Intelligent stylus system and intelligent stylus
By integrating recording module, Bluetooth module, voice button and artificial intelligence button on the stylus, it realizes rapid interaction with electronic terminals, solving the problem that the stylus cannot interact with the artificial intelligence writing function, and improving the user's office efficiency and human-computer interaction experience.
Patent Information
- Application Number
- CN202323508587.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2023-12-21
- Publication Date
- 2025-08-19
- Estimated Expiration
- 2033-12-21
AI Technical Summary
The existing stylus cannot effectively interact with the artificial intelligence writing function of electronic terminals, resulting in users being unable to efficiently utilize the artificial intelligence writing function.
An intelligent stylus is designed, equipped with a recording module, a first Bluetooth module, voice buttons and artificial intelligence buttons. Through these components, it realizes rapid interaction with the electronic terminal, calls the artificial intelligence writing function, and processes the entered voice information.
Users can quickly call the artificial intelligence writing function of electronic terminals, improving daily office efficiency and improving human-computer interaction experience.
Smart Images

Figure CN223245089U_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the field of styluses, and in particular to an intelligent stylus system and an intelligent stylus. Background Art
[0002] With the development of touch technology, more and more electronic products support touch-based human-computer interaction. Styluses are a common electronic product that allow users to control touch-screen electronic terminals, as well as write and draw on them. Styluses are often equipped with recording modules, allowing users to send spoken voice messages to electronic terminals, which can then store and convert the voice messages into text.
[0003] With the iterative development of artificial intelligence (AI) technology, AI writing features have begun to be included, which can significantly improve users' daily office efficiency. In related technologies, some electronic terminals are equipped with AI writing features, but styluses typically only have writing, drawing, and voice transmission functions, making it impossible for users to use styluses to interact with the AI writing features configured in electronic terminals. Utility Model Content
[0004] In view of this, the embodiments of the present application provide a smart stylus system and a smart stylus, which are designed to quickly call artificial intelligence (AI) writing functions to meet the user's needs for efficient learning and office work.
[0005] The technical solution of the embodiment of the present application is implemented as follows:
[0006] In a first aspect, an embodiment of the present application provides a smart stylus, comprising:
[0007] pen body;
[0008] A recording module, which is provided on the pen body and is used to receive voice information;
[0009] a first Bluetooth module, which is disposed on the pen body and connected to the recording module, and is used to process the voice information and send it to the electronic terminal;
[0010] A voice button, which is provided on the pen body and connected to the first Bluetooth module, and is used to control the recording module to receive voice information;
[0011] an artificial intelligence button, the artificial intelligence button being disposed on the pen body and connected to the first Bluetooth module, and being used to activate a first mode representing an artificial intelligence writing mode, and in the first mode, controlling the recording module to receive voice information;
[0012] The first Bluetooth module is further configured to send a first instruction for starting the first mode to the electronic terminal.
[0013] In some embodiments, the first Bluetooth module includes a first processor, which is connected to the voice button and the artificial intelligence button, and is used to process the voice information and generate the first instruction.
[0014] In some embodiments, the recording module includes a silicon microphone sensor.
[0015] In some embodiments, the smart stylus further includes a pen tip, which is disposed at the head of the pen body and is used to perform contact control on the electronic terminal when the pen tip contacts the touch panel of the electronic terminal.
[0016] In some embodiments, the smart stylus pen further includes a battery, which is disposed inside the pen body.
[0017] In some embodiments, the smart stylus further includes a wireless charging port, which is connected to the battery for charging the battery.
