PXI-7851

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$11,855.00

NI PXI-7851, Virtex-5 LX3 FPGA, 75 kS/s PXI Multifunction Reconfigurable I/O Module

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National Instruments PXI-7851 Virtex-5 FPGA Multifunction Reconfigurable I/O Module

PXI-7851 Multifunction Reconfigurable I/O Module

Земля PXI-7851, also known as the PXI-7851R, is a multifunction reconfigurable I/O module featuring a user-programmable Xilinx Virtex-5 LX30 FPGA. It combines analog input, analog output and digital I/O resources with direct FPGA control for deterministic measurement and control applications.

The module provides eight 16-bit analog inputs with independent sampling rates up to 750 kS/s per channel, eight 16-bit analog outputs at up to 1 MS/s per channel and 96 bidirectional digital I/O lines.

Key Features of the PXI-7851

  • Xilinx Virtex-5 LX30 user-programmable FPGA
  • Eight 16-bit analog input channels
  • 750 kS/s maximum sampling rate per analog input
  • Dedicated ADC for every analog input channel
  • Eight 16-bit analog output channels
  • 1 MS/s maximum update rate per analog output
  • ±10 V analog input and output ranges
  • 96 bidirectional TTL digital I/O lines
  • Programmable digital power-on states
  • Independent channel timing and triggering
  • Support for multirate analog acquisition
  • Three 68-pin VHDCI I/O connectors
  • PXI Hybrid bus interface
  • Programmable with the LabVIEW FPGA Module

PXI-7851 Technical Specifications

Product ModelPXI-7851 / PXI-7851R
Part Number780339-01
Product TypeMultifunction Reconfigurable I/O Module
Product FamilyNI R Series Multifunction RIO
Шинный интерфейсPXI Hybrid
ФПГАXilinx Virtex-5 LX30
FPGA Flip-Flops19,200
FPGA 6-Input LUTs19,200
DSP48 Slices32
Embedded Block RAM1,152 kbits
Analog Input Channels8
Analog Input Resolution16 bits
Maximum Analog Input Rate750 kS/s per channel
Analog Input Range±10 V
Input ModesDifferential, RSE or NRSE
Analog Output Channels8
Analog Output Resolution16 bits
Maximum Analog Output Rate1 Мвыб/с на канал
Analog Output Range±10 V
Digital I/O Channels96 bidirectional lines
Digital CompatibilityTTL, 3.3 V output and 5 V input compatible
Digital Output Current4 mA source or sink
Maximum Clock Rate40 MHz base clock
Onboard DRAMНичего
I/O Connectors3 × 68-pin female VHDCI
Operating Temperature0°C to 55°C
Dimensions16 × 10 cm, standard 3U PXI module
WeightApproximately 152 g
Product StatusMature; not recommended for new designs

PXI-7851 Part Number and Configuration

МодельPart NumberКонфигурация
PXI-7851780339-01Virtex-5 LX30 FPGA, 8 AI, 8 AO and 96 digital I/O

User-Programmable Virtex-5 FPGA

The PXI-7851 uses a Xilinx Virtex-5 LX30 FPGA that can be programmed with the LabVIEW FPGA Module. Custom FPGA logic can directly control I/O timing, triggering, signal processing and communication protocols without relying on nondeterministic host-computer timing.

The FPGA includes 19,200 flip-flops, 19,200 six-input lookup tables, 32 DSP48 slices and 1,152 kbits of embedded block RAM. These resources support custom control loops, digital filtering, mathematical processing and protocol logic.

Eight Independent Analog Inputs

The PXI-7851 provides eight 16-bit analog input channels with a ±10 V range. Each channel has a dedicated successive-approximation ADC capable of sampling at up to 750 kS/s.

Because the channels do not share a multiplexed ADC, each input can use independent timing and triggering. This design supports simultaneous acquisition, individual channel triggers and multirate sampling that conventional multifunction DAQ devices may not provide.

Analog Input Connection Modes

The analog input channels support differential, referenced single-ended and nonreferenced single-ended connection modes. The selected input mode applies to all analog input channels.

  • Differential: Provides improved noise rejection for floating or low-level signals.
  • RSE: References input signals to the device analog ground.
  • NRSE: References input signals to a shared remote-sense connection.

