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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

     

  • Precision meets performance in this regenerative, modular, and highly controllable DC power supply for high-voltage testing applications.

    Key Features:

    • Output voltage: 0 to 3000 V DC
    • Power range: 54 to 2000+ kW
    • Fast response: <250 µs rise/fall times
    • Regenerative sink/source operation
    • High current accuracy: <0.02% FS
    • Auto-ranging voltage-current flexibility (factor 3)
    • Full digital modes: CV, CC, CP, CR, Ri-Sim
    • Modular design with up to 44 units
    • Optional HMI touchscreen and CAN interface
    • Waveform generation via AnyWave + WaveMaster

     

  • 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
  • The 3110A Standards Waveform Generator is a feature-rich, intuitive tool for engineers conducting EMC testing. From automotive to aviation applications, this unit simplifies the most complex test routines.

    Key Features:

    • 3,400+ Built-In Tests for automotive and industry standards
    • Fast Rise Time: 3 µs full-scale with up to 1 MHz bandwidth
    • Segment-Based Waveform Creation for custom sequences
    • Free Lifetime Standards Updates
    • Automated Triggering via GPIO or LAN
    • Flexible Output Control including frequency, amplitude, and DC offset
    • Extremely Precise Resolution: 0.01 Hz frequency, 76 µV amplitude
    • Supports All Common Waveforms: Sine, square, triangle, DC, ripple, and more

     

  • 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
  • Key Features:

    • Dual-channel arbitrary waveform generation with 2.8 MS/s sampling rate and 16-bit resolution.
    • Integrated with BOLAB WaveMaster software for graphical and tabular waveform design.
    • Endless waveform streaming with double buffer memory for uninterrupted operation.
    • Real-time triggering, data acquisition, and live waveform editing.
    • Supports importing oscilloscope data, ASCII, and TDMS files.
    • Preloaded waveform libraries for LV 124, LV 148, ISO 7637-2, ISO 16750-2, GMW, JLR, VW standards.
    • Seamless integration with LabView, Python, CANoe, MATLAB, C/C++ via DLLs.
    • Compact and robust design for laboratory and industrial testing applications.

  • The 7224 Linear Amplifier delivers power, speed, and precision in a compact 2U form factor. Designed for lab, test, and simulation environments, it provides outstanding performance for demanding applications.

    Key Features:

    • Up to 900W RMS output power
    • Operates in controlled-current or controlled-voltage mode
    • Field-configurable for low or high impedance loads
    • DC to 1 MHz small signal bandwidth
    • Produces up to 50A current or 158V peak
    • Slew rate of 90 V/μs for sharp waveform reproduction
    • Over-voltage, over-current, and over-temp protection circuits
    • Compact 2U rack-mount or benchtop design
    • Suitable for Helmholtz coil drivers, MRI/NMR, SMPS component testing

     

  • The 7548 Linear Amplifier is a high-output, low-noise solution engineered for precision and reliability in demanding environments.

    Key Features:

    • Up to 100 Ap / 195 Vp output
    • Delivers 12,000W peak power for 40 ms
    • Supports continuous 5,500W output into 1Ω load
    • Operates from DC to 100 kHz bandwidth
    • Field-selectable current or voltage mode
    • Ideal for MIL-STD-704F three-phase testing
    • Stackable for 800 Vp or 170 Ap system output
    • Built-in protection against over-voltage, over-temp, and overload
    • Intuitive LCD display and status indicators

     

  • 7796HC Linear Power Amplifier – High Current DC & AC Precision

    Key Features:

    • Output up to 85A continuous, 200A in-rush current
    • Frequency response: DC to 100+ kHz
    • Four-quadrant operation: source and sink
    • Field-selectable voltage or current modes
    • Stable with resistive, inductive, and capacitive loads
    • Multiple protections: Over/under voltage, current, and temperature
    • Supports DC ripple, surge, dropout, and ground noise simulations
    • Ideal for high-current DC Conducted Immunity testing
    • LCD with real-time voltage and current metrics
    • Supports both balanced and unbalanced inputs

     

  • 7800 Series Linear Amplifiers are high-power, high-precision AC/DC amplifiers designed for demanding industrial and research applications.

    Key Features:

    • Power Output: Up to 20 kW continuous, 40 kW short-term
    • Voltage: Up to ±500 Vp
    • Current: Up to 800 A peak
    • Bandwidth: DC to 60 kHz
    • Four-quadrant operation: Source and Sink
    • Modes: Selectable voltage or current control
    • Protection: Overload, over-temp, short-circuit, and voltage fluctuations
    • Ideal for: Resistive, inductive, and capacitive loads
    • Low distortion: <0.25% THD
    • High accuracy: DC drift < ±400 µV

     

  • 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
  • 8300 Series Power Amplifiers combine the precision of linear amplifiers with the efficiency of switch-mode technology for high-performance power delivery.

    Key Features:

    • Output Power: 2 kW to 10 kW (up to 50 kVA surge)
    • Voltage Range: 0–140 VRMS / ±200 VDC
    • Current: Up to 425A continuous, 65–300 ARMS
    • Bandwidth: DC to 50 kHz
    • Slew Rate: Up to 60 V/µs
    • Ultra-low THD: <0.2%
    • Operates in AC, DC, or AC+DC modes
    • Flexible configuration: gain, current limit, impedance, and more
    • Ideal for reactive, resistive, and complex loads

     

  • AE Techron 7000G Series – Low-Noise Gradient Amplifiers for MRI Imaging

    Key Features:

    • Robust, DC-enabled linear amplifiers with integrated power supply
    • Very-low-noise linear topology for enhanced MRI image quality
    • Wide bandwidth up to 1 MHz for precision applications
    • Operates as voltage or current source
    • No ripple noise, eliminating the need for console synchronization
    • Models available for single-phase or three-phase power
    • Ideal for low-field and ultra-low-field MRI research

     

  • AE Techron 8700 Series High-Frequency Power Amplifier

    Key Features:

    • Power output from 4 kW to 24 kW (up to 120 kVA)
    • Voltage range up to ±400 Vp / 350 VDC
    • Current output up to 360 ARMS continuous
    • Wide bandwidth: DC to 250 kHz
    • High slew rate: up to 300 V/µs
    • Switch-mode efficiency with linear performance
    • Scalable for both bench and rack applications
    • Drives reactive and resistive loads with no power loss
    • THD less than 0.8% with ultra-low noise floor
    • Ideal for EMC, MIL-PRF, ISO 61000, and automotive testing

     

  • AE Techron 9100 Series High-Current Power Amplifiers

    Key Features:

    • Power output up to 5 kW continuous (4.2 kW for 9105 model)
    • Wide bandwidth: DC to 250 kHz
    • Voltage output up to 200 Vp
    • Current output from 50A to 150A peak
    • Fast 7 µs rise/fall time for surges and dropouts
    • Slew rate up to 150 V/µs
    • Four-quadrant operation (source and sink)
    • Stable with highly capacitive loads
    • Works from single-phase AC mains (100–250 VAC)
    • Ideal for automotive, aviation, and EMC conducted immunity testing

     

  • AE Techron RLY Amplifiers – Precision Power for Relay Testing

    Key Features:

    • Designed for rigorous power utility industry testing
    • Peak currents up to 200 amperes for challenging applications
    • Wide bandwidth: DC–10 kHz (current) and DC–100 kHz (voltage)
    • Low distortion and minimal phase error for accurate results
    • Suitable for power grid modeling and relay verification
    • Four-quadrant operation for enhanced versatility
    • Multiple models for varied voltage and current requirements