X-Ray Detectors Market By Detector Type, By Panel Size, By Portability, By Application, By Geographic Scope And Forecast


Posted February 15, 2022 by jennysmith22119

X-Ray Detectors Market size was valued at USD 2.55 Billion in 2019 and is projected to reach USD 3.63 Billion by 2027, growing at a CAGR of 4.89% from 2020 to 2027.

 
X-Ray Detectors Market Size And Forecast

X-Ray Detectors Market size was valued at USD 2.55 Billion in 2019 and is projected to reach USD 3.63 Billion by 2027, growing at a CAGR of 4.89% from 2020 to 2027.

Over the forecast period, owing to the efficient utilization of technological equipment such as X-ray detection systems can assist healthcare providers by allowing to screen a higher number of patients at cheaper prices. As a reason, a growing number of government organizations and venture capitalists around the world are focusing their investments in X-ray detectors in their various healthcare systems. The drivers and restraints are intrinsic factors whereas opportunities and challenges are extrinsic factors of the market. The Global X-Ray Detectors Market study provides an outlook on the development of the market in terms of revenue throughout the prognosis period.

Global X-Ray Detectors Market Definition

X-ray detectors are instruments that measure the flux, spatial distribution, spectrum, and other aspects of X-rays. These are essentially classified into two categories: dosage measurement devices and imaging detectors. Several digitization devices, such as flat-panel detectors and image plates, are gradually replacing imaging detectors. X-ray detectors are used in a wide range of disciplines, including medical, dental, veterinary, industrial, and security. According to the National Institute of Standards and Technology (NIST), Instruments used to measure x-rays are calibrated and irradiated in terms of the physical quantity of air kerma.

The quotient of data by dm in a volume element of air, where data is the sum of all electrons freed by photons in that volume element’s initial kinetic energy and dm is the mass of air in that volume element. The grey is the SI unit of air kerma. Instrument calibrations are provided in three x-ray calibration ranges. Tungsten x rays generated at constant potentials of 10 kV to 100 kV are employed in one range, while tungsten x rays generated at potentials of 50 kV to 300 kV are used in the other. Mammography x-rays are produced at constant potentials ranging from 23 to 40 kV. At NIST, four free-air ionization chamber standards are used to standardize x-ray beams for the quantity of air kerma or exposure. 370 barometer is connected to the data-acquisition software via RS232 in the mammography range.

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As part of the air-kerma calculation, any necessary corrections are made directly through the software. A National Instruments data-acquisition card, which comprises two 24-bit, 20 MHz counters/timers, controls all time signals. When a photodiode’s light beam is broken by a flag on the shutter mechanism, a pulse is created, which is sent to the timers. Counting begins only when the photodiode pulse is received when the exposure is started. The shutter is triggered to close at the end of the predetermined time interval, but the clock continues to count until the edge of the shutter reaches the portal mid-point. Air-cylinder-controlled solenoids have recently been added to the timing shutter operation in both the 100 kV and 300 kV x-ray ranges.

Global X-Ray Detectors Market Overview

Pressure to reduce government spending has prompted healthcare systems around the world to justify their internal costs. The high expense of X-ray detector equipment, on the other hand, presents a significant challenge for hospitals. In this circumstance, the efficient utilization of technological equipment such as X-ray detection systems can assist healthcare providers by allowing them to screen a higher number of patients at cheaper prices. As a reason, a growing number of government organizations and venture capitalists around the world are focusing their investments in X-ray detectors in their various healthcare systems.

Growing support, funding, and investments will have a significant impact on access to and adoption of these technologies, resulting in market growth. At airports, full-body scanners generate a digitized stripped image of persons boarding aircraft, ensuring passenger safety. This ensures that none of the passengers are transporting any potentially hazardous materials. High levels of X-ray exposure, on the other hand, can increase the risk of cancer and cardiovascular disease, cause cloudiness in the eye’s lens, and exacerbate hereditary disorders. X-ray scanners at airports have been prohibited in several European countries.

This difficulty has a significant impact, and an alternative method to maintain airport security must be created. In numerous emerging countries, such as China, India, Brazil, and Mexico, rapid economic development and rising healthcare spending are expected to enhance access to high-quality healthcare. This is viewed as a favorable sign for the market for X-ray detectors. In these countries, the increased incidence of breast cancer and cardiovascular disorders is driving demand for a variety of X-ray detector technologies and methodologies. Governments in these nations are concentrating their efforts on expanding access to modern and advanced healthcare services for a greater proportion of their populations while also enhancing reimbursement coverage. Rapid increases in per-capita healthcare spending, as well as rising public demand for low-cost healthcare, are propelling the rise of healthcare products and X-ray devices in these countries.

The overall growth in healthcare spending demonstrates this. According to The Advanced Photon Source (APS), The X-ray Science Technologies branch of the X-ray Science Division has the objective of providing innovative apparatus and concepts to help the XSD achieve its goals. XSD, APS, and APS-U succeed by providing integrated technology solutions that enable cutting-edge scientific research using synchrotron X-rays. Assembling individual components, such as an insertion device, monochromator, optical components, detectors, data collection, data reduction, and so on, will transform beamline planning, design, and execution into a strategy that optimizes all beamline building blocks in context.

