Auxiliary upper disc fixing and clamping device for imager

By using an image-assisted upper plate fixing clamping device, and utilizing suction cups and rotation adjustment components, the optical products can be precisely positioned and corrected, solving the problem of low position confirmation efficiency in existing technologies and improving work efficiency and accuracy.

CN224150531UActive Publication Date: 2026-04-21FUJIAN RUICHUANG PHOTOELECTRIC TECH CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
FUJIAN RUICHUANG PHOTOELECTRIC TECH CO LTD
Filing Date
2025-06-13
Publication Date
2026-04-21

AI Technical Summary

Technical Problem

In existing technologies, the efficiency of position confirmation and correction before cutting optical products is low, and the need for frequent disassembly and assembly of the support body results in low work efficiency and low accuracy.

Method used

An auxiliary upper plate fixing clamping device for an image instrument was designed, including components such as a suction cup, a lifting rod, a fixing rod, an R-axis scale fixing plate, and a rotary locking screw. It achieves precise positioning and calibration of optical products through vacuum adsorption and rotation adjustment.

Benefits of technology

It enables rapid and accurate position confirmation and correction of optical products, improving work efficiency and reducing the investment in equipment and personnel.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN224150531U_ABST
    Figure CN224150531U_ABST
Patent Text Reader

Abstract

The utility model discloses an image instrument auxiliary upper disc fixing and clamping device which comprises a suction cup and a suction cup fixing device. The suction cup is connected with the suction cup fixing device. A lifting rod is arranged on the suction cup and connected with a lifting torque through a plug pin. Fixing rods are connected to the tops of the lifting rods; the fixing rod is connected with an R-axis scale fixing disc; an R-axis rotary locking screw rod is arranged on the R-axis scale fixing disc, and the R-axis scale fixing disc is connected with an R-axis rotary shaft; the R-axis rotating shaft is connected with an R-axis scale rotating disc; the R-axis scale rotating disc is connected with the R-axis scale fixing disc through an R-axis rotating shaft; the R-axis scale rotating disc rotates through the R-axis rotating shaft to drive the R-axis scale rotating disc to rotate at any scale, and the R-axis rotating shaft is locked and fixed through the R-axis rotating locking screw, so that the R-axis scale rotating disc is fixed at any scale; the automatic tray feeding device facilitates tray feeding of special square optical products, improves the tray feeding efficiency and the tray feeding accuracy, and reduces equipment investment and working efficiency.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This utility model relates to the field of special optical product area cutting position correction technology, specifically an image instrument auxiliary upper plate fixing clamping device. Background Technology

[0002] Before cutting optical products, their positions need to be confirmed and corrected to ensure accurate cutting according to customer requirements. Compared to previous position confirmation methods, this method requires attaching a support to the glass base of the imager and ensuring it does not fall or move. The support needs to be repeatedly disassembled and moved until the leftmost and rightmost sides of the support are parallel to each other on the imager. This process also requires special curing adhesive. This not only reduces work efficiency and the investment in equipment and personnel, but also results in the inaccuracy of the support, making it impossible to accurately confirm and correct the position of the optical products.

[0003] Based on this, the present invention designs an auxiliary upper plate fixing clamping device for an image instrument to solve the above problems. Utility Model Content

[0004] The purpose of this invention is to provide an auxiliary upper plate fixing clamping device for an imaging instrument to solve the above-mentioned technical problems.

