Showing 161–176 of 193 results


  • The Tabor P9482M RF AWG is a high performance RF arbitrary waveform generator module designed for advanced signal generation and demanding RF testing environments. With an ultra fast 9GS/s sampling rate, 16-bit resolution, and dual output channels, it delivers highly accurate waveform generation for Electronic Warfare simulation, radar system development, and next generation wireless communication research.

    Built on the powerful Proteus platform and advanced SDR architecture, the P9482M RF AWG provides more than waveform generation. It can listen to incoming signals, process them, and react instantly through its integrated FPGA feedback system. This intelligent design allows engineers to create responsive RF systems that adapt in real time to changing signal conditions.

    Key Features

    • 9GS/s ultra high sampling rate for advanced RF waveform generation
    • 16-bit vertical resolution for exceptional signal fidelity
    • 2 independent RF output channels for synchronized signal creation
    • 8 programmable markers for precise timing and signal control
    • 8GS waveform memory for storing long and complex waveform sequences
    • Fast PCIe data transfer architecture for high speed data movement
    • Integrated digital IQ modulators and demodulators
    • Real time FPGA feedback system for conditional waveform generation
    • Excellent phase noise and spurious performance for RF testing
    • Task table sequencing for dynamic waveform switching
    • Optional streaming capability for long waveform playback
    • Compatible with Python, MATLAB, C, and LabVIEW programming environments

     

  • The Tabor P9484D RF AWG Desktop is a high-performance desktop RF arbitrary waveform generator designed for advanced multi-channel testing. With four independent channels, 16-bit resolution, and a 9GS/s sampling rate, it provides precise, real-time waveform generation for Electronic Warfare, radar simulations, quantum computing, and next-generation wireless research.

    Its FPGA-based feedback system allows adaptive waveform responses, making it ideal for applications that require conditional signal generation and intelligent sequencing.

    Key Features

    • 9GS/s high-speed waveform generation
    • 16-bit resolution for precise signal reproduction
    • 4 independent output channels for multi-path applications
    • 8 programmable markers for accurate timing control
    • 8GS standard waveform memory, expandable up to 16GS
    • PCIe high-speed data transfer for rapid waveform loading
    • Real-time FPGA feedback system for adaptive outputs
    • Integrated Digital IQ modulation and demodulation
    • Excellent phase noise and spurious-free performance
    • Task Table sequencing for intelligent waveform control
    • Optional streaming for continuous signal playback
    • Compatible with Python, MATLAB, C, and LabVIEW

     

  • The Tabor P9484M RF AWG is a powerful RF arbitrary waveform generator module designed for high speed signal generation and advanced RF testing. With a 9GS/s sampling rate, 16-bit resolution, and four independent output channels, it allows engineers to create complex RF waveforms for Electronic Warfare simulation, radar system development, and next generation wireless communication research.

    As part of the advanced Proteus platform, the P9484M RF AWG uses a modern SDR architecture that enables the instrument to generate, analyze, and respond to signals in real time. Its integrated FPGA feedback system supports intelligent waveform control and conditional signal generation, giving engineers a responsive and flexible testing environment for complex RF systems.

    Key Features

    • 9GS/s ultra high sampling rate for advanced RF waveform generation
    • 16-bit vertical resolution for superior signal accuracy
    • 4 independent RF output channels for synchronized multi channel testing
    • 8 programmable markers for precise timing and signal control
    • 8GS waveform memory for storing long and complex signal sequences
    • High speed PCIe data transfer architecture for fast waveform loading
    • Integrated digital IQ modulators and demodulators
    • Real time FPGA feedback system for conditional waveform generation
    • Excellent phase noise and spurious signal performance
    • Task table sequencing for intelligent waveform switching
    • Optional streaming capability for continuous waveform playback
    • Compatible with Python, MATLAB, C, and LabVIEW programming environments

     

  • The Tabor P9484M RF AWG is a powerful RF arbitrary waveform generator module designed for high speed signal generation and advanced RF testing. With a 9GS/s sampling rate, 16-bit resolution, and four independent output channels, it allows engineers to create complex RF waveforms for Electronic Warfare simulation, radar system development, and next generation wireless communication research.

