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Solar Irradiance
See Also: Solar Reference Cells
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Irradiance Probe
LPUVA01
The LPUVA01 probe measures irradiance (W/m2) defined as the ratio between the radiant flux (W) passing through a surface and the surface area (m2) in the UVA (315 nm … 400 nm) spectral range.
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Irradiance Probe
LPUVC01
The LPUVC01 probe measures irradiance (W/m2) defined as the ratio between the radiant flux (W) passing through a surface and the surface area (m2) in the UVC (200 nm…280 nm) spectral range.
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Net Irradiance Meter
LPNET07
LPNET07 measures the net radiation across a surface, from near ultraviolet to far infrared.
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UVA Irradiance Probe
LP471UVA
Radiometric probe for measuring the IRRADIANCE in the UVA spectral range 315 nm…400 nm, peak at 360 nm, quartz diffuser for cosine correction. For non-destructive testing ISO 3059:2001, EN 571-1, ASTM E1417.
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UVC Irradiance Probe
LP471UVC
Radiometric probe for measuring the IRRADIANCE in the UVC spectral range 220 nm…280 nm, peak at 260 nm, quartz diffuser for cosine correction.
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UV-BC Irradiance Probe
LP471UVBC
LP471UVBC is a radiometric probe for measuring irradiance (W/m²) in the 210…355 nm spectral range with peak at 265 nm. It is equipped with a connector with SICRAM module and a 2 m cable
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Solar Simulators
Abet Technologies offer a wide range of ASTM, IEC, and JIS standards compliant solar simulators ranging from 150W to 3kW with one sun or greater illuminated field sizes from 50 x 50 mm to 35 x 35 cm. The direction of illumination, traditional down pointing, horizontal, or vertical up pointing can be specified at the time of ordering.
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Radiometric Probe for Irradiance
LPUVB02
Amplified radiometric probe for outdoor use for measuring IRRADIANCE in the UVB spectral range (peak at 305 nm).
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Solar Simulator
Sirius 150A
Solar Simulators are used to simulate “real” solar radiation conditions and are widely used for the photovoltaic device research and QA etc.Beam collimation and spot uniformity are important properties along with spectral matching are key operational requirements. The SS150 and SS1000 are suitable for all types of solar cells and well match their optical requirements.
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Solar Simulators
Sun 2000 Class A
The Abet Gen II optical design, patent pending, dramatically increases the percentage of photons reaching the work plane.All electronics are packaged in the lamp house -no clutter of high power cables to deal with. A digital shutter timer allowing both manual and external control is included with every unit.Standard maintenance, lamp or filter replacement, does not require any tools.Locking indicator dials on all the system controls provide for a reproducible and stable setup.
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Solar Stimulators
Alpha-Omega Power Technologies, LLC.
Alpha-Omega Power Technologies (AOPT) has developed a line of pulsed concentrator photovoltaic (CPV) solar simulators based in its experience with pulsed high voltage flash lamp systems and its patented high speed, high power load.
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Solar simulation systems
Whatever your application, from an environmental chamber for small components to an extensive array for a complete automobile or aircraft test, EYE / Iwasaki has the experience to provide a solar lighting system customized for your requirements.
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Solar
Chroma Systems Solutions, Inc.
This auto test system uses the unique test command optimization technology to prevent the repeating control commands from sending to the system hardware devices. This improves the system test speed dramatically and makes Chroma 8000, which uses open software architecture, highly efficient as a close or optimized auto test system.
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Solar Simulators
TriSOL CPV
Concentrating Photovoltaics (CPV) has the promise of producing solar cells with high cell efficiencies, which result in a reduction in the cost of operating a PV module. However, a CPV system requires the integration of CPV solar cells, modules and CPV optics into one efficient system. OAI’s focus is CPV cell testing methodology. The CPV cells can now be tested using OAI’s advanced standalone CPV Simulators for low dose and high dose configurations. The low dose CPV Solar Simulator provides exposure up to 50 Suns, whereas, the high dose CPV Solar Simulator provides exposure up to 1500 Suns. The low and high dose simulators provide exposure in varying Sun concentrations in various beam sizes from 1.5cm x 1.5cm to 7.5cm x 7.5cm, and may be configured with OAI’s I-V Test Systems.
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Solar Turnkey Lines
Ecoprogetti offers complete solar turnkey lines for the manufacturing of photovoltaic modules. According to the customer's needs we customize the line in order to always give the best solutions.
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Module Solar Simulators
QuickSun® 800-Series
800-Series simulators are always tested, certified and results reported exactly as specified in the applicable solar simulator standards and this is being proved by a globally recognized inspection body, SGS Fimko Ltd.
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Solar Photovoltaic
Scientific Computing International
Automated metrology system designed for rapid, reliable, and accurate characterization of nearly any unpatterned thin film.
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Irradiance Probe
LPRAD01
The LPRAD01 probe measures irradiance (W/m2) defined as the ratio between the radiantflux (W) passing through a surface and the surface area (m2) in the VIS-NIR (400 nm…1050 nm) spectral range.
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Solar Radiation Meter
MacSolar E
The measuring device has been designed primarily for engineers, architects, fitters and measurement technicians. The MacSolar E allows both an indication of the current irradiance as well as an estimate of the solar installation yield.
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Solar Radiation Sensors
The solar radiation sensors that Campbell Scientific offers come in a variety of designs: pyranometers, net radiometers, quantum sensors, and pyrheliometers. These sensors measure various aspects of the energy imparted by the sun on the Earth’s surface. A leveling fixture fitted with a bubble level may be required to accurately install solar radiation sensors.
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Solar Radiation Sensors
The silicon solar radiation sensor (Si) sensor provides an inexpensive but yet robust and reliable solution for measuring the solar irradiance specifically for the monitoring of photovoltaic (PV) systems. Due to the structure of the sensor element, which corresponds to a PV module, these sensors are ideally suited as a reference for the monitoring of PV systems to determine the solar radiation.
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Irradiance Probe
LPUVB01
The LPUVB01 probe measures irradiance (W/m2) defined as the ratio between the radiant flux (W) passing through a surface and the surface area (m2) in the UVB (280 nm …315 nm) spectral range.
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Radiometric Probe for Irradiance
LPUVA02
Amplified radiometric probe for outdoor use for measuring IRRADIANCE in the UVA spectral range (315...400 nm).
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Solar Simulation Systems
Solar simulation systems with global radiation guarantee the simulation of natural sunlight according to CIE20 and CIE85 Table 4. Our portfolio includes components, systems and systems for solar simulation for test benches in the automotive, military, aerospace, railway, photovoltaic, material research and building materials industries. Our plants and systems stand for high reproducibility and precise test results.
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Solar Ultraviolet Pyranometers
UVR1-T, UVR1-A, &
The Middleton Solar UVR1 series are precision filter radiometers for measuring solar global ultraviolet irradiance. The UVR1-T and UVR1-A are suitable for air pollution monitoring. The UVR1-B is suitable for biological and human erythema (sunburn) monitoring.
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Solar Spectrophotometer
INCUS
INCUS is a portable spectrophotometer that allows the measuring of the receiver tube optical properties in the solar field of a parabolic trough CSP plant.
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LED Solar Simulator
LumiSun-50
The LumiSun-50™ is a high power, multi-wavelength LED solar simulator that meets IEC 60904-9 Class AAA for spectral match, uniformity of irradiance, and temporal stability. The LumiSun-50 achieves a spatially uniform illumination field from a chip-on-board (COB), multiple-wavelength LED die array. The field of illumination is 50 x 50 mm at a working distance of 200 mm. The LumiSun-50 includes a driver/controller which individually provides constant current to each die in the COB array. Total irradiance of 1.1 sun units is provided and can be decreased to 0.1 suns. The LED light source of the LumiSun-50 is contained within an air-cooled housing that can rotate the angular beam alignment. Adjustment and setting of the optimum light path working distance is visually facilitated by a converging pair of red dot laser pointers.
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Solar Radiation (Sunshine) Test
This test determines the effects of direct solar radiation on components and material. The heating effects of solar radiation differ from those of high air temperature in that the amount of heat absorbed depends on the roughness and color of the surface on which the radiation is incident and the angle of incidence to the sun. Variations in the intensity of solar radiation over the surface of the component, may cause components to expand or contract at different rates, which can lead to severe stresses and loss of structural integrity. In addition, degradation due to photo-chemical changes can occur such as fading of color, deterioration of natural and synthetic elastomers and polymers. The test items that are subjected to solar radiation testing are those that are exposed to solar radiation during its life cycle, in the open, in warm climates.
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Solar Spectrum Test Chambers
Thermoregulation system Solar simulation chamber made of a metallic frame and insulation cover panels The test chamber can be easily opened with one hand The height of the sample carrier can also be varied to ensure optimal irradiation of the various samples Corrosion resistant Stainless steel construction Air-cooled refrigeration unit Micro-processor monitoring and control unit Aerosol-free humidification and dehumidification Psychrometric humidity measuring system
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Solar Power Meter
SOLAR POWER METER* 3 functions : Solar power, Power integration, Transmission* Select either W/m^2 or Btu / (ft^2xh) power units. Real time SD memory card Datalogger, it Built-in Clock and Calendar, real time data recorder.sampling time set from 1 second to 3600 seconds.Spectral 400 to 1100 nm2000 W/m^2, 634 Btu/( ft^2 x h )