[0005] To achieve the above objectives, this utility model provides the following technical solution: an auxiliary upper plate fixing clamping device for an imaging instrument, comprising a suction cup, a suction cup fixing device, and the suction cup connected to the suction cup fixing device; a lifting rod is provided on the suction cup, and the lifting rod is connected to the lifting torque via a pin; a fixing rod is connected to the top of the lifting rod; the fixing rod is connected to an R-axis scale fixing plate; an R-axis scale fixing plate is provided with an R-axis rotation locking screw, and the R-axis scale fixing plate is connected to an R-axis rotation shaft; the R-axis rotation shaft is connected to the R-axis scale rotating plate; the R-axis scale rotating plate is connected to the R-axis scale fixing plate via the R-axis rotation shaft; the R-axis scale rotating plate rotates at any scale via the rotation of the R-axis rotation shaft, and the R-axis rotation shaft is locked by the R-axis rotation locking screw. The R-axis scale is fixed so that any scale on the rotating disk can be fixed. A digital scale array is provided above the rotating disk for easy positioning of the 90° square optical product. A 90° right-angle support is provided on the rotating disk for easy mounting of the 90° square optical product. A 90° glass pad and a 90° square optical product are placed on the rotating disk. One side of the 90° glass pad is aligned with one side of the 90° right-angle support. The 90° square optical product is placed on top of the 90° glass pad. The image is focused on by the image device, and one side of the 90° right-angle support, the 90° glass pad, and the 90° square optical product are adjusted to be on the same horizontal parallelism.

[0006] Preferably, the suction cup is connected to the suction cup fixing device. The suction cup is pulled downward by the lifting torque, which drives the lifting rod above the suction cup to be pulled upward through the lever principle. An effective vacuum area is formed inside the suction cup, thereby attracting the suction cup and fixing it to the glass base of the imaging device.

[0007] Preferably, the lifting rod is connected and fixed to the R-axis scale fixing plate via a fixing rod, and the R-axis scale fixing plate is connected to the R-axis scale rotating plate via an R-axis rotating shaft.

[0008] Preferably, the R-axis rotating shaft drives the R-axis scale rotating disk to rotate 360° in any horizontal direction. The R-axis rotating locking screw locks the R-axis rotating shaft according to the required rotation angle of the R-axis scale rotating disk, thereby fixing the R-axis rotating shaft and locking the R-axis scale rotating disk.

[0009] Preferably, the R-axis scale rotating disk is provided with a digital scale array and a right-angle measuring body, and the digital scale array and the 90° right-angle measuring body rotate with the R-axis scale rotating disk.

[0010] Preferably, the 90° glass pad and the 90° square optical product are placed on one side of the 90° right-angled support on the R-axis scale rotating disk. One side of the 90° glass pad is pressed tightly against one side of the 90° right-angled support, so that one side of the 90° glass pad and one side of the 90° right-angled support are parallel. The 90° glass pad and the 90° square optical product can be moved a distance and their size estimated according to the digital scale matrix, which facilitates the determination of the upper plate position. Based on the fact that the leftmost to rightmost side of one side of the 90° right-angled support is at the same level and parallel, the focus of the image instrument is adjusted to the 90° square optical product. The 90° square optical product is manually slightly adjusted so that the leftmost to rightmost side of one side of the 90° square is at the same level and parallel. The image instrument adjusts the focus and confirms that the leftmost to rightmost side of one side of the 90° right-angled support, one side of the 90° glass pad, and the leftmost to rightmost side of one side of the 90° square optical product are all on the same parallel line.

[0011] Compared with the prior art, the beneficial effects of this utility model are as follows:

[0012] This utility model relates to an auxiliary upper plate fixing clamping device for an imaging instrument. It has a simple structure and is easy to use. It can realize functions such as free movement in the R-axis direction and confirmation of position and size. It is also easy to pick up and take out. It can simultaneously confirm and correct the position of optical products of different sizes and special areas before cutting, reduce equipment investment, and improve work efficiency. Attached Figure Description

[0013] To more clearly illustrate the technical solutions of the embodiments of this utility model, the accompanying drawings used in the description of the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0014] Figure 1 This is an exploded view of the overall structure of this embodiment;

[0015] Figure 2 This is a schematic diagram highlighting the structure of the fixed component in this embodiment.

