Operation and maintenance protection device for communication private network universal server

By designing hollow base and partition partition structures in induction routers, combined with semiconductor refrigeration sheets and induction mechanisms, efficient heat dissipation and moisture-proofing are achieved, solving the problems of poor heat dissipation and moisture-proof defects in existing equipment, and improving the reliability and service life of the equipment.

CN120151683APending Publication Date: 2025-06-13NANJING RUIKONDA TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202510372840.9
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-03-27
Publication Date
2025-06-13

AI Technical Summary

Technical Problem

Due to poor heat dissipation and moisture-proof defects, existing induction routers have accumulated internal heat and condensed moisture in humid environments, affecting the reliability and service life of the equipment.

Method used

A general server operation and maintenance protection device for communication networks is designed, adopting a hollow base and partition structure, combining semiconductor refrigeration sheets, metal sheets and induction mechanisms, and adjusting the intake and exhaust gas through the PLC controller to achieve efficient cooling and moisture protection.

Benefits of technology

It effectively improves the heat dissipation ability and moisture-proof effect of induction routers, extends the service life of the equipment, and enhances its reliability and stability in high humidity environments.

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Abstract

The invention belongs to the technical field of wireless network equipment, and particularly relates to a communication private network universal server operation and maintenance protection device, which comprises an induction type router main body, the bottom end of the induction type router main body is connected with a hollow base, the upper surface of the hollow base is fixedly connected with a fixing mechanism for limiting the induction type router main body, and the upper surface of the hollow base is fixedly connected with a power supply. The inner wall of the hollow base is fixedly connected with a first partition plate and a second partition plate. The operation and maintenance protection device for the communication private network universal server has efficient cooling and damp-proof functions, the cooling degree can be automatically adjusted according to the heating condition, the safety protection effect of the device can be improved, the use stability and effect of the induction type router body can be guaranteed, and the service life of the induction type router body is prolonged. And meanwhile, the construction safety and the service life of the induction type router are ensured, and the device also has an adjusting function, so that the device can adapt to the use requirements of induction type routers of different specifications, and the use convenience of the device is improved.
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Description

Technical Field

[0001] The present invention belongs to the technical field of wireless network equipment, and in particular relates to an operation and maintenance protection device for a general server in a communication private network. Background Art

[0002] The induction router is a new type of network device. In addition to the basic network connection and data transmission functions of traditional routers, it also integrates induction technology. This router can automatically identify and connect to nearby authorized devices through induction modules, such as radio frequency identification (RFID) induction, near field communication (NFC) induction or wireless induction technology in a specific frequency band. For example, when an NFC-enabled smartphone is close to the induction router, the pairing connection can be automatically completed. From the application scenario point of view, in a smart home environment, the induction router can quickly connect to smart home appliances and realize interconnection between devices. In addition, the induction router needs to be equipped with safety protection devices during use to ensure the reliable use of the induction router. For example, the patent authorization announcement number is CN113067777B, which discloses a general server operation and maintenance protection device for a communication private network.

[0003] The existing communication network general server operation and maintenance protection device has the following problems during use: First, the existing induction router has a compact structure and a small internal space. If a drive motor and a heat dissipation blade are installed in it to realize the heat dissipation function, the heat dissipation blade can only be designed to be smaller due to space limitations. However, the smaller heat dissipation blade cannot efficiently drive the air circulation inside the induction router when rotating, which greatly reduces the heat dissipation effect and reduces the reliability. In addition, poor heat dissipation can easily lead to heat accumulation inside the induction router, thereby affecting the smoothness of the operation of the entire system, and having an adverse effect on the reliability and service life of the induction router. Second, in the high humidity environment of "return of south wind", the existing induction routers have moisture-proof defects, so that the air inside the induction router still contains a large amount of moisture. Especially at night when the temperature is low, the moisture in the air inside the induction router will condense into water droplets and drip onto the circuit board. These water droplets can not only easily damage the electronic components on the circuit board of the induction router, but may also cause the circuit board to short-circuit or even cause a fire, which has a serious negative impact on the safety of use and service life of the induction router.

[0004] To this end, we propose a communication private network general server operation and maintenance protection device to solve the above problems. Summary of the invention

[0005] The purpose of the present invention is to provide a communication private network universal server operation and maintenance protection device in view of the above-mentioned problems.

