Amplifiers

Showing 1–16 of 41 results


  • The Tabor 3180 PXI Amplifier is a high-voltage, wideband PXI signal amplifier designed to boost your waveform generator output with precision and safety. Capable of delivering up to 180Vp-p with a 150mA output current, it supports large signal bandwidths up to 300kHz and small signal bandwidths up to 1MHz. The 3180 features selectable gain, a fast 120V/µs slew rate, and a safety latch with visual indicators to ensure secure operation. Compact and cost-effective, this PXI card integrates seamlessly into PXI test systems, providing reliable high-voltage amplification for automotive, defense, aviation, and industrial applications.

    Key Features

    • Single-width PXI slot design
    • High-voltage output: up to 180Vp-p (±90V)
    • Output current up to 150mA
    • Large signal bandwidth up to 300kHz
    • Small signal bandwidth up to 1MHz
    • Fast slew rate: 120V/µs
    • Selectable gain configuration (up to x50)
    • Compatible with Tabor waveform generators
    • Safety latch and visual indicator for high-voltage operations
    • Compact, cost-effective PXI solution for versatile applications

     

  • The Tabor 3201 PXIe RF Amplifier is a high-frequency, high-power RF amplifier designed to extend the output of PXIe-based signal sources. Operating from 100 kHz to 20 GHz, it delivers up to +30dBm power into 50Ω, making it ideal for demanding RF, multi-tone, and general electronics applications. Its compact single-slot PXIe design supports cascading for up to 25 dB gain. Equipped with reverse polarity and over/under-voltage protection, the 3201 ensures safe, reliable operation in laboratory and industrial setups.

    Key Features

    • PXIe single-slot form factor
    • Ultra-wide bandwidth: 100 kHz to 20 GHz
    • High output power: +30dBm typ. @ P1dB
    • Cascade channels for up to 25 dB gain
    • Reverse polarity protection
    • Over/under-voltage protection
    • Ideal for RF, multi-tone, and scientific applications
    • Compact and cost-effective solution
    • Compatible with Tabor waveform and RF signal generators

     

  • The Tabor 3202 PXIe RF Amplifier is a high-power, dual-channel RF amplifier designed for PXIe systems, operating from 100 kHz to 20 GHz. It provides up to +30dBm output into 50Ω and allows channel cascading for up to 25 dB gain, making it ideal for high-frequency, multi-tone, and demanding RF applications. Equipped with reverse polarity and over/under-voltage protection, the 3202 ensures safe and reliable amplification in laboratory and industrial environments.

    Key Features

    • PXIe single-slot dual-channel form factor
    • Ultra-wide bandwidth: 100 kHz to 20 GHz
    • High output power: +30dBm typical @ P1dB
    • Cascade channels for up to 25 dB gain
    • Reverse polarity protection
    • Over/under-voltage protection
    • Ideal for RF, multi-tone, and scientific applications
    • Compact and cost-effective solution
    • Compatible with Tabor waveform and RF signal generators

     

  • The Tabor 3222 PXIBus Amplifier is a high-performance PXI-based signal amplifier designed for precise, high-voltage signal amplification. Operating from DC up to 20 MHz, it delivers up to 40Vp-p into high impedance with extremely low distortion. The 3222 supports customizable gain, input/output impedance, polarity, and floating or grounded operation, making it ideal for automotive, aviation, and general laboratory applications.

    Key Features

    • Single-width PXI card, 3U form factor
    • Wideband range: DC to 20 MHz
    • High amplitude: 40Vp-p into high impedance
    • Extremely low distortion
    • Fixed x10 gain, custom gain available
    • Configurable input/output impedance and polarity
    • Floating or grounded signal operation
    • Efficient PXI power usage with +5V only draw
    • Compact and cost-effective solution for PXI systems

     

  • The Tabor 3322 PCIBus Amplifier is a high-performance PCI-based signal amplifier built for precision high-voltage amplification. It operates from DC up to 20 MHz, providing up to 40Vp-p into high impedance with ultra-low distortion. The 3322 supports configurable gain, input/output impedance, polarity, and floating or grounded operation, making it ideal for automotive, aerospace, and laboratory applications.

    Key Features

    • Single-slot, 3U PCI card
    • Wideband range: DC to 20 MHz
    • High amplitude: 40Vp-p into high impedance
    • Extremely low distortion
    • Fixed x10 gain, customizable without signal degradation
    • Configurable input/output impedance and polarity
    • Floating or grounded signal operation up to 250VDC
    • Efficient PCI power usage with +5V only draw
    • Compact and cost-effective solution for PCI systems

     

  • 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

     

  • The 9100 Signal Amplifier from Tabor Electronics is a high-voltage, wide-bandwidth amplifier designed for high-precision signal amplification. Its compact 2U half-rack form factor provides flexibility for bench-top or rack-mounted setups, delivering superior signal purity from DC to over 500 kHz. Ideal for amplifying waveform, function, or pulse generator outputs, it boosts signals up to 300Vp-p with low distortion and high current capacity.

