New technologies are finally arriving in the X-ray market and reshuffling the pack of players.
More information on https://www.i-micronews.com/products/x-ray-detectors-for-medical-industrial-and-security-applications-2019/
radiation regulatory bodies. ( international + indian )akshayonslideshar
Radiation is harmful . right ? but who is looking after that it is being used in correct manner in hospitals .I have tried to write about some international and indian regulatory bodies.
radiation regulatory bodies. ( international + indian )akshayonslideshar
Radiation is harmful . right ? but who is looking after that it is being used in correct manner in hospitals .I have tried to write about some international and indian regulatory bodies.
HQ Imaging helps radiology and research centers to obtain high-precision medical images, which are needed for diagnosis, therapeutic decision-making and fundamental research progress. Based on their in-depth expertise in magnetic resonance imaging (MRI), HQ Imaging offers two main services: quality assurance and protocol optimization. Whether you need a shorter scan time per patient or you would like to improve image quality, the HQ Imaging team can tune every MRI sequence to your needs. In addition, the assured image quality means less repeat scans (e.g artefact reduction) and faster radiological readings (e.g. better contrast to noise ratio, adaption of geometrical parameters).
Calculation of air-kerma strength and dose rate constant for new BEBIG 60Co H...Anwarul Islam
Calculation of air-kerma strength and dose rate constant for new BEBIG 60Co HDR brachytherapy source: an EGSnrc Monte Carlo study
M. Anwarul Islam, Medical Physicist
SQUARE Hospitals Ltd, Bangladesh
anwar.amch@yahoo.com
This presentation delivers audit results for the use of TLD badges in the cath labs and includes information and reccomendations on how to use TLDs correctly
Ultrasound Sensing Technologies for Medical, Industrial and Consumer Applicat...Yole Developpement
New applications along with manufacturing capabilities and technological readiness are driving the takeoff of micro-machined ultrasonic transducers.
More information on that report at https://www.i-micronews.com/category-listing/product/ultrasound-sensing-technologies-for-medical-industrial-and-consumer-applications.html
3D Imaging & Sensing 2018 Reports by Yole DeveloppementYole Developpement
The iPhone X initiated a trend. What happens next?
More information here: https://www.i-micronews.com/category-listing/product/p3d-imaging-sensing-2018.html
HQ Imaging helps radiology and research centers to obtain high-precision medical images, which are needed for diagnosis, therapeutic decision-making and fundamental research progress. Based on their in-depth expertise in magnetic resonance imaging (MRI), HQ Imaging offers two main services: quality assurance and protocol optimization. Whether you need a shorter scan time per patient or you would like to improve image quality, the HQ Imaging team can tune every MRI sequence to your needs. In addition, the assured image quality means less repeat scans (e.g artefact reduction) and faster radiological readings (e.g. better contrast to noise ratio, adaption of geometrical parameters).
Calculation of air-kerma strength and dose rate constant for new BEBIG 60Co H...Anwarul Islam
Calculation of air-kerma strength and dose rate constant for new BEBIG 60Co HDR brachytherapy source: an EGSnrc Monte Carlo study
M. Anwarul Islam, Medical Physicist
SQUARE Hospitals Ltd, Bangladesh
anwar.amch@yahoo.com
This presentation delivers audit results for the use of TLD badges in the cath labs and includes information and reccomendations on how to use TLDs correctly
Ultrasound Sensing Technologies for Medical, Industrial and Consumer Applicat...Yole Developpement
New applications along with manufacturing capabilities and technological readiness are driving the takeoff of micro-machined ultrasonic transducers.
More information on that report at https://www.i-micronews.com/category-listing/product/ultrasound-sensing-technologies-for-medical-industrial-and-consumer-applications.html
3D Imaging & Sensing 2018 Reports by Yole DeveloppementYole Developpement
The iPhone X initiated a trend. What happens next?
