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Double door artificial climate incubator

NegotiableUpdate on 02/01
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Overview
The double door artificial climate incubator is a high-precision cold and hot constant temperature device with lighting and humidification functions, providing users with an ideal artificial climate experimental environment. It can be used for plant germination, seedling cultivation, tissue and microbial cultivation; Breeding of insects and small animals; The determination of BOD in water analysis and other artificial climate tests are ideal experimental equipment for production and scientific research departments such as biological genetic engineering, medicine, agriculture, forestry, environmental science, animal husbandry, and aquaculture.
Product Details


Double door artificial climate incubatorMain features:

1. The artificial climate chamber adopts branded refrigeration compressors and environmentally friendly refrigerants (R134a), which are highly efficient, low-energy consuming, and promote energy conservation.

2. Microcomputer program controls temperature and light intensity, can simulate temperature changes during day and night, and can also choose a sufficient and stable light source for growth environment.

3. Programmable control mode, temperature, humidity, and light intensity can be separately set during both day and night (six levels adjustable).

4. The artificial climate chamber has a power-off memory function, ensuring that the instrument can continue to operate from the breakpoint after power on.

5. The spectrum of the climate box LED light board is closer to natural light, and the long service life of the LED light board makes the culture closer to the natural environment.

6. Six level dimming: using the required light intensity set by the control panel to increase or decrease the current to change the intensity of the light, making the light intensity more accurate and changing the previous disadvantage of changing the number of lamps to change the intensity of the light.

6. 30 program segments can be set, with different segmentation parameters to meet different parameters of plant growth

7. Adopting ultra microwave humidification, reliable humidification and uniform humidity.

8. Quantity of light source boards: LED light source board waterproof and corrosion-resistant, made of aluminum substrate, standard configuration

9. The artificial climate chamber has a super temperature and sensor abnormal protection function, and is equipped with an independent air duct over temperature protection device, providing dual protection and adding an extra guarantee for the safety of instruments and samples.

10. Top with UV sterilization lamp

11. The device loses power due to a fault and automatically starts up after being powered back on. The set parameters do not need to be reset and run automatically

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Technical Specifications

Model: PRX-1000A

Capacity: 1000 liters

Temperature control range: 0-50 ℃

Temperature resolution: 0.1 ℃

Temperature fluctuation: ± 0.5-1.0 ℃

Temperature uniformity: ± 1 ℃

Dimensions (width * depth * height): 1350 * 860 * 1980mm

Inner container size (width * depth * height): 1250 * 670 * 1280mm

Light source: Top mounted LED lighting panel, top mounted light source.

Illuminance: 0-3000LX

Number of illumination layers: 4 layers

Humidity control range: 50% RH to 95% RH (no humidity control below 10 ℃) Humidity setting accuracy: 1% RH

Humidity fluctuation: ± 5-7% RH

Illumination adjustment range: six level dimming

Compressor working mode: intermittent operation

Power supply: 50HZ; 220V ± 10% Noise: ≤ 65db


Double door artificial climate incubatorCore impact areas of differences in light intensity in artificial climate chambers
The difference in light intensity of artificial climate chambers is mainly reflected in the regulation effect on the physiological processes of experimental subjects, the specificity of applicable scenarios, and the synergistic effect with other environmental parameters. Different light intensities affect key processes such as photosynthetic efficiency, metabolic rate, and morphogenesis, adapting to the needs of different research objectives.
Differences in the effects of different light intensities on experimental subjects
Plant growth and development
Low light intensity (<5000 lux): Suitable for the cultivation of shade loving plants or the early stages of seed germination, it can avoid the light inhibition of young tissues by strong light, but may lead to excessive plant growth and yellowing of leaves.
Medium light intensity (5000-15000 lux): Most plants can meet the basic needs of photosynthesis, promote chlorophyll synthesis and nutrient accumulation, such as conventional crop seedling cultivation and leaf physiology research.
High light intensity (>15000 lux): Suitable for strong light tolerance research or high light demand plants (such as desert plants, algae), can induce photoprotective mechanisms (such as flavonoid synthesis), but needs to be combined with temperature control to avoid thermal damage.
Microorganisms and Cell Culture
Low light or no light environment: Some microorganisms (such as anaerobic bacteria) need to strictly avoid light, while the cultivation of photosynthetic bacteria requires specific wavelengths of low light (such as 2000-3000 lux) to prevent photo oxidation from damaging cell structure.
Insect and small animal behavior
Simulating natural light cycle: By adjusting the light intensity (such as 8000 lux during the day/0 lux at night), it can affect biological rhythms, reproductive behavior, and metabolic rates, such as studying insect emergence time.
Technical implementation and control methods for differences in light intensity
Light source type and configuration
LED cold light source: supports precise adjustment of light intensity (100-15000 lux), customizable spectrum (such as full spectrum or specific wavelength combination), low heat output, avoiding interference with the temperature inside the box.
Traditional fluorescent lamps: The range of light intensity adjustment is relatively narrow (3000-8000 lux), and the ballast generates significant heat, which may cause local temperature fluctuations and require coordination with the refrigeration system.
Example of research objectives in core application areas of light intensity range
<5000 lux seed germination, determination of seed germination rate under low light conditions in shade loving plant culture, fern tissue culture
Research on conventional plant growth and photosynthesis at 5000-15000 lux, analysis of crop seedling growth rate, and determination of leaf photosynthetic curve
Research on Strong Light Stress of 15000 lux, Exploration of Photoinhibition Mechanism in High Density Cultivation of Algae, and Accumulation Experiment of Spirulina Biomass
Precautions for setting light intensity
Coordinated regulation with temperature and humidity: High light intensity can enhance plant transpiration, and it is necessary to simultaneously increase humidity (such as 60% -80%) to avoid rapid water loss; At the same time, it is necessary to strengthen the heat dissipation of the box to prevent the temperature from exceeding the set threshold.
Long term experiment photoperiod matching: Set the duration of light based on the photoperiod characteristics of the research object (such as 16 hours of light/8 hours of darkness for long day plants), and maintain the stability of light intensity within the cycle to reduce interference with biological rhythms.


What is the difference between an artificial climate chamber and an artificial climate box
1. The heating methods are different. Generally, climate chambers use natural sunlight heating and utilize the "greenhouse effect" of glass or plastic to raise temperature, while artificial climate chambers use a combination of electric furnace wires and blowers for heat convection.
2. Different volume sizes
In terms of temperature uniformity and measurement accuracy, the operability of the climate chamber is much better than that of the climate chamber.
Purpose:
Artificial climate chamber: crop seedling cultivation, growth, etc
Artificial climate chamber: for biological cultivation, it is also suitable for microbial cultivation and insect feeding due to its good airtightness.
Occasion:
An agriculture
A research laboratory and hospital


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