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Solar Cell
Convert light to electricity.
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SOLAR CELL TESTER
The tester is designed for terrestrial solar cell incoming/outcoming inspection with the purpose of checking and optimizing parameters and preventing manufacture defects of solar modules. Solar cells are not heated in process of inspection due to the use of xenon pulse lamp installed in the tester.
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Fully Automatic Solar Cell
Module Laminator-H
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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Semi-auto 4 Point Probe System for Solar Cell Substrate
RG-100PV
*Measurement system for thin film on substrate samples for multi-points measurement*Even pitch and random pitch for Max.1,000 points*2-D/3-D square mapping software for even pitch
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Solar Cell Characterisation
The PVE300 permits the determination of device spectral responsivity (from which may be determined EQE), and, having performed measurements of sample reflectance (and transmittance where required) the determination of IQE.
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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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Solar Cell Testers
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 Cell PL/EL/IV 3-in-1 Testing System
VS6841
Industrial Vision Technology Pte Ltd.
This luminescence Analyzer integrates a Photoluminescence (PL), Electroluminescence (EL) , and I-V Measurement Technology, has a Device’s PL image, EL image, as well Device’s I-V characteristics in One system. It is being using to quantitatively map Minority-Carrier Lifetime, and to characterize the defect of silicon wafer & solar wafer, and measure the key parameters from solar cell I-V Curve. It is also a useful tool for scientist to develop other methodology & parameters that can be used as a promising technique for online material monitoring and process control.
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SolarIV Series Solar Cell Current Voltage Measurement System
SlarIV
SolarIV IntroductionOne of the key measurements needed for photovoltaic devices in the measurement of their I-V characteristics. Through measuring the I-V curves the user can determine physical performances of devices such as photo-electric conversion efficiency, fill factors and so on. Such data is important for reliable work in research and quality inspection. ZOLIX supply the SolarIV system and the most perfect, professional technical support.
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Spectral Sensitivity Measurement
It is a device which measures the spectral sensitivity characteristics and quantum efficiency of various solar cells by irradiating solar cells with monochromatic light of constant energy and constant photon without wavelength dependence. We are constantly monitoring irradiation light quantity with our real real time light quantity monitor control system and are not influenced by fluctuation of light source, so it is a well-established control system with excellent measurement stability and measurement reproducibility.
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Testing for Si Solar Cells Using High Performance CCD
EL Imaging Tester
EL Testing for Si Solar Cells using High Performance CCD. The determination of luminescence (photo emissions) in solar cells is an important characterization tool. Typical solar cells often have defects which limit the efficiency or lifetime of a cell. Many of these defects are visualized with Luminescence Imaging. By using this technique, the manufacturing process can be optimized to produce better cells. Luminescence Imaging takes advantage of the radiative inter-band recombination of excited charge carriers in solar cells. The emitted photons can be captured with a sensitive CCD camera to obtain an image of the distribution of the radiative recombination in the cell. This distribution is determined by the local excitation level, allowing the detection of electrical losses, thus mapping the diffusion length of minority carriers as the emitted light is low intensity and in the near infra-red range, the CCD camera has a high sensitivity wavelength from 900 to 1100 nm with little thermal noise. This CCD camera provides excellent resolution of 1024 x 1024 pixels with a large 1μm pixel size, multi-megahertz readout speed, and robust USB 2.0 connectivity. The EL CCD Camera is the ultimate high-performance CCD camera for electroluminescence and photoluminescence imaging for Photovoltaic (PV) Cells and Modules. This camera combines low noise electronics and optimal sensitivity in NIR.
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High Definition MWIR Science-Grade Camera
FLIR X8580™
The FLIR X8580 midwave IR camera is designed for scientists and engineers who need to capture detailed imagery of high-speed events, perform custom radiometric measurements, or detect points of failure in composites, solar cells, and electronics. This thermal imaging camera combines 1280 × 1024 HD resolution with fast frame rates and integration times, allowing researchers to record stop motion on fast-moving subjects or rapid temperature changes—whether in the lab or on the test range. With a four-position motorized filter wheel and support for FLIR motorized focus lenses, the X8580 will provide higher quality recordings, save time, and mitigate frustration in dynamic acquisition environments.
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Photoelectrochemical Test System
SolarLab XM
SolarLab XM is an application specific XM (Xtreme Measurement) product that is primarily focused on solar cell / photovoltaic research, developed in conjunction with Professor Laurie Peter of the University of Bath, UK.
