A multifunctional 3D stereo clock device
By centrally controlling the modules of the multi-functional 3D clock device, efficient collaboration and intelligent operation of the functional modules are achieved, solving the problems of insufficient integration and interaction methods of existing clock devices, and improving user experience and device adaptability.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- SHENZHEN CITY HE LIAN JU ELECTRONIC TECH LLC
- Filing Date
- 2025-05-30
- Publication Date
- 2026-07-17
AI Technical Summary
The existing clock devices have low coordination and integration between functional modules, insufficient intelligence, and cannot automatically adjust display brightness and temperature according to environmental changes. The interaction methods are also limited and the operation is inconvenient.
It adopts a central processing unit to uniformly control the power supply, input, output and communication modules, and integrates infrared input, photosensitive brightness control and temperature detection modules. It supports the connection of the graffiti module and mobile APP to realize multi-functional collaborative work and remote control.
It improves the device's functional integration and ease of operation, automatically adjusts brightness and temperature display according to environmental changes, expands interaction methods, and enhances user experience.
Smart Images

Figure CN224519158U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of clock equipment technology, specifically a multifunctional 3D stereoscopic clock device. Background Technology
[0002] As people's living standards improve, the public's preference for new types of clocks is increasing, and the market demand for clock devices with rich functions and innovation is constantly rising. Against this backdrop, existing clock devices already have some basic functions, including using LED light beads to display time, date, and temperature, and having brightness adjustment, alarm clock, perpetual calendar query, and timekeeping functions.
[0003] Based on the aforementioned basic functions, existing clock devices still have room for improvement in terms of functional integration, intelligence, and user experience. Specifically, while existing clock devices possess multiple functions, the coordination and integration between the various functional modules are not high enough, affecting the overall performance of the device and the ease of user operation. Secondly, their ability to perceive and intelligently adjust ambient brightness and temperature in real time is limited, failing to automatically and accurately adjust the display brightness according to environmental changes and thus improve the user experience. Finally, existing devices offer relatively simple interaction methods with users, mainly relying on traditional remote control operation, lacking more convenient and diverse interaction methods. Utility Model Content
[0004] The purpose of this invention is to provide a multifunctional 3D stereoscopic clock device, which solves the technical problems mentioned in the background art.
[0005] To achieve the above objectives, this utility model provides the following technical solution: a central processing unit, a power module, an input module, an output module, and a communication module, wherein the central processing unit is connected to the power module, the input module, the output module, and the communication module respectively, and is centrally and uniformly controlled by the system;
[0006] The power module includes a power connection module and an LDO voltage regulator module;
[0007] The input module includes an infrared input module, a photosensitive brightness control module, and a temperature detection module;
[0008] The output module includes an LED light display module, a clock display module, and an ambient light module;
[0009] The communication module includes a drawing module.
[0010] Optionally, the power connection module is interconnected with the LDO voltage regulator module, and the central processing unit is provided with a regulated power supply of 3.3V by the voltage regulator module.
[0011] Optionally, the light display of the LED light display module includes manual transmission received by the infrared input module from the remote control, and intelligent transmission detected in real time by the photosensitive brightness control module and the temperature detection module, as detailed below:
[0012] The infrared input module receives user-defined transmission times, dates, temperatures, and commands to turn the ambient light module on or off.
[0013] The photosensitive brightness control module: detects ambient brightness in real time;
[0014] The temperature detection module: detects the ambient temperature in real time;
[0015] The clock display module displays specific values for time, date, and temperature, and also functions as a perpetual calendar, alarm clock, and timer.
[0016] Optionally, the infrared input module, the photosensitive brightness control module, and the temperature detection module are respectively connected to the central processing unit for transmission, and after being transmitted by the central processing unit, they are transmitted to the LED light display module, the clock display module, and the ambient light module.
[0017] Optionally, both the ambient light module and the photosensitive brightness control module include a receiving adjustment unit and an automatic adjustment unit;
[0018] The receiving adjustment unit transmits based on the manual settings of the infrared input module;
[0019] The automatic adjustment unit automatically adjusts the ambient brightness based on the detection of the photosensitive brightness control module.
