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Vietnam Digital Signage Market – Growth, Trends, and Forecasts (2018 – 2023)
| Electronics | Published by: Mordor Intelligence | Market: |
| Unknown | Published: 25-06-2019 |
- Electronics
- Mordor Intelligence
- pages
- Published: 25-06-2019
Market Overview
The Vietnamese digital signage market was valued at USD 373.55 million in 2017, and is expected to reach USD 645.83 million by 2023, recording a CAGR of 9.39% during the forecast period (2018-2023).
Asia-Pacific has several developing nations with rapidly developing economies. There have been large scale investments by major players, in various regional industries. In Vietnam, there exists cut-throat competition between the companies of the neighboring origin and large multi-national corporations trying to establish a foothold on the regional market. Technological advancements in the recent past have led to the development of OLEDs that offer much clearer picture and are not very expensive, than the other available solutions.
The retail industry was expected to be the largest revenue share holder in the display advertising revenue. Vietnam lags behind on the economic scale, as compared to the neighboring nations in the region, and is expected to witness significant growth in the near future, owing to the increasing interest of large conglomerates willing to enter the market and compete with local manufactures and enterprises for control over the market.
Technological Advancements Reduce the Costs of Infrastructure and Displays
Digital signage is being pervasively used in and on all modes of public transportation, to meet the needs of on-the-go viewers, providing real time, location- and context-awareness related to traveler information and advertising. Technological advancements have led to the development of better and higher quality products, leading to conventionally new players reducing prices and being affordable for the smaller industries and enterprises.
Liquid Crystal Display (Plasma) Expected to Dominate the Market
LCDs allow smoother scrolling text and reduced motion blur in digital signage messaging, which are important considerations, as visual displays are being deployed for critical purposes, to drive sales and engage customers. The result is a high contrast ratio, which offers a better picture and energy savings. The system, with rate A and B in the biggest cities, especially Hanoi and Ho Chi Minh City, is currently attracting 2.16 million views per day, around 70% of the total screen view in all commercial buildings. The largest urban populated cities, such as Hanoi and Ho Chi Minh, have deployed digital signage systems in commercial buildings as well.
Commercial Segment Dominated the Digital Signage Market
The retail sector has been the largest contributor to the digital signage market in the country. The growth of the market in the retail sector can be attributed to the increasing implementation of digital marketing and advertisements. As a well-structured digital signage and campaign has a significant effect on the consumer decision, they boost sales at a major scale. Digital signage systems are finding their place in retail sector, by means of applications, such as video walls, interactive kiosks, end-cap signage, way finding, point of purchase tools, infotainment, in-store advertising network, digital menu boards, etc.
Key Developments in the Market
Oct 2017 – NEC Display Solutions and BrightSign teamed up to offer bundled digital signage solutions, as a part of NEC’s alliance partnership program.
Reasons to Purchase this report:
– The market estimate (ME) sheet in Excel format
– Report customization as per the client’s requirements
– 3 months of analyst support
Table of Contents
1. Introduction
1.1 Key Deliverables of the Study
1.2 Study Assumptions
1.3 Market Definition
1.4 Key Findings of the Study
2. Research Approach and Methodology
3. Executive Summary
4. Market Dynamics
4.1 Market Overview
4.2 Factors Driving the Market
4.2.1 Technological Advancements Reducing Cost of Infrastructure and Displays
4.2.2 Positive Impact of Outdoor Advertising
4.3 Factors Restraining the Market
4.3.1 High Capital Investments and Lack of General Awareness
4.4 Industry Value Chain Analysis
4.5 Industry Attractiveness – Porter’s Five Forces Analysis
4.5.1 Bargaining Power of Suppliers
4.5.2 Bargaining Power of Consumers
4.5.3 Threat of New Entrants
4.5.4 Threat of Substitute Products and Services
4.5.5 Competitive Rivalry among Existing Competitors
4.6 Industry Policies
5. Technology Snapshot
6. Vietnamese Digital Signage Market Segmentation
6.1 By Mode of Display
6.1.1 Liquid Crystal Display/Plasma
6.1.2 LEDs
6.1.3 Projection Screens
6.1.4 OLEDs
6.1.5 Others
6.2 By Solution Type
6.2.1 Hardware
