Intelligent anti-counterfeit bottle cap, container, system and method

By incorporating technologies such as an integrated intelligent anti-counterfeiting SoC module, an empty cup motor, NFC passive power supply, and a hardware locking module, the problems of complex components, high cost, and unstable battery power supply in existing intelligent anti-counterfeiting bottle caps have been solved. This results in a highly integrated, low-cost, long-life, and highly secure intelligent anti-counterfeiting bottle cap that supports both remote and local dual authorization and offline monitoring.

CN122126549APending Publication Date: 2026-06-02林滨

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
林滨
Filing Date
2026-04-23
Publication Date
2026-06-02

Smart Images

  • Figure CN122126549A_ABST
    Figure CN122126549A_ABST
Patent Text Reader

Abstract

This invention relates to an intelligent anti-counterfeiting bottle cap, container, system, and method. The bottle cap includes: a cap top shell, a lifting clutch sleeve, and a password module, an intelligent anti-counterfeiting SoC main control module, a lifting drive module, an NFC module, a hardware locking module, and an anti-theft module disposed between the two. This invention adopts an integrated intelligent anti-counterfeiting SoC, which is highly integrated, has a minimalist peripheral design, and low unit cost, making it suitable for large-scale commercial use. It uses an empty cup motor, which is small in size, has high torque, smooth lifting, fast response, and a strong sense of ceremony. NFC is passively powered, requiring no battery and has a lifespan of 5-10 years. Hardware fuse locking permanently locks the bottle in abnormal states, making it unbreakable and unrecoverable. The structure is simple, with fewer assembly steps, high yield, and low mass production cost. It supports remote + local dual authorization, multi-angle anti-counterfeiting identification, offline drinking monitoring, and NFC data synchronization.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This invention belongs to the field of anti-counterfeiting technology for containers, specifically relating to an intelligent anti-counterfeiting bottle cap, container, system, and method. Background Technology

[0002] Existing smart anti-counterfeiting bottle caps mostly adopt a general-purpose MCU + discrete component solution. This solution has many inherent drawbacks: the number of components is complex, requiring the integration of various discrete components such as resistors, capacitors, and sensors. This not only leads to a complex internal structure design of the bottle cap but also significantly increases the difficulty of production and assembly, prolongs the production cycle, and increases the failure rate during assembly. At the same time, the excessive number of components results in high material and assembly costs, making it difficult to meet the cost control requirements of large-scale production of high-end packaging products. Furthermore, these smart anti-counterfeiting bottle caps generally require dedicated batteries for power, which increases the overall size and poses risks such as battery leakage and insufficient lifespan, affecting the safety and durability of the bottle cap.

[0003] In terms of transmission mechanisms, existing products mostly use ordinary motors for drive. These motors are relatively large, which contradicts the design requirements of miniaturized smart anti-counterfeiting bottle caps and makes it difficult to adapt to the compact structural layout of the bottle caps. In addition, ordinary motors consume a lot of power, which further aggravates battery wear and shortens the lifespan of the bottle caps. At the same time, their transmission precision is poor, and problems such as jamming and misalignment are prone to occur when realizing core actions such as lifting and unlocking the bottle caps, which affects the user experience and the stability of the anti-counterfeiting function.

[0004] In terms of anti-counterfeiting security, existing smart anti-counterfeiting bottle caps lack a hardware-level irreversible locking structure and rely solely on software-level encryption protection. Once they are opened abnormally or cracked without authorization, they cannot achieve physical irreversible locking and are easily copied and tampered with by criminals, resulting in the failure of anti-counterfeiting and failing to effectively protect the brand rights of high-end liquors.

