PXIe-5820

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$77,793.00

NI PXIe-5820, 50 MHz, 1 GHz I/Q Bandwidth, Baseband PXI Vector Signal Transceiver

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National Instruments PXIe-5820 500 MHz, 1 GHz I/Q Bandwidth Baseband PXI Vector Signal Transceiver

The NI PXIe-5820 is a wideband baseband PXI Vector Signal Transceiver (VST) designed for generating and analyzing complex I/Q signals. It combines an I/Q digitizer, I/Q arbitrary waveform generator and user-programmable FPGA in a two-slot PXI Express module.

With a DC to 500 MHz frequency range, 1 GHz complex I/Q bandwidth and 1.25 GS/s ADC and DAC sample rates, the PXIe-5820 is suitable for baseband wireless chipset testing, power-amplifier envelope tracking, digital predistortion and advanced communications research.

Key Features of the NI PXIe-5820

  • Baseband PXI Vector Signal Transceiver
  • DC to 500 MHz baseband frequency range
  • 1 GHz complex I/Q bandwidth
  • Wideband I/Q signal generation and analysis
  • 14-bit, 1.25 GS/s analog-to-digital converters
  • 16-bit, 1.25 GS/s digital-to-analog converters
  • Flexible I/Q data rates from approximately 19 kS/s to 1.25 GS/s
  • Xilinx Virtex-7 X690T user-programmable FPGA
  • Two 2 GB FPGA-accessible DRAM banks
  • Eight programmable LVCMOS digital I/O lines
  • Four high-speed serial transmit and receive lanes
  • Peer-to-peer data streaming support
  • Hardware triggering and PXI synchronization
  • Two-slot PXI Express form factor
  • NI-RFSA, NI-RFSG and RFmx software support

PXIe-5820 Technical Specifications

Product ModelPXIe-5820
Product TypeBaseband PXI Vector Signal Transceiver
Part Numbers783967-01, 789179-01 and 789180-01
I/O TypeComplex baseband I/Q
Frequency RangeDC to 500 MHz
Complex I/Q Bandwidth1 GHz
Input ChannelsOne complex I/Q input channel on VST configurations
Output ChannelsOne complex I/Q output channel
I/Q Input ComponentsTwo differential analog inputs: I and Q
I/Q Output ComponentsTwo differential analog outputs: I and Q
ADC Resolution14 bits
ADC Sample Rate1.25 GS/s
DAC Resolution16 bits
DAC Sample Rate1.25 GS/s, internally interpolated to 2.5 GS/s
I/Q Data RateApproximately 19 kS/s to 1.25 GS/s
Maximum Output LevelUp to approximately +15 dBm
Onboard FPGAXilinx Virtex-7 X690T
FPGA Lookup Tables433,200
FPGA DSP Slices3,600
Embedded Block RAM52.9 Mbits
Onboard DRAMTwo banks, 2 GB per bank
DMA Channels56
Parallel Digital I/O8 bidirectional LVCMOS lines
Digital Logic Levels1.2 V, 1.5 V, 1.8 V, 2.5 V and 3.3 V
High-Speed Serial I/OFour transmit and four receive MGT lanes
Peer-to-Peer StreamingSupported
Bus InterfacePXI Express
Module Width2 slots
Dimensions4.1 cm × 13.0 cm × 21.6 cm
WeightApproximately 795 g
Product StatusActive

PXIe-5820 Part Numbers and Configurations

Part NumberConfigurationInputOutputI/Q Bandwidth
783967-01Original PXIe-5820 baseband VSTComplex I/Q analysisComplex I/Q generation1 GHz
789179-01PXIe-5820 standalone baseband VST, no extensionComplex I/Q analysisComplex I/Q generation1 GHz
789180-01PXIe-5820 standalone baseband vector signal generator, no extensionNot includedComplex I/Q generation1 GHz

Select a VST configuration when both I/Q generation and analysis are required. Choose 789180-01 when the application requires only baseband arbitrary waveform generation.

Complex I/Q Signal Architecture

The PXIe-5820 represents modulated signals using two orthogonal baseband components: in-phase data and quadrature data. Together, these I and Q signals describe the amplitude and phase of a complex modulated waveform.

