Solar
energy of the sun's rays.
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Product
Solar
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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
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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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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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Solar Total Pyranometers
SK08 & SK08-E
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The Middleton SK08 is an affordable pyranometer for the measurement of global solar irradiance on a plane surface. It meets the international accepted specifications for a good quality pyranometer. The SK08 incorporates a passive thermoelectric sensor. The SK08-E version has an inbuilt signal amplifier.
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Solar Array Simulator
G5.SAS
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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 ATE
MS 1534
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The Inverterless ATE is an automatic test equipment which is used to test the all functional and various test conditions of Inverterless Solar Unit. This ATE shall be a GO/NOGO Tester for Inverterless Solar Unit. All production units can be tested with this ATE for functional testing and clearance. This ATE reduces the man effort for quality checks and detects the failure units. The Inverterless ATE can check the UUT with minimum user interactions. It shall test and generate test report in PDF format for the conducted tests with necessary data. The ATE operates on 230V AC power. The ATE has In-Built AC-DC converter which provides 12V DC for operate the unit. Also it has additional AC-DC converter to simulate solar power to the Inverterless units. The main objective of the ATE is to test the Inverterless S in all possible test scenarios without external test equipments and less user interactions.
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Solar PV Test Equipment
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The Seaward Solar range of electrical solar PV test equipment enables Photovoltaic installers to meet all testing and certification requirements of IEC 62446 safely and efficiently.
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Flashlight Solar Simulator
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Flashlight Solar Simulators have the advantage of negligible temperature change to the solar cell. For this reason, they are primarily used in cell and module production environments. Also, they are a more budgetary alternative if large cell areas are to be illuminated, because it is easier to have excellent light uniformity on areas of 8 in x 8 in or larger. So, this type of solar simulator is also used for analysis of large area thin film solar cells. But care must be taken, as some materials (e.g. CIGS) have long inherent time constants, so that the pulse length (better: flash plateau) must be chosen accordingly.
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MHG Solar Simulation
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Atlas Material Testing Solutions
Filtered MHG lighting is a mature technology used since the 80’s for larger solar simulators inside environmental test chambers. MHG lamps are filled with a mixture of mercury, halides and rare earth elements which vaporize during ignition, generating a plasma. After a few minutes, the plasma reaches thermal equilibrium and emits a quasi-continuous spectrum (when properly filtered) similar to global solar radiation.
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Solar Simulation Systems
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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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Close Match Solar Simulators
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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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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 simulation systems
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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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Steady-state Solar Simulator For PV Modules
SORAS LS
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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.
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Product
Solar Reference Cell
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The Solar Reference Cells consist of a 20 mm x 20 mm monocrystalline silicon Photovoltaic Cell encased in a 92 mm x 70 mm x 16 mm metal enclosure with a protective quartz window and a temperature sensor. Designed for calibrating the irradiance of solar simulators used for testing solar cells and modules.
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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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Solar Module Tester
REOO GIV-20A2616
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REOO GIV-20A2616 Solar Module Tester is designed for PV module manufacturing inspection, enabling fast module performance inspection and stable production quality verification. Built for solar factories, it supports reliable module testing decisions.
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Solar Analyzers
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Max. solar system power (Pmax) search by Auto-scan: 1000V, 12A (12000W capability)The analyzer and the Remote Solar Detector is connected by Bluetooth wireless communication (Bluetooth 2.1 + EDR Class 1)The Remote Solar Detector is moisture-proofIntelligent test logic with no personnel attendance required in the field Solar system analyzer waits and tests the system until appropriate sunlight irradiance is detectedMax. voltage (Vpm) at Pmax, Max. current (Ipm) at Pmax Voltage at open circuit (Voc), Current at short circuit (Isc)Efficiency (%) calculation of solar systemTemperature measurement of solar panelsIrradiance measurement of sun lightSeries resistance (Rs) calculation of solar panelsWith data logging/open function, the I-V curves of solar system can be analysed / recorded for a period of time (e.g. 60 min.)Conversion of I-V curve under OPC to data under standard test condition (STC) based upon IEC standardProvide Operating Condition (OPC) and Standard Test Condition (STC) test reports for verification of solar panel performance (OK or NO OK)Users can set up the parameters of solar panelsUsers can set up the series number of solar panels. Parameters of many solar panels can be measured in one measurementThe Irradiances and Temperatures of solar panels can be continuously measured, monitored and recordedContinuously measure/monitor/record the DC power output of solar system and the AC power output of inverter (1 phase or balanced 3 phases)Calculate the efficiency of DC to AC power conversion and the efficiency of the max.output power
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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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Solar Cell Testers
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Solar Cell Testers are integrated systems incorporating Solar Simulator and I-V Measurement systems. PET offers Standard and Advance IV Measurement software. PET Cell Testers are capable of measuring a diverse range of solar cell parameters such as Isc,Voc, Imax,Vmax, Pmax, FF, Rsh, Rs and η cell conversion efficiency, complete light and dark I-V curves. All that needs to be done to test a cell is to load the cell, make electrical probes contact and press “Measure” icon on the I-V Measurement System software. The software will automatically open the Solar Simulator shutter, perform the test and close the shutter after the test is complete. The design is modular in nature and can be easily upgraded. Some options can added at a later time.
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Solar Simulator for Concentrator Cells
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Optosolar offers solar simulators with continuous light for small area solar cells (ca. 10mm x 10mm). depending on the cell size, the concentration ratio can exceed 1000 suns. Special designs cover low concentration on large area wafers (156mm x 156mm), as well as line focus applications (e.g. 8mm x 156mm at 8 suns). Flashlight Solar Simulators have the advantage of negligible temperature change to the solar cell. For this reason, they are often used for very high concentration ratios or for multijunction cells in a solar simulator with adjustable spectrum.
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Modular Solar Array Simulators
E4360 Series
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The E4360 Modular Solar Array Simulators accurately simulates the I-V curve of different arrays under various environmental conditions (such as eclipse, spin, rotation, age and temperature). Its small size and high power saves valuable rack space.
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Solar Power Meter
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*Selectable from two units: W/㎡ and Btu *Peak value retention function *Data retention function *Measure directly without adjustment *Steadily measure for a long period
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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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Solar Cells
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Using high-efficiency solar panels made of silicon solar cells, the conversion rate as high as 16%, and attenuation, good reliability, long life. Frame using a high-quality anodized aluminum edge, high mechanical strength, ensuring a high level of wind resistance and anti-riot performance, can be adapted to a variety of complex and harsh climatic conditions used.
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Steady State Solar Simulator
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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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Fully Automatic Solar Cell
Module Laminator-H
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1. Model: BSL2236OAC-H2. Effective lamination area: 2200mm × 3600mm3. Dimensions: length 17410mm × width 3665mm × height 2164mm4. Heating method: heat conduction oil heating5. Compressed air source pressure: 0.6~0.8MPa6. Working vacuum degree: 100~40Pa7. Evacuation rate: 70L/S8. Temperature control accuracy: ±1.5°C9. Temperature control range: room temperature - 180°C10. Temperature uniformity: effective lamination area≤±2℃11. Lamination chamber height: 30mm12. Evacuation time: depending on the process, it is recommended to take 5 to 8 minutes13. Upper cover stroke: 300mm
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Product
Solar Panel IV Tester
REOO GIV-20A2616
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REOO GIV-20A2616 Solar Panel IV Tester is designed for PV module manufacturing electrical inspection, enabling electrical performance verification and stable output measurement during production. Built for solar factories, it supports reliable module grading.





























