A portable benthic organism detection device

The foldable design and modular structure solve the problems of portability and ease of maintenance of benthic organism detection devices, thereby improving the portability and detection efficiency of the devices.

CN224553577UActive Publication Date: 2026-07-24DANDONG RUITE TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
DANDONG RUITE TECH CO LTD
Filing Date
2025-10-17
Publication Date
2026-07-24

AI Technical Summary

Technical Problem

Existing benthic organism detection devices occupy a large space when not in use, which is not conducive to field operations. The exposed monitor is easily damaged, and the integrated design makes it difficult to replace the host computer module when it is damaged, which affects the detection efficiency.

Method used

The device features a foldable design and is stored using a damping telescopic rod and a support rod. A magnetic limit plate and an elastic snap-fit ​​base facilitate the replacement of the host computer module. The module is precisely adjusted and fixed using a motor-driven lead screw and a sliding groove structure.

Benefits of technology

This technology enables the device to be portable and allows for quick replacement of the host computer module, reducing space occupation and the risk of damage, and improving testing efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a portable benthic organism detection device relates to benthic organism detection device technical field, including fixed stand, the fixed stand both sides are equipped with the sliding slot, the lower extreme fixed mounting of fixed stand has power supply carrier module, the upper end articulates of fixed stand and has the adjusting stand, the front side sliding connection of adjusting stand has host computer module, the utility model discloses through the damping telescopic link with the detection support frame drive detection function module retraction, cooperate the support rod fixed to the limit screw, make adjusting stand drive host computer module clockwise rotation ninety, realize the storage when reducing space occupation, the lens of host computer module and the support material table when storage, realize the protection of the lens of host computer module and the support material table when storage, the problem of the benthic organism detection device of current availability is solved when the space occupation is big, is unfavorable to go out operation, and the display is exposed to the outside when storing, is vulnerable to damage by impact.
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Description

Technical Field

[0001] This utility model relates to the technical field of benthic organism detection devices, specifically a portable benthic organism detection device. Background Technology

[0002] The benthic organism detection device consists of a light knob, a focus knob, a RUITE storage and computing shell, a detection function shell, and a function base shell. The core components include a power transformer, a light source, a board, and a touch screen. It can be stably powered by the camera and light, requires no professional knowledge, and ordinary users can directly detect the results. It has the advantages of fast response to fragmented tasks, can be used nearby, simplifies the process, and improves efficiency. However, existing benthic organism detection devices occupy a large space when not in use, which is not conducive to field operations. When stored, the monitor is exposed and easily damaged by impact. The existing benthic organism detection devices are made in one piece, and when the main computer module is damaged, there is no corresponding replacement equipment, which requires disassembly and maintenance, seriously affecting the detection efficiency. Utility Model Content

[0003] To address the shortcomings of existing technologies, this utility model provides a portable benthic organism detection device, which solves the problems of existing devices occupying a large space when not in use, which is not conducive to field operations, and the display being exposed when stored, making it easily damaged by impact; existing benthic organism detection devices are made in one piece, and when the host computer module is damaged, there is no corresponding replacement device, which requires disassembly and maintenance, seriously affecting the detection efficiency.

[0004] To achieve the above objectives, this utility model provides the following technical solution: a portable benthic organism detection device, comprising a fixed column with sliding grooves on both sides, a power supply module fixedly mounted at the lower end of the fixed column, an adjusting column hinged to the upper end of the fixed column, a host computer module slidably connected to the front side of the adjusting column, two elastic locking seats fixedly mounted on the lower wall of the host computer module, and a pair of support rods hinged to the front wall of the adjusting column, the connecting ends of the support rods being fixedly mounted with a locking mechanism. The elastic snap-fit ​​seat contains a limiting guide rod, the outer wall of which is slidably connected to a locking screw sleeve. A material support platform is fixedly installed on the power supply loading module. Two limiting screws that can engage with the locking screw sleeve are fixedly installed on the upper wall of the material support platform. A motor-driven lead screw is rotatably connected inside the fixed column. An adjusting frame connected to a sliding groove is screwed onto the lead screw. Two damping telescopic rods are fixedly installed on the adjusting frame. A detection support frame is fixedly installed at the telescopic ends of the two damping telescopic rods. A detection function module is slidably connected inside the detection support frame.

