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Have a question or need help? 

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Solution

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OPAL-RT offers an integrated CAN solution using a standard KVaser 4 Channel PCie card allowing your real time simulator to interface with any peripheral CAN Device. CAN-FD (Flexible Data) is also supported. The driver is inherent to RTLRT-AB LAB and has an easy-to-use interface that allows you to add, define, and manipulate channels, buses and messages. Furthermore, there is a built-in recording feature allowing the user to capture data throughout the simulation. If the user has already defined a CAN bus architecture, this can also be imported onto the driver using the CANdb Import tool, which supports .dbc and ARXML files. Channel and message data points would be made available to connect to your model via OpInputs and OpOutput blocks. The CAN driver gets initialized once the simulation is loaded onto the target.

Furthermore, CAN is supported on the NI Platform via a range of cards or modules that are offered. Using the NI-XNET driver allows the user to communicate with external CAN devices in real time. FIBEX (Fieldbus Exchange Format) or .dbc files can also be imported to set up the CAN architecture.

For the CANopen protocol on the RT-LAB platform, a GATEWAY solution is required. The gateway is provided by Anybus X-gateway CANopen that makes it possible to communicate with peripheral CANopen devices. The way it is implemented is that the OPAL-RT simulator communicates with the gateway using the ModBus Protocol over an Ethernet cable. The Anybus gateway will output the CANopen signal over a DB9 connector.

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CAN is a robust protocol used in the automotive industry to allow microcontroller devices to talk with a master/host device. It's a messaged based protocol meaning, i.e. the slave device will translate the message into some form of action. The messages are also sent sequentially throughout the whole CAN bus. The CAN bus is seen as the whole architecture where the master and the slave devices are connected.

Software Platform Compatibility

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Product Selection Guide

RT-LAB

The RT-LAB CAN driver requires a CAN bus interface kit to be added to the Real-Time Simulator. The OP3411 kit includes a Kvaser CAN PCIe card and a software license, which support up to 4 CAN channels.

For additional CAN channels, additional kits may be added if PCIe slots are available.

OP4510v2

Type

Description

Product Number(s)

Supported Simulators 

OP4512
OP4610XG
OP5020XG
OP5025XG

OP5033XG

OP5600v2
OP5650
OP5700

OP5650XG
OP5705XG
OP5707XG

Driver

Driver license for CAN/CAN-FD/CANopen for RT-LAB, 4 channels. Included with all CAN bus Interface Kits.

OP3414

YES

YES

OP5705XG
OP5707XGYES

Add-on module

CAN bus Interface Kit, KVASER PCIe CAN 4 channels for OP451x Series*

OP3411-4510

OP4510v2
OP4512

CAN bus Interface Kit, KVASER PCIe CAN 2 channels for OP451x Series*

OP3411-451x-2CH

OP4510v2
OP4512

CAN bus Interface Kit, KVASER PCIe CAN 4 channels for OP4610XG*

OP3411-451x4610-4CH

OP4610XG
OP5020XG
OP5025XG

CAN bus Interface Kit, KVASER PCIe CAN 4 channels for OP5600*

OP3411-5600

CAN bus Interface Kit, KVASER PCIe CAN 4 channels for OP57xx, Series, and OP503x Series*

OP3411-5707

YES

OP5705XG
OP5707XGYES

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Add-on module

Anybus AB7308 Gateway for CANopen. Contact OPAL-RT for more information.

  • Requires an OP3411 kit to be installed (see above)

AB7308

YES

YES

OP5705XGYESOP5707XG

* Available PCIe slot required. Note that OP4510 and OP4512 simulators only have one PCIe slot.
The OP4510v2 support this protocol only if the operating system is OPAL-RTLinux. Note that this simulator can be migrated from Red Hat Linux to OPAL-RTLinux. Ask your local representative about the upgrade.

NI VeriStand

When using NI PXIe hardware, the PXIe8510 module supporting 2 to 6 ports is required along with the NI VeriStand Full Development System.

Type

Description

Product Number

PXIe Module

2 or 6 port multiprotocol interface module

PXIe8510 (784122-01 or 784121-01)

Software

NI VeriStand Full Development System

780590-35