Temperature control device for spore culture container

By using temperature sensors, pressure sensors, and control chips to control the operation of a low-voltage electromagnetic plate in the spore culture container, combined with the heating of metal particles, the problem of uneven temperature in the spore culture container is solved, achieving uniform and energy-efficient heating for spore growth.

CN223906858UActive Publication Date: 2026-02-13XUZHOU VOCATIONAL COLLEGE OF BIOENG
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Patent Information

Application Number
CN202423080747.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-13
Publication Date
2026-02-13
Estimated Expiration
2034-12-13

AI Technical Summary

Technical Problem

During the heating process of the spore culture container, the temperature of some culture media meets the standard, but the temperature of other culture media is too low, which affects the overall growth effect of spores.

Method used

Temperature and pressure sensors are used to monitor the temperature of the culture medium and the pressure on the low-pressure electromagnetic plate. A control chip controls the operation of the low-pressure electromagnetic plate. Metal particles are heated when the electromagnetic plate is running, thus achieving targeted temperature regulation.

Benefits of technology

It achieves rapid and uniform temperature regulation within the spore culture container, improves spore growth, is energy-efficient and efficient, and solves the problem of uneven temperature rise in the spore culture container.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a temperature control device of a spore culture container, which relates to the technical field of spore culture containers and comprises a temperature sensor, a pressure sensor, metal particles, a control chip and a low-voltage electromagnetic plate. The temperature sensor is arranged in a culture medium in the spore culture container, the pressure sensor is arranged in the low-voltage electromagnetic plate, the spore culture container is arranged on the low-voltage electromagnetic plate, one end of the control chip is connected with the temperature sensor and the pressure sensor, and the other end of the control chip is connected with the temperature sensor. The metal particles are uniformly arranged in a culture medium in the spore culture container, so that the technical problem that the overall growth process of spores is affected due to the fact that the effect of the temperature rise process of the spore culture container is poor is solved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to spore culture technical field especially is concerned with a temperature control device of spore culture container. BACKGROUND

[0002] Spores in the culture process, will due to environment, generation stage and many other factors and produce different temperature changes. And the temperature of spores in the culture process and its own temperature change is more important, if its temperature is lower, will affect the spore culture process, need to carry out effective heating treatment in time.

[0003] At present, when the spore culture container is heated, it is easy to have the situation that the temperature of part of the culture medium in the spore culture container meets the standard, but the temperature of another part of the culture medium is too low, thereby affecting the overall growth effect of spores. UTILITY MODEL CONTENT

[0004] The utility model aims at providing a temperature control device of spore culture container to alleviate the technical problem that the heating process of spore culture container is poor and affects the overall growth process of spores.

[0005] In the first aspect, the utility model provides a temperature control device of spore culture container, temperature sensor, pressure sensor, metal material particle, control chip and low pressure electromagnetic plate.

[0006] The temperature sensor is arranged in the culture medium in the spore culture container, and the temperature sensor is used to obtain the temperature value of the culture medium.

[0007] The pressure sensor is arranged in the low pressure electromagnetic plate and is used to collect the pressure value of the low pressure electromagnetic plate. The spore culture container is arranged on the low pressure electromagnetic plate.

[0008] One end of the control chip is connected with the temperature sensor and the pressure sensor respectively, and the other end is connected with the low pressure electromagnetic plate. The control chip is used to control the low pressure electromagnetic plate to start running when the temperature value of the culture medium is lower than the preset temperature and the pressure value is higher than the preset pressure.

[0009] The metal material particles are evenly arranged in the culture medium in the spore culture container. The metal material particles are used to heat when the low pressure electromagnetic plate runs and to improve the temperature of the culture medium by heating itself.

[0010] In combination with the first aspect, the control chip of the temperature control device of spore culture container is also used to control the low pressure electromagnetic plate to stop running when the temperature value of the culture medium is higher than or equal to the preset temperature.

[0011] In combination with the first aspect, the temperature control device of the spore culture container, the control chip is further configured to determine that the spore culture container is present on the low-pressure electromagnetic plate when the pressure value is higher than the preset pressure.

[0012] In combination with the first aspect, the temperature control device of the spore culture container, the number of the pressure sensors is multiple.

[0013] The control chip is further configured to determine a target pressure sensor with a pressure value higher than the preset pressure from the multiple pressure sensors, and determine a target position of the spore culture container on the low-pressure electromagnetic plate according to a preset position corresponding to the target pressure sensor.

[0014] In combination with the first aspect, the temperature control device of the spore culture container, the low-pressure electromagnetic plate is provided with multiple electromagnetic induction coils, and the multiple electromagnetic induction coils are located in different operation regions of the low-pressure electromagnetic plate.

