Environmental conditioning system and cell sheet making machine

By increasing the humidity of the atomized fluid in the atomization chamber during chromosome specimen preparation through an internal circulation system, the problem of external environmental influences is solved, and the stability of the slide preparation environment and the clarity of chromosome observation are achieved.

CN223742100UActive Publication Date: 2025-12-30GUANGZHOU DAHUI BIOTECH CO LTD +1
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Patent Information

Application Number
CN202423035660.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-09
Publication Date
2025-12-30
Estimated Expiration
2034-12-09

AI Technical Summary

Technical Problem

In existing technologies, humidity control during chromosome specimen preparation is easily affected by the external environment, leading to an unstable preparation environment and affecting the success rate of chromosome preparation and observation results.

Method used

An internal circulation method is used to draw air from the film preparation chamber to the atomization box via a suction pump. The atomizer atomizes the fluid to increase humidity, and then delivers it to the film preparation chamber through the air outlet pipe to achieve humidification and prevent external environmental pollution.

Benefits of technology

It effectively maintains the stability of the slide preparation environment, improves the success rate of chromosome preparation and the clarity of observation, and avoids external air pollution.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an environment conditioning system and a cell pelleter. The environment adjusting system comprises a machine body, a film making machine and a film making machine, an air inlet of the suction pump is communicated with the flaking cavity; the atomization box is used for storing fluid, and an air inlet of the atomization box is communicated with an air outlet of the suction pump; the atomizer is arranged in the atomization box and used for atomizing fluid in the atomization box; and the air outlet pipe is used for communicating the tabletting cavity with the air outlet of the atomization box and is used for conveying the atomized fluid to the tabletting cavity. According to the application, the suction pump is used for pumping air in the tablet preparation cavity into the atomization box, the atomizer is used for atomizing fluid in the atomization box so as to increase the humidity in the air, and then the humidified air is conveyed to the tablet preparation cavity through the air outlet pipe, so that the tablet preparation cavity is humidified in an internal circulation manner; air pollution of the external environment to the flaking cavity is prevented, and the stability of the flaking environment is favorably maintained.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of cell preparation, and particularly relates to an environment adjusting system and a cell preparation machine. BACKGROUND

[0002] Chromosome specimen preparation and karyotype analysis are basic technical means for clinical genetic diagnosis. However, the chromosome specimen preparation process is easily affected by environmental parameters. When the environmental parameters exceed the threshold range, the preparation success rate will show a downward trend. Humidity has a particularly significant effect on the chromosome preparation success rate. The chromosome preparation success rate increases with the increase of humidity. In addition, under suitable humidity conditions, the chromosomes can maintain a good dispersion state, the bands are clear, and the chromosomes are easy to observe and analyze. However, in the prior art, the humidity is adjusted by air circulation between the inside and outside through the air inlet and the air outlet. The air quality in the preparation cavity is easily affected by the external air quality, which is not conducive to the stability of the preparation environment. CONTENT OF THE UTILITY MODEL

[0003] In order to overcome at least one of the defects of the prior art, the present application provides an environment adjusting system which can humidify the preparation cavity in an internal circulation manner, prevent the external environment from causing air pollution to the preparation cavity, and help maintain the stability of the preparation environment.

[0004] According to an environment adjusting system in an embodiment of the present application, the system comprises: a machine body, wherein a preparation cavity is arranged in the machine body; a suction pump, wherein an air inlet of the suction pump is in communication with the preparation cavity; an atomization box, which is used for storing a fluid, and an air inlet of the atomization box is in communication with an air outlet of the suction pump; an atomizer, which is arranged in the atomization box and is used for atomizing the fluid in the atomization box; and an air outlet pipe, which connects the preparation cavity and an air outlet of the atomization box and is used for conveying the atomized fluid to the preparation cavity.

[0005] In the environment adjusting system, the air in the preparation cavity is pumped to the atomization box by the suction pump, the fluid in the atomization box is atomized by the atomizer to increase the humidity of the air, and then the humidified air is conveyed to the preparation cavity by the air outlet pipe, so that the preparation cavity is humidified in an internal circulation manner, the external environment is prevented from causing air pollution to the preparation cavity, and the stability of the preparation environment is maintained.

[0006] According to some embodiments of the present application, the atomizer is close to the bottom of the atomization box.

[0007] According to some embodiments of the present application, an opening is arranged at the top of the atomization box, and a mounting cover plate is arranged on the opening. A mounting bracket is connected between the mounting cover plate and the atomizer.

