Intelligent lock control system

By designing an intelligent lock control system and combining multiple verification and real-time detection modules, precise control of IC cards and lock control cabinets is achieved, solving the problem that the existing system cannot effectively manage IC cards, and improving the security and efficiency of equipment security management.

CN223390134UActive Publication Date: 2025-09-26SHIJIAZHUANG JINNENG ELECTRIC EQUIP CO LTD
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Patent Information

Application Number
CN202422808094.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-18
Publication Date
2025-09-26
Estimated Expiration
2034-11-18

AI Technical Summary

Technical Problem

The existing intelligent lock control system cannot effectively manage IC cards, resulting in hidden dangers in equipment security management.

Method used

An intelligent lock control system was designed, including a lock control cabinet, a control terminal, a communication module, a main control module, a lock control module, and an IC card control module. Multiple verification methods were used to ensure that only authorized personnel could access specific equipment rooms. Modules such as cabinet door detection, card slot detection, card slot indication, and cabinet door alarm were combined to achieve precise control of the lock control cabinet and IC card.

Benefits of technology

It simplifies the management process, enhances system security, ensures that only authorized managers can access specific equipment rooms, prevents illegal intrusion, and improves the reliability and efficiency of equipment security management.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides an intelligent lock control system, and belongs to the technical field of intelligent locks. The intelligent lock control system comprises a lock control cabinet, a control terminal, a communication module, a main control module, a lock control module and an IC card control module, the control terminal is in communication connection with the main control module through the communication module; the control terminal, the communication module, the main control module, the lock control module and the IC card control module are all arranged in a lock control cabinet, and the lock control cabinet is used for storing an IC card; the lock control module and the IC card control module are both connected with the main control module; the control terminal is configured to obtain an unlocking instruction of a user, the lock control module is configured to control the opening and closing state of a cabinet door of the lock control cabinet, and the IC card control module is configured to control the unlocking state of an IC card. The problem that an existing intelligent lock control system cannot effectively manage the IC card can be solved.
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Description

Technical Field

[0001] The present disclosure relates to the technical field of smart locks, and in particular to a smart lock control system. Background Art

[0002] In modern enterprises, the increasing diversification and specialization of equipment places higher demands on equipment security management. Different devices are often managed by dedicated personnel to ensure their proper operation and maintenance. However, traditional key management methods pose security risks. Lost or stolen keys can easily allow unauthorized access to equipment rooms, posing a threat to equipment security.

[0003] In order to solve this problem, a variety of intelligent lock control systems have appeared on the market, but most of these systems have single functions and cannot achieve effective management of IC cards. Utility Model Content

[0004] The embodiments of the present disclosure provide an intelligent lock control system to solve the problem that existing intelligent lock control systems cannot effectively manage IC cards.

[0005] The embodiment of the present disclosure provides an intelligent lock control system, comprising: a lock control cabinet, a control terminal, a communication module, a main control module, a lock control module and an IC card control module;

[0006] The control terminal is communicatively connected with the main control module via the communication module;

[0007] The control terminal, the communication module, the main control module, the lock control module and the IC card control module are all arranged in the lock control cabinet, and the lock control cabinet is used to store IC cards;

[0008] The lock control module and the IC card control module are both connected to the main control module;

[0009] The control terminal is configured to obtain a user's unlocking instruction, the lock control module is configured to control the cabinet door opening and closing state of the lock control cabinet, and the IC card control module is configured to control the unlocking state of the IC card.

[0010] In an exemplary embodiment of the present disclosure, the system further includes: a cabinet door detection module;

[0011] The cabinet door detection module is connected to the main control module;

[0012] The cabinet door detection module is configured to detect the open / close state of the lock-controlled cabinet door.

[0013] In an exemplary embodiment of the present disclosure, it further includes: a card slot detection module;

[0014] The card slot detection module is connected to the main control module;

[0015] The card slot detection module is configured to detect an IC card in the card slot.

