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Solar
energy of the sun's rays.
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Solar Power Meters/Electromagnetic Field &Radiation Tester
This meter is a precision instrument for measuring light intensity. It is used in solar radiation measurement, solar research, physical and optical experiments, meteorology, and agriculture. I can also be used to measure glass ligh intensity to verify glass properties. For example: Measurement of light intensity through vehicle windows.
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In-Line Light I-V Testing for Solar Cells
FCT-750
In-line, light I-V and Suns-Voc measurements in a single flash at 2400 units per hour. Capability to accurately measure high-efficiency conventional or backside-contact solar cells.
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Solar Array Simulator DC Power Supply
62000H-S
Chroma Systems Solutions, Inc.
Solar Array Simulator DC Power Supplies by Chroma provide programmable simulation of Voc (open circuit voltage) up to 1800V and Isc (short circuit current) up to 30A. The 62000S-H series provides an industry leading power density in a small 3U high package. The Solar Array Simulator is highly stable and has a fast transient response design, which are both advantages to MPPT performance evaluation on PV inverter devices.
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Modular Solar Array Simulator Mainframe, 1200W
E4360A
The Keysight 1200W, E4360A Modular Solar Array Simulator is a 2U high, 2-slot mainframe that accepts up to 2 E4360 series modules. Modules are ordered separately. It offers LAN, USB, and GPIB interfaces standard.
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Solar Array IV Curve Simulation Softpanel
Chroma Systems Solutions, Inc.
Easily program the I-V curve of the Solar Array Simulator with this test software as well as the I-V and P-V curves for real-time testing. See both dynamic and static MPPT efficiency and even simulate the IV Curve with shadows. The real world weather simulation function allows the user to simulate the irradiation intensity and temperature level from early morning to nightfall.
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Standalone Terrestrial Solar Array Photovoltaic Simulator
TerraSAS (ETS Series)
AMETEK Programmable Power, Inc.
For microgrids, energy storage, and inverter test applications, the TerraSAS™ series photovoltaic (PV) simulators are specifically designed to emulate the dynamic electrical behavior of a terrestrial PV solar array. They offer low output capacitance and high closed loop bandwidth to keep up with the advanced Maximum Power Point Tracking (MPPT) algorithms used in today’s grid-tied inverters. The Embedded TerraSAS (ETS) is a high performance solution in a small form factor that combines an agile power supply with an innovative I-V curve generator in a single standalone unit.
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Class AAA Steady State Solar Simulator
King Design Industrial Co., Ltd.
*Lamp average life 25,000 hours (We offer 1 year warranty including lamps)!*Spectrum Mis-match Class A, without filter! *Irradiance almost no decay within 10,000 hours!*Spectrum maintains stable during power adjustment!
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Solar Cell Backside Printing Surface Inspector
7213-AD
Defects causes by back-side printing process of C-Si PV cells will also cause performance, reliability impact. Among all the back-side printing defects, bumps caused by improper printing may cause high cell breakage rate during lamination of c-Si module process.
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DC Safety Inspection Device For Solar Panels
“DC Fault Tester”
Identifies defect position instantly- contributes to saving inspection time
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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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Advanced Solar Charge Controller with 48V/96V/120V/192VV/240V/360V
SDC360V-100A
Zhejiang Sandi Electric Co., Ltd
The solar charge controller is the intelligent devicewith integration of controlling . It has good running performance with LCD display and convenient operation. Also have multi protection functions such as over-charge, over-discharge protection, and pole-confusion protection for storage battery. The controller is adopted PWM charging mode. It has day and night two type working mode with high reliable and safe operation, high efficiency, long service life functions.Technical Features:The solar charge controller adopts industrial-grade chips to ensure the stable feature of controllerExcellent EMC designHigh efficient PWM charging technology which has three charging stages (buck charging stage, equalize charging stage and float charging stage), and improves battery storage efficiency and charging efficiency.Advanced battery activation technology which increases battery lifetime 30% at least and improves the system performanceThe 120a solar charge controller adopts imported IGBT power module or MOSFET as electronic switch which can improve the stable performance of controller. There aren’t any mechanical switches in the systemLCD will display the system status and working parametersParameters setting flexiblyUsers can parallel connect lots of the controller is a systemFully enclosed duct design and high speed fan for cooling making the controller working in a variety of harsh environmentsDC output function (Optional)Standard Modbus protocol for RS-485 communication to extend the communication distance (Optional)The 120a solar charge controller will alarm when the system status is abnormalNew SOC method displays battery power accuratelyWith power generation statistics function to facilitate the view of power generation of daily, month and totalThere is temperature compensation function which will compensate the temperature according to different battery typeThe 120a solar charge controller adopts graphical dot-matrix LCD and 4 buttons as HMI for full menu and easy operationRTC time functionWall mounting type is easy for installation
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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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Monitoring Solar Panel Strings, DC 30A, Φ6mm
CTF-6DC
MULTI MEASURING INSTRUMENTS Co., Ltd.
