A camera with a rotating stage

The rotating stage design solves the problems of cumbersome operation and low efficiency of the imager, enabling simultaneous preprocessing and measurement of multiple objects, thus improving the ease of operation and work efficiency of the imager.

CN224326935UActive Publication Date: 2026-06-05GUANGDONG ZHONGWANG AUTOMATION TECH CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
GUANGDONG ZHONGWANG AUTOMATION TECH CO LTD
Filing Date
2025-08-27
Publication Date
2026-06-05

AI Technical Summary

Technical Problem

Existing imaging instruments require each object to be stationary and measured individually during the detection process, which is cumbersome and inefficient.

Method used

A rotating platform is used, including a central disk device, a support device, and a loading device. The support device has evenly distributed support and loading mechanisms, and the loading mechanism has adjustable limit components, enabling simultaneous preprocessing and measurement of multiple objects.

Benefits of technology

This improves the ease of operation and work efficiency of the imaging device, allowing multiple objects to be placed on the same rack, avoiding slippage and offset during measurement, and enhancing the convenience and stability of use.

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Abstract

An image instrument with rotary platform, including body and rotary platform connected to the body, the rotary platform is connected to the workbench of the body, the rotary platform includes center disc device, support device connected to the center disc device and object carrying device connected to the support device; the center disc device includes upper center disc mechanism and lower center disc mechanism, the support device includes at least one set of support mechanism, the support mechanism is uniformly distributed in the upper center disc mechanism, the object carrying device includes at least one set of object carrying mechanism, the object carrying mechanism is connected to the support mechanism, which realizes the image instrument in the daily use process, convenient operation, effectively improves the work efficiency.
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Description

Technical Field

[0001] This application relates to the technical field of imaging devices, and particularly to an imaging device with a rotating stage. Background Technology

[0002] The image measuring instrument is based on CCD digital imaging and relies on the powerful software capabilities of computer screen measurement technology and spatial geometric calculation. It is a high-precision optical image measuring instrument composed of a high-resolution CCD color lens, a continuous zoom objective lens, a color display, a video crosshair display, a precision grating ruler, a multi-functional data processor, data measurement software, and a high-precision worktable structure.

[0003] In the current technology, during the daily operation of the imaging instrument, it is usually necessary to place the object to be tested on the worktable for pretreatment before detection. That is, to place an object to be tested on the worktable and let it stand for a certain period of time so that the liquid to be tested is spread evenly and avoids stacking.

[0004] However, in the existing technology, when the object being measured is stationary, only one object can be stationary and measured at a time. After the test of one object is completed, the next object is placed and stationary and measured. This is cumbersome and inefficient. Utility Model Content

[0005] This utility model provides an imaging device with a rotating platform, which makes the imaging device easy to operate in daily use and effectively improves work efficiency.

[0006] To achieve the aforementioned objectives, this application adopts the following technical solution:

[0007] An imaging device with a rotating stage, including

[0008] Organism;

[0009] A rotating platform connected to the machine body is connected to the machine body's worktable. The rotating platform includes a central disk device, a support device connected to the central disk device, and a loading device connected to the support device. The central disk device includes an upper central disk mechanism and a lower central disk mechanism. The support device includes at least one set of support mechanisms, which are evenly distributed on the upper central disk mechanism. The loading device includes at least one set of loading mechanisms, which are connected to the support mechanisms.

[0010] In some alternative embodiments, the upper center plate mechanism includes a center plate, a first housing connected to the center plate, and a rotating bearing disposed inside the first housing. The first housing is connected to the bottom of the center plate, and the rotating bearing is embedded inside the first housing.

[0011] In some alternative embodiments, both the center plate and the first outer shell are circular in shape.

[0012] In some alternative embodiments, the lower center plate mechanism includes a second housing and a connecting rod, both of which are disposed on the worktable of the machine body.

[0013] In some alternative implementations, the center of the second housing is on the same straight line as the center of the connecting rod.

[0014] In some alternative embodiments, the second outer shell is circular in shape, the outer diameter of the first outer shell is L1, and the inner diameter of the second outer shell is L2, where L2 > L1.

[0015] In some alternative implementations, a set of support mechanisms includes three support rods that are evenly distributed on the outer side wall of the first housing.