[0016] In an exemplary embodiment of the present disclosure, it further includes: a card slot indication module;

[0017] The card slot indication module is connected to the card slot detection module;

[0018] The card slot indication module is configured to send an indication signal based on the status of the IC card in the card slot.

[0019] In an exemplary embodiment of the present disclosure, the device further includes: a cabinet door alarm module;

[0020] The cabinet door alarm module is connected to the cabinet door detection module;

[0021] The cabinet door alarm module is configured to send an alarm signal according to the open and close status of the lock-controlled cabinet door.

[0022] In an exemplary embodiment of the present disclosure, the IC card control module includes: a motor control circuit;

[0023] The motor control circuit is connected to the main control module, and the motor control circuit is configured to control a motor, and the motor is configured to control an unlocking state of the IC card.

[0024] In an exemplary embodiment of the present disclosure, the device further includes: a motor detection circuit;

[0025] The motor detection circuit is connected to the main control module;

[0026] The motor detection circuit is configured to detect forward and reverse rotation of the motor.

[0027] In an exemplary embodiment of the present disclosure, the control terminal includes a display screen;

[0028] The display screen is connected to the control terminal, and the display screen is configured to display information of the intelligent lock control system.

[0029] The intelligent lock control system provided by the disclosed embodiments has the following beneficial effects: The disclosed embodiments receive unlocking commands from the user through a control terminal and utilize a communication module to ensure accurate transmission of these commands. The main control module then coordinates the operation of the lock control module and the IC card control module based on these commands, thereby achieving precise control over the unlocking status of the lock-controlled cabinet door and IC card. This not only simplifies management processes but also enhances system security through multiple verification methods, ensuring that only authorized administrators can access specific equipment rooms, effectively preventing unauthorized intrusion by non-administrators, and providing strong support for enterprise equipment security management. BRIEF DESCRIPTION OF THE DRAWINGS

[0030] In order to more clearly illustrate the technical solutions in the embodiments of the present disclosure, the following briefly introduces the drawings required for use in the embodiments or the description of the prior art. Obviously, the drawings described below are only some embodiments of the present disclosure. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying any creative labor.

[0031] Figure 1 This is a schematic diagram of the structure of the intelligent lock control system provided by the embodiment of the present disclosure;

[0032] Figure 2 is a structural diagram of an intelligent lock control system provided by another embodiment of the present disclosure;

[0033] Figure 3 Schematic diagram of a lock control cabinet provided in an embodiment of the present disclosure. DETAILED DESCRIPTION

[0034] To help those skilled in the art better understand this solution, the following will clearly describe the technical solutions in the embodiments of this solution in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of this solution, not all of it. Based on the embodiments of this solution, all other embodiments obtained by those skilled in the art without creative work should fall within the scope of protection of this solution.

[0035] Throughout the specification, claims, and accompanying figures of this solution, the term "including" and any variations thereof mean "including, but not limited to," and are intended to cover non-exclusive inclusions and are not limited to the examples listed herein. Furthermore, the terms "first" and "second," etc., are used to distinguish between different objects, not to describe a specific order.

[0036] The following describes the implementation of the present disclosure in detail with reference to the accompanying drawings:

[0037] Figure 1 This is a schematic diagram of the structure of an intelligent lock control system provided by an embodiment of the present disclosure. Figure 1 ,The intelligent lock control system includes: a lock control cabinet, a control terminal, a communication module, a main control module, a lock control module and an IC card control module;

[0038] The control terminal is connected to the main control module through the communication module;

[0039] The control terminal, communication module, main control module, lock control module and IC card control module are all set in the lock control cabinet, which is used to store IC cards;

[0040] The lock control module and IC card control module are both connected to the main control module;

[0041] The control terminal is configured to obtain the user's unlocking instruction, the lock control module is configured to control the cabinet door opening and closing state of the lock control cabinet, and the IC card control module is configured to control the unlocking state of the IC card.