[0005] Preferably, the adjusting column has a slot fixedly provided inside, the bottom of the fixed column has a reset telescopic rod fixedly installed, the telescopic end of the reset telescopic rod has a limiting block that can be inserted into the slot, the outer wall of the limiting block has a pressing plate fixedly installed, and the fixed column has a limiting groove to limit the movement of the pressing plate.

[0006] Preferably, the insertion end of the limiting block has an assembly chamfer.

[0007] Preferably, the adjusting column is provided with a magnetic suction hole, and a magnetic suction limiting plate is inserted into the magnetic suction hole. Slides are provided on both sides of the adjusting column. The host computer module is connected to the slides via a slide bracket. When the magnetic suction limiting plate is fully inserted into the magnetic suction hole, it can be locked in the slot opened on the rear side of the host computer module, thereby limiting the movement of the host computer module along the length of the slide.

[0008] Preferably, when both damping telescopic rods are fully extended, the detection function module corresponds to the center of the material support platform.

[0009] Preferably, ball buckles are fixedly installed on both sides inside the detection support frame, and the detection function module is slidably connected to the ball buckles on both sides by opening guide grooves, and the ball buckles are engaged in the guide grooves by opening spherical grooves.

[0010] Preferably, the edge of the material support platform is provided with a safety chamfer.

[0011] Beneficial effects This invention provides a portable benthic organism detection device, which has the following beneficial effects: By retracting the damping telescopic rod through the detection support frame to drive the detection function module back, and fixing the support rod to the limit screw, the adjusting column drives the main computer module to rotate 90 degrees clockwise. This reduces the space occupied when storing the module, and ensures that the lens of the main computer module and the material support platform are aligned during storage, thus protecting both the lens and the material support platform. This solves the problems of existing benthic organism detection devices occupying too much space when not in use, which is not conducive to field operations, and the monitor being exposed and easily damaged by impacts when stored. By pulling out the magnetic limit plate along the magnetic hole and then removing the two elastic locking seats from the limit guide rod, the damaged main computer module can be replaced along the slide rail via the slide frame. This solves the problem that existing benthic organism detection devices are made in one piece, and when the main computer module is damaged, there is no corresponding replacement equipment, requiring alignment and disassembly for maintenance, which seriously affects detection efficiency. Attached Figure Description

[0012] Figure 1 This is a schematic diagram of the unfolded structure of this utility model; Figure 2 This is a schematic diagram of the storage structure of this utility model; Figure 3 This is a schematic diagram of the limiting block structure of this utility model; Figure 4 This is a schematic diagram of the adjustment frame structure of this utility model; Figure 5 This is a schematic diagram of the support rod structure of this utility model.

[0013] In the diagram: 1. Fixed column; 2. Slide rail; 3. Power supply and loading module; 4. Adjustable column; 5. Main computer module; 6. Flexible snap-fit ​​seat; 7. Support rod; 8. Limiting guide rod; 9. Locking screw; 10. Material support platform; 11. Limiting screw; 12. Lead screw; 13. Adjusting frame; 14. Damping telescopic rod; 15. Detection support frame; 16. Detection function module; 17. Slot; 18. Reset telescopic rod; 19. Limiting block; 20. Pressing plate; 21. Limiting groove; 22. Magnetic suction hole; 23. Magnetic suction limiting plate; 24. Slide rail; 25. Slide carriage; 26. Ball bearing buckle; 27. Guide groove; 28. Spherical groove. Detailed Implementation

[0014] The technical solutions of the present invention will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present invention.

[0015] Please see Figures 1-5 A portable benthic organism detection device includes a fixed column 1 with grooves 2 on both sides. A power supply module 3 is fixedly installed at the lower end of the fixed column 1. An adjusting column 4 is hinged to the upper end of the fixed column 1. A host computer module 5 is slidably connected to the front of the adjusting column 4. Two elastic locking seats 6 are fixedly installed on the lower wall of the host computer module 5. A pair of support rods 7 are hinged to the front wall of the adjusting column 4. A limiting guide rod 8 that can be locked into the elastic locking seat 6 is fixedly installed at the connecting end of the support rod 7. A locking nut 9 is slidably connected to the outer wall of the 8. A material support platform 10 is fixedly installed on the power supply and material carrying module 3. Two limiting screws 11 that can be screwed into the locking nut 9 are fixedly installed on the upper wall of the material support platform 10. A motor-driven lead screw 12 is rotatably connected inside the fixed column 1. An adjusting frame 13 connected to the slide groove 2 is screwed onto the lead screw 12. Two damping telescopic rods 14 are fixedly installed on the adjusting frame 13. A detection support frame 15 is fixedly installed at the telescopic ends of the two damping telescopic rods 14. A detection function module 16 is slidably connected inside the detection support frame 15.

