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    • Frequency Range 10 Hz – 1GHz, 3GHz or 6GHz
    • 4000x faster in your pre-certifcation work
    • compact design and +12V power supply
    • 162.5 MHz full gapless real-time analysis bandwidth
    • Weighted Real-time Spectrogram

     

    • requency Range from DC up to 40 GHz
    • 685 MHz Real-time analysis bandwidth
    • Dynamic range of more than 100 dB
    • Multi-GHz real-time scanning up to 40 GHz
    • all 6dB RBWs acc. to CISPR, MIL, DO, ANSI, FCC
    • fastest super-heterodyn receiver on the planet

     

    • provides precision bi-polar output currents
    • minimal zero-cross over distortion
    • 19” rack mounted 6U x 220 mm crate
    • crate has 17 slots; 16 (slot 0 thru 15)
    • connectors
      • J1 (ExtIntlk),
      • J2 (CrateOK),
      • J3 (Input Reference Voltages),
      • J4 (Output Monitors), and
      • J9 (Bitbus)

     

    • compact and completely modular design
    • high effectiveness in all operation modes, few requirements on building infrastructure
    • ability to use an existing liquid cooling system directly
    • optional matched liquid-to-air cooling unit TC.LAE available
    • possibility of upgrading to systems of up to 1 MVA
    • high level of system dynamics, ≤ 5 kHz modulation bandwidth
    • non-restrictive capability of refeeding in the Q4 operation mode
    • possibility of operating as an autonomous 4-Q and 3-phase quasi-analogue amplifier
    • possibility of “Hardware-in-the loop”-operation (HIL mode)
    • user friendly application software with pre-configured test patterns
    • possibility of integrating into a complete SAS simulation and test system
    • galvanic isolation available as an option without derating the simulator port data

     

  • Bidirectional (source & sink), Regenerative 0…65VDC to 0…1500VDC, 20kW up to 1.5 MW 

    • cell system nominal voltage and type of chemistry
    • number of cells
    • internal resistance and associated parameters
    • cell temperature progression
    • allowed current
    • charge efficiency
    • energy computing and management facilities
    • time-dependent and functional dependent parameters

     

    • Setting of operational parameters for each output phase: (frequency, phase, voltage, basic waveform)
    • Defining functional blocks enabling a wide variety of modulation capabilities
    • Defining, editing and storing of even complex and long test sequences
    • Preview window for output voltage waveforms
    • LC load mode, definition of complex equivalent circuits
    • Hand drawing curve tool and FOURIER tool (harmonics synthesis)
    • TC.ACS provides an extensive safety concept in order to detect unwanted or off-limit conditions very quickly and to initiate controlled limiting or even a shutdown.

     

    • compact and completely modular design
    • high effectiveness in all operation modes, few requirements on building infrastructure
    • ability to use an existing liquid cooling system directly
    • optional matched liquid-to-air cooling unit TC.LAE available
    • possibility of upgrading to systems of up to 1 MVA
    • high level of system dynamics, ≤ 5 kHz modulation bandwidth
    • non-restrictive capability of refeeding in the Q4 operation mode
    • possibility of operating as an autonomous 4-Q and 3-phase quasi-analogue amplifier
    • possibility of “Hardware-in-the loop”-operation (HIL mode)
    • user friendly application software with pre-configured test patterns
    • possibility of integrating into a complete SAS simulation and test system
    • galvanic isolation available as an option without derating the simulator port data

     

  • Photovoltaic applications, the quality and technical data of the AC-DC converter is of primary interest. Solar installations are intended for a lifetime of roughly 20 years, therefore even fractions of a percent in efficiency will represent significant amounts of energy losses.

  • Programmable Grid-tie Sink High-Power DC Supply,

  • Programmable Grid-tie Source & Sink Technology
    Wide range of power 20 to 512 kW, expandable up to several MW
    DC output voltages from 0-65 VDC up to 0-1500 VDC, +/- 40 A up to +/- 600 A