[0042] In some companies, different devices are managed by dedicated personnel. To prevent non-management personnel from entering the equipment room, smart locks are installed in each equipment room, and each smart lock corresponds to an IC card. At the same time, to ensure the security of equipment management, IC cards must be effectively managed to ensure that only authorized personnel can access IC cards.

[0043] In this embodiment, the intelligent lock control system consists of a lock control cabinet, a control terminal, a communication module, a main control module, a lock control module, and an IC card control module. These modules are housed in the lock control cabinet, which primarily stores IC cards. The control terminal establishes a communication connection with the main control module via the communication module, and both the lock control module and the IC card control module are connected to the main control module. Administrators authorize access through the control terminal, which can verify the administrator through various methods, such as fingerprint recognition, facial recognition, or password recognition. These verification methods ensure that only authorized administrators can perform subsequent operations, enhancing system security.

[0044] After the administrator successfully authenticates, the control terminal sends an authorization signal to the main control module via the communication module. The communication module ensures stable data transmission between the control terminal and the main control module, allowing authorization information to be delivered promptly and accurately. After receiving the authorization signal, the main control module sends a control instruction to the lock control module. Based on the control instruction, the lock control module controls the door opening and closing state of the lock control cabinet, opening the door. The lock control cabinet has multiple card slots, each containing an IC card, and each slot corresponds to an IC card control module. After receiving the authorization signal, the main control module determines the administrator's authority. Based on the administrator's authority, the main control module sends a control instruction to the corresponding IC card control module. After receiving the control instruction, the corresponding IC card control module controls the unlocking state of the IC card. After the IC card is unlocked, the administrator can remove the corresponding IC card and then close the cabinet door. The administrator can use the IC card to open the smart lock between the corresponding devices, enabling access and management of specific devices.

[0045] As can be seen from the above, this embodiment obtains the user's unlocking command through the control terminal and uses the communication module to ensure accurate transmission of the command. The main control module then coordinates the operation of the lock control module and the IC card control module based on the command, thereby achieving precise control over the lock-controlled cabinet door and the unlocking status of the IC card. This not only simplifies the management process but also enhances system security through multiple verification methods, ensuring that only authorized managers can access specific equipment rooms, effectively preventing unauthorized intrusion by non-managerial personnel, and providing strong protection for enterprise equipment security management.

[0046] like Figure 2 As shown, in one embodiment of the present disclosure, it also includes: a cabinet door detection module; the cabinet door detection module is connected to the main control module; the cabinet door detection module is configured to detect the switch status of the lock-controlled cabinet door.

[0047] In this embodiment, the door detection module is configured to detect the open and closed status of the locked door. It utilizes various sensor technologies, such as contact sensors and proximity sensors, to monitor the door's position and status in real time. When the door is closed, the door detection module sends a corresponding signal back to the main control module, indicating that the door is properly closed. When the door is opened, the door detection module immediately detects this change and sends a signal indicating the door is open to the main control module.

[0048] For example, when the administrator successfully completes authorization verification at the control terminal, the control terminal sends an authorization signal to the main control module via the communication module. After receiving the signal, the main control module sends a control instruction to the lock control module to open the cabinet door. At this time, the cabinet door detection module detects that the cabinet door has changed from closed to open and feeds this change back to the main control module. When the administrator removes the IC card and closes the cabinet door, the cabinet door detection module detects the change in cabinet door status again and sends a cabinet door closure signal to the main control module. The main control module can perform subsequent operations based on the cabinet door's closed status, such as confirming whether the IC card is safely stored and updating the system status.

[0049] As can be seen from the above, by real-time monitoring of the cabinet door's open and closed status, the cabinet door detection module in this embodiment can promptly detect abnormalities, such as unauthorized cabinet door opening or improperly closed cabinet doors. Upon detecting an abnormality, the cabinet door detection module immediately alerts the main control module, which can then take appropriate measures, such as notifying management personnel and activating safety protection mechanisms, thereby enhancing system security. Furthermore, the presence of the cabinet door detection module improves system reliability, ensuring that the system can accurately monitor the cabinet door's status and avoiding operational errors or safety hazards caused by uncertain cabinet door status.

