Growth Prospects for Fiber Optic Cables Market for Next 5 Years - PowerPoint PPT Presentation

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Growth Prospects for Fiber Optic Cables Market for Next 5 Years

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The Fiber Optic Cables Market for Military & Aerospace is projected to reach USD 1.5 billion by 2026, it is expected to grow at a CAGR of 5.1% during the forecast period. – PowerPoint PPT presentation

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Title: Growth Prospects for Fiber Optic Cables Market for Next 5 Years


1
(/) HFOMibE (e/) rABOOUpT UtSic(/ABCOUaTUbSS-l8e
e.HaTsrcMhLM)ReLapEoArrDtksEReStHIP TEAM
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CONTACT US (/CONTACTUS.ASP) HOME (/) ? TOP MARKET
REPORTS (/TOP-MARKET-REPORTS.ASP) ? FIBER OPTIC
CABLES MARKET 7500 COMPANIES WORLDWIDE APPROACH
US EVERY YEAR FOR THEIR REVENUE GROWTH
INITIATIVES KFNiObWeMr OOREptic(/KCnowalebdlgeesst
orMe.aasprkreequtesfto_frreeM_triialli) tary
Aerospace by Platform (Civil, Military, Space),
Application (Avionics, Navigation, Weapon
Systems, Communication Systems), Type
(Single-mode, Multi-mode), Material, and Region
(2021-2026) FREE BROCHURE (/pdfdownloadNew.asp?id
235960805) FREE SAMPLE REPORT (/requestsampleNew.a
sp?id235960805) Report Code AS 6636Nov, 2021,
by marketsandmarkets.com DESCRIPTION TABLE OF
CONTENTS METHODOLOGY DOWNLOAD PDF
(/PDFDOWNLOADNEW.ASP?ID235960805) The Fiber
Optic Cables Market for Military Aerospace is
projected to reach USD 1.5 billion by 2026, it is
expected to grow at a CAGR of 5.1 during the
forecast period. The market is driven by factors
such as development of fiber optics based
avionics systems, growing demand for fiber optic
cables in aircraft interiors and development of
fiber optics based spacecraft designs.
To know about the assumptions considered for the
study, Request for Free Sample Report W(ehutstpe
sco/o/kwiews wto.emnhaarnkceetsyoaunr
dexmpearireknecets. .Bcyocmon/trineuqinugetostvsis
aitmthpislesitNe eyowu.aagsrpee?tiodou2r3u8se4o4f
3c4oo3k8ie)s . More info
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2
r military platform are the least impacted
because of COVID-19 outbreak. Market for fiber
munication systems is expected to grow at a very
healthy rate, from 0.6 Billion USD in n 2026.
Fiber optic cables used fo optic cables used in
com 2021 to 0.79 Billion USD i
(/) COVID-19 Impact on the fiber optic cables
market for military aerospace HTOhMeE
f(i/)beArBoOpUtTicUSca(/AbBleOsUTmUSa-r8k.HeTtMfLo
)r mLEilAitDaErRySHIPaTeErAoMsp(/LaEcASeDigEinnRI
cSnHlu(hIPdttTepEssA/M/mw.AwaSwjPo.m)raprklaetysa
enrdsmAarmkeptsh.ceonmo/sligfnsiin.(aUspS)),
Carlisle RInESteErAcRoCnHnEeXcPtERTTeSc(h/RnEoSlEo
AgRieCHsL(EUADSE)R, SRHaIPd.AiaSPll)
(ItBaRlIyE)F,INCGoSr(n/AinNAgLYoSpTtBicRaIEl
FcINoGmSm.HTuMnLi)caCtiAoRnEsERLSL(C/CA(URESE)R,.A
aSnPd) TE Connectivity CONTACT US
(/CONTACTUS.ASP) (US). These players have spread
their business across various countries includes
North America, Europe, Asia Pacific, Middle East,
Africa, and Latin America. COVID-19 has impacted
their businesses as well. Industry experts
believe that COVID-19 has affected the services
