A mobile device for a monitor

CN224608448UActive Publication Date: 2026-08-07HANGZHOU SOTRY AUTOMATIC CONTROL TECH
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
HANGZHOU SOTRY AUTOMATIC CONTROL TECH
Filing Date
2025-07-16
Publication Date
2026-08-07

AI Technical Summary

Technical Problem

传统监测仪移动小车通常仅作为单一的运输与保护载具,作业时需将监测仪主机从柜体内取出并重新安装,操作流程繁琐且耗时,难以满足现场快速部署的需求,一定程度上影响了作业效率

Benefits of technology

1、本实用新型通过第一滑轨、气弹簧和第一连接板的作用,可以实现将监测仪主机从主机仓内转动至操作台面并通过滑轨滑动到合适位置,从而使得本实用新型转换成监测仪主机的操作平台,便于本实用新型在移动至作业场地后进行工作,使用较为灵活,提高了作业效率。此外本实用新型通过顶盖上翻转设置的遮光板,能够有效遮挡外界强光(如日光)对监测仪主机屏幕的直接照射,避免反光干扰。

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Abstract

The utility model discloses a mobile device of monitoring appearance, including mobile cabinet body, be equipped with a plurality of walking wheels under mobile cabinet body, the hinged top cover of mobile cabinet body, and the top cover is equipped with the light shield that can overturn, the upper portion of mobile cabinet body is equipped with the host computer warehouse, and the host computer warehouse is equipped with the frame of fixed monitoring appearance host computer in, the bottom of host computer warehouse is equipped with the baffle of support frame use, the both side walls of host computer warehouse are equipped with the first sliding rail symmetry, and the first sliding rail is equipped with the first connecting plate of sliding on, and the first connecting plate is equipped with the gas spring, and the telescopic end of gas spring is connected with the frame, the first connecting plate is rotatably connected with the frame. The utility model discloses can convert into the operation platform of monitoring appearance host computer, can also avoid the reflection of monitoring appearance host computer screen caused by the sunlight direct -shooting, has the advantage that the flexibility is strong and the operation is convenient.
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Description

Technical Field

[0001] This utility model belongs to the technical field of auxiliary devices for monitoring equipment, and in particular relates to a mobile device for a monitoring instrument. Background Technology

[0002] In the field of engineering monitoring, the functionality and performance of existing mobile monitoring devices still have room for improvement. Traditional mobile monitoring trolleys typically serve only as a transport and protection vehicle. During operation, the main unit of the monitoring device must be removed from the cabinet and reinstalled, a cumbersome and time-consuming process that fails to meet the needs of rapid on-site deployment and impacts operational efficiency. Furthermore, traditional cabinets lack a structural design that can be converted into an operating platform; after the equipment is retrieved and placed, an additional support platform must be built, resulting in insufficient flexibility.

[0003] Regarding ease of operation, existing devices rely heavily on manual operation for moving and adjusting the monitoring unit, lacking labor-saving auxiliary mechanisms. This issue becomes even more pronounced when frequently switching work environments. Furthermore, when operating outdoors, traditional devices generally lack effective sunshade structures, allowing direct sunlight to cause glare on the monitoring unit screen, affecting data reading and operational accuracy.

[0004] Given the problems existing in the above-mentioned technologies, how to develop a mobile monitoring device that can not only flexibly transform a mobile vehicle into an operating platform, but also avoid direct sunlight in outdoor locations has become an urgent research topic in the industry. Utility Model Content

[0005] The purpose of this invention is to provide a mobile device for a monitoring instrument. This invention can be converted into an operating platform for the monitoring instrument's main unit and can also avoid glare on the main unit's screen caused by direct sunlight, offering advantages such as high flexibility and ease of operation.

[0006] The technical solution of this utility model is as follows: A mobile device for a monitoring instrument includes a mobile cabinet with multiple wheels at the bottom; a top cover is hinged to the mobile cabinet, and the top cover has a flip-up light shield; a main unit compartment is located at the top of the mobile cabinet, and a frame for fixing the main unit of the monitoring instrument is located inside the main unit compartment; a partition for supporting the frame is located at the bottom of the main unit compartment; first slide rails are symmetrically arranged on both side walls of the main unit compartment, and first connecting plates are slidably arranged on the first slide rails; gas springs are arranged on the first connecting plates, and the extension and retraction ends of the gas springs are connected to the frame; the first connecting plates are rotatably connected to the frame.

