By Component (Microprocessors & Controllers, Sensors, Memory, Power Sources, Discrete Semiconductors, Application Specific Integrated Circuits), By Manufacturing Techniques (Rad Ha......rd By Design (RHBD), Rad Hard By Process (RHBP), Rad Hard By Software (RHBS)), By End-User (Space Applications {Satellites, Launch Vehicles}, Military Applications {Missiles, Defense Systems, Arms and Ammunition, Military Aviation}, Nuclear Power Plants) Read more
- ICT & Electronics
- Nov 2021
- 210
- PDF, Excel, PPT
Radiation Hardened Electronics refers to the electronic components (circuits, resistors, transistors, capacitors, diodes, etc.), single-board computer CPUs, packages, and products primarily used for satellite, space, nuclear plant, and military applications. They are designed to withstand exposure to radiation and extreme temperatures (-55°C to 125°C). The process of hardening helps in preventing electronics from damage, melting, or breaking.
| Report Coverage | Details |
|---|---|
| Study Period | Historical Data: 2018-20 |
| Base Year: 2021 | |
| Forecast Period: 2022-28 | |
| CAGR (2022-2027) | 4.1% |
| Regions Covered | North America: USA, Canada, Mexico |
| Europe: Germany, UK, France, Spain, Russia | |
| Asia-Pacific: China, India, Japan, South Korea, Australia | |
| South America: Brazil, and Argentina | |
| Middle East & Africa: UAE, Saudi Arabia, South Africa, Israel | |
| Key Companies Profiled | HEICO Corporation, Analog Devices Inc., Anaren Inc., BAE Systems, Cobham PLC, Data Device Corp., Honeywell International Inc., IBM Corp, Infineon Technologies, Microchip Technologies Inc., Micropac Technology Inc., Renesas Electronics Corporation, Solid State Devices Inc., ST Microelectronics N.V., Texas Instruments, Teledyne Technologies Inc., The Boeing Company, Xilinx Inc |
| Unit Denominations | USD Million/Billion |
The Global Radiation Hardened Electronics Market is anticipated to grow at a CAGR of around 4.1% during the forecast period, i.e., 2022-28, says MarkNtel Advisors. Radiation-hardened electronics are widely used in industries to protect devices from extreme radiation exposure. Radiation hardening is used across the electronic industry to develop components like power-management devices, microprocessors, and solid-state memory that are economical to buy yet strong enough to survive in space for years.
Moreover, the surge in Intelligence, Surveillance, & Reconnaissance (ISR) operations and the booming demand for electronic components that can withstand radiations in the nuclear power industry & military applications are other crucial aspects expected to drive the market in the coming years.
The Impact of COVID-19 on the Global Radiation Hardened Electronics Market
- The COVID-19 pandemic in 2020 amplified the risk & uncertainties among several industries worldwide, and the Global Radiation Hardened Electronics Market was no exception.
- The US is one the prime importers of semiconductors.
- High import tariffs owing to China-US trade tensions had a severe impact on the imports of radiation-hardened components in the US.
- Moreover, the disruptions in the supply chain negatively affected the US-based market leaders and caused supply-demand imbalances.
- Further, an unexpected halt in production plants also severely impacted the overall market growth.
- However, in the coming years, the market is likely to witness a slow recovery.