    As part of the advanced Proteus platform, the P9484M RF AWG uses a modern SDR architecture that enables the instrument to generate, analyze, and respond to signals in real time. Its integrated FPGA feedback system supports intelligent waveform control and conditional signal generation, giving engineers a responsive and flexible testing environment for complex RF systems.

    Key Features

    • 9GS/s ultra high sampling rate for advanced RF waveform generation
    • 16-bit vertical resolution for superior signal accuracy
    • 4 independent RF output channels for synchronized multi channel testing
    • 8 programmable markers for precise timing and signal control
    • 8GS waveform memory for storing long and complex signal sequences
    • High speed PCIe data transfer architecture for fast waveform loading
    • Integrated digital IQ modulators and demodulators
    • Real time FPGA feedback system for conditional waveform generation
    • Excellent phase noise and spurious signal performance
    • Task table sequencing for intelligent waveform switching
    • Optional streaming capability for continuous waveform playback
    • Compatible with Python, MATLAB, C, and LabVIEW programming environments

     

  • The Tabor P9488B RF AWG is a premium benchtop RF arbitrary waveform generator built for precision, speed, and real-time responsiveness. With 9GS/s sampling rate, 16-bit resolution, and 8 independent channels, it provides advanced waveform control for Electronic Warfare, quantum computing, and next-generation wireless communication testing.

    Key Features

    • 9GS/s ultra-fast sampling for precise waveform output
    • 16-bit resolution for high-fidelity signal reproduction
    • 8 independent channels with 16 programmable markers
    • 8GS standard memory, expandable up to 16GS
    • FPGA-based real-time feedback for instant waveform adjustment
    • Integrated Digital IQ Modulators and Demodulators
    • Modular PXI Express architecture for scalable and synchronized setups
    • High-speed PCIe data transfer and streaming up to 3GS/s
    • Excellent phase noise and spurious performance
    • Task Table sequencing for intelligent, non-linear waveform control
    • Compatible with Python, MATLAB, C, and LabVIEW

  • Key Features

    • 9GS/s ultra high-speed RF waveform generation for advanced applications
    • 16-bit resolution for precise and stable signal output
    • 8 independent channels for complex multi-signal RF environments
    • 8GS waveform memory enabling long duration signal playback
    • 16 marker outputs for highly accurate timing and system synchronization
    • SDR based Proteus architecture for adaptive real-time waveform control
    • Integrated IQ modulation and demodulation for advanced RF processing
    • PCIe high-speed data transfer for seamless streaming performance
    • Real-time FPGA feedback system for conditional waveform generation
    • Ideal for EW simulation, radar systems, and quantum research

     

  • The Tabor PM8571A Pulse Generator is a high-performance single-channel pulse and pattern generator designed for demanding laboratory and industrial applications. With a 50MHz pulse output, 300MS/s arbitrary waveform capability, and 16-bit resolution, it provides unmatched versatility for standard, arbitrary, and sequenced waveforms. Its compact 2U ½ rack design combines advanced pulse precision with easy operation, high signal fidelity, and full remote control options.

    Key Features

    • Single-channel pulse and pattern generator with 50MHz output
    • 300MS/s arbitrary waveform and sequence generator
    • 16-bit amplitude resolution for precise waveform reproduction
    • 10ps pulse resolution with 4ns transition time
    • 32Vpp output into open circuit, programmable impedance
    • Supports AM, FM, FSK, ASK, PSK, PWM, and sweep modulations
    • Stores up to 10 sequence tables for complex waveform control
    • High-resolution 3.8” color LCD display for intuitive operation
    • Ethernet, USB, and GPIB interfaces for remote control
    • Compatible with legacy pulse/function generators via “drop-in” emulation
    • ArbConnection software for waveform creation and editing

     

  • The Tabor PM8572A Pulse Generator is a high-performance dual-channel pulse and pattern generator designed for advanced laboratory and industrial applications. It provides precise 50MHz pulse output, 300MS/s arbitrary waveform capability, and 16-bit amplitude resolution for unmatched waveform flexibility. Its compact 2U ½ rack design combines high signal integrity, versatile modulation, and user-friendly operation, making it an essential tool for engineers and researchers.