[0016] The attached diagram lists the components represented by each number as follows:

[0017] 1. Suction cup; 2. Lifting rod; 3. Suction cup fixing device; 4. Pin; 5. Lifting torque; 6. Fixing rod; 7. R-axis rotary locking screw; 8. R-axis scale fixing plate; 9. R-axis rotating shaft; 10. R-axis scale rotating plate; 11. Digital scale array; 12. 90° right angle support; 13. 90° glass pad; 14. 90° square optical product; 15. Imager. Detailed Implementation

[0018] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those skilled in the art without creative effort are within the protection scope of the present utility model.

[0019] Please see Figure 1-2This utility model provides a technical solution: an auxiliary upper plate fixing clamping device for an imaging instrument, including a suction cup 1, a suction cup fixing device 3, and the suction cup 1 connected to the suction cup fixing device 3; a lifting rod 2 is provided on the suction cup 1, and the lifting rod 2 is connected to the lifting torque 5 through a pin 4; a fixing rod 6 is connected to the top of the lifting rod 2; the fixing rod 6 is connected to the R-axis scale fixing plate 8; an R-axis rotation locking screw 7 is provided on the R-axis scale fixing plate 8, and the R-axis scale fixing plate 8 is connected to the R-axis rotation shaft 9; the R-axis rotation shaft 9 is connected to the R-axis scale rotating plate 10; the R-axis scale rotating plate 10 is connected to the R-axis scale fixing plate 8 through the R-axis rotation shaft 9; the R-axis scale rotating plate 10 rotates at any scale through the rotation of the R-axis rotation shaft 9, and the R-axis rotation shaft 9 is locked and fixed by the R-axis rotation locking screw 7, thereby allowing the R-axis scale to rotate at any scale. The rotary disk 10 has an arbitrary fixed scale; a digital scale array 11 is provided above the rotary disk 10 to facilitate the positioning of the 90° square optical product 14; a 90° right-angle support 12 is provided on the rotary disk 10 to facilitate the mounting of the 90° square optical product 14; a 90° glass pad 13 and a 90° square optical product 14 are placed on the rotary disk 10, with one side of the 90° glass pad 13 aligned with one side of the 90° right-angle support 12, and the 90° square optical product 14 is placed on top of the 90° glass pad 13. The image device 15 focuses on the 90° right-angle support 12, the 90° glass pad 13, and the 90° square optical product 14, adjusting one side of the 90° right-angle support 12, the 90° glass pad 13, and the 90° square optical product 14 to be on the same horizontal parallelism.

[0020] Specifically, suction cup 1 is connected to suction cup fixing device 3. Suction cup 1 is pulled downward by lifting torque 5, which drives the lifting rod 2 above suction cup 1 to be pulled upward through the lever principle. An effective vacuum area is formed inside suction cup 1, thereby sucking suction cup 1 and fixing it to the glass base of the imaging device.

[0021] Specifically, the lifting rod 2 is connected and fixed to the R-axis scale fixing plate 8 via the fixing rod 6, and the R-axis scale fixing plate 8 is connected to the R-axis scale rotating plate 10 via the R-axis rotating shaft 9.

[0022] Specifically, the R-axis rotating shaft 9 drives the R-axis scale rotating disk 10 to rotate 360° in any horizontal direction. The R-axis rotation locking screw 7 locks the R-axis rotating shaft 9 according to the required rotation angle of the R-axis scale rotating disk 10, thereby fixing the R-axis rotating shaft 9 and locking the R-axis scale rotating disk 10.

[0023] Specifically, the R-axis scale rotating disk 10 is provided with a digital scale array 11 and a right-angle measuring body 19. The digital scale array 11 and the 90° right-angle measuring body 13 rotate with the R-axis scale rotating disk 10.

[0024] Specifically, the imager 15 first adjusts the leftmost to rightmost edge of the 90° right-angle support 12 according to the focal length setting so that they are at the same level and parallel. The support edge can be adjusted and rotated at any angle according to the R-axis scale rotating disk 10 until the leftmost to rightmost edge of the 90° right-angle support 12 is at the same level and parallel.

