Introduction
Plant Growth Chamber provides 0℃ to 55℃ temperature control in dark conditions. Accurately simulates natural day-night temperature variations for realistic growth conditions. Offers adjustable light intensity of up to 30,000 Lux with six control levels. Equipped with leakage protection and backup thermostat for uninterrupted and safe operation. Perfect for environmental simulation, botanical research, photosynthesis and light research.
This test equipment is designed to meet the rigorous requirements of modern laboratory operations, ensuring high precision, reliability, and ease of use for various experimental applications.Applications
Our Plant Growth Chamber , is widely applicable for agricultural research, plant pathology disease resistance testing environmental simulation, botanical research, photosynthesis and light research.
Specifications
| Capacity | 375L |
| Temperature Range | With light:10 to 55℃ |
| Temperature Stability | Less than or equal to ±1℃ |
| Temperature Uniformity | Less than or equal to ±1℃ |
| Operating Temperature | +5 to 35℃ |
| Display Resolution | 0.1℃ |
| Light Intensity Adjustment | 0 to 30000 |
| Shelves | 3/21 |
| Power Consumption | 2700W |
| Power Supply | AC220V, 50HZ |
| Chamber Dimension | 590mm × 550mm × 1160mm |
| Exterior Dimension | 780mm × 870mm × 1915mm |
| Weight | 100Kg |
Features
circulation fan
Equipped with port
Fluorine-free compressor
Dual refrigeration systems
Adjustable grids
FAQs
1. What temperature capabilities and accuracy do the Plant Growth Chamber provide?
Plant Growth Chamber offers a programmable temperature span from 0°C to 55°C in dark mode. When lights are on, the lower limit shifts to 10°C, protecting the lighting system. Temperature stability and uniformity are both maintained within ±1°C for reproducible results. A fluorine free compressor and dual refrigeration circuits deliver rapid cooling with minimal environmental impact. The controller also mimics natural day night temperature transitions to replicate real world conditions. All values appear on a clear display with 0.1°C resolution for precise monitoring.
2. How does the lighting system support diverse plant experiments in Plant Growth Chamber ?
The Plant Growth Chamber features six selectable intensity levels scale from total darkness to 30,000lux. This range allows simulation of dawn, full sun, or deep shade as required. Uniform distribution across the 375L chamber prevents growth bias between shelf positions. Adjustable grids let users position seedlings or mature plants at optimal lamp distance. Programmable photoperiod control light cycles with temperature ramps for realistic circadian cues. Data can be logged to for compliance and later analysis.
3. Which safety and reliability features protect samples during operation in Plant Growth Chamber ?
The Plant Growth Chamber features layered safeguards ensure uninterrupted experiments. Leakage protection isolates the power supply if an electrical fault occurs. A backup mechanical thermostat automatically regulates temperatures should the primary loop fail. Dual refrigeration circuits alternate duty, maintaining cooling even if one system requires service. The fluorine free compressor operates efficiently while meeting environmental regulations. On screen alerts and indicator LEDs promptly inform users of any abnormal condition.
4. How does the Plant Growth Chamber design accommodate different research setups?
Plant Growth Chamber has spacious, 375L interior supports large or multiple experiments simultaneously. Three perforated shelves ship as standard, while twenty one height positions adapt to tall or compact specimens. Shelves slide out smoothly for easy access during watering or sampling. Adjustable grids help direct airflow around unusual container shapes. An internal power socket powers shakers, stirrers, or sensors without routing cables through the door seal. The stainless steel liner resists corrosion and wipes clean after nutrient or soil spills.
5. What are the applications of the Plant Growth Chamber ?
Plant Growth Chamber is widely used for seed germination, growth rate studies, and phenotyping projects. Precise diurnal control supports circadian rhythm investigations and photoperiod sensitivity trials. Dark cycle cooling enables vernalisation and dormancy research across diverse species. Stable light and climate conditions enhance accuracy in photosynthesis and respiration measurements. Environmental simulation modes create drought, heat, or cold stress scenarios for crop improvement studies. Botanical, agricultural, and pharmaceutical labs rely on the A17 for reproducible plant biology data.
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