[0016] In some alternative implementations, a set of carrying mechanisms includes three carrying racks, the interior of which is formed with a support platform.

[0017] In some alternative implementations, at least three adjustable limiting components are connected to the support platform.

[0018] In some optional embodiments, the support platform is provided with an adjustment groove, and the adjustable limiting component includes a limiting head, a connecting post, and a card. The limiting head is located on the upper part of the support platform, the connecting post passes through the adjustment groove, and the card is located on the lower part of the support platform. The limiting head, the connecting post, and the card are connected in sequence from top to bottom.

[0019] The imaging device with a rotating stage provided in this application has the following advantages:

[0020] The technical solution adopted in this application includes an imaging device with a rotating stage, comprising a body and a rotating stage connected to the body. The rotating stage is connected to the worktable of the body. The rotating stage includes a central disk device, a support device connected to the central disk device, and a loading device connected to the support device. The central disk device includes an upper central disk mechanism and a lower central disk mechanism. The support device includes at least one set of support mechanisms evenly distributed on the upper central disk mechanism. The loading device includes at least one set of loading mechanisms connected to the support mechanisms. This design makes the imaging device easy to operate in daily use and effectively improves work efficiency. In addition, by setting adjustable limit components, multiple test objects can be placed on the same loading rack, further improving the convenience of use and work efficiency. Attached Figure Description

[0021] Other features, objects, and advantages of this application will become more apparent from the following detailed description of non-limiting embodiments with reference to the accompanying drawings:

[0022] Figure 1 This is an overall structural diagram of an imaging device with a rotating stage according to this application;

[0023] Figure 2 This is a perspective view of the rotating stage in an imaging device with a rotating stage according to this application.

[0024] Figure 3 This is a structural diagram of the rotating stage in an imaging device with a rotating stage according to this application, from another perspective.

[0025] Figure 4 This is a structural diagram of the lower central disk mechanism in an imaging device with a rotating stage according to this application;

[0026] Figure 5 This is a structural diagram of the lower central disk mechanism in an imaging device with a rotating stage, as described in this application, from another perspective.

[0027] Figure 6 yes Figure 2 Enlarged view of circle A shown;

[0028] Figure 7 yes Figure 3 Enlarged view of circle B shown;

[0029] Figure 8 This is a perspective view of an adjustable limiting component in an imaging device with a rotating stage according to this application.

[0030] Figure 9 This is a perspective view of the sliding support mechanism in an imaging device with a rotating stage according to this application.

[0031] Figure 10 This is a perspective view of a limiting ring in an imaging device with a rotating stage according to this application;

[0032] Figure 11 yes Figure 2 Enlarged view of circle C shown;

[0033] Figure 12 This is a perspective view of the support platform in an imaging device with a rotating stage according to this application.

[0034] Figure label:

[0035] 10. Machine body; 11. Workbench;

[0036] 20. Rotating platform; 21. Central disc assembly; 22. Support device; 221. Support mechanism; 222. Support rod; 23. Loading device; 231. Loading mechanism; 232. Loading rack; 233. Support platform; 233A. Adjustment groove; 234. Adjustable limit assembly; 235. Limit head; 236. Connecting column; 237. Card; 238. First arc-shaped locking head; 239. Locking hook; 24. Upper central disc mechanism; 241. Central plate; 242. First outer shell; 243. Rotary bearing; 25. Lower central disc mechanism; 251. Second outer shell; 252. Connecting rod; 26. Sliding support mechanism; 261 262. Slide groove; 263. Arc-shaped sliding plate; 264. Support column; 265. Limiting ring; 266. Locking hole; 267. Second arc-shaped locking head; 28. Support platform; 291. Concave locking groove; 202. Hook and loop lock. Detailed Implementation

[0037] The specific embodiments of this application are described below with reference to the accompanying drawings and examples. Through the content described in this specification, those skilled in the art can clearly and completely understand the technical solution, the technical problem solved, and the resulting technical effects of this application. It is understood that the specific embodiments described herein are only for explaining this application and not for limiting it. Furthermore, for ease of description, only the parts related to this application are shown in the accompanying drawings.

