RCLXT16726FE Intel, RCLXT16726FE Datasheet

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RCLXT16726FE

Manufacturer Part Number
RCLXT16726FE
Description
Manufacturer
Intel
Datasheet

Specifications of RCLXT16726FE

Operating Supply Voltage (typ)
1.8/3.3V
Mounting
Surface Mount
Lead Free Status / RoHS Status
Not Compliant

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Company
Part Number
Manufacturer
Quantity
Price
Part Number:
RCLXT16726FE
Manufacturer:
INTEL/英特尔
Quantity:
20 000
Intel
Serializer/Deserializer Chipset
Intel
equipment manufacturers to create standards-based products with shorter
time-to-market and reduced development costs. Developers can use these
opto-electronic components to build optical network solutions to meet a
variety of high-bandwidth requirements in SONET/SDH, Optical Transport
Network or Ethernet networks.
Product Overview
The Intel
form a high-performance multiplexer/
demultiplexer (MUX/DeMUX) chipset for use
in SDH STM 64 and SONET OC-192 telecom-
munications systems, Optical Transport
Network (OTN) systems with Forward Error
Correction (FEC, submarine systems, 10
Gigabit Ethernet systems, and fiber-optic test
equipment.
The Intel
tured using a well-proven silicon bipolar tech-
nology that offers the performance, stability,
and reliability customers require for optical
communication systems.
The devices are operated from a single +3.3V
or dual +1.8/+3.3V power supply. The chipset
has a low power dissipation of 1.8W.
The Intel LXT16726 features an integrated
Limiting Amplifier (LIA) with high input sensitivity,
a Clock and Data Recovery unit (CDR), and a
1:16 DeMUX.
The Intel LXT16727 features a 16:1 transmitter
with integrated clock generation, Phase Locked
Loop (PLL) circuits, and 16:1 MUX. The
integrated transmitter ensures simple board
design. The high output swing of the transmitter
ensures compatibility with a wide range of
laser drivers. The Intel LXT16727 is available
in two versions, the original Intel LXT16727
and the newer Intel LXT16727A which
features improved jitter performance.
®
optical components are modular building blocks that enable networking
®
®
LXT16726 and Intel
LXT16726/727 chipset is manufac-
®
LXT16726/727
®
LXT16727
The Intel LXT16726/727 chipset features two
concepts for timing alignment of clock and data
signals. The first, Dynamic Phase Alignment
(DPA), is based on integrated PLLs to eliminate
any skew between clock and data signals
between ASIC and MUX. The continuous
handling of round trip delay variations by the
source synchronous clocking ensures easy
external optimization of jitter. The second
scheme is based on a 9-bit FIFO to ensure
critical timing alignment between clock and
data signals. When the latter scheme is used,
an integrated PLL
Product Brief

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RCLXT16726FE Summary of contents

Page 1

... The Intel LXT16726 features an integrated Limiting Amplifier (LIA) with high input sensitivity, a Clock and Data Recovery unit (CDR), and a 1:16 DeMUX. The Intel LXT16727 features a 16:1 transmitter with integrated clock generation, Phase Locked Loop (PLL) circuits, and 16:1 MUX. The integrated transmitter ensures simple board design ...

Page 2

... VCXO clock inputs. In order to facilitate board design, the Intel LXT16726/727 chipset has been equipped with bit swap and bit inversion. These features flip the polarity and/or position of the individual data I/Os to ensure flexible PCB routing ...

Page 3

... Intel is a leading supplier of communications building blocks, adding value at many levels of integration. Through continuous innovations and advancements in connectivity and processing in the network, Intel is delivering, along with its customers and developer community, a wide choice of solutions that enable faster time-to-market, longer time-in- market, and increased revenue opportunity. ...

Page 4

... LXT16726/727 may contain design defects or errors known as errata, which may cause the product to deviate from published specifications. Current characterized errata are available upon request. Intel and the Intel logo are trademarks or registered trademarks of Intel Corporation or its subsidiaries in the United States and other countries. * Other names and brands may be claimed as the property of others. ...

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