6.2.2 Software
6.3 By Application
6.3.1 Infrastructure
6.3.2 Industrial
6.3.3 Commercial
6.3.4 Others
7. Competitive Intelligence – Company Profiles
7.1 Digital Signage Viet. JSC
7.2 Net & Com Integrated Telecom JSC
7.3 Vodatel Integrated Solutions Vietnam Co. Limited
7.4 NEC Corporation (Vietnam)
7.5 ATT Systems Group (Vietnam)
7.6 Shoei Vietnam Co. Limited
7.7 Inavate AV
7.8 Ingram Micro (Intel Corporation)
8. Investment Analysis
9. Outlook of the Vietnamese Digital Signage Market
Market Segmentation
By Mode of Display
Liquid Crystal Display/Plasma
LEDs
Projection Screens
OLEDs
Others
By Solution Type
Hardware
Software
By Application
Infrastructure
Industrial
Commercial
Others
Medical X-Ray Films Market – Growth, Trends, and Forecasts (2019 – 2024)
| Electronics | Published by: Mordor Intelligence | Market: |
| 100 pages | Published: 10-06-2019 |
- Electronics
- Mordor Intelligence
- 100 pages
- Published: 10-06-2019
Market Overview
The global medical X-ray films market was valued at USD 931 million in 2018, and it is expected to record a CAGR of over 0.6% during the forecast period (2019 – 2024). The report is segmented by end user and region. The increasing occurrences of chronic diseases, coupled with the rising number of diagnostic imaging procedures and significant spending on healthcare across the world, have been instrumental in driving the global medical X-ray films market.
X-ray techniques have been useful in the detection treatment of neurological problems, cancer, cardiac diseases, and bone-related problems. This has buoyed the adoption of X-ray equipment, and consequently the use of X-ray films.
Increase in number of radiography tests performed in hospitals, globally, each year, is one of the major factors pushing the demand for Medical X-ray Film, whereas the emergence of new and advanced-imaging equipment by key market players, like Kodak, Fuji, especially in a developed economy is expected to affect the market growth negatively. However, owing to the high equipment cost of the advanced equipment, hospitals in emerging economies are still working on analog radiography aiding the X-ray film market to grow in these regions.
The global X-ray equipment market is among the most adopted forms of medical imaging diagnostics. While there has been an increasing adoption of digital X-ray equipment, the FPD-FFDM for mammography uptake in emerging regions is relatively low, with few healthcare providers being able to purchase the costly equipment.
The emerging economies of Brazil, Turkey, India, and China have been among the largest adopters of analog X-ray equipment. While, these countries have been well informed of the newest digital equipment, yet a majority of the hospitals have been reluctant to update their existing equipment, owing to the capital investment already made. Furthermore, the lack of skilled personnel to use and manage digital X-ray equipment has also hindered their adoption in these regions.
The dental applications are expected to be slow adopters of the digital equipment, owing to the high cost of digital radiography systems for these applications, positively impacting the market for X-ray equipment and films. However, the evolution and adoption of digital X-ray systems and flat panel detectors instead of films that deliver a user-friendly, smart workflow for imaging centers have posed a major threat to the X-ray films market.
Scope of the Report
A medical X-ray film processor is the most important part for X-ray image processing. These processors are used to decipher the information carried by weakened X-ray beams, when they are passed through tissues. They capture the invisible image and convert it into a visible form. The main part of an X-ray film is a radiation-sensitive, photographically active material made in the form of emulsion quoted on the supporting material called base.
Key Market Trends
Diagnostic Centers Segment is Expected to Register a Significant Growth
An aging population across the world that is more prone to chronic diseases and ailments is expected to further drive industry growth. However, high-cost associated with the installation of medical imaging systems and increased risk of exposure to high radiation among patients are expected to hinder the market for X-ray medical diagnosis.
The increasing importance of diagnosis well in advance, coupled with a rise in government spending in healthcare that has reflected in the increasing shipments of medical diagnostic equipment, is expected to positively affect the market growth.
The X-ray equipment market has held the largest share of the overall MDI, which has been a significant driver for the X-ray film market and has been buoyed by its usage in the mammography, veterinary, and dental applications.
