Office display based on independent operating system auxiliary screen and application thereof
By combining a touch-screen auxiliary display with an independent operating system on the office monitor, the problems of multitasking and health reminders are solved, enabling focused display on the main monitor and intelligent information processing on the auxiliary screen, thereby improving user experience and health care.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- TPV ELECTRONICS (FUJIAN) CO LTD
- Filing Date
- 2026-02-25
- Publication Date
- 2026-06-02
AI Technical Summary
Existing office monitors cannot process different types of work information simultaneously, and EPD display products are not widely used for auxiliary display and information processing of monitors, lacking integrated intelligent AI organization and health reminder functions.
It combines a touch-screen auxiliary display based on an independent operating system with the main display. The touch-screen auxiliary display is equipped with an independent operating system for receiving information notifications, providing a function control interface and a calendar application. It uses AI to analyze the user's work status and provide health advice, realizing information integration, intelligent reminders and device control.
It enables the main display to focus on the main task in full-screen mode, while the secondary display handles notifications and schedule information, improving work efficiency and health care, simplifying operation processes, providing personalized health advice, and significantly enhancing the user experience.
Smart Images

Figure CN122131878A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of display device technology, and in particular to office displays based on independent operating system auxiliary screens and their applications. Background Technology
[0002] Currently, office monitors cannot handle different types of work information simultaneously, such as processing full-screen drawing software and emails at the same time; or watching full-screen games or movies while processing WeChat and email messages at the same time; most EPD display products on the market are standalone display products, without integrated systems that can be paired with monitors to provide touch-screen auxiliary display solutions for office auxiliary display and control.
[0003] Existing technologies do not utilize EPD display products as auxiliary display or information processing functions for monitors. The use of EPD display products as auxiliary screens for monitors is not widespread; for example, simultaneous processing of full-screen drawing software and emails; simultaneous processing of full-screen games or movies and WeChat / email messages; touch auxiliary screens are not extended to serve as auxiliary timetables, notepads, or other note-taking applications for monitors; messages received by touch auxiliary screens are not integrated and intelligently organized by AI to facilitate users' overview and summary of completed tasks for the day, month, and year, and to contribute to healthy office work and work efficiency reminders by tracking effective time and work-rest balance. Furthermore, touch auxiliary screens are not applied to the human-computer interaction interface of monitors, including monitor menu applications, thus freeing users from the complex menu design and verification required on the monitor side. Summary of the Invention
[0004] The purpose of this invention is to provide an office monitor and its application based on an independent operating system auxiliary screen. By combining it with an EPD auxiliary display screen, the application scope of the monitor is expanded, the additional display content on the main screen is reduced, and the immersive scene experience of the monitor is enhanced.
[0005] The technical solution adopted in this invention is:
[0006] Office monitors with an independent operating system-based auxiliary screen include:
[0007] The main display screen is used to show the main content.
[0008] A touch-screen auxiliary display is electrically connected to the main display and is used as an auxiliary display and human-computer interaction interface.
[0009] The main control unit is integrated into the touch auxiliary screen and / or the main display, and is electrically connected to the main display and the touch auxiliary screen respectively;
[0010] The auxiliary touchscreen is equipped with an independent operating system. This independent operating system is used to receive and display information notifications from external mobile devices, provide a function control interface for the main display to interact with the main display, and provide a calendar / notebook application interface to provide reminders and arrangements in advance based on the items and times recorded by the user.
[0011] Specifically, the touch auxiliary screen is preferably an electronic paper display, but other displays such as LCD or OLED can also be selected.
[0012] Furthermore, the touch-enabled auxiliary screen can be detachably mounted on the bezel of the main display.
[0013] As an optional implementation, the touch auxiliary screen can be detachably mounted at the bottom bezel of the main display.
[0014] Furthermore, a decorative strip is provided at the bottom of the main display bezel; the decorative strip is a long, sloping structure that is fixed to the bottom of the display bezel, and the EPD touch screen module is installed on this structure.
[0015] Furthermore, the external mobile device is equipped with an application that communicates and interacts with the independent operating system on the touch auxiliary screen. The application is responsible for forwarding (email, WeChat, etc.) office and communication tool information to the touch auxiliary screen for display, reading, and reply processing. At the same time, before forwarding emails, the application asks the user to choose whether to transmit information from a privacy and security perspective, and personalizes the selection of whether to transmit relevant user account information. The application sends relevant function control commands to the touch auxiliary screen, which then forwards them to the main display for control processing.
