Radiation
Hardening is the process of developing electronic components
that continue to remain unaffected by damage caused by radiations which
come across in high-altitude flights, around nuclear
reactors, particle accelerators, during nuclear accidents or
nuclear warfare or the space. On the other hand, radiation
tolerant devices are
those which can operate efficiently when exposed to radiation only when certain
precautions and mitigation's are taken care of. The report takes into account The Global
Radiation Hardened and Radiation Tolerant Electronic Devices and Components
Market which
has been divided into five segments: by products, by material, by product-type,
by end-user and by geography.
Table of Contents and Insights:
Analog & Mixed Signal ICs, Discrete
Semiconductors, Optoelectronics, Power management ICs, Sensors, Memory,
Microprocessors and Microcontrollers, FPGAs and ASICs are the key product or
component types by which the Rad-hard and Rad-tolerant market has been analyzed in the report. These
product types are then further segmented by the make – custom made or Commercial
off the Shelf (COTS) and also by the
materials used in manufacturing: Silicon, Silicon Carbide, Gallium Nitride and
Hydrogenated Amorphous Silicon. The capabilities and specifications of the
Rad-hard and Rad-tolerant segments are completely different, but such
distinction however is slowly being erased over the past couple of years.
Comparative Growth of Radiation Hardened and Radiation Tolerant EDC Segments, 2014 – 2019 ($M)
Source: IndustryARC Analysis, Expert
Insights
While the Global Radiation Hardened Electronics
Market is
estimated to grow at 8.95% to cross the $1bn mark by 2019, the radiation
tolerant EDC market is
estimated to grow at around 5.35% during the same forecast period. The combined
market size of both the segments in 2014 was around $6.7bn only.
Request for Sample Data /
Brochure:
Global Radiation Hardened and Radiation Tolerant Electronic Devices and Components Market Share, By Geography, 2014 (%)
Source: IndustryARC Analysis, Expert
Insights
Increasing preference among customers for
air travel and improvement in infrastructure in various geographic regions is
creating a huge demand for bigger airplanes. Main companies like Boeing and Airbus are currently shipping their premier
aircraft's with a backlog of around 100 airplanes for the next few years. Radiation
tolerant electronics along
with radiation hardened electronics are critical components of airplanes as the
planes get increasingly sophisticated and automated. Airplanes generally fly in
the low-earth orbit and in atmosphere where radiation has the maximum effects
and this necessitates the need to use radiation tolerant and radiation hardened
electronics in them. Commercial airplanes are hence expected to continue being
a major contributor to this market and also in providing continuous impetus to
the industry growth.
Companies like STMicroelectronics, Texas
Instruments, IRC, Atmel, Microsemi and so on are the key players in the COTS IC
space. Xilinx is a key player in the FPGA space, Unicircuit in PCBs, Novocell
in non-volatile memory, Triad semiconductor in mixed-signal/reconfigurable ASIC
as examples of this kind of specialization.
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