While the market landscape for X-ray equipment market is defined by established players, such as GE and Fujifilm, the X-ray film market is fragmented with a large number of global and local players in each region. Major players are investing in emerging countries to gain a strong foothold on the market.
For instance, in 2018, Dalian Wanda Group Co. Ltd announced to invest USD 10 billion in a health park in China. This investment is expected to be done after the government eases the norms for FDI in the Chinese private healthcare sector. However, the growing collaboration between developing and developed economies in the diagnostic industry is expected to increase the number of diagnostic centers, which is further estimated to affect the market studied positively.
Asia-Pacific Region is Expected to Have Highest Growth
Asia-Pacific still relies on traditional X-ray solutions significantly. Due to the region’s increasing population and the number of patients suffering from ailments, who should be diagnosed or managed through the use of CT, the use of X-rays is on the rise. This growing pool of patients has led to the high demand for medical imaging. In the Asia-Pacific region, hospitals play a crucial role in medical diagnostics. In China, the number of hospitals is on the rise. The National Bureau of Statistics of China reported an increase in the number of hospitals in the country, from 23,170 hospitals in 2012 to 29,140 hospitals in 2016.
Moreover, in India, according to the World Bank, 77% of the healthcare industry was occupied by hospitals and 3% by the diagnostic centers in 2016. Thus, the region still has a high dependency on hospitals for diagnostics and medical imaging solutions. The American Cancer Society reported a huge rise in breast cancer cases in the country, from 192,370 breast cancer cases in 2008 to 266,120 cases in 2018. With this, death toll from breast cancer increased from 40,170 deaths in 2009 to 40,920 deaths by the end of 2018.
The country, however, is tackling this concern by initiating programs, such as the National Cancer Screening Programme of 2016, which made screening for oral, breast, and cervical cancers mandatory in people over the age of 30 in 100 districts of India before the program expands to other areas.
Competitive Landscape
The global medical X-ray films market is highly competitive and consists of several major players. In terms of market share, few of the major players currently dominate the market. These major players with prominent market shares are focusing on expanding their customer base across foreign countries. These companies are leveraging on strategic collaborative initiatives to increase their market share and their profitability.
Furthermore, the companies operating in the market are also acquiring start-ups working on medical X-ray films to strengthen their product capabilities. For instance, In August 2017, Codonics Inc. and Plexus Technology Group LLC (Plexus TG), a market-leading, best-of-breed provider of Anesthesia Information Management Systems (AIMS), strengthened their partnership by elevating Plexus TG to a value-added reseller for Codonics Safe Label System (SLS).
Reasons to Purchase this report:
