Title: LEO Satellite Market Analysis, Key Players & Strategies
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MARKET GLOBAL TOP 2000 STRATEGIST RELY ON US FOR
THEIR GROWTH STRATEGIES. LKNEOOW
MSORaEtell(i/KtneowMledagersktoeret.abspyreSquaes
tte_frlelei_tterialT) ype (Small, Medium, Large
Satellites, and Cubesats), Application
(Communication, Earth Observation Remote
Sensing, Scientific Research, Technology),
Subsystem, End Use, Frequency and Region -
Global Forecast to 2029 FREE BROCHURE
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Report Code AS 8060May, 2024, by
marketsandmarkets.com DESCRIPTION TABLE OF
CONTENTS METHODOLOGY DOWNLOAD PDF
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Report The LEO satellite volume is anticipated
to grow from 2,970 units in 2024 to 4,363 units
by 2029.The LEO satellite market is projected to
grow from USD 12.6 billion in 2024 to USD 23.2
Billion by 2029, at a CAGR of 13.0 from 2024 to
2029. Low Earth orbit (LEO) satellites are
satellites designed for low Earth orbit and used
for commercial, communication, and space
research purposes. According to NASA, a low earth
orbit is an earth-centered orbit with an
altitude of 2,000 km (1,200 miles) or less. For
the purposes of the commercial use policy, a low
earth orbit is considered the area in Earth orbit
near enough to Earth for convenient
transportation, communication, observation, and
resupply. Unlike satellites in GEO, which must
always orbit along Earths equator, LEO
satellites do not always have to follow a
particular path around Earth in the same way
their plane can be tilted. This means there are
more available routes for satellites in LEO,
which is one of the reasons why LEO is a very
commonly used orbit. LEO satellites are used for
earth observation remote sensing,
communication, mapping navigation,
surveillance security, meteorology, scientific
research exploration, space observation, and
various other applications by the defense,
civil, commercial, and government verticals.
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LEO Satellite Market Forecast to 2029 To know
about the assumptions considered for the study,
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3namics or satellite internet services
LEO satellite Market Dy Driver Rising demand
f There is a growing deman
d for low-cost, high-speed broadband with
increased data transmission capacity for
(/)
enterprises (retail, banking, energy, mining) and
governments in developed and emerging economies.
There is also an uplift in demand for low-cost
internet sSeigrnvIince(htatpms/o/wnwgw.imnadrikve
itdsaunadlmcaorknestsu.cmome/rssigninin.rauspra)
l areas, and less
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Moreover, the eficient internet CsAeRrEvEicReS
(a/CnAdREfaERs.tAsSpP)eeCdOaNTrAeCdTrUivSin(/CgOdN
eTAvCeTloUSp.mASePn) t of LEO constellation
network. Moreover, increased adoption of
technologies like AI, ML, and cloud computing,
increased government incentives, limited rural
internet access, and the introduction of
connected cars and smart cities further boost
the demand for satellite-based internet services.
Restraint Limited coverage and complexity of low
earth orbit satellites A single LEO satellites
coverage is less, so many satellites must be used
to cover the entire area (LEO constellation),
while a single GEO satellite is enough to cover
the same area. As LEO satellites are constantly
moving relative to the Earth, they tend to spend
a lot of time over unpopulated areas and oceans,
making them ineffective during that time. GEO
satellites stay at a specific spot relative to
the Earth, and they are more efficient for a
smaller, particular area. LEO satellites are less
expensive than GEO satellites, but as LEO
satellites must be deployed as a constellation,
the cost increases. GEO satellites
(https//www.marketsandmarkets.com/Market-Reports/
satellite-antenna-market-238993430.html) are
easier to build and operate than LEO satellites,
as there is no need for a real-time antenna
tracking service. Opportunity Booming 3D
printing technology 3D printing
(https//www.marketsandmarkets.com/Market-Reports/
3d-printing-market-1276.html)has evolved from
its early uses in design and prototyping to the
production of functioning products. Because 3D
printing does not require tooling, unlike
traditional manufacturing methods, it can help
solve obstacles (such higher tooling costs)
associated with traditional manufacturing
procedures used for rapid prototyping and small
production runs, among other applications. Even
if traditional manufacturing might create goods
at a lower cost per unit, it would require
expensive tooling up front, making low-volume
production more costly. By layering components
on top of each other, 3D printing technology also
contributes to a decrease in waste generated
during manufacturing. Another area where 3D
printing excels over traditional manufacturing is
mass customisation, especially for small batch
sizes. It is still uncertain what parts will be
printable using 3D printing and whose production
might not be feasible with conventional
manufacturing methods. Despite this uncertainty,
3D printing can upgrade supply chain management,
which may affect the logistics link between
manufacturers and customers for certain types of
products or parts. The 3D printing market has
also been experiencing advancements in printers
and printing technologies, improvement in
printing materials, and development in the skill
set of the associated workforce. Challenge
Concerns over increasing space debris low-Earth
orbit (LEO) satellites have the potential to be
hazardous to the space environment as they are
often launched in densely populated orbits. This
is so because low-Earth orbit (LEO) satellites
are auxiliary payloads that are launched with
more costly and larger spacecraft. They are
typically placed next to or
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4f which feature space debris. Microsatellites and
nanosatellites are not nimble e around in such
orbits. These satellites' native radar signals
are usually faint and ce surveillance systems.
