Global Radiation-Hardened Electronics for Space Application Market 2021


시장 개관

The global market for radiation-hardened electronics for space applications is projected to reach $4,761 백만 단위로 2032, growing at a rate of 1.70% 예측 기간 동안. This growth is primarily driven by the increasing demand for communication and Earth observation satellites.

Semiconductors are essential components of electronic circuits, possessing unique electrical properties between insulators and conductors. These components are crucial for a wide range of applications, from simple timers to complex instruments like satellites and supercomputers. Radiation-hardened electronics are electronic components designed to withstand high levels of radiation commonly found in industries such as defense, energy, 항공우주. Technological advancements in electronic components and semiconductors have allowed satellite and launch vehicle manufacturers to operate in high-radiation environments. 하지만, the high-altitude space environment poses challenges in building semiconductor devices capable of withstanding radiation effects. Issues such as noise and signal spikes caused by single charged particle strikes can lead to inaccuracies and performance problems in electronic devices used in satellites, deep-space probes, and launch vehicles.

상품 유형

시장 보고서

아니요. 페이지 수

160

출시일

4월 22일

기준 연도

2021

예측기간

2022-2032

시장 규모

미화 2.4 10억 2020

시장 부문

Platform, Manufacturing Technique, 재료 유형, 요소, 지역

지역

글로벌

아니요. 언급된 회사 수

22


최근에는, there has been a significant shift towards adopting small satellites, particularly in satellite constellations for applications like Earth observation, remote sensing, and space-based broadband services. This trend has fueled the demand for radiation-hardened electronic components. Several ongoing projects aim to develop advanced, cost-effective radiation-hardened electronics to support upcoming mega-constellations and meet the growing interest in long-lasting satellite components capable of withstanding harsh space environments.

Various radiation-hardened electronics currently used in space applications include onboard computers, microprocessors and microcontrollers, power sources, solid-state recorders, field-programmable gate arrays, transmitters and receivers (antennas), application-specific integrated circuits, and sensors. The market for radiation-hardened electronics for space applications is well-established, as these components are required across all platforms in space.

낮은 지구 궤도에 있는 위성의 수가 증가하고 있습니다. (사자 별자리) and the upcoming mega-constellations have created a demand for space-based radiation-hardened components capable of withstanding high radiation effects from solar flares. 추가적으로, the interest in long-term missions by space agencies necessitates radiation-hardened components that can survive severe environments while being compressed or miniaturized to support complex missions for extended periods.

Drivers of the radiation-hardened electronics for space applications market include the rising demand for radiation-hardened electronic components in communication satellites and technological advancements in microprocessors and field-programmable gate arrays (FPGAs). 하지만, challenges such as high development and design costs associated with radiation-hardened electronic components and the impact of electronics component shortages on the global space industry need to be addressed.

Opportunities in the radiation-hardened electronics for space applications market include the adoption of new materials for manufacturing space electronics. Exploring innovative materials can lead to improved radiation resistance and performance of space-based electronic components.


시장 세분화

시장은 다양한 요인에 따라 분류됩니다., including platform, manufacturing technique, 재료 유형, component, 및 지역.

Segmentation by Platform
Satellite
Launch Vehicle
Deep Space Probe

Segmentation by Manufacturing Technique
Rad-Hard by Design
Rad-Hard by Process
Rad-Hard by Software

재료 유형별 세분화
Silicon
Gallium Nitride
Silicon Carbide
기타

Segmentation by Component
Onboard Computer, Microprocessor, and Controller
Power Source
Memory (Solid-State Recorder)
Field-Programmable Gate Array
Transmitter and Receiver (Antennas)
Application-Specific Integrated Circuit
Sensor

지역별 세분화
북아메리카 – 우리를., 캐나다
유럽 – 프랑스, 독일, 러시아, U.K, 및 유럽 나머지 지역
아시아 태평양 – 중국, 일본, 인도, 및 기타 아시아 태평양 지역
기타 지역 – 중동 및 아프리카, and South America

In terms of platforms, the satellite platform is expected to dominate the global market for radiation-hardened electronics for space applications. Revenue generation from the satellite platform segment is projected to contribute significantly to the overall market, followed by the launch vehicle and deep space probe segments. ~ 안에 2021, the satellite segment reported revenue of $1,681 백만, and it is anticipated to grow at a CAGR of 0.97% 예측 기간 동안 2022-2032, 도달하다 $3,499 10억 단위로 2032. This growth can be attributed to the increasing deployment of small satellites and small launch vehicles, as well as the plans for deep space missions by key players such as SpaceX, OneWeb, Telesat, Space Development Agency, NASA, ISRO, ESA, and JAXA.