The appropriate wiring configuration depends on signal grounding, source impedance, cable length and the electrical noise present in the test system.

Eight Analog Outputs

The PXI-7851 provides eight single-ended, 16-bit voltage outputs with a ±10 V range. Each channel supports update rates up to 1 MS/s and can be controlled directly from the FPGA.

These outputs can generate control signals, simulate sensors, provide actuator commands and produce custom waveforms. The power-on output state can be configured according to the safety requirements of the application.

96 Bidirectional Digital I/O Lines

The module includes 96 TTL-compatible digital I/O lines. Direction and power-on state can be configured by line, allowing the digital resources to implement custom interfaces, timing signals, triggers and control functions.

Digital outputs operate at 3.3 V logic levels, while inputs can accept compatible signals up to 5.5 V. Each line can source or sink up to 4 mA within the device specifications.

Deterministic Timing and Control

FPGA-based execution provides hardware-timed response without interruption from a desktop operating system. Control algorithms, safety interlocks and custom triggers can execute directly on the module with predictable timing.

The PXI-7851 is especially useful when standard DAQ timing engines cannot provide the required channel independence, control-loop speed or custom digital behavior.

Typical PXI-7851 Applications

  • Симуляция с аппаратным входом
  • High-speed closed-loop control
  • Custom digital protocol implementation
  • Sensor and actuator simulation
  • Automotive electronic control unit testing
  • Aerospace system validation
  • Power electronics testing
  • Мониторинг состояния оборудования
  • Custom data acquisition systems
  • Research and rapid control prototyping
  • Electronic device functional testing

LabVIEW FPGA Programming

The PXI-7851 is programmed using the LabVIEW FPGA Module and a compatible R Series driver. Engineers can create custom hardware personalities for analog acquisition, waveform generation, digital communication and deterministic control.

A host application can communicate with the compiled FPGA personality to configure tests, transfer data and display results. Because FPGA compilation can require substantial time, the I/O architecture and resource allocation should be planned before beginning a large application.

Multirate Sampling and Individual Triggering

Dedicated ADCs allow different analog input channels to operate at different effective rates. Engineers can acquire faster-changing signals at higher rates while sampling slower sensor signals less frequently.

Trigger logic can also be implemented independently for individual channels. This provides more flexibility than conventional multiplexed DAQ devices that share one conversion clock and trigger configuration across several inputs.

VHDCI Connectivity and Accessories

The PXI-7851 provides three 68-pin female high-density VHDCI connectors. Compatible shielded cables and connector blocks are required to access the analog and digital signals.

NI SCB-68 or SCB-68A connector blocks may be used with the correct R Series pinout labels and compatible cables. The pinout differs from conventional DAQ devices, so the PXI-7851 wiring diagram must be verified before connecting signals.

The NI-9151 R Series expansion chassis can connect to compatible digital connectors and add signal-conditioned C Series I/O modules. One PXI-7851 can support up to two compatible NI-9151 expansion chassis.

PXI Chassis Integration

The PXI-7851 installs in a compatible PXI or PXI Hybrid chassis. It can be synchronized with other PXI instruments through chassis timing and triggering resources.

The module does not include onboard DRAM. Applications requiring high-volume data buffering should consider FPGA block RAM limits, DMA transfers and host-controller performance during system design.

PXI-7851 Troubleshooting

The module is not detected in NI MAX

Confirm that the PXI-7851 is fully seated in a compatible PXI or PXI Hybrid slot. Verify the chassis, controller, R Series driver and LabVIEW FPGA support, then refresh the device list in NI Measurement & Automation Explorer.

The FPGA VI will not compile

Check that the installed LabVIEW FPGA version supports the PXI-7851 and its Virtex-5 compilation tools. Review FPGA resource usage if the design exceeds the available LUT, register, DSP or block RAM capacity.

Analog input readings are noisy

Select the appropriate differential or single-ended input mode, use shielded cables and review grounding. Keep analog wiring away from switching power supplies, motors and high-current digital lines.

Analog input channels do not sample at the expected rate

Verify that each FPGA I/O node and loop are configured for the intended timing. Account for FPGA processing, DMA transfer and host-reading requirements when calculating sustained acquisition rates.

Digital signals are not recognized correctly

Confirm the external logic voltage, grounding and input thresholds. The outputs use 3.3 V logic, while the inputs are compatible with supported 3.3 V and 5 V TTL signals.

