Net Irradiance Meter – LPNET07 (Senseca)
Accurate Net Radiation Measurement for Meteorology, Agriculture & Energy Balance Studies
Key Features:
☀️ Complete Net Radiation Measurement
Measures total net irradiance by calculating the difference between incoming and outgoing radiation, including solar and terrestrial longwave radiation.
🔬 Thermopile Sensor with PTFE-Coated Receivers
Uses a precision thermopile sensor with dual spherical PTFE-coated receivers that provide excellent cosine response and stable spectral performance from UV to far infrared.
Key Features:
⚡ Passive Operation – No Power Supply Required
The instrument operates without external power, ensuring reliable performance and simple installation even in remote monitoring locations.
🛡️ Weatherproof Outdoor Design
Designed for continuous outdoor use in all weather conditions with durable materials and minimal maintenance requirements.
Applications:
🌦️ Meteorological & Climate Monitoring
Used in weather stations to study surface energy balance and atmospheric radiation exchange for climate analysis.
🌱 Agriculture & Evapotranspiration Studies
Supports irrigation planning, crop monitoring, and evapotranspiration calculations by measuring net radiation over agricultural surfaces.
🌍 Environmental Research
Ideal for hydrology, soil studies, and environmental monitoring where accurate radiation balance data is essential.
🏢 Indoor Thermal Comfort Analysis
Can also be used indoors for radiant temperature measurements according to ISO 7726 standards for thermal comfort studies.
Why Choose This Solution?
Reliable Radiation Balance Data
Ensures accurate net radiation measurement for scientific and agricultural decision-making.
Simple Integration with Data Loggers
Provides millivolt output for easy connection to standard monitoring and data acquisition systems.
Low Maintenance & Long-Term Stability
Built for permanent outdoor installation with durable PTFE-coated receivers and robust construction.
Ideal for Harsh Environments
Designed for long-term use under extreme environmental conditions without performance loss.