[0050] like Figure 2 As shown, in one embodiment of the present disclosure, it also includes: a card slot detection module; the card slot detection module is connected to the main control module; the card slot detection module is configured to detect an IC card in the card slot.

[0051] In this embodiment, the card slot detection module is configured to detect IC cards in the card slots. This module can detect IC cards using a variety of methods, such as magnetic induction and radio frequency identification. When an IC card is inserted into a card slot, the card slot detection module immediately senses the presence of the IC card and sends a corresponding signal to the main control module. This allows the main control module to determine in real time whether an IC card is present in each card slot and the specific location of the IC card.

[0052] For example, in the process of the manager obtaining the IC card, after the control terminal completes the authorization verification and sends the signal to the main control module, the main control module sends an instruction to the lock control module to open the cabinet door. At the same time, the main control module will also determine the card slot position of the IC card that needs to be unlocked based on the information provided by the card slot detection module. The main control module sends a control instruction to the corresponding IC card control module based on the manager's authority. After the IC card control module unlocks the corresponding IC card, the card slot detection module can reconfirm the status of the IC card to ensure that the IC card is in a state where it can be taken out. When the manager takes away the IC card and closes the cabinet door, the card slot detection module will detect the absence of the IC card in the card slot and feed this information back to the main control module. The main control module can update the system status to record which IC cards have been taken out and which card slots are empty.

[0053] As can be seen from the above, the card slot detection module enables the system to more accurately manage IC cards. By real-time detection of IC cards in the card slots, this embodiment can promptly detect IC card anomalies, such as card loss or damage. Once a problem is discovered, this embodiment can promptly notify management personnel to address it, preventing IC card issues from disrupting normal device management.

[0054] like Figure 2 As shown, in one embodiment of the present disclosure, it also includes: a card slot indication module; the card slot indication module is connected to the card slot detection module; the card slot indication module is configured to send an indication signal based on the status of the IC card in the card slot.

[0055] In this embodiment, the card slot detection module continuously monitors the status of the IC card in the card slot, including whether the IC card is present in the slot and whether the IC card is unlocked. The card slot detection module transmits this status information to the card slot indication module. The card slot indication module then issues an indication signal based on the received IC card status information. This indication signal can take various forms, such as light or sound. When the IC card is in the slot and in normal operation, the card slot indication module may issue a specific indication signal, such as a green light or a sound of a specific frequency. When the IC card is removed or in an abnormal state (such as damaged or unauthorized), the card slot indication module issues another indication signal, such as a red light or a sound of a different frequency. For administrators, the indication signal from the card slot indication module helps them quickly locate the required IC card. After opening the lock-controlled cabinet door, administrators can easily locate the card slot for the IC card with the corresponding permission by observing the signal from the card slot indication module, improving card retrieval efficiency. The indication signal also serves to alert administrators to the status of the IC card. If the indication signal of a card slot is abnormal, the administrator can promptly check whether there is a problem with the IC card in the card slot to ensure that the intelligent lock control system between devices can operate normally.

[0056] In this embodiment, the card slot indication module works closely with the card slot detection module to ensure the accuracy of the indication signal. The card slot detection module monitors changes in the IC card status in real time and promptly transmits this information to the card slot indication module, enabling the latter to promptly update the indication signal. Furthermore, the card slot indication module is indirectly connected to the main control module. The main control module influences the IC card status by controlling the lock control module and the IC card control module, while the card slot indication module issues corresponding indication signals based on changes in the IC card status, thus achieving coordinated operation of the entire system.

[0057] like Figure 2 As shown, in one embodiment of the present disclosure, it also includes: a cabinet door alarm module; the cabinet door alarm module is connected to the cabinet door detection module; the cabinet door alarm module is configured to send an alarm signal according to the switch status of the lock-controlled cabinet door.

