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Class B Pyrheliometers
LPPYRHE16… Series
The pyrheliometer LPPYRHE16 ( Class B Pyrheliometer according to ISO 9060:2018 classification) is an instrument for direct measurement of solar irradiance (Watt/m²).
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Photovoltaic Array Simulator, 15 kW, 1500 VDC
N8900APV Series
The PV simulators are autoranging, programmable DC power sources that simulate the output characteristics of a photovoltaic array under different environmental conditions (temperature, irradiance, age, cell technology, etc.) enabling you to quickly and comprehensively test inverter MPPT algorithms and inverter efficiency. The DG8900 SAS control software creates and downloads solar I-V curves to a single output solution. For multiple outputs choose the DG9000 SAS control software which can be used with up to 12 N8900APV sources.
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Pyranometers
MS Series
EKO MS-series pyranometers comply with the ISO 9060 and WMO standards and are very reliable. The MS-802 highest class ISO Secondary Standard is used for the most demanding applications in PV, field research and solar radiation monitoring of global, tilted and diffuse irradiance.
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Pyranometers Spectrally Flat Class A
LPPYRA10… Series
The pyranometers LPPYRA10 measure the irradiance on a flat surface (Watt/m²). Range 0-2000W/m² or 0-4000W/m². The radiation measured is the sum of direct solar irradiance and diffuse irradiance (global radiation).
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Pyranometer Verified Cosine Response
CMP 21
The CMP 21 pyranometer is designed for measuring the irradiance (radiant flux, Watt/m) on a plane surface, which results from the direct solar radiation and from the diffuse radiation incident from the hemisphere above.
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Pyranometer with Silicon Photodiode
LP471SILICONPYRA
Pyranometer with silicon photodiade for GLOBAL SOLAR IRRADIANCE measurement.
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Pyrheliometer
MS-56
The ISO First Class MS-56 is a direct normal incidence (DNI) solar irradiance sensor. Also known as a pyrheliometer, it is used as a reference sensor for routine operation on a Solar Tracker. The all-weather MS-56 is sensitive to solar irradiance in the spectral range 200 4000nm and works under the most extreme conditions in a temperature range from -40C...+80C.
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Radiometric Probe for UVB Irradiance
LPUVB03BLAV
The LPUVB03BLAV probe measures global irradiance (W/m²) on a surface area (m²) in the UVB (280 nm…315 nm) spectral region. In particular, the spectral sensitivity is focused at 305 nm, with a bandwidth (FWHM) of 5 nm. The global irradiance is the result of the sum of direct solar irradiance and of diffused irradiance incident on a planar surface.
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Silicon Pyranometer
LPSILICON-PYRA04
Pyranometer with silicon photodiode for measuring the GLOBAL SOLAR IRRADIANCE, diffuser for cosine correction. Spectral range 400…1100 nm.
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Solar Radiation Meter
MacSolar E
The measuring device has been designed primarily for engineers, architects, fitters and measurement technicians. The MacSolar E allows both an indication of the current irradiance as well as an estimate of the solar installation yield.
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Solar Ultraviolet Pyranometers
UVR1-T, UVR1-A, &
The Middleton Solar UVR1 series are precision filter radiometers for measuring solar global ultraviolet irradiance. The UVR1-T and UVR1-A are suitable for air pollution monitoring. The UVR1-B is suitable for biological and human erythema (sunburn) monitoring.
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Sunshine Duration Sensors
MS-093
MS-093 precisely measures the direct solar irradiance that exceeds the threshold of 120w/m2, which is defined in the sunshine duration measurement method by WMO (World Meteorological Organization), making it possible to measure highly accurate sunshine duration.
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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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Pyranometer
CMP 3
The CMP 3 Pyranometer is an instrument for measuring the solar irradiance. The thermopile sensor construction measures the solar energy that is received from the total solar spectrum and the whole hemisphere (180 degrees field of view). The output is expressed in Watts per meter square. The CMP 3 pyranometer is designed for continuous indoor and outdoor use
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Daystar Solar Meter
DS-05A
Daystar's DS-05A solar meter brings 'point and read' simplicity to the measurement of solar irradiance. Just turn the meter on, point the sensor at the sun and obtain a reading in Watts/m2.
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Wireless Data Logger System
HD35
Wireless datalogging system allowing the monitoring of a multiplicity of physical quantities in the most diverse fields of application. Temperature - Humidity - Atmospheric and differential pressure - Illuminance - Irradiance UVA, UVB, UVC, CO, CO2 - Solar radiation - Precipitation - Wind speed and direction, Leaf wetness, Volumetric soil water content, Level, WBGT.