[0015] The control chip is further configured to determine a target operation region of the low-pressure electromagnetic plate according to the target position.

[0016] The low-pressure electromagnetic plate is configured to operate a target electromagnetic induction coil located in the target operation region.

[0017] The present scheme has the following beneficial effects: In the present scheme, the temperature sensor is arranged in the culture medium in the spore culture container, and is configured to obtain the temperature value of the culture medium. The pressure sensor is arranged in the low-pressure electromagnetic plate, and is configured to collect the pressure value received by the low-pressure electromagnetic plate. The spore culture container is arranged on the low-pressure electromagnetic plate. One end of the control chip is connected with the temperature sensor and the pressure sensor, and the other end of the control chip is connected with the low-pressure electromagnetic plate. The control chip is configured to control the low-pressure electromagnetic plate to start operating when the temperature value of the culture medium is lower than the preset temperature and the pressure value is higher than the preset pressure. The metal particles are uniformly arranged in the culture medium in the spore culture container, and are configured to be heated when the low-pressure electromagnetic plate operates, and to increase the temperature of the culture medium by heating. The temperature value of the culture medium is obtained by placing the temperature sensor in the culture medium. The control chip is connected with the temperature sensor and the pressure sensor. When it is determined that the temperature value of the culture medium is lower than the preset temperature and the pressure value is higher than the preset pressure, the control chip can control the low-pressure electromagnetic plate to start operating. The metal particles can increase the temperature of the culture medium by heating. The temperature of the culture medium can be adjusted more reasonably, uniformly and efficiently. The temperature of the spore culture container can be quickly and uniformly increased, and the temperature of the spore culture container can be more efficiently, energy-savingly and reasonably adjusted. Thus, the technical problem that the temperature increasing process of the spore culture container is poor in the prior art and affects the overall growth process of the spore is solved. BRIEF DESCRIPTION OF DRAWINGS

[0018] Figure 1 The utility model discloses a temperature control device of spore culture container provided by the embodiment of the utility model shows the structure schematic diagram. DETAILED DESCRIPTION

[0019] The technical solutions of the utility model will be described clearly and completely below in conjunction with the embodiments, and obviously, the described embodiments are part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by the person skilled in the art without creative labor fall within the protection scope of the utility model.

[0020] At present, when the spore culture container is heated, it is easy to have the situation that the temperature of part of the culture medium in the spore culture container meets the standard, but the temperature of another part of the culture medium is too low, thereby affecting the overall growth effect of the spores.

[0021] The temperature control device of the spore culture container provided by the embodiment of the utility model alleviates the technical problem that the heating process effect of the spore culture container is poor, thereby affecting the overall growth process of the spores.

[0022] Embodiment:

[0023] Figure 1 The utility model discloses a temperature control device of spore culture container provided by the embodiment of the utility model shows the structure schematic diagram. The temperature control device of spore culture container includes: temperature sensor 101, pressure sensor 102, metal material particle 103, control chip 104 and low pressure electromagnetic board 105.

[0024] The temperature sensor is arranged in the culture medium in the spore culture container, and the temperature sensor is used for acquiring the temperature value of the culture medium. The pressure sensor is arranged in the low pressure electromagnetic board and is used for collecting the pressure value received by the low pressure electromagnetic board. The spore culture container is arranged on the low pressure electromagnetic board. One end of the control chip is connected with the temperature sensor and the pressure sensor respectively, and the other end is connected with the low pressure electromagnetic board. The control chip is used for controlling the low pressure electromagnetic board to start running when the temperature value of the culture medium is lower than the preset temperature and the pressure value is higher than the preset pressure. The metal material particles are uniformly arranged in the culture medium in the spore culture container. The metal material particles are used for heating when the low pressure electromagnetic board runs, and the temperature of the culture medium is improved by the heating of the metal material particles.

[0025] The temperature value is obtained by placing the medium in the spore culture container temperature sensor, the control chip is connected with the temperature sensor and the pressure sensor, when the temperature value of the medium is lower than the preset temperature and the pressure value is higher than the preset pressure, the control low-voltage electromagnetic plate starts to run, the metal particles can raise the temperature of the medium by heating itself, the temperature regulation is more reasonable and efficient, the temperature in the spore culture container can be quickly and uniformly reached, and the temperature in the spore culture container can be more efficiently, energy-saving and reasonably regulated, thereby solving the technical problem that the spore culture container heating process is poor in the prior art, thereby affecting the overall growth process of the spores.