[0038] It should be noted that the structures, proportions, sizes, etc., shown in the accompanying drawings are only for the purpose of assisting those skilled in the art in understanding and reading the contents described in the specification, and are not intended to limit the conditions under which this application can be implemented. Therefore, they have no substantial technical significance. Any modifications to the structure, changes in the proportional relationships, or adjustments to the size should fall within the scope of the technical content disclosed in this application, provided that they do not affect the effects and purposes that this application can produce.

[0039] The use of terms such as "first," "second," and "the" does not imply quantity limitation and may indicate singular or plural. The terms "comprising," "including," "having," and any variations thereof used in this application are intended to cover non-exclusive inclusion; for example, processes, methods, systems that include a series of steps or modules.

[0040] The product or equipment is not limited to the listed steps or units, but may also include steps or units not listed, or other steps or units inherent to these processes, methods, products, or equipment. Terms such as “connection,” “linking,” and “coupled” used in this application are not limited to physical or mechanical connections, but may also include direct or indirect electrical connections.

[0041] It should also be noted that the longitudinal section corresponding to the embodiment of this application can be the section corresponding to the front view direction, the transverse section can be the section corresponding to the right view direction, and the horizontal section can be the section corresponding to the top view direction.

[0042] Furthermore, where there is no conflict, the embodiments and features described in this application can be combined with each other. This application will now be described in detail with reference to the accompanying drawings and embodiments.

[0043] refer to Figure 1 , Figure 1 This is an overall structural diagram of an imaging device with a rotating stage according to this application. Figure 1 As shown, an imaging device with a rotating stage includes a body 10 and a rotating stage 20 connected to the body 10. The rotating stage 20 is connected to the worktable 11 of the body 10.

[0044] Continue to refer to Figure 1 Please refer to them together. Figure 2 , Figure 3 , Figure 4 and Figure 5 , Figure 2 This is a perspective view of the rotating stage in an imaging device with a rotating stage according to this application. Figure 3 This is a structural diagram of the rotating stage in an imaging device with a rotating stage according to this application, from another perspective. Figure 4 This is a structural diagram of the lower central disk mechanism in an imaging device with a rotating stage according to this application. Figure 5 This is a structural diagram from another perspective of the lower central disk mechanism in an imaging device with a rotating stage, as described in this application. Figure 1 , Figure 2 , Figure 3 , Figure 4 and Figure 5As shown, the rotating platform 20 includes a central disk assembly 21, a support device 22 connected to the central disk assembly 21, and a loading device 23 connected to the support device 22. The central disk assembly 21 includes an upper central disk mechanism 24 and a lower central disk mechanism 25. The upper central disk mechanism 24 includes a central plate 241, a first outer shell 242 connected to the central plate 241, and a rotating bearing 243 disposed inside the first outer shell 242. The first outer shell 242 is connected to the bottom of the central plate 241, and the rotating bearing 243 is embedded in the central plate 241. Inside the first outer shell 242, both the center plate 241 and the first outer shell 242 are circular. The lower center plate mechanism 25 includes a second outer shell 251 and a connecting rod 252. Both the second outer shell 251 and the connecting rod 252 are mounted on the worktable 11 of the machine body 10. The center of the second outer shell 251 and the center of the connecting rod 252 are on the same straight line, and the second outer shell 251 is circular. The outer diameter of the first outer shell 242 is L1, and the inner diameter of the second outer shell 251 is L2, where L2 > L1. The support device 22 includes at least one set of support mechanisms 221, which are evenly distributed on the upper center plate mechanism 24. Each set of support mechanisms 221 includes three support rods 222, which are evenly distributed on the outer side wall of the first outer shell 242.

