363-206-285
Transmission and Synchronization Interfaces
Issue 3
June 2001
5-29
DS1 External
5
Each TG circuit pack receives one DS1 reference signal which it monitors and
from which it recovers a clock signal. The recovered clock is cross-fed to its
companion TG circuit pack in the same shelf. If the microprocessor on one TG
circuit pack detects an incoming DS1 reference failure, it will signal the
microprocessor on the companion TG circuit pack. Thus, each TG circuit pack has
two DS1 references to choose from, one which is input directly and the other
cross-fed. Both TG circuit packs will normally select the same DS1 input. A loss of
both DS1 references results in the TG circuit pack entering holdover mode.
Holdover
5
The TG circuit pack has an internal TCVCXO that maintains shelf timing within
±
4.6 ppm (BBF2B TGS) or
±
0.37 ppm (BBF4 TG3) for 24 hours in the event of
an unprotected timing DS1 reference failure.
DS1 Output Modes: MULT and SYNC OUT
5
The DDM-2000 supports two DS1 output modes: MULT and SYNC OUT. Both
modes are used in conjunction with external synchronization modes but only one
may be supported on a single shelf.
DS1 Output Mode, MULT
5
In a CO environment where multiple DDM-2000 Multiplexers are installed in a
network bay frame, a single pair of DS1 timing references from the building
integrated timing supply (BITS) can be used to externally synchronize all shelves
in a bay. This unique feature reduces the number of BITS output ports required to
externally synchronize multiple DDM-2000s, thus minimizing network costs.
Each DDM-2000 provides two sets of DS1 input and output ports, one set per TG
circuit pack. A DS1 timing reference is initially connected to the bottom shelf in the
bay (shelf 1) and each TG terminates and actively buffers this timing reference.
The reference is then used as a synchronization reference for that shelf. The
buffered signal is also output from each TG as a DSX level (with adjustable
equalization). (The TG does not retime or influence the DS1 output when in the
holdover mode.) This DS1 output is then connected to the DS1 input port of the
next DDM-2000 in the bay via a special (MULT) cable forming a MULT chain. See
363-206-200,
DDM-2000 Multiplexer Applications, Planning, and Ordering Guide
,
for cabling information.
If a TG in the MULT chain is removed, shorting contacts in the backplane will
redirect input and output signals so the subsequent shelves continue to receive
valid DS1 signals. However, if a BBF2B/BBF4 provisioned for SYNC OUT is
inserted in the MULT chain, the traceability of the DS1 output will be affected. This
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 ...
Page 254: ...6 ii Issue 3 June 2001 Table of Contents ...
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 ...
Page 588: ...10 iv Issue 3 June 2001 Table of Contents ...
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 ...
Page 1254: ...A ii Issue 3 June 2001 Table of Contents ...
Page 1276: ...363 206 285 A SONET Overview A 22 Issue 3 June 2001 ...
Page 1316: ......
Page 1348: ...363 206 285 Acceptance IXL 001 Issue 3 June 2001 Page 2 of 2 DDM 2000 OC 3 MULTIPLEXER ...
Page 1412: ...NTP 003 System Turnup 363 206 285 Page 6 of 6 Issue 2 February 2000 DDM 2000 OC 3 MULTIPLEXER ...
Page 1420: ...363 206 285 System Turnup NTP 004 Issue 2 February 2000 Page 8 of 8 DDM 2000 OC 3 MULTIPLEXER ...
Page 1440: ...NTP 008 Circuit Order 363 206 285 Page 6 of 6 Issue 2 February 2000 DDM 2000 OC 3 MULTIPLEXER ...
Page 1458: ...363 206 285 Circuit Order NTP 011 Issue 2 February 2000 Page 6 of 6 DDM 2000 OC 3 MULTIPLEXER ...
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Page 1528: ...363 206 285 Circuit Order NTP 023 Issue 2 February 2000 Page 8 of 8 DDM 2000 OC 3 MULTIPLEXER ...
Page 1560: ...363 206 285 Circuit Order NTP 025 Issue 2 February 2000 Page 8 of 8 DDM 2000 OC 3 MULTIPLEXER ...
Page 1574: ...363 206 285 Circuit Order NTP 027 Issue 2 February 2000 Page 4 of 4 DDM 2000 OC 3 MULTIPLEXER ...
Page 1610: ...363 206 285 Circuit Order NTP 030 Issue 2 February 2000 Page 8 of 8 DDM 2000 OC 3 MULTIPLEXER ...
Page 1616: ...363 206 285 Circuit Order NTP 031 Issue 2 February 2000 Page 6 of 6 DDM 2000 OC 3 MULTIPLEXER ...
Page 1622: ...363 206 285 Circuit Order NTP 032 Issue 2 February 2000 Page 6 of 6 DDM 2000 OC 3 MULTIPLEXER ...
Page 1634: ...363 206 285 System Turnup NTP 034 Issue 2 February 2000 Page 6 of 6 DDM 2000 OC 3 MULTIPLEXER ...
Page 1652: ...363 206 285 Circuit Order NTP 038 Issue 2 February 2000 Page 6 of 6 DDM 2000 OC 3 MULTIPLEXER ...
Page 1702: ...363 206 285 System Turnup NTP 041 Issue 2 February 2000 Page 8 of 8 DDM 2000 OC 3 MULTIPLEXER ...
Page 1744: ...NTP 045 System Turnup 363 206 285 Page 8 of 8 Issue 2 February 2000 DDM 2000 OC 3 MULTIPLEXER ...
Page 1808: ...363 206 285 Circuit Order NTP 052 Issue 2 February 2000 Page 6 of 6 DDM 2000 OC 3 MULTIPLEXER ...
Page 1866: ...363 206 285 System Turnup NTP 057 Issue 3 June 2001 Page 12 of 12 DDM 2000 OC 3 MULTIPLEXER ...
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Page 1912: ...NTP 002 Operation 363 206 285 Page 2 of 2 Issue 2 February 2000 DDM 2000 OC 3 MULTIPLEXER ...
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