Sliding door and window and system thereof

By introducing wireless communication control and drive modules into the sliding door and window system, the problems of inconvenient operation and safety hazards of traditional wired control systems have been solved, realizing convenient and safe wireless control and improving the system's flexibility and reliability.

CN223881021UActive Publication Date: 2026-02-06SHENZHEN HOPO WINDOW CONTROL TECH CO LTD
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Patent Information

Application Number
CN202423194649.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-20
Publication Date
2026-02-06
Estimated Expiration
2034-12-20

AI Technical Summary

Technical Problem

Traditional sliding door and window systems are inconvenient to operate and pose safety hazards in large doors and windows or in situations requiring frequent operation. In particular, wired control systems have fixed installation locations, high debugging and maintenance costs, and problems such as aging and breakage of wires or cables.

Method used

The control and drive modules using wireless communication include a panel unit, a command unit, a drive unit, and a wireless communication unit. This enables convenient input of user commands and wireless control, eliminating the limitations of physical connections, reducing installation and maintenance costs, and avoiding safety hazards such as aging or breakage of wires or cables.

Benefits of technology

It improves the ease of use and safety of sliding doors and windows, offers flexible installation locations, reduces debugging and maintenance costs, avoids safety hazards such as aging or broken wires or cables, and enhances system reliability.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a sliding door and window system which comprises a fixed frame and a movable door and window arranged in the fixed frame, the movable door and window moves in the rail direction of the fixed frame, the sliding door and window system comprises a control module and a driving module, the control module is arranged on the fixed frame or the movable door and window, the control module comprises a panel unit and a command unit, and the panel unit is connected with the driving module. The panel unit is electrically connected with the command unit; the driving module is arranged on the fixed frame, the driving module comprises a driving unit and a wireless communication unit, the driving unit is electrically connected with the wireless communication unit, the wireless communication unit is wirelessly connected with the command unit, the panel unit is used for receiving an instruction of a user, and when the control module controls the driving unit, the driving unit drives the movable door and window to be opened or closed. Therefore, the constraint of a traditional wired control system is eliminated, the installation position is more flexible, and the debugging and maintenance cost is reduced.
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Description

TECHNICAL FIELD

[0001] The present application relates to the field of sliding door and window, in particular to a sliding door and window and a system thereof. BACKGROUND

[0002] Sliding door and window, as a common form of door and window in modern architecture, is widely welcomed due to its elegant, beautiful, convenient and space-saving characteristics. With the vigorous development of real estate industry and the acceleration of urbanization process, the market demand for sliding door and window as an important part of home decoration continues to grow.

[0003] In the traditional sliding door and window system, the opening and closing of the door and window mainly rely on manual operation. Although this operation method is simple and direct, it is particularly inconvenient when facing large doors and windows or needing frequent operation. Manual sliding not only consumes physical strength, but also may not respond quickly in emergency situations. In order to improve this situation, some sliding door and window systems introduce wired control system, which connects the controller and the driving device through wires or cables, realizing the automatic control of the door and window. The wired control system improves the convenience of operation to a certain extent, so that users can easily control the opening and closing of the door and window through the controller. However, due to the limitation of wires or cables, the installation position of wired control system is relatively fixed, and the debugging and maintenance cost is high. In addition, the wires or cables may have aging, breaking and other safety hazards during use, which not only affects the normal operation of the system, but also may pose a threat to the life and property safety of users.

[0004] Therefore, it is necessary to provide a sliding door and window that improves the convenience and safety of use to solve the above problems. CONTENT OF THE INVENTION

[0005] Therefore, it is necessary to provide a sliding door and window that improves the convenience and safety of use to solve the above problems.

[0006] Embodiments of the present application provide a sliding door and window system, comprising a fixed frame and a movable door and window arranged in the fixed frame, the movable door and window moving along the track direction of the fixed frame, the sliding door and window system comprising:

[0007] A control module is arranged on the fixed frame or the movable door and window, the control module comprising a panel unit and a command unit, the panel unit and the command unit being electrically connected;

[0008] A driving module is arranged on the fixed frame, and the driving module comprises a driving unit and a wireless communication unit. The driving unit is electrically connected with the wireless communication unit. The wireless communication unit is wirelessly connected with the command unit. The panel unit is used for receiving a user instruction. When the control module controls the driving unit, the driving unit drives the opening or closing of the movable door and window.