- Introduction
- Product Definition
- Research Process
- Assumptions
- Market Segmentation
- Executive Summary
- Impact of COVID-19 on Global Radiation Hardened Electronics
- Global Radiation Hardened Electronics Market Policies & Regulations
- Global Radiation Hardened Electronics Market Supply Chain Analysis
- Global Radiation Hardened Electronics Market Intellectual Property Rights Analysis
- Year on Year Patents Filed & Approved
- Key Strategic Imperatives for Success & Growth in Radiation Hardened Electronics Market
- Global Radiation Hardened Electronics Market Trends & Insights
- Global Radiation Hardened Electronics Market Dynamics
- Impact Analysis
- Drivers
- Challenges
- Global Radiation Hardened Electronics Market Outlook, 2018-2028
- Market Size & Analysis
- By Revenue
- Market Share & Analysis
- By Component
- Microprocessors & Controllers
- Sensors
- Memory
- Power Sources
- Discrete Semiconductors
- Application Specific Integrated Circuits
- By Manufacturing Techniques
- Rad Hard By Design (RHBD)
- Rad Hard By Process (RHBP)
- Rad Hard By Software (RHBS)
- By End-User
- Space Applications
- Satellites
- Launch Vehicles
- Military Applications
- Missiles
- Defense Systems
- Arms and Ammunition
- Military Aviation
- Nuclear Power Plants
- Space Applications
- By Competition
- Competition Characteristics
- Market Share of Leading Competitors
- Key Strategic Initiatives Undertaken by the Competitors
- By Region
- North America
- South America
- Europe
- Middle East & Africa
- Asia Pacific
- By Component
- Market Size & Analysis
- North America Radiation Hardened Electronics Market Outlook, 2018-2028
- Market Size & Analysis
- By Revenue
- Market Share & Analysis
- By Component
- By Manufacturing Techniques
- By End-User
- By Country
- US
- Canada
- Mexico
- The US Radiation Hardened Electronics Market Outlook, 2018-2028
- Market Size & Analysis
- By Revenue
- Market Share & Analysis
- By Component
- By Manufacturing Techniques
- By End Users
- Market Size & Analysis
- Canada Radiation Hardened Electronics Market Outlook, 2018-2028
- Market Size & Analysis
- By Revenue
- Market Share & Analysis
- By Component
- By Manufacturing Techniques
- By End Users
- Market Size & Analysis
- Mexico Radiation Hardened Electronics Market Outlook, 2018-2028
- Market Size & Analysis
- By Revenue
- Market Share & Analysis
- By Component
- By Manufacturing Techniques
- By End Users
- Market Size & Analysis
- Market Size & Analysis
- South America Radiation Hardened Electronics Market Outlook, 2018-2028
- Market Size & Analysis
- By Revenue
- Market Share & Analysis
- By Component
- By Manufacturing Techniques
- By End-User
- By Country
- Brazil
- Argentina
- Others
- Brazil Radiation Hardened Electronics Market Outlook, 2018-2028
- Market Size & Analysis
- By Revenue
- Market Share & Analysis
- By Component
- By Manufacturing Techniques
- By End Users
- Market Size & Analysis
- Argentina Radiation Hardened Electronics Market Outlook, 2018-2028
- Market Size & Analysis
- By Revenue
- Market Share & Analysis
- By Component
- By Manufacturing Techniques
- By End Users
- Market Size & Analysis
- Market Size & Analysis
- Europe Radiation Hardened Electronics Market Outlook, 2018-2028
- Market Size & Analysis
- By Revenue
- Market Share & Analysis
- By Component
- By Manufacturing Techniques
- By End-User
- By Country
- The UK
- France
- Germany
- Spain
- Russia
- Others
- The UK Radiation Hardened Electronics Market Outlook, 2018-2028
- Market Size & Analysis
- By Revenue
- Market Share & Analysis
- By Component
- By Manufacturing Techniques
- By End Users
- Market Size & Analysis
- France Radiation Hardened Electronics Market Outlook, 2018-2028
- Market Size & Analysis
- By Revenue
- Market Share & Analysis
- By Component
- By Manufacturing Techniques
- By End Users
- Market Size & Analysis
- Germany Radiation Hardened Electronics Market Outlook, 2018-2028
- Market Size & Analysis
- By Revenue
- Market Share & Analysis
- By Component
- By Manufacturing Techniques
- By End Users
- Market Size & Analysis
- Spain Radiation Hardened Electronics Market Outlook, 2018-2028
- Market Size & Analysis
- By Revenue
- Market Share & Analysis
- By Component
- By Manufacturing Techniques
- By End Users
- Market Size & Analysis
- Russia Radiation Hardened Electronics Market Outlook, 2018-2028
- Market Size & Analysis
- By Revenue
- Market Share & Analysis
- By Component
- By Manufacturing Techniques
- By End Users
- Market Size & Analysis
- Market Size & Analysis
- Middle East & Africa Radiation Hardened Electronics Market Outlook, 2018-2028
- Market Size & Analysis
- By Revenue
- Market Share & Analysis
- By Component
- By Manufacturing Techniques
- By End-User
- By Country
- Saudi Arabia
- The UAE
- Israel
- South Africa
- Others
- Market Size & Analysis
- Asia Pacific Radiation Hardened Electronics Market Outlook, 2018-2028
- Market Size & Analysis
- By Revenue
- Market Share & Analysis
- By Component
- By Manufacturing Techniques
- By End-User
- By Country
- India
- China
- Japan
- South Korea
- Australia
- Others
- China Radiation Hardened Electronics Market Outlook, 2018-2028
- Market Size & Analysis
- By Revenue
- Market Share & Analysis
- By Component
- By Manufacturing Techniques
- By End Users
- Market Size & Analysis
- India Radiation Hardened Electronics Market Outlook, 2018-2028
- Market Size & Analysis
- By Revenue
- Market Share & Analysis
- By Component
- By Manufacturing Techniques
- By End Users
- Market Size & Analysis
- Japan Radiation Hardened Electronics Market Outlook, 2018-2028
- Market Size & Analysis
- By Revenue
- Market Share & Analysis
- By Component
- By Manufacturing Techniques
- By End Users
- Market Size & Analysis
- South Korea Radiation Hardened Electronics Market Outlook, 2018-2028
- Market Size & Analysis
- By Revenue
- Market Share & Analysis
- By Component
- By Manufacturing Techniques
- By End Users
- Market Size & Analysis
- Australia Radiation Hardened Electronics Market Outlook, 2018-2028
- Market Size & Analysis
- By Revenue
- Market Share & Analysis
- By Component
- By Manufacturing Techniques
- By End Users
- Market Size & Analysis
- Market Size & Analysis
- Competitive Benchmarking
- Competition Matrix
- Company Overview
- Product/Business Segment Overview
- Regulatory & Legal Development
- Company Strategies
- SWOT Analysis
- Competition Matrix
- Company Profile
- HEICO Corporation
- Analog Devices Inc
- Anaren Inc
- BAE Systems
- Cobham PLC
- Data Device Corp.
- Honeywell International Inc
- IBM Corp
- Infineon Technologies
- Microchip Technologies Inc
- Micropac Technology Inc
- Renesas Electronics Corporation
- Solid State Devices Inc
- ST Microelectronics N.V.
- Texas Instruments
- Teledyne Technologies Inc
- The Boeing Company
- Xilinx Inc.
- Disclaimer
MarkNtel Advisors follows a robust and iterative research methodology designed to ensure maximum accuracy and minimize deviation in market estimates and forecasts. Our approach combines both bottom-up and top-down techniques to effectively segment and quantify various aspects of the market. A consistent feature across all our research reports is data triangulation, which examines the market from three distinct perspectives to validate findings. Key components of our research process include:
1. Scope & Research Design At the outset, MarkNtel Advisors define the research objectives and formulate pertinent questions. This phase involves determining the type of research—qualitative or quantitative—and designing a methodology that outlines data collection methods, target demographics, and analytical tools. They also establish timelines and budgets to ensure the research aligns with client goals.
2. Sample Selection and Data Collection In this stage, the firm identifies the target audience and determines the appropriate sample size to ensure representativeness. They employ various sampling methods, such as random or stratified sampling, based on the research objectives. Data collection is carried out using tools like surveys, interviews, and observations, ensuring the gathered data is reliable and relevant.
3. Data Analysis and Validation Once data is collected, MarkNtel Advisors undertake a rigorous analysis process. This includes cleaning the data to remove inconsistencies, employing statistical software for quantitative analysis, and thematic analysis for qualitative data. Validation steps are taken to ensure the accuracy and reliability of the findings, minimizing biases and errors.
4. Data Forecast and FinalizationThe final phase involves forecasting future market trends based on the analyzed data. MarkNtel Advisors utilize predictive modeling and time series analysis to anticipate market behaviors. The insights are then compiled into comprehensive reports, featuring visual aids like charts and graphs, and include strategic recommendations to inform client decision-making
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