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  • 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

     

  • Aetec 7794 High Current Industrial Amplifier

    Key Features:

    • Up to 200 Ap / 100 Vp; DC to 150 kHz bandwidth
    • Stable with resistive, inductive, or capacitive loads
    • Controlled-voltage or controlled-current operation
    • Switchable rail supply for optimized load impedance
    • 60A continuous output at 13.8V DC
    • ±95V DC and >35 V/µs slew rate
    • Four-quadrant operation: sourcing and sinking
    • Extensive protection against overvoltage, overcurrent, overtemperature
    • Rack-mountable chassis with LCD fault diagnostics

     

  • AETechron 7796 Amplifier – High-Current, Low-Impedance Industrial Power
    Ideal for precision testing, EMC simulations, and MRI systems.

    Key Features:

    • Delivers over 200 Ap peak current, up to ±180V
    • DC to 100 kHz bandwidth for versatile signal reproduction
    • Four-quadrant operation (source/sink modes)
    • Operates in both voltage and current-controlled modes
    • Handles in-rush currents up to 200A
    • Field-configurable rail supply modes for load optimization
    • Advanced protection against voltage, current, and thermal faults
    • Stackable for higher voltage or current (up to 800 Ap)

     

  • The DSR 400 Series Test System is a compact, high-performance simulator for rigorous AC and DC immunity testing. Built for DO 160 and MIL STD 704 compliance, it integrates a powerful waveform generator, cutting-edge power technology, and a vast standards library—making it an ideal solution for demanding EMC test labs.

    Key Features:

    • Complete Test Solution for DO 160 Sec. 16 and MIL STD 704
    • Built-In Standards Library with 3,400+ automotive and aviation test routines
    • 4-Quadrant Operation: Sources and sinks current for complex test needs
    • High Surge Capability: Delivers 5x rated power for 200 ms
    • Fast Rise Time: Less than 30 µs for real-time performance
    • Modular Output: 80A or 160A continuous current options available
    • Multiple Waveform Options: Includes sine, ripple, triangle, sawtooth, square, and DC
    • Remote Control Ready: LAN and GPIO integration for larger systems
    • Easy-to-Use Interface: Pre-configured or user-custom test sequences

     

  • Engineered for cutting-edge EV, automotive, and aerospace compliance, the HVR 1000 is a complete high-voltage ripple test system built to handle demanding lab environments with unmatched precision and safety.

    Key Features:

    • Wide Frequency Range: AC ripple from 10 Hz to 200 kHz
    • High Voltage Output: Up to 1000V DC and 60 kW power
    • Waveform Versatility: Generates sine, triangle, and custom signals
    • Robust Safety: Multi-layer overvoltage, overcurrent, and thermal protection
    • Zero Licensing Fees: Future test standard updates included
    • User-Centric Interface: Intuitive controls with HDMI and LAN support
    • Flexible Configuration: Available as HVR 1000RG (Ripple Generator only)
    • Space-Saving Design: Small footprint, ideal for compact lab setups

     

  • The HVR 1200RG Ripple Generator is a powerful, next-gen solution tailored for electric vehicle high-voltage testing. Designed for use with traction inverters and HIL test stands, this rugged system delivers unmatched ripple current and voltage capabilities across a wide frequency range.

    Key Features:

    • Ripple Current Output: Up to 600 A peak
    • Voltage Range: 0 – 150 Vp (300 Vp-p)
    • Wide Frequency Support: 150 Hz to 300 kHz
    • DC Voltage Compatibility: 0 – 1200 V (or up to 2000 V in bridged mode)
    • Data Monitoring: Real-time tracking of voltage, current, and impedance
    • Built-In Protections: Handles short circuits and noisy DUTs effortlessly
    • Modular & Expandable: Configurable for current and future EV standards
    • Noise-Resistant: Engineered to operate accurately in high-noise environments

     

  • Single-phase, 2U, industrial amplifier/battery simulator

    • Bench-sized
    • Powered from 120V/230VAC
    • Source and Sink (4 quadrant)
    • Rugged Design
    • 3-Year, No-Fault Warranty

    Key Performance Capabilities:

    • Drop outs and surges as fast as 1.2µs
    • Small signal response up to 1 MHz
    • 13.5 VDC at up to 28A
    • Field-selectable ±40V, 75V or 150V potential

     

    • Compact, air-cooled OEM style
    • Superior pulse repeatability
    • Simple parallel operation for higher power
    • Optional Active PFC (pf = 0.98)
    • Full remote control interface
    • High EMI-RFI immunity

     

    • Advanced semiconductor technology
    • High-quality construction
    • Rapid capacitor and pulse-forming network charging
    • Compact and lightweight design
    • Simple parallel operation for higher power needs
    • Compatible with worldwide input voltages and frequencies
    • Fully adjustable output voltage
    • Comprehensive remote control interface

     

  • High-Speed Current Control: No dynamic overshoot or oscillation
    High Slew-Rate: Up to 30A/*s for fast load changes
    Low Voltage Operation: Stable operation with no turn-on delay
    Multi-Functional: Seven load modes and four operating modes
    Parallel Operation: Up to 10kW with 10 units
    User-Friendly Interface: Built-in USB and optional IEEE interfaces
    Compliance: EN61010-1 compliant with a two-year warranty

  • 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

     

  • 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

     

  • Next-gen Time-Domain Reflectometers replace the Tektronix® 1502C

    The new CT100 and CT100HF are the industry’s highest-resolution portable metallic TDRs, designed for testing all coaxial and twisted-pair cables and interconnects used in modern microwave/RF and digital systems. These are the only portable instruments that exceed all TDR specifications of the Tektronix® 1502C Metallic TDR Cable Tester, while providing next-generation improvements in TDR analysis, data storage, connectivity, and ergonomics.

    CT100 Series TDRs feature 8-10x sharper spatial resolution and100-1000x better Distance-to-Fault (DTF) resolution than competing TDR instruments, and have multi-GHz bandwidth similar to competing FDR (Frequency-Domain Reflectometer) instruments with similar or better cable fault sensitivity andorders-of-magnitude better DTF precision.

    These instruments’ unique combination of fast system rise-time,high-resolution time-base, and precision 16-bit impedance measurements allow you to identify and correct subtle changes in cable and connector performance before system failure. Some of the CT100 Series’ innovative features are described below. Also, please read CT100 Series Features for more information.