An NI Partner is a business entity independent from NI and has no agency or joint-venture relationship and does not form part of any business associations with NI.
An NI Partner is a business entity independent from NI and has no agency or joint-venture relationship and does not form part of any business associations with NI.
NI voltage products provide voltage measurement and signal generation for control and electrical signaling applications. They support a wide range of voltage levels and include options for industrial and hazardous environments. When integrated into a PXI modular platform, they enable scalable, automated test systems with precise timing and synchronization.
FPGA-equipped multifunction I/O hardware enables you to completely control the synchronization and timing of all signals and operations along with custom onboard decision-making that executes with hardware-timed speed and reliability.
Many NI voltage devices offer simultaneous sampling capabilities. With this sampling technology, the device can sample from all channels at the same time.
NI voltage hardware includes options that support voltage ranges up to ±600 V. You can also find options with a variety of isolation methods for the analog inputs to prevent transient voltages from damaging your system.
A multifunction I/O device combines flexible channels, sample rates, and outputs for reliable data acquisition and control. Ideal for a wide variety of industry applications such as laboratory automation, research, and design verification, they can be used to:
A C Series Voltage Input Module is a modular DAQ device designed to measure voltage signals from sensors, transducers, or directly from electrical systems. Available in a variety of channel counts, voltage ranges (±10 V, ±60 V, ±300 V, and more), and resolutions (12-bit to 24-bit) and compatible with NI CompactDAQ and CompactRIO chassis, it can be used for:
All NI branded multifunction I/O hardware without a user-programmable FPGA is programmed using the NI-DAQmx driver, which includes APIs for LabVIEW and other text-based programming languages. These devices can also be used with NI FlexLogger for no-code data logging and visualization.
FPGA-equipped devices require the LabVIEW FPGA Module for full programming and customization.
Voltage products measure and generate electrical signals for validating circuits, controlling devices, and monitoring system performance. Engineers use them in functional testing, industrial automation, and electrical signaling in communication hardware to ensure accuracy and reliability under real-world conditions.
For voltage measurement devices, key specifications of importance to engineers include voltage range, resolution, accuracy, stability, and sampling rate, along with isolation for safety, channel count for multipoint testing, and compliance with industrial standards. For voltage generation devices, engineers look at output voltage range, resolution, accuracy, update rate, output drive capability, and signal quality to ensure clean, reliable outputs, as well as isolation and safety certifications for hazardous environments. Across both categories, integration with PXI modular systems and compatibility with NI software tools like LabVIEW and TestStand are critical for building scalable, automated test workflows.
Yes. Select NI voltage measurement and generation instruments are built for demanding industrial and hazardous environments. Many include reinforced isolation, extended operating ranges, and compliance with safety standards to ensure reliable performance in harsh conditions.
NI voltage instruments deliver high precision, deterministic timing, and fast response for demanding test applications. NI PXI modular hardware configuration enables scalable, synchronized systems while seamless integration with NI software provides automated control, data logging, and analysis, reducing manual effort and improving test efficiency.
NI voltage hardware includes NI FieldDAQ devices that are suited for outdoor and other extreme environments. These devices can withstand up to 100 Gs of shock yet offer high-performance data acquisition.