[0016] Furthermore, the touch-assisted screen is equipped with AI applications and communicates with a remote AI server. After classifying and processing the received information, the touch-assisted screen sends a request to the AI server for AI analysis in order to provide health tips and work arrangement suggestions.
[0017] Specifically, the EPD touch-screen assists in classifying and processing received information. The LLM API then uses cloud-based AI LLM to analyze the user's work-related fatigue or stress levels, suggesting dietary adjustments such as consuming brain-boosting foods like nuts and walnuts. If the user exhibits a tendency towards haste, the system recommends cooling and liver-regulating drinks like chrysanthemum tea, aiming to truly focus on health. AI analyzes the current work status in real-time and provides reasonable time reminders based on different task categories.
[0018] Furthermore, human-computer interaction includes touch function control and voice function control, receiving the user's touch commands and / or voice commands through a touch auxiliary screen to control the function settings of the main display.
[0019] Furthermore, the touch auxiliary screen is an EPD touch auxiliary screen.
[0020] Furthermore, the present invention also discloses an information processing and interaction method for an office monitor based on an independent operating system auxiliary screen, applied to the aforementioned office monitor based on an independent operating system auxiliary screen, the method comprising the following steps:
[0021] Information integration steps: Obtain user-authorized communication information through an external mobile device or the APP built into the touch auxiliary screen, and send the communication information to the touch auxiliary screen for display and interaction, so as to keep the main display in an immersive display state;
[0022] The intelligent assistant process involves collecting the user's work and schedule data via a touch-screen auxiliary display, and processing the data based on an AI analysis model to generate and output intelligent reminders, including work efficiency statistics and health suggestions.
[0023] Equipment control steps: Receive user commands through the touch auxiliary screen and convert the commands into function control signals for the main display.
[0024] Furthermore, the information integration steps specifically include:
[0025] S11 provides an authorization configuration interface on mobile devices or touch-enabled secondary screens, allowing users to select specific applications and contacts that can be forwarded or received to the touch-enabled secondary screen;
[0026] S12, Monitor and obtain information about the specific application that is authorized;
[0027] S13, the acquired information is categorized and displayed in a specific area of the touch auxiliary screen;
[0028] S14, through the touch interface of the touch auxiliary screen, provide a function for quickly replying to the information or retrieving to-do items.
[0029] Furthermore, the steps of the intelligent assistant specifically include:
[0030] S21, Based on the information collected in the information integration step and the schedule manually recorded by the user on the touch-assisted screen, construct a user behavior dataset;
[0031] S22 sends the user behavior dataset to a local or cloud-based AI analysis model to analyze the user's workload, fatigue level, and transaction processing patterns.
[0032] S23 automatically generates schedule reminders based on the analysis results and outputs personalized health adjustment suggestions when preset conditions are identified.
[0033] Furthermore, personalized health management recommendations include: when the analysis results indicate that the user is fatigued, it is recommended to consume brain-boosting foods; when the analysis results indicate that the user is prone to irritability, it is recommended to drink cooling beverages.
[0034] Furthermore, the equipment control steps specifically include:
[0035] S31 renders and displays the function control menu of the main display on the touch auxiliary screen, the menu including at least brightness, volume, and input source options;
[0036] S32 receives touch or voice operations from the user on the touch auxiliary screen and generates corresponding control commands;
[0037] S33: Send control commands to the main display and receive status feedback information from the main display and display it on the touch auxiliary screen.
[0038] Furthermore, it includes an authorization display step:
[0039] The mobile device or touch-enabled screen provides an authorization interface for receiving user permission settings to forward or receive specific application information to the touch-enabled screen; based on the permission settings, it intercepts and encrypts the information of the specific application; and sends the encrypted information to the touch-enabled screen.
[0040] The touch-enabled auxiliary screen executes information received by its own APP or decrypts information from the mobile device; without interrupting the full-screen operation of the main display, it categorizes and displays the decrypted information on the auxiliary screen interface.
