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global high speed camera market
Global High-Speed Camera Market Size – Industry Trends & Forecast Report 2026
The global high-speed camera market is estimated to have reached USD 450.2 Million in 2020 and is further projected to reach USD 876.6 Million by 2027, growing at a CAGR of 10.2% during the forecast period. Increasing applications of high-speed infrared cameras, especially for high-speed scanning of people to detect COVID-19, and the growing use of high-speed cameras in entertainment & media, and sports industries are the key factors driving the growth of the high-speed camera market. The high adoption of high-speed infrared cameras and the rising need to assess the health of people and assessing tests done in ballistics and explosives are factors propelling the growth of the high-speed camera market.
Source: BlueWeave Consulting
Global High-Speed Camera Market Overview:
The high-speed cameras are the updated version of ordinary
digital cameras with high resolution, greater frame rate with the ability to
capture motion or events at ultra-high speed. High-speed cameras can analyze
and capture even invisible objects that are beyond the capacity of the human
eye. The quality of a high-speed camera depends on several attributes such as
frame rate, resolution, sensor size, memory size, image processors, fans, and
cooling systems with other semiconductor components. A wide variety of
High-speed cameras are available in the market with a broad range of frame
rates typically from zero to billions per second and are equipped with
high-resolution capabilities that vary from 1MP (megapixels) to billions of
megapixels.
Global High-speed Camera Market Forecast
and Trends
Growth Drivers
Intelligent Transportation Systems
Initiative to Drive the Market
Intelligent Transport System (ITS) aims to achieve traffic
efficiency by minimizing traffic problems that enhance safety and comfort. It
enriches users with prior information about traffic, local convenience
real-time running information, seat availability, etc. which reduces the travel
time of commuters as well as enhances their safety and comfort. Cameras,
particularly high-performance machine vision cameras, are becoming more
important in intelligent traffic systems. With features like real-time
capability, broad sensor range, auto iris functionality, and day/night
functionality high-speed cameras are helping in preventing potential crashes,
keep traffic moving, and decrease the negative environmental impacts of the
transportation sector on society. Another application of high-speed cameras is
in Automatic Incident Detection which is to ensure quick response to accidents.
Increasing applications of high-speed
infrared cameras, especially for high-speed scanning of people to detect COVID-19
Technological advancements have made it possible to develop
high-performance infrared cameras for use in a wide variety of demanding
thermal imaging applications. These infrared cameras are now available with
spectral sensitivity in the shortwave, mid-wave, and long-wave spectral bands
or alternatively in two bands. The infrared cameras, nowadays, are also used to
detect COVID-19 in patients. They are installed in public places such as
airports, malls, and railway stations, where they enable precise non-reactive,
contactless, and planar recording of surface temperatures while using the
technical temperature measurement technology known as thermography.
Restraints
High setup cost for industrial usage
As opposed to conventional video cameras that capture
natural-paced footage at 24–60 frames per second, even the basic high-speed
cameras capture several thousand frames. The overall setup required for the
proper functioning of the camera requires components such as a camera
controller, lens, LED lighting, and software for analysis and control of the
overall process. A complete setup could cost approx. USD 150,000. Thus, the
high setup cost is declining the demand for the product. The cameras also
require high maintenance costs which are hampering the growth of the high-speed
camera market.
Impact of COVID-19 in the industry
The emergence of the COVID-19 pandemic, a deadly respiratory
disease, has now become a worldwide issue and has also affected the growth of
the high-speed camera market. Global sales of high-speed cameras for key
verticals such as research, design, and testing laboratories, and the
entertainment & media industry are expected to decline by 10–15% in the
fiscal year 2021, depending upon the progression of the virus in different parts
of the world. The decline in the number of new research, design, and testing
laboratory projects, and the temporary shutdown of production facilities, are
some factors hampering the growth of the high-speed camera market. However, the
short-term supply chain disruptions are expected to affect market growth in key
regions.
