參數(shù)資料
型號(hào): PM8351
廠(chǎng)商: PMC-Sierra, Inc.
英文描述: 8-Channel 1.0-1.25 Gbps Transceiver
中文描述: 8通道1.0-1.25 Gbps的收發(fā)器
文件頁(yè)數(shù): 1/2頁(yè)
文件大?。?/td> 111K
代理商: PM8351
PMC-Sierra,Inc.
8-Channel 1.0-1.25 Gbps Transceiver
PMC-2000672 (R3)
PROPRIETARY AND CONFIDENTIAL TO PMC-SIERRA, INC., AND FOR ITS CUSTOMERS
INTERNAL USE
Copyright PMC
-
Sierra, Inc. 2001
PM8351 OctalPHY
FEATURES
Eight independent 1.0-1.25 Gbit/s
transceivers
Ultra low power operation: 1.25 Watts
typical
Integrated serializer/deserializer, clock
synthesis, clock recovery, and 8B/10B
encode/decode logic
Physical Coding Sublayer (PCS) logic
for Gigabit Ethernet
Optional receive FIFO which
synchronizes incoming data to local
clock domain
Dual Data Rate (DDR) parallel
interface with clock forwarding to halve
ASIC terminal count and simplify
timing
Extensive control of loopback, BIST,
and operating modes via 802.3
compliant MDC/MDIO serial interface
Built-in packet generator/checker
“Trunking” feature to de-skew and
align received parallel data across
eight channels
IEEE 1149.1 JTAG testing support
IEEE 802.3z Gigabit Ethernet and
ANSI X3T11 FibreChannel support
High speed outputs which feature
programmable output current to
directly drive dual-terminated line
2.5 V, 0.25
μ
CMOS technology with
3.3V tolerant I/O
Direct interface to optical modules,
coax, or serial backplanes
Small footprint 19x19 mm, 289-pin
PBGA
BLOCK DIAGRAM
APPLICATIONS
High speed serial backplanes
Gigabit Ethernet links
FibreChannel links
Intra-system interconnect
ASIC to PMD link
GENERAL DESCRIPTION
The OctalPHY
TM
is an octal PHYsical
layer transceiver ideal for systems
requiring large numbers of point-to-point
gigabit links. It provides eight individual
serial channels capable of operation at
up to 1.25 Gbps, which may be grouped
together to form a single 12.5 Gbps
bidirectional link.
The OctalPHY includes 8B/10B block
coding logic (compliant with 802.3z
Gigabit Ethernet and FibreChannel
requirements) which produces run length
limited data streams for serial trans-
mission.
A receive FIFO optionally aligns all
incoming parallel data to the local clock
domain, adding or removing IDLE
sequences as required. This simplifies
implementation of the upstream ASIC by
removing the requirement to deal with
multiple clock domains.
When trunking is enabled, the OctalPHY
can remove cable skew differences
equivalent to several meters, presenting
8-byte data vectors at the receive
interface exactly as they were trans-
mitted.
EXAMPLE ARCHITECTURE
The first figure on the next page shows
the OctalPHY in a switch application.
This implementation uses eight channels
of 1.25 Gbaud per linecard, requiring
only 32 signal pins per linecard and 128
for the switch card, providing up to
32 Gbps total payload capacity to the
switch fabric.
The 5-bit DDR interface of the OctalPHY
saves pins on the switch device. An
additional OctalPHY operated in trunking
mode creates a cost effective 10 Gbps
uplink, capable of directly driving copper
or various optical transports.
The dotted lines in the figure depict the
system clock domains. Note that even
though the recovered clock from any or
all serial links may be asynchronous to
the local clock, the OctalPHY bridges
these domains so that the switch fabric
and linecards may be designed in only a
single clock domain.
The OctalPHY creates a highly
integrated and cost effective physical
layer solution for Gigabit Ethernet or
FibreChannel external interfaces.
FIFO
8B/10B
Encoder
10B/8B
Decoder
Clock
Recovery
Clock Synthesizer
Common Control Logic
REFCLK
PLL LOCK
MDC/MDIO
Serial
Management
Static Controls
Serial
Receive
Data
Serial
Transmit
Data
10
10
Parallel
Data In
TX Byte
Clock
Transmit Channel A (1 of 8)
Receive Channel A (1 of 8)
Parallel
Data Out
RX Byte
Clock
Serializer
PCS
PCS
Deserialize &
Byte Align
FIFO
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