Integrally-controlled automatic lifting microscope stand
By designing an integrated control automatic lifting microscope table, the existing microscope table has been solved, and the problem of fixed height and large space occupancy of the existing microscope table is achieved, highly flexible adjustment and automatic flip are achieved, and experimental efficiency and operation convenience are improved.
Patent Information
- Application Number
- CN202422098763.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-28
- Publication Date
- 2025-06-24
- Estimated Expiration
- 2034-08-28
AI Technical Summary
The existing microscope table has a fixed height, making it difficult to adapt to the use of experimental personnel of different heights. The microscope occupies a large desktop space, so it needs to be packed and stored during use, which is troublesome to operate.
Design an integrated control automatic lifting microscope table. Through the lifting and flip components, the height adjustment and automatic flip of the microscope table are realized, combining the limit slide rod and limit sleeve to improve stability; at the same time, the storage box and fill light are set up to improve experimental efficiency.
It realizes flexible height adjustment of the microscope table, adapts to the use of experimental personnel of different heights, reduces the desktop space and is convenient to operate; at the same time, it improves experimental efficiency and light intensity.
Smart Images

Figure CN223022458U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of experimental equipment, and more specifically to an integrated control automatic lifting microscope stage. Background Art
[0002] A microscope is a device used to observe biological sections, biological cells, bacteria, as well as living tissue cultures, fluid precipitates, etc. At the same time, it can also observe other transparent or translucent objects, as well as objects such as powders and fine particles. When using a microscope, it will be placed on the surface of an experimental table.
[0003] When placing the microscope on the surface of the experimental table for use, the height of the general experimental table is fixed. In view of this situation, when it is used by different experimenters, it is difficult to be used by experimenters of different heights, and it has the defect of poor practicability. Moreover, when using the microscope on the surface of the experimental table, it occupies a relatively large amount of limited desktop space. When the microscope is not needed, it is also necessary to put away the microscope additionally, which is rather troublesome.
[0004] In view of this, the utility model proposes an integrated control automatic lifting microscope stage to solve these problems. Summary of the Utility Model
[0005] In order to overcome the above-mentioned defects of the prior art, the utility model provides an integrated control automatic lifting microscope stage to solve the problems existing in the above background art.
[0006] The utility model provides the following technical solution: an integrated control automatic lifting microscope stage, including a bottom plate, a surrounding plate is fixedly installed above the bottom plate, a notch is reserved on the front surface of the surrounding plate, a controller is arranged at the upper right of the surrounding plate, a table frame is arranged above the surrounding plate, and a lifting assembly is arranged between the surrounding plate and the table frame. A rotating rod is rotatably connected inside the table frame, a table top is fixedly installed on the surface of the rotating rod, a microscope body is fixedly installed on the surface of the table top, and a flipping assembly is arranged between the table frame and the rotating rod;
[0007] The lifting assembly includes a rectangular column fixedly installed on the inner rear wall of the surrounding plate. An installation groove is opened at the top end of the rectangular column, a lifting rod is slidably connected inside the installation groove, the table frame is fixedly installed at the top end of the lifting rod, and a lifting motor is fixedly installed on the inner bottom wall of the installation groove. A threaded rod is fixedly installed on the output shaft of the lifting motor, and an internal threaded groove adapted to the threaded rod is opened at the bottom end of the lifting rod;
[0008] The flipping assembly includes a transmission cavity opened on the inner wall of the table frame. The rotating rod extends into the transmission cavity and is fixedly installed with a worm gear. A servo motor is fixedly installed at the bottom end of the table frame. The output shaft of the servo motor extends into the transmission cavity and is fixedly installed with a worm, and the worm meshes with the worm gear.
[0009] Furthermore, limiting slide bars are welded to both the left and right sides of the lower surface of the table frame. Limiting sleeves are fixedly installed on the left and right inner walls of the surrounding plate, and the limiting slide bars are inserted into the interiors of the limiting sleeves. By providing the limiting slide bars and the limiting sleeves and allowing the limiting slide bars to slide inside the limiting sleeves, the stability of the table frame during lifting and moving can be improved.
[0010] Furthermore, a number of tooth grooves are vertically formed in a linear array on the surface of the limiting slide bar. An elastic reed is provided on the inner wall of the limiting sleeve, and the elastic reed is clamped with the tooth grooves. The elastic reed is made of iron metal. An electromagnet is embedded in the inner wall of the limiting sleeve. When the electromagnet is energized, the elastic reed is separated from the tooth grooves on the surface of the limiting slide bar under the magnetic force of the electromagnet. After adjusting the height of the table, the elastic reed is clamped with the tooth grooves to assist in positioning the limiting slide bar and improve the stability of the table frame during use. Moreover, when the table frame needs to be lifted and moved, the magnetic adsorption effect of the electromagnet on the elastic reed can release the clamping and positioning effect between the elastic reed and the tooth grooves, ensuring that the limiting slide bar can move smoothly.