Moreover, space debris could pose a risk to
low-Earth orbit ((/L)EO) satellites, which would
increase the quantity of debris from collisions
or malfunctions in the systems. According to
Space-Track.org, there are about 14,000 large,
medium, and small debris objects floating about
synchronous orbits, both o enough to be able to
mov frequently invisible to spa
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in LEO as of May 2023. This is a significant
challenge in this field and is under research by
various space
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LEO Satellite Market Ecosystem
Based on application, the commercial segment
registered largest share in 2023 In terms of
application, the LEO satellite market is
categorized into five segments communication,
earth observation remote sensing, scientific
research, technology, and others. The demand for
LEO (Low Earth Orbit) satellites for
communication applications is increasing
primarily due to their capability to provide
low-latency, high-speed internet connectivity.
LEO satellites, orbiting at altitudes between
500 to 2,000 kilometers, significantly reduce the
time it takes for data to travel between the
Earth and the satellite. This proximity ensures
faster signal transmission, making LEO satellites
ideal for real-time
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5calls, online gaming, and other services that
require rapid response times. The advantage over
geostationary satellites, which are located much
higher at about s have higher latency. F(/)urther
more, LEO satellites can provide widespread
coverage, including in remote and rural areas
where traditional broadband infrastructure is
either too costly or physically impractical to
deploy. This capability is
applications such as video reduced latency is a
major 35,786 kilometers and thu
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essential for achieving global internet coverage
and bridging the digital divide. The ability to
deploy large
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m) arketsandmarkets.com/Market-Reports/small-satel
lite-market- 150947396.html) economically,
thanks to advances in satellite miniaturization
and cheaper launch costs, allows for
comprehensive coverage and network resilience. As
a result, telecommunications companies,
government agencies, and various industries
increasingly rely on LEO satellites to meet the
growing demand for reliable, ubiquitous
communication services. This shift is underpinned
by a growing consumer expectation for constant
connectivity, irrespective of geographical
location.
Based on frequency, Laser/optical segment is
projected to grow at highest CAGR during the
forecast period The LEO satellite market is
categorized by frequency into nine segments
Ku-band, Ka-band, X-band, C- band, L-band,
S-band, laser/optical, HF/VHF/UHF-band, and
Q/V-band. Among these the laser/optical segment
is projected to grow at highest CAGR during
2024-2029 due to its high data transfer
capability. Corporations like SpaceX, Facebook,
and Google, as well as a series of start-ups, are
currently working on various concepts based on
laser communication technology. The most
promising commercial applications involve
interconnecting satellites or high-altitude
platforms to build high-performance optical
backbone networks. Other applications include
transmitting large amounts of data directly from
a satellite, aircraft, or UAV to the
ground. The Asia Pacific region is projected to
Grow at highest CAGR during the forecast
period The LEO satellite market in Asia Pacific
has been studied for China, India, Japan, South
Korea, and Australia. Asia Pacific countries
have been extremely focused on developing
advanced technologies for laser- and
optics-based satellites. Earth observation and
scientific data gathered by nanosatellites and
microsatellites support the decision-making
process related to climate monitoring and
agricultural planning, along with providing
inputs related to soil protection in terrestrial
and maritime areas and carrying out border
surveillance. The growing demand for digital TV
and direct-to-home (DTH) entertainment services
in Asia Pacific leads to an increasing number of
LEO satellites being launched for communication
in the region.