[0009] In at least one embodiment of the present application, the wireless communication unit comprises a first signal unit, and the command unit comprises a second signal unit. The second signal unit is arranged opposite to the first signal unit, so that the second signal unit transmits a signal to the first signal unit.

[0010] In at least one embodiment of the present application, the driving module further comprises a master control unit. The master control unit is arranged on the fixed frame, and the master control unit is electrically connected with the wireless communication unit and the driving unit. The master control unit is used for processing an instruction signal and controlling the driving unit according to the instruction signal.

[0011] In at least one embodiment of the present application, the sliding door and window system further comprises a power module. The power module is arranged on the fixed frame, and the power module is electrically connected with the driving module, and is used for providing power for the driving module.

[0012] In at least one embodiment of the present application, the sliding door and window system further comprises a locking module. The locking module is electrically connected with the driving module. The locking module is arranged on the fixed frame or the movable door and window, and is used for locking the movable door and window and the fixed frame.

[0013] An embodiment of the present application is a sliding door and window, which comprises a fixed frame and a movable door and window arranged in the fixed frame. The movable door and window moves along the track direction of the fixed frame, and any sliding door and window system comprises:

[0014] A control device is arranged on the fixed frame or the movable door and window. The control device comprises a panel assembly and a command assembly. The panel assembly is electrically connected with the command assembly.

[0015] A driving device is arranged on the fixed frame. The driving device comprises a driving assembly and a wireless communication assembly. The driving assembly is electrically connected with the wireless communication assembly. The wireless communication assembly is wirelessly connected with the command assembly.

[0016] In at least one embodiment of the present application, the command assembly comprises a first signal end, and the wireless communication assembly comprises a second signal end. The second signal end is arranged opposite to the first signal end.

[0017] In at least one embodiment of the present application, the driving device further comprises a master control assembly, which is arranged on the fixed frame and is connected to the driving assembly and the wireless communication assembly.

[0018] In at least one embodiment of the present application, the sliding door and window further comprises a power supply assembly arranged on the fixed frame and electrically connected to the driving device, wherein the power supply assembly comprises a switching power supply and a charging assembly, and the switching power supply is electrically connected to the charging assembly.

[0019] The sliding door and window further comprises a locking device arranged on the fixed frame or the movable door and window, and the locking device comprises a first locking position and a second locking position, wherein one of the first locking position and the second locking position is arranged on the fixed frame, and the other is arranged on the movable door and window.

[0020] The first locking position is a locking hole, and the second locking position is a locking piece.

[0021] The sliding door and window provided above realizes convenient input of user instructions by arranging a control module on the fixed frame or the movable door and window, wherein the control module comprises a panel unit for receiving user instructions and a command unit. Meanwhile, the driving module arranged on the fixed frame comprises a driving unit and a wireless communication unit, and the driving unit is connected to the command unit in a wireless manner, thereby breaking away from the constraints of traditional wired control systems, making the installation position more flexible, reducing the debugging and maintenance costs, and avoiding safety hazards such as aging and fracture of wires or cables, thereby improving the safety and reliability of the system. BRIEF DESCRIPTION OF DRAWINGS

[0022] Figure 1 The system block diagram of the control module arranged on the fixed frame in the sliding door and window system according to an embodiment of the present application.

[0023] Figure 2 The system block diagram of the control module arranged on the movable door and window in the sliding door and window system according to an embodiment of the present application.

[0024] Figure 3 The system block diagram of the wireless communication unit and the command unit according to an embodiment of the present application.

[0025] Figure 4 The system block diagram of the sliding door and window system according to an embodiment of the present application.

[0026] Figure 5 The structural schematic diagram of the control device arranged on the movable door and window in the sliding door and window according to an embodiment of the present application.

[0027] Figure 6Fig. 1 is a schematic diagram of a structure of a control device in a sliding door and window system according to an embodiment of the present application.

[0028] Figure 7 Fig. 2 is a schematic diagram of a structure of a control device and a driving device according to an embodiment of the present application.

[0029] Figure 8 Fig. 3 is a block diagram of a structure of a wireless communication component according to an embodiment of the present application.

[0030] Figure 9 Fig. 4 is a block diagram of a structure of a command component according to an embodiment of the present application.

[0031] Figure 10 Fig. 5 is a block diagram of a structure of a control device according to an embodiment of the present application.