[0041] This invention, employing the above technical solutions, offers the following advantages compared to existing technologies: 1) Through hardware functional partitioning, the main screen can be dedicated to full-screen office work, design, entertainment, and other primary tasks, while important information such as emails and WeChat messages can be seamlessly transferred to the EPD auxiliary screen for display and interaction, avoiding workflow interruptions caused by frequent window switching. 2) By migrating the complex control menu of the main display to the EPD touchscreen, users can intuitively adjust settings via touch or voice, ensuring precise and efficient operation without affecting the main screen's display content, thus simplifying the device's usability. 3) Based on AI analysis of work and schedule data collected by the EPD screen, the system not only provides intelligent schedule reminders but also proactively identifies user fatigue and stress levels, offering personalized health suggestions, thereby elevating it from a simple functional tool to an intelligent partner focused on user health and efficiency. This invention significantly enhances the practicality and user experience of display products. Attached Figure Description
[0042] The present invention will be further described in detail below with reference to the accompanying drawings and specific embodiments;
[0043] Figure 1This is a schematic diagram of the office monitor based on an independent operating system auxiliary screen according to the present invention;
[0044] Figure 2 This is a schematic diagram illustrating the principle and structure of the office monitor based on an independent operating system auxiliary screen according to the present invention;
[0045] Figure 3 This is a flowchart illustrating the information processing and interaction method of the office display based on an independent operating system auxiliary screen according to the present invention. Detailed Implementation
[0046] To make the objectives, technical solutions, and advantages of the embodiments of this application clearer, the technical solutions of the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings.
[0047] like Figures 1 to 3 As shown, this invention discloses an office display based on an auxiliary screen with an independent operating system, which includes:
[0048] Main display 1 is used to display the main screen content;
[0049] The touch auxiliary screen 2 is electrically connected to the main display 1 and is used as an auxiliary display and human-computer interaction interface;
[0050] The main control unit is integrated into the touch auxiliary screen 2 and / or the main display 1, and is electrically connected to the main display 1 and the touch auxiliary screen 2 respectively;
[0051] The touch auxiliary screen 2 is equipped with an independent operating system. The independent operating system is used to receive and display information notifications from external mobile devices, provide a function control interface for the main display 1 so as to interact with the main display 1, and provide a schedule notepad application interface so as to give reminders and arrangements in advance based on the items and times recorded by the user.
[0052] Specifically, the main display 1 and the touch auxiliary screen 2 can optionally achieve bidirectional data connection via a wireless / wired communication module, realizing a physically integrated device. The main display 1 includes an image processor and connected wireless / wired communication modules, a display module, and an interface module. Additionally, the main display 1 is equipped with a power module and a wireless charging module. At its core is the MNT Scaler image processor, responsible for scaling, color processing, and timing control of the input high-definition video signal. The interface module includes at least one HDMI port and one Type-C port for receiving audio and video signals and data from external devices such as computers and game consoles. The video signal processed by the image processor is output to the display module (usually an LCD or OLED panel) to drive high-quality main screen display. The wireless / wired communication module is responsible for establishing data communication links with the EPD auxiliary screen system and other external devices (such as smartphones). The power module provides a unified power supply for the entire system. The wireless charging module, integrated into the main display 1, can charge wirelessly charging-enabled mobile devices, expanding the device's functionality.
[0053] The touch auxiliary screen 2 is equipped with a power module, a wireless / wired communication module, a signal interface, a human-machine interaction module, a display module, and a touch module. The touch auxiliary screen 2 also runs an independent operating system, such as Android OS. The touch auxiliary screen 2 uses Android OS as its software core, running on a dedicated microprocessor responsible for managing all system tasks and resources. The display module is used to display static or low-frequency refresh content such as notifications, schedules, and control interfaces on the EPD auxiliary screen. The touch module, covering the EPD screen, is used to receive user touch input; the human-machine interaction module includes voice input and other interaction methods, responsible for collecting user operation commands. The wireless / wired communication module pairs and connects with the corresponding module of the main display 1 or an external mobile device to realize the exchange of commands and data between systems. The signal interface is used to receive display data and control signals from the main display 1 or transmitted through the communication module. The EPD auxiliary screen system can also optionally be equipped with its own power module to obtain power and manage the system's power consumption.
[0054] As an optional implementation, the main display 1 and the touch auxiliary screen 2 share a power supply module.
