A data collection host of internet of things integrating heat dissipation and dust prevention

By assembling a clip and dustproof cotton at the wiring panel of the IoT data acquisition host, and combining it with the design of a fan and dustproof mesh, the dustproof and heat dissipation problems at the multi-line connection points are solved, achieving the overall dustproof and heat dissipation effect of the host.

CN120215645BActive Publication Date: 2025-12-16应急管理部大数据中心 +1
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Patent Information

Application Number
CN202510273843.7
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-03-10
Publication Date
2025-12-16
Estimated Expiration
2045-03-10

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Abstract

The application provides a heat-dust-preventing integrated internet of things data acquisition host, relates to the technical field of internet of things data acquisition host, and comprises a data acquisition host body, a buckle frame and dustproof cotton. Multiple openings are processed in the interior of the dustproof cotton, multiple strip grooves are processed in the interior of the buckle frame, ventilation slots are processed on both sides and the top of the buckle frame, a mounting seat frame is arranged at the ventilation slot on the top of the buckle frame, and two air guide fans are arranged in the interior of the mounting seat frame. The technical key points are as follows: the wires are connected with the interfaces on the wiring panel by penetrating the interiors of the openings and the strip grooves, the heat generated by the data acquisition host body is taken out through the mounting seat frame to the top of the protective plate by utilizing the easy deformation of the dustproof cotton and the two air guide fans in the interior of the mounting seat frame, the heat generated by the data acquisition host body is taken out through the wiring panel, the air in the interior of the buckle frame flows, and the dustproof effect is improved without affecting the heat dissipation effect.
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Description

TECHNICAL FIELD

[0001] The application relates to the technical field of Internet of Things data acquisition hosts, and particularly relates to an Internet of Things data acquisition host integrating heat dissipation and dust prevention. BACKGROUND

[0002] The Internet of Things data acquisition host is a core device in an Internet of Things system, responsible for connecting sensors, actuators and other devices, and realizing functions such as data acquisition, conversion, processing, storage and remote control. With the continuous development of Internet of Things technology, the functions of the Internet of Things data acquisition host are constantly enriched and optimized to meet the increasingly complex application requirements of the Internet of Things.

[0003] Data acquisition and conversion are one of the basic functions of the Internet of Things system. The host acquires data in real time by connecting various sensors, actuators and other devices. Data processing is an important link in the Internet of Things system, and the gateway host should have strong data processing capabilities, including data cleaning, outlier processing, data mining and the like. By processing the collected data, valuable information can be extracted to support decision-making. The host has large-capacity data storage capability, and the collected data is analyzed, processed and stored. At the same time, the gateway host also needs to meet the real-time data storage requirements to ensure the timeliness and integrity of the data. The Internet of Things system usually needs to realize remote control, and the gateway host should have remote control function, which can realize remote control of the device through the network. This helps to improve the maintainability and convenience of the device and reduce operating costs.

[0004] The patent file with the publication number CN116600214B is a dustproof and heat dissipation gateway which can prevent dust at the network interface by increasing the structure of the dustproof plate on the shell, can isolate the entering dust once by increasing the structure of the dustproof box inside the heat dissipation hole, and the dust cannot enter the inside of the shell. Meanwhile, the structure of the scraper is increased, which can clean the dust in the dustproof box under the action of the second driving member. When the dust falls on the baffle, the dust can be discharged through the dust outlet hole below the dustproof box when the baffle rotates, realizing cleaning. Finally, the application can realize the effect of effective dust prevention while dissipating heat.

[0005] The patent file with publication number CN219875782U is a kind of gateway by pulling connecting block, connecting block is pulled to the direction of being away from body, so that limit rod moves with connecting block, so that limit rod is retracted into the inside of elastic slot from the inside of connecting slot, at this time, worker inserts connecting frame into the inside of connecting slot, then release connecting block, under the tension of spring, two blocking plates are moved to the direction of being close to each other, so that two limit rods are moved to the direction of being close to each other, so that two limit rods enter the inside of limit slot opened on connecting frame, so that dust screen is fixed at the bottom of body, a large amount of heat is generated in the long-time work of body, heat is circulated out of the inside of body through ventilation slot and heat dissipation slot, ensure that the inside of body will not be high temperature due to long-time work, so as to cause damage to body, through the setting of dust screen, ground dust can be blocked, ensure the cleanness of the inside of body, ensure the safe operation of body.