[0025] Specifically, the 90° glass pad 13 and the 90° square optical product 14 are placed on one side of the 90° right-angled support 12 on the R-axis scale rotating disk 10. One side of the 90° glass pad 13 is pressed tightly against one side of the 90° right-angled support 12, so that one side of the 90° glass pad 13 and one side of the 90° right-angled support 12 are parallel. The 90° glass pad 13 and the 90° square optical product 14 can be moved according to the required distance and size estimation based on the digital scale matrix 11, facilitating the determination of the upper disk position. Based on the premise that the leftmost to rightmost edge of one of the 90° right-angled support bodies 12 is at the same level and parallel, the focal length of the imaging instrument 15 is adjusted to the 90° square optical product 14. The 90° square optical product 14 is then manually and slightly adjusted so that the leftmost to rightmost edge of one side is at the same level and parallel. The imaging instrument 15 adjusts the focal length and confirms that the leftmost to rightmost edge of one of the 90° right-angled support bodies 12, one side of the 90° glass pad 13, and the leftmost to rightmost edge of one side of the 90° square optical product 14 are all on the same parallel line.

[0026] A specific application example of this embodiment is as follows:

[0027] When using this device, firstly, the suction cup 1 at the bottom of the clamping device is driven by torque to move the suction cup 1 into the vacuum area and onto the imager base to prevent it from tipping over. Then, the focus of the imager 15 is adjusted to be horizontally parallel from left to right along one side of the 90° right-angle support 12. Next, the 90° glass pad 13 and the optical product with the special area marked are placed on the R-axis scale rotating disk 10, with one side of the 90° glass pad 13 tightly against one side of the 90° right-angle support 12, so that the two are in a parallel state. Then, the focus of the imager is adjusted to be on the optical product with the special area marked, and the area of ​​the optical product is adjusted so that one side of the area is in a horizontal parallel state. Finally, it is confirmed that one side of the 90° right-angle support 9, the 90° glass pad 13, and the special area of ​​the optical product are in the same parallel state. The position correction is completed, which improves work efficiency and equipment investment.

[0028] In the description of this utility model, it should be understood that the terms "coaxial", "bottom", "upper", "above", "side", "horizontal", etc., indicate the orientation or positional relationship based on the drawings, and are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of this utility model.

[0029] In this utility model, unless otherwise explicitly specified and limited, the terms "connection," "fixing," "screw connection," etc., should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral part; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; they can refer to the internal connection of two components or the interaction between two components. Unless otherwise explicitly limited, those skilled in the art can understand the specific meaning of the above terms in this utility model according to the specific circumstances.

[0030] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that modifications may 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 device for fixing and clamping an auxiliary upper plate of an imaging instrument, characterized in that: Includes a suction cup (1), a suction cup fixing device (3), and the suction cup (1) is connected to the suction cup fixing device (3); the suction cup (1) is provided with a lifting rod (2), and the lifting rod (2) is connected to the lifting torque (5) through a pin (4); the top of the lifting rod (2) is connected to a fixing rod (6); the fixing rod (6) is connected to the R-axis scale fixing plate (8); the R-axis scale fixing plate (8) is provided with an R-axis rotation locking screw (7), and the R-axis scale fixing plate (8) is connected to the R-axis rotation shaft (9); the R-axis rotation shaft (9) is connected to the R-axis scale rotating plate (10); the R-axis scale rotating plate (10) is connected to the R-axis scale fixing plate (8) through the R-axis rotation shaft (9); the R-axis scale rotating plate (10) rotates through the R-axis rotation shaft (9) to drive the R-axis scale rotating plate (10) to rotate at any scale, and the R-axis rotation shaft (9) is locked and fixed through the R-axis rotation locking screw (7), so that the R-axis scale rotating plate (10) can rotate at any scale. The scale is fixed; a digital scale array (11) is provided above the R-axis scale rotating disk (10) to facilitate the positioning of the 90° square optical product (14) on the upper plate; a 90° right-angle support (12) is provided on the R-axis scale rotating disk (10) to facilitate the placement of the 90° square optical product (14) on the upper plate; a 90° glass pad (13) and a 90° square optical product (14) are placed on the R-axis scale rotating disk (10), one side of the 90° glass pad (13) is aligned with one side of the 90° right-angle support (12), and a 90° square optical product (14) is placed on top of the 90° glass pad (13). The 90° right-angle support (12), the 90° glass pad (13) and the 90° square optical product (14) are focused by the image device (15), and the 90° right-angle support (12), the 90° glass pad (13) and the 90° square optical product (14) are adjusted to be on the same horizontal parallelism.

