Mobile communication detection device

The mobile communication detection device addresses the issue of dust-clogged air vents by using a push plate and brush mechanism to maintain cooling efficiency and protect components, enhancing usability and durability.

CN223096415UActive Publication Date: 2025-07-15FIBERPARK TECH CO LTD
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Patent Information

Application Number
CN202422049142.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-22
Publication Date
2025-07-15
Estimated Expiration
2034-08-22

AI Technical Summary

Technical Problem

The existing mobile communication detection device cannot automatically clean the fan dust, causing the dust to clog the filter, affecting the device's heat dissipation efficiency, reducing performance and shortening life.

Method used

A mobile communication detection device is designed, including a case, detector, protective plate, grip, filter net, guide ring, push plate, elastic parts and cleaning brush. Through the cooperation of push plate and elastic parts, the dust of the exhaust outlet is automatically cleaned, the cleaning brush contacts the filter net to clean up dust, and automatic cleaning is achieved through the reset of elastic parts.

Benefits of technology

It realizes automatic cleaning of dust at the exhaust outlet, maintains the heat dissipation efficiency of the device, extends the life of the device, and improves the stability and reliability of the device.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the field of mobile communication detection, in particular to a mobile communication detection device. A mobile communication detection device comprises a machine shell and a detector, the detector is arranged in the machine shell in an embedded mode, a handle is arranged on the top of the machine shell, and the mobile communication detection device further comprises a protection plate and the like. The lower portions of the left wall and the right wall of the machine shell are transversely provided with linear guide grooves, the lower portion of the machine shell is transversely provided with linear grooves, the lower portion of the protection plate is provided with a rotating shaft, the protection plate is in sliding fit with the linear guide grooves of the machine shell through the rotating shaft, the protection plate is in sliding fit with the linear grooves, and a grip is arranged in the middle of the upper surface of the protection plate. The push plate is pushed by the plane to move upwards to drive the moving rod, the cleaning panel and the cleaning brush to ascend along the first guide ring together, and in the process, the cleaning brush makes contact with the filter screen to effectively clean dust.
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Description

Technical Field

[0001] The utility model relates to the field of mobile communication detection, in particular to a mobile communication detection device. Background Art

[0002] Mobile communication detectors, as key tools in the communication field, integrate high-precision signal detection, advanced signal processing algorithms, and real-time data analysis capabilities, and support wireless network planning, construction, maintenance, and optimization. They need to operate stably in complex environments, especially against high temperature, high humidity, and strong electromagnetic interference. The fan for heat dissipation ensures the performance of the equipment. However, long-term outdoor or industrial applications lead to dust accumulation. The existing mobile communication detection devices cannot automatically clean the dust on the fan, resulting in dust clogging the filter screen, affecting the heat dissipation efficiency of the device, reducing the device performance, and even damaging electronic components and shortening the device life. Therefore, there is an urgent need to design a mobile communication detection device that can automatically clean the dust at the air outlet. Content of the Utility Model

[0003] In order to overcome the drawback that the existing mobile communication detection devices cannot automatically clean the dust on the fan, resulting in dust clogging the filter screen and affecting the heat dissipation efficiency of the device, the purpose of the utility model is to provide a mobile communication detection device that can automatically clean the dust at the air outlet.

[0004] Technical Solution: A mobile communication detection device includes a casing and a detector. The detector is embedded in the casing. A handle is arranged on the top of the casing. It further includes a protection plate, a grip, a filter screen, a first guiding ring, a push plate, a first elastic member, a cleaning panel, and a cleaning brush. Transverse one-word guide grooves are opened horizontally at the lower parts of the left and right walls of the casing. A transverse one-word groove is opened horizontally at the lower part of the casing. A rotating shaft is installed at the lower part of the protection plate. The protection plate is slidably matched with the one-word guide groove of the casing through the rotating shaft and is slidably matched with the one-word groove. A grip is arranged in the middle of the upper surface of the protection plate. Long strip-shaped through holes are horizontally opened at intervals on both the left and right side walls of the casing, and filter screens are arranged on the inner sides. First guiding rings are symmetrically arranged at the front and rear of the lower parts of the left and right side walls of the casing. A moving rod is slidably arranged in each of the two first guiding rings. A push plate is arranged between the bottom ends of the two moving rods. A cleaning panel is arranged between the top ends of the two moving rods. A cleaning brush is arranged on the cleaning panel close to the filter screen side. The cleaning brush on the cleaning panel is located between two adjacent long strip-shaped through holes of the casing. A first elastic member is sleeved on each of the two moving rods. The top end of the first elastic member abuts against the lower surface of the first guiding ring, and the bottom end of the first elastic member abuts against the upper surface of the push plate.

