Description
The NI PXIe-5185 is identified by its part number 152962A-01L and falls under the category of PXI Oscilloscopes/Digitizers. This model, the PXIe-5185, is a high-performance digitizer offering a sampling rate of 12.5 GS/s and a bandwidth of 3 GHz. It features a memory depth of 16 MB per channel and supports both 50 ohm and 1 Mohm impedance paths.
Alternative part numbers for this device include 782057-01 and 782057-02, providing flexibility in sourcing components. The analog performance of the PXIe-5185 is optimized for automated test applications, ensuring reliable and efficient operation. With data throughput capabilities higher than 700 MB/s, this digitizer is designed to handle demanding data acquisition tasks.
Signal accuracy is described as superior, with low phase noise, contributing to high-quality measurements. The effective number of bits (ENOB) is less than 6 at 3 GHz, indicating precision in signal conversion. A built-in self-calibration feature ensures ongoing accuracy and performance.
The PXIe-5185 is equipped with two analog channels, allowing for simultaneous signal acquisition from multiple sources. Its vertical resolution is 8-bit wide, and it offers a flexible input range from 110 mV to 1 V full scale, accommodating a variety of signal types. This digitizer is an essential tool for engineers requiring high-speed data acquisition and analysis in complex systems.
| Specification | Detail |
|---|---|
| Part Number | 152962A-01L |
| Category | PXI Oscilloscopes/Digitizers |
| Model | PXIe-5185 |
| Description | NI PXIe-5185, 12.5 GS/s, 3 GHz Digitizer, 16 MB/ch, 50 ohm/1 Mohm |
| Alternative Part Numbers | 782057-01, 782057-02 |
| Analog Performance | Optimized for automated test applications |
| Data Throughput | Higher than 700 MB/s |
| Signal Accuracy | Superior |
| Phase Noise | Low |
| Effective Number of Bits | <6 at 3 GHz |
| Self-Calibration | Built-in |
| Analog Channels | 2 |
| Impedance Path | 50 ohm / 1 Mohm |
| Vertical Resolution | 8-bit wide |
| Input Range | 110 mV to 1 V full scale |