[0005] In addition, existing products generally cannot operate without power, and their reliance on battery power limits their long-term use; at the same time, they lack offline drinking monitoring functions, cannot accurately record key data such as bottle cap opening time and drinking status, and cannot achieve automatic data synchronization through NFC technology, making it difficult to meet the core needs of intelligent and digital anti-counterfeiting, and unable to provide brands with full-process anti-counterfeiting traceability and data management support. Summary of the Invention

[0006] To overcome the problems of existing technologies, this invention provides an intelligent anti-counterfeiting bottle cap, container, system, and method to solve the current technical problems.

[0007] A smart anti-counterfeiting bottle cap includes: a bottle cap top shell, a lifting clutch sleeve and a password module disposed between the two, a smart anti-counterfeiting SoC main control module, a lifting drive module, an NFC module, a hardware locking module and an anti-theft module, wherein the password module is disposed inside the bottle cap top shell and is used to input a password; The intelligent anti-counterfeiting SoC main control module is located between the password module and the lifting drive module, and is used to control the lifting movement of the lifting drive module; The NFC module is arranged around the periphery of the intelligent anti-counterfeiting SoC main control module and is used to sense external NFC sources; The hardware locking module is located between the lifting drive module and the anti-theft module, and is used to lock the bottle cap; The anti-theft module is located at the bottom of the bottle cap and is used to prevent the bottle cap from being stolen.

[0008] In addition to the aspects described above and any possible implementations, a further implementation is provided in which the cryptographic module is a rotating cryptographic dial.

[0009] In addition to the aspects and any possible implementations described above, a further implementation is provided in which a sealing inner plug is provided between the rotating code dial and the top shell of the bottle cap.

[0010] In addition to the aspects and any possible implementations described above, a further implementation is provided in which the intelligent anti-counterfeiting SoC main control module includes a core control unit, an attitude sensor, a pressure sensor, a liquid level sensor, and an angle sensor.

[0011] In addition to the aspects and any possible implementations described above, a further implementation is provided in which the lifting drive module includes an empty cup motor, a reduction gear set, and a lifting lead screw.

[0012] In addition to the aspects and any possible implementations described above, a further implementation is provided in which an annular LED light strip with the same diameter as the bottle cap top shell is provided between the hardware locking unit and the intelligent anti-counterfeiting SoC main control module.

[0013] The present invention also provides an anti-counterfeiting container, the container comprising a bottle body and a bottle cap, the bottle cap being fixed to the opening of the bottle body, the bottle body containing high-grade liquor, foreign liquor, high-end beverages, high-end cosmetics, pharmaceutical preparations or health care liquids.

[0014] The present invention also provides an anti-counterfeiting system for an intelligent anti-counterfeiting bottle cap. The system includes an anti-counterfeiting container, a mobile terminal, and a cloud platform. The mobile terminal is equipped with an APP and communicates wirelessly with the bottle cap of the container. The cloud platform contains information about the entire production chain of the container.

[0015] The present invention also provides an anti-counterfeiting method for an anti-counterfeiting system, the method being implemented using the aforementioned system, comprising: S1. The cloud contains information about the entire production chain of the container and transmits all the information to the mobile app. S2. The APP of the mobile terminal approaches the NFC module on the bottle cap of the container and sends the authorization information to the smart anti-counterfeiting SoC main control module of the bottle cap; S3. The user operates the password module to input the password. The intelligent anti-counterfeiting SoC main control module verifies the password according to the authorization and drives the lifting drive module to lift and lower, so that the clutch sleeve rises and unlocks. S4. Upon unlocking, a circular LED light strip indicates that the bottle cap has been opened; S5. The user unscrews the bottle cap as instructed, the anti-theft module is destroyed, and the bottle cap is opened; S6. Write the bottle opening status to the smart anti-counterfeiting SoC main control module and send it to the cloud for synchronization.

[0016] In addition to the aspects and any possible implementations described above, a further implementation is provided in which the anti-counterfeiting of the container also includes detecting the tilt of the bottle, the overall air pressure of the container, and the amount of liquid poured out.

