Solar Cell
Convert light to electricity.
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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 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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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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Solar Cell I-V Characterization System
VS6821
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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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 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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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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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 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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IV-curve Software
Tracer
In Tracer you will find your all-in-one solution for the measurement and elaboration of IV-curve measurements. Tracer is the core application developed by ReRa that will help you to characterize your solar cells and compare the results.Tracer natively supports the control of Keithley 24xx and 26xx sourcemeters.These instruments have proven their strength over time for the measurement of solar cells.
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SR/QE Testing System
PVE300
Industrial Vision Technology Pte Ltd.
Solar Cell Multi-function SR/QE Testing System is specially designed for Photovoltaic Industry to characterize the Optical Performance of Raw material, process wafer, finished solar cell, as well as small Module.
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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 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 Cells
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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Post-Diffusion Process Control
Suns-Voc MX
Perfect for paste-firing optimization and process control. Open-circuit method indicates the upper bound of efficiency for any solar cell precursors
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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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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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Standard Probe Station Chucks & Accessories
In this test solutions section of our website we describe the expanding line of Abet PV IV probe stations for the growing variety of solar cell types and sizes being developed around the world. This page describes a line of vacuum chucks and accessories for top/bottom, top/top, and bottom/bottom solar cells from 3 x 3 mm to 300 x 300 mm. Probe stations for multiple device on a single substrate and multifunction probe stations are described further in the sections highlighted to the left of this page.
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Non-Contact Mapping Life Time System
MWR-2S-3
The device is designed for express non-destructive contactless local measurement of non-equilibrium charge carrier effective lifetime in silicon substrates, epi-wafers and solar cells at different stages of manufacturing cycle. It can be used for incoming and outcoming inspection of silicon ingots and wafers, tuning and periodic inspection of semiconductor and solar cell technology quality. Lifetime determination is based on measuring photoconductivity decay after pulselight photo-exciting with usage of reflected microwave as a probe.
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UPS (Uninterruptible Power Supply)
The UPS (Uninterruptable Power Supply) by Allied Edison is a light weight (7.2 lbs), portable, non-variable source that converts a 12 Vdc Lithium Ion battery to output 110 vac sine wave at 60 hertz. It also has four 12Vdc output jacks, and 4 USB ports to power electronic equipment such as computers or used to supply cell phone chargers, etc. It has a strong built in flashlight. The UPS plugs into a standard 120 Vac, 60 hertz receptacle for charging and indicates percent battery capacity remaining on a digital meter located on the front panel. The UPS can also be charged by a solar cell, sold separately or can be plugged into a vehicles cigarette lighter receptacle for use in remote areas. The UPS is an excellent compliment to the VS-3 power supply where a technician needs a variable AC/DC source and cannot run a power cord due to the remoteness of the work area.
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Laser Contact Opening
JRT Photovoltaics GmbH & Co. KG
On an industrial scale, laser technology plays a key role, as it enables low-cost production of high-quality solar cells. Jonas & Redmann develop and design laser systems for micro material processing – hereby ensuring an extremely cost-effective production process with high process efficiency.
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Software
Current-Voltage Measurement Option
Materials Development Corporation
CSM/Win Systems with an I-V option can measure both MOS and diode structures. For junctions, both forwardand reverse bias curves can be analyzed. Junction ideality factor, series resistance, and reverse saturation current are found. Solar cells can be checked for efficiency. Gate Oxide Integrity of MOS devices can be measured as well.
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Current-Voltage Measurement System
Sciencetech''s IV Testers are electrical current-voltage measurement systems used to characterize photovoltaic cell performance. This current-voltage tester works by sampling various current versus voltage combinations of the photovoltaic cell with a variable impedence load.This IV Test system can measure electrical power from photovoltaic cells up to 20W. The voltage envelope is limited to 20V and the current to 1A. A higher power version, up to 60W, is available. In general, the limitation on this model is the 1A current limit: if your solar cell generates more than 1A, we recommend upgrading to the 60W version.
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Solar Reference Cell
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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PV-IV Solutions
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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Electronic Components
We supply a wide range of components and materials to the electronics industry, such as: integrated circuits for personal computers, semiconductor materials for system LSI, optical communication materials for telecommunications, components for display devices seen in smartphones and projectors, and materials used in solar cells and lithium batteries.
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Test System
Maynuo Electronic Co.,Ltd a professional R & D and production of programmable DC electronic loads, programmable DC power supply, high power load, power supply, AC power supply, power supply, such as testing high-performance mobile phone test equipment and facilities, as well as electrical, electronic, aerospace, military, chemical, automotive, battery charger, battery, solar cell production lines and other industries to provide automated testing program. The company has many years experience in a number of outstanding technical R & D, product innovation by the majority of users. We are committed to provide users with more accurate and more stable more easily accessible to the higher cost of test instruments, to create the industry in testing the influence of an international brand of excellence.
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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.
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Surface Photovoltage
The surface photovoltage spectroscopy modules are the perfect all-in-one solution for in-depth studies of light sensitive materials such as organic semiconductors, solar cells or light sensitive dyes.





