[0032] Figure 11 Fig. 6 is a block diagram of a structure of a power supply component according to an embodiment of the present application.

[0033] Main component symbol explanation

[0034] 100. A sliding door and window system; 10. a fixed frame; 20. a movable door and window; 30. a control module; 31. a panel unit; 32. a command unit; 321. a second signal unit; 40. a driving module; 41. a driving unit; 42. a wireless communication unit; 421. a first signal unit; 43. a main control unit; 50. a power supply module; 60. a locking module.

[0035] 200. A sliding door and window; 210. a control device; 211. a panel component; 212. a command component; 2121. a first signal terminal; 220. a driving device; 221. a driving component; 222. a wireless communication component; 2221. a second signal terminal; 223. a main control component; 230. a power supply component; 231. a switching power supply; 232. a charging component; 240. a locking device; 241. a first locking position; 242. a second locking position. DETAILED DESCRIPTION

[0036] The embodiments of the present application will be described below in conjunction with the accompanying drawings. It should be apparent that the described embodiments are merely a part of the embodiments of the present application and not all embodiments.

[0037] It should be noted that when a component is referred to as being "connected" to another component, it can be directly connected to the other component or can exist with an intermediate component in between. When a component is referred to as being "disposed on" another component, it can be directly disposed on the other component or can exist with an intermediate component in between. The terms "top", "bottom", "upper", "lower", "left", "right", "front", "rear", and the like as used herein are for the purpose of illustration only.

[0038] Embodiments of the present application provide a sliding door and window system, comprising a fixed frame and a movable door and window arranged in the fixed frame, the movable door and window moving along the track direction of the fixed frame, the sliding door and window system comprising:

[0039] a control module arranged on the fixed frame or the movable door and window, the control module comprising a panel unit and a command unit, the panel unit and the command unit being electrically connected;

[0040] a drive module arranged on the fixed frame, the drive module comprising a drive unit and a wireless communication unit, the drive unit and the wireless communication unit being electrically connected, the wireless communication unit being wirelessly connected to the command unit, the panel unit being used to receive user instructions, so that when the control module controls the drive unit, the drive unit drives the opening or closing of the movable door and window.

[0041] The sliding door and window provided above, by arranging a control module on the fixed frame or the movable door and window, the module comprising a panel unit and a command unit for receiving user instructions, the convenient input of user instructions is realized. At the same time, the drive module arranged on the fixed frame, comprising a drive unit and a wireless communication unit, the drive unit being connected to the command unit in a wireless manner, the traditional wired control system is broken away from, the installation position is more flexible, the debugging and maintenance cost is reduced. In addition, the wireless communication mode also avoids the safety hazards such as aging and fracture of wires or cables, improves the safety and reliability of the system.

[0042] Some embodiments of the present application will be described in detail below with reference to the accompanying drawings. In the case of no conflict, the following embodiments and features in the embodiments can be combined with each other.

[0043] According to Figures 1-11 , the present application provides a sliding door and window system 100, comprising a fixed frame 10 and a movable door and window 20 arranged in the fixed frame 10, the movable door and window 20 moving along the track direction of the fixed frame 10, the sliding door and window system comprising a control module 30 and a drive module 40.

[0044] The control module 30 is arranged on the fixed frame 10 or the movable door and window 20, the control module 30 comprises a panel unit 31 and a command unit 32, the panel unit 31 is electrically connected with the command unit 32; the drive module 40 is arranged on the fixed frame 10, the drive module 40 comprises a drive unit 41 and a wireless communication unit 42, the drive unit 41 is electrically connected with the wireless communication unit 42, the wireless communication unit 42 is wirelessly connected with the command unit 32, the panel unit 31 is used for receiving user instructions, when the control module 30 controls the drive unit 41, the drive unit 41 drives the opening or closing of the movable door and window 20.