for defense aerospace sector globally in
2020. During the COVID-19 outbreak, the orders
and deliveries of fiber optic cables in military
were intact. However, owing to supply chain
disruptions, slight negative impact is expected
on the Fiber optic cables market for military
aerospace which recovers slowly in 1st quarter of
2021. Fiber optic cables market for military
aerospace Dynamics Driver Increasing use in new
and upgraded aircraft The increase in the number
of orders for new aircraft across the globe is
one of the key factors driving the growth of the
fiber optic cables market for military and
aerospace. According to Airbus Outlook 2018, the
global commercial aircraft fleet size is
anticipated to increase from 21,450 aircraft in
2018 to 47,990 aircraft by 2037. As such, the
number of aircraft deliveries is projected to
reach 37,390 aircraft by 2037. Approximately
74.3 of new aircraft orders contribute to the
replacement of existing aircraft, while the
remaining orders are projected to contribute to
the fleet growth of airlines to enable geographic
expansion into emerging markets. New aircraft are
also expected to ensure the development of
innovative business models for various
airlines. There is an increasing demand for new
and advanced aircraft in emerging markets in the
Middle East, Asia Pacific, and Latin America.
According to the Boeing 2016 Market Outlook, the
Asia Pacific region is projected to account for
a share of 40.0 of the global aircraft
deliveries between 2016 and 2035. The rise in air
passenger traffic due to an increase in the
disposable income of the middle-class population
in emerging economies, such as India and China,
is expected to fuel the demand for new aircraft.
Furthermore, there has been a rise in the
profitability of airlines due to reduced prices
of crude oil and increased efficiency of aircraft
operations. The operational efficiency of an
aircraft is determined by various factors, such
as the design of aircraft engines, navigation
flight paths, and weather conditions.
Advancements in navigation technologies used by
aircraft, along with improvements in flight
operations, technical operations, and ground
operations, have enhanced the operational
efficiency of different types of aircraft. This,
in turn, has led to an increase in new aircraft
orders across the globe, thereby leading to a
rise in new aircraft deliveries. Opportunity
Demand for optical add-drop multiplexer (OADM)
networks The increase in demand for high-speed
data transfer is projected to drive the use of
fiber frameworks in the fiber optic cables
market for military and aerospace. Optical
add-drop multiplexers and optical demultiplexers
were introduced in the fiber optic network to
enable the transfer of a large amount of data.
These multiplexers are simple components that
enable specific addition or reduction in optical
channels to cater to the requirements for
different wavelength administration capacities
to ensure high-speed data transfer. The OADM
network is increasingly used by aircraft and
ships as well as for electronic warfare and C4ISR
(https//www.marketsandmarkets.com/Market-
Reports/c4isr-market-1315.html) activities.