・Compact, Space-saving, Low Cost DC Current Sensors.・Split-core type, easy to apply to existing circuit.・Easy to use by unipolar +5V power supply.・High speed responsibility – less than 10μsec. 0 rated primary current.・Suitable for monitoring solar panel strings.
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Monitoring Solar Panel Strings, DC 30A, Φ10mm
CTF-30-10DC
MULTI MEASURING INSTRUMENTS Co., Ltd.
・Compact, Space-saving, Low Cost DC Current Sensors.・Split-core type, easy to apply to existing circuit.・Easy to use by unipolar +5V power supply.・High speed responsibility – less than 10μsec. 0 rated primary current.・Suitable for monitoring solar panel strings.
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Monitoring Solar Panel Strings, DC 30A, Φ10mm
CTF-60-10DC
MULTI MEASURING INSTRUMENTS Co., Ltd.
・Compact, Space-saving, Low Cost DC Current Sensors.・Split-core type, easy to apply to existing circuit.・Easy to use by unipolar +5V power supply.・High speed responsibility – less than 10μsec. 0 rated primary current.・Suitable for monitoring solar panel strings.
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Solar Cell Frontside Printing and Surface Defect Inspector
7212-HS
Chroma 7212-HS is a linescan AOI inspector used to provide superior PV cells defect inspection. As the fine grid printing process goes even faster than before, a reliable printing quality inspector is inevitable to reduce the cost during the PV cells metallization.
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Non-contact Inline P/N Checker Module For Solar Wafer
PN-100BI
*Principle: Photovoltaic effect with the laser diode*Suitable for production line and tranceportation system*Connect to host PC by LAN to send measurement command and data
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Solar Array Simulator Auto-Ranging Module 0-160V, 0-10A, 1kW
MP4361A
The Keysight MP4361A is a 1000 W solar array simulator DC power module that simulates the output characteristics of a solar array. The MP4361A is primarily a current source with very low output capacitance. It offers fast I-V curve changes allowing you to accurately simulate the output of different solar arrays under various environmental conditions (ex. temperature, age, eclipse, spin, etc.).
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Solar Array Simulator DC Module, 65V, 8.5A, 510W
E4361A
The Keysight E4361A is a 510W solar array simulator DC power module that simulates the output characteristics of a solar array. The E4361A is primarily a current source with very low output capacitance. It offers fast I-V curve changes allowing you to accurately simulate the output of different solar arrays under various environmental conditions (ex. temperature, age, eclipse, spin etc.). The E4360 gives you the flexibility to operate it in two ways:
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Solar Array Simulator DC Module, 130V, 5A, 600W
E4362A
The Keysight E4362A is a 600W solar array simulator DC power module that simulates the output characteristics of a solar array. The E4362A is primarily a current source with very low output capacitance. It offers fast I-V curve changes allowing you to accurately simulate the output of different solar arrays under various environmental conditions (ex. temperature, age, eclipse, spin etc.). The E4360 gives you the flexibility to operate it in two ways:
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Single Long Pulse Solar Simulator & I-V Test System
TriSOL SLPSS
The OAI Test System for HIGH EFFICIENCY SOLAR CELLS overcomes the limitations of flash testing by providing a highly optimized pulse width and voltage sweep rate to match the cell’s dielectric response speed. As a result, the system produces extremely accurate measurements of solar cell efficiency leading to increased profitability.
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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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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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Testing for Si Solar Cells Using High Performance CCD
EL Imaging Tester
EL Testing for Si Solar Cells using High Performance CCD. The determination of luminescence (photo emissions) in solar cells is an important characterization tool. Typical solar cells often have defects which limit the efficiency or lifetime of a cell. Many of these defects are visualized with Luminescence Imaging. By using this technique, the manufacturing process can be optimized to produce better cells. Luminescence Imaging takes advantage of the radiative inter-band recombination of excited charge carriers in solar cells. The emitted photons can be captured with a sensitive CCD camera to obtain an image of the distribution of the radiative recombination in the cell. This distribution is determined by the local excitation level, allowing the detection of electrical losses, thus mapping the diffusion length of minority carriers as the emitted light is low intensity and in the near infra-red range, the CCD camera has a high sensitivity wavelength from 900 to 1100 nm with little thermal noise. This CCD camera provides excellent resolution of 1024 x 1024 pixels with a large 1μm pixel size, multi-megahertz readout speed, and robust USB 2.0 connectivity. The EL CCD Camera is the ultimate high-performance CCD camera for electroluminescence and photoluminescence imaging for Photovoltaic (PV) Cells and Modules. This camera combines low noise electronics and optimal sensitivity in NIR.
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Xenon Long Pulse Solar Simulator Three Target Sizes
Complies with IEC60904 Class A solar simulation standards.Up to 100ms of effective irradiated time is achieved. Through our proprietary filter technology, spectral concordance conforms to IEC / JIS Class A standards.Three systems provide a wide selection to meet your panel size, floor space, and performance requirements.
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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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SolarIV Series Solar Cell Current Voltage Measurement System
SlarIV
SolarIV IntroductionOne of the key measurements needed for photovoltaic devices in the measurement of their I-V characteristics. Through measuring the I-V curves the user can determine physical performances of devices such as photo-electric conversion efficiency, fill factors and so on. Such data is important for reliable work in research and quality inspection. ZOLIX supply the SolarIV system and the most perfect, professional technical support.
