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| can_cabling [2012/06/12 12:54] – added cable vendor section heinz | can_cabling [2026/08/16 09:06] (current) – removed - external edit (Unknown date) 127.0.0.1 | ||
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| - | Some rules on how to design a CAN network. Consider reading [[Problem Solving Questions]]. | ||
| - | The rules are general and valid for an CAN network including [[CAN Higher Layer Protocols: | ||
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| - | * Always use twisted pairs for CAN_H and CAN_L | ||
| - | * Maximum cable length is between the two farthermost nodes on the CAN bus line. Remember, in the worst case a signal has to travel from the node at one end to the node on the other and of the line. It is a function of the bit rate as follows: | ||
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| - | |bit rate|max cable length (in m)| | ||
| - | | 1Mbit/ | ||
| - | | 800Kbit/ | ||
| - | | 500Kbit/ | ||
| - | | 250Kbit/ | ||
| - | | 125Kbit/ | ||
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| - | (Table from CiA DS 301 4.02 page 20) | ||
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| - | If you ask for a formula? There is one rule of thumb: | ||
| - | cable length < 40000 Kbit/s * 1 m / BitRate in Kbit/s | ||
| - | BitRate given in Kbit/s as well. Using this, results in < 40m for 1Mbit/s or | ||
| - | < 320m for 125Kbit/s. In this formula a typical transceiver propagation of 25ns and a typical cable propagation of 5 ns/m is used for calculation. | ||
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| - | [[http:// | ||
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| - | ==== Cable types ==== | ||
| - | All big vendors of specialized CAN cables | ||
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| - | * [[http:// | ||
| - | * | ||