Mainly used to measure solar irradiance – the amount of solar energy reaching a surface, usually expressed in watts per square meter (W/m²).
Precision instruments for measuring solar irradiance across photovoltaic performance monitoring, meteorology, scientific research and environmental applications. The portfolio spans ISO 9060:2018 Class A, B and C instruments, from high-accuracy research models to compact routine-monitoring sensors.
Pyranometers measure solar irradiance in watts per square meter (W/m²). In photovoltaic systems, this measurement is used to compare the available solar resource with actual system output and support performance monitoring over time.
ISO 9060:2018
Highest-performance instruments in the range, intended for demanding solar-energy, meteorological and scientific measurements.
Spectrally flat Class A pyranometer for accurate, low-maintenance solar irradiance measurement.
High-accuracy Class A pyranometer using high-quality quartz domes for broad spectral response and low thermal offset.
Smart Class A pyranometer combining advanced sensor technology, digital connectivity and low maintenance.
Fast-response Class A smart pyranometer with solid-state dome heating for dew and frost prevention.
High-accuracy smart Class A pyranometer with quartz domes, digital output and low-maintenance design.
ISO 9060:2018
Cost-effective instruments for quality measurements in meteorological and hydrological networks, agriculture and field testing.
Spectrally flat Class B pyranometer for routine global solar radiation measurement and cost-effective field monitoring.
Smart Class B pyranometer with digital and analog outputs for solar energy and meteorological monitoring.
ISO 9060:2018
Compact and economical instruments for routine measurement, horticulture, entry-level weather stations and basic PV monitoring.
Compact Class C thermopile pyranometer for routine shortwave global solar radiation measurements.
Smart Class C pyranometer based on CMP3 technology, with digital and amplified analog outputs.
Product number shown is the SMP3-A, 4–20 mA, 10 m cable configuration listed on the official product page.
High-temperature pyranometer for solar or artificial-light irradiance measurement in extreme thermal conditions.
Silicon photodiode pyranometer for routine solar radiation measurement, especially PV and environmental monitoring.
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