[0006] The patent file with publication number CN219227740U is a kind of dustproof and heat dissipation type video gateway server, which moves the slider and the brush plate between the sliders back and forth through the cooperation of the motor rotating the threaded rod and the guide rod, to remove the dust on the upper surface of the dust removal plate. The circuit board is started at regular intervals to solve the problem that the video gateway with fan cooling function on the market needs to be disassembled for cleaning dust on the dust removal plate.

[0007] However, in the process of implementing the above technical solutions, it is found that the above technical solutions have the following technical problems:

[0008] The existing dustproof and heat dissipation gateway (publication number: CN116600214B) uses a dust removal plate to prevent dust at the network junction, the gateway (publication number: CN219875782U) sets a dust screen at the bottom of the gateway, maintains the characteristics of being easy to disassemble, and the dustproof and heat dissipation type video gateway server (publication number: CN219227740U) uses a brush to remove dust and a fan to dissipate heat. In actual application process, due to the influence of the number of lines, it is difficult to adapt to the connection or disconnection of multiple lines on the Internet of Things data acquisition host to achieve the expected dustproof effect at the line end and host connection point. SUMMARY

[0009] In order to overcome the shortcomings of the prior art, the embodiments of the present application provide an Internet of Things data acquisition host integrating heat dissipation and dust prevention, which is assembled with a buckle frame covering the wiring panel on the data acquisition host body, and dustproof cotton is pasted on the surface of the buckle frame. After the wires are connected to the interfaces on the wiring panel by passing through the inside of the opening and the slot, the wires move in the slot, and the dustproof cotton is deformed to fill the gap between the wires, ensuring the dustproof effect of the multiple interfaces on the wiring panel.

[0010] By utilizing two air guide fans inside the mounting seat frame, the air inside the buckle frame is drawn out to the top of the protective plate through the mounting seat frame, air outside the buckle frame can enter the inside of the buckle frame through the two dustproof nets A, when the air flows inside the buckle frame, the heat emitted from the inside of the data acquisition machine body to the outside through the wiring panel can be taken out, and the heat dissipation effect during the working process of the internal components of the data acquisition machine body is not affected.

[0011] The technical scheme adopted by the embodiment of the application to solve the technical problems is:

[0012] A data acquisition host of Internet of Things integrating heat dissipation and dust prevention, comprising a data acquisition machine body, a buckle frame and dustproof cotton, the data acquisition machine body is assembled and connected with a wiring panel on the side;

[0013] The buckle frame is assembled to the side of the data acquisition machine body and covers the outside of the wiring panel;

[0014] The dustproof cotton is pasted on the surface of the buckle frame;

[0015] A plurality of openings are processed inside the dustproof cotton, a plurality of strip grooves are processed inside the buckle frame, the plurality of openings extend from the center to the edge of the dustproof cotton, and the plurality of strip grooves extend from the center to the edge of the buckle frame;

[0016] Among them, the inside of the plurality of openings is in communication with the inside of the plurality of buckle frames, one end of the plurality of strip grooves on the buckle frame is respectively distributed at three edges of the buckle frame, the wires connected to each interface of the wiring panel are movably connected to the inside of the strip grooves, and the dustproof cotton is adaptively connected to the outside of the wires.

[0017] In a possible implementation, the buckle frame is provided with ventilation slots on both sides and the top, the three ventilation slots are in communication with the inside of the dustproof cotton located at one end of the edge of the buckle frame, the ventilation slots located on both sides of the buckle frame are provided with dustproof nets A, the ventilation slot located on the top of the buckle frame is provided with a mounting seat frame, and the inside of the mounting seat frame is provided with two air guide fans distributed left and right.

[0018] In a possible implementation, two limiting double hooks are integrally formed on the inner walls of both sides of the buckle frame, and the two limiting double hooks are symmetrically arranged above and below the ventilation slot.

[0019] In a possible implementation, control strips are integrally formed on the top and bottom surfaces of one side of the dustproof net A, the dustproof net A is bent by means of the two control strips, and the two ends of the dustproof net A are respectively inserted into the inside of the two limiting double hooks facing the two limiting double hooks.

[0020] In a possible implementation, the dustproof net A is integrally formed with a limiting ball head at the center of the top and the bottom, and the two limiting ball heads on the dustproof net A are respectively located inside the two limiting double hooks.

