Description
The National Instruments NI-5791 RF Adapter Module for FlexRIO, part number 782510-01, integrates CLIP (Component-Level Intellectual Property) technology and is tailored for use with National Instruments PXIe-796xR FPGA modules. This module features a dual-channel ADC with a sample rate of 130 MS/s and a resolution of 14-bit, as well as an included DAC.
It supports LO sharing with dedicated input/output connectors and offers various clocking options with an enabled timing chip. Users can benefit from its programmable attenuators and selectable receiving/transmitting filters for enhanced signal control and management.
Connectivity is facilitated through 50 Ω SMA connectors, ensuring compatibility with standard cables. The NI-5791 is capable of handling RF signals within a frequency range of 0.2 GHz to 4.4 GHz, and for accessing PFI/DIO signals, it requires the SHH19-H19-AUX cable (part numbers 152629-01 or 152629-02).
Specification | Details |
---|---|
Part Number | 782510-01 |
Product Name | National Instruments NI-5791 RF Adapter Module for FlexRIO |
Technology | CLIP (Component-Level Intellectual Property) |
Compatibility | National Instruments PXIe-796xR FPGA modules |
ADC Channels | 2-channel ADC |
ADC Sample Rate | 130 MS/s |
ADC Resolution | 14-bit |
DAC Included | Yes |
LO Sharing | Dedicated LO input/output connectors |
Clocking Options | Enabled timing chip |
Attenuators | Programmable attenuators |
Filters | Selectable receiving/transmitting filters |
Connector Type | 50 Ω SMA |
RF Frequency Range | 0.2 GHz to 4.4 GHz |
Required Cable for PFI/DIO Access | SHH19-H19-AUX (Part Numbers: 152629-01 or 152629-02) |
Question 1: What clocking options are available with the National Instruments NI-5791 RF Adapter Module, and how does it support LO sharing?
Answer 1: The National Instruments NI-5791 RF Adapter Module offers various clocking options enabled by an onboard timing chip, and it supports Local Oscillator (LO) sharing through dedicated input/output connectors, allowing for synchronized operation with other RF devices.
Question 2: Would the National Instruments NI-5791 RF Adapter Module for FlexRIO, with its dual-channel ADC and DAC capabilities, be compatible with standard RF signal-related cables given its 50 Ω SMA connectors?
Answer 2: Yes, the National Instruments NI-5791 RF Adapter Module for FlexRIO would be compatible with standard RF signal-related cables due to its 50 Ω SMA connectors.
Question 3: What are the primary features and connectivity options of the National Instruments NI-5791 RF Adapter Module for FlexRIO, part number 782510-01?
Answer 3: The National Instruments NI-5791 RF Adapter Module for FlexRIO features a dual-channel ADC with a 130 MS/s sample rate and 14-bit resolution, a DAC, programmable attenuators, selectable receiving/transmitting filters, LO sharing, various clocking options, and 50 Ω SMA connectors, supporting RF signals within the 0.2 GHz to 4.4 GHz frequency range; accessing PFI/DIO signals requires the SHH19-H19-AUX cable,
Question 4: What are the capabilities and connectivity features of the National Instruments NI-5791 RF Adapter Module for FlexRIO, part number 782510-01?
Answer 4: The National Instruments NI-5791 RF Adapter Module for FlexRIO, part number 782510-01, offers primary features such as a dual-channel ADC with a 130 MS/s sample rate and 14-bit resolution, a DAC, CLIP technology, programmable attenuators, selectable receiving/transmitting filters, and LO sharing capabilities. For connectivity, it includes 50 Ω SMA connectors for standard cables and uses an SHH19-H19-AUX cable for accessing PFI/D
Question 5: What are the key features and frequency range supported by the National Instruments NI-5791 RF Adapter Module for FlexRIO, and what is required for accessing PFI/DIO signals?
Answer 5: The National Instruments NI-5791 RF Adapter Module for FlexRIO, part number 782510-01, is equipped with dual-channel ADCs with a 130 MS/s sample rate and 14-bit resolution, includes DAC, and supports LO sharing with dedicated connectors. It offers programmable attenuators, selectable filters for signal control, various clocking options with a timing chip, and uses 50 Ω SMA connectors for connectivity. It can handle RF signals from 0.2 GHz to