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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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In-Line Light I-V Testing for Solar Cells
FCT-750
In-line, light I-V and Suns-Voc measurements in a single flash at 2400 units per hour. Capability to accurately measure high-efficiency conventional or backside-contact solar cells.
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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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Automated I-V/AOI/EL and Sorting System
OAI’s High Performance In-line Automated-I-V Testing, AOI/EL Inspection and Sorting/Binning System for Various Si Solar Cells. The 10000A-I-V System is a unique and reliable I-V testing, AOI/EL Inspection and Sorting / Binning system for testing of Mono, Multi-Si, C-HJT and other full Size (156mm x 156mm) and/or Cut-cell (156mm x 39mm or 156mm x 31.2mm or other custom sizes) Si Solar Cells.
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Thin Film Metrology Systems
Gemini Series
The n&k Gemini-TF, Gemini-TF-M and Gemini-FPD are specifically designed for measurements of patterned and unpatterned films on transparent or opaque substrates. These tools are used extensively for solar cell, flat panel and photomask applications. The tools belonging to the Gemini-TF Series are based on unpolarized Reflectance (R) and unpolarized Transmittance (T) measurements, with a 50μm spot size for both R and T. R and T are simultaneously measured to determine film thickness and n and k spectra from 190nm – 1000nm
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Solar Cell Tester
Jiangsu Keyland Laser Technology Co., Ltd.
Features:- Up to standard IEC60904 & JISC8933- 24 hrs continuous working , over 300,000 flash- Siemens PLC system adopted- 10 Parameters display
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Standard & Custom Test Fixtures
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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Solar Test Systems
AMETEK Scientific Instruments manufactures a range of application specific XM (Xtreme Measurement) products focused on solar cell / photovoltaic research (developed in collaboration with Professor Laurie Peter of the University of Bath, UK). These products are so versatile that they can also be used for photoelectrochemical (PEC) water splitting applications; and make use of Solartron’s unique high performance XM specified potentiostats and frequency response analyzers to provide a full complement of techniques for research into energy, corrosion and analytical electrochemistry.
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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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Flash Solar Power Meter
OAI’s Flash Solar Power Meter is a versatile measurement tool used for measuring the irradiance (in Suns) from Flash Solar Simulators. Flash Solar Simulators are commonly used in the production of solar panels. Integrated into the solar cell production line, this meter calibrates the flash solar simulator allowing for constant and repeatable irradiance output. By sampling at speeds up to 4000 Hz, the flash pulse temporal profile can be recorded in the meter’s memory and downloaded to a USB 2.0 port on a PC for further analysis.
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Characterization of Solar Cells
Paios
Paios performs a large variety of experiments in no time with one click. Get consistent and precise measurement data, directly compare your results in the measurement software and speed up your research.Increase your research speedCompare your devices directly in the softwareGet highly consistent dataThink about physics - Let Paios handle the rest
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Integrated I-V Test Systems
The OAI Integrated I-V Test System is perfect for R&D as well as production, the OAI Integrated I-V Test System delivers extremely accurate solar cell performance measurement. OAI’s advanced fully Integrated I-V Test System is designed to overcome the limitations of flash testing by providing a highly optimized pulse width and voltage sweep rate to match any type of solar cell’s high capacitance and slow dielectric response speed. As a result, the system produces extremely accurate measurements of solar cell I-V parameters and efficiency while leading to the most accurate test results.
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PV Test Solutions
High-speed and high-accuracy measurement of solar cell I-V characteristics in three modes
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Solar Cell I-V Characterization System
VS6825
Industrial Vision Technology Pte Ltd.
The VS-6825A I-V test system is tailored for high-efficiency Solar cell production lines. It is able to eliminate the impact of HJT/IBC/TOPCON’s high capacitance characteristics on measurement results.
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Interior light simulator
It is possible to evaluate characteristics of various solar cells and various sensors with high precision under LED lighting. It is possible to evaluate output characteristics conforming to JEITA standard ET - 9101 *
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Reference Cells For PIV-IV Systems
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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Solar Simulator for Concentrator Cells
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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Programmable 70W Electronic Load
MightyWatt R3
The All-New MightyWatt revision 3 turns your Arduino Uno R3 or Arduino Zero (M0/M0 Pro) into an electronic load capable of dissipating 70 Watts in a very small form factor. Ideal for testing power supplies, batteries, solar cells, fuel cells or power amplifiers. MightyWatt R3 has a research-grade electronics and is aimed not only at hobbyists but also at professionals.