More information here: https://www.i-micronews.com/category-listing/product/p3d-imaging-sensing-2018.html
Cameras for Microscopy and Next-Generation Sequencing 2019 report by Yole Dév...Yole Developpement
Disposable image sensors: a revolution for microscopy and next-generation sequencing.
More information on: https://www.i-micronews.com/products/cameras-for-microscopy-and-next-generation-sequencing-2019/
In the ultrasound module market, CMUT and PMUT are growing two times faster in medical and consumer applications.
More information: https://www.i-micronews.com/products/ultrasound-sensing-technologies-2020/
Pressure, inertial, MEMS ultrasound, microfluidic chips and other sensors are driving the growth of the life sciences and healthcare market.
More information: https://www.i-micronews.com/products/biomems-market-and-technology-2020/
From almost zero to a multi-billion dollar market in three years!
Apple introduced the iPhone 5s in 2013, after acquiring Authentec a year earlier. Since then, fingerprint sensors have been massively adopted, and the volumes of sensors shipped into the consumer market have grown incredibly. At first, the sensors were a convenience and protection feature for unlocking phones. However, they are now shifting into a security feature for online identification and mobile payment in an increasing number of smartphones.
From 23 million units in 2013, 689 million fingerprint sensors for smartphones were sold in 2016. This is an incredible 210% compound annual growth rate (CAGR) between 2013 and 2016! The 2016-2022 timeframe will see a more reasonable, but still impressive, 19% CAGR.
Fingerprint sensing is becoming a mandatory feature on every smartphone, adding a lot of value. However such an increase in volume is always followed by strong cost pressure, and this is what has happened over the last three years. The average cost of a fingerprint sensor has decreased from around $5 in 2013 to $3 in 2016, and even less for low-end technologies. And the pressure hasn’t gone away. Current technologies have now reached maturity, and are threatened by new technologies, which need lower cost to gain momentum. This is the case for ultrasonic detection, for instance.
For more information please visit our website: http://www.i-micronews.com/reports.html
Global Ultrasonic Sensors Market PPT: Demand, Trends and Business Opportunit...IMARC Group
According to the latest report by IMARC Group, the global ultrasonic sensors market reached a value of US$ 4867.5 Million in 2021.Ultrasonic sensors refer to devices that are generally used for measuring the distance of a targeted receding or approaching object. They are based on the principle of sound reflection and utilize ultrasonic waves that convert the emitted sound into an electrical signal.
Medical Robotics Technology and Market Analysis 2017 report by Yole Développe...Yole Developpement
Medical robotics is opening a new wave of opportunities for sensor makers, established medical devices manufacturers and also newcomers.
WHY ARE ROBOTICS NEEDED IN THE MEDICAL FIELD, AND HOW IS MEDICAL ROBOTICS RESHAPING THE HEALTHCARE SYSTEM?
Robotics has a long, colorful history, but its applications have only recently impacted the healthcare industry. In 2000, the field’s current main player, Intuitive Surgical, was one of the first firms to bring a surgical robot to market. At the time, the company’s marketing was centered on remote surgical procedures. However, the ensuing years have seen the applications of this life-changing technology increase exponentially, to the point where the possibilities enabled by today’s medical robots are endless. Each “participant” sees added value in this technology: minimal invasiveness for the patient, enhanced microsurgery and precision capabilities for the surgeon, and cost optimization for the healthcare system due to patients’ shorter recovery time.
Another major component of medical robotics technology is rehabilitation robotics. Indeed, the 500,000 people affected by spinal cord injury (SCI) every year worldwide, along with stroke patients and neurodegenerative disease patients (among others) could greatly benefit from this technology. Powered exoskeletons, rehabilitation robots and orthotics, artificial limbs: the total accessible market is huge and the extraordinary benefits will enhance market penetration.
