363-206-285
Transmission and Synchronization Interfaces
Issue 3
June 2001
5-39
Feature Details and Options
5
As mentioned previously, SONET synchronization messaging is used to
communicate the quality of the subnetwork timing throughout the subnetwork.
This is done using bits 1-3 of the K2 byte found in the SONET overhead. In OC-3
Release 9.1 and later releases, synchronization messaging can also be done
using bits 5-8 of the S1 byte in the SONET overhead (not supported on OC-1
links). If a DDM-2000 OC-3 system is deriving timing from a given OC-N interface
and synchronization messaging is enabled on that interface (Kbyte messages and
Sbyte messages are provisioned using the
set-ocn
command), the system
interprets the received message to determine its internal timing status. The
system also determines the state of the DS1 output, if the DS1 output is enabled.
The DDM-2000 OC-3 system also transmits over the particular OC-N interface
and all other OC-N interfaces that are enabled for synchronization messaging, the
appropriate message indicating the quality of its timing, and its active timing
mode. Table 5-3 and Table 5-4 list the associated internal timing status and DS1
output states that are associated with synchronization messages received from
the OC-N interface when synchronization messaging is enabled. The tables list
the messages from low- to high-quality.
Table 5-3.
Synchronization Messages using K2 Byte
Received Message
Active Timing Mode
∗
Default
DS1 Output State
Quality
Level
Don't Use
Holdover
AIS
7
Timing Looped Back (TLB)
Holdover
AIS
7
Stratum 4 †
Holdover
AIS
6
Internal Clock (IC)
OK to use
AIS
5
Internal Clock (IC) (w/TG3)
Holdover
AIS
5
Stratum 3 †‡
OK to use
Good
4
Stratum 2 †
OK to use
Good
3
Sync Quality Unknown (SQU)
OK to use
Good
2
Stratum 1 †
OK to use
Good
1
*
This column applies only when provisioned for line-timing mode.
†
Presently, DDM-2000 OC-3 Multiplexers cannot generate these messages, but they
could be retransmitted and supported for autoreconfiguration if any of these are
received by a DDM-2000 OC-3 Multiplexer.
‡
The TG3 circuit pack can generate a stratum 3 signal.
Summary of Contents for DDM-2000 OC-3
Page 4: ......
Page 14: ...xiv Issue 3 June 2001 Contents GL Glossary GL 1 ...
Page 24: ...xxiv Issue 3 June 2001 Figures ...
Page 28: ...Tables xxviii Issue 3 June 2001 A A SONET Overview A 34 SONET Transport Rates A 20 ...
Page 58: ...363 206 285 About This Document lviii Issue 3 June 2001 ...
Page 60: ...1 ii Issue 3 June 2001 Table of Contents ...
Page 80: ...363 206 285 System Introduction 1 20 Issue 3 June 2001 ...
Page 154: ...3 ii Issue 3 June 2001 Table of Contents ...
Page 184: ...4 ii Issue 3 June 2001 Table of Contents ...
Page 252: ...363 206 285 Transmission and Synchronization Interfaces 5 60 Issue 3 June 2001 ...
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Page 278: ...7 vi Issue 3 June 2001 Table of Contents ...
Page 436: ...363 206 285 Circuit Pack Descriptions 7 158 Issue 3 June 2001 ...
Page 440: ...8 iv Issue 3 June 2001 Table of Contents ...
Page 518: ...363 206 285 Administration and Provisioning 8 78 Issue 3 June 2001 ...
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Page 690: ...363 206 285 Commands and Reports 11 20 Issue 2 February 2000 ...
Page 1252: ...11 582 2000 February 2 Issue OC 3 DDM 2000 ...
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Page 1276: ...363 206 285 A SONET Overview A 22 Issue 3 June 2001 ...
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Page 1348: ...363 206 285 Acceptance IXL 001 Issue 3 June 2001 Page 2 of 2 DDM 2000 OC 3 MULTIPLEXER ...
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Page 1616: ...363 206 285 Circuit Order NTP 031 Issue 2 February 2000 Page 6 of 6 DDM 2000 OC 3 MULTIPLEXER ...
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Page 1652: ...363 206 285 Circuit Order NTP 038 Issue 2 February 2000 Page 6 of 6 DDM 2000 OC 3 MULTIPLEXER ...
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Page 1808: ...363 206 285 Circuit Order NTP 052 Issue 2 February 2000 Page 6 of 6 DDM 2000 OC 3 MULTIPLEXER ...
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