Showing 1–16 of 54 results


  • 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

     

  • 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

     

  • 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 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

     

  • 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 AH401D Picoammeter is a compact and high precision 4 channel charge integration electrometer designed for accurate low current measurements. Built with an advanced charge integration input stage and a 20 bit delta sigma ADC, the instrument ensures reliable sensing of extremely small currents with minimal noise. Its simultaneous multi channel sampling, Ethernet connectivity, and trigger input make it a powerful solution for beam monitoring, detector measurements, and scientific instrumentation. The AH401D is engineered for stable performance, high linearity, and precise signal acquisition in demanding laboratory environments.

    Key Features

    • 4 channel simultaneous sampling picoammeter
    • Advanced charge integration input stage for precise current sensing
    • 20 bit delta sigma ADC with digital noise reduction filter
    • Eight selectable input current ranges
    • Measurement ranges from 50 pA up to 2 µA
    • Ultra high resolution down to 50 aA
    • User selectable integration time from 1 ms to 1 s
    • Continuous current to voltage conversion without dead time
    • Ethernet interface with TCP/IP and UDP communication
    • External trigger input for synchronized measurements
    • Compact low noise design for close placement to signal sources
    • Plug and play oscilloscope software for configuration and analysis

     

  • The AH501D Picoammeter is a high performance 4 channel bipolar electrometer designed for precise low current measurements in advanced research and detector monitoring systems. Built with a transimpedance input stage and high resolution 24 bit conversion, the instrument delivers accurate simultaneous current measurements across multiple channels. With an integrated bias voltage source, analog monitoring outputs, and Ethernet connectivity, the AH501D provides a complete solution for beam position monitoring, detector analysis, and scientific instrumentation.

    Key Features

    • 4 channel simultaneous sampling bipolar picoammeter
    • 24 bit high resolution current measurement
    • Three selectable input current ranges
    • Bipolar current measurement capability
    • Measurement range from ±2.5 nA up to ±2.5 mA
    • Ultra high resolution down to 300 aA
    • Fast sampling with minimum period of 38.4 microseconds
    • Integrated low noise bias voltage source up to 30 V
    • Analog monitor outputs for real time signal observation
    • Ethernet interface with TCP/IP and UDP communication
    • External trigger and gate input for synchronized acquisition
    • Compact design to reduce cable noise interference
    • Plug and play oscilloscope software for configuration and analysis

     

  • The AMC-PICO-8 Picoammeter is a high performance 8 channel bipolar electrometer designed for precision current measurements in advanced instrumentation environments. Built in the MTCA.4 format, the device combines a specialized transimpedance input stage with 20 bit simultaneous sampling ADCs to deliver fast and accurate current sensing. With sampling speeds up to 1 MSPS and floating input capability up to ±300 V, the system supports demanding detector readout and scientific measurement applications. Its FPGA based signal processing and PCI Express communication ensure reliable data acquisition and efficient system integration.

    Key Features

    • 8 channel simultaneous bipolar current measurement
    • High resolution 20 bit analog to digital conversion
    • Sampling rate up to 1 MSPS for fast data acquisition
    • MTCA.4 Advanced Mezzanine Card architecture
    • Floating input capability up to ±300 V relative to chassis ground
    • Transimpedance input stage with advanced signal conditioning
    • Multiple selectable measurement ranges depending on configuration
    • Integrated FPGA for high speed signal processing
    • Digital channel calibration with onboard EEPROM storage
    • Trigger based acquisition with pre trigger memory capture
    • PCI Express communication interface for system control
    • Scatter gather DMA support for high speed data transfer

     

  • The BatReg² Battery Cycler is a high-precision bidirectional and regenerative battery testing system designed for advanced battery research, cycling, and charging applications. Built with state-of-the-art digital control and regenerative technology, it enables accurate testing while efficiently returning excess energy to the grid. With output ratings up to 100 V and ±150 A, this system delivers reliable performance for laboratories, research centers, and battery development facilities.

    Key Features

    • High-precision bidirectional and regenerative battery cycler
    • Output capability up to 100 V and ±150 A
    • Multiple regulation modes including Constant Voltage, Constant Current, and Constant Power
    • 24-bit resolution at 100 kHz for precise output setting and readback
    • Built-in polarity detection for safe battery connection
    • Embedded web server interface for monitoring and configuration
    • Integrated 24-bit Arbitrary Waveform Generator running at 100 kHz
    • 4-channel precision oscilloscope for advanced signal monitoring
    • High efficiency regenerative design that returns energy to the grid
    • Low output noise and ripple due to high switching frequency architecture
    • Ethernet connectivity supporting TCP/IP and UDP communication
    • Optional trigger, analog control, auxiliary ADC, and K-type thermocouple inputs

     

  • The BEST Beam Stabilization System is a complete turnkey solution designed to control and stabilize photon beam position and intensity in synchrotron radiation X ray beamlines. Developed to support high precision beamline experiments, the system integrates advanced hardware with powerful software tools to deliver reliable beam monitoring and correction. With a distributed architecture and FPGA driven control algorithms, the BEST system allows researchers to optimize beam stability, improve experimental accuracy, and maintain consistent beam performance in demanding scientific environments.

    Key Features

    • Complete turnkey system for photon beam position and intensity stabilization
    • Designed for synchrotron radiation X ray beamline applications
    • Simultaneous control of beam position X and Y and beam intensity I0
    • Distributed architecture for flexible installation near beamline components
    • High speed FPGA based hardware for low latency correction performance
    • Advanced control algorithms operating across several kHz frequency range
    • Integrated readout unit based on high precision picoammeter technology
    • Dedicated control and interface unit for system configuration and monitoring
    • Gigabit Ethernet connectivity for network integration
    • High throughput communication interface for real time system control
    • Compatible with EPICS based beamline control systems
    • Software tools for detector configuration and beamline optimization

     


Showing 1–16 of 54 results