Plant monitoring system

SKU: plant-monitoring-system Category:

Availability: Out of stock

Plant monitoring system gives laboratories dependable instrumentation for day-to-day characterization. It arrives calibrated and supported by Medic Tech for long-term operation.
Our Automated Plant Monitoring System is a cutting-edge solution designed specifically for advanced plant research in controlled environments. Equipped with multiple dispensers for precise application of pesticides, herbicides, water, and fertilizers, the system also integrates advanced sensors to monitor critical parameters such as humidity, air temperature, CO2 levels, and oxygen. The dynamic moving system, featuring multi-functional arms with a rotary camera, soil humidity sensor, and IR sensor, ensures detailed monitoring of each plant pot.The accompanying software empowers researchers with customizable pot grid layouts, sequence scheduling for dispensers, and comprehensive data storage of sensor readings and images. This system enables precise differentiation between control and experimental groups, streamlining data analysis and reporting with its extensive workbook module. Ideal for laboratories and research institutions, this innovative solution sets a new benchmark in efficiency and accuracy for plant growth studies.
AMC support Yes
Additional modules supported Extra dispenser\, Gripper\, IR scanner\, Air filtration (clo...
Data acquisition (Working chamber) Environmental parameters: Relative humidity\, air temperatur...
Dispensing system Three In-build dispensers\, available for precise and effici...
Point data acquisition Multi-functional arm integrates a rotary camera\, soil humid...
Software Provided with the machine system. The software accompanying...
Working chamber Closed type
SKU plant-monitoring-system
Utilized in phenotyping studies for crop breeding programs to identify high-yield and stress-resistant varieties, precision agriculture research for optimizing irrigation and fertilization protocols, plant biotechnology labs testing genetic modifications and CRISPR-edited plants, environmental stress response studies including drought, salinity, and temperature extremes, pharmaceutical research screening medicinal plants for bioactive compound production, agricultural chemical testing for evaluating pesticide and herbicide efficacy, climate change impact studies on plant physiology and growth patterns, controlled environment agriculture (CEA) for optimizing greenhouse and vertical farming conditions, educational demonstrations in plant biology and horticulture courses, and space agriculture research for developing crop production systems for extraterrestrial environments. The automated dispensing and multi-sensor array enable high-throughput, reproducible experiments with minimized human intervention and bias.