United States Electronically Scanned Arrays Market Size By Product Type (Active Electronically Scanned Array, Passive Electronically Scanned Array), By Frequency Range (Short – Medium range, Long Range), By Application (Land, Naval), By Component (Power Supply Module, Cooling System), By Frequency Band (L, C), And Forecast
Published on: 2024-08-08 | No of Pages : 320 | Industry : latest updates trending Report
Publisher : MIR | Format : PDF&Excel
United States Electronically Scanned Arrays Market Size By Product Type (Active Electronically Scanned Array, Passive Electronically Scanned Array), By Frequency Range (Short – Medium range, Long Range), By Application (Land, Naval), By Component (Power Supply Module, Cooling System), By Frequency Band (L, C), And Forecast
United States Electronically Scanned Arrays Market Size And Forecast
United States Electronically Scanned Arrays Market size was valued at USD 2.25 Billion in 2022 and is calculated to reach USD 3.59 Billion by 2030, growing at a CAGR of 5.24% from 2023 to 2030.
The United States Electronically Scanned Arrays (ESA) Market is driven due to factors such as rising demand for advanced radar systems featuring higher detection and tracking capabilities in defense applications. Additionally, the rising adoption of ESA in commercial applications such as surveillance, air traffic control, and weather forecasting drives the demand for the ESA. Moreover, advancements in semiconductor technology and signal processing enhance ESA systems’ affordability and performance, which further drives market growth.
United States Electronically Scanned Arrays Market Definition
Electronically Scanned Arrays (ESA) are advanced radar systems that steer the radar beam electronically. Unlike traditional mechanically scanned antennas, ESA employs small radiating elements, each with phase and amplitude control. By electronically adjusting the parameters of individual elements, the radar beam’s direction and shape can be controlled precisely and rapidly. The ESA system processes signals from these elements, adjusting their phase and amplitude in real-time to form a coherent radar beam.
This electronically steered beam provides increased agility, faster target detection, and the ability to simultaneously monitor multiple targets, making ESA a crucial technology in advanced radar systems for defense, surveillance, and commercial applications. ESA finds extensive use in various applications, such as military and defense, for threat detection, surveillance, and reconnaissance. The commercial applications of the system are air traffic control, weather monitoring, and space-based observation. These systems’ versatility and performance capabilities make them critical technology in modern radar systems, providing enhanced situational awareness and improving overall radar performance.
What's inside a
industry report?
Our reports include actionable data and forward-looking analysis that help you craft pitches, create business plans, build presentations and write proposals.
United States Electronically Scanned Arrays Market Overview
The United States Electronically Scanned Arrays (ESA) market is driven due to factors such as the growing adoption of advanced radar technology in various applications. ESA offers considerable advantages over traditional mechanically scanned antennas, and its increasing demand is attributed to driving the market growth. The key driver for the market is the rising need for advanced radar systems with higher detection and tracking capabilities in defense applications. The evolving nature of threats and challenges in the defense sector further drives the demand for radar systems providing enhanced situational awareness and quick response capabilities.
ESA technology offers faster scanning, improved agility, and the ability to monitor multiple targets simultaneously, making it an attractive choice for modern defense applications. The rising adoption of ESA in commercial applications drives market growth. Industries such as air traffic control, surveillance, weather forecasting, and space-based observation require superior performance and reliable radar systems. ESA’s electronic beam steering capability allows rapid scanning over a wide area, enabling real-time monitoring and accurate data collection for these applications. Advancements in semiconductor technology and signal processing are attributed to a positive impact on the demand for these systems.
The development of efficient semiconductor devices and high-performance digital signal processors has enhanced the overall affordability and performance of the ESA technology. Government initiatives and investments in modernizing defense and surveillance capabilities further boost the adoption of ESA technology. The United States government is actively funding and supporting R&D projects that enhance radar capabilities, including ESA systems. This support creates opportunities for ESA manufacturers and suppliers, promoting innovation and market growth. The increasing integration of ESA technology into UAVs and autonomous systems is anticipated to be a crucial driving factor in the forthcoming years. ESA-enabled UAVs offer enhanced surveillance and reconnaissance capabilities, making them invaluable assets in civil and military applications.
United States Electronically Scanned Arrays MarketSegmentation Analysis
The United States Electronically Scanned Arrays Market is segmented on the basis of Product Type, Frequency Range, Application, Component, and Frequency Band.
United States Electronically Scanned Arrays Market, By Product Type
- Active Electronically Scanned Array
- Passive Electronically Scanned Array
To Get Summarized Market Report By Product Type-
Based on Product Type, the market is segmented into Active Electronically Scanned Array and Passive Electronically Scanned Array. The Active Electronically Scanned Array (AESA) segment contributed the highest share in 2022. AESA offers rapid beam steering, improved range and sensitivity, multi-target tracking, lower maintenance needs, reduced vulnerability to interception and jamming, and scalability for various radar applications. These capabilities make it a preferred choice in modern defense and surveillance, providing enhanced performance and flexibility compared to traditional mechanically scanned arrays.
