Seaward SOLAR SURVEY 100: The Ultimate Solar Site Survey Tool for Accurate and Efficient PV System Design

$176.00

In stock

The Seaward SOLAR SURVEY 100 is a portable solar irradiance meter that provides accurate and reliable measurements of solar radiation. It is designed to help solar installers and engineers optimize the performance of photovoltaic (PV) systems by ensuring that they are installed in areas with sufficient sunlight exposure. The SOLAR SURVEY 100 features a high-precision silicon photodiode sensor that measures irradiance in the 400-1100nm wavelength range, which covers the entire spectrum of sunlight that is used by PV cells. The meter also has a built-in temperature sensor that compensates for the effects of temperature on the sensor’s output. The SOLAR SURVEY 100 is easy to use and can be operated with one hand. It has a large, backlit LCD display that shows the current irradiance reading, the average irradiance reading, and the maximum irradiance reading. The meter also has a built-in data logger that can store up to 100 readings. The SOLAR SURVEY 100 is a valuable tool for solar installers and engineers who need to ensure that PV systems are installed in areas with sufficient sunlight exposure. It is also a useful tool for researchers and educators who need to measure solar radiation.

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The Solar Survey series of solar irradiance meters are the perfect tools for solar photovoltaic (Solar PV) and solar thermal installers to conduct comprehensive solar pv site surveys.

  • Suitable for both photovoltaic and solar thermal installations
  • Measures irradiance as required by IEC 62446
  • Built-in compass and inclinometer measure roof orientation and pitch
  • Dual channel temperature measurement
  • 200R features Seaward Solarlink TM for wireless connectivity with the PV150 Solar Installation tester (available seperately)
  • Built-in data logger and USB interface (Solar Survey 200R model only)
  • Rugged, robust and handheld

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Seaward SOLAR SURVEY 100: The Ultimate Solar Site Survey Tool for Accurate and Efficient PV System Design