Regarding manufacturing techniques, the rad-hard by design segment slightly dominates the global radiation-hardened electronics market. Although this manufacturing technique is expensive, the components provide robust solutions with the highest radiation hardness rating, making them suitable for extreme space applications like deep space missions and satellites. The rad-hard by design segment is expected to hold a market share of 61.05% ~에 2032, with a market value of $2,907 백만. ~ 안에 2021, it generated $1,458 million in revenue and is projected to grow at a CAGR of 1.54% 예측 기간 동안. The rad-hard by process segment is also expected to gain prominence, CAGR로 성장 1.77% 같은 기간 동안.

Silicon is the most widely used material for radiation-hardened components due to its ability to reduce size and weight while improving computation performance, especially in medium to high-speed applications. ~ 안에 2021, the silicon segment had the highest market penetration, followed by gallium nitride. The silicon segment generated $1,858 million in revenue and is predicted to grow at a CAGR of 1.47% ~에서 2022 에게 2032, 도달하다 $3,676 백만 단위로 2032.

Advancements in technology are driving the use of onboard computers, microprocessors, and controllers for new applications that require efficient and robust microprocessor technology. This trend is leading to the deployment of highly sophisticated applications in smaller spaces. ~ 안에 2021, the onboard computer, microprocessor, and controller segment had the highest market penetration, 생성 $621 백만 달러의 수익. It is expected to grow at a CAGR of 1.16% 예측 기간 동안, 도달하다 $1,232 백만 단위로 2032.

North America held the highest market share (41.25%) in the global radiation-hardened electronics market for satellite platforms in 2021, 주로 이 지역에 수많은 회사가 있기 때문입니다.. 유럽이 차지하는 비중은 25.79% ~에 2021 and is projected to witness significant growth during the forecast period, driven by space activities in the U.K., 프랑스, 독일, 그리고 러시아. Increased investments by commercial space organizations like Analog Device, BAE 시스템, and Cobham Plc, as well as government key agencies, are expected to drive substantial growth in the market for radiation-hardened electronics for satellite platforms.


경쟁 구도

The selection of the profiled companies was based on inputs gathered from primary experts and an analysis of factors such as the company’s market coverage, 제품 포트폴리오, 그리고 시장 침투.

The market is primarily led by established players that offer radiation-hardened electronics for space applications. These top segment players hold approximately 80% 시장 점유율의. 추가적으로, there are start-up entities that make up around 20% of the market presence.

Key companies profiled in this report include 3D Plus, Analog Devices, 주식회사, Apogee Semiconductor, 코밤 PLC, 데이터 디바이스 코퍼레이션, 엑셀리아, General Dynamics, GSI 기술, 주식회사, 인피니언 테크놀로지스, 수은 시스템, 주식회사, 마이크로칩 기술, 주식회사, 마이크로팩 인더스트리, Renesas Electronics Corporation, Solid State Devices, 주식회사, STMicroelectronics N.V., Teledyne Technologies, 텍사스 인스트루먼트, 보라고 테크놀로지스, 자일링스, 주식회사.


최근 산업 발전

6월 2020, GSI Technology entered into a partnership with the NSF Center for Space to develop cost-effective radiation-hardened and modular computer systems for various space-related endeavors, ranging from ground-based high-performance computing data centers to deep space missions.

3월 2021, Mercury Systems secured a contract with NASA’s Jet Propulsion Laboratory to supply solid-state data recorders for a scientific mission. These devices will be integrated into an Earth-imaging spectrometer instrument, which is scheduled for launch in 2022.

8 월 2021, STMicroelectronics collaborated with Xilinx, 주식회사. to design a power solution for Xilinx’s radiation-tolerant field-programmable gate arrays (FPGA) using QML-V qualified voltage regulators.

4월 2021, Exxelia introduced a high-performance space-qualified resistor that fulfills the requirements of weapons platforms, modern electronic warfare systems, and a wide range of space applications.


주요 질문에 대한 답변

What are the future trends in the radiation-hardened electronics for space applications market, and how is the market projected to evolve between 2022 그리고 2032?

What are the main drivers and challenges faced by companies operating in the radiation-hardened electronics for space applications market?

How is the market expected to grow during the forecast period from 2022 에게 2032?

What opportunities exist for companies to expand their presence in the radiation-hardened electronics for space applications market?

Which region is anticipated to dominate the radiation-hardened electronics for space applications market by 2032?

What are the key strategies implemented by the leading players to sustain their position in this highly competitive market?

What is the current and future revenue outlook for the radiation-hardened electronics for space applications market?

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