[0058] In this embodiment, the door detection module continuously monitors the open / closed state of the locked door and transmits this status information to the door alarm module. Using sensors and other devices, the door detection module accurately determines whether the door is open or closed. Based on this received door open / closed state information, the door alarm module determines whether to issue an alarm signal.

[0059] For example, if the cabinet door is opened without legal authorization, the cabinet door alarm module will immediately issue an alarm signal. For example, when someone attempts to force open the cabinet door or illegally bypasses the authorization verification of the control terminal to open the cabinet door, the cabinet door alarm module will activate the alarm. If the cabinet door is not closed properly after opening, the cabinet door alarm module may also issue an alarm signal. This can prevent problems such as IC card loss and equipment safety risks caused by the cabinet door not being closed. When the alarm conditions are met, the cabinet door alarm module can issue an alarm signal. The alarm signal can be in various forms, such as an audible alarm (such as a buzzer, alarm sound, etc.), a light alarm (such as a flashing red light, etc.), or sending an alarm notification to the management personnel via the network.

[0060] Audible alarms can draw attention on-site, alerting nearby personnel to unusual conditions. Optical alarms can be observed from a distance, allowing managers to identify problems promptly. Sending alarm notifications over the network allows even off-site managers to be informed of unusual cabinet door conditions and take appropriate action.

[0061] In this embodiment, the cabinet door alarm module works closely with the cabinet door detection module to ensure that abnormal cabinet door conditions can be detected promptly and accurately and an alarm signal can be issued. At the same time, the cabinet door alarm module can also interact with other modules such as the control terminal, communication module, and main control module.

[0062] For example, when the door alarm module issues an alarm signal, the control terminal can display the alarm information and notify management personnel for processing. The communication module can transmit the alarm information to the remote monitoring center for centralized management and response. The main control module can take further security measures based on the alarm, such as locking the system and recording the event.

[0063] As can be seen from the above, the cabinet door alarm module plays an important role in the security of the intelligent lock control system. By cooperating with the cabinet door detection module, it can promptly detect abnormal cabinet door conditions and issue an alarm signal, improving the safety and reliability of the system.

[0064] like Figure 2 As shown, in one embodiment of the present disclosure, the IC card control module includes: a motor control circuit; the motor control circuit is connected to the main control module, the motor control circuit is configured to control the motor, and the motor is configured to control the unlocking state of the IC card.

[0065] In this embodiment, the main control module sends control instructions to the IC card control module based on the administrator's authority and specific operation requirements. The motor control circuit in the IC card control module receives the instructions from the main control module.

[0066] The motor control circuit controls the motor according to the received instructions. The motor control circuit can control the direction, speed, and force of the motor by adjusting parameters such as current and voltage.

[0067] For example, when the IC card needs to be unlocked, the motor control circuit may start the motor to perform a specific action, such as pushing or pulling the mechanical structure in the IC card slot to achieve the unlocking operation of the IC card.

[0068] Under the control of the motor control circuit, the motor mechanically changes the state of the IC card, thereby unlocking the IC card. This unlocking method can be physical movement, rotation, or other mechanical operation to remove the locking restrictions on the IC card. Once the IC card is unlocked, the administrator can remove the IC card from the card slot and use it to open the smart lock between the corresponding devices.

[0069] The motor control circuit in the IC card control module works in conjunction with other modules, such as the main control module and the card slot detection module. For example, the card slot detection module can detect the unlocked state of the IC card and provide feedback to the main control module. Based on this feedback, the main control module can further adjust the instructions to the motor control circuit to ensure accurate unlocking of the IC card.

[0070] From the above, it can be concluded that the motor control circuit of the IC card control module controls the motor action by receiving instructions from the main control module, thereby realizing the control of the unlocking state of the IC card, providing important support for the security management and efficient operation of the system.