[0017] Beneficial effects of the present invention The intelligent anti-counterfeiting bottle cap of the present invention includes: a bottle cap top shell, a lifting clutch sleeve and a password module disposed between the two, an intelligent anti-counterfeiting SoC main control module, a lifting drive module, an NFC module, a hardware locking module and an anti-theft module, which have the following beneficial effects: 1) It adopts an integrated intelligent anti-counterfeiting SoC, which is highly integrated, has a simple peripheral structure, and a low unit cost, making it suitable for large-scale commercial use; 2) It adopts an empty cup motor, which is small in size, has high torque, smooth lifting and fast response, and a strong sense of ceremony; 3) NFC is passively powered, requiring no batteries, and has a lifespan of 5-10 years; 4) Hardware fuse lock: permanently locked in abnormal conditions, unbreakable and unrecoverable; 5) Simple structure, fewer assembly steps, high yield, and low mass production cost; 6) Supports remote and local dual authorization, multi-angle anti-counterfeiting identification, offline drinking water monitoring, and NFC data synchronization. Attached Figure Description

[0018] Figure 1 This is an exploded view of the bottle cap of the present invention; Figure 2 This is an electrical block diagram of the bottle cap of the present invention; Figure 3 This is a schematic diagram of the system structure of the present invention. Detailed Implementation

[0019] To better understand the technical solution of this invention, the content of this invention includes, but is not limited to, the specific embodiments described below. Similar technologies and methods should be considered within the scope of protection of this invention. To make the technical problems to be solved, the technical solutions, and advantages of this invention clearer, a detailed description will be provided below in conjunction with the accompanying drawings and specific embodiments.

[0020] It should be understood that the embodiments described in this invention are merely some, not all, of the embodiments of this invention. All other embodiments obtained by those skilled in the art based on the embodiments of this invention without inventive effort are within the scope of protection of this invention.

[0021] The terminology used in the embodiments of this invention is for the purpose of describing particular embodiments only and is not intended to limit the invention. The singular forms “a,” “the,” and “the” as used in the embodiments of this invention and the appended claims are also intended to include the plural forms unless the context clearly indicates otherwise.

[0022] like Figures 1-3 As shown, the present invention provides an intelligent anti-counterfeiting bottle cap, the bottle cap comprising: a bottle cap top shell, a lifting clutch sleeve and a password module disposed between the two, an intelligent anti-counterfeiting SoC main control module, a lifting drive module, an NFC module, a hardware locking module and an anti-theft module, wherein the password module is disposed inside the bottle cap top shell and is used for inputting a password; The intelligent anti-counterfeiting SoC main control module is located between the password module and the lifting drive module, and is used to control the lifting movement of the lifting drive module; The NFC module is disposed on the outer surface of the lifting sleeve and is used to sense an external NFC source; The hardware locking module is located between the lifting drive module and the anti-theft module, and is used to lock the bottle cap; The anti-theft module is located at the bottom of the bottle cap and is used to prevent the bottle cap from being stolen.

[0023] The cryptographic module is a rotating cryptographic dial 3.

[0024] Furthermore, the bottle cap top shell 1 serves as a top decorative cover, which acts as a sealing and protective element, protecting internal components such as the lifting mechanism. The integrated top surface is made of food-grade PC / ABS material and surface UV process.

[0025] Furthermore, the password module is implemented using a rotating password dial 3. A sealing inner plug 2 is provided between the rotating password dial 3 and the bottle cap top shell 1. The sealing inner plug 2 is made of food-grade wear-resistant self-lubricating POM material. The sealing inner plug 2 seals the assembly gap between the rotating password dial 3 and the bottle cap top shell 1, preventing external liquids, dust, and moisture from entering the internal circuit area of ​​the bottle cap and ensuring a clean and dry working environment for the internal electronic components. On the other hand, it utilizes the self-lubricating properties of POM material to provide stable, low-friction rotational support for the rotating password dial 3, reducing rotational resistance and wear, and improving the feel and service life of the rotating operation.

