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  • Precision, performance, and scalability packed into a high-efficiency DC power solution. Ideal for demanding test environments and energy recovery.

    Key Features:

    • Output voltage: 0–240 V DC
    • Scalable from 27 kW to 2000+ kW
    • Modular build: up to 44 connected units
    • Full sink/source operation with regeneration
    • Ultra-fast switching: rise/fall time <250 µs
    • Accuracy: <0.02% FS with high-res current range
    • Auto-ranging capability (factor of 3)
    • Control modes: CV, CC, CP, CR, Ri-Sim
    • Seamless waveform generation via AnyWave + WaveMaster
    • Optional HMI touchscreen and CAN interface

     

  • High-speed, modular AC power supply with precision control and full regeneration. Perfect for grid simulation, HIL testing, and EMC validation.

    Key Features:

    • Power scalable from 30 kVA to 1050+ kVA
    • Voltage range: 0–305 V AC with 4 active outputs
    • True 4-quadrant regenerative design for energy efficiency
    • Ultra-fast switching time (≤200 µs response)
    • High current accuracy <0.02% full scale
    • Full digital control modes: CV, CC, CP, CR, Ri-Sim
    • Programmable grid simulator, AC amplifier, or electronic RLC load
    • Compatible with AnyWave & WaveMaster for custom waveform control
    • Modular 19” rack-mounted units with low heat and noise output
    • Ideal for automotive, aerospace, HIL, EMC, and renewable power testing
  • A precision-driven, regenerative DC power supply ideal for high-demand testing environments across industries.

    Key Features:

    • Voltage range: 0 to 320 V DC
    • Power output: 36 to 2000+ kW
    • Modular and scalable up to 44 units
    • Regenerative sink and source operation
    • Voltage rise/fall time <250 µs
    • Accuracy <0.02% FS with high-res current range
    • Auto-ranging factor of 3
    • Full digital control: CV, CC, CP, CR, Ri-Sim
    • Supports AnyWave + WaveMaster waveform control
    • Optional touchscreen HMI and CAN interface
  • Advanced regenerative DC power supply with full sink/source capability, ultra-fast dynamics, and exceptional precision for demanding applications.

    Key Features:

    • Scalable from 9 kW to 2000+ kW
    • Precise voltage range: 0–60 V DC
    • Sink/source mode with full power regeneration
    • Exceptional current accuracy <0.02% full scale
    • Fast voltage rise/fall times under 250 µs
    • Full digital control: CV, CC, CP, CR, Ri-Sim
    • Modular setup: parallel, series, or mixed mode
    • Auto-ranging factor of 3 for wide flexibility
    • Supports CAN, API, and optional HMI touchscreen
    • Seamless waveform generation via AnyWave + WaveMaster
    • Ideal for automotive, aerospace, HIL, and EMC testing
  • High-efficiency regenerative DC power supply with scalable architecture and ultra-fast switching. Ideal for demanding test environments.

    Key Features:

    • Voltage range: 0–80 V DC
    • Power scalable from 9 kW to 2000+ kW
    • Modular: Up to 44 units (parallel, series, combined)
    • Full sink/source mode with energy recovery
    • Voltage rise/fall time <250 µs
    • Current accuracy <0.02% FS
    • Auto-ranging with a factor of 3
    • Digital control: CV, CC, CP, CR, Ri-Sim
    • User-friendly software and HMI options
    • AnyWave + WaveMaster for waveform control
    • CAN, API, and high-speed bus support
  • A modular, scalable, and intelligent matrix switching system designed for precision in multi-channel test applications.

    Key Features:

    • Modular design with up to 4 plugin switch cards
    • 6×32 channel matrix, up to 2A per channel
    • Remote control via TCP/IP interface
    • Integrated diagnostics & safety monitoring
    • Compatible with LabView, Python, C++, CANoe, and more
    • Auto-cooling with smart fan activation
    • Rack-mountable 4HU chassis with high build quality
    • Expandable switching lines with CU-600 matrix
    • Unlimited waveform size with dual waveform output
    • Protocol generation and oscilloscope waveform simulation

     

  • The complete turnkey solution for testing high-voltage transient emissions and immunity under ISO 7637-4 standards.

    Key Features:

    • Full ISO 7637-4 compliance
    • Pulse A: Switching noise simulation (100 kHz–10 MHz)
    • Pulse B: Low-frequency sinusoidal testing (3 kHz–300 kHz)
    • 75W high-power RF amplifier for clean signal output
    • Configurable burst generation (1–1000 cycles)
    • Galvanically isolated digital I/O and EUT interlock
    • Scalable and modular hardware for custom test setups
    • Integrated overvoltage and transient protection
    • WaveMaster software with graphical waveform creation
    • Compatible with LabView, Python, C++, and more

     

  • The CAR AWG 6000 is a high-performance, 4-quadrant battery simulator designed for EMC testing on vehicle supply lines. This powerful unit delivers precise voltage variations up to ±70V and 200A, compliant with international automotive standards.

