Arbitrary Wave Generator AWG-5000

AWG-5000

  • 6.16 GS / s, 16-bit vertical resolution
  • Minimum edge time down to 110 ps
  • Maximum dynamic range up to 5Vpp (50 ohms)
  • Up to 4 Gpts per channel
  • Up to 32 digital channels synchronized with analog channels
  • SW User Interface: Simple Rider for AFG mode and Simple True Arb for AWG mode.

 

mouldSimulation ChannelDigital ChannelsSampling RateRecord Lengthvertical resolutionMaximum FrequencyMaximum Output VoltageOutput Voltage Window
AWG506228 (optional)6.16 Gs / sec2 or 4 Gpts16-bit2GHz5 Ohpp on 50 Ohms10Vpp
AWG5062D28 (optional)6.16 Gs / sec2 or 4 Gpts16-bit2GHz1.5 Ohpp on 50 Ohm5.5Vpp
AWG5064416 (optional)6.16 Gs / sec2 or 4 Gpts16-bit2GHz5 Ohpp on 50 Ohms10Vpp
AWG5064D416 (optional)6.16 Gs / sec2 or 4 Gpts16-bit2GHz1.5 Ohpp on 50 Ohm5.5Vpp
AWG5068832 (optional)6.16 Gs / sec2 or 4 Gpts16-bit2GHz5 Ohpp on 50 Ohms10Vpp
AWG5068D832 (optional)6.16 Gs / sec2 or 4 Gpts16-bit2GHz1.5 Ohpp on 50 Ohm5.5Vpp

Description

Arb Rider AWG-5000 Arbitrary Waveform Generator

World's fastest 16-bit arbitrary waveform generator

The ARB Rider AWG-5000 isThe world's fastest 16-bitArbitrary waveform generator:6.16 Gs/sThe update rate and16-bitVertical Resolution.The Arb Rider AWG-5000 is available in 2, 4, or 8 channel models and is the world'sFastest AFG(Arbitrary Function Generator) up to 2 GHz sine wave. Thanks to the Simple Rider software, the AWG-5000 offers best-in-class performance, andVery easy to use interface

2 GHzBandwidth up toOutput of 5VppScope and height4 GsampleThe storage depth makes the AWG-5000 ideal for physics experiments, quantum computers, and aerospace and defense applications.

No impact on simulation performance:Rapid rise time of 110ps is achieved at a maximum amplitude of 5Vpp.

The combination of up to 32 digital channel options and 2, 4 or 8 analog channels makes the AWG-5000 a full-featured mixed signal generator. It is now possible to generate up to 8 analog signals (LVTTL or LVDS standard) that are fully synchronized with 32 digital lines.

Dedicated internal chassis synchronization bus allows for multi-instrument synchronization of up to 4 units:32 analog channels128 digital channels.For the world's most powerful hybrid signal generator.

 

mouldSimulation ChannelDigital ChannelsSampling RateRecord Lengthvertical resolutionMaximum FrequencyMaximum Output VoltageOutput Voltage Window
AWG506228 (optional)6.16 Gs / sec2 or 4 Gpts16-bit2GHz5 Ohpp on 50 Ohms10Vpp
AWG5062D28 (optional)6.16 Gs / sec2 or 4 Gpts16-bit2GHz1.5 Ohpp on 50 Ohm5.5Vpp
AWG5064416 (optional)6.16 Gs / sec2 or 4 Gpts16-bit2GHz5 Ohpp on 50 Ohms10Vpp
AWG5064D416 (optional)6.16 Gs / sec2 or 4 Gpts16-bit2GHz1.5 Ohpp on 50 Ohm5.5Vpp
AWG5068832 (optional)6.16 Gs / sec2 or 4 Gpts16-bit2GHz5 Ohpp on 50 Ohms10Vpp
AWG5068D832 (optional)6.16 Gs / sec2 or 4 Gpts16-bit2GHz1.5 Ohpp on 50 Ohm5.5Vpp

Pulse for all your needs

Whether generating complex pulse sequences, a series of radar pulses, pulsed RF signals with damage, Gaussian pulses, multi-level pulses, dual pulses for IGBT/Mosfet experiments, pulses for advanced research and quantum computation, the AWG-5000 can be the ideal partner for all of the most complex tests and cutting-edge applications.

emphasize that

  • 50 ohm pulse amplitude up to 5Vpp with ±2.5V hardware offset
  • 110 ps rise and fall time
  • Minimum pulse width: 230 ps
  • Easily Shape Your Pulse Transitions

Quantum Computing and RF Wireless

The AWG-5000 is the right choice for experimental frontiers in science and technology and for cutting-edge challenges such as quantum, high-energy physics, optics and RF wireless communications.

AWG-5000 series instruments can create virtually any signal - analog or digital, ideal or distorted, standard or custom. You can easily construct complex RF/IF/IQ waveforms on your PC or generate serial data streams and then transfer them to the AWG.

emphasize that

  • Minimum delay between triggered input and analog output
  • Up to 32 analog and 128 digital channels fully synchronized
  • Built-in sequencer with conditional/unconditional/dynamic jump function, two independent trigger inputs, up to 4 marking outputs

Radar, LIDAR Design and Electronic Warfare

Broadband radar and electronic warfare systems require high-fidelity signals to replicate real-world and complex environmental conditions.

In addition, today's automotive solutions need to create accurate and reliable tests to prove safety in a variety of test conditions is key: LiDAR is one of the strategic components for such solutions.

Key Features

  • Generates radar test signals with excellent spurious performance
  • Create complex electronic warfare scenarios using up to 16,384 sequencer entries and Advanced Sequencer conditional/unconditional jumps.
  • Establishing LiDAR Signal Testing for Aerospace and Defense, Automotive and Mobile Device Solutions
  • Create test waveforms using Waveform Editor software, or import them using third-party applications such as Matlab, Labview, .

Waveform Editor: Powerful and Simple

The Waveform Editor makes it easy to create the most complex shapes for radar pulses, physics research pulses, real signals and complex environmental signals. It is included in the standard software package.

Key Features

  • Easily generate the most complex analog and digital signals
  • Remote waveform creation on PC
  • Full integration with True-Arb software

Multi-Instrument Synchronization

You can synchronize up to 4 units to build a system of 32 analog and 128 digital channels that are fully synchronized and integrated with True-Arb software.

Key Features

  • Synchronization of up to 4 units: 32 analog channels and 128 digital channels
  • Reasonable price per channel
  • Easy-to-use multi-instrument control via True-Arb software

Download
Technical Specifications AWG-5000 Series Datasheet