More information on that report at http://www.i-micronews.com/reports.html
BioMEMS & Non-Invasive Sensors: Microsystems for Life Sciences & Healthcare 2...Yole Developpement
A new wave of sensors, responding to the challenge of global healthcare transformation, opens new business opportunities for mobile healthcare and emerging non-invasive devices.
More information on that report at https://www.i-micronews.com/category-listing/product/biomems-non-invasive-sensors-microsystems-for-life-sciences-healthcare-2018.html#table-of-contents
Ultrasound Devices Market PPT: Demand, Trends and Business Opportunities 2023-28IMARC Group
The global ultrasound devices market size reached US$ 8.9 Billion in 2022. Looking forward, IMARC Group expects the market to reach US$ 14.6 Billion by 2028, exhibiting a growth rate (CAGR) of 7.10% during 2023-2028.
More info:- https://www.imarcgroup.com/ultrasound-devices-market
New applications drive greater shipment volumes, which drive new applications, bringing the uncooled IR sensing market into a virtuous cycle.
More information on : https://www.i-micronews.com/report/product/uncooled-infrared-imagers-and-detectors-2019.html
New technologies and faster market launches are driving the medical wearables market.
More information on that report at: https://www.i-micronews.com/produit/medical-wearables-market-and-technology-trends-2019/
Mid IR Sensors - Leveraging New Technology Anticipated to reach $30 billion b...LeeSam111
Recent research and the current scenario as well as future market potential of "Mid IR Sensors: Market Shares, Strategies, And Forecasts, Worldwide, 2016 To 2022" globally.
Connected Medical Devices Market and Business Models 2017 Report by Yole Deve...Yole Developpement
The Internet of Medical Things (IoMT) powers industry momentum in digital health and reinvents healthcare organization.
CONNECTED MEDICAL DEVICES: THE DIGITAL HEALTH REVOLUTION HAS STARTED
Healthcare is facing one of its most major turning points in decades. After penetrating the consumer market, the digital revolution and its related concept of the Internet of Things (IoT) is rapidly changing health models. There are many reasons for this transformation. The population is growing and aging, and chronic diseases are exploding. More than 415 million people are living with diabetes worldwide and there are more than 1.5 billion people at risk of cardiovascular diseases. The number of doctors and nurses has stayed consistently flat, as health budgets are shrinking in many regions. Fortunately, connected devices and smartphones are now widespread. People are managing their lives through apps and clouds, and now can do the same with their health, from hospital to home or even just walking in the street. This report analyzes the dynamics of the connected medical devices market and how its current $9B revenues will grow at a rate of 16% year-over-year through to 2022 to reach more than $23B. Healthcare is shifting to a patientcentric model with nearly 20% growth over the period to 2022 for the segment of self-quantified devices. This compares to single-digit growth for connected implantable devices, which face serious security issues. Preventive and predictive medicine and even participative medicine are on the way to supplement evidence-based approaches, using the large volumes of data generated by these connected medical devices.
More information on that report at http://www.i-micronews.com/reports.html
Sensors for Wearable Electronics & Mobile Healthcare 2015 Report by Yole Deve...Yole Developpement
Yole;report;market;technology;application;research;trend;player;analysis;free;data
MEMS, Compound Semiconductors, LED, Image Sensors, Optoelectronics, Microfluidics & Medical, Photovoltaics, Advanced Packaging, Power Electronics
More information on that report at http://www.i-micronews.com/reports.html
Point-of-Need Testing: Application of Microfluidic Technologies - 2018 Report...Yole Developpement
Decentralized testing is now widespread, thanks to the endless possibilities enabled by microfluidic technologies.
More information on that report at https://www.i-micronews.com/report/product/point-of-need-testing-application-of-microfluidic-technologies.html
The progress of latest technologies will drive the therapeutic imaging equipment market. Digital radiography is cannibalizing the analogy segments of both the X-ray imaging and mammography markets, as they provide higher image qualityy and faster scan times
Gas and Particle Sensors 2018 - Technology, Industry, and Market Trends repor...Yole Developpement
Air quality is breathing life into the sensor market!