[0026] The rotating combination dial 3 features a safe-style circular scale and incorporates a built-in magnet 14. The magnet 14 acts as a rotational position encoding element, rotating synchronously with the dial 3. Through changes in the direction and position of the spatial magnetic field, it provides a detectable physical signal to the Hall sensor 7 located in the intelligent anti-counterfeiting SoC main control module 9, enabling the encoding output of the rotation angle and password sequence. The magnet 14 and the Hall sensor 7 work together to achieve electronic password input. The rotating combination dial 3 is made of food-grade PC / ABS material.

[0027] Furthermore, the intelligent anti-counterfeiting SoC main control module 9 includes a core control unit, an attitude sensor 5, a pressure sensor 8, a liquid level sensor 10, and a Hall sensor 7. The intelligent anti-counterfeiting SoC main control module 9 adopts a single-chip integrated main control, encryption, drive, and locking circuit. The PCB substrate supporting the aforementioned components is made of FR-4 fiberglass board, and the components are integrated through SMT surface mount technology. The core control unit, as the control center of the entire intelligent anti-counterfeiting bottle cap, is electrically connected to the rotating password dial 3, magnet 14, Hall sensor 7, ring LED light strip, attitude sensor 5, empty cup motor 6-1, pressure sensor 8, liquid level sensor 10, damping limit component 11, hardware locking module 12, anti-theft breakage toothed ring 13, cap opening detection switch 15, and NFC antenna ring 16, and indirectly controls the lifting and disengaging state of the lifting clutch sleeve 17 through the drive circuit. The attitude sensor 5 collects the tilt angle, flipping, shaking, and other attitude information of the bottle cap and bottle body in real time, and transmits it to the encrypted storage area inside the core control unit for judging behaviors such as pouring, spilling, and abnormal handling. The pressure sensor 8 collects changes in the air pressure within the sealed space of the bottle and detects the balance between the air pressure and the external environment after opening, thus identifying the first opening event. The liquid level sensor 10 monitors the liquid level in the bottle in real time, determining the amount of liquid flowing out and the amount remaining, enabling traceability during use. The above identification and judgment actions are all performed using existing control programs or algorithms, which will not be elaborated upon in this invention.

[0028] The electronic password input process is as follows: The user manually rotates the rotary password dial 3, causing the built-in magnet 14 to rotate in a circular motion. The Hall sensor 7 detects the changes in the magnetic field generated by the rotation of the magnet 14 in real time, converting physical quantities such as rotation angle, rotation direction, and / or rotation level into electrical signals, and transmitting them to the core control unit of the intelligent anti-counterfeiting SoC main control module 9. The core control unit parses the continuous rotation signals into the corresponding electronic password sequence according to the preset password encoding rules, completing the password input recognition. The original authorization password of the electronic password is written by the mobile APP via NFC communication and stored in the encrypted storage area inside the core control unit of the intelligent anti-counterfeiting SoC main control module 9. When using it, the user only needs to rotate the rotary password dial 3 to complete the local password input. The surface of the rotary password dial 3 adopts a laser scale process to form clear and wear-resistant visual scale markings.

[0029] Hall sensor 7 detects the rotation angle and position of the password turntable 3, identifies the electronic password input, and realizes the pure electronic password verification function without mechanical lock cylinder; Hall sensor 7 adopts surface mount Hall element, which is directly mounted on the intelligent anti-counterfeiting SoC main control module 9.

[0030] The core control unit is used for signal acquisition, logic operation, password verification, status judgment, motor drive, anomaly monitoring, data storage and NFC communication control. It uses existing mature embedded control programs to complete the entire process of automated intelligent control.

