Showing results: 91 - 105 of 443 items found.
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Solar Light Company Inc.
Solar Light’s Solar Simulator Testing Kits are designed for scientific and industrial professionals who want everything they need to begin testing all in one comprehensive package.
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Optosolar GmbH
This type of solar simulator uses Xenon high pressure arc lamps as light source. These lamps have a colour temperature near 5800 K, so it is feasible to filter the light output to an excellent AM 1.5 spectrum. If a tuneability of the spectrum is required, these lamps can be combined with tungsten lamps to achieve multi-source solar simulators. These can be used to measure tandem/triple/multijunction solar cells. They also allow detailed analysis of all types of solar cells using a spectral metric (see : Publication List).
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Aero Nav Laboratories, Inc.
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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TS Space Systems
We design and manufacture a wide range of world leading solar simulators that meet and surpass the IEC, ASTM and JIS international standards. Our close spectral match solar simulators are used across the globe in world-leading laboratories. Our award winning Unisim solar simulators are used in both research and development work as well as 24/7 production facilities and are regularly cited in the latest photovoltaic research literature.
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PSE Instruments GmbH
Our steady state solar simulators enable you to test and develop solar thermal collectors independent of weather and season, faster, more efficiently and more comprehensively than ever before. Both simulators are turnkey products, delivered 100 % ready to go!
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TP878.1SS.O -
Delta OHM S.r.L.
Contact temperature probe for solar panel. 1/3 DIN 4-wire Pt100 sensor.
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ZPH Series -
Cincinnati Sub-Zero Products
CSZ's solar panel testing chambers aid in qualifying that modules can withstand the thermal stress caused by repeated changes in high and low temperatures along with exposure to high humidity. Unique air flow design and distribution ensures precise air flow required for solar panel testing.
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A70 Series -
Comptus
The Comptus A70 Series solar radiation sensors with transmitters are available in two models. The A70-A PAR Sensor measures photosynthetically active radiation (PAR) in the 400 to 700 nm range. The A70-I Insolation Sensor measures solar radiation in the 280 to 2800 nm range. The signals from the sensors are scaled by the signal conditioner to provide the desired output.
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MP4300A Series -
Keysight Technologies
The output power of solar cells varies with numerous environmental conditions (e.g., temperature, irradiation) and operational conditions (e.g., eclipse, spin). The Keysight MP4300A Series solar array simulator enables you to test all these conditions with high accuracy. It delivers fast current-voltage (I-V) curve changes with a quick recovery time, emulating rapidly changing conditions.
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TP878.3 -
Delta OHM S.r.L.
Contact temperature probe for solar panel. Class B Pt100 sensor. Adhesive aluminum plate. Dimensions 10 x 30 x 5 mm.
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EL-CT01A -
Chinup Technology Co., Ltd.
Most power-lose of PV panel is caused by the internal cell crack. The EL-CT01A is usedto take the EL image of solar cell. By reviewing the EL image, user can judge the cellquality as easy as looking at a X-ray picture.
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Fluke Process Instruments
The SolarPaq® Thermal Profiling Systems from Fluke Process Instruments are designed specifically for solar photovoltaic (PV) manufacturing including applications like contact firing, contact drying, anti-reflection coating for the solar cell, lamination and other thin film processes. These systems, consisting of user-friendly Insight™ software, Datapaq® Q18 data loggers, stainless steel thermal barriers, thermocouples with PTFE or mineral insulation and accessories, provide users with the tools needed to gather accurate, repeatable results for process optimization, maximize cell efficiency and throughput, and more.