Pyranometers for Accurate Solar Irradiance Measurement

EKO pyranometers provide precise solar irradiance
measurements for photovoltaic performance assessment,
weather stations, and climate research. Our instruments meet ISO 9060 and ISO 61724 standards,
ensuring reliability for professionals in solar energy,
meteorology, and research institutes

 

Reliable Pyranometers for Solar Tracking

  • Suitable for Meteorology, Climate Studies or PV monitoring
  • ISO compliant: Class A, B and C
  • High stability
  • Pyranometer for solar PV, meteorology, environmental studies, and climate research

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MS-80SH pyranometer with heated dome and smart sensor, shown on a plain background.
Class A + Integrated Dome Heating + Spectrally Flat & Fast Response

With integrated high-efficiency dome heating, the MS-80SH is the new standout choice for value, accuracy, speed, reliability and IEC 61724-1:2021 Class A monitoring.

MS-80S pyranometer with smart sensor, shown on a neutral background.
ISO 9060:2018 Class A

The elite MS-80S Class A pyranometer includes a state-of-the-art thermopile sensor, and new ‘S-Series’ internal diagnostics system, and 4-channel smart interface.

MS-80 pyranometer with analog output, displayed on a plain grey background.
ISO 9060:2018 Class A

An ISO9060:2018 Class A solar sensor in the top tier ‘fast-response and ‘spectrally flat’ sub-categories, with unprecedented low zero-offset behaviour, and a 5-year recalibration interval.

MS-60S pyranometer with smart sensor, shown on a light grey background.
ISO 9060:2018 Class B

Designed for agricultural research, meteorological applications, and small to medium-scale solar plants, the S-series ISO 9060:2018 Class B MS-60S Pyranometer is part of the most accurate, reliable, and robust family of pyranometers in the world.

MS-60 pyranometer with analog output, displayed on a light grey background.
ISO 9060:2018 Class B

The MS-60 is an ISO 9060:2018 Class B pyranometer with analog output and double dome construction for lower offsets and cosine errors.

MS-40S pyranometer with smart sensor, displayed on a neutral grey background.
ISO 9060:2018 Class C

The S-Series ISO 9060:2018 MS-40S Class C Pyranometer is a cost-efficient part of the most accurate, reliable and robust family of pyranometers in the world, and the class-leading solution for system integrators, agrometeorological networks, and professional small-scale PV sites.

MS-40 pyranometer with analog output, displayed on a neutral grey background.
ISO 9060:2018 Class C

The MS-40 is an ISO 9060:2018 Class C pyranometer, and the most cost-effective irradiance sensor for agro-meteorological networks and professional small-scale PV sites where solar radiation is taken seriously.

ML-01 silicon pyranometer with mounting plate and cable, shown on a light grey background.
ISO 9060:2018 Class C

The compact, industrial-grade ML-01 silicon pyranometer is made for high-quality irradiance measurements. It’s Class C, Fast Response, light, tough and easy to integrate into any project or application.

What is a pyranometer used for?

A pyranometer is used to measure the amount of sunlight at a specific location, helping people understand how much solar energy is available. In the solar industry, pyranometers are essential for planning new solar installations, evaluating site potential, monitoring the performance of operating solar plants, and improving energy forecasts. They are also widely used in meteorology, climate and environmental research, agriculture, and other fields that rely on accurate sunlight data to study weather patterns, crop growth, or long-term environmental changes.

What is a pyranometer used for?

A pyranometer is used to measure the amount of sunlight at a specific location, helping people understand how much solar energy is available. In the solar industry, pyranometers are essential for planning new solar installations, evaluating site potential, monitoring the performance of operating solar plants, and improving energy forecasts. They are also widely used in meteorology, climate and environmental research, agriculture, and other fields that rely on accurate sunlight data to study weather patterns, crop growth, or long-term environmental changes.
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