Jetter AG
99
JC-120MC
Mechanical and electrical installation
The following devices are not taken into account when calculating the
aggregated input/output factor:
Controller JC-120MC
Bus node JX3-BN-ETH
Bus node JX3-BN-CAN
Power supply module JX3-PS1
The table below lists the maximum allowed number of modules and the
aggregated factor of input data and output data.
Maximum number of
peripheral modules
Aggregated input factor
Aggregated output factor
16
88
88
To engineer a JX3 station, proceed as follows:
Step
Action
1
Do not exceed the maximum number of 16 modules per JX3 station.
2
Calculate the aggregated input factor by adding the input factor per
module.
Example:
2 JX3-DI16 and 8 JX3-AI4 modules are connected to a controller
JC-120MC. 2 JX3-DI16 with input factor 4 makes 8; 8 JX3-AI4 with input
factor 10 makes 80 => aggregated factor is 88.
3
Calculate the aggregated output factor by adding the output factor per
module.
Example:
2 JX3-DI16 and 8 JX3-AI4 modules are connected to a controller
JC-120MC. 2 JX3-DI16 with input factor 0 makes 0; 8 JX3-AI4 with input
factor 0 makes 0 => aggregated factor is 0.
4
If ...
... then ...
... the aggregated input factor
makes 88, ...
... the JX3 station is fully equipped.
... the aggregated output factor
makes 88, ...
... the JX3 station is fully equipped.
... the number of peripheral
modules is 16, ...
... the JX3 station is fully equipped.
If one of the three values has been exceeded, a new JX3 station must be
added. For this, apply a bus node, e.g. a JX3-BN-ETH.
Devices not to be taken
into account
JX3 station - Maximum
configuration
Engineering steps
Summary of Contents for JC-120MC
Page 1: ...User Manual JC 120MC Controller 60880901 We automate your success...
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Page 40: ...40 Jetter AG 3 Identifying Hardware revisions see page 38 Related topics...
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Page 485: ...Jetter AG 485 JC 120MC Programming Topic Page Programming 486 Registers 498 Contents...
Page 521: ...Jetter AG 521 JC 120MC Programming Use 29 bit identifier Default 11 bit identifier...
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