[0031] Furthermore, the lifting drive module includes an empty cup motor 6-1, a reduction gear 6-2, and a lifting screw 6-3. The rotational motion output by the empty cup motor 6-1 is reduced and amplified by the reduction gear 6-2 before being transmitted to the lifting screw 6-3, converting the rotational motion into linear reciprocating motion of the lifting screw 6-3, thereby driving the lifting clutch sleeve 17 to perform linear lifting and lowering movements along the axial direction. The output shaft of the empty cup motor 6-1 is connected to the input end of the reduction gear 6-2, and the output end of the reduction gear 6-2 is connected to the lifting screw 6-3. The lifting screw 6-3 and the lifting clutch sleeve 17 form a transmission engagement to realize the lifting drive. Under the action of the lifting drive module, the lifting clutch sleeve 17 can move up and down: when the lifting clutch sleeve 17 rises, it releases the mechanical lock between the bottle cap and the bottle body, allowing the cap to be unscrewed; when the lifting clutch sleeve 17 falls, it achieves mechanical locking, preventing forced opening of the cap. The lifting screw is made of H59 brass, which has the advantages of wear resistance, shock absorption and not easy jamming. The lifting drive module is housed in the internal cavity formed by the bottle cap top shell 1 and the lifting clutch sleeve 17, and is electrically connected to the intelligent anti-counterfeiting SoC main control module 9, and is driven and controlled by the core control unit.

[0032] The empty cup motor 6-1 is electrically connected to the intelligent anti-counterfeiting SoC main control module 9, receives drive commands from the core control unit, and provides a power source for the lifting and lowering action of the lifting clutch sleeve 17. It is the core execution component for realizing electric clutch unlocking. The empty cup motor 6-1 can be implemented using existing micro or small motors.

[0033] Furthermore, the hardware locking module 12 is used to achieve irreversible hardware-level locking in abnormal states, thereby cutting off the motor drive circuit, NFC write permission, and mechanical clutch execution channel. It is implemented using a combination of a metal fuse and an electromagnetic actuator. The hardware locking module 12 is electrically connected to the intelligent anti-counterfeiting SoC main control module 9 and receives locking control signals output by the core control unit. Under normal conditions, the metal fuse keeps the circuit conductive, and the electromagnetic actuator is in a released state. When an abnormality is detected, the core control unit sends a locking command to the hardware locking module 12, triggering the electromagnetic actuator to irreversibly fuse the metal fuse, thereby physically disconnecting the empty cup motor drive circuit, the NFC write communication circuit, and the mechanical clutch control circuit, permanently locking the bottle cap. After locking, the bottle cap cannot drive the empty cup motor, cannot perform unlocking actions, and cannot receive NFC write commands; it can only retain basic NFC reading functionality to display the abnormal state, thus preventing unlocking or reuse. The hardware locking module 12 is a one-time irreversible structure; once triggered, it cannot be restored.

[0034] Furthermore, a ring-shaped LED light strip 4 with the same diameter as the bottle cap's top shell is set between the hardware locking module 12 and the intelligent anti-counterfeiting SoC main control module 9. This light strip is used to display the status of NFC power-on wake-up, authorization and password verification, lifting action, and abnormal alarms. It is implemented by using surface-mount LED beads attached to the light guide ring. The following display rules can be set: when the mobile phone touches the NFC coil, the green ring is constantly lit, indicating that the container containing the bottle cap is genuine and unopened; the green ring flashes, indicating that the container containing the bottle cap is genuine but has been opened; the red ring is constantly lit, indicating that an abnormal situation has occurred or that the container containing the bottle cap is not original or has been tampered with. Abnormal situations include consecutive incorrect passwords exceeding the limit, illegal forced opening of the cap, triggering of the hardware locking module, and product information mismatch; tampering refers to situations such as unauthorized disassembly, replacement, burning, cracking, or modification of the internal electronic components, encrypted data, and structural parts of the bottle cap.