More information on : https://www.i-micronews.com/category-listing/product/gas-and-particle-sensors-2018.html
Similar to X-Ray Detectors for Medical, Industrial and Security Applications 2019 report by Yole Développement (20)
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Penetrating everyday products will see the market for AI technologies for the consumer market reach $5.6B in 2026.
More information : https://www.i-micronews.com/products/computing-and-ai-technologies-for-mobile-and-consumer-applications-2021/
For the first time, the processor monitor is including FPGA, CPU, GPU, and APU including all the IDMs, fabless companies, and foundries in the business.
More information : https://www.i-micronews.com/products/application-processor-quarterly-market-monitor/
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More information: https://www.i-micronews.com/products/automotive-semiconductor-trends-2021/
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Strong momentum for MicroLED with progress on all fronts. Cost is the biggest challenge, but Apple and Samsung are carving paths toward the consumer.
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Through enabling design and supply chain agility, SiP will reach $19B by 2026, with IDMs, OSATs, and foundries taking advantage of it.
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Industrial, consumer, and automotive applications are driving the adoption of neuromorphic computing and sensing technologies. The first products are now hitting the market.
More information: https://www.i-micronews.com/products/neuromorphic-computing-and-sensing-2021/
Beyond communication, silicon photonics is penetrating consumer and automotive – heading to $1.1B in 2026.
More information: https://www.i-micronews.com/products/silicon-photonics-2021/
Semiconductor technologies will enable increased mobility and communication for the soldier of the future. This market will reach $17.5B in 2030+.
More information: https://www.i-micronews.com/products/future-soldier-technologies-2021/
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5G’s Impact on RF Front-End and Connectivity for Cellphones 2020Yole Developpement
An intensifying US-China competition for RF technology supremacy.
More information on: https://www.i-micronews.com/products/5gs-impact-on-rf-front-end-and-connectivity-for-cellphones-2020/
The entrance of Chinese players and the rise of new technical solutions are poised to trigger profound changes in the memory business.
More information on: https://www.i-micronews.com/products/status-of-the-memory-industry-2020/
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Photonics applications boost the GaAs wafer and epiwafer market with double digit growth.
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Status of the Radar Industry: Players, Applications and Technology Trends 2020Yole Developpement
Worth more than $20B in 2019, the radar industry is experiencing a major transformation prior to entering the commercial era.
Learn more about the report here: https://www.i-micronews.com/products/status-of-the-radar-industry-players-applications-and-technology-trends-2020/
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Market will more than double by 2025 driven by heavy investments in data centers.
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COVID-19 is shaking up the diagnostics industry and will have both short- and long-term impact.
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Pluggable transceivers in high volume production. Co-packaged optics in line of sight.
More information on: https://www.i-micronews.com/products/silicon-photonics-2020/
The one million robotic vehicle milestone will be reached by end of the decade: The industrial phase has been launched.
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High-end inertial sensors are the backbone of systems that will enable autonomous transportation and the new space industry.
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Have you ever wanted a Ruby client API to communicate with your web service? Smithy is a protocol-agnostic language for defining services and SDKs. Smithy Ruby is an implementation of Smithy that generates a Ruby SDK using a Smithy model. In this talk, we will explore Smithy and Smithy Ruby to learn how to generate custom feature-rich SDKs that can communicate with any web service, such as a Rails JSON API.
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Topics covered:
UI automation Introduction,
UI automation Sample
Desktop automation flow
Pradeep Chinnala, Senior Consultant Automation Developer @WonderBotz and UiPath MVP
Deepak Rai, Automation Practice Lead, Boundaryless Group and UiPath MVP
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In this insightful webinar, Inflectra explores how artificial intelligence (AI) is transforming software development and testing. Discover how AI-powered tools are revolutionizing every stage of the software development lifecycle (SDLC), from design and prototyping to testing, deployment, and monitoring.