[0020] Optionally, the graffiti module includes a WiFi unit, a microcontroller unit, and a communication protocol unit;
[0021] The WiFi unit is used to receive connection instructions from the mobile app.
[0022] The microcontroller unit is used to execute the connection command sent by the mobile APP and send the processed result back to the mobile APP through the WiFi unit.
[0023] The communication protocol unit is used to define the data exchange format and commands between the mobile APP and the mobile app.
[0024] Compared with the prior art, the beneficial effects of this utility model are as follows:
[0025] I. This utility model adopts centralized and unified control of the central processing unit, organically integrating the power module, input module, output module and communication module together. This design improves the functional integration of the equipment, enabling efficient collaboration between various functional modules. Moreover, users can control multiple functions through a unified operating interface, greatly improving the convenience of operation.
[0026] Second, this utility model uses a photosensitive brightness control module to detect ambient brightness in real time and feeds the information back to the central processing unit. The central processing unit automatically adjusts the brightness of the LED light display module and the ambient light module according to the ambient brightness, so that the clock display can remain clearly visible in different environments. At the same time, the ambient light effect can also match the environment, improving the user's visual experience.
[0027] In addition, the temperature detection module monitors the ambient temperature in real time and displays the temperature information through the clock display module, allowing users to intuitively understand the current ambient temperature and increasing the practicality of the device.
[0028] Third, the infrared input module of this utility model receives user-set transmission commands for time, date, temperature, and ambient light module activation / deactivation, allowing users to conveniently set and adjust various functions via remote control.
[0029] On the other hand, by utilizing the WiFi unit, microcontroller unit, and communication protocol unit included in the graffiti module, a stable connection with the mobile APP is achieved, allowing users to remotely control the clock device through the mobile APP, including setting the time, adjusting the brightness, and turning the ambient light on and off, thereby expanding the device's interaction methods and improving the user experience.
[0030] Fourth, the power module of this utility model provides a standard interface, supporting connection with commonly used 5V / 2A and 5V / 3A devices on the market, improving the versatility and applicability of the device, and making it convenient for users to use different power supplies. Attached Figure Description
[0031] Figure 1 This is a framework diagram showing the connection relationships between the modules of this multifunctional 3D stereo clock device;
[0032] Figure 2 This is a schematic diagram of the frame of the graffiti module and its connecting units in this multifunctional 3D clock device;
[0033] Figure 3 This is a schematic diagram of the charging circuit in this multifunctional 3D clock device;
[0034] Figure 4 This is a schematic diagram of the battery protection circuit in this multifunctional 3D stereo clock device;
[0035] Figure 5 This is a schematic diagram of the 5V / 2.4A discharge circuit in this multifunctional 3D stereo clock device;
[0036] Figure 6 This is a circuit diagram of the buttons in this multifunctional 3D clock device;
[0037] Figure 7 This is a circuit diagram of the LDO voltage regulator module in this multi-functional 3D stereo clock device;
[0038] Figure 8 This is a schematic diagram of the lighting circuit in this multifunctional 3D clock device;
[0039] Figure 9 This is a schematic diagram of the temperature detection circuit in this multifunctional 3D stereo clock device;
[0040] Figure 10 This is a circuit diagram of the central processing unit in this multifunctional 3D stereo clock device;
[0041] Figure 11 This is a schematic diagram of the motor drive control circuit in this multifunctional 3D stereo clock device;
[0042] Figure 12 This is a circuit diagram of the display screen in this multifunctional 3D stereo clock device;
[0043] Figure 13 This is a schematic diagram of the display drive circuitry in this multifunctional 3D stereo clock device.
