Full-automatic low-power-consumption pointer type clock movement for calibrating time service information of Internet of Things
By combining the Mi Home Mesh wireless network communication module, WiFi communication module, and Bluetooth communication module, the problems of unstable signal and complicated operation of existing timekeeping products are solved, achieving low power consumption and stable signal time calibration and display, thus improving the user experience.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-05
- Publication Date
- 2026-04-14
AI Technical Summary
Existing timekeeping products with automatic calibration functions all have their defects, such as signal interference, obstruction, inconvenient installation, and complicated user operation, resulting in inaccurate timekeeping or inconvenience in use.
This high-performance, multi-mode network communication module integrates the Mi Home Mesh wireless network communication module, WiFi communication module, and Bluetooth communication module. Combined with the Mi Home IoT platform, it achieves stable wireless signal connection and data interaction. The main control module decodes, analyzes, and processes data to ensure signal stability and low power consumption. The microprocessor is controlled by a switch button, and the time is displayed by a pointer-driven mechanism.
It achieves stable and reliable signal in home environments, unobstructed and without dead zones, with low power consumption, simple operation, good user experience, and accurate time.
Smart Images

Figure CN224122902U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of network platform time synchronization information technology, and in particular to a fully automatic low-power pointer watch movement for Internet of Things time synchronization information calibration. Background Technology
[0002] Currently, there are many types of timekeeping products with automatic calibration functions, such as long-wave timecode radio clocks, GPS satellite clocks, CDMA clocks, wired network clocks, and Bluetooth clocks.
[0003] Among them, long-wave radio clocks: Due to long-distance transmission, they are easily blocked by mountains and tall buildings, creating signal dead zones, resulting in weak signals and difficulty in successful reception; in addition, due to the low signal frequency, they are easily interfered with by noise from household appliances and industrial power, leading to poor signal quality, difficulty in successful reception, and even incorrect reception; GPS satellite clocks: Due to the straight-line transmission nature of satellite signals, they only have a signal outdoors, making them only suitable for outdoor clocks, plaza clocks, and other outdoor timekeeping products; if there are obstructions between the clock receiver module and the satellite, the signal strength and quality will be significantly reduced, making it difficult to receive the signal, so it is not suitable for indoor home applications; CDMA clocks: Because they require CDMA mobile phone base stations as signal relay media, they are not suitable for users with… Limitations: It will not be usable in areas with weak or no CDMA base station signal. Wired network card clocks: While wired connections ensure signal stability and reliability, they require wiring for installation. Additionally, the network card uses 5V or 12V power and needs to be plugged into a power outlet. If the location needs to be changed, wiring must be reinstalled, making it inconvenient. Bluetooth clocks: These require users to install an app or similar control software on their mobile phones. Each time the clock is calibrated, Bluetooth must be enabled on the phone, and some even require operating the time synchronization app, resulting in a poor user experience. If users forget to calibrate the time for an extended period, a large second difference will accumulate, causing inaccurate timekeeping.
[0004] Therefore, existing timekeeping products with automatic calibration functions all have their own shortcomings. To address this, this application provides a fully automatic, low-power pointer-type watch movement with IoT timing information calibration. Utility Model Content
[0005] To address the shortcomings of existing technologies, this application provides a fully automatic, low-power pointer-type watch movement for IoT timing information calibration, which overcomes the deficiencies of existing technologies and aims to solve the problem that existing timekeeping products with automatic calibration functions all have their own defects.
[0006] To achieve the above objectives, this application provides the following technical solution: a fully automatic low-power pointer-type watch movement for IoT timing information calibration, comprising a watch case, with a watch movement structure installed inside the watch case. The watch movement structure includes a multi-mode network communication module 4, a main control module 5, a time display module 8, and a power management module 12. The multi-mode network communication module 4, the power management module 12, and the time display module 8 are all electrically connected to the main control module 5.
