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CS19227PBI-2 数据表(PDF) 1 Page - Applied Micro Circuits Corporation

部件名 CS19227PBI-2
功能描述  10GE & OC192/48/12/3 DW/FEC/PM and AsyncMap Device with Strong FEC
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制造商  AMCC [Applied Micro Circuits Corporation]
网页  http://www.amcc.com
标志 AMCC - Applied Micro Circuits Corporation

CS19227PBI-2 数据表(HTML) 1 Page - Applied Micro Circuits Corporation

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Empowering Intelligent Optical Networks
Product Brief
RUBICON-LH
10GE & OC192/48/12/3 DW/FEC/PM and AsyncMap Device with Strong FEC
Revision 1.0, March 2006
FINAL/Production Release Information - The information contained
in this document is about a product that has been fully tested, charac-
tereized, and is producted released. All features described herein are
supported. Contact AMCC for updates to this document and the latest
product status.
Part Number S19227PBI-2
FEATURES
“Right Sized” Transport of 10GE-LAN signals through
OTN Network
• GFP encapsulation used for packing 10GE-LAN signal into
“Right Sized” OTU-2 signal resulting in channel rate of 10.7
GHz.
• Two different flow-control options used on client to allow for
10GE-LAN signal to be packed into OTU-2.
• 10GE-LAN into OC192C (through GFP) to allow for SONET
grooming of 10GE client.
• Proprietary 10GE-LAN map to OTU-2 without transport rate
increase or client flow control.
Superb I/O flexibility with industry standard SFI4P1
support on both line and client ports of device.
• Proven CMOS I/O from AMCC.
• Provides up to 705Mbps per I/O, covering 11.1GHz operation
for full bandwidth 10GE-LAN client in an OTUk formatted signal
and 11.27GHz operation for 10G Fibre Channel client in an
OTUk formatted signal.
• Provides port swapping and output dual feed features for 1 + 1
line protection scheme.
Integrated Patented Dispersion Compensation Control
Circuitry for Client and Line interfaces (second
generation of AMCC’s DispersionXX solution)
• Proven in AMCC’s DispersionXX solution (NIAGARA and
S3094).
• Available with the use of the S3394.
• Available on both client and line interfaces of Rubicon.
• Best-in-class optical fidelity solution providing longest reach
without regeneration.
Easy software migration from industry leading AMCC
NIAGARA FEC device
• Significant reuse of the Niagara register map in Rubicon.
• Minimal effort and maximum benefit upgrade path from original
DispersionXX (NIAGARA and S3094) solution.
G.709 ODU-2 Synchronous and Asynchronous mapping
• 1 x OC192/STM-64 mapping (239,237) per G.709.
• Direct map (239,238) into ODU – 2.
G.709 ODU-1 Synchronous and Asynchronous mapping
• 1 x OC48/STM-16 mapping (239,238) per G.709.
• Direct map (239,238) into ODU-1.
G.709 Overhead processing
• Bi-directional add-drop ODU-1, ODU-2.
• Bi-direction G.709 Overhead Processing and optional OTU2
Fixed Stuff Columns access.
• Dedicated GCC ports.
Ingress and Egress Client Data Performance Monitoring
• 1 x OC192/48/12/3 TOH add-drop and processing.
• 8B/10B Monitoring.
• 10GE Monitoring.
• SONET/SDH section and line termination.
• TOH add-drop port.
• LOS, OOF, LOF detection.
• B1, B2 monitoring with programmable Signal Degrade and Sig-
nal Fail thresholds.
• J0 Monitoring, SDH and SONET modes.
• K1, K2 monitoring for APS changes, line AIS and line RDI.
• Automatic, interrupt-driven, or manual AIS insertion.
• Frame boundary output.
Industry Standard RS(255,239) Forward Error Correction with
6.2 dB Coding Gain (at 10-15 CER)
• G.709 Compliant Frame Structure.
• Compatible with AMCC’s S19203 (HUDSON) and S19208
(NIAGARA).
Figure 1: Block Diagram
u P I/F
O T N
N e t w or k / Li ne
In t e r f a c e
C lie n t o r O T N
In t e r f a c e
EF EC
D e c oder
EF EC
E n c oder
Re g i s t e r
Ma p
I n t e r r upt
Co n t r o l
I n g r essE g r ess
SO N E T / SD H
TO H
A dd/ D r o p
R- S
FE C
D e c o der
R- S
FE C
En c o d e r
P N gen
Er r I n s
Pa t t e r n
& Er r
A nal y s i s
PM
PM
P N gen
Er r I n s
Pa t t e r n
& E r r
A nal y s i s
I n g r ess/ E g r ess
OD U - 2 OH
A dd/ D r op
BYPA SS
BYP ASS
BY PASS
BY PAS S
B YPA SS
BYP ASS
S F I - 4 ( 10
G B PS)
D u al 10G E M A C
S F I - 4 ( 10
GB P S )
16
u P I/F
O T N
N e t w or k / Li ne
In t e r f a c e
C lie n t o r O T N
In t e r f a c e
EF EC
D e c oder
EF EC
E n c oder
Re g i s t e r
Ma p
I n t e r r upt
Co n t r o l
I n g r essE g r ess
SO N E T / SD H
TO H
A dd/ D r o p
R- S
FE C
D e c o der
R- S
FE C
En c o d e r
P N gen
Er r I n s
Pa t t e r n
& Er r
A nal y s i s
PM
PM
P N gen
Er r I n s
Pa t t e r n
& E r r
A nal y s i s
I n g r ess/ E g r ess
OD U - 2 OH
A dd/ D r op
BYPA SS
BYP ASS
BY PASS
BY PAS S
B YPA SS
BYP ASS
S F I - 4 ( 10
G B PS)
D u al 10G E M A C
S F I - 4 ( 10
GB P S )
u P I/F
O T N
N e t w or k / Li ne
In t e r f a c e
C lie n t o r O T N
In t e r f a c e
EF EC
D e c oder
EF EC
E n c oder
Re g i s t e r
Ma p
I n t e r r upt
Co n t r o l
I n g r essE g r ess
SO N E T / SD H
TO H
A dd/ D r o p
R- S
FE C
D e c o der
R- S
FE C
En c o d e r
P N gen
Er r I n s
Pa t t e r n
& Er r
A nal y s i s
PM
PM
P N gen
Er r I n s
Pa t t e r n
& E r r
A nal y s i s
I n g r ess/ E g r ess
OD U - 2 OH
A dd/ D r op
BYPA SS
BYP ASS
BY PASS
BY PAS S
B YPA SS
BYP ASS
S F I - 4 ( 10
G B PS)
D u al 10G E M A C
S F I - 4 ( 10
GB P S )
16
u P I/F
O T N
N e t w or k / Li ne
In t e r f a c e
C lie n t o r O T N
In t e r f a c e
EF EC
D e c oder
EF EC
E n c oder
Re g i s t e r
Ma p
I n t e r r upt
Co n t r o l
I n g r essE g r ess
SO N E T / SD H
TO H
A dd/ D r o p
R- S
FE C
D e c o der
R- S
FE C
En c o d e r
P N gen
Er r I n s
Pa t t e r n
& Er r
A nal y s i s
PM
PM
P N gen
Er r I n s
Pa t t e r n
& E r r
A nal y s i s
I n g r ess/ E g r ess
OD U - 2 OH
A dd/ D r op
BYPA SS
BYP ASS
BY PASS
BY PAS S
B YPA SS
BYP ASS
S F I - 4 ( 10
G B PS)
D u al 10G E M A C
S F I - 4 ( 10
GB P S )


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