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Power Supplies and Power Test

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  • ✔ Available in 250 MHz & 350 MHz models
    ✔ 2, 4, and 8-channel options for multi-signal generation
    ✔ 16-bit vertical resolution for precise signal emulation
    ✔ Max sinewave frequency of 250 MHz & 350 MHz
    ✔ Wave Sequencing for complex test scenarios
    ✔ Mixed Signal Generation: Supports 8, 16, or 32 synchronized digital channels
    ✔ True Arbitrary Mode & Direct Digital Synthesis (DDS)
    ✔ Wideband output voltage window: ±24V (50Ω into High Impedance)
    ✔ Embedded noise simulation & jitter analysis
    ✔ Up to 1 Gpts of waveform memory per channel
    ✔ Seamless integration with LabVIEW™, MATLAB™, Python, and .NET

     

    • Channel Configurations: Available in 2, 4, and 8-channel models.
    • High Sampling Rate: Up to 12.32 GS/s in RF mode for high-frequency applications.
    • Superior Resolution: 16-bit vertical resolution for ultra-precise signal generation.
    • Waveform Memory: 4 Gpts per channel, ensuring long-duration complex waveform storage.
    • High Output Voltage: Up to 5 Vpp output voltage with ±2.5 V baseline offset (50 Ohm).

     

    • 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

     

  • with analogue and digital control, USB, RS232, LAN (LXI) and GPIB

    • Versatile solution for direct testing of dc power sources and PFCs
    • Constant current, resistance, conductance and power modes
    • Wide voltage and current range, 10 to 500V and 0 to 16A
    • 400 watts continuous dissipation at 28°C (360W at 40°C)
    • High resolution and accuracy for level setting
    • Built-in transient generator with variable slew
    • Current monitor output for waveform viewing
    • Variable drop-out voltage for battery testing
    • High resolution backlit graphic LCD with soft key control
    • Analogue remote control of levels and TTL control of on/off and transient switching
    • Front and rear input terminals
    • Load inputs rated to CAT II (300V)
    • Full bus control via USB, RS232, GPIB and LXI compliant LAN interfaces

     

  • with analogue and digital control, USB, RS232, LAN (LXI) and GPIB

    • Versatile solution for direct testing of dc power sources and PFCs
    • Constant current, resistance, conductance and power modes
    • Wide voltage and current range, 10 to 500V and 0 to 16A
    • 400 watts continuous dissipation at 28°C (360W at 40°C)
    • High resolution and accuracy for level setting
    • Built-in transient generator with variable slew
    • Current monitor output for waveform viewing
    • Variable drop-out voltage for battery testing
    • High resolution backlit graphic LCD with soft key control
    • Analogue remote control of levels and TTL control of on/off and transient switching
    • Front and rear input terminals
    • Load inputs rated to CAT II (300V)
    • Full bus control via USB, RS232, GPIB and LXI compliant LAN interfaces

     

    • Multiple ranges on each output for wider voltage/current choice
    • Four independent 105W full performance outputs
    • Instant individual on/off control plus sequencable multi on/off
    • Simultaneous display of meters and settings for all outputs
    • Up to 250 settings memories for individual or multiple outputs
    • Instant access to voltage/current setting for any output
    • USB, RS-232, LXI compliant LAN, and GPIB* interfaces (P versions)
    • USB, RS-232, LXI compliant LAN, and GPIB* interfaces (P versions)
      Duplicate power and sense terminals at rear (P versions)

     

    • 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)

     

    • 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

     


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