[0045] Continue to refer to Figure 1 Please refer to them together. Figure 6 , Figure 7 and Figure 8 , Figure 6 yes Figure 2 The enlarged view of circle A shown. Figure 7 yes Figure 3 The enlarged view of circle B shown. Figure 8 This is a perspective view of an adjustable limiting component in an imaging device with a rotating stage, as described in this application. Figure 1 , Figure 6 , Figure 7 and Figure 8As shown, the loading device 23 includes at least one set of loading mechanisms 231, which are connected to the support mechanism 221. Each set of loading mechanisms 231 includes three shelves 232, with a support platform 233 formed inside each shelf 232. At least three adjustable limiting components 234 are connected to the support platform 233. Specifically, the support platform 233 is provided with an adjustment groove 233A. The adjustable limiting component 234 includes a limiting head 235, a connecting post 236, and a card 237. The limiting head 235 is disposed on the support platform 221. The upper part of the support platform 233 has a connecting column 236 that passes through the adjustment groove 233A, and a card 237 is set at the lower part of the support platform 233. The limiting head 235, the connecting column 236 and the card 237 are connected from top to bottom to enable the placement of one or more objects to be measured on the same carrier 232 and to be spaced apart by the adjustable limiting component 234. This improves the stability of the object placement and prevents the object from sliding or shifting during the measurement process, thereby improving the reliability of the image instrument with the rotating carrier 20. Here, the imaging device with a rotating stage includes a body 10 and a rotating stage 20 connected to the body 10. The rotating stage 20 is connected to the worktable 11 of the body 10. The rotating stage 20 includes a central disk device 21, a support device 22 connected to the central disk device 21, and a loading device 23 connected to the support device 22. The central disk device 21 includes an upper central disk mechanism 24 and a lower central disk mechanism 25. The support device 22 includes at least one set of support mechanisms 221, which are evenly distributed on the upper central disk mechanism 24. The loading device 23 includes at least one set of loading mechanisms 231, which are connected to the support mechanisms 221. This makes the imaging device easy to operate and effectively improves work efficiency during daily use. In addition, by setting the adjustable limit component 234, multiple test objects can be placed on the same loading rack 232, and multiple test objects can be pre-processed at the same time, further improving the convenience of use and work efficiency.

[0046] To facilitate understanding, the working principle of this application is further described as follows: In daily operation, the operator places the objects to be measured on the support platform 233 of the rack 232 according to the quantity, category, and batch of the objects. If multiple objects are placed on one rack 232, the number of adjustable limiting components 234 is selected according to the number of objects. The adjacent objects on one rack 232 are separated through the cooperation between the adjustable limiting components 234 and the adjusting groove 233A, thereby improving observability and avoiding observation confusion and inaccuracies when observing multiple objects. Then, the imager with a rotating stage... The frame 232 is manually rotated by the cooperation of the upper central plate mechanism 24 and the lower central plate mechanism 25. It should be noted that during the rotation, only one frame 232 is placed below the detection end of the machine body 10. The object to be measured on the frame 232 is aligned and measured by adjusting the horizontal and vertical sides of the machine body 10, which effectively improves the convenience of operation and work efficiency. In addition, the card 237 and the limiting head 235 form a clamping space to clamp the support platform 233, so that there is appropriate friction between the support platform 233 and the card 237 and the limiting head 235, preventing the adjustable limiting component 234 from moving randomly.

[0047] Continue to refer to Figure 1 Please refer to them together. Figure 9 , Figure 10 , Figure 11 and Figure 12 , Figure 9 This is a perspective view of the support clamp mechanism in an imaging device with a rotating stage according to this application. Figure 10 This is a perspective view of the limiting ring in an imaging device with a rotating stage according to this application. Figure 11 yes Figure 2 The enlarged view of circle C shown. Figure 12 This is a perspective view of the stage in an imaging device with a rotating platform according to this application. Figure 1 , Figure 9 , Figure 10 and Figure 12As shown, the central disk device 21 further includes a sliding support mechanism 26, which includes an arc-shaped sliding plate 262 and a support column 263. The arc-shaped sliding plate 262 is connected to one end of the support column 263, and the other end of the support column 263 is connected to the support rod 222. At the bottom, the number of sliding support mechanisms 26 is the same as the number of support rods 222. A limiting ring 264 is provided around the outer wall of the lower central disk mechanism 25. The limiting ring 264 and the outer wall of the second outer shell 251 together form a sliding groove 261. The arc-shaped sliding plate 262 cooperates with the sliding groove 261, thereby realizing that when one of the carriers 232 in the carrying device 23 is in the observation position, the carrier 232 and the remaining carriers 232 can be stably supported. The positioning is achieved by the friction between the arc-shaped sliding plate 262 and the sliding groove 261, which effectively improves the reliability and stability of the imager with the rotating stage during use. In addition, a second arc-shaped locking head 266 is provided on the outer wall of the arc-shaped sliding plate 262, and a locking hole 265 is provided on the limiting ring 264. The second arc-shaped locking head 266 cooperates with the locking hole 265. A first arc-shaped locking head 238 is provided on the outer wall of the carrier 232, and a lock is provided on its upper side wall. Hook 239, the workbench 11 is also provided with a support platform 27, the support platform 27 is provided with a concave locking groove 271 along a preset direction, and a latch lock 272 is provided on the top of the support platform 27. The first arc-shaped locking head 238 cooperates with the concave locking groove 271, and the hook 239 cooperates with the latch lock 272. Specifically, when the carrier 232 is manually moved, the second arc-shaped locking head 266 is aligned with the locking hole 265, and the first arc-shaped locking hole 238 is aligned with the concave locking groove 271. At this time, by The latch lock 272 and the locking hook 239 cooperate, and the reserved gap between each structure is used to realize the translation of the arc-shaped sliding plate 262 and the carrier 232 near the detection end of the machine body 10. This realizes the cooperation between the second arc-shaped locking head 266 and the locking hole 265, and the cooperation between the first arc-shaped locking head 238 and the concave locking groove 271. This effectively improves the stability of the carrier 232 located under the detection end of the machine body 10 during the test process and effectively improves the accuracy.