United States Electronically Scanned Arrays Market, By Frequency Range
- Short – Medium Range
- Long Range
Based on Frequency Range, the market is segmented into Short – Medium Range and Long Range. The Short – Medium Range segment contributed the largest share in 2022 owing to the rising demand for the road-based transportation of retail goods for long distances, especially last-mile delivery. Road transport also allows a larger carrying capacity, making it a preferred choice for logistics. The governments are also undertaking active measures to promote road transport, contributing to the segment’s growth.
United States Electronically Scanned Arrays Market, By Application
- Land
- Naval
- Airborne
Based on Application, the market is segmented into Land, Naval, and Airborne. The land segment contributed the highest share in 2022. The ESAs have become vital for land-based defense and military applications. ESA technology is used extensively in ground-based radars for early warning, air defense, and surveillance. These radars offer precise and rapid scanning of airspace, enabling timely threat detection and multi-target tracking. ESA-based coastal surveillance radars and border surveillance systems are also extensively used to detect unauthorized crossings and enhance national security by monitoring maritime activities. Additionally, ESA is employed in Counter Rocket, Artillery, and Mortar (C-RAM) systems to intercept incoming missiles, thereby safeguarding military bases and high-value assets.
United States Electronically Scanned Arrays Market, By Component
- Transmit Receive Module (TRM)
- Phase Shifters (Analog/Digital)
- Beamforming Network (BFN)
- Signal Processing (Analog/Digital)
- Radar Data Processor (RDP)
- Power Supply Module
- Cooling System
Based on Component, the market is segmented into Transmit Receive Module (TRM), Phase Shifters (Analog/Digital), Beamforming Network (BFN), Signal Processing (Analog/Digital), Radar Data Processor (RDP), Power Supply Module, and Cooling System. The transmit-receive module segment contributed the highest share in 2022. Transmit Receive Modules (TRMs) have wide applications in radar and communication systems and are key components in phased array antennas, providing the capability to transmit and receive signals.
TRMs are also used in military radars for surveillance, air defense, and missile tracking. In communication systems, TRMs enable beam-steering and beamforming, which enhances data transmission and reception in wireless communication networks. TRMs offer improved radar performance, faster signal processing, enhanced system flexibility, reduced power consumption, and the ability to form multiple beams for improved target detection and communication range.
United States Electronically Scanned Arrays Market, By Frequency Band
- L
- C
- X
- Ku/K/Ka
- S
- W
- Others
To Get Summarized Market Report By Frequency Range-
Based on Frequency Band, the market is segmented into L, C, X, Ku/K/Ka, S, W, and Others. The X segment contributed the highest share in 2022. Electronically Scanned Arrays operating in the X frequency band offer several advantages. The X-band’s shorter wavelength allows for compact and lightweight antenna designs, making it suitable for space-constrained and mobile applications.
X-band radars provide enhanced target resolution and discrimination, allowing better target identification in military surveillance and air traffic control. The frequency’s weather penetration capability ensures reliable radar performance even in adverse weather conditions. X-band systems experience less interference due to the comparatively uncongested frequency spectrum, which improves signal clarity. Moreover, X-band radars offer fast beam scanning and agility, facilitating rapid target tracking and acquisition in dynamic environments.
Key Players
The “United States Electronically Scanned Arrays Market” study report will provide valuable insight with an emphasis on the market including some of the major players of the industry are RADA Electronic Industries Ltd., Israel Aerospace Industries Ltd., Northrop Grumman Corporation, Raytheon Technologies Corporation, Lockheed Martin Corporation, Leonardo S.p.A., Thales Group, SAAB AB, Almaz-Antei, and Reutech Radar Systems. This section provides a company overview, ranking analysis, company regional and industry footprint, and ACE Matrix.
Our market analysis also entails a section solely dedicated to such major players wherein our analysts provide an insight into the financial statements of all the major players, along with product benchmarking and SWOT analysis.
Key Developments
- In March 2023, Northrop Grumman Corporation started production of Multi-role Electronically Scanned Array for E-7 aircraft of the U.S. Air Force. The new systems will provide critical detection, long-range sensing, and identification capabilities to the E-7 Aircraft.
- In July 2021, Raytheon Technologies Corporation promoted the PhantomStrike system, a low-cost active electronically scanned array designed for various aircraft types. The system is optimized for weight, space, and power constraints platforms
Ace Matrix Analysis
The Ace Matrix provided in the report would help to understand how the major key players involved in this industry are performing as we provide a ranking for these companies based on various factors such as service features & innovations, scalability, innovation of services, industry coverage, industry reach, and growth roadmap. Based on these factors, we rank the companies into four categories as Active, Cutting Edge, Emerging, and Innovators.
Market Attractiveness
The image of market attractiveness provided would further help to get information about the region that is majorly leading in the United States Electronically Scanned Arrays Market. We cover the major impacting factors responsible for driving the industry growth in the given region.