Learn about:
• The Future of Testing: How AI is shifting testing towards verification, analysis, and higher-level skills, while reducing repetitive tasks.
• Test Automation: How AI-powered test case generation, optimization, and self-healing tests are making testing more efficient and effective.
• Visual Testing: Explore the emerging capabilities of AI in visual testing and how it's set to revolutionize UI verification.
• Inflectra's AI Solutions: See demonstrations of Inflectra's cutting-edge AI tools like the ChatGPT plugin and Azure Open AI platform, designed to streamline your testing process.
Whether you're a developer, tester, or QA professional, this webinar will give you valuable insights into how AI is shaping the future of software delivery.
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4. Demo
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SAP heatmap example with demo
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Sectoral targets and attacks as well as the cost of ransom
Global APT activity, AI usage, actor and tactic profiles, and implications
Rise in volumes of AI-powered cyberattacks
Major cyber events in 2024
Malware and malicious payload trends
Cyberattack types and targets
Vulnerability exploit attempts on CVEs
Attacks on counties – USA
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Cyber risk predictions
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https://arxiv.org/abs/2306.08302
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https://www.microsoft.com/en-us/research/blog/graphrag-unlocking-llm-discovery-on-narrative-private-data/
21. X-ray imaging’s first application was in the medical
area, with the first radiography being done in 1895
by Wilhelm Röntgen. The discovery of X-rays
led to a revolution in medical imaging. Today
the technology is gaining traction in the fields of
veterinary care, industrial non-destructive testing
(NDT) and security.
The X-ray market was worth $19B in 2018 at the
system level. The medical market is by far the
biggest, with $16B revenues in 2018.
At the detector level, the X-ray market was worth
$2.0B in 2018 and is expected to grow with a
Compound Annual Growth Rate from 2018-2024
(CAGR2018-2024
) of 5.9% to reach $2.8B in 2024.
Today, X-ray imaging is almost exclusively based
on solid-state sensors. Flat panel detectors using
amorphous silicon (aSi) and CMOS represent the
biggest share of the market, being worth $1.3B in
2018. They were followed by silicon photodiode
array detectors, which were worth $500M. Yole
Développement is expecting Indium Gallium Zinc
Oxide (IGZO) flat panels to make a big entry into the
market as soon as 2021 and to reach $236M in 2024.
IGZO is directly competing with aSi and CMOS,
but CMOS is still the reference technology for
applications needing high resolution. However,
the price erosion is slow with CMOS because the
number of systems sold is still low in the X-ray
field and the size of the flat panels is large. The only
reason for price erosion is the competition with
aSi. That explains why the price difference between
CMOS and aSi is decreasing, especially for smaller
panels.
This report summarizes market data and forecasts
for the period 2018-2024, breaking the system
market into segments and dividing the detector
market by application and technology. It also covers
market drivers and cost analyses.
X-RAY DETECTORS FOR MEDICAL, INDUSTRIAL
AND SECURITY APPLICATIONS 2019
Market & Technology Report - May 2019
New technologies are finally arriving in the X-ray market and reshuffling the pack of players.
WHAT’S NEW
• The previous report about X-ray
imaging also included other medical
imaging technologies like PET,
endoscopy, OCT, and ultrasound.
We have now decided to analyze
each modality more deeply
• We also enlarge the scope of
the report adding the veterinary,
industrial and security markets
• This report focuses on X-ray
imaging at the system and detector
level
REPORT KEY FEATURES
• Historical perspective and synergies
with other markets
• Market data and forecasts at the
system and detector level by
applications including medical,
veterinary, industrial and security
and technologies like aSi, aSe, CCD,
CMOS, photodiodes and IGZO,
in dollar value and in unit volumes.