[0071] like Figure 2 As shown, in one embodiment of the present disclosure, it also includes: a motor detection circuit; the motor detection circuit is connected to the main control module; the motor detection circuit is configured to detect the forward and reverse rotation of the motor.

[0072] In this embodiment, the motor detection circuit can use a sensor (such as a Hall effect sensor) to sense the motor's magnetic field changes or mechanical motion state to determine whether the motor is rotating forward or reverse. When the motor starts running, the motor detection circuit will monitor the motor's rotation direction in real time.

[0073] The motor detection circuit can feed back information about the motor's forward and reverse rotation to the main control module. The main control module can use this information to further confirm that the motor's operating status is as expected. For example, when controlling the unlocking of an IC card, the motor should rotate in a specific direction to correctly push or pull the relevant mechanical structure to unlock the IC card. If the motor detection circuit detects reverse rotation of the motor, this may be an abnormality, and the main control module will receive this information.

[0074] For example, the motor control circuit controls the motor's rotation, while the motor detection circuit detects the motor's direction. If the motor detection circuit detects that the motor's direction does not match the motor control circuit's instructions—for example, if the motor control circuit requires the motor to rotate forward to unlock an IC card, but the motor detection circuit detects the motor's direction is reversed—this could indicate a fault in the motor control circuit or a problem with the motor itself. In this case, the information provided by the motor detection circuit allows the main control module to take timely action, such as stopping the motor or issuing an alarm.

[0075] For example, the motor control circuit in the IC card control module aims to correctly control the unlocking state of the IC card. The forward and reverse rotation information provided by the motor detection circuit is crucial for ensuring the accuracy of the IC card unlocking operation. If the motor reverses and causes the IC card to be unable to unlock normally or abnormally locked, the main control module can adjust the motor control circuit instructions based on the feedback from the motor detection circuit to restore the motor's normal operating direction, thereby ensuring that the IC card can be unlocked or locked as expected.

[0076] As can be seen from the above, this embodiment can detect the forward and reverse rotation status of the motor in real time and connect it to the main control module, allowing the system to accurately understand the motor's operating status. On the one hand, it helps to promptly detect motor operating anomalies, such as incorrect rotation, and avoid abnormal IC card unlocking caused by motor failure, thereby ensuring the accuracy and stability of IC card control. On the other hand, through the connection with the main control module, timely feedback can be provided when problems arise, allowing the system to quickly take countermeasures, thereby improving the reliability and security of the entire intelligent lock control system.

[0077] like Figure 2 As shown, in one embodiment of the present disclosure, the control terminal includes a display screen; the display screen is connected to the control terminal, and the display screen is configured to display information of the intelligent lock control system.

[0078] In this embodiment, the display screen is connected to the control terminal, mainly to convert the information from the main control module into a format suitable for display on the display screen. The display screen can organize, layout and beautify the information to improve the readability and visualization of the information.

[0079] For example, the display screen can display the cabinet door's open / closed status in the form of text (such as "Cabinet door open" or "Cabinet door closed") or graphics (such as icons of open and closed doors). For IC card status, information such as "IC card unlocked" or "IC card removed" can be displayed.

[0080] The display screen receives the processed information from the display screen and displays it to the user intuitively. The user can understand the operation status of the intelligent lock control system at any time through the display screen.

[0081] For example, when an administrator is performing an authorized operation, he or she can see his or her permission information and a list of available IC cards on the display. During system operation, the administrator can monitor the status of the lock-controlled cabinet doors, the use of IC cards, and the working status of the motors in real time through the display.

[0082] From the above, it can be concluded that the display screen of the control terminal works in conjunction with the various modules of the intelligent lock control system through the display screen, providing users with an intuitive and real-time display of system information, thereby improving the system's usability and management efficiency.

[0083] For example, Figure 3 Schematic diagram of the lock control cabinet provided in the embodiment of the present disclosure. Figure 3 There are multiple card slots 2 in the lock control cabinet 1, each of which contains an IC card 3, and an indicator light 4 is provided above each card slot.