[0018] In a second aspect, an embodiment of the present application provides a smart stylus system, the smart stylus system comprising the smart stylus as described in the first aspect and an electronic terminal, the electronic terminal comprising:
[0019] a second Bluetooth module, configured to pair with the first Bluetooth module of the smart stylus and receive a voice message and / or a first instruction indicating activation of the first mode sent by the first Bluetooth module;
[0020] a second processor, the second processor being connected to the second Bluetooth module and configured to execute the first mode based on the first instruction; and process the voice information received by the second Bluetooth module based on the first mode; or process the voice information received by the second Bluetooth module based on the second mode representing the voice storage mode; or process the voice information received by the second Bluetooth module based on the third mode representing the voice-to-text mode; or process the voice information received by the second Bluetooth module based on the fourth mode representing the voice translation mode;
[0021] Among them, the first mode represents an artificial intelligence writing mode.
[0022] In some embodiments, the electronic terminal further includes a memory connected to the second Bluetooth module and the second processor, and configured to store voice information received by the second Bluetooth module.
[0023] In some embodiments, the electronic terminal also includes a touch panel, which is connected to the second processor and is used to generate a second instruction based on the contact control of the smart stylus; the second processor executes the second mode, the third mode or the fourth mode based on the second instruction.
[0024] In some embodiments, the second controller is further configured to execute the first mode based on the first instruction and the second instruction.
[0025] The embodiment of the present application provides a smart stylus system and a smart stylus. The smart stylus includes a pen body, a recording module, a first Bluetooth module, a voice button, and an artificial intelligence button. The recording module is used to receive voice information; the first Bluetooth module is used to process the voice information and send it to the electronic terminal; the voice button is used to control the start time and duration of the voice information received by the recording module; the artificial intelligence button is used to start a first mode representing the artificial intelligence writing mode, and in the first mode, control the start time and duration of the voice information received by the recording module; the first Bluetooth module is also used to send a first instruction representing the start of the first mode. In this way, in addition to the voice input function, the user can also use the smart stylus to quickly call the artificial intelligence writing function of the electronic terminal, and quickly process the voice information input by the smart stylus based on the artificial intelligence writing function, thereby improving the user's daily office efficiency and the user's human-computer interaction experience. BRIEF DESCRIPTION OF THE DRAWINGS
[0026] Figure 1 This is a schematic diagram of the structure of the smart stylus according to an embodiment of the present application;
[0027] Figure 2 This is a schematic structural diagram of a smart stylus according to another embodiment of the present application;
[0028] Figure 3 This is a circuit diagram of the smart stylus according to an embodiment of the present application;
[0029] Figure 4 This is a schematic diagram of the structure of the electronic terminal according to an embodiment of the present application;
[0030] Figure 5 This is a schematic diagram of the interface of an application program adapted for a smart stylus built into an electronic terminal according to an embodiment of the present application;
[0031] Figure 6 This is a schematic diagram of the interface of the electronic terminal in the first mode according to an embodiment of the present application. DETAILED DESCRIPTION
[0032] The present application will be described in further detail below with reference to the accompanying drawings and embodiments.
[0033] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as those commonly understood by those skilled in the art to which this application pertains. The terms used herein in the specification of this application are for the purpose of describing specific embodiments only and are not intended to limit this application.
[0034] The embodiment of the present application provides a smart stylus pen, such as Figure 1 As shown. The smart stylus includes: a pen body 1, a recording module 2, a first Bluetooth module, a voice button 3 and an artificial intelligence button 4. The recording module 2 is arranged on the pen body 1, and is used to receive voice information. The first Bluetooth module is arranged on the pen body 1, connected to the recording module 2, and is used to process the voice information and send it to the electronic terminal. The voice button 3 is arranged on the pen body 1, connected to the first Bluetooth module, and is used to control the recording module 2 to receive voice information. The artificial intelligence button 4 is arranged on the pen body 1, connected to the first Bluetooth module, and is used to start the first mode representing the artificial intelligence writing mode, and in the first mode, control the recording module 2 to receive voice information. The first Bluetooth module is also used to send a first instruction representing the start of the first mode to the electronic terminal.
[0035] Exemplarily, the recording module 2 includes a silicon microphone sensor.