– The market estimate (ME) sheet in Excel format
– Report customization as per the client’s requirements
– 3 months of analyst support
1 INTRODUCTION
1.1 Study Deliverables
1.2 Study Assumptions
1.3 Scope of the Study
2 RESEARCH METHODOLOGY
3 EXECUTIVE SUMMARY
4 MARKET DYNAMICS
4.1 Market Overview
4.2 Introduction to Market Drivers and Restraints
4.3 Market Drivers
4.3.1 Continued Adoption of Traditional X-ray Equipment in Developing Economies
4.4 Market Restraints
4.4.1 Emergence of Digital Radiography and Flat Panel Detector Technology
4.5 Industry Attractiveness Porter’s Five Forces Analysis
4.5.1 Threat of New Entrants
4.5.2 Bargaining Power of Buyers/Consumers
4.5.3 Bargaining Power of Suppliers
4.5.4 Threat of Substitute Products
4.5.5 Intensity of Competitive Rivalry
5 MARKET SEGMENTATION
5.1 By End User
5.1.1 Diagnostic Centers
5.1.2 Hospitals
5.1.3 Research and Educational Institutions
5.2 Geography
5.2.1 North America
5.2.2 Europe
5.2.3 Asia-Pacific
5.2.4 Middle East & Africa
5.2.5 Latin America
6 COMPETITIVE LANDSCAPE
6.1 Company Profiles
6.1.1 Agfa-Gevaert NV
6.1.2 Konica Minolta Inc.
6.1.3 Fujifilm Holdings Corporation
6.1.4 Flow Dental
6.1.5 Sony Corporation
6.1.6 Carestream Health Inc.
6.1.7 Skydent AS
6.1.8 Codonics Inc.
6.1.9 Foma Bohemia Ltd
7 INVESTMENT ANALYSIS
8 MARKET OPPORTUNITIES AND FUTURE TRENDS
MARKET SEGMENTATION
By End User
Diagnostic Centers
Hospitals
Research and Educational Institutions
Geography
North America
Europe
Asia-Pacific
Middle East & Africa
Latin America
High-End Accelerometer Market – Growth, Trends and Forecast (2019 – 2024)
| Electronics | Published by: Mordor Intelligence | Market: |
| 100 pages | Published: 10-06-2019 |
- Electronics
- Mordor Intelligence
- 100 pages
- Published: 10-06-2019
Market Overview
The global high-end accelerometer market was valued at USD 202.42 million in 2018, and it is expected to register a CAGR of 4.2% over the forecast period (2019-2024). The increasing adoption of MEMS technology has also played a significant role in expanding the application base for high-end accelerometers by scaling down the size and power consumption of these devices, without compromising on the performance metrics.
High-end accelerometers are also being increasingly used in navigation systems for high-speed trains and autonomous vehicles. These devices are widely used for performing shock and vibrational test for evaluating the performance of automobiles in duress.
The increased vibration levels of automated machinery in high-end industrial applications during high-speed operations, such as cutting or milling, are expected to damage critical materials and reduce precision. Such cases require higher stability to have higher machine control. Thus, high-end accelerometers are being adopted significantly for these applications.
Furthermore, increasing adoption of automated solutions aided the sales of triaxial accelerometers as they have low noise and temperature compensated design that can transmit the data with high precision and speed without any loss of data.
Scope of the Report
Accelerometers are capable of measuring acceleration, vibration, and tilt or shock. Thus, they are used in a diverse range of applications, such as industrial platform stabilization systems. High-end accelerometers are primarily used in high-grade applications for calculating the magnitude and direction of acceleration. Piezoelectric, capacitive and geophone technologies drive these systems as they have achieved reduced size and low-cost capabilities.
Key Market Trends
Tactical Applications to Hold Major Share
The limited number of measurements and the significantly high-cost of the system under test have historically generated demands on the part of tactical applications, such as military and aerospace customers for a high degree of reliability in accelerometer performance. When the high-end accelerometer is permanently integrated into the system for control and monitoring functions, the reliability requirements are intensified.
High-end accelerometers for tactical grade applications are mainly used in the defense and military sectors. These devices operate with bias stability of less than 1mg, with a working range of 20 to 100g and temperature range starting from -55°C. A number of factors have notably contributed to the aforementioned increased reliability.
The need for proper fabrication method is of utmost importance for high-performance accelerometers. In order to achieve high-performance tactical grade accelerometers, high aspect ratio devices should be fabricated with great accuracy.
North America to Hold Major Share
The North American region is witnessing a growth in the development of new high-performance accelerometers, as companies in the region are investing in introducing advanced and innovative accelerometers. The increased spending by the US defense to acquire high-performance equipment is the major factor driving the growth of high-end accelerometers in the country. Moreover, according to the Small Business Innovation Research (or SBIR) program, the objective of the US Navy is to develop and demonstrate an innovative acceleration technology applicable to inertial navigation, real-time gravimetry, and gradient measurements that can be met by introducing improvements and innovative changes to an existing government-owned accelerometer technology. Increasing mining and exploration activities in the region also pose a high demand for high-end accelerometers. According to Mining Engineering, the United States and Canada together accounted for 33.33% of active mineral exploration sites in 2017.
Competitive Landscape
The high-end accelerometer market is highly competitive and consists of several major players. In terms of market share, few of the major players currently dominate the market. These major players with prominent share in the market are focusing on expanding their customer base across foreign countries. These companies are leveraging on strategic collaborative initiatives to increase their market share and increase their profitability. In January 218, the company announced the launch of BMA400, an ultra-low power acceleration sensor for wearables and Internet of Things (IoT) applications. