Overview of Radiation Hardened Electronics and Why They Are Important for in Space

Electronic devices, single-board computer CPUs, and sensors that have been radiation-hardened and developed to be less prone to harm from radiation exposure and extremely high temperatures are known as rad-hard electronics. Radiation is undoubtedly a key design consideration for radiation-hardened electronics, but it is not the sole material for which radiation tolerance/survivability and radiation hardening testing are crucial.

Ordinary concrete is particularly vulnerable to neutron activation and radiation harm, and excessive radiation exposure can change the physical characteristics of concrete, rendering a concrete bunker structurally unsafe. Because of this risk, nuclear reactor facilities that won't be as vulnerable to high radiation levels must be designed and built using specialized radiation-tolerant concrete.

The market is being driven by the high demand for radiation-hardened components for airplanes, medical equipment, and nuclear power plants. This is why, the radiation-hardened electronics market is predicted to touch $2,104.2 million by 2030, progressing at a 3.5% CAGR from 2021 to 2030. Due to government efforts and investments made by entrepreneurs working in this domain internationally, the space industry is growing.

Reconfigurable radiation-hardened devices are in higher demand, which presents market opportunities for the participants. These tools enable satellite users to alter the scope of their operations while in orbit, significantly lowering the cost of reconfiguration. Top companies in the sector are involved in the creation of new software. electronics with specified radiation protection.

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The demand for radiation-hardened electronics is mostly driven by the necessity of radiation-hardened electronics for space applications, and it will grow at the fastest pace in the coming years. This is mostly due to the growth in international ISR activities, which is pressuring companies to provide more durable and dependable electrical components for spacecraft. Additionally, the need for radiation-hardened electronics is being driven by the swelling data volume that is crowding the satellite spectrum due to the expanding worldwide internet user population.


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