Intelligent cell incubator

By installing an isolation plate inside the incubator and an electric heating tube in the top through-hole, the problem of traditional cell culture incubators being unable to adjust the temperature individually is solved, achieving precise temperature control of different areas and energy saving.

CN224199397UActive Publication Date: 2026-05-05SHANGHAI TENGYI BIOTECHNOLOGY CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
SHANGHAI TENGYI BIOTECHNOLOGY CO LTD
Filing Date
2025-04-30
Publication Date
2026-05-05

AI Technical Summary

Technical Problem

Traditional cell culture incubators cannot individually adjust the temperature of different zones, which affects the cell culture effect.

Method used

Temperature control in different areas is achieved by using multiple equally spaced partitions inside the incubator, which are detachably inserted into the incubator and have electric heating tubes in the top through-holes.

Benefits of technology

It enables precise temperature control in different regions, saving energy and improving the efficiency of cell culture.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to an intelligent cell incubator which comprises an incubator body, the incubator body is composed of an incubator body and a sealing cabin door arranged on the front side of the incubator body, and the sealing cabin door is hinged to the front side of the incubator body; a plurality of isolation plates are arranged in the culture box from left to right at equal intervals, the isolation plates are detachably inserted in the culture box, and insertion grooves corresponding to the isolation plates are formed in the inner top of the culture box and the inner bottom of the culture box; a plurality of through holes penetrating downwards into the incubator are formed in the top of the incubator from left to right at equal intervals, a heat preservation plate is detachably inserted into the top of the incubator, and electric heating pipes fixedly installed at the bottom of the heat preservation plate are arranged in the through holes. When the interior of the incubator is divided into a plurality of chambers by a plurality of partition plates, the electric heating pipes can be arranged in different through holes to meet the requirement for temperature control in different chambers, and the effect of saving energy and the purpose of differentiation control are achieved.
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Description

Technical Field

[0001] This utility model relates to the field of heat preservation device technology, and in particular to an intelligent cell culture box. Background Technology

[0002] Cell culture is a core technology in biomedical research, drug development, and regenerative medicine, and the cell culture incubator is one of the most critical pieces of equipment. Traditional cell culture incubators rely on uniform temperature control.

[0003] The existing technical solutions mentioned above have the following drawbacks: they can only adjust the temperature uniformly, and cannot adjust the temperature of a specific area individually, which has a significant impact on cell culture. Utility Model Content

[0004] The purpose of this invention is to provide an intelligent cell culture box to solve the problems existing in the prior art.

[0005] The above-mentioned technical objective of this utility model is achieved through the following technical solution:

[0006] An intelligent cell culture chamber includes a culture chamber, which consists of a chamber body and a sealed door disposed on the front side of the chamber body. The sealed door is hinged to the front side of the chamber body.

[0007] The incubator has multiple partitions evenly spaced from left to right inside. The partitions are detachably inserted into the incubator. The top and bottom of the incubator are provided with slots corresponding to the partitions.

[0008] The top of the incubator has multiple through holes that extend downwards into the interior of the incubator at equal intervals from left to right. The number of through holes is one more than the number of isolation plates. A heat preservation plate is detachably inserted into the top of the incubator. The heat preservation plate is used to seal the top of the through holes. An electric heating tube is fixedly installed at the bottom of the heat preservation plate inside the through holes.

[0009] By adopting the above technical solution, since the number of through holes is one more than the number of isolation plates, when multiple isolation plates divide the interior of the incubator into multiple chambers, electric heating tubes can be set in different through holes to meet the temperature control needs of different chambers, thereby saving energy and achieving the purpose of differentiation control.

[0010] In a further embodiment, the bottom of the insulation board is provided with threaded holes corresponding to multiple through holes. The electric heating tube is screwed and fixed to the threaded holes. The electric heating tube and the through holes are fitted with a clearance. The insulation board has a cable pre-embedded inside, which corresponds to each threaded hole. A contact plate is provided at the top of the inner side of the threaded hole. The contact plate is used to cooperate with the cable to realize the electrical connection between the electric heating tube and the external power source.

[0011] In a further embodiment, the isolation plate is made of double-layered vacuum glass.

[0012] By adopting the above technical solution, heat transfer between chambers can be avoided.

[0013] In a further embodiment, a sealing strip is provided on the front end face of the isolation plate.

[0014] In a further embodiment, temperature sensors are fixedly installed on both the left and right sides of each isolation plate via brackets.

[0015] By adopting the above technical solution, the temperature inside different cavities can be collected, enabling multi-point accurate monitoring and facilitating temperature adjustment inside different cavities.

[0016] In a further embodiment, positioning posts are provided at the four bottom corners of the insulation board.

[0017] In summary, this utility model has the following beneficial effects:

[0018] 1. By installing electric heating tubes in different threaded holes, the heat in different compartments inside the incubator is controlled, which saves energy and achieves the purpose of differentiation control. Attached Figure Description

[0019] Figure 1 This is a schematic diagram of the overall structure of this utility model;

[0020] Figure 2 This is a schematic diagram illustrating the internal structure of the incubator used to demonstrate this utility model.

[0021] In the diagram, 1 is the incubator; 11 is the chamber body; 12 is the sealed door; 2 is the isolation plate; 3 is the insulation plate; 4 is the electric heating tube; and 5 is the sealing strip. Detailed Implementation

[0022] The present invention will be further described in detail below with reference to the accompanying drawings.

