Adjusting support for man-machine interaction system

By designing the adjustment bracket for the human-computer interaction system, using fixed columns, movable beams and damped shafts, the problem of single display position is solved, and flexible adjustment of multiple stations and visible angles is achieved to meet user operation needs.

CN223063531UActive Publication Date: 2025-07-04WU XI AI RUI WEI BAN DAO TI SHE BEI YOU XIAN ZE REN GONG SI
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Patent Information

Application Number
CN202422083861.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-26
Publication Date
2025-07-04
Estimated Expiration
2034-08-26

AI Technical Summary

Technical Problem

In existing semiconductor production equipment, the display position is single, and users need to walk to see the display content of the display, which cannot meet the adjustment needs of multiple stations and visible angles.

Method used

A adjustment bracket for human-computer interaction system is designed, including fixed columns, movable beams and damped rotor shafts. The multi-directional adjustment of the display in the horizontal plane is realized through the damped rotor shafts. Combined with reference and movable installation accessories, the multi-station and visual angle adjustment of the display is realized.

Benefits of technology

The multi-station and visual angle adjustment of the monitor are realized, avoiding other equipment and personnel activity areas on the equipment site, making it easy to operate and reduce shaking errors.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to an adjusting bracket for a man-machine interaction system, which is used for adjusting the relative position of a display in a horizontal plane and the orientation of the display, and comprises a fixed upright post, a movable cross beam is rotationally connected onto the fixed upright post, and the movable cross beam swings around the fixed upright post in the horizontal plane; the movable cross beam is rotationally connected with a display supporting assembly, the display supporting assembly swings in a horizontal plane by taking one point on the movable cross beam as a reference, and adjacent movable parts are rotationally connected through a damping rotating shaft; according to the utility model, multi-station and visual angle adjustment can be carried out relative to the equipment main body so as to meet the use requirements of different operations. Meanwhile, due to the angle adjusting function of the display and the operation interface, other equipment and personnel activity areas on the equipment site can be flexibly avoided.
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Description

Technical Field

[0001] The utility model relates to the technical field of semiconductor production auxiliary equipment, in particular to an adjusting bracket for a man-machine interaction system. Background Art

[0002] In the semiconductor industry, measurement and detection equipment is related to the yield and quality of wafers and chips, and its importance in the entire semiconductor supply chain is becoming increasingly prominent.

[0003] During the operation of the equipment, the display provides the output of data and graphics so that users can monitor the equipment status and production status in real time. At the same time, users need to use operating components such as mice, keyboards, and barcode scanners as information input means to control the equipment. Conventional displays are embedded in the side wall of the processing center or are separately arranged using brackets. The position of such displays is single, and users need to move around to view the display content. Summary of the Utility Model

[0004] The applicant of the present utility model aims at the above-mentioned shortcomings in the existing production technology and provides an adjusting bracket for a man-machine interaction system, which has the function of multi-directional rotation to meet the operation requirements of users.

[0005] The technical solution adopted by the present utility model is as follows:

[0006] An adjusting bracket for a man-machine interaction system is used to adjust the relative position of a display in a horizontal plane and the orientation of the display itself.

[0007] It includes a fixed column, and a movable cross beam is rotatably connected to the fixed column. The movable cross beam swings around the fixed column in a horizontal plane.

[0008] A display support assembly is rotatably connected to the movable cross beam. The display support assembly swings in a horizontal plane with a point on the movable cross beam as a reference.

[0009] Adjacent movable parts are rotatably connected through a damping rotating shaft; the hollow setting of the axis of the damping rotating shaft reserves a wire passing space.

[0010] As a further improvement of the above technical solution:

[0011] A hanging bracket is arranged on the fixed column. The hanging bracket includes a reference mounting accessory and a movable end mounting accessory that are detachably connected. The reference mounting accessory is connected to the external environment, and the movable end mounting accessory is connected to the fixed column.

[0012] The reference mounting accessory and the movable end mounting accessory are snap-fitted and connected by fasteners.

[0013] The movable cross beam reciprocally swings within the plane where the top end of the fixed column is located.

[0014] One end of the movable crossbeam facing away from the fixed column is rotatably connected to the movable column, and the display support assembly rotates with the movable column.

[0015] The movement path of the display support assembly is: at any point on a circle with the fixed column as the center and the movable crossbeam as the radius, a circle with this point as the center and the length of the display support assembly itself as the radius.