[0021] In a possible implementation, the mounting seat frame is in T-shaped cross section, the dustproof net B is arranged on the inner side of the top of the mounting seat frame, and the protective plate is assembled and fixed on the top of the mounting seat frame.

[0022] In a possible implementation, the air guiding fan is arranged between the protective plate and the dustproof net B, the air in the inside of the buckle frame is drawn out to the top of the protective plate through the mounting seat frame, and the air on the outside of the buckle frame enters the inside of the buckle frame through the two dustproof nets A.

[0023] In a possible implementation, the dustproof net B is integrally formed with a plurality of ribs at the edge of the top, the plurality of ribs are respectively located at the edge of the bottom of the two air guiding fans, and after the protective plate is assembled on the top of the mounting seat frame, the air guiding fan is in contact with the rib, and the dustproof net B is pressed on the inner wall of the mounting seat frame.

[0024] In a possible implementation, the protective plate is integrally formed with four positioning rods at the two sides of the bottom, and two partition plates are arranged at the center of the bottom of the protective plate; the four positioning rods respectively pass through the inside of the four corners of the air guiding fan, and the two partition plates are located between the two air guiding fans.

[0025] In a possible implementation, the inside of the two ends of the mounting seat frame is processed with a connecting slot, and the top of the buckle frame is provided with two locking blocks; the two connecting slots are located at the two sides of the ventilation slot on the top of the buckle frame, the locking block is movably connected in the connecting slot, and after the bottom surface of the mounting seat frame is attached to the top of the buckle frame when the locking block passes through the inside of the connecting slot, the locking block is rotated by ninety degrees to limit the locking block from passing through the inside of the connecting slot, so that the mounting seat frame is fixed on the top of the buckle frame.

[0026] In a possible implementation, the bottom of the two locking blocks is provided with a sleeve ring, the locking block and the sleeve ring are coaxially arranged, and the locking block and the sleeve ring pass through a bolt together, so that the bolt is connected to the inside of the buckle frame to support the rotation of the locking block outside the bolt.

[0027] The application has the following beneficial effects:

[0028] First, in the scheme, the dustproof cotton is pasted on the surface of the buckle frame by assembling the buckle frame covering the wiring panel on the data acquisition machine main body, and after the wires are connected with the interfaces on the wiring panel by passing through the openings and the internal grooves, the dustproof cotton is used to fill the gaps between the wires by using the easy deformation characteristics of the dustproof cotton, so as to ensure the dustproof effect of the multiple interfaces on the wiring panel.

[0029] Second, in the scheme, the air in the buckle frame is drawn out to the top of the protective plate through the mounting seat frame by using the two air guide fans in the mounting seat frame, so that the air outside the buckle frame enters the inside of the buckle frame through the two dustproof nets A, and when the air flows in the buckle frame, the heat emitted from the inside of the data acquisition machine main body to the outside through the wiring panel is taken out. BRIEF DESCRIPTION OF DRAWINGS

[0030] Figure 1 It is one of the overall structure schematic diagram of the application;

[0031] Figure 2 It is the second overall structure schematic diagram of the application;

[0032] Figure 3 It is the structure schematic diagram of the data acquisition machine main body and the dustproof cotton in the disengaged connection state;

[0033] Figure 4 It is the structure schematic diagram of the buckle frame and the mounting seat frame in the disengaged connection state;

[0034] Figure 5 It is the enlarged structure schematic diagram of part A in the application; Figure 4

[0035] Figure 6 It is the enlarged structure schematic diagram of part B in the application; Figure 4

[0036] Figure 7 It is the structure schematic diagram of the data acquisition machine main body and the buckle frame in the disengaged connection state;

[0037] Figure 8 It is the enlarged structure schematic diagram of part C in the application. Figure 7

[0038] BRIEF DESCRIPTION OF DRAWINGS ​​​Detailed Implementation

[0039] The technical solution in this application embodiment is to solve the problems mentioned in the background art, and the overall idea is as follows:

[0040] Example 1:

[0041] This embodiment describes the specific structure of an IoT data acquisition host that integrates heat dissipation and dust prevention. See details below. Figures 1-4 As shown, it includes a data acquisition machine body 1, a frame 7, and a dustproof cotton 5 pasted on the surface of the frame 7. A wiring panel 6 is assembled and connected to the side of the data acquisition machine body 1. The frame 7 is assembled to the side of the data acquisition machine body 1 and covers the outside of the wiring panel 6.