[0045] Specifically, the fixed frame 10 is a support structure of the door and window system, and the movable door and window 20 moves along the track direction of the fixed frame 10, which is usually horizontal or vertical, to realize the opening and closing function of the movable door and window 20. The drive module 40 integrates the components of the motor and the driving mechanism, and converts the rotary motion of the motor into the linear motion of the movable door and window 20 through the driving mechanism (such as gear, chain, belt and other mechanical methods), so as to realize the opening or closing of the movable door and window 20. The panel unit 31 is responsible for receiving the user's command, which can be realized by touch, key or wireless signal, so as to realize the convenience and intuitiveness of human-computer interaction, so that the user can more conveniently operate and control the system. The panel unit 31 is responsible for converting the user's instruction into an electrical signal, which is electrically connected with the command unit 32, and the command unit 32 transmits the user's instruction electrical signal to the wireless communication unit 42 for subsequent processing. The wireless communication unit 42 realizes transmission by infrared sensing. The wireless communication unit 42 is wirelessly connected with the command unit 32, the command unit 32 sends wireless signals to the wireless communication unit 42, and the wireless communication unit 42 transmits the wireless signals to the drive unit 41. The drive unit 41 converts the electrical signal into the moving power of the movable door and window 20 by mechanical method, and drives the opening or closing of the movable door and window 20.

[0046] The following is a detailed description of the installation of the battery unit and the panel unit 31:

[0047] In embodiment one, the control module 30 is installed on the fixed frame 10, that is, the panel unit 31 and the command unit 32 are both installed on the fixed frame 10, and the drive module 40 is also installed on the fixed frame 10. The panel unit 31 receives the user's instruction and converts the instruction into an electrical signal, which is transmitted to the command unit 32 electrically connected with the panel unit 31, and the command unit 32 wirelessly transmits the electrical signal to the wireless communication unit 42, and further transmits the electrical signal to the drive unit 41. After receiving the signal, the drive unit 41 drives the motor and other actuators, so as to control the opening or closing of the movable door and window 20.

[0048] In the second embodiment, the control module 30 is installed on the movable door and window 20, i.e. the panel unit 31 and the command unit 32 are both installed on the movable door and window 20, such as near the side or handle of the door and window, and the driving module 40 is installed on the fixed frame 10. The control module 30 is connected with the driving module 40 through wireless communication. When the user inputs the instruction through the panel unit 31 installed on the movable door and window 20, the command unit 32 receives the instruction and converts it into an electrical signal, which is transmitted to the driving module 40 through the wireless communication unit 42. After receiving the signal, the driving module 40 drives the motor and other actuators, thereby controlling the opening or closing of the movable door and window 20. After executing the control of the opening or closing of the movable door and window 20, the driving module 40 transmits the feedback signal to the command unit 32 through the wireless communication unit 42, so as to transmit the feedback signal to the panel unit 31 to display the status signal of the movable door and window 20.

[0049] In summary, the command unit 32 in the control module 30 is connected with the wireless communication unit 42 in the driving module 40 through wireless communication. This connection mode makes the control module 30 and the driving module 40 flexible in layout and not limited by the physical connection line, which is convenient for user operation and does not affect the movement of the movable door and window 20.

[0050] In a specific embodiment, the wireless communication unit 42 comprises a first signal unit 421, and the command unit 32 comprises a second signal unit 321, which is oppositely arranged with the first signal unit 421 to transmit the signal.

[0051] Specifically, the first signal unit 421 and the second signal unit 321 are infrared sensing signal units. The second signal unit 321 is responsible for converting the command into a signal and transmitting it to the first signal unit 421, thereby realizing the transmission of wireless communication. The opposite arrangement of the first signal unit 421 and the second signal unit 321 means that there is a certain corresponding relationship between the two signal units in the physical space, which is convenient for mutual transmission of signals and ensures direct and efficient transmission of signals. After the panel unit 31 receives the user's instruction and converts it into an electrical signal, the electrical signal is transmitted to the command unit 32 electrically connected with the panel unit 31. The second signal unit 321 of the command unit 32 wirelessly transmits the electrical signal to the first signal unit 421 of the wireless communication unit 42, and further transmits the electrical signal to the driving unit 41. After receiving the signal, the driving unit 41 drives the motor and other actuators, thereby controlling the opening or closing of the movable door and window 20. After executing the control of the opening or closing of the movable door and window 20, the driving unit 41 transmits the feedback signal to the second signal unit 321 through the first signal unit 421, so as to transmit the feedback signal to the panel unit 31 to display the status signal of the movable door and window 20.

[0052] In a specific embodiment, the drive module 40 further comprises a master control unit 43, which is arranged on the fixed frame 10, and the master control unit 43 is electrically connected to the wireless communication unit 42 and the drive unit 41, and the master control unit 43 is used to process instruction signals and control the drive unit 41 according to the instruction signals.

