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Rigol DG70000 Series

Now includes NABL Calibration Certificate.

The RIGOL DG70000 Series is a high-performance arbitrary waveform generator designed for advanced communication testing, scientific research, high-speed interface validation and complex electromagnetic signal simulation. It offers output frequencies up to 5 GHz, sampling up to 12 GSa/s, 16-bit vertical resolution, up to four output channels and waveform memory up to 1.5 Gpts per channel. Wideband IQ modulation, frequency hopping, sequence generation and high signal purity support demanding multi-channel signal-generation applications..

  • Detail
  • Special Features
  • Specification

The RIGOL DG70000 Series Arbitrary Waveform Generator is designed for engineers, research laboratories, communication-system developers and advanced test facilities that need to generate complex, wideband and precisely controlled signals.

Built on RIGOL’s SiFi III waveform-generation platform, the series supports standard waveform generation, high-speed arbitrary waveforms, digital upconversion, IQ modulation, sequence playback, frequency hopping and multi-channel synchronisation.

The series is suitable for applications such as:

  • Wireless communication testing
  • Complex electromagnetic environment simulation
  • High-speed interface receiver testing
  • Radar and electronic system development
  • Quantum technology research
  • Wideband modulation testing
  • Semiconductor and component validation
  • Scientific signal generation
  • Multi-channel system stimulation
  • Automated production testing
  •  

Available Models

The DG70000 Series includes:

  • DG70002: Two output channels
  • DG70004: Four output channels

Both models support:

  • Maximum output frequency up to 5 GHz
  • Adjustable sample rate up to 12 GSa/s
  • 16-bit vertical resolution
  • Up to 1.5 Gpts waveform memory per channel
  • Long sequence generation
  • IQ modulation and digital upconversion
  • Frequency hopping
  • 15.6-inch 2K touchscreen
  • High-speed data and remote-control interfaces

The DG70004 is the preferred model when four synchronised channels are required for multi-signal simulation, phased testing, communication research or complex system validation.

 

High-Frequency Signal Generation

The DG70000 Series provides output frequencies from DC up to 5 GHz, allowing the generator to cover baseband, intermediate-frequency and selected RF applications.

The wide output range supports:

  • Clock signal generation
  • High-speed serial test patterns
  • Intermediate-frequency simulation
  • RF carrier generation
  • Receiver sensitivity testing
  • Amplifier and filter evaluation
  • Radar waveform generation
  • Communication-system testing

The 5 GHz figure refers to the maximum generated output frequency. Arbitrary-waveform bandwidth and modulation bandwidth should be evaluated separately according to the operating mode.

 

High-Speed Sampling

The DG70000 provides a native arbitrary-waveform sample rate up to 5 GSa/s and supports sample rates up to 12 GSa/s through interpolation and digital processing.

The available sample-rate range allows engineers to optimise the generator for both slow and high-speed signals.

Benefits include:

  • Accurate waveform timing
  • Improved reproduction of fast transitions
  • Fine control of pulse position
  • High-speed serial pattern generation
  • Wideband modulation
  • Reduced waveform distortion
  • Improved timing resolution

RIGOL specifies adjustable sampling from 100 Sa/s to 12 GSa/s, depending on the selected waveform mode and processing configuration.

 

16-Bit Vertical Resolution

The DG70000 Series uses 16-bit vertical resolution, providing up to 65,536 amplitude levels.

Higher vertical resolution supports:

  • Fine amplitude control
  • Detailed arbitrary-waveform reproduction
  • Low-level signal generation
  • Large dynamic-range testing
  • Reduced quantisation steps
  • Improved modulation accuracy
  • Precise impairment simulation

This is particularly useful when small signal variations must be reproduced on top of a larger waveform.

 

Deep Waveform Memory

The series supports waveform memory up to 1.5 Gpts per channel.

Deep memory allows users to generate long-duration and highly detailed waveform records without repeatedly loading new data.