[0042] like Figures 2 to 4 As shown, the dustproof cotton 5 has multiple openings 4 inside, and the buckle frame 7 has multiple grooves 8 inside;

[0043] In this design, the interiors of multiple openings 4 are connected to the interiors of multiple snap frames 7. The openings 4 extend from the center of the dustproof cotton 5 to its edge, and the slots 8 extend from the center of the snap frames 7 to its edge. One end of each slot 8 on the snap frame 7 is distributed on three sides of the snap frame 7. This allows the wires connected to the interfaces on the wiring panel 6 to be movably connected inside the slots 8. When the wires pass through the openings 4 and slots 8, the dustproof cotton 5 can be adapted to connect to the outside of the wires. Utilizing the deformable nature of the dustproof cotton 5, the gaps between the wires can be filled, ensuring that the wiring panel 6 on the main body 1 of the data acquisition machine is fully protected without affecting the connection of multiple wires to the interfaces on the wiring panel 6.

[0044] The above design involves mounting a clip frame 7 covering the wiring panel 6 on the main body 1 of the data acquisition machine, and attaching dustproof cotton 5 to the surface of the clip frame 7. This allows the multiple openings 4 on the clip frame 7 and the multiple grooves 8 on the dustproof cotton 5 to be interconnected. When a wire is passed through the inside of the openings 4 and grooves 8 and connected to the interface on the wiring panel 6, the wire moves inside the grooves 8. Utilizing the deformable nature of the dustproof cotton 5, the gaps between the wires can be filled, thus providing overall protection for the wiring panel 6 on the main body 1 of the data acquisition machine and ensuring the dustproof effect of the multiple interfaces on the wiring panel 6.

[0045] Example 2:

[0046] Based on Example 1, this example describes the specific structure of the snap-fit ​​frame 7, such as... Figures 2 to 8As shown, the two sides and the top of the buckle frame 7 are provided with ventilation slots 20, the ventilation slots 20 on the two sides of the buckle frame 7 are provided with dustproof nets A9, and the ventilation slot 20 on the top of the buckle frame 7 is provided with a mounting seat frame 2, and the inside of the mounting seat frame 2 is provided with two air guide fans 16 distributed left and right;

[0047] As shown in Figure 4 , Figure 6 and Figure 7 , two limiting double hooks 19 are integrally formed on the inner walls of the two sides of the buckle frame 7, the top and bottom surfaces of one side of the dustproof net A9 are integrally formed with control strips 18, the three ventilation slots 20 are respectively connected to the inside of the dustproof cotton 5 located at one end of the edge of the buckle frame 7, and the two limiting double hooks 19 are symmetrically arranged above and below the ventilation slot 20, when the two control strips 18 are used to control the bending of the dustproof net A9, the two ends of the dustproof net A9 can be inserted into the inside of the ventilation slot 20, and the two ends of the ventilation slot 20 can be inserted into the inside of the two limiting double hooks 19, so that the dustproof net A9 can be installed at the ventilation slot 20 to prevent dust from passing through the ventilation slot 20;

[0048] Secondly, in order to prevent the dustproof net A9 from moving in the inside of the buckle frame 7, as shown in Figure 4 and Figure 6 , limiting ball heads 17 are integrally formed at the centers of the top and bottom of the dustproof net A9, and the two limiting ball heads 17 on the dustproof net A9 are located inside the two limiting double hooks 19, so that the dustproof net A9 can be limited to move between the two limiting double hooks 19 by the cooperation of the limiting ball heads 17 and the limiting double hooks 19;

[0049] Further, in order to avoid dust from entering the inside of the buckle frame 7 as much as possible, so as to enter the inside of the data acquisition machine body 1 through the wiring panel 6, as shown in Figure 3 and Figure 5 , the cross section of the mounting seat frame 2 is T-shaped, the inside of the top of the mounting seat frame 2 is provided with a dustproof net B10, and the top of the mounting seat frame 2 is provided with a protective plate 3, the gas in the inside of the buckle frame 7 is drawn out to the top of the protective plate 3 through the mounting seat frame 2 between the air guide fan 16 and the dustproof net B10, so that the air outside the buckle frame 7 can enter the inside of the buckle frame 7 through the two dustproof nets A9, and when the air flows in the inside of the buckle frame 7, the heat emitted from the inside of the data acquisition machine body 1 through the wiring panel 6 to the outside can be taken out;