[0048] Although this application has been described and illustrated with reference to specific embodiments thereof, such description and illustration are not limiting of this application. It will be readily understood by those skilled in the art that various changes can be made and equivalent elements can be substituted within embodiments without departing from the true spirit and scope of this application as defined by the appended claims. Illustrations may not be drawn to scale. Differences may exist between the technical representation in this application and actual implementation due to variables in the manufacturing process, etc. Other embodiments of this application may exist that are not specifically described. The description and illustrations should be considered illustrative rather than restrictive. Modifications can be made to adapt particular circumstances, materials, composition, methods, or processes to the objectives, spirit, and scope of this application. All such modifications fall within the scope of the appended claims. While the methods disclosed herein have been described with reference to specific operations performed in a particular order, it should be understood that these operations can be combined, subdivided, or reordered to form equivalent methods without departing from the teachings of this application. Therefore, unless specifically indicated herein, the order and grouping of operations do not limit this application.

Claims

1. An imaging system with a rotating stage, characterized in that, include Organism; A rotating platform connected to the machine body is connected to the machine body's worktable. The rotating platform includes a central disk device, a support device connected to the central disk device, and a loading device connected to the support device. The central disk device includes an upper central disk mechanism and a lower central disk mechanism. The support device includes at least one set of support mechanisms, which are evenly distributed on the upper central disk mechanism. The loading device includes at least one set of loading mechanisms, which are connected to the support mechanisms.

2. The imaging device with a rotating stage according to claim 1, characterized in that, The upper center plate mechanism includes a center plate, a first outer shell connected to the center plate, and a rotating bearing disposed inside the first outer shell. The first outer shell is connected to the bottom of the center plate, and the rotating bearing is embedded inside the first outer shell.

3. The imaging device with a rotating stage according to claim 2, characterized in that, Both the center plate and the first outer shell are circular in shape.

4. The imaging device with a rotating stage according to claim 3, characterized in that, The lower center plate mechanism includes a second outer shell and a connecting rod, both of which are mounted on the machine body's worktable.

5. The imaging device with a rotating stage according to claim 4, characterized in that, The center of the second outer shell and the center of the connecting rod are on the same straight line.

6. The imaging device with a rotating stage according to claim 5, characterized in that, The second outer shell is circular in shape. The outer diameter of the first outer shell is L1, and the inner diameter of the second outer shell is L2, where L2 > L1.

7. The imaging device with a rotating stage according to claim 6, characterized in that, A set of support mechanisms includes three support rods, which are evenly distributed on the outer side wall of the first housing.

8. The imaging device with a rotating stage according to claim 7, characterized in that, A set of loading mechanisms includes three loading racks, with support platforms formed inside the loading racks.

9. The imaging device with a rotating stage according to claim 8, characterized in that, At least three adjustable limit components are connected to the support platform.

10. The imaging device with a rotating stage according to claim 9, characterized in that, The support platform is provided with an adjustment groove. The adjustable limit component includes a limit head, a connecting column, and a card. The limit head is located on the upper part of the support platform, the connecting column passes through the adjustment groove, and the card is located on the lower part of the support platform. The limit head, connecting column, and card are connected in sequence from top to bottom.