[0036] Preferably, the recording module 2 is arranged at the tail of the pen body 1 .
[0037] Preferably, the voice button 3 is arranged on the side of the pen body 1 .
[0038] Preferably, the artificial intelligence button 4 is arranged on the side of the pen body 1 .
[0039] Preferably, the smart stylus is a capacitive stylus.
[0040] It can be understood that a key slot is provided on the pen body 1 , and the voice button 3 and the artificial intelligence button 4 are installed on the pen body 1 based on the key slot.
[0041] It is understandable that the first Bluetooth module is arranged inside the pen body 1. Figure 1 No specific indication is given in the text.
[0042] It should be noted that the silicon microphone sensor of the recording module 2 records the voice information spoken by the user, and the voice information is sent to the first Bluetooth module after filtering. The first Bluetooth module converts the voice information analog signal into a voice information digital signal and sends it to the electronic terminal via Bluetooth communication.
[0043] Here, the user controls the start time and duration of the voice information received by the recording module 2 based on the operation of the voice button 3, and the first Bluetooth module processes the recorded voice information based on the user's operation of the voice button 3.
[0044] Here, the user presses the voice button 3 to control the start time of the recording module 2 receiving the voice information, and controls the duration of the recording module 2 receiving the voice information by long pressing or short pressing the voice button 3.
[0045] In an embodiment of the present application, the method for controlling the recording module 2 to receive voice information based on the user's operation of the voice button 3 can be: the user presses and holds the voice button 3 and starts voice recording, and the user releases the voice button 3 after completing the voice recording, and the smart stylus sends the recorded voice information to the electronic terminal based on the first Bluetooth module.
[0046] In another embodiment of the present application, the user controls the recording module 2 to receive voice information based on the operation of the voice button 3: the user short presses the voice button 3 to start voice recording, and the user short presses the voice button 3 again after completing the voice recording. The smart stylus sends the recorded voice information to the electronic terminal based on the first Bluetooth module.
[0047] Here, based on the operation of the artificial intelligence button 4, the user starts the first mode and controls the start time and duration of the recording module 2 in the first mode to receive the voice information. Based on the user's operation of the artificial intelligence button 4, the first Bluetooth module processes the recorded voice information and sends the first instruction to the electronic terminal.
[0048] Here, the user long presses the artificial intelligence button 4 to start the first mode, and controls the start time and duration of the recording module 2 receiving the voice information in the first mode by short pressing the artificial intelligence button 4.
[0049] In an embodiment of the present application, the method for starting the first mode based on the user's operation of the artificial intelligence button 4 can be: the user presses and holds the artificial intelligence button 4 for 3 seconds, the first Bluetooth module sends a first instruction to the electronic terminal, and the electronic terminal starts the first mode based on the first instruction.
[0050] In an embodiment of the present application, the method for controlling the recording module 2 in the first mode to receive voice information based on the user's operation of the artificial intelligence button 4 can be: after starting the first mode, the user short presses the artificial intelligence button 4 to start voice recording, and after the user completes the voice recording, the user short presses the artificial intelligence button 4 again, and the smart stylus sends the recorded voice information to the electronic terminal based on the first Bluetooth module.
[0051] It should be noted that if the first Bluetooth module does not receive the user's operation instruction of pressing and holding the artificial intelligence button 4 for 3 seconds, the user cannot perform voice input based on the operation of short pressing the artificial intelligence button 4.
[0052] It should be noted that if the first mode is activated, the user cannot perform voice input based on the operation of the voice button 3.
[0053] It can be understood that in addition to the voice input function, the smart stylus of the embodiment of the present application is also provided with an artificial intelligence button. The user can use the smart stylus to quickly call the artificial intelligence writing function of the electronic terminal, and quickly process the voice information input by the smart stylus based on the artificial intelligence writing function, thereby improving the user's daily office efficiency and improving the user's human-computer interaction experience.