[0008] According to some embodiments of the present application, a water level sensor and a water inlet are further included, the water inlet is arranged on the assembly cover plate, one end of the water level sensor is assembled on the assembly cover plate, and the other end of the water level sensor extends into the atomization box.

[0009] According to some embodiments of the present application, at least one heat exchange assembly is further included, the heat exchange assembly includes a heat exchange box and heat exchange fins, and the heat exchange box is connected with the gas outlet pipe and the slice making cavity.

[0010] According to some embodiments of the present application, a heat exchange fan is further included, and the heat exchange fan is arranged between the heat exchange fins and the gas outlet of the heat exchange box.

[0011] According to some embodiments of the present application, the heat exchange fins are one or more of cooling fins and heating fins.

[0012] According to some embodiments of the present application, an exhaust assembly is further included, the exhaust assembly includes a check box and a check cover, a valve plate is arranged on one side of the check box close to the slice making cavity, an exhaust opening is arranged on the valve plate, the exhaust opening is connected with the slice making cavity and the check box, the side of the valve plate away from the slice making cavity extends to form an abutting slope surface, the side of the check cover close to the slice making cavity abuts against the abutting slope surface, and the upper end of the check cover is rotationally connected to the valve plate or the check box.

[0013] According to some embodiments of the present application, an exhaust cylinder and an exhaust fan are further included, the exhaust cylinder is arranged on the side of the check box away from the slice making cavity, and the exhaust fan is connected with the exhaust cylinder and the check box.

[0014] Based on the same inventive concept, the present application further provides a cell slice machine including the environment adjusting system.

[0015] In summary, the environment adjusting system provided by the present application has the following technical effects:

[0016] The air in the slice making cavity is pumped into the atomization box by the suction pump, the fluid in the atomization box is atomized by the atomizer to increase the humidity in the air, and the humidified air is then delivered to the slice making cavity through the gas outlet pipe, so that the slice making cavity is humidified in an internal circulation manner, the air pollution of the slice making cavity caused by the external environment is prevented, and the stability of the slice making environment is maintained. BRIEF DESCRIPTION OF DRAWINGS

[0017] Figure 1 FIG. 1 is a structural schematic diagram of a cell slice machine according to an embodiment of the present application;

[0018] Figure 2 Structure diagram of the environment adjusting system according to an embodiment of the present application;

[0019] Figure 3 Structure diagram of the atomizing box according to an embodiment of the present application;

[0020] Figure 4 Assembly diagram of the atomizer according to an embodiment of the present application;

[0021] Figure 5 Structure diagram of the heat exchange box according to an embodiment of the present application;

[0022] Figure 6 Structure diagram of the exhaust assembly according to an embodiment of the present application;

[0023] Figure 7 Sectional view of the exhaust assembly according to an embodiment of the present application.

[0024] In the drawings, the reference signs have the following meanings:

[0025] 1, machine body; 11, tablet-making cavity; 2, suction pump; 3, atomizing box; 31, opening; 32, assembly cover plate; 33, assembly support; 34, water level sensor; 35, water inlet; 4, atomizer; 5, air outlet pipe; 6, heat exchange assembly; 61, heat exchange box; 62, heat exchange fin; 63, heat exchange fan; 7, exhaust assembly; 71, check box; 72, check cover; 73, valve plate; 74, exhaust opening; 75, abutting slope; 76, exhaust cylinder; 77, exhaust fan. DETAILED DESCRIPTION

[0026] In order to better understand and implement, the technical solutions in the embodiments of the present application will be clearly and completely described below in combination with the drawings in the embodiments of the present application.

[0027] In the description of the present application, it should be noted that the terms "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer" and the like indicate the orientation or positional relationship shown in the drawings, and are only for the purpose of facilitating the description of the present application and simplifying the description, and do not indicate or imply that the devices or elements referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as limiting the present application.

[0028] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which the present application belongs. The terms used in the specification of the present application are only for the purpose of describing the specific embodiments of the present application, and are not intended to limit the present application.