[0044] In the diagram: 10-Central Processing Unit, 20-Power Connection Module, 30-LDO Voltage Regulator Module, 50-Infrared Input Module, 60-Photosensitive Brightness Control Module, 70-Ambient Light Module, 80-Graffiti Module, 801-WiFi Unit, 802-Microcontroller Unit, 803-Communication Protocol Unit, 90-Clock Display Module, 100-LED Light Display Module, 120-Temperature Detection Module. Detailed Implementation
[0045] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0046] Example 1:
[0047] Please see Figures 1 to 13This utility model provides a technical solution: a multifunctional 3D stereo clock device, including a central processing unit 10, a power module, an input module, an output module and a communication module. The central processing unit 10 is connected to the power module, the input module, the output module and the communication module respectively, and is centrally and uniformly controlled by the system.
[0048] The power module includes a power connection module 20 and an LDO voltage regulator module 30;
[0049] The power connection module 20 is interconnected with the LDO voltage regulator module 30, and the central processing unit 10 is provided with a regulated power supply of 3.3V by the voltage regulator module 30;
[0050] The input module includes an infrared input module 50, a photosensitive brightness control module 60, and a temperature detection module 120;
[0051] The output modules include an LED light display module 100, a clock display module 90, and an ambient light module 70;
[0052] The communication module includes a graffiti module 80.
[0053] More specifically, in this embodiment, a central processing unit 10 is used for centralized and unified control, which makes the cooperation between various modules more efficient and improves the overall performance and stability of the device. The power module provides a stable power supply, ensuring the normal operation of the central processing unit and other modules and reducing failures caused by power fluctuations. The input module can obtain user operation instructions and environmental information in real time, providing a foundation for intelligent control of the device. The output module can accurately display information and control ambient lights according to the instructions of the central processing unit 10, meeting the diverse needs of users. Finally, the communication module realizes the wireless connection between the device and the mobile APP, making it convenient for users to remotely control and manage the device.
[0054] The power connection module 20 is rated at 5V / 3A, which meets the requirements of a 3.3V regulated power supply.
[0055] Furthermore, the light display of the LED light display module 100 includes manual transmission received by the infrared input module 50 from the remote control, and intelligent transmission detected in real time by the photosensitive brightness control module 60 and the temperature detection module 120, as detailed below:
[0056] Infrared input module 50: Receives user-set transmission of time, date, temperature, and commands to turn ambient light module 70 on or off;
[0057] Photosensitive brightness control module 60: Real-time detection of ambient brightness;
[0058] Temperature detection module 120: Real-time detection of ambient temperature;
[0059] Among them, the clock display module 90 displays specific values of time, date and temperature, as well as functions as a perpetual calendar, alarm clock and timer;
[0060] The infrared input module 50, the photosensitive brightness control module 60 and the temperature detection module 120 are respectively connected to the central processing unit 10 for transmission. After being transmitted by the central processing unit 10, they are transmitted to the LED light display module 100, the clock display module 90 and the ambient light module 70.
[0061] It is worth noting that the infrared input module 50 receives the time, date, temperature, and ambient light module 70 adjustment commands set by the user via remote control, and transmits these commands to the central processing unit 10. The photosensitive brightness control module 60 detects the ambient brightness in real time, and the temperature detection module 120 detects the ambient temperature in real time and transmits the detected information to the central processing unit 10. The central processing unit 10 processes the received information and sends corresponding commands to the LED light display module 100, the clock display module 90, and the ambient light module 70. The LED light display module 100 displays the light according to the commands of the central processing unit 10, and the clock display module 90 displays the specific values of time, date, and temperature, and realizes the application of perpetual calendar, alarm clock, and timekeeping.
[0062] In summary, the infrared input module 50, the photosensitive brightness control module 60, and the temperature detection module 120 provide multiple information display methods. Information can be displayed through manual settings or intelligently based on ambient brightness and temperature, meeting user needs in different scenarios. Furthermore, the clock display module 90 not only displays basic time, date, and temperature information but also features a perpetual calendar, alarm clock, and timer, increasing the device's practicality and functionality. The resulting intelligent transmission enables the device to automatically adjust the display content and brightness according to environmental changes, further enhancing the user experience.
[0063] In addition, both the ambient light module 70 and the photosensitive brightness control module 60 include a receiving adjustment unit and an automatic adjustment unit;
[0064] The receiving adjustment unit transmits data based on the manual settings of the infrared input module 50.