[0054] Exemplarily, the smart stylus further includes a pen tip 3 , which is disposed at the head of the pen body 1 and is used to perform contact control on the electronic terminal when the pen tip 3 contacts the touch panel of the electronic terminal.
[0055] It is understandable that the user can use the smart stylus to perform contact control on the electronic terminal equipped with the touch panel, and can also use the smart stylus to perform operations such as writing and drawing on the touch panel.
[0056] Exemplarily, the smart stylus further includes a battery, which is disposed inside the pen body 1 and is used to supply power to the smart stylus.
[0057] Exemplarily, the smart stylus further includes a wireless charging port, which is connected to a battery of the smart stylus for charging the battery.
[0058] Here, the wireless charging port can be set on the side of the pen body 1, arranged in sequence in the same direction as the voice button 3 and the artificial intelligence button 4, or it can be set on the opposite side of the voice button 3 and the artificial intelligence button 4.
[0059] It should be noted that the smart stylus can charge its battery via the wireless charging port by contacting the electronic terminal.
[0060] Exemplarily, the first Bluetooth module includes a first processor, which is connected to the voice button 3 and the artificial intelligence button 4 and is used to process voice information and generate a first instruction.
[0061] It can be understood that the first processor controls the recording module 2 to receive voice information and convert the voice information analog signal into a voice information digital signal based on the user's operation of the voice button 3 and the artificial intelligence button 4; and generates a first instruction based on the user's operation of the artificial intelligence button 4.
[0062] It should be noted that the first Bluetooth module further includes a first Bluetooth antenna, and the voice information processed by the first processor and the first instruction generated are sent to the electronic terminal via the first Bluetooth antenna.
[0063] Figure 2 The connection relationship of the various components of the smart stylus according to the embodiment of the present application is illustrated.
[0064] The present application also provides a circuit diagram of a smart stylus pen, such as Figure 3 shown.
[0065] Here, the first Bluetooth module includes a first processor U1 and a first Bluetooth antenna ANT. The first processor U1 is a microcontroller (Micro Controller Unit, abbreviated as MCU), model is iTing-M5. Pin 5 of the first processor U1 is the radio frequency RF pin. The first processor U1 sends the voice information to the electronic terminal through the first Bluetooth antenna ANT after impedance matching processing by inductor L2, capacitor C4, inductor L3, and capacitor C3.
[0066] Here, MK1 is a silicon microphone sensor chip used for voice information collection and recording. It is connected to the MIC_BIAS pin of the first processor U1 via resistors R41, R40, and capacitor C11, and to the MIC_IN pin of the first processor U1 via capacitor C12. The MIC_BIAS and MIC_IN pins of the first processor U1 provide a differential voltage. Resistor R41 is used to determine the sensitivity of the silicon microphone sensor. When a user approaches the silicon microphone sensor to begin recording, the sound pressure causes the capacitance of the silicon microphone sensor to change. The silicon microphone sensor chip MK1 converts the capacitance change into a voltage change. The first processor U1 receives voice information based on the voltage change between the MIC_BIAS and MIC_IN pins.
[0067] Here, button S2 is a voice button. When the user presses the voice button S2, the P27 pin of the first processor U1 receives a low-level signal or a falling edge signal. The first processor U1 receives the voice information and sends the voice information to the electronic terminal through the first Bluetooth antenna ANT.
[0068] Here, button S3 is an artificial intelligence button. When the user long presses the artificial intelligence button S3, the P14 pin of the first processor U1 receives a continuous low-level signal, and the first processor U1 generates a first instruction and sends it to the electronic terminal through the first Bluetooth antenna ANT, and the smart stylus enters the first mode; in the first mode, after the user short presses the artificial intelligence button S3, the P14 pin of the first processor U1 receives a falling edge signal, and the first processor U1 receives voice information. When the P14 pin of the first processor U1 receives a falling edge signal again, the first processor U1 stops receiving voice and sends the voice information to the electronic terminal.