[0006] To achieve the above object, the present invention adopts the following technical solutions: A general server operation and maintenance protection device for a private communication network, including an inductive router body, a hollow base is connected to the bottom end of the inductive router body, and a fixing mechanism for limiting the inductive router body is fixedly connected to the upper surface of the hollow base; A first partition and a second partition are fixedly connected to the inner wall of the hollow base, and the first partition and the second partition divide the inner cavity of the hollow base into an air inlet area, a cooling and dehumidifying area, and a communication area; A through hole is provided on the side wall of the second partition, and a three-way reversing solenoid valve is fixedly connected to the hole wall of the through hole. The air inlet end of the three-way reversing solenoid valve is fixedly connected to an air inlet mechanism; An L-shaped metal cover is fixedly sleeved on the outer wall of the three-way reversing solenoid valve. The top end of the L-shaped metal cover is fixedly connected to the inner wall of the hollow base, and the side end of the L-shaped metal cover is fixedly connected to the outer wall of the second partition. The bottom air outlet end of the three-way reversing solenoid valve passes through the outer wall of the L-shaped metal cover. An exhaust hole is provided on the side end of the L-shaped metal cover, and a plurality of rectangular through holes are provided on the bottom end of the L-shaped metal cover. A plurality of metal sheets are fixedly embedded in the hole walls of the rectangular through holes. A plurality of semiconductor refrigeration sheets are fixedly embedded in the bottom end of the hollow base. The refrigerating sides of the plurality of semiconductor refrigeration sheets are in contact with the bottom ends of the plurality of metal sheets together. A conveying pipe is fixedly embedded in the side end of the first partition. A PLC controller is fixedly connected to the outer wall of the first partition. A water storage mechanism is fixedly communicated with the lower surface of the hollow base in the cooling and dehumidifying area.

[0007] In the above-mentioned general server operation and maintenance protection device for a private communication network, the fixing mechanism includes a first L-shaped frame and an adjusting frame fixedly connected to the outer wall of the top end of the hollow base. A second L-shaped frame is movably sleeved on the outer wall of the adjusting frame. A rectangular through hole matching the adjusting frame is provided on the outer wall of the second L-shaped frame, and an anti-slip rubber block is fixedly connected to the hole wall of the rectangular through hole. An induction mechanism is fixedly embedded in the outer wall of the second L-shaped frame. Limiting components are fixedly connected to the top ends of the first L-shaped frame and the second L-shaped frame. A connecting air hood is fixedly connected to the inner wall of the first L-shaped frame. The air inlet end of the connecting air hood passes through the top end of the hollow base and is fixedly connected to the top end of the conveying pipe.

[0008] In the above-mentioned general server operation and maintenance protection device for a private communication network, the limiting component includes an L-shaped strip. A square hole is provided at the top end of the L-shaped strip, and a pressing rod is movably connected to the hole wall of the square hole. A rubber cover is fixedly sleeved at the bottom end of the pressing rod. A spring is movably sleeved at the bottom end of the pressing rod. The two ends of the spring are fixedly connected to the surfaces of the L-shaped strip and the rubber cover respectively.

[0009] In the above-mentioned maintenance and protection device for a general-purpose server of a communication private network, a plurality of heat exchange through holes are provided on both the top outer wall and the bottom outer wall of the metal sheet.

[0010] In the above-mentioned maintenance and protection device for a general-purpose server of a communication private network, the induction mechanism includes a humidity sensor fixedly connected to the outer wall of the second L-shaped frame. An installation hole is provided on the outer wall of the second L-shaped frame, and a hollow cover is fixedly connected to the hole wall of the installation hole. A temperature sensor is fixedly embedded at the bottom end of the hollow cover. A through hole is provided on the side end of the hollow cover, and an air suction fan is fixedly connected to the hole wall of the through hole. A plurality of air guide hard pipes are fixedly embedded at one end of the hollow cover away from the air suction fan. The air outlet end of the air guide hard pipe is located above the temperature sensor. The air inlet end of the air guide hard pipe is fixedly communicated with an air inlet hose, and a double-sided adhesive sleeve is fixedly sleeved on the air inlet end of the air inlet hose.