    Key Features

    • High voltage output: up to 300Vp-p (±150V)
    • Output current capability: up to ±150 mA
    • Wide bandwidth: DC to >500 kHz
    • Slew rate: 200 V/µs for rapid signal transitions
    • Low distortion for clean signal amplification
    • Fixed gain x15, customizable on request
    • Floating or grounded signal configuration
    • Compact 2U, half-rack size for bench-top or rack integration
    • Compatible with waveform, function, and pulse generators
    • Cost-effective, high-fidelity amplification solution

     

  • The 9100A Signal Amplifier from Tabor Electronics is a high-voltage, wide-bandwidth amplifier designed for precise signal amplification in demanding applications. Compact yet powerful, it provides up to 400Vp-p output with a full power bandwidth from DC to over 500 kHz, making it ideal for waveform, pulse, or function generator outputs. Its high slew rate, monitor output, and safety features make it a versatile and reliable amplifier for laboratory and industrial use.

    Key Features

    • High voltage output: up to 400Vp-p (±200V)
    • Output current: up to 125 mA
    • Full power bandwidth: DC to >500 kHz
    • Slew rate: 400 V/µs for fast signal transitions
    • Rear-panel monitor output for safe signal tracking
    • Compact single-channel design, space-saving 2U form factor
    • Compatible with all Tabor waveform generators
    • Built-in safety latch and mechanical switch for high-voltage protection
    • Low-cost, high-performance solution for high-voltage applications

     

  • The Tabor 9160 Single-Channel Amplifier is a high-performance bench-top amplifier engineered for demanding lab and industrial applications. This 2U, half 19” rack-size amplifier provides a wide bandwidth of 45MHz and a high output of 34Vp-p into 50Ω, with peak currents up to 1A. Ideal for piezo-electronics, MEMS, and transducer testing, it combines precision, low distortion, and customizable configurations for gain, input impedance, and output setup.

    Key Features

    • Single-channel bench-top amplifier, 2U half 19” rack size
    • DC-coupled wideband operation with 45MHz bandwidth
    • High output voltage: up to 34Vp-p into 50Ω
    • Peak output current: 1A, supporting up to 10W output power
    • Fast transition time of <10ns for sharp signal edges
    • Low distortion for accurate waveform reproduction
    • Customizable gain (x10 standard, x15 optional), input impedance, and output configuration
    • Front-panel main input with rear-panel auxiliary and DC offset inputs
    • Ideal for piezo-electronics, MEMS, transducer characterization, and scientific applications
    • Compact design compatible with standard lab setups

     

  • The 9200A Dual Amplifier from Tabor Electronics is a high-voltage, dual-channel amplifier engineered for precision signal amplification. With compact design and advanced safety features, it supports versatile applications from laboratory testing to MEMS actuator control. Built to maintain signal fidelity across wide bandwidths, the 9200A offers reliable, low-distortion amplification for critical high-voltage applications.

    Key Features

    • Dual independent channels with precise amplification
    • High voltage output: 400Vp-p (±200V) per channel
    • Output current: up to 100 mA per channel
    • Full power bandwidth: DC to >500 kHz
    • High slew rate: 400 V/µs for fast signal transitions
    • Rear-panel monitor outputs for each channel
    • Compatible with all Tabor waveform generators
    • Special unipolar mode for MEMS engine drivers
    • Compact, stackable 2U chassis for bench-top or rack mounting
    • Advanced safety latch and front panel high voltage switch

     

  • The Tabor 9250 Dual-Channel Amplifier is a high-performance, bench-top amplifier designed for lab and PXI-based test systems. It provides two independent channels or a single differential output with precise amplification up to 40Vp-p. With large and small signal bandwidths up to 30MHz, a high slew rate of 200V/µs, and low distortion, the 9250 is ideal for waveform amplification and high-fidelity signal testing.

    Key Features

    • Dual-channel bench-top amplifier, 2U half 19” rack size
    • Operates as independent channels or single differential output
    • Large signal bandwidth: 15MHz, small signal bandwidth: 30MHz
    • High amplitude output: up to 40Vp-p into high impedance
    • Slew rate up to 200V/µs for fast signal transitions
    • Low distortion for precise waveform reproduction
    • Configurable gain, input impedance, output impedance, and output configuration
    • Additional rear-panel inputs for DC offset and signal summation
    • Stackable design compatible with other Tabor generators and PXI setups
    • Front-panel outputs for easy access and measurement

     

  • The Tabor 9260 Dual-Channel Amplifier is a versatile bench-top amplifier designed for high-frequency, high-current signal applications. Its 2U, half 19” rack design delivers up to 34Vp-p output into 50Ω and peak currents up to 1A. The 9260 can operate as two independent channels or one input with two differential outputs, making it perfect for piezo-electronics, MEMS, and transducer testing. Customizable gain, input impedance, and output configurations provide unmatched flexibility for demanding lab environments.

    Key Features

    • Dual-channel bench-top amplifier, 2U half 19” rack size
    • DC-coupled wideband operation with 45MHz bandwidth
    • High output voltage: up to 34Vp-p into 50Ω
    • Peak output current: 1A, supporting up to 10W output power
    • Fast transition time of <10ns for precise signal edges
    • Low distortion for accurate waveform reproduction
    • Configurable gain (x10 standard, x15 optional), input impedance, and output setup
    • Front-panel main input; rear-panel auxiliary and DC offset inputs
    • Operates as independent channels or differential output mode
    • Ideal for piezo-electronics, MEMS, transducer characterization, and scientific applications

     


Showing 1–16 of 41 results