[0011] Furthermore, a back plate is provided on the upper surface of the table frame, and a storage box and a supplementary light are provided on the surface of the back plate. By providing the storage box, small experimental tools can be placed. By providing the supplementary light, the light intensity can be increased, facilitating better observation by the experimenter using the microscope body.
[0012] Furthermore, the back plate is rotatably connected to the table frame through a damping rotating shaft. The storage box is rotatably connected to the back plate, and a counterweight is fixedly installed at the bottom end of the storage box. When the microscope body is not in use, the back plate can be covered to shield and protect the table frame and the table. When the back plate is covered, since the storage box is rotatably connected to the back plate, under the action of the counterweight, the storage box can always maintain an upward-opening state, ensuring the storage effect of the storage box.
[0013] Furthermore, a storage box is placed on the surface of the bottom plate. By providing the storage box, large experimental items and materials can be neatly stored.
[0014] Furthermore, moving wheels are provided at the bottom end of the bottom plate. By providing the moving wheels, it is convenient to move the entire device.
[0015] The technical effects and advantages of the present utility model:
[0016] 1. For this utility model, when using the microscope body, it is kept horizontally on the tabletop surface. During the use process, through the lifting component, the lifting motor drives the threaded rod to rotate, thereby driving the lifting rod to slide on the top of the rectangular column to adjust the height of the table and the microscope body, meeting the needs of experimenters with different heights. It has strong practicability. When the microscope body is not in use, through the flipping component, the servo motor drives the worm to rotate. Based on the meshing of the worm and the worm wheel, the rotating rod and the table are driven to flip, so that the microscope body flips to the bottom of the table, thus quickly eliminating the obstruction of the microscope body placed on the tabletop to the actions of the experimenters, and the operation is convenient.
[0017] 2. For this utility model, by setting the limit slide rod and the limit sleeve, and using the limit slide rod to slide inside the limit sleeve, the stability of the table frame during lifting and moving can be improved; and by using the elastic reed to be clamped with the tooth groove, the limit slide rod can be assisted in positioning, improving the stability of the table frame during use. And when the table frame needs to be lifted and moved, by using the magnetic adsorption effect of the electromagnet on the elastic reed, the clamping and positioning effect of the elastic reed and the tooth groove can be released, ensuring that the limit slide rod can move smoothly.
[0018] 3. For this utility model, by setting the storage box, small experimental tools can be placed. By setting the supplementary light, the light intensity can be increased, facilitating the experimenter to better use the microscope body for observation; and since the back plate is rotatably connected to the table frame surface, when not in use, first flip the microscope body to the bottom of the table, and then the back plate can be covered to shield and protect the table frame and the table with the back plate; and when the back plate is covered, since the storage box is rotatably connected to the back plate, under the action of the counterweight, the storage box can always keep the opening upward, ensuring the storage effect of the storage box. Description of the Drawings
[0019] Figure 1 It is a three-dimensional structure schematic diagram of the first perspective of this utility model;
[0020] Figure 2 It is a three-dimensional structure schematic diagram of the second perspective of this utility model;
[0021] Figure 3 It is a structure schematic diagram of the lifting component of this utility model;
[0022] Figure 4 It is a structure schematic diagram of the flipping component of this utility model;
[0023] Figure 5 It is a sectional structure schematic diagram of the limit sleeve of this utility model.
[0024] The reference numerals are: 1, bottom plate; 2, enclosing plate; 3, controller; 4, table frame; 5, lifting assembly; 501, rectangular column; 502, lifting rod; 503, lifting motor; 504, threaded rod; 6, rotating rod; 7, table top; 8, microscope body; 9, flipping assembly; 901, worm gear; 902, servo motor; 903, worm; 10, limiting slide bar; 11, limiting sleeve; 12, tooth groove; 13, elastic reed; 14, electromagnet; 15, back plate; 16, storage box; 17, supplementary light; 18, counterweight; 19, storage box; 20, moving wheel. Detailed implementation manners
[0025] Next, the technical solutions in the present utility model will be clearly and completely described in conjunction with the accompanying drawings in the present utility model. In addition, the forms of each structure recorded in the following implementation manners are only examples. An integrated control automatic lifting microscope stage related to the present utility model is not limited to the structures recorded in the following implementation manners. All other implementation manners obtained by those of ordinary skill in the art without creative efforts fall within the protection scope of the present utility model.
[0026] Referring to Figures 1 - 5 , the present utility model provides an integrated control automatic lifting microscope stage, including a bottom plate 1, and moving wheels 20 are arranged at the bottom end of the bottom plate 1.