[0035] Furthermore, the anti-theft module is located at the bottom of the bottle cap for anti-theft purposes, including an anti-theft fracture toothed ring 13 and a cap opening detection switch 15. The anti-theft fracture toothed ring 13 and the cap opening detection switch 15 are located outside the lifting clutch sleeve 17 and below the NFC identification window. Specifically, the anti-theft fracture toothed ring 13 is fitted onto the lower outer section of the lifting clutch sleeve 17, and the cap opening detection switch 15 is arranged adjacent to the anti-theft fracture toothed ring 13. When the user first unscrews the cap, the lifting clutch sleeve 17 is already in the unlocked and raised state. The screwing torque causes the anti-theft fracture toothed ring 13 to break under force. The breaking action synchronously triggers the cap opening detection switch 15 to generate a level transition signal. This signal is transmitted to the core control unit of the intelligent anti-counterfeiting SoC main control module 9. The core control unit determines that the bottle cap has been opened based on this signal, that is, the raising of the lifting clutch sleeve 17 causes the anti-theft fracture toothed ring 13 to break under force, thereby activating the cap opening detection switch 15. Once the anti-theft breakage ring 13 breaks, it becomes permanently ineffective, and this component is only triggered upon the first opening of the bottle. After receiving the level transition signal, the core control unit records the first opening time and event and stores it in the internal encrypted storage area. At the same time, it uploads the opening status to the mobile APP via the NFC antenna ring 16, and then the mobile APP uploads it to the cloud to achieve bottle opening traceability.

[0036] Furthermore, the present invention also includes a damping limiting component 11, which is disposed between the rotating keypad 3 and the top shell of the bottle cap, serving as a damping component for the rotating keypad 3. The damping limiting component 11 provides elastic damping and position locking points for the rotating keypad 3, giving the rotation operation a clear tactile feel. Each position corresponds to a keypad code, ensuring smooth rotation without jamming, while preventing rigid mechanical jamming, thus improving the interactive feel and the accuracy of keypad input. It is made of food-grade materials.

[0037] Furthermore, the NFC module is implemented using an NFC antenna ring 16, which is coiled around the rotating password dial 3 below and surrounding the smart anti-counterfeiting SoC main control module 9, enabling passive power supply and NFC communication, and providing temporary power to the smart anti-counterfeiting SoC main control module 9. The NFC antenna ring 16 uses a flexible FPC antenna and a winding process. The upper section of the lifting clutch sleeve 17 is provided with an NFC identification window corresponding to the antenna ring 16, indicating the NFC identification prompt interaction position. This window is made of food-grade PC / ABS material and uses a screen printing process. The lower section of the lifting clutch sleeve 17 has an internal thread on its inner side for connection with the bottle body.

[0038] Furthermore, the bottle cap may also have a bottom fixing housing at its lowest point, serving as the main support structure. The upper section of this housing is a fixed mounting area, coaxially assembled with the lifting clutch sleeve 17. Internal threads are provided on the inner side of the lower section of the bottom fixing housing or the inner side of the lower section of the lifting clutch sleeve 17 for threaded connection with the bottle body and bottle neck. The lifting clutch sleeve 17 is located inside the fixed mounting area and can move axially. The protruding crescent-shaped structure on the lower side of the lifting clutch sleeve 17 serves as a cap opening limit and anti-detachment structure. Figure 1 (Not shown in the image) is used to limit the lifting stroke of the lifting clutch sleeve 17. Further, the bottle cap is cylindrical with an outer diameter of Φ22mm and a total height of 32mm. The cap's wall thickness is 0.80mm, allowing it to completely cover the bottle body. The inner diameter of the bottle opening can be Φ16.00mm. The NFC coil in the NFC sensing area of ​​the top cap has a height of 4.00mm. The height of the area where the intelligent anti-counterfeiting SoC main control module 9 is located is 6.00mm. The maximum height of all components on its PCB substrate is ≤1.20mm, completely accommodated within the 6.00mm height area, without interference, compression, or structural conflict. The overall height of the motor and reduction gear set is 10.00mm. The empty cup motor 6-1 adopts an ultra-miniature hollow cup motor with a matching height. The overall height of the lifting screw and lifting clutch sleeve is 9.00mm. The height of the bottom locking and bottle mouth sealing area, i.e., the area where the internal thread is located, is 3.00mm. Bottle caps of other heights can also be obtained according to the specifications of the components. This invention does not impose any limitations.

