Infrared Link Modul (ILM)
6ZB5530–3AC30–0BA1
19
Copyright
by Siemens
5.6
Monitoring the Optical Link
The PROFIBUS ILM has two mechanisms with which it monitors problems on the optical link.
– monitoring of the optical receive activity
– monitoring of the optical link with an acknowledgment pulse
5.6.1
Monitoring the Optical Receive Activity
With the yellow “RX” LED, the PROFIBUS ILM indicates the reception of data via the optical channel of the
PROFIBUS ILM. The pulse for the LED is extended to approximately 300 ms so that it is possible to recognize
data reception even when small amounts of data are received.
Apart from the optical display using the “RX” LED, the PROFIBUS ILM also has integrated monitoring logic that
triggers the signaling contact when problems occur receiving data on the optical channel provided the user
configures this function with a switch. Problems in reception on the optical channel occur when there has been
no change in the status of the optical receive channel for a period of approximately 300 ms, in other words
when no message was received within 300 ms or a received message takes longer than 300 ms.
Note
The “activate signaling contact if problems occur in reception” configuration should not be set on the
PROFIBUS ILM in the master subnet if its partner ILM only has one slave node that is not addressed during
this time.
5.6.2
Monitoring the Optical Link with an Acknowledgment Pulse
During configuration, the user can activate a mechanism so that an acknowledgment pulse is expected from
the receiving station after data have been sent. This acknowledgment must be received within the time set as
the interval between sending and transmitting on PROFIBUS (11 bit times). This acknowledgment pulse is not
passed on to the electrical channels of the sending or receiving PROFIBUS ILM but is restricted exclusively to
the optical transmission link.
Note
The “monitor link with acknowledgment pulse” configuration must be activated on both PROFIBUS ILMs of a
point-to-point link.
Summary of Contents for SIMATIC NET PROFIBUS
Page 10: ...Contents viii PROFIBUS Networks SIMATIC NET 6GK1970 5CA20 0AA1 Release 2 05 2000 ...
Page 11: ...PROFIBUS NETWORKS 1 ...
Page 26: ...PROFIBUS NETWORKS 1 16 PROFIBUS Networks SIMATIC NET 6GK1970 5CA20 0AA1 Release 2 05 2000 ...
Page 241: ...A 1 PROFIBUS Networks SIMATIC NET 6GK1970 5CA20 0AA1 Release 2 05 2000 Testing PROFIBUS A ...
Page 254: ...Testing PROFIBUS A 14 PROFIBUS Networks SIMATIC NET 6GK1970 5CA20 0AA1 Release 2 05 2000 ...
Page 288: ...Installing LAN Cables C 26 PROFIBUS Networks SIMATIC NET 6GK1970 5CA20 0AA1 Release 2 05 2000 ...
Page 325: ...F 1 PROFIBUS Networks SIMATIC NET 6GK1970 5CA20 0AA1 Release 2 05 2000 Dimension Drawings F ...
Page 338: ...Dimension Drawings F 14 PROFIBUS Networks SIMATIC NET 6GK1970 5CA20 0AA1 Release 2 05 2000 ...
Page 396: ...Infrared Link Modul ILM 6ZB530 3AC30 0BA1 54 Copyright by Siemens ...
Page 434: ......
Page 438: ...Contents ii PROFIBUS Optical Bus Terminal OBT C79000 G8976 C122 02 Contents ...
Page 450: ...Network Topology 4 4 PROFIBUS Optical Bus Terminal OBT C79000 G8976 C122 02 ...
Page 458: ...Installation and Startup 5 8 PROFIBUS Optical Bus Terminal OBT C79000 G8976 C122 02 ...
Page 460: ...Troubleshooting 6 2 PROFIBUS Optical Bus Terminal OBT C79000 G8976 C122 02 ...
Page 464: ...Technical Specifications 7 4 PROFIBUS Optical Bus Terminal OBT C79000 G8976 C122 02 ...
Page 468: ...References 9 2 PROFIBUS Optical Bus Terminal OBT C79000 G8976 C122 02 ...
Page 470: ...Abbreviations 10 2 PROFIBUS Optical Bus Terminal OBT C79000 G8976 C122 02 ...
Page 478: ...References I 4 PROFIBUS Networks SIMATIC NET 6GK1970 5CA20 0AA1 Release 2 05 2000 ...
Page 488: ...Glossary Glossary 8 PROFIBUS Networks SIMATIC NET 6GK1970 5CA20 0AA1 Release 2 05 2000 ...