Radiation Sensing Field Effect Transistor RADFETs is based on the metal oxide silicon p-channel structure. RADFET is an integrating dosimeter that monitors dose of radiation (Gy) as a result of the field effect caused due to space charge trapped in an insulator. The RADFET dosimeters are used to measure ionizing radiation. The microscopic small sensor volume in RADFETs offer opportunities for invention of new portable and miniature radiation dosimeters. RADFET systems are gaining preferences over other radiation detection systems due to their compact systems and these detectors can easily be associated with computer power.
Globally, with the rise in demand for radiation dosimeters owing to rising demand from medical and aerospace industries, the demand for RADFETs is expected to grow at a higher rate than that of other dosimetry systems. The global market size of RADFETs is expected to grow at a CAGR of 5.3% over the period of 2016 – 2022, and the market size of RADFETs is projected to reach USD xxx.x million by 2022.
The RADFETs market is primarily driven by increasing demand from the application industries such as healthcare, and nuclear power. The drivers of the global RADFETs market listed in the report include, increasing incidences of cancer patients (especially from geriatric population group), and growing demand for portable RADFETs. Institutional manufacturers of RADFETs such as Tyndall and EI Microelectronics are engaged in regular research and development of RADFET dosimeters to improve the effectiveness of these dosimeters. This in turn is expected to support the growth of RADFETs in the near future. The restraints in the market that are likely to affect the growth over the forecast period include limitations of RADFETs to record dose at real time and inaccuracy of RADFETs at low sensitivity.
RADFETs market is broadly classified on the basis of product types, and applications. On the basis of product types the RADFETs market is segmented as Personal Dosimeters, Area Process Monitors, Radioactive Material Monitors and others including (Environmental Radiation Monitors, Surface Contamination Monitors). On the basis of applications the RADFETs market is segmented as medical, and non-medical applications. Globally, medical applications segment in the RADFETs market is anticipated to grow at the highest CAGR over the forecast period.
Geographic Coverage and Analysis:
The report provides regional analysis covering geographies such as North America, Europe, Asia-Pacific, and Rest of the World. Among the various regions covered, North America dominated the global RADFETs market, while Asia- Pacific is expected to grow at the highest CAGR over the forecast period.
The report covers analysis of the leading players operating in RADFETs market. The company profile typically includes the company’s financial information, contact details, SWOT analysis, product portfolio and recent development.
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