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What must be observed for the routing of the CAN bus cable?

- the CAN bus cable must not be routed in the immediate proximity of high voltage and high frequency cables. 
- CAN-L and CAN-H must be connected to a twisted pair.
- the start and end of the CAN bus cable must each be connected to a terminating resistor R=100 Ohm (0.25 W).
- branch lines are not permitted!
- The nodes of the CAN bus can be connected in any order. The objective should be to achieve a cable length as short as possible.

For further information, see E*LDS Basics.

What must be observed for the routing of the CAN bus cable?

- the CAN bus cable must not be routed in the immediate proximity of high voltage and high frequency cables. 
- CAN-L and CAN-H must be connected to a twisted pair.
- the start and end of the CAN bus cable must each be connected to a terminating resistor R=100 Ohm (0.25 W).
- branch lines are not permitted!
- The nodes of the CAN bus can be connected in any order. The objective should be to achieve a cable length as short as possible.

For further information, see E*LDS Basics.

What must be observed for the routing of the CAN bus cable?

- the CAN bus cable must not be routed in the immediate proximity of high voltage and high frequency cables. 
- CAN-L and CAN-H must be connected to a twisted pair.
- the start and end of the CAN bus cable must each be connected to a terminating resistor R=100 Ohm (0.25 W).
- branch lines are not permitted!
- The nodes of the CAN bus can be connected in any order. The objective should be to achieve a cable length as short as possible.

For further information, see E*LDS Basics.
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