The medical market is subdivided
into static, mammography, surgery
and interventional, CT and dental
• Technology penetration and
market trends by segment,
including medical, covering static,
mammography, surgery and
interventional, CT and dental, as
well as veterinary, industrial and
security
• Supply chain analysis with market
shares at the system level by
segment and at the detector level
by technology
• Technology landscape, evolution
and roadmaps
(Yole Développement, May 2019)
2018 – 2024 X-ray detector market breakdown by market segment
THE X-RAY DETECTOR MARKET REACHED $2B IN 2018 DRIVEN
BY THE MEDICAL SEGMENT, ACCOUNTING FOR 75% OF THE MARKET,
BUT THE INDUSTRIAL AND SECURITY MARKET ARE GAINING SHARES
37%
33%
6%
5%
15%
15%
10%
9%
8%
8%
2%
3%
9%
11%
13%
17%
Static Mammography Surgery and interventional CT-scan Dental Veterinary Industrial Security
$2.0B
$2.8B
2024
2018
Commercialization of IGZO flat panels for X-ray
imaging begun last year with Rayence, iRay and
Varex presenting IGZO based products. Yole
Développementisexpectingarapidramp-up of IGZO
integration in new products as the technology is
ready and the supply chain is almost ready too.
Imaging system manufacturers are eager to use
this new technology because it offers better image
quality at an affordable cost. However, ramp-up
will depend on how rapidly the technology is
integrated into new products.
Another very interesting development is single
photon counting for spectral imaging. With the
acquisition of MultiX by Detection Technology
IGZO AND PHOTON COUNTING TECHNOLOGIES ARE READY TO
FINALLY REACH COMMERCIALIZATION, HELPED BY ECONOMIC AND
TECHNICAL DRIVERS
22. X-RAY DETECTORS FOR MEDICAL, INDUSTRIAL AND SECURITY APPLICATIONS 2019
2018 – 2024 X-ray detector market revenue by technology
(Yole Développement, May 2019)
and with Varex buying Direct Conversion AB, photon
counting is no longer just a promising technology. It
will soon be available in products from the biggest
detector manufacturers. System manufacturers’
interest in single photon counting and spectral imaging
is focused on discrimination of materials in security
and industrial applications and use of targeted contrast
agents in medical applications.
We are also seeing a growing trend towards
3D imaging that translates into more computed
tomography (CT) being sold into various medical,
security and industrial applications.
X-ray line scan cameras are mainly used in industrial
and security applications. The next trend in this field
is the use of time delay integration (TDI) cameras
to enhance image quality. We are already seeing TDI
cameras in food sorting and non-destructive testing
of microelectronics.
Artificial intelligence (AI) will be the next megatrend
to follow in the field of imaging. This is especially true
in X-ray, as 3D and multi-spectral imaging requires
processing of massive amounts of data.
This report describes the technology landscape
and evolution and lays out the roadmaps Yole
Développement expects that progress might follow.
(Yole Développement, May 2019)
2018
$2B
CAGR2018-2024
+5.9%
2024
$2.8B
$66M
$245M
$510M
+13%
$1,085M
$1,118M
+0.5%
$67M
$62M
-1%
$501M
$829M
+9%
$236M
+64%*
CCD
CMOS
aSi
aSe
Photodiodes array
IGZO*
* IGZO market segment will start only in 2020
$18M
-19%
Medical market
Security market
Detector players
As new challengers are coming to the market, especially from China/Asia, historical
players are expanding their portfolio through MA…
* Non exhaustive list of acquisitions
acquired
acquired
acquired
acquired
acquired
acquired
2016
2017
2018
2019
Legend:
acquiredacquired
X-ray imaging ecosystem: 2016 – 2019 major acquisitions*
The X-ray detector market is now like the electronics
market. It’s becoming difficult to develop all the
components internally. A company needs a supply
chain with partners that are expert in their domains:
detector companies, software companies that have AI
specialists, etc.
