by the scope of the claims of the present invention.

Claims

1. A scanning pen, characterized in that: include: Pen body; The scanning pen magnetic attraction module is arranged in the pen body; The scanning pen main control module is arranged in the pen body and is communicatively connected with the scanning pen magnetic suction module. When the scanning pen main control module obtains that the pen body is in an adsorbed state through the scanning pen magnetic suction module, it controls the scanning pen to enter a sleep mode. When the scanning pen main control module obtains that the pen body is in a separated state through the scanning pen magnetic suction module, it wakes up the scanning pen to end the sleep mode.

2. A scanning pen according to claim 1, characterized in that: The scanning pen magnetic suction module is a scanning pen magnetic suction connector. The pen body is provided with a magnetic suction connector installation port. The scanning pen magnetic suction connector is installed in the magnetic suction connector installation port. The scanning pen magnetic suction connector has an exposed scanning pen communication output pin and a scanning pen communication input pin. The pen body is in an adsorption / separation state by connecting / disconnecting the scanning pen communication input pin.

3. A scanning pen according to claim 2, characterized in that: The scanning pen magnetic connector has an exposed scanning pen power supply pin and a scanning pen grounding pin. When the pen body is in an adsorption state, the scanning pen power supply pin and the scanning pen grounding pin of the scanning pen magnetic connector are respectively connected to charge the scanning pen.

4. A tablet learning machine having a scanning pen as claimed in any one of claims 1 to 3, characterized in that: It includes a tablet learning host, which includes a host shell and a learning machine magnetic suction module arranged in the host shell; The scanning pen magnetic module of the scanning pen is magnetically adsorbed and connected with the learning machine magnetic module of the tablet learning host. When the tablet learning host obtains that the scanning pen is in a separated state through the learning machine magnetic module, it automatically establishes a wireless communication connection with the scanning pen and automatically starts the scanning program.

5. A tablet learning machine according to claim 4, characterized in that: The learning machine magnetic suction module is a learning machine magnetic suction connector, the host housing is provided with a magnetic suction connector installation port, the learning machine magnetic suction connector is installed in the magnetic suction connector installation port, and the learning machine magnetic suction connector has an exposed learning machine communication output pin and a learning machine communication input pin; When the scanning pen is connected to the tablet learning host by magnetic attraction, the learning machine communication output pin of the learning machine magnetic attraction connector is connected to the scanning pen communication input pin of the scanning pen, and the learning machine communication input pin of the learning machine magnetic attraction connector is connected to the scanning pen communication output pin of the scanning pen; The tablet learning host obtains whether the pen body is in an adsorption / detachment state through the connection / disconnection of the communication input pin of the learning machine.

6. A tablet learning machine according to claim 5, characterized in that: The learning machine magnetic connector has an exposed learning machine power supply pin and a learning machine ground pin; When the scanning pen is magnetically connected to the tablet learning host, the learning machine power supply pin of the learning machine magnetic connector is connected to the scanning pen power supply pin of the scanning pen, and the learning machine ground pin of the learning machine magnetic connector is connected to the scanning pen ground pin of the scanning pen, and the tablet learning host charges the scanning pen.