[0007] By adopting the above technical solution, the core structure of the watch incorporates a high-performance multi-mode network communication module that integrates the Mi Home Mesh wireless network communication module, WiFi communication module, and Bluetooth communication module. This module serves as the wireless signal transceiver for connecting to the Mi Home Mesh network, providing a stable wireless communication signal for the entire device. It can connect to the Mi Home IoT platform to locate the user's current residence, integrate time information collection and calibration functions, and, with the support of the Mi Home Mesh wireless network communication module, perform network time information collection, data exchange, and ensure reliable signal connection and stable and fast data interaction. It combines the low power consumption advantage of the Bluetooth communication module with the stability of the Mesh wireless network communication module, ensuring stable and reliable signal in the home environment, without obstruction or dead zones, achieving seamless real-time network time connection, ensuring accurate timekeeping, and offering advantages such as low power consumption, simple use, easy operation, and convenience.
[0008] As a preferred technical solution of this application, the multi-mode network communication module, power management module, and time display module are all electrically connected to the main control module.
[0009] By adopting the above technical solution, the main control module is used as the core control module of the whole machine. It is electrically connected to the multi-mode network communication module, power management module and time display module through wires. The data signals collected by the multi-mode network communication module are decoded, analyzed and processed, and the parsed real-time time is transmitted to the time display module.
[0010] As a preferred technical solution of this application, the main control module includes a mechanism driver chip, a microcontroller, a microcontroller crystal oscillator, a low-voltage battery detection module, a voltage regulator module, and an external functional interface.
[0011] The microcontroller 502 receives the time signal transmitted by the multi-mode network communication module and controls the movement driver chip 501 to adjust to the accurate time according to the time signal. The voltage regulator module 505 controls the opening and closing of the movement. When the voltage is too high, the voltage regulator module reduces the voltage accordingly. When the low battery detection module detects that the voltage is too low, the time display module is turned off and a low battery alarm is issued to the user to remind the customer to replace the main battery in time to prevent inaccurate time display due to low main battery power. It also provides the user with the function of external connection, which further improves the usability of the watch.
[0012] As a preferred technical solution of this application, a switch button is fixedly installed on the outer wall of the watch case, and the switch button is electrically connected to the main control module.
[0013] By adopting the above technical solution, the central microprocessor is turned on and off by controlling the switch button. The central microprocessor decodes, analyzes and processes the data signals collected by the multi-mode network communication module, and sends back interactive responses in a timely manner, so as to achieve fast, orderly and smooth data flow.
[0014] As a preferred embodiment of this application, the time display module includes a pointer mounted on the front surface of the watch case. A pointer driving mechanism matching the pointer is fixedly installed inside the watch case, and the driving end of the pointer driving mechanism is connected to the pointer.
[0015] By adopting the above technical solution, the pointer driving mechanism controls the pointer to indicate the time according to the real-time time parsed by the central microprocessor, so that the pointer can display the current clear and accurate time information to the user.
[0016] As a preferred technical solution of this application, the power management module includes a battery compartment, and the main battery is electrically connected inside the battery compartment.
[0017] By adopting the above technical solution, the main battery powers the entire device, which helps to provide good battery life when the device is used outdoors.
[0018] The beneficial effects of this application are:
[0019] 1. The watch core structure employs a high-performance multi-mode network communication module integrating the Mi Home Mesh wireless network communication module, WiFi communication module, and Bluetooth communication module. This module serves as the wireless signal transceiver for connecting to the Mi Home Mesh network, providing a stable wireless communication signal for the entire device. It can connect to the Mi Home IoT platform for user location information positioning, time information collection, and calibration functions. With the support of the Mi Home Mesh wireless network communication module, it performs network time information collection and data exchange, ensuring reliable signal connection and stable and fast data interaction. It combines the low power consumption advantage of the Bluetooth communication module with the stability of the Mesh wireless network communication module, ensuring stable and reliable signal in the home environment, without obstructions or dead zones. This achieves seamless real-time network time connection, ensuring accurate timekeeping. It features low power consumption, simple use, easy operation, and convenience.
[0020] 2. The main control module serves as the core control module of the entire machine. It is electrically connected to the multi-mode network communication module, power management module, and time display module via wired connections. The data signals collected by the multi-mode network communication module are decoded, analyzed, and processed, and the parsed real-time time is transmitted to the time display module. Attached Figure Description
[0021] Figure 1 This is a schematic diagram of the overall structure of this application;
[0022] Figure 2 This is a schematic diagram of the rear structure of this application;
[0023] Figure 3 Application circuit block diagram illustration.