[0050] In some examples, a plurality of ribs 11 are integrally formed at the edge of the top of the dustproof net B10, four positioning rods 13 are integrally formed at the bottom of the protective plate 3, and two partition plates 12 are formed at the center of the bottom of the protective plate 3;

[0051] Wherein, by making the plurality of ribs 11 respectively located at the edges of the bottom of the two air guide fans 16, when the protective plate 3 is assembled on the top of the mounting seat frame 2, the air guide fan 16 can be in contact with the rib 11, the dust screen B10 is pressed on the inner wall of the mounting seat frame 2, and the dust screen B10 is fixed on the inner wall of the mounting seat frame 2;

[0052] Secondly, by making the four positioning rods 13 respectively pass through the inside of the four corners of the air guide fan 16, and the two partition plates 12 are located between the two air guide fans 16, the air guide fan 16 can be positioned by the four positioning rods 13, when the protective plate 3 is assembled on the top of the mounting seat frame 2, the air guide fan 16 is in contact with the rib 11, the dust screen B10 is pressed on the inner wall of the mounting seat frame 2, and the air guide fan 16 can be fixed inside the mounting seat frame 2;

[0053] In some examples, the inside of both ends of the mounting seat frame 2 is processed with a connecting slot 21, and the top of the buckle frame 7 is provided with two locking blocks 15, and the bottom of the two locking blocks 15 is provided with a sleeve ring 14;

[0054] Wherein, by making the two connecting slots 21 located on both sides of the top ventilation slot 20 of the buckle frame 7, the locking block 15 (threadedly connected with the buckle frame 7 by the bolt passing through the inside of the locking block 15) is movably connected inside the connecting slot 21, when the locking block 15 passes through the inside of the connecting slot 21, the bottom surface of the mounting seat frame 2 is attached to the top of the buckle frame 7, and the locking block 15 is rotated by ninety degrees, the locking block 15 can be restricted from passing through the inside of the connecting slot 21 by the bolt along the axial direction, thereby restricting the locking block 15 from passing through the inside of the connecting slot 21, and fixing the mounting seat frame 2 on the top of the buckle frame 7;

[0055] At the same time, by making the locking block 15 and the sleeve ring 14 coaxially arranged, when the locking block 15 is rotated outside the bolt, the sleeve ring 14 can be used to raise the locking block 15, so that the bottom plane of the locking block 15 is more easily rotated to the top of one end of the mounting seat frame 2.

[0056] The above design can support the air outside the buckle frame 7 to enter the inside of the buckle frame 7 through the two dust screens A9, by using the two air guide fans 16 inside the mounting seat frame 2 to draw the gas inside the buckle frame 7 through the mounting seat frame 2 to the top of the protective plate 3, when the air flows in the inside of the buckle frame 7, the heat emitted from the inside of the data acquisition machine main body 1 through the wiring panel 6 can be taken out;

[0057] When the air passes through the inside of the dust screen A9, the dust outside the buckle frame 7 is blocked by the dust screen A9, and because the dust screen B10 is arranged inside the mounting seat frame 2 to block the dust outside the buckle frame 7, falling from the protective plate 3 and the mounting seat frame 2 to the inside of the buckle frame 7, when the dust falls on the top surface of the dust screen B10, a part of the dust can be taken away from the surface of the dust screen B10 by the air guide fan 16.

[0058] The above design is equipped with the mounting seat frame 2 at the ventilation slot 20 on the top of the buckle frame 7, and two air guide fans 16 inside the mounting seat frame 2.

[0059] Finally, it should be noted that the above embodiments are merely examples for clearly illustrating the present application, and are not intended to limit the implementation modes. Based on the above description, other different forms of changes or variations can also be made by those skilled in the art. Here, it is not necessary and impossible to exhaust all the implementation modes. The obvious changes or variations derived therefrom are still within the protection scope of the present application.

