Thermal imaging equipment industrial personal computer support

By designing an industrial computer bracket for thermal imaging equipment with an overall frame, rotating device, and lifting mechanism, the problems of large footprint and high cost of existing industrial computer brackets have been solved, achieving miniaturization, low cost, and convenient installation, thus improving the performance.

CN223782559UActive Publication Date: 2026-01-09SUZHOU ZHONGHE LIANCHENG TECH CO LTD
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Patent Information

Application Number
CN202520652762.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-09
Publication Date
2026-01-09
Estimated Expiration
2035-04-09

AI Technical Summary

Technical Problem

Existing industrial computer brackets occupy a large area, are inconvenient to install and use, and are costly.

Method used

Design a thermal imaging equipment industrial control computer bracket that includes an overall frame, a rotating device, and a lifting mechanism. The rotating device adjusts the monitor angle, the lifting mechanism adjusts the height, and the combination of keyboard mounting bracket and support structure optimizes space utilization and stability.

Benefits of technology

This invention provides an industrial control computer bracket that is small in footprint, easy to install and use, reduces overall costs, and improves the ease of use and stability for operators.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223782559U_ABST
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Abstract

The utility model discloses a thermal imaging equipment industrial personal computer support which comprises an overall frame, the overall frame comprises a supporting frame horizontally arranged at the bottom, a fixing rod is vertically arranged in the middle of the supporting frame, a displayer is arranged at the top end of the fixing rod, a case cabinet is arranged on the bottom side of the fixing rod, and a rotating device is connected between the displayer and the top end of the fixing rod. A lifting mechanism is arranged at the position, located on the upper portion of the machine box cabinet, of the fixing rod, a keyboard installation frame is arranged at the position, located at the bottom of the displayer, of the rotating device, and a keyboard is arranged on the keyboard installation frame. Meanwhile, the rotating device and the lifting mechanism are arranged to adjust the angle and the height of the displayer on the overall frame in the using process, and an operator can use the displayer conveniently.
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Description

Technical Field

[0001] This utility model belongs to the field of thermal imaging equipment industrial control computer bracket equipment, specifically a thermal imaging equipment industrial control computer bracket. Background Technology

[0002] Most existing industrial control computers are console-style control cabinets. In use, console-style industrial control computers occupy a large area and have a relatively complex overall layout. The overall cost is high during installation and use. Therefore, it is necessary to design an industrial control computer bracket with a simple structure and small footprint to improve the performance. Utility Model Content

[0003] In view of the shortcomings of the existing technology, the purpose of this utility model is to provide a thermal imaging equipment industrial control computer bracket to solve the problems of existing industrial control computer brackets having a large footprint and being inconvenient to install and use.

[0004] To achieve the above objectives, this utility model provides the following technical solution: a thermal imaging equipment industrial computer bracket, comprising an overall frame, a horizontally positioned support frame at the bottom, a vertically positioned fixed rod in the middle of the support frame, a display at the top of the fixed rod, a cabinet at the bottom of the fixed rod, a rotating device connecting the display and the top of the fixed rod, a lifting mechanism on the fixed rod located above the cabinet, and a keyboard mounting bracket on the rotating device located below the display, with a keyboard mounted on the keyboard mounting bracket. By setting the overall frame as an industrial computer bracket and simultaneously providing the rotating device and lifting mechanism, the angle and height of the display on the overall frame can be adjusted during use, facilitating operation.

[0005] The preferred structure of this solution includes baffles at both ends and the inner side of the keyboard mounting bracket, and corner plates on the outer side of the keyboard mounting bracket. The keyboard is placed by setting up the keyboard mounting bracket, and the corner plates limit the external movement of the keyboard mounting bracket, thereby improving the stability of the keyboard placement.

[0006] The preferred structure of this solution also includes a rotating device comprising a limiting post at the top of a fixed rod, a limiting sleeve shaft rotatably mounted on the outside of the limiting post, a bearing rotatably connected between the inner side of the limiting sleeve shaft and the limiting post, a connecting block connecting the limiting sleeve shaft and the display, and a keyboard mounting bracket mounted on the bottom side of the limiting sleeve shaft. By rotating the limiting sleeve shaft on the limiting post to adjust the angle, the angle of the display can be adjusted, making it convenient for the operator to use.

[0007] As another preferred structure of this solution, the lifting mechanism includes a separation port horizontally set on the fixed rod. Lifting rods are slidably connected between the two sides of the separation port and the outer side of the fixed rod. Fixed holes are distributed on the lifting rods. Connecting columns are connected between the fixed holes and the separation port. The fixed rods are separated vertically by setting the separation port. The distance between the vertically separated fixed rods is adjusted by setting the lifting rods to adjust the overall height. At the same time, the connecting columns are used for limiting.

[0008] As another preferred structure of this solution, a slide rail is provided between the two sides of the inner side of the lifting rod and the two sides of the surface of the upper fixed rod. A slider is connected to the slide rail. By setting the slide rail, the upper fixed rod can be moved to adjust the height of the upper fixed rod, thereby realizing the adjustment of the display height.

[0009] As another preferred structure in this solution, the bottom of the chassis is vertically equipped with support columns, and the bottom of the support columns and support frames is equipped with support corners. The support columns support the chassis and improve the stability of the overall frame, and the support corners improve the support stability.

[0010] The advantages of this utility model are that by setting up an industrial control computer rack with a small overall footprint and convenient installation layout, it is easy to use in production, and the overall cost of the industrial control computer rack is low during the production process, which will be further explained in the following embodiments. Attached Figure Description

[0011] Figure 1 This is a side view of the overall structure of this utility model;

[0012] Figure 2 This is a structural diagram showing the overall front panel without a keyboard mounting bracket.