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LEO Satellite Market by Region To know about the
assumptions considered for the study, download
the pdf brochure (https//www.marketsandmarkets.co
m/pdfdownloadNew.asp?id252330251) Key Market
Players The major players in the LEO satellite
companies (https//www.marketsandmarkets.com/Resea
rchInsight/leo- satellite-market.asp) are SpaceX
( (https//www.spacex.com/)US), Airbus Defence
and Space (https//www.airbus.com/en) (Germany),
Lockheed Martin Corporation (https//www.lockheedm
artin.com/) (US), Northrop Grumman Corporation
(https//www.northropgrumman.com/) (US), and
L3Harris Technologies, Inc. (https//www.l3harris
.com/en-in/india?regional_redirecten-in) (US).
These players have adopted various growth
strategies such as contracts, joint ventures,
partnerships agreements, acquisitions, and new
product launches to further expand their presence
in the LEO satellite market.
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()
Click on image to enlarge
Scope of the Report
Report Metric
Details
Market size available for years
2020-2029
Base year considered
2023
Forecast period
2024-2029
Forecast units
Value (USD)
By Satellite Mass, By Application, By End Use, By
Frequency, By Subsystem, and By Region
Segments Covered
North America, Asia Pacific, Europe, the Middle
East Africa, and Latin America
Geographies covered
SpaceX (US), Airbus Defence and Space (Germany),
Lockheed Martin Corporation (US), Northrop
Grumman Corporation (US), and L3Harris
Technologies, Inc. (US), and Others
Companies covered
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8rone llite
Pumpkin Inc. (US), Alba Orbital (UK), EnduroSat
(Bilgeria)
Companies covered (D start-ups and LEO sate
ecosystem)
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CTAhRiEsErReSs(e/CaArRcEhERre.ApSoP)rt
cCaOtNeTgACoTriUzSes(/CtOhNeTALCETOUSs.AaStPe)llit
e market based on satellite mass, subsystem, end
use,
application, frequency, and region Segment Subseg
ment
Small Satellites Minisatellites Microsatellites
Nanosatellites CubeSats 0.25-5U 1U 2U 3U 6U gt12U M
edium Satellites Large Satellites
By Satellite Mass
Communication Earth Observation Remote Sensing
Scientific Research Technology Others
By Application
Satellite Buses Payloads Solar Panels Satellite
Antennas Others
By Subsystem
Commercial Government Military Dual Use
By End Use
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9L-band S-band C-band X-band Ku-band
By Frequency
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(/CONTACTUS.ASP) HF/VHF/UHF-band Laser/Optical
North America Europe Asia Pacific Middle East
Africa Latin America
By Region
Recent Developments In January 2024, L3Harris
Technologies, Inc. won a USD 919.0 million worth
contract to build 18 infrared space vehicles for
the Space Development Agencys (SDA) (US) Tranche
2 (T2) Tracking Layer program, enhancing missile
warning and tracking capabilities. These advanced
solutions will aid the US military in countering
hypersonic threats. L3Harris expertise in space
technology and previous work with the SDA
further solidifies its position in the defense
sector. In October 2023, the Space Development
Agency (SDA) (US) awarded Northrop Grumman
Corporation a contract worth USD 732.0 million
to design and build 38 data transport satellites
for the Tranche 2 Transport Layer Alpha
(T2TL-Alpha) of the Proliferated Warfighter Space
Architecture (PWSA). These low Earth orbit (LEO)
satellites will support military missions, with
operations scheduled to start in December
2026. In October 2023, the US Space Force awarded
SpaceX a USD 70 million contract for Starlink
internet services. The contract, awarded by the
Space Systems Command (US), involves a one-year
task order starting on September 1.
Additionally, the contract specifies undisclosed
requirements set by the US Department of Defense
(DoD). Frequently Asked Questions (FAQs)
What is the current size of the LEO satellite market?
Who are the winners in the LEO satellite market?
What are some of the technological advancements in the market?
What are the factors driving the growth of the
market? Which region is expected to hold highest
market share in the LEO satellite market?
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