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3
aintenance and installation requirements e
electrification concepts, such as fly-by-wire,
in-flight entertainment systems, and glass e use
of fiber optic cables in aircraft and ships. Due
to multiple inter-connected systems a(/)nd
components, optical cables are structurally
complex and are prone to damage caused by
vibrations or modifications to the entire wiring
diagram. Issues faced during the maintenance and
installation of fiber optic HcOaMbEle(/s)
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n of fiber optic cables are acting as a challenge
to the growth of the fiber optic cables market
for military and aerospace. Demand for
communication system will drive the demand for
application segment of fiber optic
cables. Communication systems require an
exceptional level of tactical grade equipment,
which provides access to the global information
grid of shared data and information. These
systems utilize fiber optic cable networks to
transmit intelligence, surveillance, and
reconnaissance information through different
communication systems. Satellites, interlinked
ground links, and communication systems are
considered an important part of communication
networks as they enable data transmission
through secure data links. These data links use
compatible communication protocols to share
information securely between allies. For
instance, the North Atlantic Treaty Organization
(NATO) forces use Link 16 to exchange air force
data with member countries. Other prominent
systems in use by NATO forces include the Joint
Tactical Information Distribution System
(JTIDS). Lockheed Martin develops communication
satellites and satellites communication systems
for the US Air Force to improve its ground
communication. The Multi-mode fiber type sector
is projected to witness a higher CAGR during the
forecast period Multi-mode fiber optic cables
have a large diameter core that allows multiple
modes of light to propagate. This increases the
number of light reflections created as the light
passes through the core, enabling more data to
pass through at a given time. The quality of the
signal is hampered over long distances due to the
transmission of data in large volumes and the
high attenuation rate. The wavelengths of light
waves in multi-mode fibers are in the visible
spectrum ranging from 850 nm to 1300 nm. In a
multimode fiber, the core-to-cladding diameter
ratio is 50?125 ?m and 62.5?125 ?m. These fibers
are typically used for short-distance data and
audio/video applications in LANs. The deployment
and adoption of high-optic fiber optic networks
in sophisticated avionics and aerospace systems
continue to accelerate. This introduces a new set
of challenges for the maintenance, test, and
diagnostics of these critical systems. Airlines
are shifting to seatback screens serving each
passenger from a few overhead screens serving
multiple passengers. This shift enhances
on-demand services tailored to each passenger,
thus impacting airline revenue. Fiber optic
cables are likely to replace traditional copper,
eliminating the subsequent intermediate seat
electronics, zone boxes, and intermediate
switches. Multi-mode fiber optic cables are the
first choice for carrying data rates of gt10 GB/s
across large wide-body aircraft. Military and
defense fiber optic cables focus on the
development and manufacturing of
application-specific products for harsh
environments and are highly specialized. Fiber
optic cables in the military are used across a
wide variety of ground, air, sea, and space
applications that require harsh environment
certification and rigorous testing to ensure
performance and reliability in the field.
Challenges Complex m The introduction of intens
cockpits, has propelled th
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bles used for military platform is projected to
witness highest CAGR during the o extreme
conditions during rescue operations and hence
require more ruggedized fiber o(/)ptic cables.
In military aircraft, fiber optic cables are used
in avionics and mission control systems for
high-speed data transfer for applications such
as mission data, flight planning data, and sensor
data fusion for weapon HsOyMsEte(/m)
sA.BTOhUuTsU,St(h/AeBiOnUcTrUeSa-8s.HinTgMLa)doLpE
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IEaFIrNkGeSt.HfoTMr Lm) iliCtaARryEEaRnSd(/CaAeRrE
oEsRp.AaScPe). Various 4th and 5th
Market for fiber optic ca forecast
period Military operations underg
CONTACT US (/CONTACTUS.ASP)
generation fighter aircraft such as the F-35,
J-20, and Su-57 use fiber optic cables onboard to
monitor the performance of engines, flight
control systems, and avionics.