[0023] Identical parts are indicated by the same reference numerals. It should be noted that the terms "front," "rear," "left," "right," "upper," and "lower" used in the following description refer to the attached figures. Figure 1In this specification, the terms "bottom surface" and "top surface," "inner" and "outer" refer to the direction toward or away from the geometry of a specific component. Furthermore, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of technical features indicated. Thus, a feature defined as "first" or "second" may explicitly or implicitly include one or more of that feature. In the description of this specification, "a plurality of" means two or more, unless otherwise explicitly and specifically defined by the direction of the center.

[0024] Example 1:

[0025] like Figures 1-2 As shown, an intelligent cell culture box includes a culture box 1, which consists of a box body 11 and a box sealing door 12 disposed on the front side of the box body 11. The box sealing door 12 is hinged to the front side of the box body 11.

[0026] The incubator 1 has multiple partition plates 2 arranged at equal intervals from left to right inside. The partition plates 2 are detachably inserted into the incubator 1. The top and bottom of the incubator 1 are provided with slots corresponding to the partition plates 2. The partition plates 2 are made of double-layer vacuum glass. The front end of the partition plate 2 is provided with a sealing strip 5. The multiple partition plates 2 separate the incubator 1 into multiple chambers. Temperature sensors are fixedly installed on the left and right sides of each partition plate 2 by brackets. The temperature of each chamber is collected by the temperature sensors.

[0027] The top of the incubator 1 has multiple through holes extending downwards into the interior of the incubator 1 at equal intervals from left to right. The number of through holes is one more than the number of isolation plates 2. A heat preservation plate 3 is detachably inserted into the top of the incubator 1. The heat preservation plate 3 is used to seal the top of the through holes. An electric heating tube 4 is fixedly installed at the bottom of the heat preservation plate 3 inside the through holes. The bottom of the heat preservation plate 3 has threaded holes corresponding to the multiple through holes. The electric heating tube 4 is screwed and fixed to the threaded holes. The electric heating tube 4 is clearance-fitted with the through holes. A cable corresponding to each threaded hole is pre-embedded inside the heat preservation plate 3. A contact plate is set at the top of the threaded hole. The contact plate is used to cooperate with the cable to realize the electrical connection between the electric heating tube 4 and the external power supply. Positioning posts are set at the four corners of the bottom of the heat preservation plate 3. Positioning holes corresponding to the positioning posts are set at the top of the incubator 1. The top of the incubator 1 is detachably connected to the top of the incubator 1 through the positioning posts and positioning holes.

[0028] Specific implementation process: The isolation plate 2 is connected to the inside of the chamber 11 through the slots at the bottom and top of the incubator 1, and the isolation plate 2 is sealed with the sealing strip 5. The electric heating tube 4 is inserted into the inside of the chamber 11 through the through hole at the top of the incubator 1. The insulation plate 3 blocks the top of the through hole and is detachably connected to the top of the incubator 1. The temperature of each compartment inside the chamber is detected by the temperature sensors on the left and right sides of the isolation plate 2. Then, according to the required temperature, the external power supply is turned on and off to control the start and stop of the electric heating tube 4, so as to ensure that the temperature inside the incubator 1 is suitable for the cultured cells. The temperature of different compartments can be controlled by controlling the electric heating tube 4 in different through holes, which also saves energy and achieves the purpose of differentiation control.

[0029] In the embodiments disclosed in this utility model, the terms "installation," "connection," "linking," and "fixing" should be interpreted broadly. For example, "connection" can be a fixed connection, a detachable connection, or an integral connection; "linking" can be a direct connection or an indirect connection through an intermediate medium. Those skilled in the art can understand the specific meaning of the above terms in the embodiments disclosed in this utility model according to the specific circumstances.

[0030] This specific embodiment is merely an explanation of the present utility model and is not intended to limit the present utility model. After reading this specification, those skilled in the art can make modifications to this embodiment without contributing any inventive step, but as long as they are within the scope of the claims of the present utility model, they are protected by patent law.

Claims

1. An intelligent cell culture incubator, characterized in that: The incubator (1) is composed of a box body (11) and a box sealing door (12) disposed on the front side of the box body (11). The box sealing door (12) is hinged to the front side of the box body (11). The incubator (1) has multiple partition plates (2) arranged at equal intervals from left to right inside. The partition plates (2) are detachably inserted into the incubator (1). The top and bottom of the incubator (1) are provided with slots corresponding to the partition plates (2). The top of the incubator (1) is provided with multiple through holes that extend downward into the interior of the incubator (1) at equal intervals from left to right. The number of through holes is one more than the number of isolation plates (2). A heat preservation plate (3) is detachably inserted into the top of the incubator (1). The heat preservation plate (3) is used to seal the top of the through holes. An electric heating tube (4) is fixedly installed at the bottom of the heat preservation plate (3) inside the through holes.

2. The intelligent cell culture incubator according to claim 1, characterized in that: The bottom of the insulation board (3) is provided with threaded holes corresponding to multiple through holes. The electric heating tube (4) is screwed and fixed to the threaded holes. The electric heating tube (4) is clearance-fitted with the through holes. The insulation board (3) has a cable pre-embedded inside to correspond to each threaded hole. A connecting piece is provided at the top of the inner side of the threaded hole. The connecting piece is used to cooperate with the cable to realize the electrical connection between the electric heating tube (4) and the external power source.

3. The intelligent cell culture incubator according to claim 1, characterized in that: The isolation plate (2) is made of double-layered vacuum glass.

4. The intelligent cell culture incubator according to claim 1, characterized in that: The front end face of the isolation plate (2) is provided with a sealing strip (5).

5. The intelligent cell culture incubator according to claim 1, characterized in that: Temperature sensors are fixedly installed on both the left and right sides of each isolation plate (2) by brackets.

6. The intelligent cell culture incubator according to claim 1, characterized in that: Positioning posts are provided at the four bottom corners of the insulation board (3).