Sapiens provides rugged, reliable sensors designed to withstand extreme conditions in harsh environments. Our robust solutions ensure accurate environmental data collection where traditional monitoring methods fail.
Reliable Data Collection in Extreme Conditions
Sapiens sensors are engineered to operate effectively in harsh environments, ensuring accurate environmental data where traditional monitoring methods may fail.
Climate-Proof Design for Diverse Applications
With robust enclosures and humidity stabilization functions, Sapiens solutions maintain stable performance across extreme weather conditions, high altitudes, and desert environments.
Remote Monitoring with Satellite Data Transmission
Equipped with satellite data transmission capabilities, Sapiens systems facilitate real-time environmental monitoring in remote areas, supporting timely decision-making and environmental management.
Comprehensive Pollutant Detection
Sapiens sensors offer broad pollutant coverage, providing detailed environmental assessments essential for research, compliance, and mitigation strategies in challenging settings.
Certification and Verification
· Calibration Certificate: Each Sapiens monitoring system is accompanied by a calibration certificate, verifying that the device has been tested and calibrated to meet specified performance criteria.
· MCERTS Verified Performance: MAS Series have undergone rigorous evaluation and have been certified under the Monitoring Certification Scheme (MCERTS), affirming their quality and reliability in environmental monitoring applications.
· ISO Quality System Certified: Sapiens operates under an ISO-certified quality management system, reflecting our commitment to maintaining high standards in product development, manufacturing, and customer service.
Functions and Features
Stable Performance in Extreme Weather Conditions: Engineered for resilience, our systems maintain consistent functionality during severe weather events such as storms, heavy rainfall, and high winds, providing uninterrupted environmental data collection.
Satellite Data Transmission in Remote Territories: Equipped with satellite communication capabilities, Sapiens' solutions enable real-time data transmission from remote or inaccessible areas, facilitating continuous monitoring without reliance on terrestrial networks.
Humidity Stabilization for High Altitude and Desert Environments: Our systems incorporate advanced humidity control mechanisms to ensure accurate data collection in environments with low humidity or significant humidity fluctuations, such as high-altitude regions and deserts.
Comprehensive Pollutant Coverage: Sapiens' monitoring solutions are capable of detecting a wide range of environmental pollutants, including particulate matter, gases, and volatile organic compounds, providing a holistic view of air quality across diverse environments.
Uniquely equipped with self-regulating temperature and humidity controls, ensuring data accuracy even in rapidly changing and extreme environments. MAS AF300 Plus is ideal for diverse applications and different weather conditions, delivering reliable air quality data.
The MAS Odour Plus is a compact, professional-grade air monitoring station designated to automatically stabilise the internal environment of the monitoring station to compensate for abrupt fluctuations in ambient temperature, ensuring optimal sensor performance in extreme outdoor conditions.
Investigating the Causes of Excessive Ozone Level in Tibet
Sector:Harsh Environments
Location:Tibet, China
In recent years, Tibet faced a significant challenge from excessive ozone pollution. After calibrating the local national monitoring stations, the Shanghai Environmental Monitoring Center collaborated with the Tibet Environmental Monitoring Station to deploy a network of advanced micro air monitoring stations MAS Odour Plus from Sapiens. These stations provided comprehensive real-time data on a range of key pollutants, including PM2.5 PM10, SO2, NO NO2, O3, and TVOC. By analyzing the monitoring data, the team was able to establish a preliminary understanding of the connections between local oz