Solar Simulators
replicate the sun's light.
See Also: Solar Simulation, IEC 60904-9, I-V Tracers, Solar Reference Cells
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Product
Versatile quality control testing system
QuickSun® 550Ei
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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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Equipment
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Based on a proprietary light engine, our solar simulation equipment delivers perfect and continuous artificial sunlight 24/7, allowing for accurate stability and performance assessments of solar cells at laboratory and industrial scales.
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DC Laboratory Power Sullies
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Elektro-Automatik GmbH & Co.KG
Adjustable, programmable, 19” 3U rack-mount formatGorilla glass TFT touch display, versatile function generator, user profiles, resistance regulation, solar (PV) simulation, fuel-cell (FC) simulationAuto-ranging outputOn board 2-way interface (USB/analogue), Plug N’ Play slot for retrofitting additional interfaces such as Ethernet, CAN, CANopen, Profibus, Profinet, RS232 and moreVoltages 0-60V up to 0-1500VDCCurrents 0-20A up to 0-510A Powers 5kW up to 15kW
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Product
Solar Array Simulator DC Power Supply
62000H-S
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Chroma Systems Solutions, Inc.
Solar Array Simulator DC Power Supplies by Chroma provide programmable simulation of Voc (open circuit voltage) up to 1800V and Isc (short circuit current) up to 30A. The 62000S-H series provides an industry leading power density in a small 3U high package. The Solar Array Simulator is highly stable and has a fast transient response design, which are both advantages to MPPT performance evaluation on PV inverter devices.
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Solar Stimulator
XHS Series
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They are mainly used for the evaluation of solar cells as well as for other types of tests where sunlight needs to be recreated.The continuous light of xenon lamp, the most faithful reproduction of sunlight, is applied in our highly accurate solar simulator, which has been widely sold across Japan and neighboring countries.
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Product
Solar Simulator (JIS AAA)
PEC-L12
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●A compact power supply box allows installation on a desktop●The irradiation direction can be freely rotated 360 degrees●A 5cm square optical filter can be attached●Quiet shutter sound (equipped with a low-noise shutter)
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Product
Solar Array Simulator DC Module, 65V, 8.5A, 510W
E4361A
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The Keysight E4361A is a 510W solar array simulator DC power module that simulates the output characteristics of a solar array. The E4361A is primarily a current source with very low output capacitance. It offers fast I-V curve changes allowing you to accurately simulate the output of different solar arrays under various environmental conditions (ex. temperature, age, eclipse, spin etc.). The E4360 gives you the flexibility to operate it in two ways:
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PV-IV Solutions
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We offer a broad range of PV IV Measurement systems for measuring solar cells from 3 mm to 300 x 300 mm. The wide range of solar simulators, vacuum chuck test stations, and electronic loads make it impossible to list “standard solutions” Most systems are put together for individual customer needs based on cell type and contact geometry of the devices being tested. Over the last several years we have designed and manufactured a wide range test solutions for many different types of cells and contact geometries. In most cases a customized solution is no more than a slight customization of a standard platform that has been previously designed.
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Product
Reference Cells For PIV-IV Systems
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NREL calibrated cell used for calibration transfer.The Abet Technologies solar reference cell is a precision instrument for the determination of solar simulator irradiance levels. The sensor is a mono-crystalline silicon solar cell having an area of2x2cm(4cm).The back of the solar cell is attached to the device in such a way that a good heat transfer to the device housing is guaranteed. Below the solar cell a Pt100 RTD temperature sensor is mounted to allow monitoring of device temperature. The device is not shunted allowing the whole IV-curve to be measured. The solar cell is protected by a high quality fused silica window, assuring spectral sensitivity over a 320 -1100 nm range.
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Module Solar Simulators
QuickSun® 800-Series
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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 Simulator
XES Series
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The recent environmental issues have been drawing more attention over the past few years. So "solar simulators" have come into the public eye much more often. They are mainly used for the evaluation of solar cells as well as for other types of tests where sunlight needs to be recreated.The continuous light of xenon lamp, the most faithful reproduction of sunlight, is applied in our highly accurate solar simulator, which has been widely sold across Japan and neighboring countries."SAN-EI" offer a wide range of solar-related optical technologies and can guarantee to satisfy the needs and request of customers.
