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Oscilloscopes

NI Oscilloscopes: Advanced Signal Analysis for Test and Measurement

NI Oscilloscopes provide engineers, researchers, and manufacturers with high-performance tools for capturing, analyzing, and processing electronic signals. Designed for high-speed data acquisition, real-time waveform monitoring, and automated testing, these oscilloscopes ensure precise signal integrity for a wide range of applications.

Built for seamless integration with NI PXI and CompactDAQ platforms, NI Oscilloscopes offer flexible configurations, high-resolution data capture, and software-defined analysis capabilities. Whether for electronics testing, RF signal analysis, or industrial diagnostics, these oscilloscopes deliver reliable performance and advanced features tailored to modern test requirements.

Key Benefits of NI Oscilloscopes

  1. High-Speed Signal Capture and Analysis
    Provides fast waveform acquisition with high bandwidth and resolution, ensuring accurate signal representation.

  2. Seamless Integration with NI Test Platforms
    Works efficiently with NI PXI, CompactDAQ, and LabVIEW for streamlined testing and data processing.

  3. Real-Time Monitoring and Data Processing
    Enables dynamic waveform analysis, automated diagnostics, and adaptive signal measurement.

  4. Software-Defined Flexibility for Various Applications
    Allows users to configure measurements, apply advanced signal processing, and automate test sequences.

  5. Reliable and Scalable for Industrial and Research Use
    Designed for long-term stability, making it suitable for demanding test environments and production facilities.

Applications of NI Oscilloscopes

  • Electronics and Semiconductor Testing – Measuring high-frequency signals, transient responses, and component characteristics
  • RF and Wireless Communications Analysis – Capturing and analyzing radio frequency waveforms, signal integrity, and modulation patterns
  • Automotive and Aerospace Engineering – Conducting real-time diagnostics for embedded systems, power electronics, and control modules
  • Medical and Biomedical Research – Monitoring bioelectrical signals, medical imaging waveforms, and sensor output in research applications
  • Industrial Process Monitoring and Automation – Ensuring stable performance in automated production lines, power systems, and control systems

Enhance Your Signal Analysis with NI Oscilloscopes

NI Oscilloscopes provide unmatched precision, flexibility, and reliability for advanced signal measurement applications. Whether for research, product development, or industrial diagnostics, these oscilloscopes ensure high-performance waveform analysis and seamless integration with NI platforms.

Contact us today to explore our selection of NI Oscilloscopes and find the perfect solution for your test and measurement needs.

Bus Connector: PCI.Oscilloscope Maximum Bandwidth: 60 MHz.Maximum Sample Rate: 60 MS/s.Number of Voltage Input Channels: 8.Analog Input Resolution: 12 bits.Oscilloscope OnBoard Memory Size: 16 MB.Analog Input Voltage Range: -15 V to 15 V.Onboard Digital Downconverter: No.Enclosed: Yes...
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Bus Connector: PCI.Oscilloscope Maximum Bandwidth: 125 MHz.Maximum Sample Rate: 250 MS/s.Number of Voltage Input Channels: 2.Analog Input Resolution: 8 bits.Oscilloscope OnBoard Memory Size: 8 MB/ch.Analog Input Voltage Range: -20 V to 20 V.Onboard Digital Downconverter: No.Enclosed: Yes...
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Bus Connector: PCI.Oscilloscope Maximum Bandwidth: 300 MHz.Maximum Sample Rate: 2 GS/s.Number of Voltage Input Channels: 2.Analog Input Resolution: 8 bits.Oscilloscope OnBoard Memory Size: 8 MB/ch.Analog Input Voltage Range: -5 V to 5 V.Onboard Digital Downconverter: No.Enclosed: Yes...
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Bus Connector: PCI.Oscilloscope Maximum Bandwidth: 500 MHz.Maximum Sample Rate: 2 GS/s.Number of Voltage Input Channels: 2.Analog Input Resolution: 8 bits.Oscilloscope OnBoard Memory Size: 8 MB/ch.Analog Input Voltage Range: -2.5 V to 2.5 V.Onboard Digital Downconverter: No.Enclosed: Yes...
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Bus Connector: PCI.Oscilloscope Maximum Bandwidth: 1 GHz.Maximum Sample Rate: 2 GS/s.Number of Voltage Input Channels: 2.Analog Input Resolution: 8 bits.Oscilloscope OnBoard Memory Size: 8 MB/ch.Analog Input Voltage Range: -2.5 V to 2.5 V.Onboard Digital Downconverter: No.Enclosed: Yes...
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Bus Connector: PXI.Oscilloscope Maximum Bandwidth: 500 MHz.Maximum Sample Rate: 2 GS/s.Number of Voltage Input Channels: 2.Analog Input Resolution: 8 bits.Oscilloscope OnBoard Memory Size: 8 MB/ch.Analog Input Impedance: 50 Ohm.Analog Input Voltage Range: -2.5 V to 2.5 V.FPGA: —...
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Bus Connector: PXI.Oscilloscope Maximum Bandwidth: 1 GHz.Maximum Sample Rate: 2 GS/s.Number of Voltage Input Channels: 2.Analog Input Resolution: 8 bits.Oscilloscope OnBoard Memory Size: 8 MB/ch.Analog Input Impedance: 50 Ohm.Analog Input Voltage Range: -2.5 V to 2.5 V.FPGA: —...
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Bus Connector: PXIe.Oscilloscope Maximum Bandwidth: 60 MHz.Maximum Sample Rate: 60 MS/s.Number of Voltage Input Channels: 8.Analog Input Resolution: 12 bits.Oscilloscope OnBoard Memory Size: 16 MB.Analog Input Impedance: 50 Ohm, 1 MOhm.Analog Input Voltage Range: -15 V to 15 V.FPGA: —...
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Bus Connector: PXIe.Oscilloscope Maximum Bandwidth: 125 MHz.Maximum Sample Rate: 250 MS/s.Number of Voltage Input Channels: 2.Analog Input Resolution: 8 bits.Oscilloscope OnBoard Memory Size: 16 MB.Analog Input Impedance: 50 Ohm, 1 MOhm.Analog Input Voltage Range: -20 V to 20 V.FPGA: —...
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Bus Connector: PXIe.Oscilloscope Maximum Bandwidth: 500 MHz.Maximum Sample Rate: 2.5 GS/s.Number of Voltage Input Channels: 2.Analog Input Resolution: 10 bits.Oscilloscope OnBoard Memory Size: 64 MB.Analog Input Impedance: 50 Ohm, 1 MOhm.Analog Input Voltage Range: -25 V to 25 V.FPGA: —...
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Bus Connector: PXIe.Oscilloscope Maximum Bandwidth: 1.5 GHz.Maximum Sample Rate: 5 GS/s.Number of Voltage Input Channels: 2.Analog Input Resolution: 10 bits.Oscilloscope OnBoard Memory Size: 64 MB.Analog Input Impedance: 50 Ohm, 1 MOhm.Analog Input Voltage Range: -25 V to 25 V.FPGA: —...
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Bus Connector: PXIe.Oscilloscope Maximum Bandwidth: 400 MHz.Maximum Sample Rate: 1 GS/s.Number of Voltage Input Channels: 2.Analog Input Resolution: 14 bits.Oscilloscope OnBoard Memory Size: 2 GB.Analog Input Impedance: 50 Ohm, 1 MOhm.Analog Input Voltage Range: 0 V to 100 V.FPGA: —...
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