[0055] Specifically, this invention achieves full-screen immersive display on the main screen by integrating a main display 1 with a detachable touch-enabled auxiliary screen 2 at the hardware level. The main display focuses on the primary task, while the EPD auxiliary screen is dedicated to handling notifications, schedules, and other auxiliary information. The two operate independently, fundamentally solving the problem of frequent interruptions to the main screen display and significantly improving focus and efficiency during work and entertainment. Moving complex function menus and control interfaces from the main screen to the EPD auxiliary screen keeps the main screen interface clean and simple. Simultaneously, utilizing the touch characteristics of the EPD screen provides a more intuitive and convenient human-computer interaction method, simplifying the user's operation process. The physical characteristic of the EPD screen—consuming power only when updating content—combined with an independent operating system, allows the auxiliary screen system to operate with low power for extended periods as a constantly lit information display board, without the excessive additional power consumption of traditional LCD secondary screens.
[0056] Furthermore, the touch auxiliary screen 2 is detachably mounted on the bezel 11 of the main display 1.
[0057] As an optional implementation, the touch auxiliary screen 2 can be detachably installed at the bottom of the bezel 11 of the main display 1.
[0058] Furthermore, a decorative strip 3 is provided at the bottom of the bezel 11 of the main display 1; the decorative strip 3 is a long, sloping structure that is installed and fixed at the bottom of the bezel 11 of the display, and the EPD touch screen module is installed on this structure.
[0059] Furthermore, the main display 1 is mounted on a bracket base 4.
[0060] Furthermore, the external mobile device is equipped with an application that communicates and interacts with the independent operating system on the touch auxiliary screen 2; the application is responsible for forwarding (email, WeChat, etc.) office and communication tool information to the touch auxiliary screen 2 for display, reading and reply processing; at the same time, before forwarding emails, the application asks the user to choose whether to transmit information from a privacy and security perspective, and personalizes the selection of whether to transmit relevant user account information; the application sends relevant function control commands to the touch auxiliary screen 2, and then forwards them to the main display 1 for control processing.
[0061] Furthermore, the touch-assisted screen is equipped with AI applications and communicates with a remote AI server; after classifying and processing the received information, the touch-assisted screen 2 sends a request to the AI server for AI analysis in order to provide health tips and work arrangement suggestions.
[0062] Specifically, the EPD touch-screen assists in classifying and processing received information. The LLM API then uses cloud-based AI LLM to analyze the user's work-related fatigue or stress levels, suggesting dietary adjustments such as consuming brain-boosting foods like nuts and walnuts. If the user exhibits a tendency towards haste, the system recommends cooling and liver-regulating drinks like chrysanthemum tea, aiming to truly focus on health. AI analyzes the current work status in real-time and provides reasonable time reminders based on different task categories.
[0063] Furthermore, the human-computer interaction includes touch function control and voice function control. The touch auxiliary screen 2 receives the user's touch commands and / or voice commands to control the function settings of the main display 1.
[0064] Furthermore, the present invention also discloses an information processing and interaction method for an office assistant display with a touch auxiliary screen 2, applied to the aforementioned office assistant display with a touch auxiliary screen 2, the method comprising the following steps:
[0065] Information integration steps: Obtain user-authorized communication information through an external mobile device or touch auxiliary screen, and send the communication information to the touch auxiliary screen 2 for display and interaction, so that the main display 1 can maintain an immersive display state;
[0066] Smart Assistant Steps: Collects user's work and schedule data through the touch auxiliary screen 2, and processes the data based on the AI analysis model to generate and output smart reminders, including work efficiency statistics and health suggestions;
[0067] Equipment control steps: Receive user commands through the touch auxiliary screen 2 and convert the commands into function control signals for the main display 1.
[0068] Furthermore, the information integration steps specifically include:
[0069] S11 provides an authorization configuration interface on the mobile device or touch auxiliary screen, allowing users to select specific applications and contacts that can be forwarded or received to the touch auxiliary screen 2;
[0070] S12, Monitor and obtain information about the specific application that is authorized;
[0071] S13, the acquired information is categorized and displayed in a specific area of the touch auxiliary screen 2;
[0072] S14, through the touch interface of the touch auxiliary screen 2, provide a function for quickly replying to the information or retrieving to-do items.
[0073] Furthermore, the steps of the intelligent assistant specifically include:
[0074] S21, Based on the information collected in the information integration step and the schedule manually recorded by the user on the touch auxiliary screen 2, construct a user behavior dataset;
[0075] S22 sends the user behavior dataset to a local or cloud-based AI analysis model to analyze the user's workload, fatigue level, and transaction processing patterns.