[0029] Reference is made to Figure 1 ,Figure 2 、 Figure 3 and Figure 4 The application discloses an environment adjusting system. In some embodiments, the environment adjusting system comprises a body 1, a suction pump 2, an atomization box 3, an atomizer 4 and an air outlet pipe 5. Preferably, the body 1 is provided with a tablet-making cavity 11; the air inlet of the suction pump 2 is communicated with the tablet-making cavity 11; the atomization box 3 is used for storing fluid, and the air inlet of the atomization box 3 is communicated with the air outlet of the suction pump 2; the atomizer 4 is arranged in the atomization box 3 and used for atomizing the fluid in the atomization box 3; and the air outlet pipe 5 is communicated between the tablet-making cavity 11 and the air outlet of the atomization box 3 and used for conveying the atomized fluid to the tablet-making cavity 11. Preferably, the air in the tablet-making cavity 11 is pumped to the atomization box 3 by the suction pump 2, the fluid in the atomization box 3 is atomized by the atomizer 4 to increase the humidity of the air, and then the humidified air is conveyed to the tablet-making cavity 11 by the air outlet pipe 5, so that the tablet-making cavity 11 is humidified in an internal circulation mode, the air pollution of the tablet-making cavity 11 caused by the external environment is prevented, and the stability of the tablet-making environment is maintained.

[0030] Referring to Figure 4 In some embodiments, the atomizer 4 is close to the bottom of the atomization box 3. Preferably, the atomizer 4 is arranged in the atomization box 3 and close to the bottom of the atomization box 3, so that the atomizer 4 can sufficiently atomize the fluid stored in the atomization box 3, the fluid long-term remaining at the bottom of the atomization box 3 is avoided, the sanitation of the fluid stored in the atomization box 3 is effectively ensured, and the air pollution of the tablet-making cavity 11 caused by the atomized fluid is prevented. Optionally, the fluid in the atomization box 3 is water, the water is stored in the atomization box 3 in advance, when the tablet-making cavity 11 needs to be humidified, the air in the tablet-making cavity 11 is pumped to the atomization box 3 by the suction pump 2, the water in the atomization box 3 is atomized by the atomizer 4, the atomized water is mixed with the air to increase the humidity of the air, and then the humidified air is conveyed to the tablet-making cavity 11 by the air outlet pipe 5, so that the tablet-making cavity 11 is humidified in an internal circulation mode.

[0031] Referring to Figure 3 and Figure 4In some embodiments, the top of the atomization box 3 is provided with an opening 31, the opening 31 is covered with an assembly cover plate 32; the assembly cover plate 32 is connected with the atomizer 4 through an assembly bracket 33. Optionally, the assembly cover plate 32 can be connected in the opening 31 through bolt connection, screw connection, clamping and the like. Optionally, the upper end of the assembly bracket 33 is connected with the assembly cover plate 32 through bolt connection, screw connection, clamping, welding and the like. Optionally, the lower end of the assembly bracket 33 is provided with a clamping piece for clamping the atomizer 4. In this way, the assembly cover plate 32 can be disassembled to realize synchronous disassembly of the atomizer 4, optimize the assembly of the atomizer 4. Specifically, when the atomizer 4 needs to be maintained and replaced, the assembly cover plate 32 is only needed to be disassembled from the opening 31. When the assembly cover plate 32 is moved, the assembly bracket 33 synchronously drives the atomizer 4, so that the atomizer 4 is quickly taken out from the atomization box 3, facilitating maintenance and replacement. When reassembling, the atomizer 4 is assembled to the lower end of the assembly bracket 33, and then the assembly cover plate 32 is covered on the opening 31, so that the operator does not need to put his hand into the atomization box 3 to operate.

[0032] Referring to Figure 3 and Figure 4 In some embodiments, a water level sensor 34 and a water inlet 35 are further included. The water inlet 35 is opened in the assembly cover plate 32, one end of the water level sensor 34 is assembled in the assembly cover plate 32, and the other end of the water level sensor 34 extends into the atomization box 3. In this embodiment, the water level sensor 34, the water inlet 35 and the atomizer 4 are integrated through the assembly cover plate 32, which optimizes the assembly of components and facilitates the disassembly of components by the operator. When each component is disassembled, the operator does not need to put his hand into the atomization box 3 to operate. Preferably, the water level sensor 34 monitors the water level of the fluid in the atomization box 3 to feedback the water level of the fluid in the atomization box 3 to the operator. When the water level of the fluid in the atomization box 3 is too low, the operator can inject water into the atomization box 3 through the water inlet 35.