After a consolidation of the supply chain in the medical
business (Canon acquired Toshiba Medical), the security
business (Smiths Detection acquired Safran Morpho,
OSI Systems acquired Rapiscan) and the detector
manufacturers (Teledyne Dalsa acquired e2v, Varex
acquired Perkin Elmer) in 2016-2017, we now see the
detector makers expanding their product portfolio to
add photon counting (Varex, Detection Technology).
At the system level, the medical and dental segments
are dominated by few major players, like Siemens,
Philips, GE and Canon. Smaller players with niche
products are also gaining market share in areas like
mammography, dental or surgery. Chinese players
such as United Imaging are also gaining market share,
even in the high-end markets. The X-ray security
market is very consolidated, with a few key players
accounting for around 60% of the overall market
share in 2018. The key players include OSI Systems,
Smiths Detection, L3 and Analogic Corporation, but
also Chinese players such as Safeway System and
Nuctech. The industrial segment is divided up into
a lot of applications with very different needs and
specifications. This explains the large number of small
companies in this segment compared to the medical
segment where the main products are in the hands of
4-5 main players.
In the flat panel market, big companies such as Teledyne
Dalsa, Varex and Trixell are still the main players.
However, Asian manufacturers such as Vieworks,
Rayence, iRay and CareRay are gaining market shares
and are at the forefront of new technologies.
The main applications of photodiode array detectors
in X-ray imaging are line scan imaging, mainly for
industrial applications but also and CT-scan, in medical,
industrial and security applications. The main players
are Hamamatsu, ams and Detection Technology.
This report includes a complete supply chain analysis
and describes market shares by segment at the system
level, and by technology at the detector level.
NEW TECHNOLOGIES REACHING COMMERCIALIZATION ARE RESHUFFLING
THE CARDS OF MANY PLAYERS IN THE SUPPLY CHAIN
23. MARKET TECHNOLOGY REPORT
COMPANIES CITED IN THE REPORT (non exhaustive list)
Acteon, Adani systems, Agfa, AIV-BEX, Ajat, AMS, Analogic, Anke, Asahi, Astrophysics, AUO, Autoclear,
BASF, BOE, Caeleste, Canon, Careray, Carestream, cefla, China electronics panda crystal technology,
Chunghwa picture tubes, Comet Group, CSOT, Cuattro, CyXplus, Dabi Atlante, Dectris, Detection
Technology,DirectConversion,Dpix,Drtech,Dürr,Ecoray,EIA,Excelitas,Fiscan,Fujifilm,GE,GEhealthcare,
Gendex, Gilardoni, Gongbu HiTek, Hamamatsu, Heska, Hitachi, Hologic, Idetec, Idexx laboratories, iM3,
ImageWorks, Imec, Innolux, Innomed, InterMedical, Iray, Isdi, Isorg, Italray, Joled, Kapri Corp, KavoKerr,
Konica Minolta, L3 security and detection systems, Led dental, Leidos, LG, Lixi, Mars bioimaging, Medical
Econet, Mediso, Minfound, MinX-ray, Mistras, Morita, MultiX, Myvet Imaging, Neusoft, Nikon, Nordson
Dage, North Star Imaging, NT3, Nuctech, ON Semiconductor, OSI systems, PaloDex, Panasonic, Philips,
Planmeca, Prexion, Rapiscan, Rayence, Rgenoray, Rigaku, Ritter, Safeway system, Samsung, Scanna, Sedecal,
Sharp, Shimadzu, Siemens healthineers, SinoVision, Sirona, Smiths Detection, Sony, Soredex, Sound,
Stephanix, Teledyne Dalsa, Thales, TNO, Todd Research, Toshiba, Towerjazz, Trixell, Unicomp, Uniqscan,
United Imaging, Vanderlande, Varex, Vatech, Vetel diagnostics, VGI, Vidisco, Vieworks, Vision Systems, VJ
Technologies, Westminster Inetrnational, Xfab, X-scan imaging, Zeiss, Ziehm, 3DX-ray and many more!