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Inline OEM High Resolution Thickness & Resistivity Module for PV / Solar Sorters
MX 152
To allow three thickness scans during belt transport at different wafer sizes, two measuring bars, one from top and one from bottom, hold 3 sensors each.
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Lithium battery 128kWh Lifepo4 Battery pack 280Ah with BMS for Solar Energy Storage System
SPVLI-128kWh
Zhejiang Sandi Electric Co., Ltd
ESS lithium battery system is composed of lithium battery modules, BMS system, PV charge controller, AC/DC Charger, central control unit CCU, temperature detector, integrated structure and other parts; the solar panels in the system are battery storage and power for output; BMS module completes the detection and control of voltage, current, temperature, SOC, SOH and charging and discharging related parameters of power battery pack; PV controller and inverter realize bidirectional AC/DC function to meet the charging and discharging conversion demand of power battery pack; each detector is used to monitor the ambient temperature in real time to ensure the safety of the system.1. Standardized components, modular architecture, easy for expansion2. High energy density, small footprint, short construction period, strong environmental adaptability3. Battery module within the layered stack design, with more than 10 years of long design life 4. Long Cycle Life LiFePO4 Lithium ion Battery system from 20KWH—500KWH optional5. The use of international advanced Mitsubishi IPM module and intelligent power module, with high power fast adjustment capability6. BMS battery management system with SOC automatic calibration and high current active balance function, combined with the perfect operation control and management strategies to achieve accurate and efficient management7. The combination of software and hardware protection, with alarm protection and automatic diagnostic functions, improve the protection strategy to ensure safe and efficient operation of the system8. Product communicates with the monitoring platform in real time through RS232, CAN communication interface, and reports various records in time to ensure real-time monitoring of the battery pack of the monitoring platform9. PV charge controller adopts three charging stages (buck charging, equalize charging and float charging) which can maximize the utilization of PV modules and batteries10. Colorful LCD display all module working information and statusPerformance characteristics:Small size and light weight, Maintenance-free;Environmental protection and pollution-free materials, no heavy;Accurately estimate the state of charge of the battery pack, that is, the remaining power of the battery, to ensure that the power of the battery pack is maintained within a reasonable range;Built-in BMS management system with comprehensive protection and monitoring control functions;5" LCD screen display, easy to operate, can check the temperature, voltage, working status, discharge current, dynamic and static SOC algorithm of a single cell, local display of alarm info, alarm level distinction, accurate positioning of abnormal cells;Main control MCU can be centrally controlled and manage peripheral settings (AC charging module, inverter module, solar charging module) to adjust the charging current and voltage of peripheral devices according to the battery charging curve, making the system more reliable;BMS battery management system, with SOC automatic calibration and high current passive balance function, combined with perfect operation control and management strategy, to achieve accurate and efficient management;EMS energy management system, BMS with solar controller/AC charger, inverter centrally manages charge and discharge, effectively controls the charge and discharge current within the cell usage conditions, protects the cell and extend its service life;SpecificationLithium battery 128kWh Lifepo4 Battery pack 280Ah with BMS for Solar Energy Storage SystemModel SPVLI-128KWHType of cell LiFePO4 (Lithium iron phosphate)Battery cell configuration 3.2V 280AH 144PCSRated capacity (KWH) 128kwhNominal capacity (AH) 280AHNominal voltage (VDC) 460VOperating voltage range (VDC) 375-540VRecommended Charge Voltage (VDC) 504VRecommended discharge cutoff voltage (VDC) 382VRecommended charge current(A) 140AMax Charge Current (A) 280ARecommended discharge current (A) 140AMax Discharge Current (A) 280ACharge temp range 1~45℃Discharge temp range -10~45℃MPPT Solar Charge Controller InputMaximum. Input voltage of solar array(Vdc) <900VdcBattery system voltage 460VDCMaximum power of solar array 64KWMaximum charge current(A) 140AEqualization charging voltage (Vdc) 511.2VEqualize charging recovery voltage (Vdc) 486.72VOver voltage disconnect voltage (Vdc) 525.6VOver voltage recovery (Vdc) 518.4VWorking temperature -20~50℃Protection level IP20Communication interface CAN2.0, BMSDisplay 5" LCD, EnglishCooling system Fan coolingWorking Altitude (m) ≤3000mReference Weight (Kg) 1530KgReference size (W*D*H mm) 1200*1120*1950mm
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1500V Multifunction I-V Curve Tracer
SOLAR I-Ve
SOLAR I-Ve allows both testing a single-phase (three-phase with optional MPP300) photovoltaic system and verifying I-V curve. Thanks to remote unit SOLAR02, it is possible to test the system complying with the requirement of simultaneity as provided for by the reference standard. SOLAR02 is a datalogger which, synchronized with SOLAR I-Ve, acquires the data relevant to irradiation and temperature while tests carried out by SOLAR I-Ve are carried out.