[0033] Referring to Figure 2 and Figure 5In some embodiments, at least one heat exchange component 6 is further included, which comprises a heat exchange box 61 and heat exchange fins 62, the heat exchange box 61 is connected with the air outlet pipe 5 and the slice making cavity 11, and the heat exchange fins 62 are arranged in the heat exchange box 61. Optionally, the heat exchange fins 62 are used for heat exchange with air, in this embodiment, the air outlet pipe 5 delivers the humidified air into the heat exchange box 61, the humidified air is heat exchanged by the heat exchange fins 62 to adjust the temperature of the humidified air, and then the humidified air enters the slice making cavity 11 through the air outlet of the heat exchange box 61, so as to synchronously adjust the temperature and humidity of the slice making cavity 11, so that the slice making cavity 11 has the environmental parameters required by the experiment process.

[0034] Referring to Figure 2 and Figure 5 In some embodiments, a heat exchange fan 63 is further included, which is arranged between the heat exchange fins 62 and the air outlet of the heat exchange box 61. Preferably, the heat exchange fan 63 is used for delivering the air in the heat exchange box 61 to the slice making cavity 11, in this embodiment, the air in the slice making cavity 11 is delivered to the atomization box 3 by the suction pump 2, the water in the atomization box 3 is atomized by the atomizer 4, the atomized water is mixed with air to increase the humidity of the air, the humidified air is delivered to the heat exchange box 61 through the air outlet pipe 5, the humidified air is heat exchanged by the heat exchange fins 62 to adjust the temperature of the humidified air, the heat exchanged air is delivered to the slice making cavity 11 by the heat exchange fan 63, the temperature and humidity of the slice making cavity 11 are adjusted in an internal circulation mode, the efficiency of the internal air circulation is effectively guaranteed, and the effect of adjusting the temperature and humidity of the slice making cavity 11 is optimized.

[0035] In some embodiments, the heat exchange fins 62 are one or more of cooling fins and heating fins. Optionally, the number of heat exchange assemblies 6 can be more than one, and the heat exchange fins 62 in the heat exchange boxes 61 are one of cooling fins and heating fins, so that the heat exchange fins 62 heat or cool the humidified air. Optionally, the heat exchange boxes 61 have both cooling fins and heating fins. Optionally, the tablet preparation cavity 11 is provided with a temperature sensor, and the cooling fins or heating fins are started according to the temperature of the tablet preparation cavity 11, so that the heat exchange fins 62 heat or cool the humidified air. Optionally, the number of heat exchange assemblies 6 can be more than two, and the heat exchange fins 62 in the heat exchange boxes 61 of any one of the heat exchange assemblies 6 are cooling fins, and the heat exchange fins 62 in the heat exchange boxes 61 of the other heat exchange assembly 6 are heating fins. According to the temperature of the tablet preparation cavity 11, the corresponding heat exchange assembly 6 is driven to exchange heat with the humidified air, so as to adjust the temperature of the humidified air, and the heat exchanged air is delivered to the tablet preparation cavity 11 by the heat exchange fan 63. Further, the heat exchange fins 62 are independent of the opening and closing of the atomizer 4, so that the temperature or humidity of the tablet preparation cavity 11 can be adjusted separately. Optionally, the tablet preparation cavity 11 is provided with a temperature sensor and a humidity sensor. Optionally, when the temperature of the tablet preparation cavity 11 is adjusted, the air in the tablet preparation cavity 11 is pumped to the atomization box 3 by the suction pump 2, and then delivered to the heat exchange box 61 by the air outlet pipe 5, so that the humidified air is exchanged by the heat exchange fins 62 to adjust the temperature of the air, and then the heat exchanged air is delivered to the tablet preparation cavity 11 by the heat exchange fan 63, so as to adjust the temperature of the tablet preparation cavity 11 in an internal circulation manner. Optionally, when the humidity of the tablet preparation cavity 11 is adjusted, the air in the tablet preparation cavity 11 is pumped to the atomization box 3 by the suction pump 2, the water in the atomization box 3 is atomized by the atomizer 4, the atomized water is mixed with the air to increase the humidity of the air, and then the humidified air is delivered to the heat exchange box 61 by the air outlet pipe 5, and then the heat exchanged air is delivered to the tablet preparation cavity 11 by the heat exchange fan 63, so as to adjust the humidity of the tablet preparation cavity 11 in an internal circulation manner.

[0036] Further, the heat exchange fins 62 can be provided with a temperature sensor for acquiring the temperature of the heat exchange fins 62, so as to realize real-time monitoring of temperature adjustment and improve the accuracy of temperature adjustment. Optionally, the heat exchange fins 62 can also be provided with a temperature protection switch for preventing the heat exchange fins 62 from being too low or too high in temperature.

