Intelligent communication digital gate power supply
The automatic heat dissipation system of the intelligent communication digital gate power supply solves the problem of power supply temperature rise in high-temperature environments, realizes the safe and reliable operation of the gate and continuous heat dissipation, and ensures the normal operation of the equipment and passenger safety.
Patent Information
- Application Number
- CN202520190469.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-07
- Publication Date
- 2026-02-27
- Estimated Expiration
- 2035-02-07
AI Technical Summary
During hot summer weather, the temperature inside the station is high. Failure of the cooling fan or blockage of the ventilation vents can cause the internal temperature of the power supply to rise rapidly, threatening the normal operation of the turnstiles and passenger safety.
A smart communication digital gate power supply was designed, which adopts an automatic flip-up baffle and electric slide rail system, combined with temperature sensor control, to automatically open the heat dissipation vents and use a battery-powered cooling fan for cooling. In case of failure, it switches to battery power to ensure continuous heat dissipation.
Effectively reduces the temperature of power supply equipment in high-temperature environments, ensuring the normal operation of the turnstile and passenger safety, preventing dust from entering the equipment, and ensuring continuous heat dissipation in case of failure to avoid equipment damage caused by excessive temperature.
Smart Images

Figure CN223957826U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to a kind of intelligent communication digitalized gate power supply, in particular to a kind of intelligent communication digitalized gate power supply applied to subway gate field. BACKGROUND
[0002] Gate machine is a kind of passage blocking device (passage management equipment), and its application occasions include application in urban rail transit management. Gate machine is internally installed with power supply equipment to convert the mains connected from outside into stable and small-current equipment for use by mechanical transmission equipment and electrical control equipment inside the gate machine.
[0003] Chinese patent CN217522629U specification discloses a kind of power supply control device for subway gate, including cabinet, the bottom surface in the cabinet is installed with battery pack by support spring, the power transmission end of the battery pack is installed with line nose by spring wire, the outer side of spring wire is installed with slide plate, the slide plate is slidably installed in the cabinet;The side wall of the cabinet is provided with opening slot, the opening slot is slidably installed with frame, the frame is installed with STS static power supply change-over switch and power supply adaptation module inside.The beneficial effect is that: by STS static power supply change-over switch, the power supply switching of mains and battery pack can be carried out, the non-stop work of gate machine is realized, power is large, and efficiency is high;By support spring, battery pack can be safely protected, and by spring wire, the loosening of line nose connection can be avoided, so that the device is more stable in use.
[0004] In high-temperature weather in summer, the temperature in the station itself is relatively high, and if the heat dissipation fan fails, the ventilation opening is blocked, etc., the internal temperature of the power supply may rise rapidly, which poses a threat to the normal operation of the gate machine and passenger safety. SUMMARY
[0005] For the above prior art, the technical problem to be solved by the utility model is that in high-temperature weather in summer, the temperature in the station itself is relatively high, and if the heat dissipation fan fails, the ventilation opening is blocked, etc., the internal temperature of the power supply may rise rapidly, which poses a threat to the normal operation of the gate machine and passenger safety.
[0006] In order to solve the above problems, the utility model provides a kind of intelligent communication digitization gate power supply, including gate, gate side end is excavated with equipment bin, power supply equipment is installed in equipment bin, gate side end is excavated with heat dissipation port, the inner wall of heat dissipation port is fixedly connected with rectangular frame close to equipment bin inner side, rectangular frame top is symmetrically excavated with round hole, rectangular frame is fixedly connected with electric slide rail close to equipment bin inner end, electric slide rail is slidably connected with pull cord by sliding block, and pull cord end away from electric slide rail is extended to heat dissipation port outside through round hole, the bottom wall of heat dissipation port is rotatably connected with baffle by hinge, baffle top end is detachably connected with pull cord, pull cord is surfacely sleeved with multiple annular rings between rectangular frame and baffle, the bottom wall of annular ring is fixedly connected with filter screen, and filter screen one end is detachably connected with rectangular frame section, other end is detachably connected with baffle, electric push rod is embedded in rectangular frame top close to baffle one end, baffle is symmetrically fixedly excavated with heat dissipation hole, heat dissipation fan is fixedly connected in heat dissipation hole, and heat dissipation fan is electrically connected with power supply equipment, filter screen is threadedly connected on heat dissipation hole, battery is embedded in gate and is located at heat dissipation port below, and battery is electrically connected with heat dissipation fan, temperature sensor is fixedly connected in equipment bin.