[0026] In one embodiment, the control chip in the temperature control device of the spore culture container is also used to control the low-voltage electromagnetic plate to stop running when the temperature value of the medium is higher than or equal to the preset temperature.

[0027] The control chip controls the low-voltage electromagnetic plate to stop running when the temperature value of the medium is higher than or equal to the preset temperature, which can prevent the temperature of the spore culture container from being too high, and achieve reasonable and suitable spore propagation temperature.

[0028] In one example, the control chip in the temperature control device of the spore culture container is also used to determine whether the low-voltage electromagnetic plate exists the spore culture container when the pressure value is higher than the preset pressure.

[0029] The control chip determines whether the low-voltage electromagnetic plate exists the spore culture container when the pressure value is higher than the preset pressure, which can prevent the temperature from rising in the position where there is no spore culture container, so that the position where there is no spore culture container will not be heated, and the temperature is adjusted energy-saving and reasonably.

[0030] In one example, the number of pressure sensors in the temperature control device of the spore culture container is multiple, and the control chip is also used to determine the target pressure sensor with the pressure value higher than the preset pressure from the multiple pressure sensors, and determine the target position of the spore culture container on the low-voltage electromagnetic plate according to the preset position corresponding to the target pressure sensor.

[0031] The control chip determines the target pressure sensor with the pressure value higher than the preset pressure from the multiple pressure sensors, and further determines the target position of the spore culture container on the low-voltage electromagnetic plate, which can not only determine the position of the spore culture container accurately, but also ensure that the temperature regulation position is more accurate, reasonable and efficient.

[0032] In an example, the low-voltage electromagnetic plate of the temperature control device of the spore culture container is provided with a plurality of electromagnetic induction coils, the plurality of electromagnetic induction coils are located in different operation areas of the low-voltage electromagnetic plate, and the control chip is further configured to determine a target operation area of the low-voltage electromagnetic plate according to the target position, and the low-voltage electromagnetic plate is configured to operate a target electromagnetic induction coil located in the target operation area.

[0033] By the plurality of electromagnetic induction coils provided in the low-voltage electromagnetic plate, the electromagnetic induction coils are located in different operation areas of the low-voltage electromagnetic plate, the control chip can determine the target operation area of the low-voltage electromagnetic plate according to the target position, the control chip can efficiently and accurately perform temperature rising control, and efficient operation of the adjustment process can be ensured.

[0034] The above examples are merely specific embodiments of the present application, which are used to illustrate the technical solutions of the present application, rather than limit the same. The protection scope of the present application is not limited thereto. Any skilled person in the art can modify the technical solutions recorded in the foregoing examples, or easily think of changes, or equivalently replace some technical features within the technical range disclosed by the present application. These modifications, changes or replacements do not make the corresponding technical solutions deviate from the spirit and scope of the technical solutions of the embodiments of the present application, and should be covered within the protection scope of the present application.

Claims

1. A temperature control device for a spore culture vessel, characterized by, Include: Temperature sensor, pressure sensor, metal particles, control chip and low-voltage electromagnetic plate; The temperature sensor is arranged in the culture medium in the spore culture container, and the temperature sensor is used to obtain the temperature value of the culture medium; The pressure sensor is arranged in the low-voltage electromagnetic plate, and is used to collect the pressure value of the low-voltage electromagnetic plate; The spore culture container is arranged on the low-voltage electromagnetic plate; One end of the control chip is connected with the temperature sensor and the pressure sensor respectively, and the other end is connected with the low-voltage electromagnetic plate, and the control chip is used to control the low-voltage electromagnetic plate to start running when the temperature value of the culture medium is lower than the preset temperature and the pressure value is higher than the preset pressure; The metal particles are uniformly arranged in the culture medium in the spore culture container, and the metal particles are used to heat up when the low-voltage electromagnetic plate runs, and to raise the temperature of the culture medium by heating up.

2. The temperature control device for a spore incubation container according to claim 1, wherein The number of pressure sensors is multiple; The control chip is also used to determine the target pressure sensor with pressure value higher than the preset pressure from multiple pressure sensors, and to determine the target position of the spore culture container on the low-voltage electromagnetic plate according to the preset position corresponding to the target pressure sensor.

3. The temperature control device for a spore incubation container according to claim 2, wherein A plurality of electromagnetic induction coils are arranged in the low-voltage electromagnetic plate, and the plurality of electromagnetic induction coils are located in different operation areas of the low-voltage electromagnetic plate; The control chip is also used to determine the target operation area of the low-voltage electromagnetic plate according to the target position; The low-voltage electromagnetic plate is used to operate the target electromagnetic induction coil in the target operation area.