[0007] In the aforementioned mobile device of the monitoring instrument, a seated spherical bearing is fixed on the first connecting plate, and a rotating rod is rotatably fitted on the seated spherical bearing. The other end of the rotating rod is fixed on the frame. The first connecting plate and the frame are rotatably fitted through the rotating rod and the seated spherical bearing.

[0008] In the aforementioned mobile device of the monitoring instrument, a monitoring instrument compartment for a fixed strain monitoring instrument and a laser emitting device, as well as a tripod compartment for a tripod and an adjustment device, are also provided below the main unit compartment.

[0009] In the aforementioned moving device of the monitoring instrument, the side wall of the monitoring instrument compartment is provided with a second slide rail, and a second connecting plate is slidably mounted on the second slide rail. The strain monitoring instrument and the laser emitting device are fixed on the second connecting plate.

[0010] In the aforementioned moving device of the monitoring instrument, the second connecting plate is provided with a plurality of first blocks that cooperate with the strain monitoring instrument and a second block that cooperates with the laser emitting device; the sides of the strain monitoring instrument and the laser emitting device are provided with a plurality of first pull rings, and a first tensioning band is connected between the first pull rings in the same group. A first buckle is threaded through the first tensioning band, and the strain monitoring instrument and the laser emitting device are fixed on the second connecting plate by the first tensioning band and the first buckle.

[0011] In the aforementioned moving device of the monitoring instrument, the side wall of the tripod compartment is provided with a third slide rail, and a third connecting plate is slidably mounted on the third slide rail. The adjusting device and the tripod are fixed on the third connecting plate.

[0012] In the aforementioned moving device of the monitoring instrument, the third connecting plate is provided with multiple third stops that cooperate with the adjustment device; the tripod and the side of the adjustment device are provided with multiple sets of second pull rings, and a second tensioning strap is connected between the second pull rings in the same set. A second buckle is threaded through the second tensioning strap, and the adjustment device and the tripod are fixed to the third connecting plate by the second tensioning strap and the second buckle.

[0013] In the aforementioned mobile device for the monitoring instrument, the front side of the mobile cabinet is provided with cabinet doors corresponding to the monitoring instrument compartment and the tripod compartment, and the cabinet doors are provided with air inlet filters that communicate with the tripod compartment; the cabinet doors are provided with a first sealing strip that seals with the mobile cabinet; and the top cover is provided with a second sealing strip that seals with the mobile cabinet.

[0014] In the aforementioned mobile device of the monitoring instrument, a set of rotary support rods that are hinged to the light shield are provided inside the top cover, and one end of the light shield is hinged to the top cover; a spring-type hinge is provided at the hinge point between the mobile cabinet and the top cover.

[0015] In the aforementioned mobile device for the monitoring instrument, the rear side of the mobile cabinet is equipped with an exhaust fan and a socket corresponding to the monitoring instrument compartment, and the exhaust fan and the socket are electrically connected.

[0016] Compared with the prior art, the present invention has the following beneficial effects: 1. This utility model, through the action of the first slide rail, gas spring, and first connecting plate, allows the monitoring instrument main unit to be rotated from the main unit compartment to the operating table and then slid to a suitable position via the slide rail. This transforms the utility model into an operating platform for the monitoring instrument main unit, facilitating operation after it is moved to the work site. It offers greater flexibility and improves work efficiency. Furthermore, the utility model's flip-up light-shielding plate on the top cover effectively blocks direct sunlight (such as sunlight) from illuminating the monitoring instrument main unit screen, preventing glare interference.

[0017] 2. This utility model integrates the originally scattered monitoring instrument host, strain monitoring instrument, laser emitting device, tripod and adjustment device into a unified mobile cabinet. The compartmentalized storage allows each type of equipment to be in its proper place, avoiding scattered stacking and collisions during transportation, and improving the efficiency of equipment management and transportation.