[0076] S23 automatically generates schedule reminders based on the analysis results and outputs personalized health adjustment suggestions when preset conditions are identified.
[0077] Specifically, this invention uses AI to analyze work data (such as work hours, task types, and interaction frequency), which can proactively identify users' fatigue state and stress tendencies, and provide personalized health advice (such as suggesting rest and recommending diet), elevating the office assistant from a tool level to a "healthy office partner" level, reflecting proactive care for users' physical and mental health.
[0078] Furthermore, personalized health management recommendations include: when the analysis results indicate that the user is fatigued, it is recommended to consume brain-boosting foods; when the analysis results indicate that the user is prone to irritability, it is recommended to drink cooling beverages.
[0079] Furthermore, the equipment control steps specifically include:
[0080] S31, render and display the function control menu of the main display 1 on the touch auxiliary screen 2, the menu including at least brightness, volume and input source options;
[0081] S32 receives touch or voice operations from the user on the touch auxiliary screen 2 and generates corresponding control commands;
[0082] S33: Send control commands to the main display 1 and receive status feedback information from the main display 1 and display it on the touch auxiliary screen 2.
[0083] Furthermore, it includes an authorization display step:
[0084] The mobile device or touch auxiliary screen provides an authorization interface for receiving user permission settings to forward or receive specific application information to the touch auxiliary screen 2; based on the permission settings, it intercepts and encrypts the information of the specific application; and sends the encrypted information to the touch auxiliary screen 2.
[0085] The auxiliary touch screen 2 executes information received by its own APP or decrypts information from the mobile device; without interrupting the full-screen operation of the main display 1, it categorizes and displays the decrypted information on the auxiliary screen interface.
[0086] Specifically, this invention, by setting up an authorization process on the mobile device, allows users to control which information can be forwarded, effectively protecting personal privacy, avoiding interference from irrelevant information, and ensuring the targeted and secure nature of information processing. This invention enables the automatic, real-time flow of important information from the mobile device to the EPD auxiliary screen. Users do not need to switch the main screen focus or pick up their phone; they only need to glance at the EPD screen to obtain information and quickly reply or mark it, greatly reducing the time and effort required for context switching.
[0087] This invention, employing the above technical solutions, offers the following advantages compared to existing technologies: 1) Through hardware functional partitioning, the main screen can be dedicated to full-screen office work, design, entertainment, and other primary tasks, while important information such as emails and WeChat messages can be seamlessly transferred to the EPD auxiliary screen for display and interaction, avoiding workflow interruptions caused by frequent window switching. 2) The complex control menu of the main display 1 is migrated to the EPD touchscreen, allowing users to make intuitive adjustments via touch or voice, with precise and efficient operation that does not affect the main screen's display content, simplifying the device's usability. 3) Based on AI analysis of work and schedule data collected by the EPD screen, the system not only provides intelligent schedule reminders but also proactively identifies user fatigue and stress levels, offering personalized health suggestions, thus elevating it from a simple functional tool to an intelligent partner focused on user health and efficiency. This invention significantly improves the practicality and user experience of display products.
[0088] Obviously, the described embodiments are only a part of the embodiments of this application, not all of them. Without conflict, the embodiments and features in the embodiments of this application can be combined with each other. The components of the embodiments of this application described and illustrated herein can generally be arranged and designed in various different configurations. Therefore, the detailed description of the embodiments of this application is not intended to limit the scope of the claimed application, but merely to illustrate selected embodiments of this application. All other embodiments obtained by those skilled in the art based on the embodiments of this application without inventive effort are within the scope of protection of this application.
Claims
1. An office monitor based on an auxiliary screen with an independent operating system, characterized in that: It includes: The main display screen is used to show the main content. A touch-enabled auxiliary screen is electrically connected to the main display and can be detachably mounted on the bezel of the main display, serving as an auxiliary display and human-computer interaction interface. The main control unit is integrated into the touch auxiliary screen and / or the main display, and is electrically connected to the main display and the touch auxiliary screen respectively; The auxiliary touchscreen is equipped with an independent operating system. This independent operating system is used to receive and display information notifications from external mobile devices, provide a function control interface for the main display to interact with the main display, and provide a calendar / notebook application interface to provide reminders and arrangements in advance based on the items and times recorded by the user.