[0027] Above the bottom plate 1, an enclosing plate 2 is fixedly installed. A notch is reserved on the front surface of the enclosing plate 2. A controller 3 is arranged at the upper right of the enclosing plate 2. Above the enclosing plate 2, a table frame 4 is arranged. And a lifting assembly 5 is arranged between the enclosing plate 2 and the table frame 4. A rotating rod 6 is rotatably connected inside the table frame 4. A table top 7 is fixedly installed on the surface of the rotating rod 6. A microscope body 8 is fixedly installed on the surface of the table top 7. A flipping assembly 9 is arranged between the table frame 4 and the rotating rod 6.
[0028] Referring to Figure 1 and Figure 3 , the lifting assembly 5 includes a rectangular column 501 fixedly installed on the inner rear wall of the enclosing plate 2. An installation groove is opened at the top end of the rectangular column 501. A lifting rod 502 is slidably connected inside the installation groove. The table frame 4 is fixedly installed at the top end of the lifting rod 502. And a lifting motor 503 is fixedly installed on the inner bottom wall of the installation groove. A threaded rod 504 is fixedly installed on the output shaft of the lifting motor 503. An internal thread groove adapted to the threaded rod 504 is opened at the bottom end of the lifting rod 502.
[0029] When the integrated control automatic lifting microscope stage is in use, first use the moving wheels 20 to move the whole device. After moving to a suitable position, connect the controller 3 to the power supply of the external laboratory, and then use the microscope body 8.
[0030] It should be noted that when using the microscope body 8, the microscope body 8 is kept horizontally on the surface of the table 7. Through the lifting assembly 5, the lifting motor 503 drives the threaded rod 504 to rotate, and then drives the lifting rod 502 to slide on the top of the rectangular column 501 to adjust the height of the table 7 and the microscope body 8 to meet the needs of experimenters of different heights.
[0031] Refer to Figure 5 , limit sliding rods 10 are welded to the left and right sides of the lower surface of the table frame 4, limit sleeves 11 are fixedly installed on the left and right inner walls of the enclosure plate 2, and the limit sliding rods 10 are inserted into the limit sleeves 11.
[0032] It should be noted that by setting the limit sliding rods 10 and the limit sleeves 11 and using the limit sliding rods 10 to slide inside the limit sleeves 11, the stability of the table frame 4 during lifting and moving can be improved.
[0033] Refer to Figure 5 , a plurality of tooth grooves 12 are vertically arranged in a linear array on the surface of the limit sliding rod 10, an elastic reed 13 is arranged on the inner wall of the limit sleeve 11, and the elastic reed 13 is clamped with the tooth grooves 12.
[0034] The elastic reed 13 is made of iron metal, and an electromagnet 14 is embedded in the inner wall of the limit sleeve 11. When the electromagnet 14 is energized, the elastic reed 13 is separated from the tooth grooves 12 on the surface of the limit sliding rod 10 under the magnetic force of the electromagnet 14.
[0035] Furthermore, after adjusting the height of the table 7, using the elastic reed 13 to be clamped with the tooth grooves 12 can assist in positioning the limit sliding rod 10 and improve the stability of the table frame 4 during use. And when it is necessary to lift and move the table frame 4, using the magnetic adsorption effect of the electromagnet 14 on the elastic reed 13 can release the clamping and positioning effect of the elastic reed 13 and the tooth grooves 12 to ensure that the limit sliding rod 10 can move smoothly.
[0036] Refer to Figure 2 and Figure 4 , the flipping assembly 9 includes a transmission cavity opened in the inner wall of the table frame 4. The rotating rod 6 extends into the transmission cavity and is fixedly installed with a worm gear 901. A servo motor 902 is fixedly installed at the bottom end of the table frame 4. The output shaft of the servo motor 902 extends into the transmission cavity and is fixedly installed with a worm 903. The worm 903 meshes with the worm gear 901.
[0037] Furthermore, when the microscope body 8 is not in use, by flipping the assembly 9, the servo motor 902 is used to drive the worm 903 to rotate. Based on the meshing of the worm 903 and the worm wheel 901, the rotating rod 6 and the table 7 are driven to flip, so that the microscope body 8 is flipped below the table 7, thereby quickly eliminating the interference of the microscope body 8 placed on the surface of the table 7 to the actions of the experimenter, and the operation is convenient.
[0038] A storage box 19 is placed on the surface of the bottom plate 1.
[0039] By setting the storage box 19, large experimental items and materials can be stored in an orderly manner.
[0040] A back plate 15 is provided on the upper surface of the table frame 4, and a storage box 16 and a supplementary light 17 are provided on the surface of the back plate 15.
