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ITECH SAS1000 solar array simulation software

Key Features

  • Automatic wide range output, the voltage up to 1000V
  • Power up to 100KW
  • solar array simulate I-V function (Built-in I-V curve mathematical formula)
  • Simulate the output characteristics of various solar cell (monocrystalline silicon cell, polysilicon cell, thin m cell) (Fill Factor)
  • Simulate I-V curve under different temperature and irradiation
  • Simulate I-V curve for solar panel under shadow
  • Static & dynamic MPPT efficiency test
  • Built-in EN50530 / Sandia / NB/T32004 / CGC/GF004 / CGC/GF035 test program, and generate reports
  • Graphical software interface, real-time test and display MPPT state of PV inverter
  • Auto program control 100 I-V curves via Voc, Isc, FF, Pm and other parameter points
  • 100 * 128 points curves and 4096 points precise programming control
  • Support output impedance setting function
  • Support various mode edge independent set, adjustable rising and falling time
  • Two-way current seamless switching, suitable for fast cell charge and discharge
  • Built-in DIN 40839 & ISO-16750-2
  • Standard USB/RS232/GPIB interface

Before installing ITECH software!

Documents and Software Solutions:

Product Number:

IT-SAS1000

Manufacturer:

ITECH

Quantity:

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ITECH latest SAS1000 solar array simulation software, combined with high performance high power DC power supply, can accurately simulate solar array I-V curve. It has the characteristics of accurate measurement, high stability and fast response speed, etc. With the built-in EN50530 / Sandia / NB/T32004 / CGC/GF004 / CGC/GF035 SAS module, the solar array simulator enables easy programming on test regulations, materials, Vmp, Pmp parameters, so as to simulate I-V curve characteristic output and generate reports. These benefit much in test of the static & dynamic maximum power tracking performance of photovoltaic inverters.

ITECH SAS1000 solar array simulation software also provide Shadow and Table mode. The shadow mode is provided to allow users to edit any shielded I-V curves for dynamic shadow. Under Table mode, the user can select 4096 points matrix, or store 100 I-V curves of different temperature and irradiation in the memory, and can set the implementation sequence and time of each curve, to test the long-term MPPT performance evaluation under different climates. SAS1000M is also available for multi-channel MPPT testing. The solar panel output simulation under the 24-hour real environmental parameters is also available. As a solar simulator, our power supply also provides supports for micro-grid, distributed photovoltaic etc power system simulation and core equipments testing.

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ITECH latest SAS1000 solar array simulation software, combined with high performance high power DC power supply, can accurately simulate solar array I-V curve. It has the characteristics of accurate measurement, high stability and fast response speed, etc. With the built-in EN50530 / Sandia / NB/T32004 / CGC/GF004 / CGC/GF035 SAS module, the solar array simulator enables easy programming on test regulations, materials, Vmp, Pmp parameters, so as to simulate I-V curve characteristic output and generate reports. These benefit much in test of the static & dynamic maximum power tracking performance of photovoltaic inverters.

ITECH SAS1000 solar array simulation software also provide Shadow and Table mode. The shadow mode is provided to allow users to edit any shielded I-V curves for dynamic shadow. Under Table mode, the user can select 4096 points matrix, or store 100 I-V curves of different temperature and irradiation in the memory, and can set the implementation sequence and time of each curve, to test the long-term MPPT performance evaluation under different climates. SAS1000M is also available for multi-channel MPPT testing. The solar panel output simulation under the 24-hour real environmental parameters is also available. As a solar simulator, our power supply also provides supports for micro-grid, distributed photovoltaic etc power system simulation and core equipments testing.

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