PXIe-5160  high-performance PXI Express oscilloscope

Product model: PXIe-5160, available in two channels (PXIe-5160 (2 CH)) and four channels (PXIe-5160 (4 CH)), all channels can be sampled simultaneously.
Input type: Reference single-ended input using a BNC connector.
Analog bandwidth: up to 500 MHz.
Sampling rate: Up to 2.5 GS/s.
Vertical resolution: 10 bits.
Coupling mode: Support AC (AC) or DC (DC) coupling.
Input impedance: Software can choose between 50 Ω or 1 MΩ, typical values are 50 Ω ± 1.50% and 1 MΩ ± 0.75%, respectively.
Input capacitance: Typically 15 pF ± 0.8 pF.
Voltage level: depends on the selected input range.

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Description

PXIe-5160  high-performance PXI Express oscilloscope

Product Description

The PXIe-5160 from National Instruments (NI) is a high-performance PXI Express oscilloscope with the following detailed product specifications and features:

Product model: PXIe-5160, available in two channels (PXIe-5160 (2 CH)) and four channels (PXIe-5160 (4 CH)), all channels can be sampled simultaneously.
Input type: Reference single-ended input using a BNC connector.
Analog bandwidth: up to 500 MHz.
Sampling rate: Up to 2.5 GS/s.
Vertical resolution: 10 bits.
Coupling mode: Support AC (AC) or DC (DC) coupling.
Input impedance: Software can choose between 50 Ω or 1 MΩ, typical values are 50 Ω ± 1.50% and 1 MΩ ± 0.75%, respectively.
Input capacitance: Typically 15 pF ± 0.8 pF.
Voltage level: depends on the selected input range.
Spectral characteristics: For example, for input frequencies less than 10 MHz, the typical value of spury-free dynamic range (SFDR) is 56 dBc.
Storage depth: The onboard memory size is 64 MB or 2 GB, allowing a minimum record length of 1 sample.
Calibration: Supports external calibration and self-calibration, which can be done on software commands to correct for gain, offset, trigger, and timing errors.
Trigger type: Supports edge trigger, digital trigger, immediate trigger, and delayed trigger.
Synchronization: PXI synchronization and data streaming capabilities are supported, and some models also support CableSense™ technology for detecting and locating signal path problems.
Software support: NI-SCOPE IVI compatible drivers support LabVIEW, LabWindows™/CVI™, Measurement Studio, Microsoft Visual C/C++ and NET (C# and VB.NET) and other development environments.
Physical characteristics: A 3U height, 1 slot width PXI Express first-generation x4 module measuring 21.4 cm x 2.0 cm x 13.1 cm (8.4 in. X 0.8 in. X 5.1 in.) and weighing approximately 430 g (15 oz.).
Environmental characteristics: Operating temperature range 0 °C to 45 °C, storage temperature range -40 °C to 71 °C, non-condensing humidity of 10% to 90%.
The PXIe-5160 oscilloscope is suitable for high-speed signal applications, and its high-precision trigger circuit and synchronization capabilities make it ideal for laboratory and production test environments.

PXIe-5160

Product parameter

Product model: PXIe-5160, available in two channels (PXIe-5160 (2 CH)) and four channels (PXIe-5160 (4 CH)), all channels can be sampled simultaneously.
Input type: Reference single-ended input using a BNC connector.
Analog bandwidth: up to 500 MHz.
Sampling rate: Up to 2.5 GS/s.
Vertical resolution: 10 bits.
Coupling mode: Support AC (AC) or DC (DC) coupling.
Input impedance: Software can choose between 50 Ω or 1 MΩ, typical values are 50 Ω ± 1.50% and 1 MΩ ± 0.75%, respectively.
Input capacitance: Typically 15 pF ± 0.8 pF.
Voltage level: depends on the selected input range.

Application field

R&d testing: During the new product development phase, it is used to test and verify that the performance of electronic equipment meets the design specifications.
Manufacturing and Quality Control: Monitoring product performance on the production line to ensure that the product meets quality standards during manufacturing.
Aerospace: Monitoring and analysis of electronic system signals in aircraft, satellites or spacecraft.
Automotive electronics: Testing and validating electronic control units, sensors and communication systems in automobiles.
Semiconductor testing: Testing and characterization of high-speed signals during chip design and manufacturing.
The communications industry: Analyzes and tests signal integrity in communications equipment, including wireless signals and high-speed data transmission.
Medical equipment: Ensure that electronic components and life support systems in medical equipment are working properly.
Industrial automation: Monitoring signals in industrial control systems to improve production efficiency and safety.
Research education: in universities and research institutions, as a tool for studying high-speed electronic phenomena and teaching.
Defense and Military: Used in the military and defense field to test and monitor electronic systems with high reliability requirements.
Consumer electronics: Test signals in consumer electronics such as smartphones, computers and home appliances.
Power system: Monitor the signals in the power system to ensure the stability of the grid and the performance of the equipment.

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