[0037] Referring to Figure 2 , Figure 6 and Figure 7In some embodiments, the exhaust assembly 7 further comprises a check box 71 and a check cover 72. The check box 71 is provided with a valve plate 73 on one side close to the tablet making cavity 11. The valve plate 73 is provided with an exhaust opening 74. The exhaust opening 74 connects the tablet making cavity 11 and the check box 71. The valve plate 73 extends away from the tablet making cavity 11 on the side away from the tablet making cavity 11 to form an abutting slope 75. The check cover 72 is abutted to the abutting slope 75 on one side close to the tablet making cavity 11. The upper end of the check cover 72 is rotatably connected to the valve plate 73 or the check box 71. Optionally, the upper end of the check cover 72 is provided with a rotating shaft rotatably connected to a rotating shaft seat fixed to the valve plate 73 or the check box 71. Preferably, the upper end of the check cover 72 is rotatably connected to the valve plate 73 or the check box 71 on one side close to the tablet making cavity 11 and abutted to the abutting slope 75. In this way, the airflow flowing away from the tablet making cavity 11 can push the check cover 72 to rotate and separate from the abutting slope 75 to open the exhaust opening 74 and enter the check box 71 to realize the exhaust of the tablet making cavity 11. When the airflow in the check box 71 flows to the tablet making cavity 11, the check cover 72 rotates reversely to abut on the abutting slope 75 to close the exhaust opening 74 and prevent the outside air from entering the tablet making cavity 11. Optionally, a silica gel pad is arranged between the check cover 72 and the valve plate 73 to improve the sealing effect therebetween.

[0038] Referring to Figure 2 , Figure 6 and Figure 7 In some embodiments, the exhaust assembly 7 further comprises an exhaust cylinder 76 and an exhaust fan 77. The exhaust cylinder 76 is arranged on the side of the check box 71 away from the tablet making cavity 11. The exhaust fan 77 connects the exhaust cylinder 76 and the check box 71. Preferably, the exhaust fan 77 sucks the air in the check box 71 to the exhaust cylinder 76 and discharges the air to the outside. When the exhaust fan 77 sucks the air in the check box 71, a negative pressure is formed in the check box 71. Under the action of the pressure difference, the check cover 72 rotates to separate from the abutting slope 75 to open the exhaust opening 74 and drive the air in the tablet making cavity 11 to flow into the check box 71 to realize the exhaust of the tablet making cavity 11. When the exhaust fan 77 stops working, the air pressure in the check box 71 returns to normal. Under the influence of the gravity, the check cover 72 rotates reversely to abut on the abutting slope 75 to close the exhaust opening 74 and prevent the outside air from entering the tablet making cavity 11.

[0039] Referring to 1 andFigure 2 In some embodiments, a cell preparation machine includes an environment conditioning system as described above.

[0040] Referring to Figures 1-7 In some embodiments, the air in the preparation chamber 11 is pumped by the suction pump 2 into the atomization box 3, the water in the atomization box 3 is atomized by the atomizer 4, the atomized water is mixed with the air to increase the humidity of the air, the humidified air is delivered into the heat exchange box 61 through the air outlet pipe 5, the humidified air is heat exchanged by the heat exchange fins 62 to adjust the temperature of the humidified air, and the heat exchanged air is delivered into the preparation chamber 11 by the heat exchange fan 63, so as to adjust the temperature and humidity of the preparation chamber 11 in an internal circulation manner, effectively guarantee the efficiency of the air internal circulation, optimize the effect of adjusting the temperature and humidity of the preparation chamber 11, and further, the heat exchange fins 62 and the atomizer 4 are independent of each other in opening and closing. Optionally, when the temperature of the preparation chamber 11 is adjusted, the air in the preparation chamber 11 is pumped by the suction pump 2 into the atomization box 3, and then the air is delivered into the heat exchange box 61 through the air outlet pipe 5, the humidified air is heat exchanged by the heat exchange fins 62 to adjust the temperature of the air, and the heat exchanged air is delivered into the preparation chamber 11 by the heat exchange fan 63, so as to adjust the temperature of the preparation chamber 11 in an internal circulation manner. Optionally, when the humidity of the preparation chamber 11 is adjusted, the air in the preparation chamber 11 is pumped by the suction pump 2 into the atomization box 3, the water in the atomization box 3 is atomized by the atomizer 4, the atomized water is mixed with the air to increase the humidity of the air, the humidified air is delivered into the heat exchange box 61 through the air outlet pipe 5, and the heat exchanged air is delivered into the preparation chamber 11 by the heat exchange fan 63, so as to adjust the humidity of the preparation chamber 11 in an internal circulation manner. Further, when the preparation chamber 11 is exhausted, the air in the check box 71 is pumped by the exhaust fan 77 into the exhaust cylinder 76 and discharged to the outside through the exhaust cylinder 76. When the check box 71 is pumped by the exhaust fan 77, a negative pressure is formed in the check box 71, and under the action of the pressure difference, the check cover 72 rotates and separates from the abutting slope surface 75, so as to open the exhaust opening 74 and drive the air in the preparation chamber 11 to flow into the check box 71, thereby achieving the exhaust of the preparation chamber 11. When the exhaust fan 77 stops working, the air pressure in the check box 71 returns to normal, the check cover 72 reversely rotates under the influence of its own gravity and abuts against the abutting slope surface 75, thereby closing the exhaust opening 74 and preventing external gas from entering the preparation chamber 11.