Claims

1. An Internet of Things data collection host integrating heat dissipation and dust prevention, characterized in that, The utility model relates to a data acquisition machine, including: Data acquisition machine body (1), its side assembled type connection has wiring panel (6); Dial frame (7), its assembly to data acquisition machine body (1) side and cover in wiring panel (6) outside; Dustproof cotton (5), its paste in dial frame (7) surface; The inside processing of dustproof cotton (5) has a plurality of openings (4), the inside processing of dial frame (7) has a plurality of strip slot (8), a plurality of opening (4) extends from the center of dustproof cotton (5) to its edge, a plurality of strip slot (8) extends from the center of dial frame (7) to its edge; Wherein, the inside of a plurality of openings (4) is communicated with the inside of a plurality of dial frame (7), a plurality of strip slot (8) one end of dial frame (7) is distributed at three edges of dial frame (7) respectively, the wire connected to each interface on wiring panel (6) is movably connected in the inside of strip slot (8), dustproof cotton (5) is connected to the outside of wire; Wherein, the top and bottom surface of one side of dustproof net A (9) are integrally formed with control strip (18), the two ends of dustproof net A (9) are respectively inserted into the inside of two limit double hooks (19) facing arrangement by the aid of two control strips (18) control dustproof net A (9) bending, support; Wherein, the both sides and top of dial frame (7) are processed with vent slot (20), three vent slot (20) are respectively communicated with the inside of dustproof cotton (5) one end located at the edge of dial frame (7), the vent slot (20) at both sides of dial frame (7) is provided with dustproof net A (9), the vent slot (20) at the top of dial frame (7) is provided with mounting seat frame (2), the inside of mounting seat frame (2) is provided with two air guide fans (16) distributed left and right; Wherein, the inside of both ends of mounting seat frame (2) is processed with connecting slot (21), the top of dial frame (7) is provided with two locking blocks (15); Wherein, two connecting slot (21) are located at both sides of dial frame (7) top vent slot (20), locking block (15) is movably connected in the inside of connecting slot (21), after the bottom surface of mounting seat frame (2) and the top of dial frame (7) are fitted, locking block (15) is rotated by ninety degrees, locking block (15) is limited to pass through the inside of connecting slot (21), mounting seat frame (2) is fixed on the top of dial frame (7).

2. The data collection host of the Internet of Things that integrates heat dissipation, dust prevention and collection in one, according to claim 1, characterized in that: The inside wall of both sides of dial frame (7) is integrally formed with two limit double hooks (19), two limit double hooks (19) are symmetrically arranged above and below vent slot (20).

3. The data collection host machine of claim 2, wherein the heat is dissipated and dust is prevented from entering the data collection host machine. The center of the top and bottom of dustproof net A (9) is integrally formed with limit ball head (17), two limit ball heads (17) on dustproof net A (9) are respectively located in the inside of two limit double hooks (19) facing arrangement.

4. The data collection host machine of claim 1, wherein the heat is dissipated and dust is prevented from entering the machine in an integrated manner. The section of mounting seat frame (2) is T-shaped, dustproof net B (10) is arranged on the inside of the top of mounting seat frame (2), protective plate (3) is fixedly arranged on the top of mounting seat frame (2); The air guiding fan (16) is between the protection plate (3) and the dust screen B (10), and air in the buckle frame (7) is drawn out to the top of the protection plate (3) through the mounting seat frame (2), and air outside the buckle frame (7) enters the inside of the buckle frame (7) through the two dust screens A (9).

5. The data collection host machine of claim 4, wherein: A plurality of ribs (11) are integrally formed at the edges of the top of the dust screen B (10), the plurality of ribs (11) are respectively located at the edges of the bottoms of the two air guiding fans (16), and after the protection plate (3) is assembled on the top of the mounting seat frame (2), the air guiding fan (16) is in contact with the rib (11), and the dust screen B (10) is pressed at the inner wall of the mounting seat frame (2).

6. The data collection host machine of claim 4, wherein the heat is dissipated and dust is prevented from entering the machine in an integrated manner. Four positioning rods (13) are integrally formed at the two sides of the bottom of the protection plate (3), and two partition plates (12) are processed at the center of the bottom of the protection plate (3); The four positioning rods (13) respectively pass through the interiors of four corners of the air guiding fan (16), and the two partition plates (12) are located between the two air guiding fans (16).

7. The data collection host machine of claim 1, wherein the heat is dissipated and dust is prevented from entering the machine in an integrated manner. The bottom of each of the two locking blocks (15) is provided with a sleeve ring (14), the locking block (15) and the sleeve ring (14) are coaxially arranged, and pass through a bolt together, so that the bolt is connected to the inside of the buckle frame (7), and the locking block (15) is supported to rotate outside the bolt.

Citation Information

Patent Citations

  • A dustproof heat dissipation gateway

    CN116600214B

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