[0018] 3. The cabinet door and top cover of this utility model are respectively provided with a first sealing strip and a second sealing strip, which can effectively prevent external pollutants such as dust and moisture from entering the cabinet. This provides a relatively clean and dry storage and transportation environment for precision instruments. In addition, the air inlet filter and exhaust fan of this utility model constitute an active ventilation and heat dissipation system, which can promptly remove the heat generated during equipment operation, maintain a suitable working temperature inside the cabinet, and improve the device's adaptability to different working environments (especially dusty, humid or high-temperature environments). Attached Figure Description

[0019] Figure 1 This is a side view of the internal structure of this utility model; Figure 2 This is a rear view of the internal structure of this utility model; Figure 3 As shown Figure 1 A sectional view of the movable cabinet along direction AA; Figure 4 As shown Figure 2 A cross-sectional view of the movable cabinet along the BB direction; Figure 5 As shown Figure 2 A magnified view of part C shown; Figure 6 This is a schematic diagram of the use of this utility model.

[0020] The labels in the attached diagram are as follows: 1. Main unit of the monitoring instrument; 2. Strain monitoring instrument; 3. Laser emitting device; 4. Tripod; 5. Adjustment device; 6. Mobile cabinet; 7. Wheels; 8. Top cover; 9. Sunshade; 10. Main unit compartment; 11. Monitoring instrument compartment; 12. Tripod compartment; 13. Partition; 14. Frame; 15. First slide rail; 16. First connecting plate; 17. Gas spring; 18. Sealed spherical bearing; 19. Rotating rod; 20. Second slide rail; 21. Second connecting plate; 211. First stop block; 212. Second stop block; 213. First pull ring; 214. First tension band; 215. First buckle; 22. Third slide rail; 23. Third connecting plate; 231. Third stop block; 232. Second pull ring; 233. Second tension band; 234. Second buckle; 24. Cabinet 25. Door; 26. Air inlet filter; 27. First sealing strip; 28. Rotary support rod; 29. ​​Second sealing strip; 30. Exhaust fan; 31. Socket; 32. Keyboard; 33. Handle; 44. Spring hinge. Detailed Implementation

[0021] The present invention will be further described below with reference to the accompanying drawings and embodiments, but this should not be construed as limiting the present invention.