[0016] The display support assembly is used to limit the connection position of the display along the movable column.

[0017] The beneficial effects of the present utility model are as follows:

[0018] The structure of the present utility model is compact and reasonable, and the operation is convenient. It can be adjusted in multiple working positions and visual angles relative to the equipment main body to meet the usage requirements of different operations. At the same time, the angle adjustment function of the display and the operation interface can flexibly avoid other equipment and personnel activity areas at the equipment site.

[0019] In the present utility model, the display support assembly has two adjustment directions. One is the revolution adjustment with the fixed column as the center, and the other is the rotation adjustment with the movable column as the center. The combination of these two adjustment methods can use the revolution adjustment to change the rough relative position of the display support in the xy plane, that is, the horizontal plane. Then, on the premise that the rough relative position has been adjusted, the rotation adjustment is used to change the position accuracy and the orientation of the display.

[0020] The rotation of the present utility model is realized by a damping rotating shaft, which can ensure that no shaking error is easily generated during the position adjustment process. Description of the Drawings

[0021] Figure 1 It is a schematic diagram of the overall structure of the present utility model.

[0022] Figure 2 It is a schematic diagram of the overall structure of another perspective of the present utility model.

[0023] Figure 3 It is Figure 2 The enlarged view of part A of

[0024] Figure 4 It is a schematic diagram of the adjustable position range of the present utility model in the working state, and the movement path of the display support assembly is schematically shown by colored lines in the figure.

[0025] Wherein: 1, fixed column; 2, movable crossbeam; 3, display support assembly; 4, damping rotating shaft; 5, mounting bracket; 6, movable column;

[0026] 301, bracket; 302, fixed claw;

[0027] 501, reference installation accessory; 502, movable end installation accessory. Specific implementation manners

[0028] The following combines with the attached drawings to illustrate the specific implementation manners of the present utility model.

[0029] As Figures 1-4 shown, the adjustment bracket for the human-computer interaction system of this embodiment is used to adjust the relative position of the display in the horizontal plane and the orientation of the display itself.

[0030] It includes a fixed column 1, and a movable cross beam 2 is rotatably connected to the fixed column 1. The movable cross beam 2 swings around the fixed column 1 in the horizontal plane.

[0031] A display support assembly 3 is rotatably connected to the movable cross beam 2. The display support assembly 3 swings in the horizontal plane with a point on the movable cross beam 2 as a reference.

[0032] Adjacent movable parts are rotatably connected through a damping rotating shaft 4; the hollow center of the damping rotating shaft 4 is provided to reserve a wire passing space.

[0033] A hanging bracket 5 is arranged on the fixed column 1. The hanging bracket 5 includes a detachable connection reference installation accessory 501 and a movable end installation accessory 502. Among them, the reference installation accessory 501 is connected to the external environment, and the movable end installation accessory 502 is connected to the fixed column 1.

[0034] The reference installation accessory 501 and the movable end installation accessory 502 are in snap-fit cooperation and are connected by fasteners.

[0035] The movable cross beam 2 is arranged perpendicular to the fixed column 1 and reciprocally swings in the plane where the top end of the fixed column 1 is located; the ends of the movable cross beam 2 and the fixed column 1 are connected.

[0036] One section of the movable cross beam 2 away from the fixed column 1 is rotatably connected to a movable column 6. The movable column 6 is parallel to the fixed column 1, and the display support assembly 3 rotates with the movable column.

[0037] The movement path of the display support assembly 3 is: at any point on a circle with the fixed column 1 as the center and the movable cross beam 2 as the radius, a circle with this point as the center and the length of the display support assembly 3 itself as the radius.

[0038] The specific structure and working principle of the present utility model are as follows:

[0039] As Figure 1 and Figure 2As shown in the figure, in the structure of the present utility model, it includes a fixed column 1 serving as a motion reference. The fixed column 1 is installed on the device through a hanging bracket 5. Among them, the reference installation accessory 501 of the hanging bracket 5 is fixedly connected to an external device. With reference to Figure 3 , the movable end installation accessory 502 is hooked and hung on the reference installation accessory 501 and connected with fasteners. After installation, the fixed column 1 is in a vertical state, and the movable crossbeam 2 rotates around the fixed column 1 in the horizontal plane; a movable column 6 is rotatably connected to one end of the movable crossbeam 2 away from the fixed column 1.

