Controlled Environment Climate Room

Controlled Environment Climate Rooms are advanced walk-in environmental systems designed for precise, multi-variable control of temperature, humidity, light, and airflow for scientific research, crop development, and environmental simulation.

controlled environment climate room

Key Features & Control Capabilities

1. Multi-variable environmental control (temperature, humidity, light, airflow)

2. High-precision temperature control up to ±1.5°C

3. Stable humidity control with multi-point sensing (±5% RH)

4. Programmable lighting system with adjustable intensity and photoperiod

5. Engineered airflow system ensuring uniform environmental distribution

6. Full environmental data logging and experiment traceability

7. PLC-based control system with industrial-grade reliability

8. Optional CO₂ control for advanced physiological and gas-response studies

9. Remote monitoring, alarm system, and system diagnostics (optional

Technical Specifications​

ParameterSpecificationParameterSpecification
Temp.0–40°C (optional down to -5°C or lower)Temp. Accuracy±1.5°C (research grade)
Humidity Range50–85% RHHumidity Accuracy±5% RH
Light Intensity200–1,500+ μmol/m²·s (PAR)Photoperiod24-hour cycle setting programming
Airflow DesignDucted air circulation / uniform airflow systemCO₂ ControlOptional
Control SystemPLC + TouchscreenData LoggingStandard / Exportable
Room SizeStandard size of room (modular scalable)Rack SystemStandard size of racks (multi-layer optional)

Suitable Applications

Controlled Environment Research
Speed Breeding & Genetic Improvement
Seed Germination & Early Growth Testing
Abiotic / Biotic Stress Experimentation
Applications designed for plant disease research, pathogen interaction studies, and controlled infection experiments, providing stable environments for reliable pathology testing.
Plant Pathology & Disease Testing

Some Details

Controlled Environment Climate Rooms are engineered using a standardized modular architecture, enabling flexible configuration and scalable deployment.

M1 – Environmental Control & Airflow

High-precision temperature and humidity control combined with engineered airflow design for uniform environmental conditions.

M2 – Lighting & Photoperiod

LED lighting systems with adjustable intensity, spectrum options, and programmable photoperiod control.

M3 – Cultivation & Rack Utilization

Standard size of racks with configurable layouts to support different plant sizes and experimental designs.

M4 – Monitoring, Logging & Traceability

Integrated sensor systems with real-time monitoring, data logging, and export for research traceability.

M5 – Biosecurity & Containment (Optional)

Air filtration, pressure control, and isolation design for sensitive or regulated research environments.

M6 – Structural & Thermal Envelope

Insulated panel system ensuring thermal stability, energy efficiency, and structural reliability.

M7 – Power Redundancy & Reliability (Optional)

Backup power and system protection to ensure uninterrupted operation and experiment safety.

M8 – Scalability & Upgrade Interface

Expandable architecture allowing future system upgrades and integration with larger facilities.

This system forms the core infrastructure for multiple integrated solutions:
  • Controlled Environment Solutions for Scientific Research
  • Speed Breeding & Production-Oriented Research Facilities
  • Germplasm Conservation & Biosecurity Facilities
  • Global installation support and remote commissioning guidance
  • Standardized system architecture for faster delivery and deployment
  • CE / ISO compliant components and engineering practices
  • Technical training and long-term after-sales support
  • Documentation support for research, validation, and regulatory compliance
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