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Solar Simulators
replicate the sun's light.
See Also: Solar Simulation, IEC 60904-9, I-V Tracers, Solar Reference Cells
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Solar Simulation
Sciencetech solar simulators produce high intensity, uniform illumination on a target area. Typically, high power solar simulators use an ellipsoidal reflector to capture light from an arc lamp source inside the reflector, an arrangement that results in a light pattern with a bright outer region and a dark center. This non-uniformity is un- acceptable in many solar simulator applications and as a result, forces many of our solar simulator competitors to use designs involving diffusers to reduce the non-uniformity. This results in a reduction of intensity and a dis- tortion of the spectrum on the target area.
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Close Match Solar Simulators
We design and manufacture a wide range of world leading solar simulators that meet and surpass the IEC, ASTM and JIS international standards. Our close spectral match solar simulators are used across the globe in world-leading laboratories. Our award winning Unisim solar simulators are used in both research and development work as well as 24/7 production facilities and are regularly cited in the latest photovoltaic research literature.
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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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Flashlight Solar Simulator
Flashlight Solar Simulators have the advantage of negligible temperature change to the solar cell. For this reason, they are primarily used in cell and module production environments. Also, they are a more budgetary alternative if large cell areas are to be illuminated, because it is easier to have excellent light uniformity on areas of 8 in x 8 in or larger. So, this type of solar simulator is also used for analysis of large area thin film solar cells. But care must be taken, as some materials (e.g. CIGS) have long inherent time constants, so that the pulse length (better: flash plateau) must be chosen accordingly.
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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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Large Area Solar Simulators
The LASI Beam Turner assembly allows the output of the LASI to be projected horizontally. It attaches to to the standard LASI downward facing stand that is included in the base LASI system.
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Fully Reflective Solar Simulators
Sciencetech manufactures four high power versions of class AAA fully reflective solar simulators. Sciencetech''s proprietary fully reflective design uses metal coated mirrors and passes the whole spectrum, no compromise. This is a distinct advantage over refractive based systems that are limited by the properties of the transparent material used.
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UV Solar Simulators
UV Solar Simulators - please contact the company directly for more information.
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Large Area Pulsed Solar Simulators
Alpha-Omega Power Technologies, LLC.
AOPT introduces the large area pulsed solar simulator capable of generating a CLASS A output over a large area of 3.5 meters by 3.5 meters.
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Solar Stimulators
Alpha-Omega Power Technologies, LLC.
Alpha-Omega Power Technologies (AOPT) has developed a line of pulsed concentrator photovoltaic (CPV) solar simulators based in its experience with pulsed high voltage flash lamp systems and its patented high speed, high power load.
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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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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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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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Solar Simulators
Sun 2000 Class A
The Abet Gen II optical design, patent pending, dramatically increases the percentage of photons reaching the work plane.All electronics are packaged in the lamp house -no clutter of high power cables to deal with. A digital shutter timer allowing both manual and external control is included with every unit.Standard maintenance, lamp or filter replacement, does not require any tools.Locking indicator dials on all the system controls provide for a reproducible and stable setup.
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Portable Solar Simulator
XES-40S3
We have manufactured the highly accurate solar simulators, which is used for evaluations where sunlight needs to be recreated. By fully utilizing these technologies, we have developed this portable Solar Simulator, which can easily reproduces sunlight. Our device is optimum solution for initial evaluations and inspections for the research purpose.
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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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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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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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Testing Consumables
Solar Light offers a plethora of consumables for SPF and other testing requirements, including high quality Molded and Sandblasted PMMA Plates, Pre-Analyzed and Certified SPF and UVA Sunscreen Standards, Disposable Medical-Grade Pads, and long-life spare Xe Lamps for use with our state of the art Solar Simulators.
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Electrical Ground Support Equipment:
EGSE
Keysight provides a variety of configurable test systems for satellites and satellite flight hardware; including Solar Array Simulators, Battery Simulation and Conditioning, RF signal simulation and analysis as well as fully custom solutions.
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Light Simulator
From the review of the scientific development history, reliable and stable artificial light sources have played a very important role in the past century. For example, the artificial solar simulator is an important part of simulating sunlight to ensure accurate performance of PV characterization. With the growth of light sensor applications, more and more requirement of light simulators (or artificial light sources) explored. One of the core technologies of Enlitech is the artificial light sources. We can manipulate different lamp types (short arc lamps, LEDs, filament lamps et. al.) to generate different spectrum-form in different light intensity levels, beam sizes, and wavelength ranges. We have launched different artificial light source products for different applications fields. For instance, SS-X series solar simulators and ILS-30 ambient light simulator are for the PV field, HAAS is highly accurate star light simulator for the space field, and ALS-300 is a general-purpose light source in science research field. These products can not only meet the needs of your application, but also speed up the process of your research or mass-production.
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Solar Simulator
Unisim
TS-Space Systems is the first company to pioneer the use of metal halide sources in solar simulators for photovoltaic testing. The high temporal stability and close spectral match combined with the ability to control the output spectrum via multiple separate wavebands means the Unisim solar simulator is the only solar research tool designed for the accurate measurement of multiple junction devices, including the new generation of four junction devices. As with all our Unisim solar simulators, they exceed the ASTM, IEC and JIS international standards for spectral match and temporal instability. Using the latest HMI and halogen luminaire technology, the Unisim solar simulator provides a highly stable area of illumination. The simulators also use cutting edge filter technology in order to provide the best spectral match available for AM0 and AM1.5. Further to this, the spectrum can be achieved via two, three or four separate spectral wavebands which allows a high degree of spectral control for research and development. 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 instrument 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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Highly Collimated Solar Simulators
This solar simulator is based on a Fresnel lens to collimate the light beam from the arc lamp source to infinity, which results in highly collimated illumination of the target spot. A 2.5kW xenon ozone free lamp is used as the light source. The spectral distribution of the xenon light source, along with the use of specially calibrated AirMass filters, closely simulates the sun’s true spectral distribution in various conditions on Earth.
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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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Modular Power System 6kW Mainframe, 200/208 VAC
MP4301A
The MP4300 Series is a family of 1kW Solar Array Simulators (SAS) modular systems in a 2U footprint. The 6kW mainframes can accommodate up to 6 slots of SAS modules achieving excellent power and channel density. Additionally, the SAS series provides a way to simulate solar panels in a spacecraft while offering the highest density, efficient and reliable operation, minimizing rack space to provide the best total cost of ownership.
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Solar Simulator
XES Series
The recent environmental issues have been drawing more attention over the past few years. So "solar simulators" have come into the public eye much more often. They are mainly used for the evaluation of solar cells as well as for other types of tests where sunlight needs to be recreated.The continuous light of xenon lamp, the most faithful reproduction of sunlight, is applied in our highly accurate solar simulator, which has been widely sold across Japan and neighboring countries."SAN-EI" offer a wide range of solar-related optical technologies and can guarantee to satisfy the needs and request of customers.
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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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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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Reference Cells
Reference cell is used for measuring and setting the intensity of solar simulators for one sun (or other user desired) intensity condition. They are also used to calibrate the IV Measurement system photo-detector intensity to match the measured ISC to calibrated ISC.