Computer remote monitoring device
By designing a structure that combines a movable vertical pole and a rotating camera with insert blocks, positioning blocks, and elastic blocks, the problem of insufficient coverage in complex areas and camera inertial damage in traditional monitoring equipment is solved, achieving flexible monitoring and connection protection.
Patent Information
- Application Number
- CN202520552967.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-27
- Publication Date
- 2026-01-30
- Estimated Expiration
- 2035-03-27
AI Technical Summary
Traditional surveillance equipment has limited coverage in complex and ever-changing monitoring areas, and movable cameras are prone to damage to their connection structures due to inertia.
Design a computer remote monitoring device that uses a vertical rod that can move along a track and a camera that can rotate at the bottom, combined with a structure of insert blocks, positioning blocks and elastic blocks, and protects the camera connection structure through friction and buffering mechanisms.
It enables flexible monitoring in complex environments, reduces damage to camera connection structures, and improves the lifespan and stability of the equipment.
Smart Images

Figure CN223855246U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the technical field of monitoring equipment, specifically is a computer remote monitoring device. BACKGROUND
[0002] In today's society, whether it is in the field of security monitoring, or industrial production, intelligent warehousing and many other scenes, precise and flexible monitoring equipment is needed to ensure the safety of the area, the smooth progress of production and the normal operation of equipment, etc. The monitoring range of the traditional fixed camera is limited, and it is difficult to fully cover the complex and variable monitoring area. Although some movable cameras have certain mobility, they need to be stopped for observation at any time. Due to inertia, the connected structure will be damaged after long-term use, and cannot be buffered.
[0003] Therefore, the technical personnel in the art provide a computer remote monitoring device to solve the problem. UTILITY MODEL CONTENT
[0004] In order to solve the above problems, the utility model provides a computer remote monitoring device.
[0005] In order to achieve the above purpose, the technical scheme of the utility model is as follows:
[0006] A computer remote monitoring device, comprising a vertical rod that can move along the track, and a camera whose bottom end can rotate towards the moving direction, the head of the camera is downward and the rotation point is above the center of gravity of the camera;
[0007] The tail of the camera is rotatably installed with a connecting plate, one end of the connecting plate is rotatably installed with a plug block, and an adjusting frame is arranged on the vertical rod, and the plug block is inserted into the adjusting frame at the top;
[0008] The top of the plug block increases in width from top to bottom, and a plurality of hard arc blocks are uniformly fixed on one side of the top of the plug block, a positioning block decreasing in width from top to bottom is arranged in the adjusting frame, a plurality of arc-shaped elastic blocks made of elastic material are uniformly fixed on one side of the positioning block, V-shaped grooves are formed between adjacent elastic blocks, and the hard arc blocks are located between the V-shaped grooves.
[0009] Preferably, the adjusting frame is slidably sleeved on the vertical rod, and a hydraulic telescopic rod is fixedly installed on the vertical rod, and the output end of the hydraulic telescopic rod is fixedly connected with the adjusting frame.
[0010] Preferably, the top of the plug block is provided with a vertical section of a right triangle, the vertical section of the positioning block is provided with a right trapezoid, and the inclined surface of the top of the plug block is parallel to the inclined surface of the positioning block.
[0011] Preferably, the bottom of the positioning block is rotationally connected, and one side of the adjusting frame is provided with an adjusting column through screw mounting, and one end of the adjusting column abuts against one side of the positioning block.
[0012] Preferably, the contact surface of the inserting block and the adjusting frame is a vertical surface, and a gap is left between the inserting block and the positioning block and the inner top wall of the adjusting frame.
[0013] In summary, the utility model has the following beneficial technical effects:
[0014] After the camera suddenly stops in the moving process, the camera can extrude the connecting plate and rotate slightly due to inertia, and the inserting block is buffered upward, the hard arc-shaped block provides friction force through the V-shaped groove limiting, and the buffering effect is better upward, when the force generated by the inertia or collision of the camera is large, the hard arc-shaped block can pass the elastic block and enter the V-shaped groove above, and the connecting structure of the camera can be protected. BRIEF DESCRIPTION OF DRAWINGS
[0015] The disclosure of the utility model will be explained with reference to the drawings. It should be understood that the drawings are only for illustrative purposes, and are not intended to limit the scope of protection of the utility model. In the drawings, the same reference numerals are used to refer to the same parts. Among them:
[0016] Figure 1 is a schematic diagram of the overall structure of the utility model;
[0017] Figure 2 is a schematic diagram of the structure of the positioning block in the fixed state of the utility model;
[0018] Figure 3 is a schematic diagram of the structure of the positioning block in the rotating state of the utility model.
[0019] Reference numerals: 1, camera; 2, vertical rod; 3, adjusting frame; 4, connecting plate; 5, inserting block; 6, positioning block; 7, hard arc-shaped block; 8, elastic block; 9, adjusting column. DETAILED DESCRIPTION
[0020] It is easy to understand that according to the technical scheme of the utility model, a person skilled in the art can propose a plurality of structure modes and implementation modes which can be replaced with each other without changing the essential spirit of the utility model. Therefore, the following specific embodiments and drawings are only exemplary descriptions of the technical scheme of the utility model, and should not be regarded as the whole or as a limitation or restriction of the technical scheme of the utility model.
[0021] A computer remote monitoring device, with reference to Figures 1-2The vertical rod 2 can move along the track, and the camera 1 can rotate at the bottom end of the vertical rod 2 towards the moving direction, the head of the camera 1 is downward, and the rotation point is above the center of gravity of the camera 1, so that the camera 1 can naturally droop during movement, keep a relatively stable downward shooting angle, and can flexibly rotate around the rotation point when external force interference or the viewing angle needs to be adjusted.