Global High-speed Camera Market: By Frame
Rate
Based on frame rate, the market is categorized as 1,000–5,000 fps, >5,000–20,000 fps, >20,000–100,000 fps &>100,000 fps. Amidst this category, >100,000 fps accounted for the largest share in the high-speed camera market in 2019. The cameras with a frame rate of greater than 1,00,000 are forecasted to have the most rapid growth rate owing to an increase in this form of cameras as they perform detailed computerized and/or visual motion analysis. Thus, the >100,000 fps will drive the growth of the high-speed camera market.
Source: BlueWeave Consulting
Global High-speed CameraMarket:
By Resolution
Based
on the resolution, the global high-speed camera market has been divided into
0–2 MP, >2–5 MP &>5 MP. The market for >2–5 MP cameras is
anticipated to register the highest CAGR during the forecast period.
Applications such as spray analysis, combustion research, and vibration
analysis in scientific research, design, and testing laboratories require
high-speed cameras with a high resolution to efficiently analyze events.
Applications such as production line monitoring, maintenance, and
troubleshooting employ such high-speed cameras. These cameras provide images
with quality good enough for the detection of errors and monitoring of
production lines in industrial manufacturing plants and are more cost-efficient
than the high-speed cameras with a resolution of >5 MP.
Global High-speed Camera Market: By Throughput
Based
on throughput, the global high-speed camera market has been divided into
0–2,000 MPPS, >2,000–5,000 MPPS, >5,000–10,000 MPPS &>10,000 MPPS.
The high-speed cameras with a resolution of >2,000–5,000 MPPS are forecasted
to have the most rapid growth rate over the forecast period owing to an
increase in demand for high-speed cameras with higher throughput. High-speed
cameras are used in various industries such as entertainment, military,
aerospace, media, healthcare, paper and printing, automotive, and scientific
research industries. Thus the >2,000–5,000 MPPS is anticipated to grow at a
higher CAGR during the forecast period.
Global High-speed Camera Market: By Application
On
the basis of application, the global market is segregated into automotive &
transportation industry, industrial manufacturing plants, food & beverages
industry, consumer electronics industry, entertainment & media industry,
sports industry, paper & printing industry, aerospace & defense,
research, design, & testing laboratories, healthcare industry & others
(building materials inspection, tobacco product inspection, and nonwoven
textile inspection). The Healthcare industry has high growth potential owing to
the increased use of high-speed cameras in diagnostic processes such as
detection of voluntary eye blinking kinetics and voice problems among others.
Global High-speed Camera Market: By Component
Based
on components, the global high-speed camera market has been divided into image
sensors, lenses, batteries, image processors, fans and cooling systems, memory
systems & other semiconductor components. An increase in the incorporation
of high-resolution cameras equipped with image sensors in mobile devices,
growth in adoption of image cameras for automotive applications, and rise in
use of image sensors in improved medical imaging solutions are among the
factors driving the growth of the high-speed camera market.
Global High-speed Camera Market: By Spectrum
Based
on the spectrum, the global high-speed camera market has been divided into
visible RGB, infrared & X-ray. The infrared spectrum segment is estimated
to register the highest CAGR growth during the forecast period. The emergence
of the COVID-19 pandemic, a deadly respiratory disease, has now become a
worldwide issue and has also affected the growth of the high-speed camera
market. Increasing applications of high-speed infrared cameras, especially for
high-speed scanning of people to detect COVID-19 are driving the growth of the
high-speed camera market.
Global High-speed Camera Market: Regional insights
The global High-speed Camera market is segmented into five regions including North America, Europe, Asia-Pacific, Latin America, and Middle East & Africa. Amidst this category, Asia Pacific to grow at the highest CAGR during the forecast period. The market in the Asia Pacific is expected to register the highest CAGR amongst all regions during the forecast period. Rapid industrialization and evolution of Asia Pacific countries as manufacturing hubs, particularly China and India, are expected to be the major drivers for the Asia Pacific market. For instance, Apple (US) has set up its manufacturing hub in India. These factors are expected to be the major drivers behind this growth.
