Description
The National Instruments PCI-5114 Oscilloscope is a robust measurement tool that features 2 simultaneous sampled input channels with an 8-bit resolution, providing a high sampling rate of 250 MS/s per channel across a 125 MHz bandwidth. This oscilloscope is designed as a 3U PCI device, accommodating a maximum of 256 MB of memory per channel, and offers various part numbers to suit different memory requirements: 779745-01 with 8 MB/ch, 779745-02 with 64 MB/ch, and 779745-03 with 256 MB/ch.
Equipped with a high-performance DMA engine for efficient data transfer, the PCI-5114 ensures smooth operation with its self-calibration feature, which can be triggered via software command. For signals that occur repetitively, it provides an impressive Equivalent-Time Sampling (ETS) rate of 5 GS/s. Users can select an input range from 40 mVpp to 40 Vpp per channel, and an input impedance of either 50 Ω or 1 MΩ, depending on the requirements of their measurement tasks.
In terms of capturing data, the oscilloscope excels with its Multiple Record Mode, capable of recording more than 1 million triggered waveforms with hardware trigger rearming, making it ideal for complex data acquisition scenarios. This level of performance is maintained through a dedicated maintenance phase, ensuring long-term reliability and support for users.
Question 1: What are the input impedance options offered by the National Instruments PCI-5114 Oscilloscope for adapting to different measurement requirements?
Answer 1: The National Instruments PCI-5114 Oscilloscope offers three memory options based on its part numbers: 779745-01 with 8 MB per channel, 779745-02 with 64 MB per channel, and 779745-03 with 256 MB per channel.
Question 2: What capabilities does the National Instruments PCI-5114 Oscilloscope offer in terms of input channels, memory options, and data capture functionality?
Answer 2: The National Instruments PCI-5114 Oscilloscope offers input impedance options of either 50 Ω or 1 MΩ to accommodate different measurement requirements.
Question 3: What is the input impedance range and the available part numbers for the National Instruments PCI-5114 Oscilloscope, which features 2 simultaneous sampled input channels with 8-bit resolution?
Answer 3: The National Instruments PCI-5114 Oscilloscope offers 2 simultaneous sampled input channels with an 8-bit resolution, memory options of 8 MB, 64 MB, and 256 MB per channel corresponding to part numbers 779745-01, 779745-02, and 779745-03 respectively, and advanced data capture functionality with its Multiple Record Mode capable of recording over 1 million triggered waveforms.
Question 4: What type of input impedance options does the National Instruments PCI-5114 Oscilloscope offer for accommodating different measurement requirements?
Answer 4: The National Instruments PCI-5114 Oscilloscope offers input impedance options of either 50 Ω or 1 MΩ to accommodate different measurement requirements.
Question 5: What are the different memory options available for the National Instruments PCI-5114 Oscilloscope based on its part numbers?
Answer 5: The input impedance range for the National Instruments PCI-5114 Oscilloscope is either 50 Ω or 1 MΩ, and the available part numbers for different memory configurations are 779745-01 with 8 MB/ch, 779745-02 with 64 MB/ch, and 779745-03 with 256 MB/ch.
Feature | Specification |
---|---|
Product Name | National Instruments PCI-5114 Oscilloscope |
Number of Channels | 2 simultaneous sampled input channels |
Resolution | 8-bit |
Sampling Rate | 250 MS/s per channel |
Bandwidth | 125 MHz |
Maximum Memory per Channel | 256 MB |
Form Factor | 3U PCI device |
Part Numbers (Onboard Memory Size) | 779745-01 (8 MB/ch), 779745-02 (64 MB/ch), 779745-03 (256 MB/ch) |
Data Transfer Technology | High-performance DMA engine |
Self-Calibration | Available on software command |
Equivalent-Time Sampling (ETS) | 5 GS/s for repetitive signals |
Input Range (Selectable per Channel) | 40 mVpp to 40 Vpp |
Input Impedance (Selectable per Channel) | 50 Ω or 1 MΩ |
Multiple Record Mode | More than 1 million triggered waveforms with hardware trigger rearming |
Maintenance Phase Start Date |