[0069] Here, the first Bluetooth module further includes a crystal oscillator X1 for generating a clock frequency of the first processor U1 and ensuring that the first processor U1 operates within a smaller frequency deviation range based on capacitors C5 and C6.
[0070] Here, the first processor U1 further includes a low dropout regulator (LDO). The battery provides a power supply VCC for the first processor U1 , and the power supply VCC is converted by the LDO to output a power supply VLDO.
[0071] The embodiment of the present application further provides a smart stylus system, which includes the aforementioned smart stylus and an electronic terminal, wherein the structural diagram of the electronic terminal is as shown in FIG. Figure 4 As shown. The electronic terminal includes: a second Bluetooth module 6, a second processor 7 and a memory 8. The second Bluetooth module 6 is used to pair with the first Bluetooth module of the smart stylus, and receive the voice information sent by the first Bluetooth module and / or the first instruction representing the start of the first mode. The second processor 7 is connected to the second Bluetooth module 6, and is used to execute the first mode based on the first instruction; and process the voice information received by the second Bluetooth module 6 based on the first mode; or process the voice information received by the second Bluetooth module 6 based on the second mode representing the voice storage mode; or process the voice information received by the second Bluetooth module 6 based on the third mode representing the voice-to-text mode; or process the voice information received by the second Bluetooth module 6 based on the fourth mode representing the voice translation mode. The memory 8 is connected to the second Bluetooth module 6 and the second processor 7, and is used to store the voice information received by the second Bluetooth module 6.
[0072] Here, the electronic terminal is set with four working modes, namely artificial intelligence writing mode, voice storage mode, voice-to-text mode and voice translation mode. The specific meaning of each working mode is as follows:
[0073] In the artificial intelligence writing mode, the electronic terminal performs artificial intelligence search on the received voice information and / or performs artificial intelligence writing based on the received voice information.
[0074] In voice storage mode, the electronic terminal automatically saves the received voice information in the root directory of the set storage disk.
[0075] In the voice-to-text mode, the electronic terminal automatically converts the received voice information into text information, and the text type is Chinese by default.
[0076] In the voice translation mode, the electronic terminal automatically translates the received voice information into text information in other languages. The language information defaults to Chinese, and the translated text information defaults to English.
[0077] Preferably, the speech-to-text mode of the electronic terminal can also automatically convert speech information in other languages into text information in the same language.
[0078] Preferably, in the voice translation mode of the electronic terminal, the voice information is not limited to Chinese, and the translated text information is not limited to English.
[0079] It can be understood that in the second mode, the memory 8 automatically saves the voice information received by the second Bluetooth module 6 in the root directory of the set storage disk; in the first mode, the third mode or the fourth mode, the memory 8 does not save the voice information received by the second Bluetooth module 6, and the second processor 7 directly processes the voice information.
[0080] It is understandable that the electronic terminal only stores the voice information received by the second Bluetooth module 6 in the second mode, which can save storage space of the memory 8.
[0081] It should be noted that the first mode, the third mode and the fourth mode of the electronic terminal perform corresponding operations based on the large model platform.
[0082] It should be noted that, when the electronic terminal is not in the above working mode, the electronic terminal does not process or store the voice information received by the second Bluetooth module 6 .
[0083] Exemplarily, the electronic terminal further includes a touch panel 9 connected to the second processor 7 for generating a second instruction based on touch control of the smart stylus. The second processor 7 executes the second mode, the third mode, or the fourth mode based on the second instruction.
[0084] Exemplarily, the second controller 7 is further configured to execute the first mode based on the first instruction and the second instruction.
[0085] It is understandable that the touch panel 9 is also used to display text and image information.
[0086] Here, the electronic terminal of the embodiment of the present application has a built-in application adapted to the smart stylus. After the user opens the application, the touch panel 9 displays multiple virtual soft keys. The user can touch the virtual soft keys based on the pen tip 5 of the smart stylus to generate a second instruction.
