Multifunctional oled transparent display automatic double door based on visitor statistics
By using the connection mechanism of the plug rod and linkage tube, as well as the backup power module, the problem of the automatic double door being unable to open during a power outage is solved, enabling rapid opening and normal power supply in the event of a power outage, thus ensuring the convenient use of the door.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- GUANGZHOUSHI YANGCHENG ELECTRONIC CO LTD
- Filing Date
- 2023-12-22
- Publication Date
- 2026-04-28
AI Technical Summary
The existing automatic double door's drive structure malfunctions during power outages, preventing the door from opening promptly and affecting personnel entry and exit.
The system employs a connection mechanism consisting of a plug rod and a linkage tube. The plug rod protrudes from the top of the sliding door, facilitating manual disconnection from the drive mechanism. It is also equipped with a power module as a backup power source to ensure continued power supply during power outages.
In the event of a power outage, the sliding door can be quickly opened by manually disconnecting the connecting mechanism, solving the problem of the door not being able to open in time, and the impact of the power outage can be mitigated by the backup power module.
Smart Images

Figure CN117661971B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of automatic doors, and in particular to an automatic double door based on a multifunctional OLED transparent display for visitor statistics. Background Technology
[0002] At the entrances of some shopping malls or companies, there are automatic double doors. The door structures used in these places are mostly transparent panels to facilitate viewing and observation of the inside and outside of the company. In some places, in order to enhance publicity, additional functions are designed into the door structure, such as counting visitors and playing advertisements or slogans through OLED screens. Such doors are all designed based on automatic double doors, and the addition of various functions makes the use of the door more diversified.
[0003] The aforementioned automatic double doors with visitor statistics and OLED display functions are built around the automatic double door as the main body. The drive structure of this type of door is mostly driven by hinges and sprockets. In this connection method, the connection ends of the door and the drive mechanism are embedded in the door frame structure. This connection method makes it very inconvenient to disconnect the entire door. Moreover, automatic double doors are all electrically controlled and driven. Therefore, if there is a power outage, the drive structure will not work properly, and the door will not be able to open. This causes problems for people to enter and exit. The connection method of existing traditional door mechanisms makes the connection and disassembly process between the drive mechanism and the door inconvenient. This results in the door not opening in time after a power outage, which will be very troublesome in case of emergencies. Summary of the Invention
[0004] The purpose of this invention is to provide an automatic double door based on a multifunctional OLED transparent display for visitor statistics, so as to solve the problems mentioned in the background art.
[0005] To achieve the above objectives, the present invention provides the following technical solution: an automatic double door based on a multifunctional OLED transparent display for visitor statistics, comprising:
[0006] A door frame panel, wherein an opening is provided in the middle of the door frame panel, and two movable doors are slidably connected in the opening. An infrared counter is provided in the middle of the door frame panel, near the front.
[0007] The top of the door frame panel is provided with a drive cavity, and a drive mechanism is provided in the drive cavity. The drive mechanism includes a servo motor, a first actuating tooth plate and a second actuating tooth plate. Two linkage tubes are fixedly connected to the bottom ends of the first actuating tooth plate and the bottom ends of the second actuating tooth plate.
[0008] Both of the sliding doors are provided with a connecting mechanism at their tops. The connecting mechanism includes two plug rods, the tops of which are slidably connected to the bottoms of two linkage tubes respectively. A connecting plate is fixedly connected between the outer walls of the middle of the two plug rods.
[0009] Preferably, an inductive switch is provided on the inner wall of the top of the opening. The output end of the inductive switch is electrically connected to the control end of the servo motor. The output end of the servo motor is fitted with a toggle tooth plate. The outer wall of the toggle tooth plate meshes with the tooth sides of the first toggle tooth plate and the second toggle tooth plate, respectively.
[0010] Preferably, the inner walls on both sides of the bottom of the opening are provided with slide rails, the bottoms of the two sliding doors are respectively slidably inserted into the two slide rails, the inner walls on both sides of the top of the opening are provided with sliding grooves, the tops of the two sliding doors are respectively slidably inserted into the two sliding grooves, and the two linkage pipes are respectively slidably inserted into the two sliding grooves.
[0011] Preferably, the inner walls on both sides of the bottom of the linkage tube are provided with placement grooves, and extrusion protrusions are slidably connected in both placement grooves. Two extrusion grooves are symmetrically opened on both sides of the top of the plug rod, and the opposite sides of the two extrusion protrusions are slidably connected to the two extrusion grooves respectively.
[0012] Preferably, the inner walls of the top and bottom of the placement groove are provided with extrusion grooves, and extrusion springs are provided in both extrusion grooves. Extrusion sliders are fixedly connected to the top and bottom of the extrusion protrusion, and the two extrusion sliders are slidably inserted into the two extrusion grooves respectively.