Using direct baseband I/Q connections allows wireless chipsets, modulators, demodulators and RF transceivers to be tested without an external RF frequency-conversion stage.

Wideband I/Q Digitizer

VST configurations include two differential 14-bit ADC inputs operating at up to 1.25 GS/s. These inputs simultaneously acquire the I and Q components of a complex baseband signal.

The 1 GHz complex bandwidth supports wide communication channels, carrier aggregation, envelope waveforms and signals with fast amplitude or phase transitions.

I/Q Arbitrary Waveform Generator

The PXIe-5820 includes two differential 16-bit DAC outputs for generating the I and Q components of complex waveforms. Each DAC operates at 1.25 GS/s and is internally interpolated to 2.5 GS/s.

Engineers can generate standard-compliant or custom baseband signals for receiver testing, chipset validation, amplifier envelope control and modulation research.

Flexible I/Q Data Rates

The I/Q input and output data rates can be configured from approximately 19 kS/s to 1.25 GS/s. Lower input rates are produced through fractional decimation, while lower output rates use fractional interpolation.

This flexibility allows the module to handle both narrowband and extremely wideband signals without forcing every test to process data at the maximum rate.

Virtex-7 User-Programmable FPGA

The onboard Xilinx Virtex-7 X690T FPGA supports real-time signal processing, custom triggering and low-latency control. It includes 433,200 lookup tables, 866,400 flip-flops and 3,600 DSP48 slices.

Custom FPGA applications can implement channel emulation, digital predistortion, envelope tracking, custom modulation, protocol-aware triggering and hardware-in-the-loop processing.

Onboard DRAM and Data Movement

The PXIe-5820 provides two independently accessible DRAM banks with 2 GB per bank. The FPGA can use this memory to store generated waveforms, acquired data or intermediate processing results.

The module supports DMA, interrupts and programmed I/O, with 56 DMA channels available for transferring data between the FPGA, onboard memory and PXI controller.

High-Speed Serial and Digital I/O

The 42-pin digital connector provides eight programmable LVCMOS digital lines and four high-speed multi-gigabit transceiver lanes in each direction.

The parallel digital lines support SPI, I²C, hardware triggers and device-control functions. The serial lanes enable high-throughput, low-latency connections to compatible digital instruments and custom hardware.

Peer-to-Peer Streaming

Peer-to-peer streaming allows the PXIe-5820 to exchange data directly with compatible PXI FPGA, storage or serial instruments without routing each transfer through host memory.

This architecture reduces host-processor load and can improve latency in real-time recording, playback, channel-emulation and closed-loop test applications.

Envelope Tracking and Digital Predistortion

The PXIe-5820 is suitable for generating and measuring wideband envelope signals used with RF power amplifiers. Its FPGA can process digital predistortion algorithms and coordinate baseband envelope and RF stimulus paths.

These capabilities help engineers evaluate power-amplifier efficiency, linearity, memory effects and response to rapidly changing modulation envelopes.

Typical PXIe-5820 Applications

  • Baseband I/Q chipset testing
  • Wireless transceiver validation
  • 5G NR baseband waveform testing
  • Wi-Fi 6 and 802.11ax development
  • LTE-Advanced Pro testing
  • Power-amplifier envelope tracking
  • Digital predistortion development
  • Wideband channel emulation
  • Custom modulation research
  • Hardware-in-the-loop testing
  • Semiconductor production testing
  • Real-time signal-processing research

NI-RFSA, NI-RFSG and RFmx Support

NI-RFSA controls the digitizer and analysis path, while NI-RFSG controls baseband waveform generation. RFmx provides interactive and automated waveform creation and measurement functions.

LabVIEW FPGA and compatible instrument design libraries are required when developing custom FPGA processing. LabVIEW, TestStand, C/C++, .NET and supported Python environments can be used for system automation.

PXI Chassis and System Integration

The PXIe-5820 occupies two PXI Express slots and requires a compatible chassis and controller. Chassis selection should consider cooling capacity, PCI Express bandwidth and the number of additional RF or digital instruments.

Compatible chassis options include the PXIe-1088, PXIe-1092 and PXIe-1095.

PXIe-5820 Troubleshooting

Why does the acquired I/Q signal show amplitude or phase imbalance?

Check differential wiring, cable matching, input ranges and common-mode voltage. Perform self-calibration and verify that the I and Q paths are connected with consistent polarity.