[0039] As an embodiment of the present invention, the present invention also provides an anti-counterfeiting container, the container including a bottle body and the aforementioned intelligent anti-counterfeiting cap, the cap being fixed to the opening of the bottle body, the bottle body being able to hold high-grade liquor, foreign liquor, high-end beverages, high-end cosmetics, pharmaceutical preparations or health care liquids.

[0040] As an embodiment of the present invention, the present invention also provides an anti-counterfeiting system for an intelligent anti-counterfeiting container. The system includes a bottle body 18, a mobile terminal 19, and a cloud platform 20. The bottle body 18 is equipped with a bottle cap. The mobile terminal 19 has NFC functionality and is equipped with a dedicated APP, preferably using a mobile phone. It is used to communicate with the bottle cap via NFC, read the bottle cap ID, anti-counterfeiting information, opening records, and sensor data, issue authorization and password to the bottle cap, display authenticity and traceability information, and upload the data to the cloud platform 20. The cloud platform is not directly connected to the bottle cap; it is relayed through the APP, stores information about the entire product production chain, returns verification results to the APP, receives and saves opening logs and usage data, and realizes full lifecycle traceability management.

[0041] This invention also provides an anti-counterfeiting method for an intelligent anti-counterfeiting bottle cap system, comprising: S1. Cloud storage of the entire production chain information of the container; the mobile terminal APP obtains product authorization and traceability information from the cloud; S2. The mobile terminal APP approaches the NFC module on the bottle cap and sends the authorization and password to the smart anti-counterfeiting SoC main control module 9; S3. The user operates the rotating password dial 3 to input the password, and the intelligent anti-counterfeiting SoC main control module 9 verifies the password; S4. After verification, the core control unit drives the empty cup motor and lifting mechanism to operate, the lifting clutch sleeve 17 rises and unlocks, and the ring LED light strip indicates the open status; S5. When the user unscrews the bottle cap, the anti-theft module is triggered and records the first bottle opening event; S6. The open bottle status is written to the core control unit and synchronized to the cloud for archiving via the APP.

[0042] Specifically, the process of this invention is as follows: The user approaches the NFC module on the bottle cap via a mobile app. The NFC module senses and draws power, waking up the intelligent anti-counterfeiting SoC main control module 9, and the core control unit powers on and initializes. After power-on, the mobile app establishes NFC communication with the bottle cap, obtains authorization information from the cloud, and sends the valid password to the core control unit of the bottle cap. The user rotates the password dial 3 to input the password, and the core control unit completes password verification. After successful password verification, the core control unit drives the empty cup motor 6-1 to start. The empty cup motor 6-1, through the reduction gear 6-2 and the lifting screw 6-3, drives the lifting clutch sleeve 17 to move upward, releasing the mechanical lock. Then, the user twists the bottle cap, the anti-theft break ring 13 breaks, and triggers the cap opening detection switch 15, completing the first bottle opening. The core control unit records the bottle opening information and uploads it to the mobile app via NFC. The mobile app synchronizes with the cloud to complete traceability. If multiple incorrect passwords, forced opening, structural tampering, or other abnormal situations occur, the core control unit activates the hardware locking module 12 to achieve irreversible hardware locking.

[0043] Furthermore, this method uses attitude sensor 5, air pressure sensor 8, and liquid level sensor 10 to monitor the usage status: the core control unit collects data from attitude sensor 5 in real time to determine the tilting and tipping behavior of the bottle; air pressure sensor 8 detects changes in air pressure inside and outside the bottle to confirm the open state; liquid level sensor 10 monitors the drop in liquid level and counts the amount of liquid flowing out; the data collected by the above sensors are transmitted to the core control unit, and then processed by the core control unit and uploaded to the mobile APP via NFC, and can also be synchronized to the cloud.