[0040] A damping rotating shaft 4 is used to connect between the fixed column 1 and the movable crossbeam 2, and between the movable crossbeam 2 and the movable column 6.

[0041] The damping rotating shaft of the present utility model can adopt commercially available parts, as long as it can rotate and is not prone to precision deviation during the rotation process, it can meet the requirements of this solution.

[0042] As Figure 4 shown, it is the adjustable path of the display using the present utility model. As shown by the red arrow in the figure, the movable crossbeam 2 swings with the fixed column 1 as the center. This swing is called the revolution adjustment; after the display is installed on the display support assembly 3, the movable column 6 with the display can rotate around the other end of the movable crossbeam 2. This rotation is called the self-rotation for fine-tuning the position. That is, in the horizontal plane, the display can not only be adjusted in the relative position in a large range, but also be rotated to adjust the angle, achieving the purpose of multi-angle use.

[0043] The advantage of the present utility model is that the movable crossbeam 2 is used to initially define the swing path of the display in the horizontal plane. On this basis, the heights of the fixed column 1 and the movable column 6 match the height of the display. Thus, the height in the z direction is also limited. Since the movable column 6 itself also has a rotating function, therefore, on the premise that the movable crossbeam 2 drives the display, the angle of the display can be adjusted by rotating the movable column 2, and the position accuracy of the display in a small range in the horizontal plane can be adjusted.

[0044] In addition, the present utility model also provides connection points arranged along the movable column 6: a bracket 301 and a fixed claw 302, which increase the contact area with the display and improve the connection strength.

[0045] As an optional implementation manner, the bracket 301 and the fixed claw 302 can be slidably connected to the movable column 6 in a movable structure. For example, the fixed claw 302 reciprocally slides along the movable column 6 and locks, and the bracket 301 expands and contracts along the direction perpendicular to the movable column 6 and locks. The used sliding and locking structure can be a gear-rack pair or a lead screw.

[0046] The above description is an explanation of the present utility model, rather than a limitation thereof. For the scope defined by the present utility model, refer to the claims. Any form of modification may be made within the protection scope of the present utility model.

Claims

1. An adjustment bracket for a human-computer interaction system, characterized in that: For adjusting the relative position of the display in the horizontal plane and the orientation of the display itself, It includes a fixed column (1), and a movable cross beam (2) is rotatably connected to the fixed column (1). The movable cross beam (2) swings around the fixed column (1) in the horizontal plane. A display support assembly (3) is rotatably connected to the movable cross beam (2). The display support assembly (3) swings in the horizontal plane with a point on the movable cross beam (2) as a reference. Adjacent movable parts are rotatably connected by a damping rotating shaft (4); the hollow center of the damping rotating shaft (4) is provided to reserve a wire passing space.

2. The adjusting bracket for the human-computer interaction system according to claim 1, wherein: A hanging bracket (5) is provided on the fixed column (1). The hanging bracket (5) includes a reference mounting accessory (501) and a movable end mounting accessory (502) that are detachably connected. Among them, the reference mounting accessory (501) is connected to the external environment, and the movable end mounting accessory (502) is connected to the fixed column (1).

3. The adjusting bracket for the human-computer interaction system according to claim 2, wherein: The reference mounting accessory (501) and the movable end mounting accessory (502) are snap-fitted and connected by fasteners.

4. The adjustment bracket for the human-computer interaction system according to claim 1, characterized in that: The movable cross beam (2) reciprocally swings within the plane where the top end of the fixed column (1) is located.

5. The adjustment bracket for the human-computer interaction system according to claim 1, wherein: One end of the movable cross beam (2) away from the fixed column (1) is rotatably connected to a movable column (6), and the display support assembly (3) rotates with the movable column (6).

6. The adjusting bracket for the human-computer interaction system according to claim 5, characterized in that: The movement path of the display support assembly (3) is: at any point on a circle with the fixed column (1) as the center and the movable cross beam (2) as the radius, a circle with this point as the center and the length of the display support assembly (3) itself as the radius.

7. The adjusting bracket for the human-computer interaction system according to claim 5, characterized in that: The display support assembly (3) is used to limit the connection position of the display to be arranged along the movable column (6).