Skip to main content

Radiation Hardened Electronics Market: Worldwide Industry Analysis and New Market Opportunities Explored

An act of producing the electronic systems or components resistant to malfunction or damage done by ionizing radiation (electromagnetic radiation and particle radiation of high energy) is called as radiation hardening. These radiations are encountered in high-altitude flight and outer space, around particle accelerators and nuclear reactors, or during nuclear wars and nuclear accidents. Most of the electronic components are prone to damage by these radiations. However radiation hardened electronic components are placed on the non-hardened components with some manufacturing and design variations reducing the vulnerability to radiation damage. Extensive testing and development is required in producing a microelectronic chip which is radiation tolerant, radiation hardened electronic chips lag behind in new developments.

Get PDF Brochure https://www.transparencymarketresearch.com/sample/sample.php?flag=B&rep_id=7469

TID (Total Ionizing Dose), EDLRS (Enhanced Low Dose Rate Effects), single event effects (SEE, SEB, SET, & SEL), and proton & neutron displacement charge are some of the tests used typically for radiation-hardened products testing. Cosmic rays, solar particle events, Van Allen radiation belts, secondary particles, particle accelerators, chip packaging materials are some of the major radiation damage sources. There are two types of radiation hardening techniques logical hardening and physical hardening. Techniques included under physical hardening are production of electronic components by insulating substrates like silicon on sapphire and silicon on insulator. Bipolar ICs (Integrated Circuits), magneto resistive RAM (Radom Access Memory), capacitor based dynamic RAM (Random Access Memory) and shielding packages are radiation hardened. Logical radiation hardening techniques are redundant elements, hardened latches, parity checking, and watchdog timer for reducing radiation impact on electronic components.

The major factor driving the radiation hardened electronics market is rising demand for power management devices. Another factor augmenting the market for radiation hardened electronics market is rising demand for diodes, transistors, and MOSFETs in various defense and space applications. More technological advancements is leading to focus on integration of radiation hardened electronics chip into various devices. Another major driver for the market is the increase in the number of the space missions.

One of the driver for the radiation hardened electronics market is rise in demand for communication satellites. Growing ISR (Intelligence, Surveillance, and Reconnaissance) operations, multicore processor technology and FPGA advancements will drive the radiation hardening electronics market in future. However the major challenge for the market is high cost involved in developing and testing the radiation hardened electronic devices. But rise in investments in R&D (research and development) of semiconductors and electronics will minimize the impact of this challenge. Another challenge being faced by the radiation hardened electronics market are the emerging of small satellites (SmallSats) with small life cycle. This small satellites market is called Space 2.0.

The radiation hardened electronics component market can be segmented based on components (power management, ASIC, logic, memory, FPGA), manufacturing technique (RHBD radiation hardening by design, RHBP Radiation hardening by process), application (space, aerospace & defense, nuclear power plant), geography (North America, Europe, Asia-Pacific, rest of the world).

Get ToC Of Report https://www.transparencymarketresearch.com/sample/sample.php?flag=T&rep_id=7469

North America is the largest market for radiation hardened electronics market. Europe is the second largest market for radiation hardened electronics followed by APAC. In North America, U.S. accounts for the largest share in radiation hardened electronics market. Canada and Mexico follow the numbers in U.S. for radiation hardened electronics market. The rising demand of the radiation hardened electronics market in North America region could be due to presence of rad-hard component manufacturers in large numbers. Also presence of some famous defense and space research institutes is the major reason for growing radiation hardened electronics market.
Space application is leading the radiation hardened electronics market. Space application is further segmented into commercial & military application.

Key players in the market include Honeywell Aerospace (U.S.), Xilinx, Inc. (U.S.), Atmel Corporation (U.S.), and BAE Systems (U.K.). Other Players include STMicroelectronics, Microsem, Texas Instruments, and IRC.

Comments

Popular posts from this blog

Aerospace Window Frame Market: Global Industry Analysis, Size, Share, Growth, Trends, and Forecast

Aerospace window frames are used in the cockpit windshields and passenger cabin windows to provide rigidity to the windows. Metal window frame is used widely in aircrafts. Increase demand of cockpit windshield frame in different countries such as India, Brazil and China among others is the one of the major factor boosting the market for aerospace window frame during the forecast period of 2017 – 2025. Based on aircraft type, the global aerospace window frame market is segmented into wide body aircraft, narrow body aircraft, very large aircraft, general aviation and regional aircraft. Among various aircraft types, in 2016, the wide body aircraft segment is estimated to be the major market followed by very large aircraft and expected to be the same during the forecast period of 2017 – 2025. Increasing regional and commercial aircraft deliveries is expected to be one of the major factor fueling the regional aircraft segment in global aerospace window frame market during the fo...

Low Power Display Market: Projection of Each Major Segment over the Forecast Period 2017 - 2025

  Low power display technology is treated separately from our modern world. High resolution displays with low power are considered by many consumers to represent the low power display technology. The development in optoelectronics and nanotechnology has changed the low power display market . The low power display market consumes of less power than plasma technologies and cathode ray tube (CRT). Low-power features have become essential for liquid crystal displays (LCDs) due to environmental concerns. The technology that saves energy by decreasing the power consumption of the backlight unit in a display panel is considered in in low power display technology.  A low refresh-rate technology was introduced in order to further minimize power consumption in the display panel. The low refresh-rate was achieved by employing oxide thin-film transistors (Ox-TFTs) with extremely low leakage currents. However, flicker may be visible due to the current leakage through the liqu...

Light Weapons Market: Key Players and Production Information analysis with Forecast 2025

Light weapons are weapons which are used by two or three persons serving as a crew, although some of them may be carried and used by a single person. Light weapons are basically used by militaries around the world and its applications have increased widely among armed groups. They include, inter alia, heavy machine guns, hand-held under-barrel and mounted grenade launchers, portable anti-aircraft guns, portable anti-tank guns, recoilless rifles, portable launchers of anti-tank missile and rocket systems, portable launchers of anti-aircraft missile systems as well as mortars of a caliber of less than 100 millimeters. The latest generation of light weapons is more destructive, more portable, and generally more competent than older systems, raising concerns about their uncontrolled generation. Light weapons are represented by their durability, cost effectiveness, accessibility and utility. In terms of military and non-military demand, such criteria perfectly match the needs of those who...