[0024] In the diagram: 1. Watch case; 2. Control module; 4. Multi-mode network communication module; 401. Data serial communication circuit; 402. Boost circuit module; 403. Bluetooth communication module; 404. Mesh wireless network communication module; 5. Main control module; 501. Movement driver chip; 502. Microcontroller; 503. Microcontroller crystal oscillator; 504. Low battery voltage detection module; 505. Voltage regulator module; 506. External function interface; 6. Switch button; 8. Time display module; 801. Pointer drive mechanism; 12. Power management module; 1201. Battery compartment; 1202. Main battery. Detailed Implementation
[0025] The technical solutions of the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this application, and not all embodiments. Based on the embodiments of this application, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this application.
[0026] Reference Figure 1-3 A fully automatic low-power pointer-type watch movement for IoT timing information calibration includes a watch case 1. The watch case 1 contains a watch movement structure, which includes a multi-mode network communication module 4, a main control module 5, a time display module 8, and a power management module 12. The multi-mode network communication module 4, the power management module 12, and the time display module 8 are all electrically connected to the main control module 5.
[0027] The multi-mode network communication module 4 includes a data serial port communication circuit 401, a boost circuit module 402, a Bluetooth communication module 403, and a Mesh wireless network communication module 404.
[0028] The high-performance multi-mode network communication module 4, which integrates a Bluetooth communication module 403 and a Mesh wireless network communication module 404 into its core structure, serves as a wireless signal transceiver for connecting to the Mi Home Mesh network. It provides a stable wireless communication signal for the entire device and can connect to the Mi Home IoT platform for location tracking, time information collection, and calibration. With the support of the Mesh wireless network communication module 404, it performs network time information collection and data exchange, ensuring reliable signal connection and stable, fast data interaction. It combines the low power consumption of the Bluetooth communication module 403 with the stability of the Mesh wireless network communication module 404, guaranteeing a stable and reliable signal in the home environment, without obstructions or dead zones. This enables seamless real-time network time connection, ensuring accurate timekeeping. It features low power consumption, ease of use, and convenient operation.
[0029] Reference Figure 3 The main control module 5 includes a mechanism drive chip 501, a microcontroller 502, a microcontroller crystal oscillator 503, a low-voltage battery detection module 504, a voltage regulator module 505, and an external function interface 506.
[0030] The microcontroller 502 receives the time signal transmitted by the multi-mode network communication module and controls the movement driver chip 501 to adjust to the accurate time according to the time signal. The voltage regulator module 505 controls the opening and closing of the movement. When the voltage is too high, the voltage regulator module reduces the voltage accordingly. When the low voltage detection module detects that the voltage is too low, the time display module is turned off and a low battery alarm is issued to the user to remind the customer to replace the main battery 1202 in time to prevent inaccurate time display due to low battery power. The external function interface provides users with external functions, such as adding an alarm clock module to chime the time at a certain time, thereby further improving the usability of the watch movement.
[0031] Reference Figure 1-2 A switch button 6 is fixedly installed on the outer wall of the watch case 1, and the switch button 6 is electrically connected to the main control module 5.
[0032] The microprocessor 502 in the main control module 5 is turned on and off by the switch button 6. The microprocessor 502 decodes, analyzes and processes the data signals collected by the multi-mode network communication module 4, and sends back interactive responses in a timely manner to achieve fast, orderly and smooth data flow.
[0033] The main control module 5 serves as the core control module of the entire machine. It is electrically connected to the multi-mode network communication module 4, the power management module 12, and the time display module 8 via wires. The main control module 5 decodes and analyzes the data signals collected by the multi-mode network communication module 4 and transmits the parsed real-time time to the time display module 8.
[0034] Reference Figure 2-3 The power management module 12 includes a battery compartment 1201, and the main battery 1202 is electrically connected inside the battery compartment 1201.
[0035] The power management module 12 is electrically connected to the multi-mode network communication module 4, the main control module 5, and the time display module 8.