[0022] Example: A mobile device for a monitoring instrument, configured as follows Figure 1 and 2As shown, the device used to house the monitoring unit 1, strain monitor 2, laser emitting device 3, tripod 4, and adjustment device 5 includes a movable cabinet 6. The movable cabinet 6 has four wheels 7 for easy movement and turning of the entire device. A top cover 8 is hinged to the movable cabinet 6, and a spring-type hinge 33 connects the movable cabinet 6 to the top cover 8. The top cover 8 has a flip-up light shield 9, and inside the top cover 8 is a set of rotating support rods 27 hinged to the light shield 9. The rotating support rods 27 can be commercially available, such as the MISUMI STYRL150 rotating support rod. One end of the light shield 9 is hinged to the top cover 8 to block light during outdoor operations, improving the viewing conditions of the monitoring unit 1 screen. The upper part of the mobile cabinet 6 is equipped with a main unit compartment 10, which houses a rack 14 for fixing the main monitoring instrument 1. Below the main unit compartment 10, there is a monitoring instrument compartment 11 for fixing the strain monitor 2 and the laser emitting device 3, as well as a tripod compartment 12 for tripods 4 and adjustment devices 5, used for classifying and storing different monitoring devices. This device integrates the originally scattered main monitoring instrument 1, strain monitor 2, laser emitting device 3, tripods 4, and adjustment devices 5 into a unified mobile cabinet 6. The compartmentalized storage ensures that each type of equipment is properly positioned, avoiding scattered stacking and collisions during transportation, and improving the efficiency of equipment management and transportation. The device effectively blocks strong external light (such as sunlight) from directly illuminating the screen of the main monitoring instrument 1 through a flip-up light shield 9 on the top cover 8, avoiding glare interference. A partition 13 separates the main unit compartment 10 and the monitoring instrument compartment 11, and the partition 13 supports the rack 14. One end of the rack 14 is also equipped with a handle 32. The main unit compartment 10 has symmetrical first slide rails 15 on both side walls. A first connecting plate 16 slides along the first slide rail 15, and a gas spring 17 is mounted on the first connecting plate 16. The telescopic end of the gas spring 17 is connected to the frame 14 to assist in the lifting and lowering adjustment of the frame 14, making it more effortless. When it is necessary to lift the main unit 1, the operator can hold the handle 32 and apply force using the handle 32. Combined with the lifting assistance of the gas spring 17 and the rotational connection between the seated spherical bearing 18 and the rotating rod 19, the frame 14 can be pushed or pulled more easily and conveniently, allowing the frame 14 to slide inward and outward along the first slide rail 15 within a certain range. This allows for the adjustment of the main unit 1, adapting to the needs of different operators or optimizing the operating space, making the adjustment process more effortless and easier to control. The first connecting plate 16 is rotatably connected to the frame 14. Specifically, this rotating connection can be achieved through the following structure: a seated spherical bearing 18 is fixed on the first connecting plate 16, and a rotating rod 19 is rotatably fitted on the seated spherical bearing 18. The other end of the rotating rod 19 is fixed to the frame 14. The first connecting plate 16 and the frame 14 are rotatably fitted through the rotating rod 19 and the seated spherical bearing 18, which allows for convenient adjustment of the height and pitch angle of the monitoring instrument main unit 1, and enables the monitoring instrument main unit 1 to slide inward and outward within a certain range along the slide rail, so as to adapt to the needs of different operators or optimize the operating space.The front end of the monitoring unit 1 is also hinged with a keyboard 31, which can realize the flip function. The side wall of the monitoring unit compartment 11 is provided with a second slide rail 20, and a second connecting plate 21 is slidably mounted on the second slide rail 20. Figure 3 As shown Figure 1 The cross-sectional view of the movable cabinet along direction AA shows that the second connecting plate 21 is equipped with four first stops 211 that cooperate with the strain monitor 2 and two second stops 212 that cooperate with the laser emitting device 3. The sides of the strain monitor 2 and the laser emitting device 3 are each equipped with two sets of first pull rings 213. A first tensioning strap 214 connects the first pull rings 213 in the same set, and a first buckle 215 passes through the first tensioning strap 214. Through the first stops 211, second stops 212, first tensioning strap 214, and first buckle 215, the device can securely fasten the strain monitor 2 and the laser emitting device 3 to the second connecting plate 21, preventing them from shaking or being damaged during movement or transportation. The side wall of the tripod compartment 12 is equipped with a third slide rail 22, on which a third connecting plate 23 slides. Figure 4 As shown Figure 2 The cross-sectional view of the movable cabinet along direction BB shows that the third connecting plate 23 is equipped with two third stops 231 that cooperate with the adjusting device 5. The sides of the tripod 4 and the adjusting device 5 are each equipped with two sets of second pull rings 232. A second tensioning strap 233 connects the second pull rings 232 in the same set, and a second buckle 234 passes through the second tensioning strap 233. Through the third stops 231, the second tensioning strap 233, and the second buckle 234, the device can also securely fix the tripod 4 and the adjusting device 5 to the third connecting plate 23. This device, through the design of the slide rails and connecting plates equipped in each compartment, allows operators to easily and quickly pull out or push back the required equipment (such as the monitoring host 1, the monitoring instrument, the tripod 4, etc.) from the cabinet, greatly shortening the deployment and retrieval time of the equipment and improving the overall response speed and work efficiency of on-site operations.

