The radiation detection equipment market is an essential part of various industries, including medical imaging, nuclear power, manufacturing, security, and environmental monitoring. The main objective of this equipment is to detect and measure the presence of ionizing radiation, which includes alpha, beta, gamma, and neutron radiation. Market growth is driven by national security, nuclear power generation, and medical imaging/diagnostics applications. Geiger counters and scintillation detectors are the most commonly used technologies. Semiconductor detectors are growing fastest for high resolution analysis. The market is consolidated with the top 5 suppliers accounting for the majority of the market.
Report contents include:
- Overview of radiation types and sources.
- Principles of radiation detection.
- Market trends and drivers.
- SWOT analysis.
- Analysis of Equipment/devices market including:
- Proportional Radiation Detectors (PRDs)
- Semiconductor Proportional Radiation Detectors (SPRD)
- Dosimeters
- Area Monitors
- Survey Meters
- RIIDs
- Portal Monitors, Fixed
- Portal Monitors, Portable
- Portable Backpack Systems
- Contamination Monitors.
- Analysis of leading equipment suppliers and market shares.
- Equipment pricing analysis.
- Emerging technologies and innovations.
- Analysis of radiation detection materials market including:
- NaI scintillators
- Cesium Iodide crystals
- Thin film scintillators
- Lanthanam-based materials
- CLYC-based materials
- Oxide-based materials
- Silicate-based materials
- Yittrium-based materials
- Plastic scintillators
- Nanomaterials.
- Material supplier analysis.
- Pricing analysis and cost structure.
- Analysis of end-use markets including:
- Nuclear Energy
- Food Industry
- Industrial Radiography
- Oil and Mining
- Security and Military
- Medical Imaging
- Environmental monitoring.
- Global market revenues 2018-2033 (Billion USD) by equipment type, end-use markets and region.
- Profiles of 33 companies including product offerings. Companies profiled include Berkeley Nucleonics, CoDeAc Solutions, Fuji Electric, Kromek, Mirion Technologies, Saint-Gobain, and Thermo Fisher Scientific.
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Table of Contents
1 RESEARCH METHODOLOGY2 ACRONYMS AND TERMS
Companies Mentioned (Partial List)
A selection of companies mentioned in this report includes, but is not limited to:
- AMETEK ORTEC
- Arktis Radiation Detection Systems
- Arrow-Tech, Inc.
- Baltic Scientific Instruments
- Berkeley Nucleonics
- Bubble Technology Industries, Inc.
- Canberra
- CoDeAc Solutions
- Dynasil Corporation
- ECOTEST
- Eljen Technology
- Epic Crystal
- FLIR Radiation, Inc.
- Fluke Biomedical
- Fuji Electric
- Hamamatsu
- Hitachi Chemical
- Kromek
- LND, Inc.
- Ludlum Measurements, Inc
- Mirion Technologies
- ORTEC
- OSI Optoelectronics
- Polimaster
- Protean Instrument
- Radiation Monitoring Devices
- RAE Systems (Honeywell)
- Rexon Components
- S.E. International, Inc.
- Saint Gobain
- Scionix Holland BV
- SEMIK
- Thermo Fisher Scientific
Methodology
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