[0016] Please see Figure 3The adjusting column 4 has a slot 17 fixedly installed inside. The bottom of the fixed column 1 is fixedly installed with a reset telescopic rod 18. The telescopic end of the reset telescopic rod 18 is fixedly installed with a limiting block 19 that can be inserted into the slot 17. The outer wall of the limiting block 19 is fixedly installed with a pressing plate 20. The fixed column 1 has a limiting groove 21 that limits the movement of the pressing plate 20.

[0017] Please see Figure 3 The insertion end of the limiting block 19 has an assembly chamfer, which reduces insertion resistance during use.

[0018] Please see Figure 1 The adjusting column 4 has a magnetic suction hole 22, and a magnetic suction limiting plate 23 is inserted into the magnetic suction hole 22. The adjusting column 4 has slide rails 24 on both sides. The host computer module 5 is connected to the slide rails 24 through the slide bracket 25. When the magnetic suction limiting plate 23 is fully inserted into the magnetic suction hole 22, it can be locked in the slot opened on the rear side of the host computer module 5, thereby limiting the host computer module 5 when it moves along the length of the slide rail 24.

[0019] Please see Figure 1 When the two damping telescopic rods 14 are fully extended, the detection function module 16 corresponds to the center of the material support platform 10.

[0020] Please see Figure 5 The detection support frame 15 has ball buckles 26 fixedly installed on both sides inside. The detection function module 16 is slidably connected to the ball buckles 26 on both sides by opening guide grooves 27. The ball buckles 26 are engaged in the guide grooves 27 by opening spherical grooves 28.

[0021] Please see Figure 1 The edge of the material tray 10 is provided with a safety chamfer. When in use, the safety chamfer prevents hands from being scratched and samples from being tested.

[0022] In Example 1, by retracting the detection function module 16 through the detection support frame 15 via the damping telescopic rod 14, and fixing it to the limit screw 11 with the support rod 7, the adjusting column 4 drives the host computer module 5 to rotate 90 degrees clockwise, thereby reducing space occupation during storage. During storage, the lens of the host computer module 5 corresponds to the material support platform 10, thus protecting the lens of the host computer module 5 and the material support platform 10 during storage.

[0023] Specifically, during storage, the operator first slides the detection function module 16 back to its original position along the ball buckle 26 of the detection support frame 15 (the ball buckle 26 enables quick adjustment of the height of the detection function module 16, and works with the lead screw 12 for precise focusing, increasing detection efficiency; the guide grooves 27 on both sides of the detection function module 16, in conjunction with the ball buckle 26, restrict the rotational freedom of the detection function module 16, keeping the lens of the detection function module 16 facing downwards). Then, the operator pushes the detection function module 16 through the detection support frame 15 to retract the two damping telescopic rods 14 to their minimum length. The detection support frame 15 and the detection function module 16 are close to the fixed column 1 to avoid protrusion and space occupation during storage. Then, the motor-driven lead screw 12 inside the fixed column 1 is activated. The lead screw 12 drives the adjustment frame 13 to move downwards along the slide groove 2, so that the detection end of the detection function module 16 is close to the material support table 10. At this time, the detection lens of the detection function module 16 can be protected by the material support table 10. Then, press the pressing plate 20 downward along the limiting groove 21. The pressing plate 20 drives the limiting block 19 to move downward. The limiting block 19 compresses the reset telescopic rod 18, so that the limiting block 19 is dislodged from the slot 17 in the adjusting column 4. Then, rotate the adjusting column 4 clockwise 90 degrees around the hinge point of the fixed column 1 until the adjusting column 4 is perpendicular to the fixed column 1. At this time, the lens of the host computer module 5 faces the material support table 10, and the limiting guide rod 8 corresponds to the upper part of the limiting screw 11. At this time, rotate the locking sleeve 9 around the limiting screw 11 to lock the locking sleeve 9 on the limiting screw 11. The adjusting column 4 can then be supported by the support rod 7 to complete the storage.