[0041] Furthermore, by setting the storage box 16, small experimental tools can be placed. By setting the supplementary light 17, the effect of improving the light intensity can be achieved, which is convenient for the experimenter to better use the microscope body 8 for observation.
[0042] The back plate 15 is rotatably connected to the table frame 4 through a damping rotating shaft. The storage box 16 is rotatably connected to the back plate 15, and a counterweight 18 is fixedly installed at the bottom end of the storage box 16.
[0043] It should be noted that since the back plate 15 is rotatably connected to the surface of the table frame 4, when not in use, the microscope body 8 is first flipped to the bottom of the table 7, and then the back plate 15 can be covered to shield and protect the table frame 4 and the table 7 with the back plate 15.
[0044] Furthermore, when the back plate 15 is covered, since the storage box 16 is rotatably connected to the back plate 15, under the action of the counterweight 18, the storage box 16 can always maintain an upward-opening state, ensuring the storage effect of the storage box 16.
[0045] Finally, it should be noted that: in the drawings of the disclosed embodiments of the present utility model, only the structures related to the disclosed embodiments are involved. Other structures can refer to the general design. Without conflict, the same embodiment and different embodiments of the present utility model can be combined with each other.
Claims
1. An integrated controlled automatic lifting microscope stage, comprising a bottom plate (1), characterized in that: A panel (2) is fixedly mounted above the bottom plate (1), a notch is reserved on the front of the panel (2), a controller (3) is arranged on the upper right side of the panel (2), a table frame (4) is arranged above the panel (2), a lifting assembly (5) is arranged between the panel (2) and the table frame (4), a rotating rod (6) is rotatably connected inside the table frame (4), a table (7) is fixedly mounted on the surface of the rotating rod (6), a microscope body (8) is fixedly mounted on the surface of the table frame (7), and a flip assembly (9) is arranged between the table frame (4) and the rotating rod (6); The lifting assembly (5) comprises a rectangular column (501) fixedly mounted on the inner rear wall of the enclosure (2); a mounting groove is provided at the top of the rectangular column (501); a lifting rod (502) is slidably connected inside the mounting groove; a table frame (4) is fixedly mounted on the top of the lifting rod (502); a lifting motor (503) is fixedly mounted on the inner bottom wall of the mounting groove; a threaded rod (504) is fixedly mounted on the output shaft of the lifting motor (503); and an internal threaded groove matching the threaded rod (504) is provided at the bottom end of the lifting rod (502); The flip assembly (9) comprises a transmission cavity formed on the inner wall of the table frame (4); the rotating rod (6) extends into the transmission cavity and is fixedly mounted with a worm gear (901); a servo motor (902) is fixedly mounted at the bottom end of the table frame (4); an output shaft of the servo motor (902) extends into the transmission cavity and is fixedly mounted with a worm gear (903); and the worm gear (903) is meshed with the worm gear (901).
2. The integrated control automatic lifting microscope stage according to claim 1 is characterized in that: Limiting slide bars (10) are welded to the left and right sides of the lower surface of the table frame (4), and limiting sleeves (11) are fixedly installed on the left and right inner walls of the enclosure (2), and the limiting slide bars (10) are inserted into the inside of the limiting sleeves (11).
3. The integrated controlled automatic lifting microscope stage according to claim 2, characterized in that: The surface of the limiting sliding rod (10) is vertically provided with a plurality of tooth grooves (12) in a linear array, and the inner wall of the limiting sleeve (11) is provided with an elastic spring sheet (13), which is clamped with the tooth grooves (12).
4. The integrated control automatic lifting microscope stage according to claim 3 is characterized in that: The elastic spring sheet (13) is made of metal iron. The inner wall of the limiting sleeve (11) is embedded with an electromagnet (14). When the electromagnet (14) is energized, the elastic spring sheet (13) is separated from the tooth groove (12) on the surface of the limiting slide rod (10) under the magnetic force of the electromagnet (14).
5. The integrated controlled automatic lifting microscope stage according to claim 1, characterized in that: The upper surface of the table frame (4) is provided with a back panel (15), and the surface of the back panel (15) is provided with a storage box (16) and a fill light (17).
6. The integrated control automatic lifting microscope stage according to claim 5, characterized in that: The back plate (15) is rotatably connected to the table frame (4) via a damping shaft, the storage box (16) is rotatably connected to the back plate (15), and a counterweight (18) is fixedly mounted at the bottom end of the storage box (16).
7. The integrated control automatic lifting microscope stage according to claim 1, characterized in that: A storage box (19) is placed on the surface of the bottom plate (1).
8. The integrated control automatic lifting microscope stage according to claim 1, characterized in that: A moving wheel (20) is provided at the bottom end of the bottom plate (1).