Source: BlueWeave Consulting
Recent Development
·
On March 2019
- Vision Research Inc. launched Phantom VEO 440 that can shoot an event at the
frame per second rate of 1,100 at complete 4 MP resolution, 2,000 fps at 1080p
HD, and 290,000 fps at minimum resolution. The product is available with the
memory size of up to 72GB of in-built RAM and offers an Ethernet option with a
data speed of 10GB to enable the fastest workflow.
·
On August
2018 - Photron Ltd.launched a versatile, high-performance camera system NOVA
that combined advanced CMOS sensor technology with speed to achieve digital
imaging expertise and a flexibility of usage in myriads of applications.
Competitive landscape
Key players for global
high-speed cameramarket include: By Photron (Japan), Photron LTD. (Tokyo), nac Image Technology
(Japan), Vision Research (US), PCO AG (Germany), Mikrotron (Germany), Optronis
(Germany), Integrated Design Tools (US), Monitoring Technology (US), AOS
Technologies (Switzerland), Fastec Imaging (US), Weisscamm GMBH I.L (Germany),
Motion Engineering Company (US), DEL Imaging (US), iX Camera (UK), and Xcitex
(US) & other prominent players. These key players have adopted strategies,
such as product portfolio expansion, mergers & acquisitions, agreements,
geographical expansion, and collaborations to enhance their high-speed camera
market share.
Scope of the Report
Attribute |
Details |
Years Considered |
Historical
data – 2017-2020 Base
Year – 2020 Forecast
– 2021–2026 |
Facts
Covered |
Revenue
in USD Million |
Market
Coverage |
U.S,
Canada, UK, Spain, Germany, Italy, France,United Kingdom, Spain, China,
India, Japan, South-Korea, Saudi Arabia, UAE, South Africa |
Product/Service
Segmentation |
By frame rate, resolution,
usage, throughput, spectrum, component and application |
Key Players |
Key
players for global high-speed cameramarket include:By Photron
(Japan), Photron LTD. (Tokyo), nac Image Technology (Japan), Vision Research
(US), PCO AG (Germany), Mikrotron (Germany), Optronis (Germany), Integrated
Design Tools (US), Monitoring Technology (US), AOS Technologies (Switzerland),
Fastec Imaging (US), Weisscamm GMBH I.L (Germany), Motion Engineering Company
(US), DEL Imaging (US), iX Camera (UK), and Xcitex (US) & other prominent
players. |
Scope of the Report
By Frame Rate
Ø 1,000–5,000 fps
Ø >5,000–20,000 fps
Ø >20,000–100,000 fps
Ø >100,000 fps
By Resolution
Ø 0–2 MP
Ø >2–5 MP
Ø >5 MP
By Usage
Ø Rental High-Speed Camera
Ø Used High-Speed Camera
Ø New High-Speed Camera
By Spectrum
Ø Visible RGB
Ø Infrared
Ø X-ray
By Component
Ø Image Sensors
Ø Lens
Ø Batteries
Ø Image Processors
Ø Fans and Cooling Systems
Ø Memory Systems
Ø Other Semiconductor Components
By Throughput
Ø 0–2,000 MPPS
Ø >2,000–5,000 MPPS
Ø >5,000–10,000 MPPS
Ø >10,000 MPPS
By Application
Ø Automotive & Transportation Industry
Ø Industrial Manufacturing Plants
Ø Food & Beverages Industry
Ø Consumer Electronics Industry
Ø Entertainment & Media Industry
Ø Sports Industry
Ø Paper & Printing Industry
Ø Aerospace & Defense
Ø Research, Design, & Testing
Laboratories
Ø Healthcare Industry
Ø Others (building materials inspection,
tobacco product inspection, and nonwoven textile inspection)
By Region:
Ø Asia Pacific
Ø North America
Ø Europe
Ø Middle East & Africa
Ø Latin America
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