[0011] In the above-mentioned maintenance and protection device for a general-purpose server of a communication private network, the air inlet mechanism includes an air guide pipe fixedly communicated with the air inlet end of a three-way reversing solenoid valve. The air inlet end of the air guide pipe is fixedly communicated with a micro air pump. The bottom end of the micro air pump is fixedly connected to the inner wall of the hollow base. The air inlet end of the micro air pump passes through the outer wall of the hollow base. An annular groove is provided on the outer wall of the hollow base, and a filter mesh cover is inserted into the groove wall of the annular groove.

[0012] In the above-mentioned maintenance and protection device for a general-purpose server of a communication private network, the water storage mechanism includes a threaded ring fixedly communicated with the bottom end of the hollow base. A connecting screw ring is threadedly connected to the inner wall of the threaded ring, and a water receiving tank is fixedly communicated with the bottom end of the connecting screw ring.

[0013] In the above-mentioned maintenance and protection device for a general-purpose server of a communication private network, a triangular water guide strip is fixedly connected to one side of the first partition away from the PLC controller. The bottom end of the triangular water guide strip is on the same horizontal plane as the top of the threaded ring and the inner bottom wall of the hollow base.

[0014] Compared with the existing technology, the advantages of a maintenance and protection device for a general-purpose server of a communication private network are as follows: 1. By setting the fixing mechanism and the limiting components, when the maintenance and protection device for a general-purpose server of a communication private network is in use, first place the inductive router main body on the upper side of the hollow base, and adjust the position of the second L-shaped frame through the adjusting frame. Then, limit the position of the inductive router main body through the two limiting components, reducing the probability of the inductive router main body being shaken. This mechanism enables the maintenance and protection device for a general-purpose server of a communication private network to have an adjusting function, enabling the device to adapt to the usage requirements of inductive routers of different specifications and improving the convenience of device use.

[0015] 2. With the intake mechanism, semiconductor refrigeration sheet, metal sheet, and induction mechanism set, when the inductive router body is working, first, the PLC controller controls the intake mechanism to start. The intake mechanism transports air into the inductive router body through the cooling and dehumidifying area, delivery pipe, and connecting air hood, using the flow of air to enhance the cooling effect. If the induction mechanism detects abnormal heating of the internal electronic components of the inductive router body, the PLC controller then controls the semiconductor refrigeration sheet to start. The semiconductor refrigeration sheet cools the air transported by the intake mechanism, and the cooled air is then transported into the inductive router body to quickly and efficiently cool the inside of the inductive router body, preventing the inductive router body from overheating due to untimely heat dissipation. Moreover, as the heat generated by the internal electronic components of the inductive router body becomes more severe, the PLC controller controls the actual power of the micro air pump to extract air according to the electrical signal feedback from the temperature sensor to a higher level, ensuring that the inside of the inductive router body can receive sufficient low-temperature air. This mechanism enables the communication private network general server operation and maintenance protection device to have an efficient cooling function, and the degree of cooling can be automatically adjusted according to the heating situation, not only improving the reliability and energy-saving performance of the device but also ensuring the stability and lifespan of the inductive router.

[0016] 3. With the humidity sensor and water storage mechanism set, after the humidity sensor detects that the environmental humidity where the inductive router body is working exceeds the humidity threshold preset by the PLC controller, especially in a high-humidity environment such as "returning south day", the PLC controller promptly controls the semiconductor refrigeration sheet to start. The semiconductor refrigeration sheet cooperates with the metal sheet to dehumidify the humid air transported by the intake mechanism. The water droplets generated during dehumidification enter the water receiving tank for storage under the cooperation of the air flow and the triangular water guide strip. The air in the cooling and dehumidifying area is then transported into the inductive router body through the delivery pipe and connecting air hood. The dry and low-temperature air can not only prevent the inside of the inductive router from getting wet but also cool the inductive router body, and can avoid water droplets from dripping onto the circuit board inside the inductive router body, further preventing accidental failures. This mechanism enables the communication private network general server operation and maintenance protection device to have an efficient moisture-proof function, not only improving the safety protection effect of the device but also ensuring the stability and performance of the inductive router body during use, and at the same time ensuring the safety and lifespan of the inductive router during construction. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] Figure 1 is a schematic structural diagram of a communication private network general server operation and maintenance protection device provided by the present invention; Figure 2 is a schematic structural diagram of a partial cross-section of a communication private network general server operation and maintenance protection device provided by the present invention; Figure 3 is Figure 2 the enlarged partial structural diagram in Figure 4 It is a schematic structural diagram of the second L-shaped frame part in an operation and maintenance protection device for a general server in a communication private network provided by the present invention; Figure 5 It is a schematic structural diagram of an induction mechanism in an operation and maintenance protection device for a general server in a communication private network provided by the present invention; Figure 6 It is a schematic structural diagram of an intake hose part in an operation and maintenance protection device for a general server in a communication private network provided by the present invention; Figure 7 It is a schematic structural diagram of a limit component in an operation and maintenance protection device for a general server in a communication private network provided by the present invention.