[0005] In addition, particularly preferably, it further includes a second guiding ring, a limiting block, and a second elastic member. Second guiding rings are symmetrically arranged at the left and right sides of the lower part of the front panel of the detector. The limiting block is slidably installed in the second guiding ring through a round shaft. The other end of the round shaft of the limiting block is connected with an L-shaped inclined block. A second elastic member is sleeved on the round shaft of the limiting block.

[0006] In addition, it is particularly preferred that it further includes a third guide ring, an upper push rod, a lower push rod, and a round rod. Third guide rings are symmetrically provided at the left and right ends of the bottom of the front panel of the detector. The third guide rings are all slidably sleeved with round rods. An upper push rod is provided between the tops of the round rods. Both ends of the upper push rod are inclined planes. One end of the inclined block of the upper push rod is slidably engaged with the limiting block. A lower push rod is provided on the lower surface of the round rod.

[0007] In addition, it is particularly preferred that it further includes positioning pins, positioning rods, and third elastic members. Circular through holes are opened at the four corners of the bottom of the casing for placing the positioning pins. The two positioning pins on the left are fixed together by a positioning rod, and the two positioning pins on the right are fixed together by a positioning rod. Third elastic members are sleeved on the positioning pins.

[0008] In addition, it is particularly preferred that a rectangular window is opened in the middle of the protective plate, and the window is provided with a transparent material.

[0009] In addition, it is particularly preferred that grooves are closely and equally spaced on the bottom surface of the push plate.

[0010] The beneficial effects are as follows: The push plate moves upward under the planar push, driving the moving rod, the cleaning panel, and the cleaning brush to rise along the first guide ring together. During this process, the cleaning brush contacts the filter screen to effectively clean the dust. The first elastic member is in a compressed state. By lifting the detector with the handle, with the action of the first elastic member, the push plate, the moving rod, the cleaning panel, and the cleaning brush are reset, thereby realizing the automatic cleaning of the dust on the filter screen of the air outlet. In addition, through the cooperation of the second guide ring, the limiting block, the second elastic member, the third guide ring, and the upper push rod, the protective plate can be opened and closed arbitrarily, facilitating people to operate the detector. Description of the Drawings

[0011] Figure 1 It is a three-dimensional structural schematic diagram of the present utility model.

[0012] Figure 2 It is a three-dimensional structural schematic diagram of parts such as the first guide ring, the push plate, the first elastic member, and the cleaning panel.

[0013] Figure 3 It is a three-dimensional structural schematic diagram of parts such as the limiting block, the second elastic member, the third guide ring, and the upper push rod.

[0014] Figure 4 It is a three-dimensional structural schematic diagram of parts such as the positioning pins, the positioning rods, and the third elastic members.

[0015] Among them, the above-mentioned drawings include the following reference numerals: 1. Machine housing, 2. Detector, 3. Protection plate, 4. Grip, 5. Filter screen, 6. First guiding ring, 7. Pushing plate, 8. First elastic member, 9. Cleaning panel, 901. Cleaning brush, 10. Second guiding ring, 11. Limiting block, 12. Second elastic member, 13. Third guiding ring, 14. Upper push rod, 15. Lower push rod, 16. Round rod, 17. Positioning nail, 18. Positioning rod, 19. Third elastic member. Detailed implementation manners

[0016] The embodiments of the present utility model will be described in detail below with reference to the drawings.