    Key Features

    • Dual-channel pulse and pattern generator with 50MHz output
    • 300MS/s arbitrary waveform and sequence generator
    • 16-bit amplitude resolution for precise waveform reproduction
    • 10ps pulse resolution with 4ns transition time
    • 32Vpp output into open circuit, programmable impedance
    • Supports AM, FM, FSK, ASK, PSK, PWM, and sweep modulations
    • Stores up to 10 sequence tables per channel for complex waveform control
    • High-resolution 3.8” color LCD display for intuitive operation
    • Ethernet, USB, and GPIB interfaces for remote control
    • Legacy “drop-in” emulation for Fluke, HP, Tabor, Tektronix, and Wavetek devices
    • ArbConnection software for waveform design and editing
    • Tight inter-channel synchronization with precise phase control

     

  • The Model P12812D from the Tabor Electronics Proteus family is a high performance Arbitrary Waveform Generator developed for advanced RF testing, electronic warfare simulation, radar target generation, and quantum computing applications. Built on an intelligent SDR architecture, this scalable AWG delivers high speed waveform generation, real time signal responsiveness, and exceptional multi channel synchronization in a compact PXI Express platform.

    Key Features

    • 1.25GS/s waveform generation with 16 bit resolution
    • 1GS onboard waveform memory
    • 12 channel AWG with 12 programmable markers
    • Advanced SDR architecture for intelligent waveform processing
    • High speed PCIe data transfer for uninterrupted waveform streaming
    • Modular PXI Express platform scalable to hundreds of synchronized channels
    • Integrated digital IQ modulators and demodulators
    • Real time FPGA controlled feedback system
    • Excellent phase noise and low spurious signal performance
    • Task driven non linear waveform sequencing
    • Supports Python, MATLAB, C, and LabVIEW programming
    • Ideal for EW simulation, radar systems, massive MIMO research, and quantum applications

     

  • The Model P1282D from the Tabor Electronics Proteus series is a powerful Arbitrary Waveform Generator built for advanced RF research, electronic warfare simulation, radar applications, and quantum computing environments. Designed with an advanced SDR architecture, this compact and scalable AWG combines high speed waveform generation with intelligent real time feedback control for modern testing applications.

    Key Features

    • 1.25GS/s waveform generation with 16 bit vertical resolution
    • 1GS memory for complex waveform playback
    • 2 channel AWG with 4 programmable markers
    • Advanced SDR based architecture for intelligent signal processing
    • Modular PXI Express platform scalable to hundreds of synchronized channels
    • Fast PCIe data transfer for uninterrupted waveform streaming
    • Integrated digital IQ modulators and demodulators
    • Real time feedback control for conditional waveform generation
    • Excellent phase noise and low spurious signal performance
    • Task driven non linear waveform sequencing
    • Compatible with Python, MATLAB, C, and LabVIEW programming
    • Ideal for EW simulation, radar systems, wireless communications, and quantum research

     

  • The Model P1284D from the Tabor Electronics Proteus family is a high performance Arbitrary Waveform Generator built for advanced RF testing, electronic warfare simulation, radar systems, and quantum research. Powered by an advanced SDR architecture, this intelligent AWG combines precise waveform generation, real time feedback control, and scalable multi channel performance in a compact PXI Express platform.

    Key Features

    • 1.25GS/s waveform generation with 16 bit resolution
    • 1GS onboard memory for long waveform playback
    • 4 channel AWG with 4 programmable markers
    • Advanced SDR architecture for intelligent waveform processing
    • High speed PCIe data transfer for seamless streaming
    • Modular PXI Express design scalable to hundreds of synchronized channels
    • Integrated digital IQ modulators and demodulators
    • Real time FPGA controlled feedback system
    • Excellent phase noise and low spurious performance
    • Task driven non linear waveform sequencing
    • Supports Python, MATLAB, C, and LabVIEW programming
    • Ideal for EW simulation, radar target generation, wireless communication testing, and quantum applications

     

  • The Model P1288D from the Tabor Electronics Proteus family is a powerful Arbitrary Waveform Generator engineered for advanced RF signal generation, electronic warfare simulation, radar target testing, and quantum research applications. Built on an advanced SDR architecture, this intelligent AWG delivers precise waveform generation, real time responsiveness, and scalable multi channel synchronization for modern engineering environments.

