P94812B RF AWG

P94812B RF AWG

The Tabor P94812B RF AWG is a high performance benchtop RF arbitrary waveform generator designed for advanced signal generation and real time RF experimentation. With a 9GS/s sampling rate, 16-bit resolution, and 12 independent channels, it enables engineers and researchers to create complex waveform scenarios for Electronic Warfare simulation, quantum computing, radar testing, and next generation wireless communication development.

Built on advanced SDR architecture, this system does more than generate signals. It can listen, process, and react instantly through its integrated real time feedback control system. The result is a responsive RF platform capable of handling demanding applications that require precision, speed, and intelligent waveform sequencing.

Key Features

  • 9GS/s high speed sampling for precise RF waveform generation
  • 16-bit vertical resolution for high signal accuracy
  • 12 independent output channels for complex multi-channel systems
  • 24 programmable markers for precise synchronization
  • 8GS waveform memory expandable up to 16GS
  • High speed PCIe data transfer architecture
  • Integrated digital IQ modulators and demodulators
  • Real time FPGA feedback for conditional waveform control
  • Excellent phase noise and spurious signal performance
  • Task table sequencing for intelligent waveform transitions
  • Optional streaming capability up to 3GS/s
  • Compatible with Python, MATLAB, C, and LabVIEW

 

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Description

P94812B RF AWG Performance and Signal Generation

The Tabor P94812B RF AWG delivers exceptional performance for engineers who need precise and flexible RF waveform generation. With a 9GS/s sampling rate and 16-bit resolution, the instrument produces high fidelity signals that closely replicate real RF environments. The twelve output channels and twenty four programmable markers allow users to design synchronized multi channel experiments and advanced signal scenarios.

This powerful benchtop platform is part of the Proteus family of RF instruments. It combines waveform generation, signal processing, and responsive feedback within a single architecture. The system is widely used in Electronic Warfare simulation, radar development, quantum computing research, and high speed wireless communications testing.

Modular and Scalable Architecture

The P94812B RF AWG is built with a modular architecture that supports scalable channel configurations. Engineers can begin with a smaller system and expand to larger multi channel setups while maintaining precise phase coherence. This flexibility is especially valuable in laboratories and research environments where test requirements grow over time.

The compact benchtop design also helps optimize laboratory space while delivering enterprise level performance. The architecture supports synchronized operation across many channels, which is ideal for applications such as massive MIMO development, large scale qubit control systems, and complex RF simulation environments.

Real Time Feedback Capability

One of the most powerful capabilities of the P94812B RF AWG is its integrated real time feedback system. By combining the waveform generator and digitizer functions within a single FPGA controlled platform, the system can analyze incoming signals and immediately adjust its output response.

This capability eliminates the delay that occurs when signals must be sent to a computer for processing. The result is extremely low latency conditional waveform generation that is essential for closed loop Electronic Warfare systems, radar target simulation, and dynamic RF testing.

Intelligent Waveform Sequencing

The P94812B RF AWG includes a sophisticated task table sequencing engine that enables intelligent waveform control. Instead of simple linear playback, the instrument can switch between waveform segments based on triggers or measured signals.

In radar testing environments, this allows the instrument to function as a realistic radar target simulator. The system can detect incoming pulses and generate delayed or Doppler shifted echoes to simulate moving targets. Developers can program these advanced behaviors using familiar tools such as Python, MATLAB, C, or LabVIEW.

Technical Specifications

Parameter Specification
Model P94812B
Instrument Type RF Arbitrary Waveform Generator
Sampling Rate 9GS/s
Resolution 16-bit
Output Channels 12
Markers 24
Standard Memory 8GS
Maximum Memory Up to 16GS
Architecture Advanced SDR based RF platform
Data Interface High speed PCIe
Streaming Capability Up to 3GS/s optional
Digital IQ Modulation Integrated
Feedback System FPGA based real time feedback
Trigger Input 10 MHz standard, optional 50 MHz
Programming Support Python, MATLAB, C, LabVIEW
Warranty 3 years standard

 

 

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Additional information

Weight 20 lbs
Dimensions 316 × 175 × 235 mm
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