[0087] The embodiment of the present application provides a schematic diagram of an interface of an application program adapted for a smart stylus built into an electronic terminal, such as Figure 5 shown.
[0088] The electronic terminal's application interface has four virtual soft keys: K1, K2, K3, and K4. K1 is a voice storage key, K2 is a voice-to-text key, K3 is a voice translation key, and K4 is an AI writing key. When a user touches a virtual soft key K1, K2, K3, or K4 with a smart stylus, four second instructions representing different operating modes are generated. Second processor 7 executes different operating modes based on the different instructions.
[0089] In an application example of the present application, the user uses a smart stylus to touch the voice storage button K1, and the electronic terminal executes the second mode. Based on the user's operation of the voice button 3 of the smart stylus, the recorded voice information is stored in the electronic terminal.
[0090] In an application example of the present application, a user uses a smart stylus to touch the voice-to-text button K2, and the electronic terminal executes the third mode. Based on the user's operation of the voice button 3 of the smart stylus, the electronic terminal converts the recorded voice information into text information in the same language and displays it on the touch panel 9.
[0091] In an application example of the present application, the user uses a smart stylus to touch the voice translation button K3, and the electronic terminal executes the fourth mode. Based on the user's operation of the voice button 3 of the smart stylus, the electronic terminal translates the recorded voice information into text information in different languages and displays it on the touch panel 9.
[0092] In an application example of the present application, a user uses a smart stylus to touch the artificial intelligence writing button K4. The user presses and holds the artificial intelligence button 4 of the smart stylus for 3 seconds. The electronic terminal executes the first mode and calls the operation interface of the artificial intelligence writing mode within the application. Based on the user's short press operation on the artificial intelligence button 4, the electronic terminal performs artificial intelligence search and / or artificial intelligence writing on the spoken voice information and displays it on the touch panel 9.
[0093] Here, the user can use the smart stylus to adjust the language types of the third mode and the fourth mode. The embodiment of the present application does not provide a specific illustration of the adjustment interface.
[0094] It should be noted that after the user presses the artificial intelligence button 4 of the smart stylus for 3 seconds, the smart stylus issues a first instruction, which is used to call the operation interface of the artificial intelligence writing mode in the application of the electronic terminal.
[0095] The embodiment of the present application provides a schematic diagram of an interface of an electronic terminal in a first mode, such as Figure 6 shown.
[0096] Here, after the user presses the artificial intelligence button 4 of the smart stylus for 3 seconds, the touch panel 9 of the electronic terminal displays the following Figure 6 The interface shown includes a virtual softkey for voice transcription, which is off by default. The user briefly presses AI button 4 to begin recording a voice message. Short-pressing AI button 4 again displays the voice message in text form in the question text dialog box. The second processor 7 performs an AI search on the sent message based on the large model platform and displays the search results in text form in the answer dialog box.
[0097] Here, the user can also use the smart stylus to click the voice transcription virtual soft button, and the electronic terminal will switch from artificial intelligence search mode to artificial intelligence writing mode. The user will short press the artificial intelligence button 4 to start recording voice information. After short pressing the artificial intelligence button 4 again, the voice information will be displayed in text form in the question text dialog box. The second processor 7 will perform artificial intelligence writing processing on the voice information based on the large model platform, and display the writing results processed by the artificial intelligence writing function in the answer dialog box.
[0098] It should be noted that in the first mode, the electronic terminal also supports text input. The text information entered by the user is displayed in the input box. After the user confirms that it is correct, the virtual soft key is sent by the single machine, and the text information is displayed in the question text dialog box. The second processor 7 performs artificial intelligence search processing or artificial intelligence writing processing on the voice information based on the large model platform, and displays the processing results in text form in the answer dialog box.
[0099] It should be noted that the user can cut or copy the search results and / or writing results displayed in the answer dialog box.
