4-Component Net Radiometer – LPNET14 (Senseca)
High-Precision Net Radiation Measurement for Climate, Agriculture & Solar Energy Monitoring
Key Features:
☀️ Complete 4-Component Radiation Measurement
Measures global solar radiation, reflected solar radiation, sky-emitted infrared radiation, and ground-emitted infrared radiation for full net radiation analysis.
🔬 Dual Pyranometer + Dual Pyrgeometer Design
Includes two pyranometers for shortwave radiation and two pyrgeometers for longwave infrared radiation, ensuring precise and reliable performance.
Key Features:
🌡️ Integrated Temperature Sensor (NTC)
Built-in NTC temperature sensor improves pyrgeometer accuracy by compensating thermal measurements required for far infrared radiation calculations.
🛡️ Outdoor Weatherproof Construction
Designed for long-term outdoor use in harsh weather conditions with corrosion-resistant materials and low maintenance requirements.
Applications:
🌦️ Meteorological & Climate Monitoring
Used in weather stations and climate research for accurate measurement of radiation balance and atmospheric energy exchange.
🌱 Agriculture & Evapotranspiration Studies
Supports crop monitoring, irrigation planning, and evapotranspiration calculations by measuring surface radiation balance.
☀️ Solar Energy & PV Plant Monitoring
Helps analyze solar energy performance and environmental conditions in photovoltaic plants and renewable energy systems.
🌍 Environmental & Research Applications
Ideal for atmospheric studies, environmental monitoring, and scientific research involving radiation flux measurements.
Why Choose This Solution?
High Measurement Accuracy
Ensures precise net radiation calculations across shortwave and longwave spectral ranges.
Flexible System Integration
Can be connected easily to standard data loggers for continuous monitoring and analysis.
Continuous 24/7 Monitoring
Built for uninterrupted outdoor operation with stable long-term performance.
Low Maintenance & Durable Design
Weather-resistant construction ensures reliable operation in demanding field environments.