[0013] In the diagram: 1. Support frame, 2. Fixing rod, 3. Chassis cabinet, 4. Support column, 5. Lifting rod, 6. Fixing hole, 7. Connecting column, 8. Limiting sleeve shaft, 9. Monitor, 10. Connecting block, 11. Keyboard mounting bracket, 12. Baffle, 13. Corner plate, 14. Supporting corner, 15. Keyboard; Detailed Implementation

[0014] To make the technical means, creative features, objectives and effects of this utility model easier to understand, the present utility model will be further described below in conjunction with specific embodiments.

[0015] See Figure 1 and Figure 2The system includes an overall frame, comprising a horizontally positioned support frame at the bottom, a vertically positioned fixed rod in the middle of the support frame, a monitor at the top of the fixed rod, a cabinet at the bottom of the fixed rod, a rotating device connecting the monitor to the top of the fixed rod, a lifting mechanism on the fixed rod above the cabinet, and a keyboard mounting bracket on the rotating device below the monitor, with a keyboard mounted on the bracket. The overall frame serves as a support for the industrial computer, and the rotating and lifting mechanisms allow for adjustment of the monitor's angle and height during use, facilitating operator operation. The keyboard mounting bracket has baffles at both ends and on its inner side, and corner plates on its outer side. The bracket provides external limiters for the keyboard, enhancing stability. The rotating device includes a limiting post at the top of the fixed rod, with a limiting sleeve shaft rotating around the limiting post. A bearing connects the limiting sleeve shaft to the limiting post. A connecting device is also provided between the limiting sleeve shaft and the monitor. The connecting block, mounted on the top of the keyboard mounting bracket, is located on the bottom side of the limiting sleeve shaft. The angle of the monitor can be adjusted by rotating the limiting sleeve shaft on the limiting post, facilitating operator use. The lifting mechanism includes a horizontally mounted separation port on a fixed rod. Lifting rods are slidably connected to the outer sides of the fixed rod on both sides of the separation port. Fixing holes are distributed on the lifting rods, and connecting posts connect the fixing holes to the separation port. The separation port separates the fixed rods vertically, and the lifting rods adjust the distance between the separated fixed rods, thus adjusting the overall height. The connecting posts also provide limiting. Slide rails connect the inner sides of the lifting rods to the outer sides of the upper fixed rod surface, and sliders are connected to the slide rails. Moving the upper fixed rods via the slide rails allows for height adjustment, enabling monitor height adjustment. A vertical support column is installed at the bottom of the chassis cabinet. Support angles are provided at the bottom of the support column and support frame. The support column supports the chassis cabinet, improving the overall frame stability, and the support angles further enhance support stability.

[0016] During implementation, when the monitor angle needs to be adjusted according to usage requirements, the limiting sleeve shaft is rotated. The limiting sleeve shaft adjusts the angle by rotating on the limiting column. When the overall fixed rod height needs to be adjusted, the upper fixed rod is moved on the lifting rod. When fixing, the connecting column is inserted into the fixing hole on the lifting rod, and the fixed rod is positioned at the upper limit of the lifting rod, thereby adjusting the height of the fixed rod, improving the practicality of the overall bracket, reducing the overall usable area, and simplifying the structure to reduce costs.

Claims

1. A thermal imaging equipment industrial control computer bracket, characterized in that: The system includes an overall frame, which includes a support frame (1) horizontally positioned at the bottom, a fixed rod (2) vertically positioned in the middle of the support frame, a display (9) positioned at the top of the fixed rod, a cabinet (3) positioned at the bottom of the fixed rod, a rotating device connecting the display and the top of the fixed rod, a lifting mechanism positioned on the fixed rod at the top of the cabinet, a keyboard mounting bracket (11) positioned on the rotating device at the bottom of the display, and a keyboard (15) mounted on the keyboard mounting bracket.

2. The industrial control computer bracket for a thermal imaging device according to claim 1, characterized in that: The keyboard mounting bracket (11) is provided with baffles (12) at both ends and on the inner side, and corner plates (13) are provided on the outer side of the keyboard mounting bracket.

3. The industrial control computer bracket for a thermal imaging device according to claim 1, characterized in that: The rotating device includes a limiting post set at the top of the fixed rod (2), a limiting sleeve shaft (8) is rotatably set outside the limiting post, a bearing is rotatably connected between the inner side of the limiting sleeve shaft and the limiting post, a connecting block (10) is connected between the limiting sleeve shaft and the display, and the top of the keyboard mounting bracket (11) is installed on the bottom side of the limiting sleeve shaft.

4. The industrial control computer bracket for a thermal imaging device according to claim 1, characterized in that: The lifting mechanism includes a separation port horizontally arranged on a fixed rod (2), and a lifting rod (5) is slidably connected between the two sides of the separation port and the outside of the fixed rod. Fixing holes (6) are distributed on the lifting rod, and a connecting column (7) is connected between the fixing hole and the separation port.

5. The industrial control computer bracket for a thermal imaging device according to claim 1, characterized in that: A slide rail is provided between the inner sides of the lifting rod (5) and the two sides of the surface of the upper fixed rod (2), and a slider is provided on the slide rail.

6. The industrial control computer bracket for a thermal imaging device according to claim 1, characterized in that: The bottom of the cabinet (3) is vertically provided with a support column (4), and the bottom of the support column and the support frame (1) is provided with a support corner (14).