[0100] It is understandable that users can use smart stylus pens to interact with electronic terminals. In addition to using smart stylus pens to realize convenient functions such as voice storage, voice-to-text, and voice translation, users can also use smart stylus pens to quickly call the artificial intelligence writing function of the electronic terminal, and quickly process the voice information entered by the smart stylus pens based on the artificial intelligence writing function, thereby improving the user's daily office efficiency and improving the user's human-computer interaction experience.
[0101] It should be noted that: "first", "second", etc. are used to distinguish similar objects, and are not necessarily used to describe a specific order or sequence.
[0102] In addition, the technical solutions described in the embodiments of the present application can be arbitrarily combined without conflict.
[0103] The above description is merely a specific embodiment of the present application, but the scope of protection of the present application is not limited thereto. Any changes or substitutions that can be easily conceived by a person skilled in the art within the technical scope disclosed in the present application should be included in the scope of protection of the present application. Therefore, the scope of protection of the present application should be based on the scope of protection of the claims.
Claims
1. A smart stylus pen, characterized in that: The smart stylus comprises: pen body; A recording module, which is provided on the pen body and is used to receive voice information; a first Bluetooth module, which is disposed on the pen body and connected to the recording module, and is used to process the voice information and send it to the electronic terminal; A voice button, which is provided on the pen body and connected to the first Bluetooth module, and is used to control the recording module to receive voice information; an artificial intelligence button, the artificial intelligence button being disposed on the pen body and connected to the first Bluetooth module, and being used to activate a first mode representing an artificial intelligence writing mode, and in the first mode, controlling the recording module to receive voice information; The first Bluetooth module is further configured to send a first instruction to the electronic terminal indicating starting the first mode; The smart stylus also includes a pen tip, which is arranged at the head of the pen body and is used to control the electronic terminal when it contacts the touch panel of the electronic terminal, so that the touch panel generates a second instruction representing a different working mode.
2. The smart stylus according to claim 1, wherein: The first Bluetooth module includes a first processor, which is connected to the voice button and the artificial intelligence button, and is used to process the voice information and generate the first instruction.
3. The smart stylus according to claim 1, wherein: The recording module includes a silicon microphone sensor.
4. The smart stylus according to claim 1, wherein: The smart stylus pen further includes a battery, which is arranged inside the pen body.
5. The smart stylus according to claim 4, characterized in that: The smart stylus further includes a wireless charging port, which is connected to the battery for charging the battery.
6. An intelligent stylus system, characterized in that: The smart stylus system comprises the smart stylus according to any one of claims 1 to 5 and an electronic terminal, wherein the electronic terminal comprises: a second Bluetooth module, configured to pair with the first Bluetooth module of the smart stylus and receive a voice message and / or a first instruction indicating activation of the first mode sent by the first Bluetooth module; a second processor, the second processor being connected to the second Bluetooth module and configured to execute the first mode based on the first instruction; and process the voice information received by the second Bluetooth module based on the first mode; or process the voice information received by the second Bluetooth module based on the second mode representing the voice storage mode; or process the voice information received by the second Bluetooth module based on the third mode representing the voice-to-text mode; or process the voice information received by the second Bluetooth module based on the fourth mode representing the voice translation mode; Among them, the first mode represents an artificial intelligence writing mode.
7. The smart stylus system according to claim 6, wherein: The electronic terminal further includes a memory connected to the second Bluetooth module and the second processor, and configured to store voice information received by the second Bluetooth module.
8. The smart stylus system according to claim 6, wherein: The electronic terminal also includes a touch panel connected to the second processor, which is used to generate a second instruction based on the contact control of the smart stylus; the second processor executes the second mode, the third mode or the fourth mode based on the second instruction.
9. The smart stylus system according to claim 8, wherein: The second processor is further configured to execute the first mode based on the first instruction and the second instruction.
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