The connector-block signals do not match the FPGA channels

Use the PXI-7851-specific VHDCI connector pinout. Do not assume that a standard DAQ device or another R Series model uses the same connector-block channel mapping.

PXI-7851 Compared with Related R Series Modules

МодельФПГАAnalog Input RateI/O ConfigurationBest Suited For
PXI-7851Virtex-5 LX30750 kS/s8 AI, 8 AO, 96 DIOFPGA-based multifunction control
ПХИ-7841Virtex-5 LX30200 kS/s8 AI, 8 AO, 96 DIOLower-speed multifunction FPGA applications
PXI-7852Virtex-5 LX50750 kS/s8 AI, 8 AO, 96 DIOApplications requiring more FPGA resources
PXI-7853Virtex-5 LX85750 kS/s8 AI, 8 AO, 96 DIOLarger FPGA processing designs
PXI-7854Virtex-5 LX110750 kS/s8 AI, 8 AO, 96 DIOMaximum FPGA capacity in the legacy family
PXIe-7847Kintex-7Higher-performance generationMultifunction analog and digital I/ONewer PXI Express FPGA systems

Recommended Related Products

Additional FPGA, data acquisition and control products are available in the NI PXI Modules category.

Selecting the PXI-7851

Choose the PXI-7851 when maintaining or expanding a system that requires eight 750 kS/s analog inputs, eight high-speed analog outputs, 96 digital lines and direct Virtex-5 FPGA control.

The PXI-7851 has mature product status and is not recommended for new system designs. For a new application, compare current Kintex-7 R Series PXI Express modules according to required analog performance, digital I/O voltage and FPGA capacity.

Why Choose the PXI-7851?

  • Combines analog input, analog output and digital I/O
  • Provides a dedicated ADC for every analog input
  • Supports deterministic FPGA-based processing
  • Allows custom timing, triggering and protocols
  • Supports multirate sampling and independent channel triggers
  • Provides 96 configurable digital I/O lines
  • Integrates with existing PXI R Series systems

Frequently Asked Questions

What is the PXI-7851 used for?

The PXI-7851 is used for FPGA-based data acquisition, hardware-in-the-loop testing, custom digital protocols, sensor simulation and deterministic control.

How many analog channels does the PXI-7851 provide?

It provides eight 16-bit analog inputs and eight 16-bit analog outputs.

What is the maximum analog input sampling rate?

Each analog input channel can sample at rates up to 750 kS/s using its dedicated ADC.

What is the analog output update rate?

Each analog output supports update rates up to 1 MS/s with 16-bit resolution.

How many digital I/O lines are available?

The PXI-7851 provides 96 bidirectional TTL-compatible digital I/O lines.

Which FPGA does the PXI-7851 use?

The module uses a Xilinx Virtex-5 LX30 FPGA with 19,200 flip-flops, 32 DSP48 slices and 1,152 kbits of embedded block RAM.

Does the PXI-7851 have onboard DRAM?

No. The PXI-7851 does not include onboard DRAM. It uses FPGA block RAM and DMA communication with the host system.

What software is required?

FPGA customization requires a compatible version of LabVIEW FPGA and the supported NI R Series driver. A host application is typically created in LabVIEW or another supported environment.

What is the part number for the PXI-7851?

The standard NI part number for the PXI-7851 is 780339-01.

Request a Quote for the PXI-7851

Contact us for current availability, condition, lead time and project pricing for the PXI-7851 Multifunction Reconfigurable I/O Module. We can also help identify compatible VHDCI cables, connector blocks, PXI chassis and newer R Series replacement options.

Part Number(s): 780339-01

Specifications

Maximum Sample Rate: 75 kS/s
Шинный соединитель: PXI Hybrid
Максимальная тактовая частота: 4 МГц
Количество двунаправленных цифровых каналов: 96
Цифровые уровни ввода-вывода: 3,3 В, 5 В
Динамическая оперативная память (DRAM): МБ
FPGA: Virtex-5 LX30
Диапазон входного аналогового напряжения: от -1 В до 1 В
Поддержка потоковой передачи P2P: Нет
Количество аналоговых входных каналов: 8
Количество аналоговых выходных каналов: 8

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