[0041] The technical means disclosed in the application scheme are not limited to the technical means disclosed in the above-mentioned embodiments, and include technical solutions composed of any combination of the above technical features. It should be noted that, for ordinary skilled persons in the art, without departing from the principles of the application, several improvements and refinements can be made, which are also considered within the protection scope of the application.

Claims

1. An environmental conditioning system, characterized by, The machine body (1) is provided with a tablet making cavity (11) therein. A suction pump (2) is provided, and the air inlet of the suction pump (2) is communicated with the tablet making cavity (11). An atomization box (3) is provided for storing fluid, and the air inlet of the atomization box (3) is communicated with the air outlet of the suction pump (2). An atomizer (4) is provided in the atomization box (3) for atomizing the fluid in the atomization box (3). An air outlet pipe (5) is provided for communicating the tablet making cavity (11) with the air outlet of the atomization box (3) to deliver the atomized fluid to the tablet making cavity (11). The atomizer (4) is close to the bottom of the atomization box (3).

2. The environmental conditioning system of claim 1, wherein: An opening (31) is provided on the top of the atomization box (3), and a fitting cover plate (32) is provided on the opening (31).

3. The environmental conditioning system of claim 2, wherein: A fitting bracket (33) is connected between the fitting cover plate (32) and the atomizer (4). A water level sensor (34) and a water inlet (35) are further provided, the water inlet (35) is provided on the fitting cover plate (32), one end of the water level sensor (34) is fitted on the fitting cover plate (32), and the other end of the water level sensor (34) extends into the atomization box (3).

4. The environmental conditioning system of claim 3, wherein: At least one heat exchange assembly (6) is further provided, the heat exchange assembly (6) comprises a heat exchange box (61) and heat exchange fins (62), the heat exchange box (61) is connected with the air outlet pipe (5) and the tablet making cavity (11), and the heat exchange fins (62) are provided in the heat exchange box (61).

5. The environmental conditioning system of claim 1, wherein: A heat exchange fan (63) is further provided between the heat exchange fins (62) and the air outlet of the heat exchange box (61).

6. The environmental conditioning system of claim 5, wherein: The heat exchange fins (62) are one or more of cooling fins and heating fins.

7. The environmental conditioning system of claim 5 or 6, wherein: An exhaust assembly is further provided, the exhaust assembly (7) comprises a check box (71) and a check cover (72).

8. The environmental conditioning system of claim 1, wherein: A valve plate (73) is provided on the side of the check box (71) close to the tablet making cavity (11), an exhaust opening (74) is provided on the valve plate (73), and the exhaust opening (74) is communicated with the tablet making cavity (11) and the check box (71). The side of the valve plate (73) away from the tablet making cavity (11) extends away from the tablet making cavity (11) to form an abutting slope (75), the side of the check cover (72) close to the tablet making cavity (11) abuts against the abutting slope (75), and the upper end of the check cover (72) is rotatably connected to the valve plate (73) or the check box (71). An exhaust cylinder (76) and an exhaust fan (77) are further provided, the exhaust cylinder (76) is provided on the side of the check box (71) away from the tablet making cavity (11), and the exhaust fan (77) is communicated with the exhaust cylinder (76) and the check box (71).

9. The environmental conditioning system of claim 8, wherein: The environmental regulation system according to any one of claims 1-9 is provided.

10. A cytological cell processor, comprising: ​