[0023] The front side of the mobile cabinet 6 has cabinet doors 24 corresponding to the monitoring instrument compartment 11 and the tripod compartment 12. The cabinet doors 24 have an air inlet filter 25 that communicates with the tripod compartment 12, used to filter incoming air during ventilation. The cabinet doors 24 have a first sealing strip 26 that seals with the mobile cabinet 6. The top cover 8 has a second sealing strip 28 that seals with the mobile cabinet 6. The rear side of the mobile cabinet 6 has an exhaust fan 29 and a socket 30 corresponding to the monitoring instrument compartment 11. The exhaust fan 29 and socket 30 are electrically connected. The exhaust fan 29 is commercially available and can integrate a dust filter, providing both heat dissipation and ventilation while preventing dust intrusion. The socket 30 is also commercially available, preferably made of solid brass with nickel plating, offering good conductivity and an IP44 protection rating to prevent dust and moisture intrusion, meeting indoor usage standards. Combined with the sealed design of the mobile cabinet 6, it can operate stably and reliably in various indoor environments. When powered on, the exhaust fan 29 operates, working in conjunction with the inlet air filter 25 to create airflow and remove internal heat. The cabinet door 24 and top cover 8 are equipped with a first sealing strip 26 and a second sealing strip 28, respectively, which effectively prevent external contaminants such as dust and moisture from entering the cabinet, providing a relatively clean and dry storage and transportation environment for precision instruments. Furthermore, the inlet air filter 25 and exhaust fan 29 constitute an active ventilation and heat dissipation system, which can promptly remove the heat generated during equipment operation, maintain a suitable operating temperature inside the cabinet, and enhance the device's adaptability to different operating environments (especially dusty, humid, or high-temperature environments).

[0024] This invention, through the action of the first slide rail 15, the gas spring 17, and the first connecting plate 16, allows the monitoring unit 1 to be rotated from the main unit compartment 10 to the tabletop, thus transforming the invention into an operating platform for the monitoring unit 1. This facilitates operation after the invention is moved to the work site, making it more flexible and improving work efficiency. Furthermore, the invention, through the flip-up light-shielding plate 9 on the top cover 8, effectively blocks direct sunlight (such as sunlight) from shining on the screen of the monitoring unit 1, avoiding glare interference.

[0025] Work process When the monitoring device is in operation, it is first pushed to the work site by the bottom wheels 7 and then braked and fixed. Then, the top cover 8 is flipped upwards. The top cover 8 can be kept open by the elastic force of the spring hinge 33. At the same time, the angle of the sunshade 9 is adjusted by the rotary support rod 27 to form a sunshade structure. By holding the handle 32 and applying force with the help of the handle 32, the gas spring 17 assists in pushing the first connecting plate 16, which, together with the seated spherical bearing 18 and the rotating rod 19, adjusts the main unit 1 of the monitoring device on the frame 14 to the operating table. Figure 5 As shown Figure 2A partially enlarged view of section C is shown. After flipping down the keyboard 31, slide the frame 14 inward along the first slide rail 15. Then open the cabinet door 24, pull the second connecting plate 21 on the second slide rail 20 of the monitor compartment 11 outward, untie the first tension strap 214 and the first buckle 215 to remove the strain monitor 2 and the laser emitting device 3. Pull the third connecting plate 23 on the third slide rail 22 of the tripod compartment 12 outward, untie the second tension strap 233 and the second buckle 234 to remove the tripod 4 and the adjustment device 5 for installation and arrangement, as shown. Figure 6 As shown. After the operation is completed, the equipment is returned to the corresponding compartment, reset, the cabinet door 24 and top cover 8 are closed, the brakes on the traveling wheels 7 are released, and the device is moved to the next location or storage area. When stored, the first sealing strip 26 and the second sealing strip 28 of the cabinet door 24 and top cover 8 seal the interior, and the air inlet filter 25 of the front cabinet door 24 and the exhaust fan 29 of the rear side are energized to form air circulation and heat dissipation.

[0026] In summary, this utility model can be converted into an operating platform for the monitoring instrument host, and can also avoid glare on the monitoring instrument host screen caused by direct sunlight, thus having the advantages of high flexibility and convenient operation.