[0017] Embodiment: A mobile communication detection device, as Figures 1 - 4As shown in the figure, it includes an organic housing 1 and a detector 2. The detector 2 is embedded in the housing 1. A handle is provided at the top of the housing 1. It also includes a protective plate 3, a grip 4, a filter net 5, a first guiding ring 6, a push plate 7, a first elastic member 8, a cleaning panel 9 and a cleaning brush 901. Horizontal one-word guiding grooves are transversely opened at the lower parts of the left and right walls of the housing 1, and a horizontal one-word groove is transversely opened at the lower part of the housing 1. The lower part of the protective plate 3 is equipped with a rotating shaft, and the protective plate 3 is slidably matched with the one-word guiding groove of the housing 1 through the rotating shaft. The protective plate 3 is slidably matched with the one-word groove. A rectangular window is opened in the middle of the protective plate 3, and the window is provided with a transparent material. A grip 4 is provided in the middle of the upper surface of the protective plate 3. Long rectangular through holes are transversely opened at intervals on both the left and right side walls of the housing 1, and filter nets 5 are provided on the inner sides. First guiding rings 6 are symmetrically provided at the front and rear of the lower parts of the left and right side walls of the housing 1. A moving rod is slidably arranged in each of the two first guiding rings 6. A push plate 7 is provided between the bottom ends of the two moving rods. Grooves are closely opened at equal intervals on the bottom surface of the push plate 7. A cleaning panel 9 is provided between the top ends of the two moving rods. A cleaning brush 901 is provided on the side of the cleaning panel 9 close to the filter net 5. The cleaning brush 901 on the cleaning panel 9 is located between two adjacent long rectangular through holes of the housing 1. A first elastic member 8 is sleeved on each of the two moving rods. The top end of the first elastic member 8 abuts against the lower surface of the first guiding ring 6, and the bottom end of the first elastic member 8 abuts against the upper surface of the push plate 7. When the detector 2 is placed on a plane, the push plate 7 contacts the plane first. The grooves closely opened at equal intervals on the bottom surface of the push plate 7 can increase the friction between the device and the ground, preventing the device from slipping and being damaged. The push plate 7 moves upward under the push of the plane. Since the push plate 7, the moving rods, the cleaning panel 9 and the cleaning brush 901 are connected as a whole, the moving rods, the cleaning panel 9 and the cleaning brush 901 will move upward along the first guiding ring 6 together. Before moving, the cleaning brush 901 on the cleaning panel 9 is located between two adjacent long rectangular through holes of the housing 1. During the moving process, the cleaning brush 901 is equivalent to cleaning dust. Finally, the push plate 7, the moving rods, the cleaning panel 9 and the cleaning brush 901 move upward as a whole by the width of two long rectangular through holes, and the cleaning brush 901 is still located between two adjacent long rectangular through holes of the housing 1, not blocking the long rectangular through holes and affecting heat dissipation. At this time, the first elastic member 8 is in a compressed state. The detector 2 is lifted by the handle. Under the action of the first elastic member 8, the push plate 7, the moving rods, the cleaning panel 9 and the cleaning brush 901 are reset. In this way, the purpose of automatically cleaning the dust on the filter net 5 of the air outlet is achieved during an inadvertent operation process.

[0018] As Figure 3As shown in the figure, it further includes a second guiding ring 10, a limiting block 11 and a second elastic member 12. On the lower left and right sides of the front panel of the detector 2, the second guiding rings 10 are symmetrically arranged. The limiting block 11 is slidably mounted in the second guiding ring 10 through a round shaft. The left end of the limiting block 11 is a triangular prism. The other end of the round shaft of the limiting block 11 is connected with an L-shaped inclined block. The second elastic member 12 is sleeved on the round shaft of the limiting block 11. The protection plate 3 is slidably matched with the one-way guiding groove of the machine shell 1 through a rotating shaft, and the protection plate 3 is slidably matched with the one-way groove. One end of the triangular prism of the limiting block 11 abuts against the protection plate 3 to fix the protection plate 3. At this time, the data displayed on the display screen of the mobile communication detection device can be observed through the window. When the operator needs to perform key operations, the protection plate 3 needs to be opened. At this time, by manually pushing one end of the L-shaped inclined block outwards, the protection plate 3 can be rotated 90° along the rotating shaft, and then the L-shaped inclined block is released. If the protection plate 3 needs to be fastened back, the same operation can be performed on the limiting block 11 again.

[0019] As Figure 3 shown in the figure, it further includes a third guiding ring 13, an upper push rod 14, a lower push rod 15 and a round rod 16. At the bottom left and right ends of the front panel of the detector 2, the third guiding rings 13 are symmetrically arranged. The round rods 16 are all slidably sleeved on the third guiding rings 13. An upper push rod 14 is arranged between the tops of the round rods 16. Both ends of the upper push rod 14 are inclined surfaces. One end of the inclined surface of the upper push rod 14 is slidably matched with the L-shaped inclined block of the limiting block 11. A lower push rod 15 is arranged on the lower surface of the round rod 16. If the two limiting blocks 11 are manually pushed to slide outwards to open and close the protection plate 3, it is rather troublesome. Since the round rod 16 fixes the upper push rod 14 and the lower push rod 15 together, by pushing the lower push rod 15 upwards, the upper push rod 14 also moves upwards. At the same time, the upper push rod 14 pushes the two L-shaped inclined blocks outwards. At this time, the protection plate 3 can be opened and closed. When the lower push rod 15 is released, under the action of gravity and the second elastic member 12, the upper push rod 14, the lower push rod 15 and the round rod 16 all slide down along the third guiding ring 13. Under the action of the second elastic member 12, the limiting block 11 resets. The above operation process is more convenient than manually pushing the limiting block 11.