[0018] In the figure: 1 induction router main body, 2 hollow base, 3 fixing mechanism, 31 first L-shaped frame, 32 adjusting frame, 33 second L-shaped frame, 34 anti-slip rubber block, 35 connecting air hood, 4 first partition board, 5 second partition board, 6 intake mechanism, 61 air guide pipe, 62 micro air pump, 63 filter screen cover, 7 water storage mechanism, 71 threaded ring, 72 connecting screw ring, 73 water receiving tank, 8 induction mechanism, 81 humidity sensor, 82 hollow cover, 83 temperature sensor, 84 suction fan, 85 air guide hard pipe, 86 intake hose, 87 double-sided adhesive sleeve, 9 limit component, 91 L-shaped strip, 92 pressing rod, 93 rubber cover, 94 spring, 10 intake area, 11 cooling and dehumidifying area, 12 communication area, 13 three-way reversing solenoid valve, 14 L-shaped metal cover, 15 exhaust hole, 16 metal sheet, 17 conveying pipe, 18 PLC controller, 19 heat exchange through hole, 20 triangular water guide strip, 21 semiconductor refrigeration sheet. Specific embodiments

[0019] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.

[0020] Such as Figures 1 - 7As shown in the figure, a general server operation and maintenance protection device for a communication private network includes an inductive router main body 1. The bottom end of the inductive router main body 1 is connected to a hollow base 2. The upper surface of the hollow base 2 is fixedly connected with a fixing mechanism 3 for limiting the inductive router main body 1. The fixing mechanism 3 includes a first L-shaped frame 31 and an adjusting frame 32 fixedly connected to the outer wall of the top end of the hollow base 2. The outer wall of the adjusting frame 32 is movably sleeved with a second L-shaped frame 33. A rectangular through hole matching the adjusting frame 32 is opened on the outer wall of the second L-shaped frame 33, and an anti-slip rubber block 34 is fixedly connected to the hole wall of the rectangular through hole. The top ends of both the first L-shaped frame 31 and the second L-shaped frame 33 are fixedly connected with a limiting component 9. The limiting component 9 includes an L-shaped strip 91. A square hole is opened at the top end of the L-shaped strip 91, and a pressing rod 92 is movably connected to the hole wall of the square hole. A rubber cover 93 is fixedly sleeved at the bottom end of the pressing rod 92. A spring 94 is movably sleeved at the bottom end of the pressing rod 92. The two ends of the spring 94 are respectively fixedly connected to the surfaces of the L-shaped strip 91 and the rubber cover 93. The inner wall of the first L-shaped frame 31 is fixedly connected with a connecting air hood 35. The air inlet end of the connecting air hood 35 passes through the top end of the hollow base 2 and is fixedly communicated with the top end of a conveying pipe 17. This mechanism can improve the stability of limiting the inductive router main body 1.

[0021] An induction mechanism 8 is fixedly embedded on the outer wall of the second L-shaped frame 33. The induction mechanism 8 includes a humidity sensor 81 fixedly connected to the outer wall of the second L-shaped frame 33. An installation hole is opened on the outer wall of the second L-shaped frame 33, and a hollow cover 82 is fixedly connected to the hole wall of the installation hole. A temperature sensor 83 is fixedly embedded at the bottom end of the hollow cover 82. A through hole is opened at the side end of the hollow cover 82, and a suction fan 84 is fixedly connected to the hole wall of the through hole. A plurality of air guiding hard pipes 85 are fixedly embedded at one end of the hollow cover 82 away from the suction fan 84. The air outlet end of the air guiding hard pipe 85 is located above the temperature sensor 83. The air inlet end of the air guiding hard pipe 85 is fixedly communicated with an air inlet hose 86. The air inlet end of the air inlet hose 86 is fixedly sleeved with a double-sided adhesive sleeve 87. This mechanism can automatically realize the heat dissipation and moisture-proof functions of the safety protection device and improve the reliability of the device during use.

