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    • 3 GHz RF Analog Signal Generator
    • Extremely fast switching speed of <100μs
    • AM, FM, PM Sweep & Pulse Modulation
    • Extra small, compact module platform
    • Exceptionally Low Phase Noise of -145dBc/Hz @100MHz and 10@kHz offset
    • SPI and micro-USB integrated interfaces
    • Remotely programmable via MATLAB, Python, LabVIEW
    • and other software programming environments.
    • Flixible modular platform for OEM and custom requirements
    • and applications, to satisfy specific customer demands.
    • Multi instrument synchronization capability

     

  • Key Performance Capabilities:

    • Up to 900 watts RMS power output (7136 model)
    • Small signal response up to 400 kHz
    • User-adjustable precision DC offset
    • User-adjustable current limit: 1A to 25A
    • 4-quadrant operation
    • AC/DC coupled

     

    • Proven member of a modular Power Module family, more than 800 units are in service
    • Precision-regulated Bi-Polar output provides up to +12 to -12 Amps for Magnet loads.
    • Smooth operation through zero amps output current, no “Crossover” problems.
    • All 2510 MCOR12 Power Modules are identical and interchangeable.
    • Has two high-precision measurements of output current;
      • one is used to close the regulation control loop,
      • provides an independent monitoring signal to the Crate Interface Card.
    • Fault sensing circuitry in the module sets a Fault Latch which inhibits the output.
    • A (momentary) Sync input signal inhibits MOSFET switching when it is active (high);
      • this eliminate switching noise .
      • reduces power line noise during sensitive analog signal measurements.

     

    • Proven member of a modular Power Module family, more than 800 units are in service
    • Precision-regulated Bi-Polar output provides up to +30 to -30 Amps for Magnet loads.
    • Smooth operation through zero amps output current, no “Crossover” problems.
    • All 2510R30 MCOR30 Power Modules are identical and interchangeable
      • Programming Card is plugged into the replacement module.
    • Each channel has a critically-damped, LC noise filter with a cut-off frequency of about 8 kHz.
    • A 16-pin front panel diagnostics connector taps onto major circuit nodes which enables quick “inthe-crate” fault evaluation

     

  • Enabling single-contact high-current/high-voltage test

    • Enables coaxial measurements up to 10,000 V and 300 A pulsed (600 A in a parallel configuration) with a single touchdown
    • Even distribution of high current with innovative multi-fingertip design
    • Compatible with Tesla 200/300 mm power device characterization system
    • Reduced measurement time by testing both high-voltage and high-current conditions with a single touchdown
    • Accurate characterization of a wide range of pad sizes and test currents, with minimum pad damage and contact resistance
    • Safe, reliable and repeatable high-current/voltage measurements over a wide temperature range (from -55°C to +300°C)

     

  • The Hi-Techniques FreeStyle series of Data Acquisition Systems is a versatile, capable solution for mobile and rugged data acquisition applications. FreeStyle was designed from the ground up to make data acquisition as fast and as easy as possible. Just grab your FreeStyle and your computer and head out to the test site.

    Flexibility by Design

     

  • The Hi-Techniques Synergy series of Data Acquisition Systems integrates superior transient and streaming capability with optimized time and frequency domain performance. Add in universal signal conditioning, real-time math and you’ll see why Synergy is the ultimate Data Acquisition System for all of your mechanical, electrical, acoustic, shock and vibration measurements.

     

  • The Hi-Techniques Synergy series of Data Acquisition Systems integrates superior transient and streaming capability with optimized time and frequency domain performance. Add in universal signal conditioning, real-time math and you’ll see why Synergy is the ultimate Data Acquisition System for all of your mechanical, electrical, acoustic, shock and vibration measurements.

     

    • 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

     

    • 12GHz RF analog signal generator
    • AM, FM, PM, Sweep & Pulse Modulation
    • Exceptionally Low Phase Noise of -145dBc/Hz @100MHz and 10@kHz offset
    • Field ready, with 10” touch screen suited for day and night use and 2 hour battery operation
    • Remotely programmable via MATLAB, Python, LabVIEW and other software programming environments.
    • Removable uSD card for instrument security

     

    • 6GHz RF analog signal generator
    • AM, FM, PM, Sweep & Pulse Modulation
    • Exceptionally Low Phase Noise of -145dBc/Hz @100MHz and 10@kHz offset
    • Field ready, with 10” touch screen suited for day and night use and 2 hour battery operation
    • Remotely programmable via MATLAB, Python, LabVIEW and other software programming environments.
    • Removable uSD card for instrument security

     

  • AC, DC, AC+DC, Single and Three – Phase -Models Including Cabinets

    Rated Power 60,000 (vA),  Output Power 21,000(w)  Output form  1,2,3Ø, Output Volt-Max 300(L-N)/425 (VAC/VDC)(1), Output AMPS/PHS 166.7 / 83.3 (AAC/ADC)(2), Input Power Form (3) 3 Ø, Panel Height (4) 27 (U) and Weight 527/240 (LBS./KG).