NI PCI-8512 High-Speed CAN Interface (XNET) – 1-Port PCI Card for HIL, ECU Test, and Production Lines

1 Brand: NI
2 Model: PCI-8512
3 Quality: Original module
4 Warranty: 1 year
5 Delivery time: 1 week in stock
6 Condition: New/Used
7 Shipping method: DHL/UPS

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Description

NI PCI-8512 High-Speed CAN Interface (XNET) – 1-Port PCI Card for HIL, ECU Test, and Production LinesPCI-8512

The NI PCI-8512 is a 1-port High-Speed CAN interface for standard PCI slots, built on the NI-XNET engine. From my experience, it’s the kind of board you drop into a workstation or industrial PC when you need deterministic CAN performance without babysitting CPU load—think HIL rigs, ECU reflash benches, end-of-line test, or long-duration bus logging. One thing I appreciate is how the XNET API keeps frame and signal handling fast and predictable, even at 100% bus load.

Typical uses include:
– reliable Classical CAN (ISO 11898-2) communication up to 1 Mb/s,
– synchronized multi-channel monitoring with precise timestamps,
– automated test sequences in LabVIEW, C/C++, or .NET,
– and robust production diagnostics where uptime matters.

Company’s Order Placement Process and Guarantees

  • Warranty: 365 days
  • Delivery: 1 week for in-stock items; no more than one month at the latest
  • Payment: 50% advance payment; full payment before delivery
  • Express options: FedEx, UPS, DHL

Key Features

  • 1-Port High-Speed CAN (Classical) – ISO 11898-2 compliant, typically up to 1 Mb/s for ECU comms, diagnostics, and logging.
  • NI-XNET hardware acceleration – High-throughput frame and signal I/O with deterministic queues; keeps host CPU overhead low.
  • Robust timestamping – You might notice tighter timing alignment when correlating CAN with DAQ or HIL events.
  • DB9 connectivity – Standard 9-pin D-Sub pinout makes it straightforward to hook into existing CAN harnesses.
  • Driver & API support – Works with NI-XNET on Windows; straightforward integration with LabVIEW, C/C++, and .NET.
  • Listen-only and bus monitoring modes – Helpful when validating networks without influencing traffic.
  • Built for 24/7 test environments – In many cases, the PCI-8512 runs continuously in benches and EOL testers with minimal maintenance.

Technical Specifications

Brand / Model NI PCI-8512 (NI-XNET, 1-Port HS-CAN)
HS Code 8471.80 (Units of automatic data-processing machines)
Bus Interface PCI (32-bit, 5 V signaling, standard full-height bracket)
Power Requirements Bus-powered from PCI slot; no external supply required
Operating Temperature Typically 0 °C to 55 °C (non-condensing environment)
Signal I/O Types 1 × CAN (ISO 11898-2, Classical CAN up to 1 Mb/s)
Connectors 1 × 9-pin D-Sub (DB9) for CAN bus
Communication Interfaces Host: PCI; Field: CAN (frame/signal I/O via NI-XNET)
Installation Method Installs in a desktop/industrial PC PCI slot; bracket mounts to chassis rear panel
Driver & OS Support NI-XNET driver; Windows support (LabVIEW, C/C++, .NET APIs)
Termination 120 Ω bus termination required on the network (external, not onboard)

Related or Supporting Products

  • NI PCI-8512/2 – Two-port version of the same High-Speed CAN interface for higher channel density.
  • NI PCIe-8512 – PCI Express variant; similar functionality with a modern bus interface and improved host bandwidth.
  • NI PCI-8513 – 1-port Low-Speed/Fault-Tolerant CAN for body and comfort networks (ISO 11898-3).
  • NI PCI-8514 – LIN master/slave interface for body electronics and actuator networks.
  • NI PXI-8512 – PXI form factor for modular HIL and automated test racks.
  • DB9-CAN cabling and breakout – Shielded DB9-to-DB9 cables, DB9-to-terminal adapters, and external 120 Ω terminators.

Installation & Maintenance

  • PC/cabinet requirements: Standard PCI slot with adequate clearance; provide ventilation to keep internal air temperature within the specified range.
  • Wiring and topology: Use twisted-pair, shielded CAN cable with a linear bus topology; apply 120 Ω termination at both ends only. Avoid star networks in most cases.
  • Grounding & ESD: Bond cable shields at a single reference point to reduce ground loops; handle the board with ESD care during installation.
  • Software setup: Install the NI-XNET driver before powering the PC with the card fitted. Configure databases (DBC, Fibex) and mappings in NI-XNET or LabVIEW projects.
  • Routine upkeep: Keep connectors clean, periodically check cable strain relief, and update NI-XNET to a stable revision that matches your OS image. No periodic calibration is typically required.
“Swapping to PCI-8512 cut our logging CPU usage noticeably. We’ve been running it 24/7 in an engine test cell and it just stays locked to the bus.” — Powertrain lab feedback

Quality & Certifications

  • CE conformity and RoHS compliance for typical NI boards in this family
  • Designed for EMC reliability in industrial test environments
  • Manufacturer’s limited warranty typically 1 year (varies by region and purchase terms)

If your application targets Classical CAN with tight timing and long duty cycles, the PCI-8512 seems to be one of the safer choices—especially when you want a stable software stack and mature tooling behind it.

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