[0036] The main battery 1202 in the power management module 12 supplies power to the whole machine, providing the necessary and stable operating voltage to the multi-mode network communication module 4, the main control module 5, and the time display module 8, so as to ensure the stable and reliable operation of the whole machine.
[0037] Reference Figure 1-3 The time display module 8 includes a pointer mounted on the front surface of the watch case 1. A pointer driving mechanism 801, matching the pointer, is fixedly installed inside the watch case 1, and the driving end of the pointer driving mechanism 801 is connected to the pointer.
[0038] The pointer driver mechanism 801 controls the pointer to indicate the time based on the real-time time parsed by the microprocessor 502, so that the pointer can display the current clear and accurate time information to the user.
[0039] Working principle: The high-performance multi-mode network communication module 4, which integrates Bluetooth communication module 403 and Mesh wireless network communication module 404 through the core structure, serves as the wireless signal transceiver for connecting to the Mi Home Mesh network. It provides a stable wireless communication signal for the whole device and can be connected to the Mi Home IoT platform to locate the user's current residence information. It integrates time information collection and calibration functions. With the support of the Mi Home Mesh wireless network communication module 404, it performs network time information collection, data exchange, and ensures reliable signal connection and stable and fast data interaction. The main control module 5 serves as the core control module of the whole device. It is electrically connected to the multi-mode network communication module 4, power management module 12, and time display module 8 through wired connections. It decodes and analyzes the data signals collected by the multi-mode network communication module 4 and transmits the parsed real-time time to the time display module 8.
[0040] Among them, by turning the microprocessor 502 in the main control module 5 on and off via the switch button 6, the central microprocessor 502 decodes and analyzes the data signals collected by the multi-mode network communication module 4, and promptly sends back interactive responses. The pointer driving mechanism 801 controls the pointer to indicate the time according to the real-time time parsed by the microprocessor 502.
[0041] Meanwhile, the main battery 1202 supplies power to the whole machine, providing the necessary and stable operating voltage to the multi-mode network communication module 4, the main control module 5, and the time display module 8, so that the whole machine can work stably and reliably.
[0042] The above description is merely a preferred embodiment of this application and is not intended to limit this application. Although this application has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this application should be included within the protection scope of this application.
Claims
1. A fully automatic, low-power pointer-type watch movement for IoT timing information calibration, comprising a watch case (1), characterized in that, The watch case (1) is equipped with a multi-mode network communication module (4), a main control module (5), a time display module (8) and a power management module (12). The multi-mode network communication module (4), the power management module (12) and the time display module (8) are all electrically connected to the main control module (5).
2. The fully automatic low-power pointer-type watch movement for IoT timing information calibration according to claim 1, characterized in that, The multi-mode network communication module (4) includes a data serial port communication circuit (401), a boost circuit module (402), a Bluetooth communication module (403), and a Mesh wireless network communication module (404).
3. The fully automatic low-power pointer-type watch movement for IoT timing information calibration according to claim 1, characterized in that, The main control module (5) includes a mechanism drive chip (501), a microcontroller (502), a microcontroller crystal oscillator (503), a low-voltage battery detection module (504), a voltage regulator module (505), and an external function interface (506).
4. The fully automatic low-power pointer-type watch movement for IoT timing information calibration according to claim 1, characterized in that, A switch button (6) is fixedly installed on the outer wall of the watch case (1), and the switch button (6) is electrically connected to the main control module (5).
5. The fully automatic low-power pointer-type watch movement for IoT timing information calibration according to claim 1, characterized in that, The time display module (8) includes a pointer, which is mounted on the front surface of the watch case (1). A pointer driving mechanism (801) matching the pointer is fixedly installed inside the watch case (1), and the driving end of the pointer driving mechanism (801) is connected to the pointer.
6. The fully automatic low-power pointer-type watch movement for IoT timing information calibration according to claim 1, characterized in that, The power management module (12) includes a battery compartment (1201), and the main battery (1202) is electrically connected inside the battery compartment (1201).
7. The fully automatic low-power pointer-type watch movement for IoT timing information calibration according to claim 6, characterized in that, The power management module (12) is electrically connected to the multi-mode network communication module (4), the main control module (5), and the time display module (8).