[0013] Preferably, an OLED transparent display screen is provided in the middle of the sliding door, and two control slots are provided at the top of the sliding door. The two plug rods are slidably inserted into the two control slots respectively, and a connecting slot is provided between the two control slots. The connecting plate is slidably inserted into the connecting slot.
[0014] Preferably, the inner walls on both sides of the control channel are provided with limiting grooves, and each of the two limiting grooves is provided with a top support spring. Both sides of the middle part of the plug rod are fixedly connected with limiting sliders, and the two limiting sliders are slidably interlocked with the two limiting grooves respectively.
[0015] A multifunctional OLED transparent display automatic double door system based on visitor statistics, the system comprising:
[0016] Door frame, which is used for the installation of the entire door control system;
[0017] Two transparent doors are slidably installed at both ends of the door frame, and a display module is installed in the middle of each of the two transparent doors for displaying images via network connection;
[0018] A drive module is provided to drive two transparent doors to open and close. The output end of the drive module is provided with two sets of connection units, which are respectively used to connect the two sets of transparent doors.
[0019] A counting module, which is used to automatically count visitors;
[0020] The induction control module has its output terminal electrically connected to the control terminal of the drive module, and is used to control the drive module.
[0021] The power module has its output terminal electrically connected to the power terminals of the sensing control module, the driving module, and the two sets of display modules.
[0022] Preferably, the sensing control module operates through an infrared light sensing control drive module. When the sensing control module is triggered, the control drive module controls the two transparent doors to move away from each other. When the sensing control module is not triggered within a 3-5 second time interval, the drive module controls the two transparent doors to move towards each other.
[0023] Preferably, the power module serves as a backup power source for the entire system. When the external power supply to the system stops, the power module starts up and supplies power to the sensing control module, the drive module, and the two sets of display modules.
[0024] The technical effects and advantages of this invention are as follows:
[0025] (1) The drive mechanism and the moving door of the automatic double door of the present invention are connected by a connecting mechanism. The connecting mechanism is connected by a plug-in rod and a linkage tube. The bottom of the plug-in rod is exposed on the top of the moving door. This makes it easy to disconnect the connection between the moving door and the drive mechanism by the exposed end of the plug-in rod. When the system is powered off, the connection between the moving door and the drive mechanism can be quickly disconnected by pulling, so that the moving door can be opened manually. This allows for timely door opening in case of emergencies.
[0026] (2) The automatic double door system of the present invention is equipped with a power module, which serves as a backup power source for the entire door structure. When the external power supply to the system stops, the power module can assist in power supply operation, thus alleviating the problem of the door being unable to open due to sudden power outages. Attached Figure Description
[0027] Figure 1 This is a schematic diagram of the overall structure of the double door of the present invention.
[0028] Figure 2 This is a schematic plan view of the overall structure of the double door of the present invention.
[0029] Figure 3 This is a cross-sectional view of the overall structure of the double door of the present invention.
[0030] Figure 4 For the present invention Figure 3 A magnified schematic diagram of the structure at point A in the middle.
[0031] Figure 5 This is a schematic diagram of the structural connection of the drive mechanism of the present invention.
[0032] Figure 6 This is a schematic diagram of the connection mechanism of the present invention.
[0033] Figure 7 This is a schematic diagram showing the modular breakdown of the double-door system of the present invention.
[0034] In the diagram: 1. Door frame panel; 101. Slide rail; 2. Infrared counter; 3. Sensor switch; 4. Sliding door; 401. OLED transparent display screen; 5. Servo motor; 501. First actuating toothed plate; 502. Second actuating toothed plate; 503. Actuating toothed disc; 6. Linkage tube; 601. Extrusion protrusion; 602. Extrusion slider; 603. Extrusion spring; 7. Connecting rod; 701. Restricting slider; 702. Top support spring; 703. Connecting plate; 704. Extrusion groove. Detailed Implementation
[0035] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.
[0036] Example 1: The present invention provides as follows Figure 1-6 The illustrated automatic double door based on a multi-functional OLED transparent display for visitor statistics includes:
[0037] The door frame panel 1 has an opening in the middle, through which two movable doors 4 are slidably connected. An infrared counter 2 is located in the middle of the door frame panel 1, near the front.
[0038] Infrared counter 2 is an existing technology product. In this solution, the HX-HE2 model of two-way passenger flow statistics and analysis equipment is used to count passenger flow by setting up infrared light sensors at both the entrance and exit.
[0039] The top of the door frame plate 1 is provided with a drive cavity, and a drive mechanism is provided in the drive cavity. The drive mechanism includes a servo motor 5, a first actuating tooth plate 501 and a second actuating tooth plate 502. Two linkage tubes 6 are fixedly connected to the bottom end of the first actuating tooth plate 501 and the bottom end of the second actuating tooth plate 502.