Global X-Ray Detectors Market Segmentation Analysis

The Global X-Ray Detectors Market is segmented on the basis of Detector Type, Panel Size, Portability, Application, and Geography.

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X-Ray Detectors Market, By Detector Type

• Flat Panel Detectors
• Direct Capture FPDs
• Indirect Capture FPDs
• Line-Scan Detectors
• CCD Detectors
• Computed Radiography

Based on Detector Type, the market is segmented into Flat Panel Detectors, Direct Capture FPDs, Indirect Capture FPDs, Line-Scan Detectors, CCD Detectors, Computed Radiography by Detector Type. Flat-panel detectors are a type of solid-state x-ray digital radiography technology that works in the same way that image sensors in digital photography and video function. They are used in projectional radiography as well as fluoroscopy equipment as an alternative to x-ray image intensifiers. Film detectors are less sensitive and slower than flat-panel detectors. Due to their sensitivity, they require less radiation to get the same image quality as a film. They are smaller, lighter, more durable, have less picture distortion, and can be made with larger areas than x-ray image intensifiers for fluoroscopy.

X-Ray Detectors Market, By Panel Size

• Small Area FPDs
• Large Area FPDs

Based on Panel Size, the market is segmented into Small Area FPDs, Large Area FPDs. The demand for a minimal dose per image frame in fluoroscopic applications has posed a problem for FPDs, implying that the detector’s intrinsic electrical noise must be extremely low and the required dynamic range is considerable. Although it has proven challenging to produce FPDs with low enough electronic noise characteristics to obtain a reasonable signal-to-noise ratio under low exposure settings, such devices now exist. Flat-panel detectors are physically smaller than XRII/video detectors, providing for more movement and patient placement freedom. The most essential advantage of the FPD is that it is free of the XRII’s many intrinsic flaws, such as geometric “pin-cushion” distortion, “S” distortion, veiling glare, and vignetting.

X-Ray Detectors Market, By Portability

• Fixed Detectors
• Portable Detectors

Based on Portability, the market is segmented into Fixed Detectors, Portable Detectors. The portable X-ray has shown to be an effective tool for diagnosing and monitoring patients in intensive care units, nursing homes, jails, and homeless shelters when access to a hospital radiology department is a challenge. Each detector is protected from drops and knocks by a tough case with shielding layers. Further shielding layers on the detectors, themselves increase protection against the damaging effects of radiation for an even longer lifetime and consistent performance. With IP65 and IP76 protection certifications, both detectors are waterproof and dustproof. Their custom flight case ensures secure and convenient traveling

X-Ray Detectors Market, By Application

• Medical Applications
• Security Applications
• Dental Applications
• Veterinary Applications
• Industrial Applications

Based on Application, the market is segmented into Medical Applications, Security Applications, Dental Applications, Veterinary Applications, Industrial Applications. Bone fractures, certain cancers, other abnormal masses, pneumonia, some forms of traumas, calcifications, foreign objects, dental disorders are all detected with X-ray radiography. Mammography is a breast radiograph that is used to identify and diagnose cancer. On a radiograph, tumors appear as regular or irregular-shaped lumps that are somewhat brighter than the background. Microcalcifications, which appear as very brilliant specks on a mammogram, can also be detected with mammograms. X-rays and other forms of high-energy radiation can be utilized to kill malignant tumors and cells by destroying their DNA. The dose of radiation used to treat cancer is far higher than the level used for diagnostic imaging. Therapeutic radiation can come from a machine outside the body or from a radioactive substance injected into the bloodstream or implanted inside or near tumor cells.

X-Ray Detectors Market, By Geography

• North America
• Europe
• Asia Pacific
• Rest of the world

On the basis of Geography, the Global X-Ray Detectors Market is classified into North America, Europe, Asia Pacific, and the Rest of the world. The Asia Pacific region is expected to witness the highest CAGR during the forecast period increases due to the efficient utilization of technological equipment such as X-ray detection systems that can assist healthcare providers by allowing them to screen a higher number of patients at cheaper prices. As a reason, a growing number of government organizations and venture capitalists around the world are focusing their investments in X-ray detectors in their various healthcare systems.

Key Players

The “Global X-Ray Detectors Market” study report will provide a valuable insight with an emphasis on the global market including some of the major players such as Varex Imaging, Teledyne Dalsa, Inc. (A Subsidiary of Teledyne Technologies, Incorporated), Analogic Corporation, Thales Group, Canon Inc., Agfa-Gevaert Group, Carestream Health (Subsidiary of Onex Corporation), Konica Minolta, Inc., Hamamatsu Photonics K.K., Rayence (A Subsidiary Rayence Co. Ltd.), Fujifilm Holdings Corporation, Vieworks Co., Ltd., Drtech. The competitive landscape section also includes key development strategies, market share, and market ranking analysis of the above-mentioned players globally.

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Last Updated February 15, 2022