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Class B Pyranometer Solar Radiation Sensor, designed on the principle of thermoelectric induction, is capable of accurately measuring all types of radiation from the sun, including total, reflected, scattered, infrared, visible, ultraviolet, and longwave radiation. Its excellent measurement capability makes it an ideal measurement tool for solar energy utilisation, meteorological observation, agricultural research, building material aging monitoring and atmospheric pollution ···
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The Class B Pyranometer (Solar Radiation Sensor), designed on the principle of thermoelectric induction, is capable of accurately measuring all types of radiation from the sun, including total, reflected, scattered, infrared, visible, ultraviolet, and longwave radiation. Its excellent measurement capability makes it an ideal measurement tool for solar energy utilisation, meteorological observation, agricultural research, building material aging monitoring and atmospheric pollution analysis.
1. High-precision sensing technology:
Equipped with wire-wound electroplated multi-contact thermopile, the surface of which is specially formulated with high absorptivity black coating, which can maximise the absorption of solar radiation and convert it into temperature difference potential to ensure the accuracy of measurement data.
The unique design of the thermopile, through the precise layout of hot contacts and cold junctions, generates a stable temperature difference potential under solar irradiation, realising the linear conversion of radiation intensity to electrical signals and further enhancing the measurement accuracy.
2. Stable and reliable performance:
Annual stability ≤ ± 2%, even in the process of long-term use, can maintain the stability and consistency of the measurement results.
Double glass cover design, effectively resist the interference of the external environment on the measurement, such as air convection, while the inner cover isolates the infrared radiation, to ensure the purity and reliability of the measurement data.
3. Wide spectral coverage:
The measurement spectrum ranges from 0.3μm to 3μm, covering the ultraviolet to near-infrared wavelengths, which meets the measurement needs of meteorology, agriculture, scientific research and industry.
4. Multi-functional measurement modes:
It supports multiple measurement modes, such as direct, reflected and scattered radiation, etc. By simply adjusting the direction of the sensing surface or installing a light shielding ring, it can flexibly respond to different measurement scenarios and needs.
5. Durable design:
Rugged design ensures that the Pyranometer can work stably under various climatic and environmental conditions, prolonging its service life.
Sensitivity: | 7-14μV/w.m-2 |
Spectral range: | 0.3-3μm |
Measuring range: | 0-2000W/m2 |
Power supply mode: | DC 5V, DC 12V, DC 24V optional |
Output : | 4~20mA / 0~2.5V / 0~5V/ 0~20mV / RS485 |
Response time: | ≤35 seconds (99%) |
Internal resistance: | about 350Ω |
Cosine response: | ≤7% (when the sun altitude angle is 10°) |
Azimuth response error: | ≤5% (at 10° solar altitude angle) |
Temperature characteristics: | ±2% (-10℃~+40℃) |
Operating Temperature: | -40℃~+50 ℃ |
- Ideal Environment: Choose an open and unobstructed area and ensure that the sensing surface is directly facing the sky.
- Precise Orientation: Ensure that the sensor is orientated directly to the north, accurately levelled and securely mounted.
- Cable Management: Fix the cable properly to avoid wind influence and ensure the continuity of data transmission.
- Operating temperature: Adapts to extreme environments from -40°C to +50°C, ensuring stable operation around the world.
- Solar research: Optimise the layout of solar panels to improve energy conversion efficiency.
- Meteorological monitoring: Recording accurate solar radiation data to aid weather forecasting and climate change research.
- Agricultural planning: Evaluating the light conditions required for crop growth and promoting precision agriculture.
- Environmental science: Monitor the impact of atmospheric pollution on solar radiation to support environmental decision-making.
- Aging of building materials: assessing the impact of UV radiation on materials to extend service life.
After-sales service
We provide you with a full range of after-sales service, including product installation guidance, use of training, regular maintenance, etc., so that you have no worries.
Summary:
Class B pyranometer (solar radiation sensor), with its high precision, multi-function and stable and durable features, has become the leader in the field of solar radiation measurement. Whether you are a researcher, an engineer or an environmentalist, it provides you with powerful data to support your work. Choose the Class B Pyranometer today and start your journey to accurate measurement!
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