[0007] In the above-mentioned gate power supply, by automatically turning over the baffle, the heat dissipation port is opened, the equipment bin can be quickly cooled, and when the power supply equipment fails, the battery can be started to supply power to the heat dissipation fan to continue running.
[0008] As a further improvement of the present application, the thickness of the baffle is less than the width of the inner wall of the heat dissipation port located at the outer end of the rectangular frame.
[0009] As a further improvement of the present application, the inner wall of the equipment bin is symmetrically fixedly connected with an L-shaped support frame, and the back of the power supply equipment is fixedly connected with a bottom plate, which is symmetrically fixedly connected with a group of mounting blocks at the upper and lower ends, and the mounting blocks are attached to the cross section of the support frame.
[0010] As a further improvement of the present application, the mounting blocks and the support frame are both provided with corresponding first screw holes, and screws are threadedly connected in the first screw holes.
[0011] As another improvement of the present application, the cross section of the filter screen in contact with the rectangular frame and the baffle is fixedly connected with a first magic tape, and the cross section of the rectangular frame and the baffle is fixedly connected with a second magic tape, and the first magic tape and the second magic tape are adhered.
[0012] As a further improvement of the present application, the baffle is symmetrically provided with a second screw hole close to the heat dissipation port, and the pull cord is rotatably connected with a threaded shaft close to the baffle, and the threaded shaft is threadedly fixed with the second screw hole.
[0013] As a further improvement of the present application, a controller for controlling the electric push rod, the electric slide rail, the power supply equipment and the battery is fixedly connected to the gate, and the temperature sensor is electrically connected with the controller.
[0014] In summary, when the weather is too hot in summer, the temperature sensor transmits a signal to the controller, thereby simultaneously turning on the electric push rod and the electric slide rail, so that the electric slide rail drives the pull rope to move upward to the top end, and the electric push rod extends to push the baffle outward, which is unfolded by rotating and limited by the pull rope. In the process of turning the baffle outward, the filter screen on the pull rope is unfolded by sliding through the circular ring, so as to open the heat dissipation opening cage and prevent dust from entering the equipment compartment and prevent people from putting their hands into it. At this time, unfolding the heat dissipation opening can accelerate the cooling of the equipment compartment. When the temperature decreases, the electric slide rail is driven to move downward to retract the baffle into the heat dissipation opening. If the temperature is too high to cause the power supply equipment to stop running, the controller will automatically disconnect the power supply equipment and the heat dissipation fan connection line, and connect the storage battery and the heat dissipation fan connection line, so that the storage battery supplies power to the heat dissipation fan to continue running and cool the equipment compartment. BRIEF DESCRIPTION OF DRAWINGS
[0015] Figure 1 is a shaft drawing of the gate machine of the first and second embodiments of the present application;
[0016] Figure 2 is a structure diagram of the heat dissipation opening of the first embodiment of the present application;
[0017] Figure 3 is a side view of the heat dissipation opening of the first embodiment of the present application;
[0018] Figure 4 is an enlarged view of A in the first embodiment of the present application; Figure 3
[0019] Figure 5 is a structure diagram of the filter screen of the first and second embodiments of the present application;
[0020] Figure 6 is an installation structure diagram of the power supply equipment of the second embodiment of the present application;
[0021] Figure 7 is a schematic diagram of the power supply equipment and the storage battery system of the first embodiment of the present application.
[0022] Explanation of reference numerals in the drawing:
[0023] 1, gate machine; 2, equipment compartment; 3, power supply equipment; 4, mounting block; 5, heat dissipation opening; 6, baffle; 7, filter screen; 8, heat dissipation fan; 9, pull rope; 10, storage battery; 11, rectangular frame; 12, electric push rod; 13, circular ring; 14, filter screen; 15, electric slide rail; 16, sliding block; 17, support frame; 18, bottom plate; 19, first screw hole; 20, temperature sensor; 21, circular hole. DETAILED DESCRIPTION
[0024] Two embodiments of the present application will be described in detail below with reference to the accompanying drawings.