    Key Features:

    • 4-quadrant voltage/current amplifier
    • Battery simulation up to ±70V and 200A
    • Compliant with ISO 7637-2, LV 124, LV 148, and more
    • Arbitrary waveform generation at 20MSa/s, 16kSa
    • Bandwidth up to 1 MHz for small signals
    • Simulates pulse 2b, pulse 4, crank profiles, and AC ripple
    • Selectable output impedance: 0–200 mΩ
    • Overvoltage and overcurrent protection
    • Integrated impulse recording function (IRF)
    • Remote control via CAR-Remote software and Ethernet

     

  • A powerful battery simulator designed for high-voltage automotive testing up to 1500V. Compact, efficient, and ISO 7637-4:2020 compliant.

    Key Features:

    • Output voltage up to 1500V DC
    • Supports 30A at 500V, 10A at 1500V
    • Constant power delivery of 15kW
    • Slew rate up to 100V/µs for rapid rise time
    • Remote PC control via CAR-Remote software
    • Parallel stacking up to 10 units (100A total)
    • Compliant with ISO 7637-2, ISO 7637-4, FMC1280
    • Compact desktop design with built-in Ethernet
    • Robust overvoltage and overcurrent protection

     

  • A high-performance analyzer designed for R&D applications involving electrochemical components, materials, batteries, and EDLCs. It enables precise impedance measurements essential for advanced evaluation and development.

    Key Features:

    • Wide frequency range: 1 mHz to 200 kHz for detailed ion and solution behavior analysis
    • Dual function: High-speed continuous LCR and sweep measurements with one device
    • Battery analysis: Measures internal impedance under no-load conditions
    • Ultra-fast sweep: Perform measurements in as little as 2 ms
    • High accuracy: ±0.05% basic precision for reliable R&D and testing
    • Advanced analysis: Supports Cole-Cole plots and equivalent-circuit modeling for electrochemical studies
  • The Dips Interrupts Test System is a turnkey EMC solution for immunity testing across multiple IEC/EN 61000-4 standards. Available in 30kVA (43A) and 50kVA (75A) versions, this system is ideal for grid simulation, compliance testing, and R&D validation.

    Key Features:

    • Fully compliant with IEC/EN 61000-4-11/-13/-14/-27/-28/-34
    • Fast switching: <5 µs voltage transition time
    • Regenerative 4-quadrant AC grid simulator
    • TC.VSE Voltage Slope Enhancer with 1000 A peak current
    • Power range from 30 kVA up to 2000+ kVA
    • User-friendly ACSControl software with test libraries
    • Graphical interface for waveform preview and reporting
    • Applications include EMC, inverter, anti-islanding, and medical testing
    • Compact rack-mounted design with global certifications (CE, UKCA, RoHS)

     

  • An advanced firmware upgrade for the IM3570 that enables quick and accurate equivalent circuit analysis, ideal for in-depth component evaluation and quality control.

    Key Features:

    • Automatically selects the optimal equivalent circuit model from five typical options
    • Minimizes discrepancies between measured and ideal frequency characteristics
    • Determines acceptance/rejection of L, C, and R elements with precision
    • Evaluates resonance sharpness (mechanical quality coefficient)
    • Enables detailed analysis of piezoelectric elements and inductors through resonance
  • A turnkey solution for harmonics and flicker compliance, this system delivers powerful, efficient, and automated testing for today’s high-power demands.

    Key Features:

    • Fully compliant with IEC/EN 61000-3-2, -3-3, -3-11, and -3-12
    • High-power testing up to 75 A and 50 kVA
    • Regenerative AC power supply with energy recovery
    • Programmable simulation: voltage, frequency, harmonics, interharmonics
    • Precision impedance network for accurate flicker measurements
    • Advanced power analyzer with harmonic and flicker metering
    • Preloaded test sequences with automated software control
    • Expandable to include dips, swells, and short interruptions

     

  • A high-speed, high-precision LCR meter ideal for low-ESR and impedance testing in advanced electronic components like polymer capacitors, inductors, and piezoelectric elements.

    Key Features:

    • Continuous LCR/DCR/sweep measurements with one instrument
    • Ultra-fast testing speeds: 1.5 ms (1 kHz), 0.5 ms (100 kHz)
    • High accuracy: ±0.08% basic accuracy for Z parameter
    • Ideal for low-ESR measurement of functional polymer capacitors
    • Suitable for resonance testing of piezoelectric elements
    • Accurate DCR and L-Q testing of inductors, coils, and transformers
  • The Hioki IM7580A is a compact, high-speed impedance analyzer for 1 MHz to 300 MHz testing, ideal for both production and R&D. It works seamlessly with the IM9201 SMD fixture for reliable component testing.

    Key Features:

    • 1 MHz to 300 MHz frequency range
    • 0.5 ms test speed
    • ±0.72% basic accuracy
    • Compact half-rack size with palm-sized test head
    • Reliable contact check functions
    • Frequency, level, and time sweeps in Analyzer Mode
    • RF I-V method for precise measurement