參數(shù)資料
型號: CS19227PBI-2
廠商: Applied Micro Circuits Corp.
英文描述: 10GE & OC192/48/12/3 DW/FEC/PM and AsyncMap Device with Strong FEC
中文描述: 萬兆以太網(wǎng)
文件頁數(shù): 1/5頁
文件大?。?/td> 304K
代理商: CS19227PBI-2
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)
F
orward
E
rror
C
orrection
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
In t e r f a c e
In t e r f a c e
D e c o d e r
E n c o d e r
M a p
C o n t r o l
T O H A d d /D r o p
F E C
D e c o d e r
F E C
E n c o d e r
E r r In s
A n a ly s is
P M
P M
E r r In s
A n a ly s is
A d d /D r o p
B Y P A S S
B Y P A S S
B Y P A S S
B Y P A S S
B Y P A S S
B Y P A S S
G B P S )
D u a l 1 0 G E M A C
G B P S )
1 6
O T N N e t w o r k /L in e
C lie n t o r O T N
E F E C
E F E C
R e g is t e r
In t e r r u p t
S O N E T /S D H
R - S
R - S
P N g e n
& E r r
P N g e n
& E r r
O D U - 2 O H
S F I- 4 ( 1 0
S F I- 4 ( 1 0
In g r e s s E g r e s s
P a tte r n
P a tte r n
In g r e s s /E g r e s s
O
O
A
A
O
A
O
A
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