[0022] The inner wall of the hollow base 2 is fixedly connected with a first partition plate 4 and a second partition plate 5. The first partition plate 4 and the second partition plate 5 divide the inner cavity of the hollow base 2 into an air inlet area 10, a cooling and dehumidifying area 11, and a communication area 12. A through hole is formed in the side wall of the second partition plate 5, and a three-way reversing solenoid valve 13 is fixedly connected to the hole wall of the through hole. The air inlet end of the three-way reversing solenoid valve 13 is fixedly communicated with an air inlet mechanism 6. The air inlet mechanism 6 includes an air guide pipe 61 fixedly communicated with the air inlet end of the three-way reversing solenoid valve 13. The air inlet end of the air guide pipe 61 is fixedly communicated with a micro air pump 62. The bottom end of the micro air pump 62 is fixedly connected to the inner wall of the hollow base 2. The air inlet end of the micro air pump 62 passes through the outer wall of the hollow base 2. An annular groove is formed in the outer wall of the hollow base 2, and a filter screen cover 63 is inserted into the groove wall of the annular groove. This mechanism can ensure that the safety protection device has efficient and reliable heat dissipation ability.

[0023] An L-shaped metal cover 14 is fixedly sleeved on the outer wall of the three-way reversing solenoid valve 13. The top end of the L-shaped metal cover 14 is fixedly connected to the inner wall of the hollow base 2. The side end of the L-shaped metal cover 14 is fixedly connected to the outer wall of the second partition plate 5. The bottom air outlet end of the three-way reversing solenoid valve 13 passes through the outer wall of the L-shaped metal cover 14. An exhaust hole 15 is formed in the side end of the L-shaped metal cover 14. A plurality of rectangular through holes are formed in the bottom end of the L-shaped metal cover 14, and a plurality of metal sheets 16 are fixedly embedded in the hole walls of the rectangular through holes. Heat exchange through holes 19 are formed in both the top outer wall and the bottom outer wall of the metal sheet 16. The heat exchange through holes 19 expand the heat exchange area and improve the cooling and moisture-proof effect. A plurality of semiconductor refrigeration sheets 21 are fixedly embedded in the bottom end of the hollow base 2. The refrigerating sides of the plurality of semiconductor refrigeration sheets 21 are in contact with the bottom ends of the plurality of metal sheets 16 together. A conveying pipe 17 is fixedly embedded in the side end of the first partition plate 4. A PLC controller 18 is fixedly connected to the outer wall of the first partition plate 4.

[0024] A water storage mechanism 7 is fixedly communicated with the lower surface of the hollow base 2 in the cooling and dehumidifying area 11. The water storage mechanism 7 includes a threaded ring 71 fixedly communicated with the bottom end of the hollow base 2. A connecting screw ring 72 is threadedly connected to the inner wall of the threaded ring 71. A water receiving tank 73 is fixedly communicated with the bottom end of the connecting screw ring 72. A triangular water guide strip 20 is fixedly connected to one side of the first partition plate 4 away from the PLC controller 18. The bottom end of the triangular water guide strip 20 is on the same horizontal plane as the top of the threaded ring 71 and the inner wall of the bottom end of the hollow base 2. The triangular water guide strip 20 can better guide the water liquid inside the cooling and dehumidifying area 11 into the water receiving tank 73 to prevent the water liquid from overflowing. As the water liquid increases, the water receiving tank 73 can also be disassembled through the connecting screw ring 72 to pour out the water.

[0025] The micro air pump 62, the three-way reversing solenoid valve 13, and the semiconductor refrigeration sheet 21 are all electrically connected to the output terminal of the PLC controller 18 through wires. The humidity sensor 81 and the temperature sensor 83 are both electrically connected to the input terminal of the PLC controller 18 through wires. The above-mentioned energized devices and electrical connections are all prior arts and will not be elaborated here.

