CABLE
SPEED UP THE TRANSITION FROM NE TWORK TO NFV
WVth the developmet of many banduithintensve mutimediappicatons in ocay'se , the demandfor more anowiths nceasedgreatyuThsplaces a heay burde on service providers,
focingthemtouiclyupgadetrerwired etwor segments tostporthi huetratictlemand in tems ofvoic, ideo and dara.Imowvations inaccs, ransmission and networc eauioment are
ongaing to aieat ,transmit an delver SG rfic These imnovatve technolo es ecirefeibleplatoms that notconly proide soutions auicky butalso have developed low-cost minration
paths for successful mass production deployment. With a comprehensive high-performance, low-cost FPGA portfolio and Intel's programmable logic device (PL .D), it provides the processing
bandwidth and flexibility required for wired infrastructure design. To speed up the launch ,intel has also provided a wide range of intellctual property rights ( IP),reference designs,and comprehensive
off-the-stelf partner solutions through lntel's cable ecoyistem.intel's 14nm and 2onm chip technology ledership, support tools and solution rates enable higher-level system integration of
wired communications infrastructure.
NFV
Network functional virtualization (NFV) has become the focus of communication service providers (CoSP) because
the combination of programmable COTS software and configurable hardware technology can provide enhanced.
Products works with OEMs, Telecommunications Equipment Manufacturers (TEMs) and Virtual Network Functions (VNF)
Products works with OEMs, Telecommunications Equipment Manufacturers (TEMs) and Virtual Network Functions (VNF)
partners to solve product architecture (IA) based NFV solution product and service challenges to create open source based
scalable, scalable Interoperable NFV platform com ponents to enhance the overall product and service performance
of the 100G+ network function bandwidth especially required by Virtual Broadband Network Gateway (VBNG) and
Virtual Evolved Packet Core (VEPC) solutions. These VNFs can a[so be paired with security and acceleration features.
NETWORK
With DPDK-compatible IP, this product enables the rapid deployment of overall network solutions; these IP show the
FPGA ability to build cutting-edge TB rate, feature-rich network capabilities. This product has internally developed
and partner supported algorithms TCAM, deep packet checking, traffic management, and NPU replacement IP,
which have a wide range of applicability in terms of network control and data planes. Intel is aligned with the
open network standard ecosystem and has a clear plan to have the ability to deploy P4-enabled network IP;
P4-enabled network IP can stimulate efficient and rapidly deployed network functional innovation, so
communications service providers require telecom manufacturers to support cross-software and
hardware flexibility.
SECURITY
The network communications infrastructure of today's era requires end-to-end security: from SOHO devices to hybrid
cloud data centers to operator service providers. Whether the data is in the transmission or static state, in the whole
communication spectrum, security is the basic requirement, through MACsec and IPsec and other industry standard
network security protocols configuration. These requirements are particularly difficult when you consider linking a
unique software environment to a variety of network security points (from block VNF acceleration in the data center
cloud (CPU uninstall) to firewall / DPI devices in the gateway, to embedded line card storage engines in the enterprise).
Intel provides a comprehensive overall MACseC and IPsec soft IP FPGA solution, each with a basic set of features that
are typically associated with end-user applications.OPTICAL TRANSMISSION
OPTICAL TRANSMISSION
Now, the transition to optical transport networks is underway. As network bandwidth needs continue to grow
due to 5G, hybrid cloud, and the Internet of Things (IoT), larger and larger pipelines have been introduced to
meet these needs. Operators must all implement dynamic allocation based on needs, while also considering
time-to-market, cost per bit and energy issues. In addition, operators are constantly looking for ways to
further monetize their transmission systems through services and applications. FPGAs can address high-growth
areas such as 5G mobile backhaul, data center interconnect (DCI), and mobile edge computing (MEC), as well
as these different data path needs in traditional transport, while using Intel Xeon processors at the.
transport layer. Services and applications built on top of it. By leveraging FPGA programming capabilities
while leveraging a strong intellectual property (IP) team and solution partner ecosystem to reduce overall
solution cost through standards- based IP, customers can increase flexibility and reduce risk. All these
results in a complete end-to-end transport solution.
ACCESS
FPGA can speed up the launch time of integrated wired, PON and
wireless access infrastructure. Contact customer service
DESIGN
Accelerate innovative contact with customer service through requirements, tools and IP
DOCUMENT
Create documents on devices, IP cores, white papers, etc.