[0053] Specifically, the master control unit 43 is responsible for processing instruction signals from the control module 30 and controlling the execution of the drive unit 41 according to these signals. The master control unit 43 is installed on the fixed frame 10, which guarantees its stability in the system. At the same time, the master control unit 43 is connected to the wireless communication unit 42 and the drive unit 41 through electrical connection, realizing the transmission of information and the delivery of control instructions. The master control unit 43 is connected to the wireless communication unit 42 through electrical connection, receives instruction signals from the control module 30, and then transmits these instruction signals to the drive unit 41 to control its execution of corresponding actions.

[0054] In a specific embodiment, the sliding door and window system further comprises a power module 50, which is arranged on the fixed frame 10, and the power module 50 is electrically connected to the drive module 40, and is used to provide power for the drive module 40.

[0055] Specifically, the power module 50 is installed on the fixed frame 10 and connected to the drive module 40 through electrical connection to provide the required electrical energy for the drive module 40.

[0056] In a specific embodiment, the sliding door and window system further comprises a locking module 60, which is electrically connected to the drive module 40, and the locking module 60 is arranged on the fixed frame 10 or the movable door and window 20, and the locking module 60 is used to lock the movable door and window 20 and the fixed frame 10.

[0057] Specifically, through electrical connection, the locking module 60 can respond to the instructions of the drive module 40 to realize the automatic locking and unlocking of the fixed frame 10 and the movable door and window 20, improving the convenience and safety of use. The locking module 60 can be installed on the fixed frame 10 or the movable door and window 20, allowing the selection of appropriate installation positions according to specific needs and installation conditions.

[0058] Further, when the master control unit 43 of the drive module 40 receives an opening or closing instruction, the master control unit 43 analyzes the instruction and sends a locking signal to the locking module 60 through the connection line after analyzing the instruction. After receiving the locking signal, the internal locking components of the locking module 60 begin to act. After completing the locking or unlocking action, the locking module 60 usually sends a status feedback signal to the master control unit 43, indicating that the locking operation has been successfully completed, and the movable door and window 20 is now in the locked or unlocked state.

[0059] In summary, when the movable door and window 20 needs to be opened, the panel unit 31 sends an opening signal to the command unit 32. After the command unit 32 receives the opening signal, it sends the opening signal to the wireless communication unit 42, and further sends the opening signal to the main control unit 43. The main control unit 43 controls the locking module 60 to perform the unlocking action, so that the sliding door and window can be opened. At the same time, the main control unit 43 controls the driving unit 41 to start, and the motor starts to work to generate power. The driving unit 41 converts the rotary motion of the motor into the linear motion of the movable door and window 20, so that the movable door and window 20 moves along the track of the fixed frame 10. When the movable door and window 20 reaches the preset opening position, the driving unit 41 sends a stop signal to the main control unit 43. The main control unit 43 controls the rotation to stop, and the driving unit 41 also stops working.

[0060] When the movable door and window 20 needs to be closed, the panel unit 31 sends a closing signal to the command unit 32. After the command unit 32 receives the closing signal, it sends the closing signal to the wireless communication unit 42, and further sends the closing signal to the main control unit 43. After the main control unit 43 receives the closing signal, it controls the driving motion. The driving unit 41 converts the reverse rotary motion of the motor into the reverse linear motion of the movable door and window 20. The driving unit 41 drives the movable door and window 20 to move reversely along the fixed frame 10, and the movable door and window 20 gradually closes until it reaches the completely closed state. When the movable door and window 20 is completely closed, the driving unit 41 sends a stop signal to the main control unit 43. The main control unit 43 controls the rotation to stop, and the driving unit 41 stops working. At the same time, the main control unit 43 controls the locking module 60 to perform the locking action, so that the fixed frame 10 and the movable door and window 20 are locked in the closed state.

[0061] The application provides a sliding door and window 200, which comprises a fixed frame 10 and a movable door and window 20 arranged in the fixed frame 10, and moves along the track direction of the fixed frame 10. The sliding door and window also comprises a control device 210 and a driving device 220.

