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Solar Simulation Systems
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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MHG Solar Simulation
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 Array Simulator
Among other things, solar array simulators are required for testing satellite power supplies. An SAS (Solar Array Simulator), consisting of an interconnection of several Solar Array Simulator modules, maps the solar panels and displays the individual strings connected in parallel. Optionally, the individual SAS modules are monitored by a Second Level Protection, so that the test object is not damaged in case of errors with the voltage sources. Additional circuitry is implemented via project-specific test modules. The signal path to the DUT can be separated, e.g. for dynamic current measurements.The Keysight Solar Array Simulators used were specially developed for satellite applications and cover the significantly higher requirements regarding the control speed of MPP tracking compared to terrestrial applications.
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6″ (15.25 cm) 1000W Pre-Irradiation Solar Simulator
Model LS1000-6S-009
1000W Pre-Irradiation Solar Simulator Kit specifically designed for the pre-irradiation step during in vitro broad spectrum sunscreen testing. Fully compliant with the most current FDA and ISO requirements. The 6″ (15.25 cm) Class A beam can irradiate up to 9 PMMA plates simultaneously.
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AFM (Atomic Force Microscope) Optical Platform
The AFM platform allows fully-integrated use of confocal Raman microscopy and AFM for Tip-Enhanced Optical Spectroscopies (such as Tip-Enhanced Raman Spectroscopy (TERS) and Tip-Enhanced PhotoLuminescence (TEPL)), but also for truly co-localized AFM-Raman measurements.The myriad of AFM (Atomic Force Microscope) techniques that allow study of topographical, electrical and mechanical properties can be performed with any laser source available in Raman spectrometer, or with other external illumination (e.g., solar simulator or other tunable or continuum source). TERS and TEPL can provide nanoscale chemical and structural information, making the AFM-Raman platform a two-way road; where complimentary techniques provide novel and unique imaging capabilities to each other.
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Solar Array Simulator
SAS
AMETEK Programmable Power, Inc.
A spacecraft solar array is subjected to large temperature excursions, varying insolation (the amount of sunlight falling on the array), mechanical changes and aging, which substantially effect both its short and long term performance. In order to test the spacecraft's power environment, a cost-effective solution for ground based testing is to utilize a solar array simulator.
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IV Curve Tracer
IVCT
In recent years, we have been developing a sophisticated IV curve tracer for PV modules including a maximum power point tracking (MPPT) function. The IV curve tracer is designed for operation with any market-available steady-state solar simulator. Through our web-based software design, the operator can supervise the test results from every computer in a company network. The software contains functions such as an irradiation sum counter that helps to check requirements stated in a stabilization test like they are defined in IEC 61215 (MQT 19). We have also included a correction function to correct the traced IV curves to standard test conditions (STC) when the user enters the required temperature coefficients. One of the most important features is the multi-IV curve tracing function, which enables the user to display more than 150 IV curves in one graph. This eases the analysis of the weakest cells in hot-spot tests, which are required in IEC 61730 (MST 22) and IEC 61215 (MQT 09).
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Solar simulators
Solar simulators enable the measurement of (dark and) light IV characteristics and of power and efficiency of photovoltaic An artificial light source is used to create illumination conditions that are similar to those in natural sunlight. International standards hosted by ASTM, IEC and JIS allow to classify the properties of a solar simulator with respect to spatial light uniformity, spectral content of the light and time variation of intensity.
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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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Mobile Test Systems
The systems include A+A+A+ LED solar simulators, high-resolution electroluminescence testers and various other tests that you can easily integrate into your transport of choice or directly into a container on site.
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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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License For Automated EN50530 Static And Dynamic MPPT Efficiency Testing
DG8901A
Optional upgrade for Solar Array Simulator (SAS) app. Provides additional automated static and dynamic EN50530 maximum peak power tracking (MPPT) tests.
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High Intensity Pulsed Solar Simulator
GEN 2
Alpha-Omega Power Technologies, LLC.
The GEN 2 pulsed solar simulator and data acquisition systems can generate over 1,200 suns with a spot size of 12 mm x 12 mm at a rate of 2 pulses per second.
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Solar Simulator
PEC-L15
●Light source/lamp house integrated compact design●Irradiation head rotates (downward, upward, sideways irradiation possible)●5cm square optical filter can be attached●Equipped with high-speed shutter (100ms)●Body weight is only 16kg.