RELATED REPORTS
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As a Technology Market Analyst, Medical
Imaging Biophotonics, Marjorie Villien,
PhD is member of the Life Sciences
Healthcare division at Yole Développement.
She is a daily contributor to the development
of medical technologies activities with a
dedicated collection of market technology
reports as well as custom consulting projects.
As an example, Marjorie was involved in a
project focused on videoscopy for endoscopy
application, to understand the benefits of the
CCD/CMOS solution and identify business
opportunities. In parallel, she performed an
analysis of the PET detectors technology to
evaluate the impact of innovative Solid-State
technologies on the evolution of the nuclear
medicine industry. After spending two years
at Harvard, Marjorie served as a research
scientist at INSERM in the field of medical
imaging for the treatment of Alzheimer’s
disease, stroke and cancers. She has spoken
in numerous international conferences and
has authored or co-authored 11 papers and
1 patent. Marjorie is daily exchanging with
clinicians, researchers and industrial partners
to understand technology issues and
ensure the connection between RD and
applications. Marjorie Villien graduated from
Grenoble INP and holds a PhD in physics
medical imaging.
AUTHORS
TABLE OF CONTENTS (complete content on i-Micronews.com)
Executive summary 13
Context 51
Context
Scope of the report
Historical perspective and synergies with
other markets
Technology landscape
Market forecasts 73
X-ray detector market and forecasts 2018-
2024 (value and units) at the system level
by application
X-ray detector market and forecasts 2018-
2024 (value and units) at the detector level
by application
X-ray detectors market and forecasts
2018-2024 (value and units) at the detector
level by technology
Technology penetration by segments
Cost analysis
Market trends by segment 86
For each segment: medical, subdivided into
mammography, surgery and interventional,
CT, dental; Veterinary; Industrial; and
Security
- Market drivers
- Technical requirements
- Detector market per technology 2018-
2024 (value and units)
- Major players and market share at the
system level
- Supply chain, market share and value chain
Mergers and acquisitions
Supply chain analysis
Which OEM works with who?
Detectors manufacturers market shares by
technologies
Focus on the Chinese ecosystem
Focus on system manufacturers’
component divisions
Value chain analysis
Technology trends 158
Technology landscape
Technology evolutions
Technologies roadmap
Manufacturing process
Commercial products available and future
product launch
New technology trends
Conclusions 192
Yole Développement presentation 195
REPORT OBJECTIVES
• Provide an overview of X-ray imaging markets and technological landscapes at the system
and detector levels, as well as an understanding of established and upcoming players, their
technologies and their advantages/drawbacks, and how these will evolve in coming years.
• Provide market data and forecasts, along with market share at the system and detector levels by
applications, including medical, veterinary, industrial and security, and technologies, including aSi,
aSe, CCD, CMOS, photodiodes and IGZO, in dollar value and in unit volumes.
• Identify where the opportunities lie for the different players along the supply chain, from materials
suppliers and foundries, to detectors manufacturers and system developers.
• Discuss the different technologies used today, such as aSi, aSe, CCD, CMOS, photodiodes, but
also the alternatives coming to the market in the next few years, including IGZO and single
photon counting and possible new technologies being tested in RD, such as perovskites, organic
materials and curved sensors.
Jérôme Mouly serves as a Senior
Technology Market Analyst Business
Developer specialized in microtechnologies
for inkjet bioMEMS sensors at Yole
Développement (Yole). Jérôme is supporting
the development of strategic projects,
followingleadingcustomersofthecompany,
within the Life Sciences Healthcare
division. Since 2000, he is also engaged in
more than 100 marketing and technological
analyses for industrial groups, start-ups
and institutes related to semiconductor
medical technologies industry, in the field of
inkjet functional printing, wearable sensors
and connected medical devices. Jérôme
is also regularly involved in international
conferences, giving presentations and
delivering keynotes. Jérôme Mouly holds
a Master of Physics from the University of
Lyon (France).
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