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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 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 Simulation Systems
PET Solar Simulators consist of a Light Source with a built-in Lamp Power Supply. The Solar Simulator has an ellipsoidal reflector that surrounds the lamp and collects most of the lamp output. The radiation from the lamp is focused onto an optical integrator that helps produce a uniform diverging beam. The beam is diverted 90° by a mirror onto a collimating lens. Special filters are placed between the mirror and the collimating lens to shape the radiation spectra to match various air masses. The output is a uniform beam that closely matches the sun's radiation spectra for a given air mass. Various models offer different areas of illumination. Each model can be manufactured to simulate the sun's radiation for different air masses.
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Solar Simulation
Sciencetech solar simulators produce high intensity, uniform illumination on a target area. Typically, high power solar simulators use an ellipsoidal reflector to capture light from an arc lamp source inside the reflector, an arrangement that results in a light pattern with a bright outer region and a dark center. This non-uniformity is un- acceptable in many solar simulator applications and as a result, forces many of our solar simulator competitors to use designs involving diffusers to reduce the non-uniformity. This results in a reduction of intensity and a dis- tortion of the spectrum on the target area.
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Steady State Solar Simulator
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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Solar Spectrum Test Chamber / Solar Radiation Test Chamber
WEIBER Solar Spectrum Test Chambers are one of solutions to be utilized in large scale PV testing program. We offer customized as well as standard multidimensional test program for PV modules in reasonable prices. This system delivers the weathering stress representative of long term outdoor exposure.Our flexible system can be designed according to our test requirements, to suit environmental test conditions like volume, temperature, humidity solar radiation intensity and other measuring instruments. Weiber provide Solar Radiation Test Chamber.WEIBER solar test system are recognized for superior solar simulation environmental Testing, evaluating outdoor use product reliability, quality & safety. This technology allows for very high concentrations of UV energy without excessive heating of test samples. Custom mounting and cooling can be added depending upon specific material exposure requirements. MHGs (metal halide global lamps) are used as radiation source. Weiber provide Solar Simulation Test Chamber.
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Solar Simulator Testing Kits
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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IV Curve Tracer
IVCT
In recent years, we have been developing a sophisticated IV curve tracer for PV modules including a maximum power point tracking (MPPT) function. The IV curve tracer is designed for operation with any market-available steady-state solar simulator. Through our web-based software design, the operator can supervise the test results from every computer in a company network. The software contains functions such as an irradiation sum counter that helps to check requirements stated in a stabilization test like they are defined in IEC 61215 (MQT 19). We have also included a correction function to correct the traced IV curves to standard test conditions (STC) when the user enters the required temperature coefficients. One of the most important features is the multi-IV curve tracing function, which enables the user to display more than 150 IV curves in one graph. This eases the analysis of the weakest cells in hot-spot tests, which are required in IEC 61730 (MST 22) and IEC 61215 (MQT 09).
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Mobile Test Systems
The systems include A+A+A+ LED solar simulators, high-resolution electroluminescence testers and various other tests that you can easily integrate into your transport of choice or directly into a container on site.
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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 Array Simulator
Among other things, solar array simulators are required for testing satellite power supplies. An SAS (Solar Array Simulator), consisting of an interconnection of several Solar Array Simulator modules, maps the solar panels and displays the individual strings connected in parallel. Optionally, the individual SAS modules are monitored by a Second Level Protection, so that the test object is not damaged in case of errors with the voltage sources. Additional circuitry is implemented via project-specific test modules. The signal path to the DUT can be separated, e.g. for dynamic current measurements.The Keysight Solar Array Simulators used were specially developed for satellite applications and cover the significantly higher requirements regarding the control speed of MPP tracking compared to terrestrial applications.
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FIber Based Solar Simulator
Provides up to 12 suns class B non-uniformity over a 12.5 mm diameter with the A4 Light Line and class C uniformity can be achieved over 18mm diameter both with a working distance of 25 cm. Provides up to 4 suns class B non-uniformity over a 12.5 mm diameter with the A1 Light Line with a working distance of 25 cm.
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Versatile quality control testing system
QuickSun® 550Ei
QuickSun 550Ei is a versatile testing system for qualifying of PV modules with dimensions up to 105 x 205 cm2. Basic set up includes a top class solar simulator which measures modules in sunny side up position enabling e.g. soiling simulations. Several additional measurement methods can be integrated to the same system including high resolution EL imaging with analysis software from one of the most recognized EL system suppliers. Also hot spot revealing IR images can be recorded by applying either forward or reverse bias current, and true nA scale leakage current measurements can be performed with sensitive enough instruments.
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Portable Solar Simulator
XES-40S3
We have manufactured the highly accurate solar simulators, which is used for evaluations where sunlight needs to be recreated. By fully utilizing these technologies, we have developed this portable Solar Simulator, which can easily reproduces sunlight. Our device is optimum solution for initial evaluations and inspections for the research purpose.
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Solar Simulator
It is an LED light source for evaluating the performance of organic solar cells in indoor light applications.A neutral white LED light source equivalent to a color temperature of 5000 K, achieving an effective irradiation area of 50 × 50 mm.The illuminance can be changed without changing the height of the light emitting surface with low illuminance (200 lx) and high illuminance (1000 lx).
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Reference Cells
Reference cell is used for measuring and setting the intensity of solar simulators for one sun (or other user desired) intensity condition. They are also used to calibrate the IV Measurement system photo-detector intensity to match the measured ISC to calibrated ISC.