[0022] The tail of the camera 1 is rotationally installed with a connecting plate 4, one end of the connecting plate 4 is rotationally installed with an insertion block 5, the vertical rod 2 is provided with an adjusting frame 3, the top of the insertion block 5 is inserted into the adjusting frame 3 due to the gravity overturning effect of the camera 1, and such a connection mode ensures the relative fixation between the camera 1 and the vertical rod 2.
[0023] The top of the insertion block 5 is sequentially increased in width from top to bottom, and a plurality of hard arc-shaped blocks 7 are uniformly and fixedly installed on one side of the top of the insertion block 5, the adjusting frame 3 is provided with positioning blocks 6 sequentially decreasing in width from top to bottom, a plurality of arc-shaped elastic blocks 8 made of elastic material are uniformly and fixedly installed on one side of the positioning blocks 6, V-shaped grooves are formed between adjacent elastic blocks 8, and the hard arc-shaped blocks 7 are located between the V-shaped grooves. After the camera 1 suddenly stops during movement, the camera 1 can extrude the connecting plate 4 and rotate slightly due to inertia, the insertion block 5 is buffered upward, the hard arc-shaped blocks 7 provide friction force through the limiting of the V-shaped grooves, and the buffering effect is better upward, when the force generated by inertia or collision of the camera 1 is large, the hard arc-shaped blocks 7 can pass through the elastic blocks 8 and enter the upper V-shaped grooves, so that damage to the connecting structure of the camera 1 is avoided. The connecting structure of the camera 1 can be protected.
[0024] The adjusting frame 3 is slidingly sleeved on the vertical rod 2, a hydraulic telescopic rod is fixedly installed on the vertical rod 2, and an output end of the hydraulic telescopic rod is fixedly connected with the adjusting frame 3. By controlling the extension and contraction of the hydraulic telescopic rod, the adjusting frame 3 can be driven to move up and down along the vertical rod 2, so that the height position of the camera 1 is adjusted, and the monitoring requirements of different height levels are met.
[0025] The vertical section of the top of the insertion block 5 is a right-angled triangle, the vertical section of the positioning block 6 is a right-angled trapezoid, and the inclined surfaces of the top of the insertion block 5 and the positioning block 6 are parallel. Such a structure design makes the insertion block 5 more smooth when being inserted into the adjusting frame 3, and the mutual extrusion between the inclined surfaces can be converted into a certain limiting force when external force acts, so that the stability of the connection is further enhanced.
[0026] Refer to Figure 3The bottom of the positioning block 6 is rotationally connected, and one side of the adjusting frame 3 is provided with an adjusting column 9 through screwing, and one end of the adjusting column 9 is in abutment with one side of the positioning block 6. The angle of the positioning block 6 can be finely adjusted by rotating the adjusting column 9, so that the extrusion degree between the elastic block 8 and the hard arc-shaped block 7 is changed, thereby accurately controlling the resistance of the rotation of the camera 1 and adapting to the requirement of flexibility of the camera 1 in different scenes.
[0027] The contact surface of the plug block 5 and the adjusting frame 3 is a vertical surface, and gaps are left between the plug block 5 and the positioning block 6 and the inner top wall of the adjusting frame 3. The vertical surface contact guarantees the stability of the plug block 5 in the vertical direction, and the existence of the gaps provides space for the slight deformation of the plug block 5 and the positioning block 6 in the adjusting process, so that the components are prevented from being damaged due to excessive extrusion.
[0028] The technical scope of the utility model is not limited to the content in the above description, and the above embodiment can be variously deformed and modified by those skilled in the art without departing from the technical thought of the utility model, and these deformations and modifications should all belong to the protection scope of the utility model.
Claims
1. A computer remote monitoring device, characterized by: Including the vertical pole (2) that can move along the track, and the camera (1) of bottom end can turn to the moving direction, the head of camera (1) is downward and the turning point is above the gravity center of camera (1); The tail of camera (1) is rotatably installed with connecting plate (4), one end of connecting plate (4) is rotatably installed with plug-in block (5), vertical pole (2) is provided with adjusting frame (3), and the top of plug-in block (5) is inserted into adjusting frame (3). The top of plug-in block (5) is increased in width from top to bottom, and a plurality of hard arc blocks (7) are uniformly fixed on one side of the top of plug-in block (5), a plurality of positioning blocks (6) decreasing in width from top to bottom are arranged in adjusting frame (3), a plurality of arc elastic blocks (8) made of elastic material are uniformly fixed on one side of positioning block (6), V-shaped grooves are formed between adjacent elastic blocks (8), and hard arc blocks (7) are located between V-shaped grooves.
2. The computer remote monitoring device of claim 1, wherein: Adjusting frame (3) is slidably sleeved on vertical pole (2), hydraulic telescopic rod is fixedly installed on vertical pole (2), and the output end of hydraulic telescopic rod is fixedly connected with adjusting frame (3).
3. The computer remote monitoring device of claim 2, wherein: The vertical section of the top of plug-in block (5) is a right triangle, the vertical section of positioning block (6) is a right trapezoid, and the inclined surface of the top of plug-in block (5) is parallel to the inclined surface of positioning block (6).
4. The computer remote monitoring device of claim 1, wherein: The bottom of positioning block (6) is rotatably connected, one side of adjusting frame (3) is threadedly installed with adjusting column (9), and one end of adjusting column (9) abuts against one side of positioning block (6).
5. A computer remote monitoring device according to claim 3 or 4, wherein: The contact surface of plug-in block (5) and adjusting frame (3) is a vertical surface, and a gap is left between plug-in block (5), positioning block (6) and the inner top wall of adjusting frame (3).