 

Applications include:

  • Long communication frames
  • Extended radar sequences
  • Frequency-hopping patterns
  • Complex electromagnetic simulations
  • Recorded waveform reproduction
  • High-speed digital patterns
  • Multi-event test sequences
  • Long-duration scientific signals

RIGOL also lists up to 4 Gpts total waveform-table capacity in supported configurations, depending on channel use and memory allocation.

 

Advanced Sequence Generation

The sequence editor supports up to 16,384 waveform segments.

Each sequence can combine multiple waveform files, repeat counts, jumps and trigger conditions into one automated test profile.

Sequence generation is useful for:

  • Multi-stage communication tests
  • Automotive operating-condition simulation
  • Radar pulse sequences
  • Receiver stress testing
  • Frequency-hopping signals
  • Fault-condition reproduction
  • Power-state transition testing
  • Automated product validation

Long waveform memory and sequence control allow complex test conditions to be reproduced consistently.

 

IQ Modulation and Digital Upconversion

The DG70000 supports wideband IQ modulation and digital upconversion.

The platform provides modulation bandwidth up to 1.5 GHz, allowing the generation of modern wideband communication signals.

Supported applications include:

  • 256QAM
  • 1024QAM
  • Wideband IQ waveform generation
  • Communication receiver testing
  • Baseband-to-RF conversion
  • Wireless-standard simulation
  • Error-vector-magnitude testing
  • Modulation quality evaluation

Users can create baseband IQ waveforms and digitally shift them to a selected carrier frequency without requiring a separate external IQ modulator.

 

Frequency-Hopping Generation

The built-in frequency-hopping function supports hop intervals as low as approximately 128 ns.

Fast frequency hopping is useful for:

  • Frequency-agile communication systems
  • Radar testing
  • Electronic countermeasure research
  • Spread-spectrum development
  • Interference-resilience testing
  • Receiver tracking evaluation
  • Complex electromagnetic simulation

Frequency, amplitude and timing parameters can be configured to reproduce changing RF environments.

 

High-Speed Interface Receiver Testing

The DG70000 can generate test patterns and controlled signal impairments for receiver validation.

Potential test applications include:

  • High-speed serial receiver testing
  • Clock and data recovery evaluation
  • Jitter tolerance testing
  • Eye-opening margin testing
  • Receiver sensitivity analysis
  • Pattern-dependent fault investigation
  • Worst-case signal simulation

Suitable optional software and high-speed connection accessories may be required for specific serial standards.

 

Complex Electromagnetic Environment Simulation

Multiple DG70000 channels can be used to generate dense, dynamic and repeatable signal environments.

This allows engineers to evaluate:

  • Receiver coexistence
  • Interference susceptibility
  • Anti-interference performance
  • System behaviour under multiple carriers
  • Frequency-hopping response
  • Communication performance in congested spectrum
  • Radar and electronic system performance

Repeatable waveform generation helps laboratories compare system performance under consistent test conditions.

 

High Signal Purity

RIGOL specifies spurious-free dynamic range as low as approximately −70 dBc, depending on output frequency and test conditions.

The series also provides low jitter, with published typical values including:

  • Total jitter down to approximately 10 ps
  • Random jitter down to approximately 350 fs

High signal purity supports:

  • Receiver sensitivity testing
  • Modulation quality analysis
  • Clock and timing applications
  • High-speed digital testing
  • Scientific signal generation
  • Low-distortion RF experiments
  •  

Multi-Channel Synchronisation

The DG70004 provides four synchronised channels in one instrument.

Multi-channel capability supports:

  • Phase-coherent signal generation
  • Multi-antenna simulation
  • Phased-array research
  • Multiple IQ signal paths
  • Quantum control experiments
  • Multi-lane interface testing
  • Multi-sensor simulation
  • Parallel system stimulation

Channel coupling and synchronisation functions allow related frequency, phase and amplitude parameters to be controlled together.

 

15.6-Inch 2K Touchscreen

The DG70000 includes a large 15.6-inch capacitive touchscreen with 2K resolution.