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Solar Radiation Sensors
Ingenieurbüro Mencke & Tegtmeyer Gm
The silicon solar radiation sensor (Si) sensor provides an inexpensive but yet robust and reliable solution for measuring the solar irradiance specifically for the monitoring of photovoltaic (PV) systems. Due to the structure of the sensor element, which corresponds to a PV module, these sensors are ideally suited as a reference for the monitoring of PV systems to determine the solar radiation.
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Solar Monitoring Stations
SMS
EKO Instruments unique Solar Monitoring Station (SMS) is the primary reference to collect high quality solar irradiance data on-site. The innovative turn-key system provides all fundamental solar radiation and meteorological parameters for PV site evaluation, performance monitoring and cell optimizing.
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MOCVD Systems
TurboDisk Family
A rapidly developing technology with multiple proof-of-concept scale installations (1 MW or less), with many more larger-scale projects gaining momentum worldwide within regions with high direct normal irradiance (DNI). As/P MOCVD is proving to be the technology of choice in building the critical compound semiconductor layers for CPV devices. Veeco, supplying best-in-class MOCVD equipment, provides the critical enabling As/P MOCVD technology to reduce the production costs of triple junction solar cells and provides manufacturers with the ability to easily ramp production in a modular system with unmatched reliability and throughput at the lowest cost.
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Solar Analyzers
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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LED Solar Simulator
LumiSun-50
The LumiSun-50™ is a high power, multi-wavelength LED solar simulator that meets IEC 60904-9 Class AAA for spectral match, uniformity of irradiance, and temporal stability. The LumiSun-50 achieves a spatially uniform illumination field from a chip-on-board (COB), multiple-wavelength LED die array. The field of illumination is 50 x 50 mm at a working distance of 200 mm. The LumiSun-50 includes a driver/controller which individually provides constant current to each die in the COB array. Total irradiance of 1.1 sun units is provided and can be decreased to 0.1 suns. The LED light source of the LumiSun-50 is contained within an air-cooled housing that can rotate the angular beam alignment. Adjustment and setting of the optimum light path working distance is visually facilitated by a converging pair of red dot laser pointers.
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Solar Radiation Testing
Prolonged exposure to solar radiation can be very damaging to equipment that is stored or used outdoors. NTS operates state-of-the-art solar radiation testing facilities, capable of testing to solar standards for various different product types. We utilize proprietary sources of radiation to provide the spectral content and irradiance to the exacting requirements specified by these standards. We also provide the exact temperatures and wind speeds required by these standards.
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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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Full Range Photodiode Array UV-VIS-NIR-SWIRLaboratory Spectroradiometers
The SR-Series of full range laboratory spectroradiometers is ideal for a wide range of applications, including:*Solar radiance and irradiance measurements*Solar simulator test and classification*LED, laser, light source metrology*Radiometric calibration transfer*Remote sensing applications
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Solar Simulator
Unisim Compact Solar Simulator
The Unisim Compact is a low-cost close-match solar simulator that provides the world-leading spectral match of our award winning Unisim solar simulators in a compact, bench top unit complete with IV measurement system. As with all our Unisim solar simulators, they exceed the ASTM, IEC and JIS international standards for spectral match and temporal instability. The easy-maintenance enclosure houses a TS-Space Systems 2-zone Unisim solar simulator which combines metal halide and incandescent sources via a proprietary filter system to give an AM0 close-match spectrum (AM1.5 drop-in filter sets are available). The standard system includes an embedded source meter with complete IV measurement system (Computer, GPIB interface, IV software, MS Excel), relative irradiance indicator for monitoring lamp intensity and an electrical shutter. Product support is very important to us. Training is provided at our premises where customers can take advantage of one-on-one tuition with the solar simulator designers and learn how to operate and maintain their tools. Extensive support via phone and email for the full lifetime of the instrument is included with every TS-Space Systems product.
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Irradiance Meters
These low cost meters have a digital display, a 9VDC battery, are easy to operate. Irradiance meters are used for measuring UV Index, and Solar Panel Power.
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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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Low Cost Solar Simulators
Abet Technologies model 10500 is a low cost solar simulator providing an attractive alternative to more fully featured and expensive solar simulators for applications that do not require a large area illuminated field. The optical system of the 10500 produces a collimated 25 mm beam. Focus or defocus it for higher irradiance or larger solar cells. One sun output is achievable up to a 35 mm diameter illuminated field.
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Photovoltaic Array Simulation Solution
The Keysight N8937APV and N8957APV photovoltaic array simulators are capable of testing PV inverters up to 1,500 V, enabling designers to participate in the recent industry shift to the higher voltage. They can quickly simulate I-V curve characteristics under different environmental conditions (temperature, irradiance, age, cell technology and more), enabling the user to quickly and comprehensively test their solar inverters.
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Solar Total Pyranometers
SK08 & SK08-E
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.