[0026] Now, the operating principle of the present invention is described as follows: When the communication private network general server operation and maintenance protection device is in use, first place the inductive router main body 1 on the upper side of the hollow base 2, and one side heat dissipation hole of the inductive router main body 1 is located inside the connecting air hood 35. At the same time, the other side heat dissipation hole of the inductive router main body 1 is close to the second L-shaped frame 33, and the second L-shaped frame 33 moves on the adjusting frame 32 through the anti-slip rubber block 34, so that the induction mechanism 8 of the second L-shaped frame 33 is located at the side heat dissipation hole of the inductive router main body 1. The friction between the anti-slip rubber block 34 and the adjusting frame 32 can ensure the stability of the second L-shaped frame 33 after the position is adjusted. Then, limit it through the limit component 9 at the top of the first L-shaped frame 31 and the second L-shaped frame 33. Specifically, the elastic force of the spring 94 in the limit component 9 pushes the rubber cover 93 and the pressure rod 92 downward. The rubber cover 93 at the bottom of the pressure rod 92 can squeeze onto the outer shell of the inductive router main body 1 and limit the inductive router main body 1, reducing the probability of the inductive router main body 1 being shaken. This mechanism enables the communication private network general server operation and maintenance protection device to have an adjustment function, enabling the device to adapt to the usage needs of inductive routers of different specifications and improving the convenience of device use.

[0027] When the inductive router main body 1 is working, control the micro air pump 62 and the suction fan 84 to start through the PLC controller 18. And at this time, the PLC controller 18 controls the actual pumping power of the micro air pump 62 to be half of the rated power. While meeting the normal heat dissipation of the inductive router, it can also reduce the power consumption of the device and improve the energy-saving effect of the device. The micro air pump 62 sucks air through the unpowered three-way reversing solenoid valve 13. At this time, the air outlet end of the three-way reversing solenoid valve 13 is at the top. Then the air enters the conveying pipe 17 through the exhaust hole 15, and finally enters the inductive router main body 1 through the connecting air hood 35 and the side heat dissipation hole of the inductive router main body 1, accelerating the air flow inside the inductive router main body 1, accelerating heat dissipation, and trying to avoid the formation of a high-temperature environment inside the inductive router main body 1, thereby improving the running smoothness of the inductive router. Finally, the air inside the inductive router main body 1 is discharged through the other side heat dissipation hole; Meanwhile, the suction fan 84 starts to exhaust the air inside the hollow cover 82, creating a negative pressure environment inside the hollow cover 82. The hollow cover 82 with negative pressure needs to suck in air for compensation through the air guide rigid tube 85 and the intake hose 86. Since the intake hose 86 passes through the heat dissipation holes on the side of the inductive router main body 1, the intake end of the intake hose 86 is located inside the inductive router main body 1, and the intake end of the intake hose 86 is adhered to the easily heated electronic components through the double-sided adhesive sleeve 87. For example, the intake end of the intake hose 86 is adhered to the surface of the chip. In this way, the heat dissipated by the heating elements inside the inductive router main body 1 can be timely transported to the detection end of the temperature sensor 83 through the intake hose 86 and the air guide rigid tube 85, improving the sensitivity of the temperature sensor 83 to detect abnormal heating of the electronic components inside the inductive router main body 1. The temperature sensor 83 converts the detected temperature value into an electrical signal and transports it to the PLC controller 18. If the temperature sensor 83 detects that the temperature of a heating element inside the inductive router main body 1 exceeds the preset high temperature threshold of the PLC controller 18, the PLC controller 18 timely controls the semiconductor refrigeration sheet 21 to start. The semiconductor refrigeration sheet 21 can reduce the surface temperature of the metal sheet 16 and the L-shaped metal cover 14. Then, the air sucked by the micro air pump 62 is transported to the inside of the L-shaped metal cover 14 through the air guide tube 61 and the unpowered three-way reversing solenoid valve 13, and is cooled by the low-temperature metal sheet 16 and the L-shaped metal cover 14. The cooled air is transported to the inside of the inductive router main body 1 to achieve rapid cooling of the inside of the inductive router main body 1, avoiding the occurrence of high heat when the inductive router main body 1 fails to dissipate heat in time. Moreover, as the heat generated by the electronic components inside the inductive router main body 1 becomes more serious, the PLC controller 18 controls the actual power of the micro air pump 62 to pump air higher according to the electrical signal fed back by the temperature sensor 83, ensuring that the inside of the inductive router main body 1 can obtain sufficient low-temperature air. This mechanism enables the communication private network general server operation and maintenance protection device to have the function of efficient cooling, and the degree of cooling can be self-adjusted according to the heating situation, not only improving the reliability and energy-saving performance of the device, but also ensuring the stability and service life of the inductive router.