[0020] As Figure 4As shown in the figure, it further includes positioning pins 17, positioning rods 18 and third elastic members 19. Circular through holes are opened at the four corners of the bottom of the housing 1 to place the positioning pins 17. The two positioning pins 17 on the left are fixed together by the positioning rod 18, and the two positioning pins 17 on the right are fixed together by the positioning rod 18. The third elastic members 19 are sleeved on the positioning pins 17. When working outdoors, the ground is often uneven. At this time, for safety reasons, the detector 2 needs to be fixed. By opening and rotating the protection plate 3 and pushing the protection plate 3 into the slot at the bottom of the detector 2, the protection plate 3 presses the positioning pins 17 downward at this time, and then the four positioning pins 17 are embedded into the ground, and the third elastic members 19 are compressed, and finally the purpose of fixing the detector 2 is achieved. After the protection plate 3 is pulled out, under the action of the third elastic members 19, the positioning pins 17 are reset.

[0021] Although the present disclosure has been shown and described with reference to specific exemplary embodiments thereof, those skilled in the art should understand that various changes in form and detail may be made therein without departing from the spirit and scope of the present disclosure as defined by the appended claims and their equivalents. Therefore, the scope of the present disclosure should not be limited to the above embodiments, but should be determined not only by the appended claims but also by the equivalents of the appended claims.

Claims

1. A mobile communication detection device, comprising a housing (1) and a detector (2), the detector (2) is embedded in the housing (1), and a handle is provided at the top of the housing (1), characterized in that, It further includes a protective plate (3), a grip (4), a filter net (5), a first guide ring (6), a push plate (7), a first elastic member (8), a cleaning panel (9) and a cleaning brush (901). Transverse one-word guide grooves are formed in the lower parts of the left and right walls of the housing (1), and a one-word groove is formed transversely in the lower part of the housing (1). A rotating shaft is installed at the lower part of the protective plate (3), and the protective plate (3) is slidably engaged with the one-word guide groove of the housing (1) through the rotating shaft, and the protective plate (3) is slidably engaged with the one-word groove. A grip (4) is provided in the middle of the upper surface of the protective plate (3). Long strip-shaped through holes are transversely formed at intervals on the left and right side walls of the housing (1), and filter nets (5) are provided on the inner sides. First guide rings (6) are symmetrically provided at the front and rear of the lower parts of the left and right side walls of the housing (1). A moving rod is slidably provided in each of the two first guide rings (6). A push plate (7) is provided between the bottom ends of the two moving rods. A cleaning panel (9) is provided between the top ends of the two moving rods. A cleaning brush (901) is provided on one side of the cleaning panel (9) close to the filter net (5). The cleaning brush (901) on the cleaning panel (9) is located between two adjacent long strip-shaped through holes of the housing (1). A first elastic member (8) is sleeved on each of the two moving rods. The top end of the first elastic member (8) abuts against the lower surface of the first guide ring (6), and the bottom end of the first elastic member (8) abuts against the upper surface of the push plate (7).

2. The mobile communication detection device according to claim 1, characterized in that, It further includes a second guide ring (10), a limit block (11) and a second elastic member (12). Second guide rings (10) are symmetrically provided on the left and right sides of the lower part of the front panel of the detector (2). The limit block (11) is slidably installed in the second guide ring (10) through a round shaft. The other end of the round shaft of the limit block (11) is connected with an L-shaped inclined block. A second elastic member (12) is sleeved on the round shaft of the limit block (11).

3. The mobile communication detection device according to claim 2, characterized in that, It further includes a third guide ring (13), an upper push rod (14), a lower push rod (15) and a round rod (16). Third guide rings (13) are symmetrically provided at the left and right ends of the bottom of the front panel of the detector (2). Round rods (16) are slidably sleeved in the third guide rings (13). An upper push rod (14) is provided between the top ends of the round rods (16). Both ends of the upper push rod (14) are inclined surfaces. One end of the inclined surface of the upper push rod (14) is slidably engaged with one end of the L-shaped inclined block of the limit block (11). A lower push rod (15) is provided on the lower surface of the round rod (16).

4. The mobile communication detection device according to claim 3, characterized in that, It further includes positioning pins (17), positioning rods (18) and third elastic members (19). Circular through holes are formed at the four corners of the bottom of the housing (1) for placing the positioning pins (17). The two left positioning pins (17) are fixed together through a positioning rod (18), and the two right positioning pins (17) are fixed together through a positioning rod (18). Third elastic members (19) are sleeved on the positioning pins (17).

5. The mobile communication detection device according to claim 4, characterized in that, A rectangular window is formed in the middle of the protective plate (3), and the window is made of a transparent material.

6. A mobile communication detection device according to claim 5, characterized in that, Grooves are closely formed at equal intervals on the bottom surface of the push plate (7).