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FlexRIO Custom Instruments and Processing

NI FlexRIO Custom Instruments and Processing: Scalable Solutions for Advanced Testing

NI FlexRIO Custom Instruments and Processing solutions provide engineers and researchers with the flexibility to develop high-performance, application-specific measurement and processing systems. By combining field-programmable gate array (FPGA) technology with high-speed data acquisition, these solutions enable real-time signal analysis, rapid prototyping, and customized test setups for demanding applications.

Designed for seamless integration with NI PXI systems, NI FlexRIO allows users to create custom instruments tailored to unique test and measurement requirements. Whether for radar signal processing, wireless communications testing, or hardware-in-the-loop (HIL) simulation, these solutions deliver the performance, speed, and adaptability needed for cutting-edge research and industrial applications.

Key Benefits of NI FlexRIO Custom Instruments

  1. High-Speed Data Acquisition and Real-Time Processing
    Provides ultra-fast signal capture and analysis, enabling precision measurement for complex applications.

  2. Custom FPGA Processing for Application-Specific Needs
    Allows users to develop and implement custom signal processing algorithms directly on FPGA hardware.

  3. Seamless Integration with NI PXI and LabVIEW
    Ensures compatibility with industry-standard platforms for efficient test execution and automation.

  4. Scalable and Modular Design
    Supports multiple I/O configurations, making it adaptable for various test environments.

  5. Reliable and Robust for Industrial and Research Applications
    Built for demanding applications in aerospace, automotive, semiconductor, and communication industries.

Applications of NI FlexRIO Custom Instruments and Processing

  • Wireless Communications Testing – Simulating and analyzing high-frequency RF signals for 5G and beyond
  • Radar and Electronic Warfare Systems – Enabling real-time signal processing for defense and aerospace applications
  • Semiconductor Validation and Testing – Ensuring precision measurement and characterization of high-speed electronic components
  • Hardware-in-the-Loop (HIL) Simulation – Creating advanced real-time simulation systems for automotive and embedded applications
  • Scientific and Medical Research – Supporting high-resolution imaging, spectroscopy, and biomedical signal processing

Enhance Your Testing Capabilities with NI FlexRIO Custom Instruments

NI FlexRIO Custom Instruments and Processing solutions offer unmatched flexibility, speed, and accuracy for high-performance test and measurement applications. Whether developing custom instruments, processing real-time signals, or validating next-generation technologies, NI FlexRIO provides the tools needed for success.

Contact us today to explore our selection of NI FlexRIO products and find the perfect solution for your advanced testing and signal processing needs.

Number of Voltage Input Channels: 2.Maximum Sample Rate: 40 MS/s.Analog Input Resolution: 12 bits.Analog Input Coupling: AC/DC.Analog Input Bandwidth: 120 MHz.Analog Input Voltage Range: -1 V to 1 V.Compatible FPGA: Virtex-5...
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Number of Voltage Input Channels: 2.Maximum Sample Rate: 80 MS/s.Analog Input Resolution: 14 bits.Analog Input Coupling: AC/DC.Analog Input Bandwidth: 110 MHz.Analog Input Voltage Range: 0 Vpp to 2 Vpp.Compatible FPGA: Kintex-7, Virtex-5...
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Number of Voltage Input Channels: 2.Maximum Sample Rate: 120 MS/s.Analog Input Resolution: 16 bits.Analog Input Coupling: AC/DC.Analog Input Bandwidth: 120 MHz.Analog Input Voltage Range: -1 V to 1 V.Compatible FPGA: Kintex-7, Virtex-5...
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Number of Voltage Input Channels: 4.Maximum Sample Rate: 120 MS/s.Analog Input Resolution: 16 bits.Analog Input Coupling: AC/DC.Analog Input Bandwidth: 117 MHz.Analog Input Voltage Range: -1 V to 1 V.Compatible FPGA: Kintex-7, Virtex-5...
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Number of Analog Output Channels: 16.Maximum Update Rate: 1 MS/s.Analog Output Voltage Range: -2.5 V to 2.5 V.Analog Output Resolution: 16 bits.Output Impedance: —.Compatible FPGA: Kintex-7, Virtex-5...
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Number of Analog Output Channels: 32.Maximum Update Rate: 1 MS/s.Analog Output Voltage Range: -2.5 V to 2.5 V.Analog Output Resolution: 16 bits.Output Impedance: —.Compatible FPGA: Kintex-7, Virtex-5...
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Number of Voltage Input Channels: 16.Maximum Sample Rate: 50 MS/s.Analog Input Resolution: 14 bits.Analog Input Coupling: DC.Analog Input Bandwidth: 26 MHz.Analog Input Voltage Range: -1 V to 1 V.Compatible FPGA: Virtex-5...
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Number of Voltage Input Channels: 16.Maximum Sample Rate: 50 MS/s.Analog Input Resolution: 14 bits.Analog Input Coupling: DC.Analog Input Bandwidth: 26 MHz.Analog Input Voltage Range: -1 V to 1 V.Compatible FPGA: Kintex-7, Virtex-5...
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Number of Voltage Input Channels: 32.Maximum Sample Rate: 50 MS/s.Analog Input Resolution: 12 bits.Analog Input Coupling: AC.Analog Input Bandwidth: 14 MHz.Analog Input Voltage Range: -1 V to 1 V.Compatible FPGA: Virtex-5...
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Number of Voltage Input Channels: 32.Maximum Sample Rate: 50 MS/s.Analog Input Resolution: 12 bits.Analog Input Coupling: AC.Analog Input Bandwidth: 14 MHz.Analog Input Voltage Range: -1 V to 1 V.Compatible FPGA: Kintex-7, Virtex-5...
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Number of Voltage Input Channels: 12.Maximum Sample Rate: 120 MS/s.Analog Input Resolution: 16 bits.Analog Input Coupling: DC.Analog Input Bandwidth: 117 MHz.Analog Input Voltage Range: -0.45 V to 0.45 V.Compatible FPGA: Kintex-7, Virtex-5...
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Number of Voltage Input Channels: 4.Maximum Sample Rate: 250 MS/s.Analog Input Resolution: 14 bits.Analog Input Coupling: DC.Analog Input Bandwidth: 500 MHz.Analog Input Voltage Range: -0.6 V to 0.6 V.Compatible FPGA: Kintex-7, Virtex-5...
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