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  • The AZX Series (Regenerative AC / DC Power Source) is a family of high power, single, split and three phase, AC, DC and AC+DC output capable Power Sources with full energy recovery to the AC mains when sinking power from the equipment under test. Available models range from 30 kVA to 440 kVA. Using a modern color touch screen based user interface for ease of use, the AZX Series is cost effective and fully programmable for both basic frequency conversion and advanced AC power line or DC power disturbance test applications requiring up to 1000 Hz fundamental frequency.

    The energy recovery capability allows both sourcing and sinking of current and power up to 100% of rated power. Adding the Load Option (Option L) adds full electronic regenerative AC & DC Load programming capability to the AZX.

     

  • The new G5.RSS series features

    • High control dynamics
    • An exceptional accuracy
    • A nominal output voltage of up to 3000 VDC
    • A wide current-voltage range with an auto-ranging factor of 3.
    • You get the best value for your investment.

     

  • Key Performance Capabilities:

    • Slew rates up to 60 V/µsec.
    • Up to 240A DC at +50VDC or –50VDC (4301-240 configuration).
    • Can provide pulses of up to 800 amps at voltages of up to ±100V (4301-240 configuration).
    • Adjustable compensation allows the system to maintain a 50V/2 µsec rise-time over a wide range of current outputs.

     

  • Key Performance Capabilities:

    • Bandwidth: DC to 50 kHz
    • Voltage: 0 to 250 VRMS; 0 to 350 VDC
    • Current: 100 to 500 ARMS
    • Distortion: 0.1%
    • Power: 4 kW to 20 kW*Power levels up to 5X rated power when driving reactive loads
    • High power efficiency and density

    *Models available with output from 4 kW to 20 kW (capable of up to 125 kVA).

     

  • Key Performance Capabilities:

    • 4-Quadrant – Can source and sink current
    • ±80V – DC supply for 12V to 48V systems; meets 80V surge requirements
    • 300 kHz Sine – DC ripple tests for all major standards
    • 3µs Rise Time – Exceeds surge and dropout slew rate requirements
    • 3mΩ DC Source Impedance – Out-performs ISO 7637-2 requirements
    • Supports ground reference and supply offset testing required for ISO 16750-2 Sect. 4.8 and other similar standards

     

  • 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

     

  • 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

     

  • High‐Resolution Portable TDR with Frequency‐Domain Analysis Tools

    Ideal for testing all types of microwave/RF and digital cables and connectors

    • Rugged portable TDR with S‐parameter tools
    • Resolves connector detail (<1 cm)
    • 75 μm (0.003 in.) cursor resolution
    • 16‐bit digital sampling at up to 250 KSPS
    • Stores thousands of TDR traces
    • USB host/client, 10/100 Ethernet
    • Lightweight, bright color screen
    • Internet streaming and remote control

     

  • Simplify Aging Aircraft Wiring Maintenance Using High-Resolution MOHR CT100 Series TDR Cable Analyzers

    • Designed for use with the high-resolution CT100 TDR Cable Tester
    • Ideal for TDR testing MIL-STD-1553B data bus aerospace cable assemblies
    • Detect and localize open, short, and partial cable and connector faults on the main bus and stubs
    • Detects cable and connector faults through 3+ transformer couplers
    • Simplifies troubleshooting of aging aircraft MIL-STD-1553 cable assemblies

     

    • 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

     

  • Phase -Models Kitted for installation into End User’s Cabinet  and Phase -Models including Cabinet and Emergency Power off  (EPO)1

     

  • 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).

     

  • 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).