2. The auxiliary upper disc fixing and clamping device of the image instrument according to claim 1, characterized in that: The suction cup (1) is connected to the suction cup fixing device (3). The suction cup (1) is pulled down by the lifting torque (5) and the lifting rod (2) above the suction cup (1) is pulled up by the lever principle. An effective vacuum area is formed inside the suction cup (1), thereby sucking the suction cup (1) and fixing it to the glass base of the image device.

3. The auxiliary upper disc fixing and clamping device of the image instrument according to claim 1, characterized in that: The lifting rod (2) is connected and fixed to the R-axis scale fixing plate (8) via the fixing rod (6), and the R-axis scale fixing plate (8) is connected to the R-axis scale rotating plate (10) via the R-axis rotating shaft (9).

4. The auxiliary upper disk fixing and clamping device of the image instrument according to claim 1, characterized in that: The R-axis rotating shaft (9) drives the R-axis scale rotating disk (10) to rotate 360° in any horizontal direction. The R-axis rotating locking screw (7) locks the R-axis rotating shaft (9) according to the rotation angle setting requirements of the R-axis scale rotating disk (10), thereby fixing the R-axis rotating shaft (9) and locking the R-axis scale rotating disk (10).

5. The auxiliary upper disk fixing and clamping device of the image instrument according to claim 1, characterized in that: The R-axis scale rotating disk (10) is provided with a digital scale array (11), and the digital scale array (11) and the 90° right-angled body (12) rotate with the R-axis scale rotating disk (10).

6. The auxiliary upper disk fixing and clamping device of the image instrument according to claim 1, characterized in that: The imager (15) first adjusts the leftmost to rightmost edge of the 90° right-angled body (12) according to the focal length setting so that they are at the same level and parallel. The body edge can be adjusted and rotated at any angle according to the R-axis scale rotating disk (10) until the leftmost to rightmost edge of the 90° right-angled body (12) is at the same level and parallel.

7. The auxiliary upper disk fixing and clamping device of the image instrument according to claim 1, characterized in that: The 90° glass pad (13) and the 90° square optical product (14) are placed on one side of the 90° right-angled support (12) on the R-axis scale rotating disk (10). One side of the 90° glass pad (13) is pressed tightly against one side of the 90° right-angled support (12), so that one side of the 90° glass pad (13) and one side of the 90° right-angled support (12) are parallel. The 90° glass pad (13) and the 90° square optical product (14) can be moved according to the digital scale matrix (11) to estimate the required distance and size, which facilitates the determination of the position on the upper plate. Based on the fact that the leftmost to rightmost edge of one of the 90° right-angled support bodies (12) is at the same level and parallel, the focal length of the imager (15) is adjusted to the 90° square optical product (14). The 90° square optical product (14) is manually slightly adjusted so that the leftmost to rightmost edge of one of its 90° square sides is at the same level and parallel. The imager (15) adjusts the focal length and confirms that the leftmost to rightmost edge of one of the 90° right-angled support bodies (12), one side of the 90° glass pad (13), and the leftmost to rightmost edge of one side of the 90° square optical product (14) are all on the same parallel line.