[0028] The humidity sensor 81 can detect the humidity of the working environment of the inductive router body 1 and send the humidity in the form of an electrical signal to the PLC controller 18. If the humidity sensor 81 detects that the environmental humidity of the inductive router body 1 exceeds the humidity threshold preset by the PLC controller 18, especially in a highly humid environment such as "returning south day", the PLC controller 18 timely controls the semiconductor refrigeration sheet 21, the three-way reversing solenoid valve 13 and the micro air pump 62 to be energized and work. The micro air pump 62 operates at an actual power that is half of the rated power. The low-power operation can reduce power consumption. After the three-way reversing solenoid valve 13 is energized, the air guiding direction will be changed, so that the air outlet end of the three-way reversing solenoid valve 13 changes from the top to the bottom. The air conveyed by the micro air pump 62 is discharged from the bottom of the three-way reversing solenoid valve 13. The discharged air is closer to the refrigeration side of the semiconductor refrigeration sheet 21, and the dehumidification effect of the metal sheet 16 close to the refrigeration side of the semiconductor refrigeration sheet 21 is better. The moisture in the air is liquefied into water droplets after passing through the low-temperature metal sheet 16. After the water droplets drip off, they enter the water receiving tank 73 for storage under the cooperation of the air flow and the triangular water guiding strip 20. The air in the dehumidification and cooling area 11 is then conveyed to the inside of the inductive router body 1 through the conveying pipe 17 and the connecting air hood 35. The dry and low-temperature air can not only prevent the inside of the inductive router from getting wet, but also cool the inductive router body 1, and can avoid water droplets dripping onto the circuit board inside the inductive router body 1, further avoiding the occurrence of accidental failures. This mechanism enables the communication private network general server operation and maintenance protection device to have an efficient moisture-proof function, which can not only improve the safety protection effect of the device, but also ensure the stability and effect of the use of the inductive router body 1, and at the same time ensure the safety and service life of the inductive router construction.

[0029] The above are only the preferred embodiments of the present invention, and are not intended to limit the present invention. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention shall be included in the protection scope of the present invention.

Claims

1. A communication network universal server operation and maintenance protection device, comprising an inductive router body (1), characterized in that: The bottom end of the induction router body (1) is connected to a hollow base (2), and the upper surface of the hollow base (2) is fixedly connected to a fixing mechanism (3) for limiting the position of the induction router body (1); A first partition plate (4) and a second partition plate (5) are fixedly connected to the inner wall of the hollow base (2), and the first partition plate (4) and the second partition plate (5) divide the inner cavity of the hollow base (2) into an air intake area (10), a cooling and dehumidifying area (11) and a connecting area (12); A through hole is formed on the side wall of the second partition plate (5), and a three-way reversing solenoid valve (13) is fixedly connected to the hole wall of the through hole, and an air inlet end of the three-way reversing solenoid valve (13) is fixedly connected to an air inlet mechanism (6); The outer wall of the three-way reversing solenoid valve (13) is fixedly sleeved with an L-shaped metal cover (14); the top end of the L-shaped metal cover (14) is fixedly connected to the inner wall of the hollow base (2); the side end of the L-shaped metal cover (14) is fixedly connected to the outer wall of the second partition plate (5); the bottom end of the three-way reversing solenoid valve (13) passes through the outer wall of the L-shaped metal cover (14); the side end of the L-shaped metal cover (14) is provided with an exhaust hole (15); the bottom end of the L-shaped metal cover (14) is provided with a plurality of rectangular through holes, and the rectangular through holes are provided in a plurality of rectangular through holes. A plurality of metal sheets (16) are fixedly embedded in the hole wall of the hollow through hole, a plurality of semiconductor cooling sheets (21) are fixedly embedded in the bottom end of the hollow base (2), the cooling sides of the plurality of semiconductor cooling sheets (21) are in contact with the bottom ends of the plurality of metal sheets (16), a conveying pipe (17) is fixedly embedded in the side end of the first partition (4), a PLC controller (18) is fixedly connected to the outer wall of the first partition (4), and a water storage mechanism (7) is fixedly connected to the lower surface of the hollow base (2) located in the cooling and moisture-removing area (11).