[0040] An induction switch 3 is provided on the inner wall of the top of the opening. The output end of the induction switch 3 is electrically connected to the control end of the servo motor 5. The output end of the servo motor 5 is fitted with a toggle tooth disk 503. The outer wall of the toggle tooth disk 503 meshes with the tooth sides of the first toggle tooth plate 501 and the second toggle tooth plate 502 respectively.
[0041] The top of each of the two sliding doors 4 is provided with a connecting mechanism, which includes two plug rods 7. The top of the two plug rods 7 is slidably inserted into the bottom of two linkage tubes 6 respectively. A connecting plate 703 is fixedly connected between the outer walls of the middle part of the two plug rods 7.
[0042] like Figure 6 The diagram shows a set of connecting mechanisms. The use of two plug rods 7 allows the connecting mechanisms to be operated and controlled from both the inside and outside of the sliding door 4, based on the door's design. This means that the connection can be made from both the inside and outside of the sliding door 4. The two plug rods 7 are connected by a connecting plate 703, allowing the operation of the connecting mechanisms to be performed by controlling either plug rod 7.
[0043] The inner walls on both sides of the bottom of the opening are provided with slide rails 101. The bottoms of the two sliding doors 4 are slidably connected to the two slide rails 101. The inner walls on both sides of the top of the opening are provided with sliding grooves. The tops of the two sliding doors 4 are slidably connected to the two sliding grooves. The two linkage pipes 6 are slidably connected to the two sliding grooves.
[0044] The inner walls on both sides of the bottom of the linkage tube 6 are provided with placement grooves, and extrusion protrusions 601 are slidably inserted into the two placement grooves. Two extrusion grooves 704 are symmetrically opened on both sides of the top of the plug rod 7. The two extrusion protrusions 601 are slidably inserted into the two extrusion grooves 704 on opposite sides respectively.
[0045] The inner walls of the top and bottom of the placement groove are provided with extrusion grooves. Extrusion springs 603 are provided in both extrusion grooves. Extrusion sliders 602 are fixedly connected to the top and bottom of the extrusion protrusions 601. The two extrusion sliders 602 are slidably inserted into the two extrusion grooves respectively.
[0046] An OLED transparent display screen 401 is provided in the middle of the sliding door 4. Two control slots are opened at the top of the sliding door 4. Two plug rods 7 are slidably inserted into the two control slots respectively. A connecting slot is opened between the two control slots. A connecting plate 703 is slidably inserted into the connecting slot.
[0047] In order to enable this type of connection mechanism to operate, a corresponding control slot and a connection slot are provided at the setting mechanism of the sliding door 4, so as to facilitate the synchronous operation control of the two plug rods 7.
[0048] The inner walls on both sides of the control channel are provided with limiting grooves, and each limiting groove is provided with a top support spring 702. Both sides of the middle part of the plug rod 7 are fixedly connected with limiting sliders 701, and the two limiting sliders 701 are slidably inserted into the two limiting grooves respectively.
[0049] Working principle of this invention: When the entire door system loses power, the drive mechanism cannot open the sliding door 4;
[0050] At this time, two people or one person need to hold the end of the plug rod 7 that is exposed at the bottom and pull it down. During the pulling process, the plug rod 7 drives the connecting plate 703 to move down synchronously. At the same time, the limiting slider 701 moves down synchronously with the plug rod 7. During the downward movement of the limiting slider 701, the top support spring 702 inside the limiting groove will be squeezed and the top support spring 702 will be compressed.
[0051] As the plug rod 7 is continuously pulled down, it will slide out from the bottom of the linkage tube 6, thus disconnecting the sliding door 4 from the drive mechanism through the disconnection of the connecting mechanism. At this time, the sliding door 4 can be manually pulled open.
[0052] When power transmission begins and connection is required, first pull the sliding door 4 to slide it. This allows the top of the exposed plug rod 7 to slide within the sliding groove. When it reaches the outer wall of the linkage pipe 6, it will be blocked. Then, pull the bottom of the plug rod 7 downwards as described above until the top of the plug rod 7 is retracted into the control channel. Then, slightly move the entire sliding door 4 to align the plug rod 7 with the vertical center of the linkage pipe 6. At this point, release the pull on the plug rod 7. Under the restoring force of the top support spring 702, the plug rod 7 moves upwards and slides into the bottom of the linkage pipe 6, completing the connection with the linkage pipe 6.