[0065] The automatic adjustment unit automatically adjusts the ambient brightness based on the detection of the photosensitive brightness control module 60;
[0066] Based on the above, the ambient light module 70 and the photosensitive brightness control module 60 provide two adjustment methods. Users can adjust the ambient light manually according to their own preferences, or the device can automatically adjust the ambient light according to the ambient brightness, which increases the flexibility and convenience of adjustment. Moreover, the automatic adjustment function enables the ambient light to better adapt to environmental changes and create a more comfortable atmosphere.
[0067] Example 2, based on the above examples:
[0068] Furthermore, the graffiti module 80 includes a WiFi unit 801, a microcontroller unit 802, and a communication protocol unit 803;
[0069] WiFi unit 801 is used to receive connection commands from a mobile app;
[0070] The microcontroller unit 802 is used to execute the connection command sent by the mobile APP and send the processed result back to the mobile APP via the WiFi unit;
[0071] The communication protocol unit 803 is used to define the data exchange format and commands between the mobile APP and the mobile phone.
[0072] More specifically, in this embodiment, the graffiti module 80 enables wireless connection between the device and the mobile APP, allowing users to remotely control the device via the mobile APP, including setting the time, adjusting the brightness, and turning the ambient light on and off, thereby improving the ease of use of the device.
[0073] The microcontroller unit 802 can process the instructions sent by the mobile APP and provide timely feedback on the processing results, ensuring the timeliness and accuracy of communication.
[0074] The communication protocol unit 803 standardizes the data exchange format and commands, making the communication between the device and the mobile APP more stable and reliable.
[0075] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A multi-functional 3D stereoscopic clock device, characterized by It includes a central processing unit (10), a power module, an input module, an output module and a communication module. The central processing unit (10) is connected to the power module, the input module, the output module and the communication module respectively, and is centrally and uniformly controlled by the system. The power module includes a power connection module (20) and an LDO voltage regulator module (30). The input module includes an infrared input module (50), a photosensitive brightness control module (60), and a temperature detection module (120). The output module includes an LED light display module (100), a clock display module (90), and an ambient light module (70). The light display of the LED light display module (100) includes manual transmission received by the infrared input module (50) from the remote control, and intelligent transmission detected in real time by the photosensitive brightness control module (60) and the temperature detection module (120), as detailed below: The infrared input module (50) receives the time, date, temperature, and on / off adjustment commands for the ambient light module (70) set by the user. The photosensitive brightness control module (60) detects ambient brightness in real time; The temperature detection module (120) is used to detect the ambient temperature in real time. The clock display module (90) displays specific values of time, date and temperature, as well as functions as a perpetual calendar, alarm clock and timer; The infrared input module (50), the photosensitive brightness control module (60) and the temperature detection module (120) are respectively connected to the central processing unit (10) for transmission. After being transmitted by the central processing unit (10), they are transmitted to the LED light display module (100), the clock display module (90) and the ambient light module (70). The communication module includes a graffiti module (80).
2. The multi-functional 3D stereoscopic clock device according to claim 1, wherein: The power connection module (20) is interconnected with the LDO voltage regulator module (30), and the central processing unit (10) is provided with a regulated power supply of 3.3V by the voltage regulator module (30).
3. The multi-functional 3D stereoscopic clock device according to claim 2, wherein: Both the ambient light module (70) and the photosensitive brightness control module (60) include a receiving adjustment unit and an automatic adjustment unit; The receiving adjustment unit transmits based on the manual settings of the infrared input module (50); The automatic adjustment unit automatically adjusts the ambient brightness based on the detection of the photosensitive brightness control module (60).
4. The multi-functional 3D stereoscopic clock device according to claim 1, wherein: The graffiti module (80) includes a WiFi unit (801), a microcontroller unit (802), and a communication protocol unit (803); The WiFi unit (801) is used to receive connection instructions from the mobile APP; The microcontroller unit (802) is used to execute the connection command sent by the mobile APP and send the processed result back to the mobile APP through the WiFi unit; The communication protocol unit (803) is used to define the data exchange format and commands between the mobile APP and the mobile phone APP.