[0062] The control device 210 is arranged on the fixed frame 10 or the movable door and window 20. The control device 210 comprises a panel assembly 211 and a command assembly 212, and the panel assembly 211 and the command assembly 212 are electrically connected. The driving device 220 is arranged on the fixed frame 10. The driving device 220 comprises a driving assembly 221 and a wireless communication assembly 222, and the driving assembly 221 and the wireless communication assembly 222 are electrically connected. The wireless communication assembly 222 is wirelessly connected to the command assembly 212.

[0063] Specifically, the driving assembly 221 generally includes a motor, a sliding roller, a sliding rod and the like, the movement of the sliding rod and the sliding roller is driven by the rotation of the motor, the sliding rod drives the opening and closing of the movable door and window 20, so that the driving assembly 221 can drive the movable door and window 20 to move along the track direction of the fixed frame 10 according to the instruction of the control device 210. In the control device 210, the panel assembly 211 is responsible for receiving user instructions, processing data and controlling the movement of the door and window, realizing intelligent control. The wireless communication assembly 222 is an infrared sensing assembly, which transmits signals through infrared, and transmits instruction signals to the infrared sensor through the panel assembly 211, and the infrared sensor further transmits the control signal to the driving assembly 221, so that the driving assembly 221 drives the opening and closing of the movable door and window 20 through components including a motor, a sliding roller, a sliding rod and the like.

[0064] Further, when the user transmits an opening or closing command to the panel assembly 211 through touch, key or wireless signal and the like, the panel assembly 211 converts the command signal into an electrical signal, which is wirelessly transmitted to the driving assembly 221 through the infrared sensor, and the driving assembly 221 acts on the movable door and window 20 to achieve the opening or closing state of the movable door and window 20 wirelessly, thereby eliminating the safety hazards of aging and fracture of wires or cables, and improving the safety and reliability of the system.

[0065] In a specific embodiment, the command assembly 212 includes a first signal end 2121, and the wireless communication assembly 222 includes a second signal end 2221, and the second signal end 2221 is oppositely arranged with the first signal end 2121.

[0066] Specifically, the wireless communication assembly 222 includes a second signal end 2221, which is the signal end of the infrared sensor, and the first signal end 2121 in the command assembly 212 is the signal end of the infrared sensor. The first signal end 2121 can send instructions in the form of wireless signals to the second signal end 2221 of the wireless communication assembly 222, and can also receive signals from the second signal end 2221. The second signal end 2221 of the infrared sensor is oppositely arranged with the first signal end 2121 of the command assembly 212, so as to ensure that the signals between the two can be directly and efficiently transmitted. The second signal end 2221 also adopts a wireless communication technology matched with the first signal end 2121, so as to realize stable signal reception.

[0067] In a specific embodiment, the driving device 220 further includes a master control assembly 223, the master control assembly 223 is arranged on the fixed frame 10, and the master control assembly 223 is connected with the driving assembly 221 and the wireless communication assembly 222.

[0068] Specifically, the main control component 223 can be one of a processor or a microcontroller, etc., responsible for receiving instruction signals from the wireless communication component 222, and processing and analyzing these signals, and then issuing control instructions to the drive component 221 according to the processing results, so as to realize accurate control of the movable door and window 20.

[0069] Further, the main control component 223 is installed on the fixed frame 10, and the connection between the main control component 223 and the drive component 221 and the wireless communication component 222 adopts reliable electrical connection technology, ensuring the stability and accuracy of signal transmission.

[0070] In a specific embodiment, the sliding door and window further comprises a power supply component 230, which is arranged on the fixed frame 10, and the power supply component 230 is electrically connected to the drive device 220, wherein the power supply component 230 comprises a switching power supply 231 and a charging component 232, and the switching power supply 231 is electrically connected to the charging component 232.

[0071] Specifically, the switching power supply 231 can provide power for the whole sliding door and window, and is responsible for converting external power into voltage and current suitable for the sliding door and window system, while the charging component 232 charges the devices that need to be charged.

[0072] In a specific embodiment, the sliding door and window further comprises a locking device 240, which is arranged on the fixed frame 10 or the movable door and window 20, and the locking device 240 comprises a first locking position 241 and a second locking position 242, and either the first locking position 241 or the second locking position 242 is arranged on the fixed frame 10, and the other locking position is arranged on the movable door and window 20; wherein the first locking position 241 is a locking hole, and the second locking position 242 is a locking piece.

