64
Data Link Characteristics
Section 4-11
result indicates the communications cycle time has been decreased and a
negative result indicates it has been increased. Round the result of the calcu-
lation to the nearest millisecond.
Change of the communications cycle time (coaxial cable systems) =
(old maximum node address - new maximum)
×
0.085 ms
+ (old maximum number of frames - new maximum)
×
0.654 ms
+ (old number of polled units - new number)
×
0.750 ms
Change of the communications cycle time (optical fiber cable systems) =
(old maximum node address - new maximum)
×
0.1115 ms
+ (old maximum number of frames - new maximum)
×
0.77 ms
+ (old number of polled units - new number)
×
0.75 ms
Example Calculations
The examples below calculate the change of the communications cycle time
for both coaxial and optical fiber cable when the other network parameters are
changed as shown below:
Maximum node address: . . . . . .Changed from 62 to 16
Maximum number of frames: . . .Changed from 10 to 13
Number of polled units: . . . . . . .Changed from 4 to 5
Change of the communications cycle time (coaxial cable systems) =
(62 – 16)
×
0.085 ms + (10 – 13)
×
0.654 ms + (4 – 5)
×
0.75 ms =
1.198 ms (1 ms after rounding)
Change of the communications cycle time (optical fiber cable systems) =
(62 – 16)
×
0.1115 ms + (10 – 13)
×
0.77 ms + (4 – 5)
×
0.75 ms =
2.069 ms (2 ms after rounding)
Note
(1) If the maximum node address is set to a value less than the node address
of any nodes in the data link, those nodes will no longer be part of the
data links.
(2) If the maximum number of frames is set too low, errors might occur during
the execution of operations such as SEND(90), RECV(98), and
CMND(490) instructions, internode echo tests, and remote monitoring.
(3) Lowering the number of polled units will increase the delay between re-
setting a Unit or turning on its PLC’s power and its entrance into the net-
work.
4-11-2 Data Exchange Timing
This section explains data link timing when using data links between SYS-
MAC LINK Units and a CPU Unit.
With a CS-series PLC, data exchange with the SYSMAC LINK Unit is per-
formed by interrupt processing during the peripheral servicing time in the CPU
Unit cycle time. Data exchange timing is as follows:
If interrupt processing for data exchange is executed, the PLC cycle time will
be lengthened by the time required for the interrupt processing.
PLC cycle time
Execution
PLC processing
Basic processing
Interrupt processing
for data exchange
Execution
I/O refreshing
Basic processing
CPU Bus
Unit service
Programming
Device/Host Link
service
Содержание CS1W-SLK11-21 - 06-2004
Страница 1: ...Cat No W367 E1 02 SYSMAC CS1W SLK11 21 SYSMAC LINK Units...
Страница 2: ...CS1W SLK11 21 SYSMAC LINK Units Operation Manual Revised June 2004...
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Страница 170: ...153 Appendix B Dimensions CS1W SLK11 Optical SYSMAC LINK Unit Unit mm...
Страница 171: ...154 Dimensions Appendix B CS1W SLK21 Coaxial SYSMAC LINK Unit Unit mm...
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Страница 201: ...Authorized Distributor Cat No W367 E1 02 Note Specifications subject to change without notice Printed in Japan...
Страница 202: ...SYSMAC CS1W SLK11 21 SYSMAC LINK Units Cat No W367 E1 02 OPERATION MANUAL...