2. A communication network general server operation and maintenance protection device according to claim 1, characterized in that: The fixing mechanism (3) comprises a first L-shaped frame (31) fixedly connected to the outer wall of the top end of the hollow base (2) and an adjusting frame (32); the outer wall of the adjusting frame (32) is movably sleeved with a second L-shaped frame (33); the outer wall of the second L-shaped frame (33) is provided with a rectangular through hole matching the adjusting frame (32); the hole wall of the rectangular through hole is fixedly connected with an anti-slip rubber block (34); the outer wall of the second L-shaped frame (33) is fixedly embedded with a sensing mechanism (8); the top ends of the first L-shaped frame (31) and the second L-shaped frame (33) are fixedly connected to a limiting assembly (9); the inner wall of the first L-shaped frame (31) is fixedly connected with a connecting air hood (35); the air inlet end of the connecting air hood (35) passes through the top end of the hollow base (2) and is fixedly connected to the top end of the conveying pipe (17).

3. A communication network general server operation and maintenance protection device according to claim 2, characterized in that: The limit assembly (9) comprises an L-shaped bar (91), a square hole is formed at the top of the L-shaped bar (91), a pressure rod (92) is movably connected to the hole wall of the square hole, a rubber cover (93) is fixedly sleeved at the bottom end of the pressure rod (92), a spring (94) is movably sleeved at the bottom end of the pressure rod (92), and two ends of the spring (94) are respectively fixedly connected to the surfaces of the L-shaped bar (91) and the rubber cover (93).

4. The communication network general server operation and maintenance protection device according to claim 1, characterized in that: The top outer wall and the bottom outer wall of the metal sheet (16) are both provided with a plurality of heat exchange through holes (19).

5. The communication network general server operation and maintenance protection device according to claim 2, characterized in that: The sensing mechanism (8) comprises a humidity sensor (81) fixedly connected to the outer wall of the second L-shaped frame (33); the outer wall of the second L-shaped frame (33) is provided with a mounting hole, and the hole wall of the mounting hole is fixedly connected to a hollow cover (82); the bottom end of the hollow cover (82) is fixedly embedded with a temperature sensor (83); the side end of the hollow cover (82) is provided with a through hole, and the hole wall of the through hole is fixedly connected to a suction fan (84); a plurality of air guide tubes (85) are fixedly embedded at one end of the hollow cover (82) away from the suction fan (84); the air outlet end of the air guide tube (85) is located at the top of the temperature sensor (83); the air inlet end of the air guide tube (85) is fixedly connected to an air intake hose (86); the air inlet end of the air intake hose (86) is fixedly sleeved with a double-sided rubber sleeve (87).

6. The communication network general server operation and maintenance protection device according to claim 1, characterized in that: The air intake mechanism (6) comprises an air guide pipe (61) fixedly connected to the air intake end of the three-way reversing solenoid valve (13); the air intake end of the air guide pipe (61) is fixedly connected to a micro air pump (62); the bottom end of the micro air pump (62) is fixedly connected to the inner wall of the hollow base (2); the air intake end of the micro air pump (62) passes through the outer wall of the hollow base (2); the outer wall of the hollow base (2) is provided with an annular groove, and the groove wall of the annular groove is plugged with a filter screen cover (63).

7. The communication network general server operation and maintenance protection device according to claim 1, characterized in that: The water storage mechanism (7) comprises a threaded ring (71) fixedly connected to the bottom end of the hollow base (2); the inner wall of the threaded ring (71) is threadedly connected to a connecting screw ring (72); and the bottom end of the connecting screw ring (72) is fixedly connected to a water receiving box (73).

8. A communication network general server operation and maintenance protection device according to claim 7, characterized in that: A triangular water guide bar (20) is fixedly connected to the side of the first partition plate (4) away from the PLC controller (18), and the bottom end of the triangular water guide bar (20), the top of the threaded ring (71) and the bottom inner wall of the hollow base (2) are located on the same horizontal plane.

Citation Information

Patent Citations

  • An inductive router security protection device

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