The display provides sufficient workspace for:

  • Waveform editing
  • Multi-channel configuration
  • Sequence creation
  • IQ signal setup
  • Frequency-hopping configuration
  • File management
  • Instrument status monitoring
  • Parameter comparison

The screen includes motorised viewing-angle adjustment, allowing users to adapt the display position for bench or rack operation.

 

UltraStation Software

RIGOL UltraStation software supports waveform creation, editing and transfer for DG70000 instruments.

Software capabilities can include:

  • Arbitrary waveform design
  • Sequence creation
  • IQ waveform generation
  • Communication waveform preparation
  • Data import and export
  • Multi-channel waveform setup
  • Instrument control
  • Waveform file management

Current software compatibility and available communication templates should be confirmed before ordering.

 

Applications:

  • Wireless communication testing
  • Wideband modulation testing
  • 5G and next-generation communication research
  • IQ signal generation
  • Radar waveform generation
  • Frequency-hopping simulation
  • Complex electromagnetic environment testing
  • Electronic countermeasure research
  • High-speed serial receiver testing
  • Semiconductor validation
  • Quantum technology research
  • Phased-array development
  • Multi-channel system simulation
  • Scientific research
  • Component characterisation
  • Production-line testing
  • Defence and aerospace research
  • University and advanced engineering laboratories
  •  

Why Buy from Revine Tech:

Revine Tech supplies advanced waveform generators, RF test instruments and electronic measurement equipment for communication, semiconductor, scientific and industrial applications.

Our technical team can help customers evaluate:

  • Two-channel or four-channel configuration
  • Required maximum output frequency
  • Native and interpolated sample-rate requirements
  • Waveform memory depth
  • IQ modulation bandwidth
  • Frequency-hopping requirements
  • Multi-channel synchronisation
  • Serial pattern generation
  • Waveform creation software
  • High-speed signal accessories
  • Remote-control integration
  • Calibration and documentation requirements

The final RIGOL DG70000 price depends on the selected model, memory configuration, software functions, accessories and calibration requirements.

 

Up to 5 GHz Output Frequency

The DG70000 Series generates signals from DC up to 5 GHz.

This frequency range supports baseband, intermediate-frequency and RF testing within one instrument.

 

Up to 12 GSa/s Sampling

The generator supports adjustable sampling up to 12 GSa/s through interpolation and digital processing.

Native arbitrary waveform creation and playback can operate up to 5 GSa/s.

 

16-Bit Vertical Resolution

The 16-bit waveform engine provides fine amplitude quantisation for high-fidelity signal generation.

 

Up to Four Output Channels

The DG70004 provides four output channels for complex, time-correlated and phase-related signal generation.

The DG70002 provides two channels for applications requiring fewer outputs.

 

Up to 1.5 Gpts Memory per Channel

Long waveform memory supports extended communication frames, radar patterns and complex test sequences.

 

Up to 4 Gpts Waveform-Table Capacity

Supported memory allocation modes can provide up to 4 Gpts of total waveform-table capacity when waveform resources are assigned to fewer active channels.

 

16,384 Sequence Segments

The sequence editor supports up to 16K waveform segments for long and complex signal profiles.

 

1.5 GHz Modulation Bandwidth

Wide modulation bandwidth supports modern broadband communication signals and advanced IQ testing.

 

Digital Upconversion

Digital upconversion allows baseband IQ waveforms to be shifted to a selected carrier frequency internally.

 

Fast Frequency Hopping

Frequency-hopping intervals can be as low as approximately 128 ns.

 

High Signal Purity

The instrument provides SFDR down to approximately −70 dBc under specified test conditions.

 

Low Jitter

Published typical timing performance includes total jitter down to approximately 10 ps and random jitter down to approximately 350 fs.

 

Narrow Pulse Generation

The high-speed sampling platform can reproduce pulse widths as low as approximately 400 ps under supported conditions.