    Key Features

    • 1.25GS/s waveform generation with 16 bit resolution
    • 1GS onboard waveform memory
    • 8 channel AWG with 8 programmable markers
    • Advanced SDR architecture for intelligent waveform processing
    • Fast PCIe data transfer for high speed waveform streaming
    • Modular PXI Express platform scalable to hundreds of synchronized channels
    • Integrated digital IQ modulators and demodulators
    • Real time FPGA based feedback control system
    • Excellent phase noise and low spurious signal performance
    • Task driven non linear waveform sequencing
    • Supports Python, MATLAB, C, and LabVIEW programming
    • Ideal for EW simulation, radar systems, massive MIMO research, and quantum applications

     

  • The Model P9482M from the Tabor Electronics Proteus family is a high performance RF Arbitrary Waveform Generator module designed for advanced electronic warfare, radar simulation, quantum research, and next generation wireless communication testing. Built on a powerful SDR architecture, this modular RF transceiver combines ultra fast waveform generation, real time feedback processing, and scalable multi channel synchronization in a compact PXI Express platform.

    Key Features

    • 9GS/s 16 bit RF DAC for ultra precise waveform generation
    • 8GS memory with high speed waveform streaming capability
    • 2 channel RF AWG module with 8 programmable markers
    • Advanced SDR architecture for real time signal processing
    • Modular PXI Express design scalable from 2 to hundreds of channels
    • Integrated digital IQ modulators and demodulators
    • Excellent phase noise and low spurious performance
    • Fast PCIe data transfer for uninterrupted streaming and recording
    • Real time feedback control for conditional waveform generation
    • Task driven non linear waveform sequencing with FPGA integration
    • Ideal for EW simulation, radar target generation, qubit control, and massive MIMO research
    • Programmable using Python, MATLAB, C, and LabVIEW

     

  • A compact, high-performance power supply for automotive EMC and battery voltage simulation.

    Key Features:

    • Battery simulator for 12V, 24V, 42V, and 48V systems
    • Output: 0–66V / 0–55A (max)
    • Fast voltage rise time up to 100V/µs
    • ISO 7637-2 and ISO 16750-2 compliant
    • Remote control via CAR-Remote Software
    • Impulse Recording Function (IRF) included
    • Compact 19-inch desktop form (15 kg only)
    • Overvoltage and thermal protection
    • Slew rate: 10V/µs with fan cooling system
    • Compatible with HILO CAR-SYS test systems

     

  • High-performance power simulator designed for advanced EMC and automotive voltage testing.

    Key Features:

    • Supports 12V, 24V, 42V, 48V, and 70V automotive systems
    • Battery simulation with up to 220A current
    • Fast voltage rise time up to 100V/µs
    • ISO 7637-2 and ISO 16750-2 compliant
    • Integrated Impulse Recording Function (IRF)
    • Full remote control via CAR-Remote software
    • Ethernet interface and built-in safety interlock
    • Cooling via fans and heat sink for reliable operation
    • Compact 19-inch rackmount desktop system (60 kg)
    • Overvoltage and thermal protection included

     

  • Any shielded room can be transformed into a reverberation chamber with this retrofit solution. Designed with aluminum panels and customizable stirrers, it ensures improved Q factor and precise EMC testing conditions.

    Key Features:

    • Converts shielded rooms into functional reverberation chambers
    • High Q factor for enhanced electromagnetic testing
    • Customizable stirrer configurations (1 or 2+ stirrers)
    • Ensures strong electrical bonding to prevent oxidation
    • Suitable for automotive, avionics, military, space, and telecom markets
    • Compatible with IEC/EN 61000-4-20 & IEC/EN 61000-4-3 standards

     


Showing 161–176 of 193 results