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Product
Solar Simulator
Sirius 150A
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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 Simulation Systems
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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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Spectroradiometer For Measuring Natural And Artificial Solar Radiation
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UV-visible-NIR spectroradiometers with accessories for measuring solar radiation - natural daylight and solar simulators
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AAA Solar simulator
SS50AAA-PLC
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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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Solar Spectrum Test Chambers
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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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Load Simulator
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The load system is intended for testing satellite power supply systems; due to the integration with a solar array simulator and a battery simulator, it can perform validation and commissioning of satellite power supplies. The system is equipped with regenerative electronic loads and customer-specific high-power switching matrices for routing the DUT channels to the relevant loads. The individual voltages and currents for each channel can be read back via a Keysight Technologies switch mainframe.The system is equipped with high electrical power; its loads are capable of feeding the energy back into the power grid.
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Solar Array Simulator Auto-Ranging Module 0-160V, 0-10A, 1kW
MP4361A
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The Keysight MP4361A is a 1000 W solar array simulator DC power module that simulates the output characteristics of a solar array. The MP4361A is primarily a current source with very low output capacitance. It offers fast I-V curve changes allowing you to accurately simulate the output of different solar arrays under various environmental conditions (ex. temperature, age, eclipse, spin, etc.).
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Product
Class AAA Steady State Solar Simulator
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King Design Industrial Co., Ltd.
*Lamp average life 25,000 hours (We offer 1 year warranty including lamps)!*Spectrum Mis-match Class A, without filter! *Irradiance almost no decay within 10,000 hours!*Spectrum maintains stable during power adjustment!
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Electrical Ground Support Equipment:
EGSE
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Keysight provides a variety of configurable test systems for satellites and satellite flight hardware; including Solar Array Simulators, Battery Simulation and Conditioning, RF signal simulation and analysis as well as fully custom solutions.
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Product
Solar Simulator Continuous Light
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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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Solar Simulation
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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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Single Long Pulse Solar Simulator & I-V Test System
TriSOL SLPSS
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The OAI Test System for HIGH EFFICIENCY SOLAR CELLS overcomes the limitations of flash testing by providing a highly optimized pulse width and voltage sweep rate to match the cell’s dielectric response speed. As a result, the system produces extremely accurate measurements of solar cell efficiency leading to increased profitability.
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Product
Solar Cell I-V Characterization System
VS6821
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Industrial Vision Technology Pte Ltd.
This system provides cell manufactures and laboratories a new way in testing and measuring photovoltaic cells. Integrated with Steady-State Solar Simulator, it provides complete coverage of testing parameters and measurement requirements by most international standards. Its test methods, procedure & equipment are IEC 60904 compliant. Calibration of reference cell is performed at Fraunhofer ISE in Germany, and is traceable to PTB.
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Stand-alone I-V Test Systems
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OAI offers a complete line of high performance I -V Testers. I -V Testers and I -V Rider software may be ordered as a stand -alone system or integrated into any OAI Solar Simulator. Three standard ranges of I -V Testers are available; ≤1A, 1 -5A, 5 -10A, and 20A. Higher current testers are available as custom options. An OAI Application Engineer will work with you to insure that the I -V Tester and I -V Rider software you choose is optimized for your specific application.
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Solar Simulators
TriSOL CPV
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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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Continuous Wave Solar Power Meter
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The OAI Continuous Wave Solar Power Meter is an essential analytical tool for measuring the irradiance (in Suns) of Continuous Wave Solar Simulators. OAI’s Solar Power Meters feature unique features not found in other Solar Meters. This versatile meter can display a wide variety of cell characteristics that include: cell type, window type, cell size, and temperature measurement device type. The OAI Continuous Wave Solar Power Meter can sample and display a continuous reading or peak reading. The Power Meter connects via USB port for data collection, and includes desktop software. With this small, portable, battery-powered meter, numerous production solar simulators can be tested and compared in a short amount of time, leading to greater production line consistency and throughput.
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Standard & Custom Test Fixtures
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Both standard and custom Test Fixtures from OAI enable the user to integrate the solar cell with the I -V tester. Fixture configurations range from from simple hold down devices to temperature-controlled fixtures with front and back side contact. We invite you to contact an OAI Application Engineer for help with your fixture design. With our expert guidance, you can expect maximum performance from your I -V Tester and Solar Simulator.
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High Intensity Pulsed Solar Simulator
GEN 2
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Alpha-Omega Power Technologies, LLC.
The GEN 2 pulsed solar simulator and data acquisition systems can generate over 1,200 suns with a spot size of 12 mm x 12 mm at a rate of 2 pulses per second.
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Testing & Quality
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The solar simulator, electroluminescence and hi-Pot testers are the main machines used to test photovoltaic modules. These machines can be positioned at the end of the production line and along the production chain to keep the quality and efficiency of the photovoltaic modules under control after the most sensitive production phases. Each machine uses the best technologies in order to guarantee the best and most accurate measurements.





