2. The office monitor based on an independent operating system auxiliary screen according to claim 1, characterized in that: The main display has a decorative strip at the bottom of its bezel; the decorative strip is a long, sloping structure that is fixed to the bottom of the display bezel, and the EPD touch screen module is mounted on the decorative strip.
3. The office monitor based on an independent operating system auxiliary screen according to claim 1, characterized in that: The external mobile device is equipped with an application that communicates and interacts with the independent operating system on the touch auxiliary screen. The application is responsible for forwarding office and communication tool information to the touch auxiliary screen for display, reading, and reply processing. At the same time, before forwarding emails, the application asks the user to choose whether to transmit information from a privacy and security perspective, and personalizes the selection of whether to transmit relevant user account information. The application sends relevant function control commands to the touch auxiliary screen, which then forwards them to the main display for control processing.
4. The office monitor based on an independent operating system auxiliary screen according to claim 1, characterized in that: The touch-assisted screen is equipped with AI applications and communicates with a remote AI server. After classifying and processing the received information, the touch-assisted screen sends a request to the AI server for AI analysis in order to provide health tips and work arrangement suggestions.
5. The office monitor based on an independent operating system auxiliary screen according to claim 1, characterized in that: Human-computer interaction includes touch function control and voice function control. The touch auxiliary screen receives the user's touch commands and / or voice commands to control the function settings of the main display.
6. An information processing and interaction method for an office monitor based on an independent operating system auxiliary screen, applied to the office monitor based on an independent operating system auxiliary screen as described in any one of claims 1 to 5, characterized in that: The method includes the following steps: Information integration steps: Obtain user-authorized communication information through an external mobile device or touch auxiliary screen, and send the communication information to the touch auxiliary screen for display and interaction, so as to keep the main display in an immersive display state; The intelligent assistant process involves collecting the user's work and schedule data via a touch-screen auxiliary display, and processing the data based on an AI analysis model to generate and output intelligent reminders, including work efficiency statistics and health suggestions. Equipment control steps: Receive user commands through the touch auxiliary screen and convert the commands into function control signals for the main display.
7. The information processing and interaction method for an office display based on an independent operating system auxiliary screen according to claim 6, characterized in that: The information integration steps specifically include: S11 provides an authorization configuration interface on mobile devices or touch-enabled secondary screens, allowing users to select specific applications and contacts that can be forwarded or received to the touch-enabled secondary screen; S12, Monitor and obtain information about the specific application that is authorized; S13, the acquired information is categorized and displayed in a specific area of the touch auxiliary screen; S14, through the touch interface of the touch auxiliary screen, provide a function for quickly replying to the information or retrieving to-do items.
8. The information processing and interaction method for an office display based on an independent operating system auxiliary screen according to claim 6, characterized in that: The specific steps of a smart assistant include: S21, Based on the information collected in the information integration step and the schedule manually recorded by the user on the touch-assisted screen, construct a user behavior dataset; S22 sends the user behavior dataset to a local or cloud-based AI analysis model to analyze the user's workload, fatigue level, and transaction processing patterns. S23 automatically generates schedule reminders based on the analysis results and outputs personalized health adjustment suggestions when preset conditions are identified.
9. The information processing and interaction method for an office display based on an independent operating system auxiliary screen according to claim 6, characterized in that: The specific equipment control steps include: S31 renders and displays the function control menu of the main display on the touch auxiliary screen, the menu including at least brightness, volume, and input source options; S32 receives touch or voice operations from the user on the touch auxiliary screen and generates corresponding control commands; S33: Send control commands to the main display and receive status feedback information from the main display and display it on the touch auxiliary screen.
10. The information processing and interaction method for an office display based on an independent operating system auxiliary screen according to claim 6, characterized in that: It includes the authorization display steps: The mobile device or touch-enabled screen provides an authorization interface for receiving user permission settings to forward or receive specific application information to the touch-enabled screen; based on the permission settings, it intercepts and encrypts the information of the specific application; and sends the encrypted information to the touch-enabled screen. The touch-enabled auxiliary screen executes information received by its own APP or decrypts information from the mobile device; without interrupting the full-screen operation of the main display, it categorizes and displays the decrypted information on the auxiliary screen interface.