Why is the available complex bandwidth less than expected?

Confirm the configured I/Q data rate, digital filters and application software settings. Achieving 1 GHz complex bandwidth requires an appropriately high data rate and compatible signal path.

Why does waveform generation underflow?

Check waveform-buffer configuration, PXI Express bandwidth, DMA performance and competing chassis transfers. Consider using onboard DRAM for long or high-rate waveforms.

Why are digital control signals not operating at the expected voltage?

Verify the configured LVCMOS logic level and confirm that the connected device uses a compatible voltage. The digital lines support multiple programmable levels but are not automatically tolerant of every external voltage.

Why can the FPGA application not access both DRAM banks?

Confirm that each bank is configured independently in the FPGA project and that the memory interfaces do not conflict. NI recommends using LabVIEW FPGA memory items for most DRAM applications.

Why can NI-RFSA or NI-RFSG not detect the module?

Confirm that the PXIe-5820 is installed in a compatible PXI Express slot and that supported driver versions are installed. NI-RFSA and NI-RFSG support began with version 17.1.

PXIe-5820 Comparison with Related NI Instruments

ModelSignal TypeFrequency RangeMaximum BandwidthPrimary Use
PXIe-5820Complex baseband I/QDC to 500 MHz1 GHz complexDirect baseband generation and analysis
PXIe-5841RF9 kHz to 6 GHzUp to 1 GHzSub-6 GHz RF generation and analysis
PXIe-5842RF and microwaveUp to 54 GHz, depending on configurationUp to 4 GHzWideband RF and microwave testing
PXIe-5433Single-ended analogBaseband waveform output80 MHzGeneral-purpose arbitrary waveform generation

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How to Select the Correct PXIe-5820

Choose a VST configuration when the application requires simultaneous baseband I/Q generation and analysis. Select the generator-only 789180-01 when only wideband I/Q signal generation is required.

Choose the PXIe-5820 instead of an RF VST when the DUT exposes direct baseband I/Q connections. Use the PXIe-5841 or PXIe-5842 when frequency conversion and direct RF connections are required.

Why Choose the NI PXIe-5820?

The PXIe-5820 combines wideband I/Q generation, acquisition, FPGA processing, large onboard memory and high-speed digital connectivity in one module. It provides a flexible platform for developing and automating advanced baseband communication tests.

Frequently Asked Questions

What is the frequency range of the PXIe-5820?

It supports direct baseband signals from DC to 500 MHz.

What is its maximum complex I/Q bandwidth?

The PXIe-5820 provides up to 1 GHz of equalized complex I/Q bandwidth.

What are the ADC and DAC sample rates?

The 14-bit ADCs and 16-bit DACs operate at 1.25 GS/s. DAC data is internally interpolated to 2.5 GS/s.

Does the PXIe-5820 include a user-programmable FPGA?

Yes. It includes a Xilinx Virtex-7 X690T FPGA for real-time signal processing and control.

How much onboard DRAM is available?

The module provides two independently accessible 2 GB DRAM banks, for a total of 4 GB.

Does it support high-speed serial I/O?

Yes. The digital connector provides four transmit and four receive MGT lanes, plus eight programmable LVCMOS lines.

Can the PXIe-5820 generate RF signals directly?

No. It is a baseband I/Q instrument. Use an RF VST such as the PXIe-5841 when a direct RF input or output is required.

How many PXI slots does it occupy?

The PXIe-5820 occupies two PXI Express slots.

Is the PXIe-5820 still an active product?

Yes. NI currently lists all three PXIe-5820 configurations as active products.

Request a Quote for the NI PXIe-5820

Contact us for current availability, lead time and project pricing for the NI PXIe-5820 Baseband Vector Signal Transceiver. Please specify whether you require a VST or generator-only configuration and provide the preferred part number.

Part Number(s): 783967-01

Specifications

RF Generator Frequency Range: MHz to 50 MHz
RF Generator Instantaneous Bandwidth: 1 GHz
RF Analyzer Frequency Range: Hz to 50 MHz
RF Analyzer Instantaneous Bandwidth: 1 GHz
Generator Tuning Time (Typical): 0.38 ms
I/O Type: Baseband

Brand

National Instruments

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