 

Multi-Channel Phase Control

Multi-channel synchronisation supports phase-coherent signals, parallel test patterns and coordinated channel operation.

 

15.6-Inch 2K Display

The large touchscreen provides a wide editing and configuration area for complex multi-channel waveforms.

 

Motorised Display Adjustment

The viewing angle can be electronically adjusted for different laboratory and rack-mount positions.

 

Android-Based Operating Platform

The DG70000 uses an Android-based operating system with a touch-oriented user interface.

 

Web and Remote Control

The series supports remote programming and network-based control for automated laboratories and production systems.

Model Comparison

Model Maximum Output Frequency Channels Maximum Sample Rate Vertical Resolution Waveform Memory
DG70002 Up to 5 GHz 2 Up to 12 GSa/s 16 bits Up to 1.5 Gpts per channel
DG70004 Up to 5 GHz 4 Up to 12 GSa/s 16 bits Up to 1.5 Gpts per channel

 

General Technical Specifications

Specification Details
Product Series RIGOL DG70000 Series
Product Type High-performance arbitrary waveform generator
Available Models DG70002 and DG70004
Output Channels Two or four
Maximum Output Frequency Up to 5 GHz
Native Arbitrary Sample Rate Up to 5 GSa/s
Maximum Interpolated Sample Rate Up to 12 GSa/s
Adjustable Sample-Rate Range 100 Sa/s to 12 GSa/s, mode-dependent
Vertical Resolution 16 bits
Maximum Waveform Memory Up to 1.5 Gpts per channel
Maximum Waveform-Table Length Up to 4 Gpts in supported allocation modes
Sequence Segments Up to 16,384
Maximum Modulation Bandwidth Up to 1.5 GHz
Frequency-Hopping Interval As low as 128 ns
Spurious-Free Dynamic Range Down to approximately −70 dBc
Total Jitter As low as approximately 10 ps, typical
Random Jitter As low as approximately 350 fs, typical
Minimum Pulse Width Approximately 400 ps under supported conditions
Waveform Platform SiFi III
Operating System Android-based
Display 15.6-inch capacitive touchscreen
Display Resolution 2K
Screen Adjustment Motorised viewing-angle adjustment
Waveform Software UltraStation
Primary Applications Communication, radar, electromagnetic simulation, high-speed interface testing and scientific research

 

DG70004 Key Specifications

Specification DG70004
Maximum Output Frequency 5 GHz
Channels 4
Native Sample Rate Up to 5 GSa/s
Maximum Interpolated Sample Rate Up to 12 GSa/s
Vertical Resolution 16 bits
Waveform Memory Up to 1.5 Gpts per channel
Maximum Sequence Segments 16,384
Modulation Bandwidth Up to 1.5 GHz
Frequency-Hopping Interval Down to 128 ns
SFDR Down to approximately −70 dBc
Display 15.6-inch 2K touchscreen

 

Signal-Generation Capabilities

Function Capability
Arbitrary Waveform Generation High-speed, long-memory waveform playback
Sequence Generation Up to 16K waveform segments
IQ Modulation Supported
Digital Upconversion Supported
Frequency Hopping Supported
Communication Waveforms Supports wideband modulation workflows
High-Speed Serial Patterns Supported with applicable software functions
Multi-Channel Synchronisation Supported
Waveform Import Supported through instrument and software tools

 

Modulation and Communication Functions

Function Typical Use
IQ Modulation Wideband wireless signal generation
256QAM and 1024QAM Communication receiver and modulation testing
Digital Upconversion Internal baseband-to-carrier conversion
Frequency Hopping Frequency-agile and spread-spectrum testing
Sequence Mode Long and changing communication frames
Impairment Simulation Receiver margin and stress testing

 

Display and Software

Specification Details
Display Size 15.6 inches
Display Type Capacitive touchscreen
Resolution 2K
Viewing Angle Motorised adjustment
Waveform Editing Supported on instrument
PC Software UltraStation
Remote Programming Supported
File Import and Export Supported