[0025] The first embodiment is as follows:
[0026] Figures 1-5 And Figure 7 A smart communication digital gate power supply is shown, comprising a gate 1, a device bin 2 is opened on the side end of the gate 1, a power supply device 3 is installed in the device bin 2, a heat dissipation port 5 is opened on the side end of the gate 1, a rectangular frame 11 is fixedly connected to the inner wall of the heat dissipation port 5 close to one side in the device bin 2, a circular hole 21 is symmetrically opened on the top of the rectangular frame 11, an electric sliding rail 15 is fixedly connected to the end of the rectangular frame 11 close to the device bin 2, a pull rope 9 is slidably connected to the electric sliding rail 15 through a sliding block 16, and the pull rope 9 extends to the outside of the heat dissipation port 5 through the circular hole 21 away from the end of the electric sliding rail 15. A baffle 6 is rotatably connected to the bottom wall of the heat dissipation port 5 through a hinge, and the top end of the baffle 6 is detachably connected to the pull rope 9. A plurality of circular rings 13 are sleeved on the surface of the pull rope 9 between the rectangular frame 11 and the baffle 6, a filter screen 14 is fixedly connected to the bottom wall of the circular ring 13, and one end of the filter screen 14 is detachably connected to the cross section of the rectangular frame 11, and the other end is detachably connected to the baffle 6. An electric push rod 12 is embedded in the top of the rectangular frame 11 close to the end of the baffle 6. Symmetrically, a plurality of heat dissipation holes are opened on the baffle 6, and a heat dissipation fan 8 is fixedly connected to the heat dissipation hole. The heat dissipation fan 8 is electrically connected to the power supply device 3, and a filter screen 7 is threadedly connected to the heat dissipation hole. A storage battery 10 is embedded in the gate 1 below the heat dissipation port 5, and the storage battery 10 is electrically connected to the heat dissipation fan 8. A temperature sensor 20 is fixedly connected in the device bin 2.
[0027] The thickness of the baffle 6 is less than the width of the inner wall of the heat dissipation port 5 located outside the end of the rectangular frame 11. A controller for controlling the electric push rod 12, the electric sliding rail 15, the power supply device 3 and the storage battery 10 is fixedly connected to the gate 1, and the temperature sensor 20 is electrically connected to the controller.
[0028] Working principle: when the weather is too hot in summer, the temperature sensor 20 will send a signal to the controller, so as to start the electric push rod 12 and the electric sliding rail 15 at the same time, so that the electric sliding rail 15 drives the pull rope 9 to move upward to the top end, and the electric push rod 12 extends to open the baffle 6 outward, which is unfolded by rotating and limited by the pull rope 9. In the process of turning the baffle 6 outward, the filter screen 14 on the pull rope 9 is slid to unfold through the circular ring 13, so as to cover the opened heat dissipation opening 5, avoid dust entering the equipment warehouse 2, and also prevent people from putting their hands into it. At this time, unfolding the heat dissipation opening 5 can accelerate the cooling of the equipment warehouse 2, and when the temperature decreases, the electric sliding rail 15 can be started to drive the pull rope 9 to move downward, so as to retract the baffle 6 into the heat dissipation opening 5. If the temperature is too high to cause the power supply equipment 3 to stop running, the controller will automatically disconnect the power supply equipment 3 and the heat dissipation fan 8 connection line, open the storage battery 10 and the heat dissipation fan 8 connection line, so that the storage battery 10 supplies power to the heat dissipation fan 8 to continue running to cool the equipment warehouse 2.
[0029] By automatically turning the baffle 6, the heat dissipation opening 5 is opened, which can quickly cool the equipment warehouse 2, and when the power supply equipment 3 fails, the storage battery 10 can supply power to the heat dissipation fan 8 to continue running.
[0030] Second embodiment:
[0031] Figure 1 And Figures 5-6 The inner wall of the equipment warehouse 2 is fixedly connected with an L-shaped support frame 17, the back of the power supply equipment 3 is fixedly connected with a bottom plate 18, a group of mounting blocks 4 are symmetrically fixedly connected to the upper and lower ends of the bottom plate 18, the mounting blocks 4 are in contact with the support frame 17, the mounting blocks 4 and the support frame 17 are provided with corresponding first screw holes 19, and screws are screwed into the first screw holes 19. The cross sections of the filter screen 14, the rectangular frame 11 and the baffle 6 are fixedly connected with first magic tapes, the cross sections of the rectangular frame 11 and the baffle 6 are fixedly connected with second magic tapes at corresponding positions, the first magic tapes and the second magic tapes are adhered to each other, the baffle 6 is symmetrically provided with second screw holes at one end close to the heat dissipation opening 5, and the pull rope 9 is rotatably connected with a threaded shaft at one end close to the baffle 6.