Claims

1. A mobile device for a monitoring instrument, comprising a mobile cabinet (6) with a plurality of wheels (7) below the mobile cabinet (6); characterized in that: The mobile cabinet (6) is hinged with a top cover (8), which has a flip-up light shield (9). The upper part of the mobile cabinet (6) is provided with a main unit compartment (10), and the main unit compartment (10) is provided with a frame (14) for fixing the main unit (1) of the monitoring instrument. The bottom of the main unit compartment (10) is provided with a partition (13) for supporting the frame (14). The two side walls of the main unit compartment (10) are symmetrically provided with first slide rails (15), and a first connecting plate (16) is slidably provided on the first slide rails (15). A gas spring (17) is provided on the first connecting plate (16), and the telescopic end of the gas spring (17) is connected to the frame (14). The first connecting plate (16) is rotatably connected to the frame (14).

2. The mobile device of the monitoring instrument according to claim 1, characterized in that: A seated spherical bearing (18) is fixed on the first connecting plate (16), and a rotating rod (19) is rotatably fitted on the seated spherical bearing (18). The other end of the rotating rod (19) is fixed on the frame (14). The first connecting plate (16) and the frame (14) are rotatably fitted through the rotating rod (19) and the seated spherical bearing (18).

3. The mobile device of the monitoring instrument according to claim 1, characterized in that: Below the main unit compartment (10) is a monitoring instrument compartment (11) for a fixed strain monitoring instrument (2) and a laser emitting device (3), as well as a tripod compartment (12) for a tripod (4) and an adjustment device (5).

4. The mobile device of the monitoring instrument according to claim 3, characterized in that: The side wall of the monitoring instrument compartment (11) is provided with a second slide rail (20), and a second connecting plate (21) is slidably provided on the second slide rail (20). The strain monitoring instrument (2) and the laser emitting device (3) are fixed on the second connecting plate (21).

5. The mobile device of the monitoring instrument according to claim 4, characterized in that: The second connecting plate (21) is provided with a plurality of first stops (211) that cooperate with the strain monitor (2) and a second stop (212) that cooperate with the laser emitting device (3); the strain monitor (2) and the laser emitting device (3) are provided with a plurality of first pull rings (213) on their sides, and a first tensioning band (214) is connected between the first pull rings (213) in the same group. A first buckle (215) is threaded through the first tensioning band (214), and the strain monitor (2) and the laser emitting device (3) are fixed on the second connecting plate (21) by the first tensioning band (214) and the first buckle (215).

6. The mobile device of the monitoring instrument according to claim 3, characterized in that: The side wall of the tripod compartment (12) is provided with a third slide rail (22), and a third connecting plate (23) is slidably provided on the third slide rail (22). The adjustment device (5) and the tripod (4) are fixed on the third connecting plate (23).

7. The mobile device of the monitoring instrument according to claim 6, characterized in that: The third connecting plate (23) is provided with a plurality of third stops (231) that cooperate with the adjusting device (5); the tripod (4) and the adjusting device (5) are provided with a plurality of second pull rings (232) on their sides, and a second tensioning strap (233) is connected between the second pull rings (232) in the same group. A second buckle (234) is threaded through the second tensioning strap (233). The adjusting device (5) and the tripod (4) are fixed on the third connecting plate (23) by the second tensioning strap (233) and the second buckle (234).

8. The mobile device of the monitoring instrument according to claim 3, characterized in that: The front side of the mobile cabinet (6) is provided with cabinet doors (24) corresponding to the monitoring instrument compartment (11) and the tripod compartment (12). The cabinet doors (24) are provided with air inlet filters (25) that communicate with the tripod compartment (12). The cabinet doors (24) are provided with a first sealing strip (26) that seals with the mobile cabinet (6). The top cover (8) is provided with a second sealing strip (28) that seals with the mobile cabinet (6).

9. The mobile device of the monitoring instrument according to claim 1, characterized in that: The top cover (8) is provided with a set of rotating support rods (27) that are hinged to the light shield (9). One end of the light shield (9) is hinged to the top cover (8). The movable cabinet (6) is provided with a spring-type hinge (33) at the hinge point between it and the top cover (8).

10. The mobile device of the monitoring instrument according to claim 1, characterized in that: The rear side of the mobile cabinet (6) is equipped with an exhaust fan (29) and a socket (30) corresponding to the monitoring instrument compartment (11), and the exhaust fan (29) and the socket (30) are electrically connected.