The Asia Pacific market is projected to
contribute the largest share from 2021 to
2026 The fiber optic cables market for military
and aerospace in the Asia Pacific region has been
studied for China, Japan, India, South Korea and
Australia. The Asia Pacific fiber optic cables
market for military and aerospace is estimated
at USD 876.0 million in 2021 and is projected to
reach USD 967.9 million by 2026, at a CAGR of
5.3 from 2021 to 2026. Huge investments are
being made in various programs by the Chinese
Indian militaries in aircraft and related
systems, C4I systems, mission support, and
space-based systems, etc. Owing to this, Asia
Pacific is expected to lead the fiber optic
cables market for military and aerospace during
the forecast period. There are various
well-established and prominent fiber optic cables
manufacturers having their regional offices in
this region, including Amphenol (US), Carlisle
Interconnect Technologies (US), Corning Optical
Communications LLC (US), W.L. Gore Associates
(US), TE Connectivity (Switzerland), and Radiall
(France), In this report, the Asia Pacific region
is segmented into Japan, China, India, South
Korea, and Australia. This region is expected to
be the fastest-growing fiber optic cables market
for military and aerospace. This is mainly
attributed to the presence of growing economies
such as China and India, increasing
funding/investments toward the development of
defense products, the growing focus of both
international and domestic players on the region,
and extensive RD activities for defense
systems. In addition, rising insurgencies,
territorial disputes, increasing terrorism,
unrest between neighboring nations, and political
conflicts in the region are also fueling the
growth of the fiber optic cables market for
military and aerospace in this region. Favorable
regulatory policies for the approval of new
defense products are further intensifying the
interest of players in the Asia Pacific fiber
optic cables market for military and
aerospace. The market in this region is
characterized by the increasing demand for
better-performing Optical Cables that ensure
optimal reliability, safety, and quality to
streamline and facilitate sensitive and complex
operations. It is also driven by the stringent
standards to meet the requirements of various
platforms such as unmanned deployments (air and
ground), flight communications, and harsh
environment conditions.
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study, download the pdf brochure (https//www.mark
etsandmarkets.com/pdfdownloadNew.asp?id238443438)
Key Market Players The fiber optic cables
market for military aerospace is largely
fragmented. Established players in the market
include Amphenol fsi (UK), Carlisle Interconnect
Technologies (US), Radiall (Italy), TE
Connectivity (Switzerland), Corning Optical
Communications LLC (US), Prysmian Group (Italy),
Northrop Grumman Corporation (US). Fiber Optic
Cables Market for Military Aerospace Report
Scope
Report Metric Details
Estimated Market Size USD 1.2 Billion
Revenue Forecast in 2026 USD 1.5 Billion
Growth Rate 5.1
Forecast period 2021-2026
Market size available for years 2018?2026
Base year considered 2021
Forecast units Value (USD Million)
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By Application, By Platform, By Type, By Material
overed
Segments c
North America Europe
(/)
Geographies covered
Asia Pacific
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Rest of the World
Companies covered
Amphenol FSI (US), Carlisle Interconnect Technolog
ies (US), Radiall (France), TE Connectivity
(Switzerland), and Corning Optical
Communications LLC (US)
The study categorizes the fiber optic cables
market for military aerospace based on
Application, Platform, Type, Material, and
Region. By Application Cabin Interior Weapons
Systems ISR Systems Communication Systems
Navigation Sensing Avionics Others By
Platform Civil Military Space By Type Single
Mode Multi-Mode By Material Glass Plastic By
Region North America Asia Pacific Europe
Middle East Rest of the World
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Recent Developments In October 2020, Th
Communications LL
e Evolv Hardened Connectivity Solutions developed
by the Corning Optical C with Pushlok Technology
are designed to simplify fiber deployment for all
types of communications networks. In November
2019, W. L. Gore Associates offers new design
options in the sample inventory of GORE high
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Frequently Asked Questions (FAQ) What are your
views on the growth prospect of the fiber optic
cables market for military aerospace? What are
the key sustainability strategies adopted by
leading players operating in the fiber optic
cables market for military aerospace?
What are the new emerging technologies and use
cases disrupting the fiber optic cables market
for military aerospace? Who are the key
players and innovators in the ecosystem of the
Fiber optic cables market for military
aerospace? Which region is expected to hold the
highest market share in the fiber optic cables
market for military aerospace? To speak to
our analyst for a discussion on the above
findings, click Speak to Analyst (https//www.mark
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ADJACENT MARKETS Fiber Optic Components Market
(/Market-Reports/fiber-optic-component-market-6377
5446.html) Fiber Optics Market
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(/Market-Reports/fiber-optic-test-equipment-market
-69318734.html) Hybrid Fiber Coaxial Market
(/Market-Reports/hybrid-fiber-coaxial-market-19004
2659.html) Optical Interconnect Market
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