[0024] In Example 2, the damaged host computer module 5 can be replaced by pulling out the magnetic limit plate 23 along the magnetic hole 22 and then removing the two elastic snap-fit ​​seats 6 from the limit guide rod 8, and then moving along the slide 24 through the slide frame 25.

[0025] Specifically, if the host computer module 5 malfunctions, the support rod 7 will cause the limiting guide rod 8 to disengage from the elastic snap-fit ​​seat 6, and the magnetic limiting plate 23 will be pulled out along the magnetic suction hole 22 (if it is in the unfolded state, one hand needs to hold the host computer module 5), releasing its fixation to the host computer module 5; then, hold both sides of the host computer module 5 with both hands and pull it outward along the slide 24 of the adjusting column 4. The slide 25 will slide with the host computer module 5 until the slide 25 is completely disengaged from the slide 24. Remove the malfunctioning host computer module 5, and then replace it with a new host computer module 5.

[0026] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A portable benthic organism detection device, characterized in that, The system includes a fixed column (1), with sliding grooves (2) on both sides. A power supply module (3) is fixedly installed at the lower end of the fixed column (1). An adjusting column (4) is hinged to the upper end of the fixed column (1). A host computer module (5) is slidably connected to the front side of the adjusting column (4). Two elastic locking seats (6) are fixedly installed on the lower wall of the host computer module (5). A pair of support rods (7) are hinged to the front wall of the adjusting column (4). A limiting guide rod (8) that can be locked in the elastic locking seat (6) is fixedly installed at the connecting end of the support rod (7). The outer wall of the limiting guide rod (8) slides. A locking sleeve (9) is connected to the power supply loading module (3), and a material support platform (10) is fixedly installed on the power supply loading module (3). Two limiting screws (11) that can be screwed into the locking sleeve (9) are fixedly installed on the upper wall of the material support platform (10). A motor-driven lead screw (12) is rotatably connected inside the fixed column (1). An adjustment frame (13) connected to the slide groove (2) is screwed onto the lead screw (12). Two damping telescopic rods (14) are fixedly installed on the adjustment frame (13). A detection support frame (15) is fixedly installed at the telescopic ends of the two damping telescopic rods (14). A detection function module (16) is slidably connected inside the detection support frame (15).

2. The portable benthic organism detection device according to claim 1, characterized in that, The adjusting column (4) has a slot (17) fixedly opened inside. The bottom of the fixed column (1) is fixedly installed with a reset telescopic rod (18). The telescopic end of the reset telescopic rod (18) is fixedly installed with a limiting block (19) that can be inserted into the slot (17). The outer wall surface of the limiting block (19) is fixedly installed with a pressing plate (20). The fixed column (1) has a limiting groove (21) that restricts the movement of the pressing plate (20).

3. The portable benthic organism detection device according to claim 2, characterized in that, The insertion end of the limiting block (19) has an assembly chamfer.

4. The portable benthic organism detection device according to claim 1, characterized in that, The adjusting column (4) is provided with a magnetic suction hole (22), and a magnetic suction limiting plate (23) is inserted into the magnetic suction hole (22). The adjusting column (4) is provided with slide rails (24) on both sides. The host computer module (5) is connected to the slide rails (24) through the slide bracket (25). When the magnetic suction limiting plate (23) is fully inserted into the magnetic suction hole (22), it can be locked in the slot opened on the rear side of the host computer module (5) to limit the host computer module (5) when it moves along the length direction of the slide rail (24).

5. A portable benthic organism detection device according to claim 1, characterized in that, When the two damping telescopic rods (14) are fully extended, the detection function module (16) corresponds to the center of the material support platform (10).

6. A portable benthic organism detection device according to claim 1, characterized in that, The detection support frame (15) has ball buckles (26) fixedly installed on both sides inside. The detection function module (16) is slidably connected to the ball buckles (26) by opening guide grooves (27) on both sides. The guide grooves (27) are engaged with the ball buckles (26) by opening spherical grooves (28).

7. A portable benthic organism detection device according to claim 1, characterized in that, The edge of the material support platform (10) is provided with a safety chamfer.