[0053] Example 2: The present invention provides as follows Figure 7 The system shown is an automatic double-door system based on a multi-functional OLED transparent display for visitor statistics. The system includes:
[0054] The door frame is used for the installation of the entire door control system; the door frame is designed according to the size of the transparent door, and its width is set to be more than four times the width of the transparent door.
[0055] Two transparent doors are slidably installed at both ends of the door frame, and a display module is installed in the middle of each transparent door for displaying images via network connection;
[0056] The display module inside the transparent door is displayed using a transparent OLED screen.
[0057] The drive module is used to drive the two transparent doors to open and close. The output of the drive module is equipped with two sets of connection units, which are used to connect the two sets of transparent doors respectively. The connection units are manually connected and controlled, which facilitates the connection and operation between the drive module and the transparent doors.
[0058] The counting module is used for automatic visitor statistics.
[0059] The output terminal of the sensing control module is electrically connected to the control terminal of the drive module, and is used to control the drive module;
[0060] The sensing control module operates through infrared light sensing to control the drive module. When the sensing control module is triggered, the drive module controls the two transparent doors to move away from each other. When the sensing control module is not triggered within a 3-5 second time interval, the drive module controls the two transparent doors to move towards each other.
[0061] The power module's output terminal is electrically connected to the power terminals of the sensing control module, the drive module, and the two sets of display modules, respectively.
[0062] The power module serves as a backup power source for the entire system. When the external power supply to the system stops, the power module starts up and provides power to the sensing control module, the drive module, and the two display modules.
[0063] Finally, it should be noted that the above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. Although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present invention should be included within the protection scope of the present invention.
Claims
1. A multi-functional OLED transparent display automatic double door based on visitor statistics, comprising: A door frame panel (1) has an opening in the middle, and two movable doors (4) are slidably connected in the opening. An infrared counter (2) is provided in the middle of the door frame panel (1) and near the front. The door frame plate (1) is characterized in that a drive cavity is provided at the top, and a drive mechanism is provided in the drive cavity. The drive mechanism includes a servo motor (5), a first actuating tooth plate (501) and a second actuating tooth plate (502). Two linkage tubes (6) are fixedly connected to the bottom end of the first actuating tooth plate (501) and the bottom end of the second actuating tooth plate (502). The top of each of the two movable doors (4) is provided with a connecting mechanism, which includes two plug rods (7). The top of the two plug rods (7) is slidably inserted into the bottom of two linkage tubes (6) respectively. A connecting plate (703) is fixedly connected between the outer walls of the middle part of the two plug rods (7). An induction switch (3) is provided on the inner wall of the top of the opening. The output end of the induction switch (3) is electrically connected to the control end of the servo motor (5). The output end of the servo motor (5) is fitted with a toggle toothed plate (503). The outer wall of the toggle toothed plate (503) meshes with the tooth sides of the first toggle toothed plate (501) and the second toggle toothed plate (502). The inner walls on both sides of the bottom of the opening are provided with slide rails (101), and the bottoms of the two movable doors (4) are slidably inserted into the two slide rails (101). The inner walls on both sides of the top of the opening are provided with movable grooves, and the tops of the two movable doors (4) are slidably inserted into the two movable grooves. The two linkage pipes (6) are slidably inserted into the two movable grooves. The inner walls on both sides of the bottom of the linkage tube (6) are provided with placement grooves, and extrusion protrusions (601) are slidably inserted into the two placement grooves. Two extrusion grooves (704) are symmetrically opened on both sides of the top of the plug rod (7). The two extrusion protrusions (601) are slidably inserted into the two extrusion grooves (704) on opposite sides respectively.
2. The automatic double door based on a multifunctional OLED transparent display for visitor statistics as described in claim 1, characterized in that, The inner walls of the top and bottom of the placement groove are provided with extrusion grooves, and extrusion springs (603) are provided in both extrusion grooves. Extrusion sliders (602) are fixedly connected to the top and bottom of the extrusion protrusion (601), and the two extrusion sliders (602) are slidably inserted into the two extrusion grooves respectively.
3. The automatic double door based on a multifunctional OLED transparent display for visitor statistics as described in claim 1, characterized in that, An OLED transparent display screen (401) is provided in the middle of the movable door (4). Two control slots are provided at the top of the movable door (4). Two plug-in rods (7) are slidably inserted into the two control slots respectively. A connecting slot is provided between the two control slots. The connecting plate (703) is slidably inserted into the connecting slot.
4. The automatic double door based on a multifunctional OLED transparent display for visitor statistics as described in claim 3, characterized in that, The inner walls on both sides of the control channel are provided with limiting grooves, and each of the two limiting grooves is provided with a top support spring (702). The two sides of the middle part of the plug rod (7) are fixedly connected with limiting sliders (701), and the two limiting sliders (701) are slidably interlocked with the two limiting grooves respectively.
Citation Information
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