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Labmate system measures:
Gases such as CO₂, CO, O₃, NO₂, VOCs
Particulate matter (PM1, PM2.5, PM10)
Temperature
Relative humidity
These parameters help assess indoor air conditions in controlled and occupied spaces.
Air enters the sensing chamber through diffusion or controlled airflow. Inside, multiple sensors analyze different parameters:
Electrochemical sensors detect gases
Laser-based sensors measure particulate levels
Environmental probes measure temperature and humidity
Results are displayed in real time on a digital screen for monitoring and recording.
This indoor air quality monitor is used in:
Laboratories and research facilities
Pharmaceutical and biotechnology environments
Hospitals and healthcare spaces
Manufacturing and industrial workplaces
Environmental monitoring programs
Indoor air monitoring is used to:
Track exposure to airborne pollutants
Support controlled environment requirements
Observe ventilation effectiveness
Document air quality conditions over time
This model is suitable when:
Multiple air parameters need to be monitored in one system
Indoor environments require periodic or continuous observation
Documentation of air conditions is required
Portable or flexible installation is preferred
Air quality tracking in laboratories
Hospital indoor environment monitoring
Industrial workspace air assessment
Environmental inspection programs
Periodic calibration supports measurement consistency
Sensor life varies depending on usage conditions
Routine cleaning and inspection are recommended
Installation should avoid vents, heaters, and direct pollutant sources
Where should it be installed?
Install in areas with normal airflow and stable environmental conditions. Avoid placing it near vents, heaters, or direct emission sources to ensure representative readings.
Q1. What is an indoor air quality monitor used for?
It is used to measure gases, particulate matter, temperature, and humidity to assess indoor air conditions.
Q2. What pollutants can it detect?
It can detect CO₂, CO, O₃, NO₂, VOCs, and particulate matter (PM1, PM2.5, PM10).
Q3. How accurate are readings?
Accuracy depends on sensor type and calibration frequency.
Q4. Can it be used in hospitals?
Yes, it is suitable for healthcare and controlled indoor environments.
Q5. Does it support continuous monitoring?
Yes, it supports both continuous and spot measurement modes.
Q6. Can it be integrated with monitoring systems?
Many configurations allow integration with building or lab monitoring systems.
7. How often should calibration be done?
Calibration frequency depends on usage and environmental conditions.