[0044] The foregoing description illustrates and describes several preferred embodiments of the present invention. However, as previously stated, it should be understood that the present invention is not limited to the forms disclosed herein and should not be construed as excluding other embodiments. It can be used in various other combinations, modifications, and environments, and can be altered within the scope of the inventive concept described herein through the foregoing teachings or techniques or knowledge in related fields. Any modifications and variations made by those skilled in the art that do not depart from the spirit and scope of the present invention should be within the protection scope of the appended claims.

Claims

1. A smart anti-counterfeiting bottle cap, characterized in that, The bottle cap includes: a bottle cap top shell, a lifting clutch sleeve and a password module, an intelligent anti-counterfeiting SoC main control module, a lifting drive module, an NFC module, a hardware locking module and an anti-theft module disposed between the two, wherein the password module is disposed inside the bottle cap top shell and is used to input a password; The intelligent anti-counterfeiting SoC main control module is located between the password module and the lifting drive module, and is used to control the lifting movement of the lifting drive module; The NFC module is arranged around the periphery of the intelligent anti-counterfeiting SoC main control module and is used to sense external NFC sources; The hardware locking module is located between the lifting drive module and the anti-theft module, and is used to lock the bottle cap; The anti-theft module is located at the bottom of the bottle cap and is used to prevent the bottle cap from being stolen.

2. The bottle cap according to claim 1, characterized in that, The cryptographic module is a rotating cryptographic dial.

3. The bottle cap according to claim 2, characterized in that, A sealing inner plug is provided between the rotating code dial and the top shell of the bottle cap.

4. The bottle cap according to claim 1, characterized in that, The intelligent anti-counterfeiting SoC main control module includes a core control unit, an attitude sensor, a pressure sensor, a liquid level sensor, and an angle sensor.

5. The bottle cap according to claim 1, characterized in that, The lifting drive module includes a connected empty cup motor, a reduction gear set, and a lifting screw.

6. The bottle cap according to claim 1, characterized in that, A ring-shaped LED light strip with the same diameter as the bottle cap top shell is also provided between the hardware locking module and the intelligent anti-counterfeiting SoC main control module.

7. An anti-counterfeiting container, characterized in that... The container includes a bottle body and a bottle cap as described in any one of claims 1-6, the bottle cap being fixed to the opening of the bottle body, and the bottle body containing high-grade liquor, foreign liquor, high-end beverages, high-end cosmetics, pharmaceutical preparations, or health care liquids.

8. An anti-counterfeiting system for an intelligent anti-counterfeiting container, characterized in that... The system includes the container, mobile terminal, and cloud as described in claim 7, wherein the mobile terminal is equipped with an APP and wirelessly communicates with the bottle cap of the container, and the cloud is equipped with the entire production chain information of the container.

9. An anti-counterfeiting method for an anti-counterfeiting system, characterized in that, The method is implemented using the system described in claim 8, including: S1. The cloud contains information about the entire production chain of the container and transmits all the information to the mobile app. S2. The APP of the mobile terminal approaches the NFC module on the bottle cap of the container and sends the authorization information to the smart anti-counterfeiting SoC main control module of the bottle cap; S3. The user operates the password module to input the password. The intelligent anti-counterfeiting SoC main control module verifies the password according to the authorization and drives the lifting drive module to lift and lower, so that the clutch sleeve rises and unlocks. S4. Upon unlocking, a circular LED light strip indicates that the bottle cap has been opened; S5. The user unscrews the bottle cap as instructed, the anti-theft module is destroyed, and the bottle cap is opened; S6. Write the bottle opening status to the smart anti-counterfeiting SoC main control module and send it to the cloud for synchronization.

10. The method according to claim 9, characterized in that, The anti-counterfeiting measures for the container also include detecting the tilt of the bottle, the overall air pressure of the container, and the amount of liquid poured out.