(slow)QTestStationSeries太阳能电池光谱响应/量子效率(QE/IPCE)测试系统

  • 2023-02-17 17:05:05
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QTest Station 1000 / 2000 Solar Cell Quantum Efficiency or IPCE Measurement System
Features: Applicable Photovoltaic Devices:
◆ A turn key, fully automatic QE / IPCEmeasurement Silicon
station in compliance with all major international Si (crystalline)
standards for PV testing,such as ASTM and IEC Si (multicrystalline)
etc. Si (thin-film transfer)
◆State of the art system suited for all categories ofAmorphous/nanocrystalline Si
PV devices Si (amorphous)
◆Multi-junction solar cell measurement Si (nanocrystalline)
◆Extremely stable light source and high signaltoIII–V cells
noise ratioGaAs (crystalline)
◆Wide spectral range from deep UV to MID-IR, GaAs (thin film)
extendable to other range GaAs (multicrystalline)
◆Integrating sphere module for both External QE InP (crystalline)
and Internal QE testingThin-film chalcogenide
◆Measurement of PV devices with slow time CIGS (cell)
response, such as dye sensitised CdTe (cell)
◆Calculation of Isc under AM0, AM1.5D and AM1.5GPhotochemical
◆System expandable to PL measurement with Dye sensitised
optional modules for customers with limited budget Organic
◆Advanced modular design with a great variety of Organic polymer
options to best fit the need of inpiduallaboratoryMultijunction devices
◆ Intuitive Interface for operations GaInP/GaAs/Ge
◆Appropriate for use in either research and GaInP/GaAs
development applications or in product quality GaAs/CIS (thin film)
control by manufacturers a-Si/mc-S

The spectral responsivity of a photovoltaic device is useful for understanding device performance andmateria
characteristics. The quantum efficiency (QE) or IPCE is a quantity defined as the percentage of photons
hitting the photoreactive surface that will produce the current obtained outside the device,and normally reported
over the wavelength range λ.(unit: nm) to which the device responds:
QE(λ) = 1240 R(λ)/λ
In which, R(λ (unit: A/W) is defined as the output current (short circuit current) per input irradiance
or radiant power at a given wavelength.

QE or IPCE is an accurate measurement of the device"s electrical sensitivity to light. The Quantum Efficiency
of a solar cell is a very important measure for solar cells as it gives information on the current that a given cell
will produce when illuminated by a particular wavelength. If the quantum efficiency is integrated (summed) over
the whole solar electromagnetic spectrum, one can evaluate the current that a cell will produce
when exposed to the solar spectrum. The ratio between this current and the highest possible
current(if the QE was * over the whole spectrum) gives the electrical efficiency of the solar cell. System Specifications:

Wavelength RangeLight Source250nm – 2500nm, Other Wavelength Optional
Monochromator185nm – 3600nm, Others Wavelength Optional
Calibration DetectorSi: 200 nm – 1100nm
InGaAs and Others Optional
Wavelength Resolution0.1nm – 20nm
Stray LightSingle Monochromator, Better Than 10-4at 220nm (Nal) For QTest 1000
Double Monochromator, Better Than 10-9 at 220nm (Nal) For QTest 2000
Sample Illuminating AreaFrom Sub-millimeter to 156x156mm or larger, User Changeable
Sample ChamberD500 x W400 x H250mm, Other Size Optional
Data Acquisition ModuleAC Measurement: Lock-in AmplifierSensitivity: 2 nV to 1 VCurrent input: 106 or 108 V/A
DC Measurement: Multimeter / Source Meter and Pre-amplifier
Computer InterfaceRS232 Standard, USB and IEEE-488 optional
SoftwareHardware Setup and Control:Wavelength ScanningInput / Output Slits AdjustmentGratings changingFilter Wheel ControlSetup and Data Collection of Lock-in Amplifier or Multimeter / Source Meter Data Acquisition:Real Time DisplaySystem CalibrationData AnalyzingData StorageReport printingReflectivity and Transmittance for EQE and IQE
Other optionsTemperature ControlMultijunction Cell Measurements
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