[0032] Working principle: when the power supply equipment 3 fails, the equipment warehouse 2 can be opened, the screws can be unscrewed to disassemble the bottom plate 18 and the power supply equipment 3 above it, and the whole can be taken out from the equipment warehouse 2 for convenient maintenance. After maintenance, it can be conveniently installed and reset, so that the power supply equipment 3 is in a suspended state in the equipment warehouse 2, the wind brought by the heat dissipation fan 8 cannot fully contact the power supply equipment 3, resulting in slow heat dissipation, and the baffle 6 is opened regularly, the pull rope 9 is disassembled from the second screw hole, the filter screen 14 is first torn off from the magic tape, and then taken off from the pull rope 9 for cleaning.
[0033] Through the integral detachable installation of the power supply device 3, the maintenance is facilitated, and the filter screen 14 is designed to be detachable, so that the cleaning is facilitated.
[0034] In combination with the current actual demand, the above-mentioned embodiments adopted by the application are not limited to this, various changes made within the knowledge range of the skilled in the art without departing from the concept of the application still fall within the protection range of the application.
Claims
1. An intelligent communication digitized gate power supply, comprising a gate (1), characterized in that: The side end of the gate machine (1) is excavated with a device bin (2), the device bin (2) is internally installed with a power supply device (3), the side end of the gate machine (1) is excavated with a heat dissipation port (5), the inner wall of the heat dissipation port (5) is fixedly connected with a rectangular frame (11) near one side in the device bin (2), the top of the rectangular frame (11) is symmetrically excavated with a circular hole (21), the rectangular frame (11) is fixedly connected with an electric sliding rail (15) near one end in the device bin (2), the electric sliding rail (15) is slidably connected with a pull rope (9) through a sliding block (16), and the pull rope (9) extends to outside the heat dissipation port (5) through the circular hole (21) away from one end of the electric sliding rail (15), the bottom wall of the heat dissipation port (5) is rotatably connected with a baffle (6) through a hinge, the top end of the baffle (6) is detachably connected with the pull rope (9), a plurality of circular rings (13) are sleeved on the surface of the pull rope (9) between the rectangular frame (11) and the baffle (6), the bottom wall of the circular ring (13) is fixedly connected with a filter screen (14), one end of the filter screen (14) is detachably connected with the rectangular frame (11), and the other end is detachably connected with the baffle (6), an electric push rod (12) is embedded in the top of the rectangular frame (11) near one end of the baffle (6), the baffle (6) is symmetrically fixedly excavated with a heat dissipation hole, a heat dissipation fan (8) is fixedly connected in the heat dissipation hole, and the heat dissipation fan (8) is electrically connected with the power supply device (3), a filter screen (7) is threadedly connected on the heat dissipation hole, a storage battery (10) is embedded in the gate machine (1) below the heat dissipation port (5), and the storage battery (10) is electrically connected with the heat dissipation fan (8), and a temperature sensor (20) is fixedly connected in the device bin (2).
2. The power supply of claim 1, wherein: the power supply is a smart communication digitized gate power supply. The thickness of the baffle (6) is less than the width of the inner wall of the heat dissipation port (5) located outside one end of the rectangular frame (11).
3. The intelligent communication digital gate power supply according to claim 1, characterized in that: The inner wall of the device bin (2) is fixedly connected with L-shaped support frames (17) symmetrically, the back of the power supply device (3) is fixedly connected with a bottom plate (18), a group of mounting blocks (4) are fixedly connected on the bottom plate (18) symmetrically, and the mounting blocks (4) are attached to the cross section of the support frames (17).
4. The power supply of claim 3, wherein: the power supply is a smart communication digital gate power supply. The mounting blocks (4) and the support frames (17) are both provided with corresponding first screw holes (19), and screws are threadedly connected in the first screw holes (19).
5. The intelligent communication digital gate power supply according to claim 1, characterized in that: The cross sections of the filter screen (14), the rectangular frame (11) and the baffle (6) in contact are all fixedly connected with first magic tapes, and the cross sections of the rectangular frame (11) and the baffle (6) are all fixedly connected with second magic tapes corresponding to the first magic tapes, and the first magic tapes and the second magic tapes are adhered.
6. The power supply of claim 1, wherein: the power supply is a smart communication digital gate power supply. The baffle (6) is symmetrically provided with second screw holes near one end of the heat dissipation port (5), the pull rope (9) is rotatably connected with a threaded shaft near one end of the baffle (6), and the threaded shaft is threadedly fixed with the second screw holes.
7. The power supply of claim 1, wherein: the power supply is a smart communication digital gate power supply. A controller for controlling the electric push rod (12), the electric sliding rail (15), the power supply device (3) and the storage battery (10) is fixedly connected on the gate machine (1), and the temperature sensor (20) is electrically connected with the controller.
Citation Information
Patent Citations
Power supply control device for subway turnstile
CN217522629U