Product Name:14-Bit PCI Oscilloscope Device
Brand Name:National Instruments
Model Number:PCI-5122
Country of Origin:USA
Warranty:12 Months
Whatsapp:+86 18159889985
Email:[email protected]
Brand Name: |
National Instruments |
Model Number: |
PCI-5122 |
Country of Origin: |
USA |
Packaging Details: |
Original new Factory Sealed |
Delivery Time: |
in stock |
Payment Terms: |
T/T |
|
Sales Manager: |
Stella |
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Send an email: |
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| Parameter | Specification |
|---|---|
| Product Model | PCI-5122 |
| Product Type | High-Speed Digitizer Module |
| Number of Channels | 2 Simultaneously Sampled Analog Input Channels |
| Input Connectors | BNC |
| Resolution | 14-bit |
| Real-Time Sampling Rate | 1.526 kS/s to 100 MS/s |
| Random Interleaved Sampling (RIS) | 200 MS/s to 2 GS/s |
| Analog Bandwidth | 100 MHz (80 MHz on 0.2 V range) |
| Input Impedance | Selectable 50 Ω ±2.0% or 1 MΩ ±0.75% |
| Input Coupling | AC, DC, GND (AC available on 1 MΩ input) |
| Full-Scale Input Ranges | 0.2 V, 0.4 V, 1 V, 2 V, 4 V, 10 V, 20 V (1 MΩ only) |
| Maximum Input Overload | 7 Vrms (50 Ω), ±42 V Peak (1 MΩ) |
| AC Amplitude Accuracy | ±0.06 dB (50 Ω), ±0.09 dB (1 MΩ) at 50 kHz |
| Crosstalk | ≤ -100 dB at 10 MHz |
| Rise/Fall Time | 3.5 ns typical (4.2 ns on 0.2 V range) |
| Sample Clock Timebase | 100 MHz |
| Sample Clock Jitter | ≤1 ps RMS (100 Hz to 100 kHz) |
| Trigger Types | Edge, Window, Hysteresis, Video, Digital, Immediate, Software |
| Trigger Sources | CH0, CH1, TRIG, PXI Trigger, PFI, Software |
| Onboard Memory Options | 8 MB, 64 MB, 256 MB |
| Maximum Records in Memory | Up to 100,000 Records |
| Calibration Interval | 2 Years |
| Warm-Up Time | 15 Minutes |
| Power Consumption | 29.28 W Typical, 33.12 W Maximum |
| Operating Temperature | 0°C to 45°C |
| Storage Temperature | -40°C to 71°C |
| Relative Humidity | 10% to 90% Non-Condensing |
| Dimensions (W × H × D) | 21.3 × 2.0 × 13.0 cm (8.4 × 0.8 × 5.1 in.) |
| Weight | 453 g (16.0 oz) |
| Mounting Format | 3U Single-Slot PXI Express Module |
| Software Support | NI-SCOPE, LabVIEW, LabWindows/CVI, Measurement Studio, .NET, Visual C/C++ |
| Compliance Standards | IEC 61010-1, UL 61010-1, EN 61326-1, EN 55011, EN 55022 |
| Application Category | High-Speed Data Acquisition, Signal Analysis, Automated Test and Measurement Systems |
The PCI-5122 high-speed digitizer is a precision data acquisition module engineered for advanced signal analysis, waveform capture, and automated test applications. Featuring dual simultaneously sampled analog input channels and 14-bit resolution, the PCI-5122 delivers accurate measurement performance for demanding laboratory, industrial, and research environments.
Designed with a maximum real-time sampling rate of 100 MS/s and bandwidth up to 100 MHz, the PCI-5122 enables reliable acquisition of fast-changing electrical signals. Its flexible input impedance selection, programmable vertical ranges, and advanced triggering capabilities allow engineers to perform detailed signal characterization across a wide variety of test scenarios.
The PCI-5122 is widely deployed in automated testing systems, industrial monitoring platforms, communications analysis, and electronic development applications. Its robust architecture, high dynamic performance, and compatibility with NI measurement software make it a trusted solution for precision data acquisition and waveform analysis.
Q1: What is the PCI-5122 used for?
A1: The PCI-5122 is used for high-speed signal acquisition, waveform analysis, and automated electronic testing.
Q2: How many input channels does the PCI-5122 provide?
A2: The module features two simultaneously sampled analog input channels.
Q3: What is the maximum sampling rate of the PCI-5122?
A3: It supports up to 100 MS/s real-time sampling and 2 GS/s in RIS mode.
Q4: What bandwidth does the PCI-5122 offer?
A4: The digitizer provides bandwidth up to 100 MHz depending on the selected input range.
Q5: Which software platforms support the PCI-5122?
A5: The module is supported by NI-SCOPE, LabVIEW, LabWindows/CVI, .NET, and other National Instruments development environments.
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