[0084] When the administrator passes the verification through the control terminal, the main control module sends a control instruction to the lock control module, and the lock control module is activated to control the cabinet door 5 of the lock control cabinet 1 to open automatically; at the same time, the main control module sends a control instruction to the IC card control module authorized by the administrator, and the authorized IC card control module is activated. At this time, the corresponding IC card 3 is in an unlocked state, and the administrator can directly take out the IC card from the card slot; when the IC card is taken out, the indicator light 4 above the corresponding card slot emits red light. After the IC card is taken out, the administrator can close the cabinet door 5. When the administrator inserts the IC card into the corresponding card slot, the indicator light 4 can change from red to green.

[0085] As can be seen from the above, in this embodiment, after verification by the control terminal, the cabinet door automatically opens and the specific IC card is unlocked, making it easy for managers to quickly obtain the required cards and improving work efficiency. The indicator light above each card slot can intuitively display the IC card status. After the card is removed, it will display a red light to remind the manager that the card in that position is missing, avoiding confusion and incorrect operation. After the card is returned, the indicator light turns green, making it easier for managers to confirm that the card has been correctly returned. Overall, this design improves the ease of use, accuracy, and management convenience of the intelligent lock control system, while also enhancing the management and monitoring of IC cards.

[0086] The above embodiments are only used to illustrate the technical solutions of the present disclosure, rather than to limit them. Although the present disclosure has been described in detail with reference to the aforementioned embodiments, those skilled in the art should understand that they can still modify the technical solutions described in the aforementioned embodiments, or make equivalent replacements for some of the technical features therein. However, these modifications or replacements do not deviate the essence of the corresponding technical solutions from the spirit and scope of the technical solutions of the various embodiments of the present disclosure.

Claims

1. An intelligent lock control system, characterized in that: include: Lock control cabinet, control terminal, communication module, main control module, lock control module and IC card control module; The control terminal is communicatively connected with the main control module via the communication module; The control terminal, the communication module, the main control module, the lock control module and the IC card control module are all arranged in the lock control cabinet, and the lock control cabinet is used to store IC cards; The lock control module and the IC card control module are both connected to the main control module; The control terminal is configured to obtain a user's unlocking instruction, the lock control module is configured to control the cabinet door opening and closing state of the lock control cabinet, and the IC card control module is configured to control the unlocking state of the IC card.

2. The intelligent lock control system according to claim 1, characterized in that: Also includes: Cabinet door detection module; The cabinet door detection module is connected to the main control module; The cabinet door detection module is configured to detect the open / close state of the lock-controlled cabinet door.

3. The intelligent lock control system according to claim 1, characterized in that: Also includes: Card slot detection module; The card slot detection module is connected to the main control module; The card slot detection module is configured to detect an IC card in the card slot.

4. The intelligent lock control system according to claim 3, characterized in that: Also includes: Card slot indication module; The card slot indication module is connected to the card slot detection module; The card slot indication module is configured to send an indication signal based on the status of the IC card in the card slot.

5. The intelligent lock control system according to claim 2, characterized in that: Also includes: Cabinet door alarm module; The cabinet door alarm module is connected to the cabinet door detection module; The cabinet door alarm module is configured to send an alarm signal according to the open and close status of the lock-controlled cabinet door.

6. The intelligent lock control system according to claim 1, characterized in that: The IC card control module includes: a motor control circuit; The motor control circuit is connected to the main control module, and the motor control circuit is configured to control a motor, and the motor is configured to control an unlocking state of the IC card.

7. The intelligent lock control system according to claim 6, characterized in that: Also includes: Motor detection circuit; The motor detection circuit is connected to the main control module; The motor detection circuit is configured to detect forward and reverse rotation of the motor.

8. The intelligent lock control system according to claim 1, characterized in that: The control terminal includes a display screen; The display screen is connected to the control terminal, and the display screen is configured to display information of the intelligent lock control system.