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Solar Simulator
Unisim Compact Solar Simulator
The Unisim Compact is a low-cost close-match solar simulator that provides the world-leading spectral match of our award winning Unisim solar simulators in a compact, bench top unit complete with IV measurement system. As with all our Unisim solar simulators, they exceed the ASTM, IEC and JIS international standards for spectral match and temporal instability. The easy-maintenance enclosure houses a TS-Space Systems 2-zone Unisim solar simulator which combines metal halide and incandescent sources via a proprietary filter system to give an AM0 close-match spectrum (AM1.5 drop-in filter sets are available). The standard system includes an embedded source meter with complete IV measurement system (Computer, GPIB interface, IV software, MS Excel), relative irradiance indicator for monitoring lamp intensity and an electrical shutter. Product support is very important to us. Training is provided at our premises where customers can take advantage of one-on-one tuition with the solar simulator designers and learn how to operate and maintain their tools. Extensive support via phone and email for the full lifetime of the instrument is included with every TS-Space Systems product.
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License For Automated EN50530 Static And Dynamic MPPT Efficiency Testing
DG8901A
Optional upgrade for Solar Array Simulator (SAS) app. Provides additional automated static and dynamic EN50530 maximum peak power tracking (MPPT) tests.
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Solar Simulator
Sun 3000 Class AAA
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. Photofeedback and digital shutter timer are included.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. A built-in beam imaging accessory assists in system alignment.
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UV Solar Simulators
UV Solar Simulators - please contact the company directly for more information.
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Solar Cell Simulation
Setfos
Easily calculate the short circuit current, open circuit voltage Voc and fill factor with Setfos. Tweak the layer stack and add light scattering layers for enhanced absorption. Optimize for AM1.5 or specific wavelength bandsElectrical IV curvesCurve fitting & parameter extractionAC simulation and transient experiments like photo-CELIVAdvanced device physics: SRH-recombination, excitons, ... Design anti-reflection coatings or transparent cells
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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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DC Power Supply
DC power supplies offer many unique advantages for telecom, automated test system & integration, industrial, battery charge & simulation for hybrid cars and solar panel simulation. These advantages include high power density of 15KW in 3U, precision readback of output current and voltage, output trigger signals as well as the ability to create complex DC transient waveforms to test device behavior for spikes, drops, and other voltage deviations.
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Standard Class AAA Solar Simulator
TriSOL TSS
Essential for testing virtually any material or product that is exposed to sunlight for long or short periods of time, OAI’s low-cost, Standard Solar Simulators deliver highly collimated, uniform light. Depending on configuration, output on these Solar Simulators is rated at 350W -5,000W.These Class AAA Solar Simulators feature OAI’s Advanced Uniform Beam Optics and are available with a choice of air mass filters to reproduce a wide range of solar spectra. For added flexibility, OAI’s proven lens and collimating mirror technology allows for a variety of exposure area sizes. A Class AAA Solar Simulator is an essential tool for manufacturing as well as R&D; it is indispensable in test labs, industry, and in universities. OAI Standard Solar Simulators are used in photobiology, biomedical, solar cell testing, cosmetic testing, and paints & coatings analysis. Based on 35+ years of proven UV light technology, OAI Solar Simulator Systems deliver repeatable, reliable, constant output, and measurement uniformity.
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Modular Power System 6kW Mainframe, 200/208 VAC
MP4301A
The MP4300 Series is a family of 1kW Solar Array Simulators (SAS) modular systems in a 2U footprint. The 6kW mainframes can accommodate up to 6 slots of SAS modules achieving excellent power and channel density. Additionally, the SAS series provides a way to simulate solar panels in a spacecraft while offering the highest density, efficient and reliable operation, minimizing rack space to provide the best total cost of ownership.
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Solar Array Simulator
G5.SAS
The G5.SAS series are unidirectional sources. It was developed specifically for testing inverters and simulating solar arrays and is suitable for use in laboratories and on test benches. The modular and finely graded G5.SAS series is characterized by highly dynamic response times and a wide current-voltage range with an auto-ranging factor 3. The power supplies feature especially low capacitance values in the output filter stage and switchable earth leakage resistors for adaptation to the insulation measurement of the DUT.
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Solar Simulator
Excellent reputation for its high degree of throughput, accuracy and stability. Pulsed light is used, ensuring stable measurement. Approximates the spectral distribution of AM 1.5G reference solar radiation. Achieves accurate measurement of various modules. No need to reverse modules, facilitating in-line operation.
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AAA Solar simulator
SS50AAA-PLC
Application ■Mono crystalline silicon (Si) ■Multi crystalline silicon (mc-Si) ■Amorphous silicon (a-Si) ■Gallium arsenide (GaAs) ■Gallium indium arsenide (GaInAs) ■Gallium aluminum arsenide (GaAlAs) ■Gallium indium phosphite (GaInP)
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Steady-state Solar Simulator For PV Modules
SORAS LS
In certification laboratories for photovoltaic modules, steady-state solar simulators are mostly used for stabilization / light soaking tests (MQT 19) and hot-spot endurance tests (MQT 09) according to IEC 61215 and IEC 61730. An initial stabilization is required for all PV modules that undergo a standard test procedure. For the hot-spot endurance test (MQT 09), it is important that the operator has easy access to the front and back site of the module. During the test, it is necessary to shade one cell after each other to take infrared pictures, which requires good visibility of the entire back side. Our swiveling module holding system enables easy access to the front and back side of the module.