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Equipment
Based on a proprietary light engine, our solar simulation equipment delivers perfect and continuous artificial sunlight 24/7, allowing for accurate stability and performance assessments of solar cells at laboratory and industrial scales.
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Solar ATE
MS 1534
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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UV Solar Simulators
UV Solar Simulators - please contact the company directly for more information.
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Solar Array Simulator Module 0-130V, 0-8A, 1kW
MP4362A
The Keysight MP4362A is a 0-130V, 0-8A, 1kW solar array simulator DC power module that simulates the output characteristics of a solar array.
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FIber Based Solar Simulator
Provides up to 12 suns class B non-uniformity over a 12.5 mm diameter with the A4 Light Line and class C uniformity can be achieved over 18mm diameter both with a working distance of 25 cm. Provides up to 4 suns class B non-uniformity over a 12.5 mm diameter with the A1 Light Line with a working distance of 25 cm.
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Stand-alone I-V Test Systems
OAI offers a complete line of high performance I -V Testers. I -V Testers and I -V Rider software may be ordered as a stand -alone system or integrated into any OAI Solar Simulator. Three standard ranges of I -V Testers are available; ≤1A, 1 -5A, 5 -10A, and 20A. Higher current testers are available as custom options. An OAI Application Engineer will work with you to insure that the I -V Tester and I -V Rider software you choose is optimized for your specific application.
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TriSOL Class AAA 0.25º Collimation Angle Solar Simulators
For high performance space applications, OAI offers a 0.25 Collimation Angle Solar Simulator. It is engineered with the technology built on OAI’s 47 years of experience working with light. Features include 100mmx100mm beam size, long lens housing, AM 1.5 G and AMO spectrum up to 1800 nm or any custom spectrum, and intensity controlled up to 1.25 SUNS. These solar simulators are built with OAI’s precision, quality and reliability.
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Calibrated Solar Reference Cell
To insure repeatable testing on any solar simulator, OAI offers 2cm x 2cm calibrated reference cells. Standard reference cell calibration cycles can be set up by OAI''s calibration laboratory to insure that your reference cell maintains certification.
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Aerospace and Aviation Solutions
SCOEs and EGSEs by LXinstruments are used during test and validation of satellite assemblies and modules in aerospace applications. As an example, we implemented solar array simulators, battery simulators and high-power load racks for a German satellite manufacturer for testing satellite power supply systems. Due to the high power ratings, the systems are partially equipped with water cooling. Specialized switching modules were developed for switching DC currents at high voltage levels; these can be programmed with SCPI commands via Ethernet.Our modular OTP² functional test platform is ideally suited for implementing durable, reliable test systems, e. g. for in-flight entertainment applications. Since the OTP2 platform is based on open interfaces, it can be quickly and easily adapted to any required communication busses and ARINC interfaces.
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Engineered Systems
AMETEK Programmable Power, Inc.
When a catalog product cannot completely satisfy a requirement, AMETEK Programmable Power's Solutions Business provides custom power supply systems and integrations. The solutions range from OEM integration for medical and semiconductor industries to modular avionics ATE power subsystems to turnkey solar array simulators for satellites. We also can modify power supplies to meet your application requirements.
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Module Solar Simulators
QuickSun® 800-Series
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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LED solar simulators
We offer innovative A + A + A + LED solar simulators for the integration of the production process and for the stand-alone operation in the laboratory or goods receipt. Our LED solar simulators are characterized by maximum repeatability, a long pulse duration and very low maintenance.
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Environmental Chambers
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. Our systems are designed to be flexible and deliver the optimum solar simulation solution. We do not force-fit a "standard" system to attempt to meet your needs.
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AAA Solar simulator
SS50AAA-PLC
Application ■Mono crystalline silicon (Si) ■Multi crystalline silicon (mc-Si) ■Amorphous silicon (a-Si) ■Gallium arsenide (GaAs) ■Gallium indium arsenide (GaInAs) ■Gallium aluminum arsenide (GaAlAs) ■Gallium indium phosphite (GaInP)
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Load Simulator
The load system is intended for testing satellite power supply systems; due to the integration with a solar array simulator and a battery simulator, it can perform validation and commissioning of satellite power supplies. The system is equipped with regenerative electronic loads and customer-specific high-power switching matrices for routing the DUT channels to the relevant loads. The individual voltages and currents for each channel can be read back via a Keysight Technologies switch mainframe.The system is equipped with high electrical power; its loads are capable of feeding the energy back into the power grid.





