[0073] Specifically, the locking hole is a key element in the locking device 240, which is usually a hole drilled in the fixed frame 10 or the movable door and window 20, used to receive the locking piece to realize the locking function of the door and window. The shape, size and position of the locking hole will vary according to the specific locking mechanism and design requirements. The locking piece is a component used in conjunction with the locking hole, which is usually a rod-shaped, block-shaped or other shaped object that can be inserted into the locking hole. The locking piece can be rotated, slid or pushed to cooperate with the locking hole to realize the locking and unlocking function of the door and window.

[0074] Therefore, the sliding door and window 200 provided above realizes convenient input of user instructions by arranging the control module 30 on the fixed frame 10 or the movable door and window 20, which comprises the panel unit 31 for receiving user instructions and the command unit 32. Meanwhile, the drive module 40 arranged on the fixed frame 10 comprises the drive unit 41 and the wireless communication unit 42, the drive unit 41 is connected with the command unit 32 in a wireless mode, which breaks the shackles of the traditional wired control system, makes the installation position more flexible, and reduces the debugging and maintenance cost. In addition, the wireless communication mode also avoids the safety hazards such as aging and fracture of the wires or cables, and improves the safety and reliability of the system.

[0075] The above only describes the embodiments of the present application, and it should be pointed out that those skilled in the art can make improvements without departing from the creative concept of the present application, but these all belong to the protection scope of the present application.

Claims

1. A sliding door and window system comprising a fixed frame and a movable door and window provided in said fixed frame, said movable door and window being movable in the direction of the track of said fixed frame, characterized in that, The sliding door and window system comprises: A control module is arranged on the fixed frame or the movable door and window, and comprises a panel unit and a command unit, and the panel unit is electrically connected with the command unit; A driving module is arranged on the fixed frame, and comprises a driving unit and a wireless communication unit, the driving unit is electrically connected with the wireless communication unit, the wireless communication unit is wirelessly connected with the command unit, the panel unit is used for receiving user instructions, and the driving unit drives the opening or closing of the movable door and window when the control module controls the driving unit.

2. A sliding door and window system according to claim 1, characterized in that The wireless communication unit comprises a first signal unit, the command unit comprises a second signal unit, and the second signal unit is arranged opposite to the first signal unit to transmit signals.

3. A sliding door and window system according to claim 1, characterized in that The driving module further comprises a master control unit, which is arranged on the fixed frame, and the master control unit is electrically connected with the wireless communication unit and the driving unit, and is used for processing instruction signals and controlling the driving unit according to the instruction signals.

4. A sliding door and window system according to claim 1, characterized in that The sliding door and window system further comprises a power module, which is arranged on the fixed frame, and is electrically connected with the driving module to provide power for the driving module.

5. A sliding door and window system as claimed in claim 1, wherein The sliding door and window system further comprises a locking module, which is electrically connected with the driving module, and is arranged on the fixed frame or the movable door and window, and is used for locking the movable door and window and the fixed frame.

6. A sliding door window, characterized in that The sliding door and window system comprises: A control device is arranged on the fixed frame or the movable door and window, and comprises a panel assembly and a command assembly, and the panel assembly is electrically connected with the command assembly; A driving device is arranged on the fixed frame, and comprises a driving assembly and a wireless communication assembly, and the driving assembly is electrically connected with the wireless communication assembly, and the wireless communication assembly is wirelessly connected with the command assembly.

7. A sliding door window according to claim 6, characterized in that The command assembly comprises a first signal end, and the wireless communication assembly comprises a second signal end, and the second signal end is arranged opposite to the first signal end.

8. A sliding door window according to claim 6, characterized in that The driving device further comprises a master control assembly, which is arranged on the fixed frame, and is connected with the driving assembly and the wireless communication assembly.

9. A sliding door window according to claim 6, characterized in that The sliding door and window further comprises a power assembly, which is arranged on the fixed frame, and is electrically connected with the driving device, wherein the power assembly comprises a switching power supply and a charging assembly, and the switching power supply is electrically connected with the charging assembly.

10. A sliding door window according to claim 6, characterized in that The sliding door and window further comprises a locking device, which is arranged on the fixed frame or the movable door and window, and comprises a first locking position and a second locking position, and either the first locking position or the second locking position is arranged on the fixed frame, and the other locking position is arranged on the movable door and window; The first locking position is a locking hole, and the second locking position is a locking piece.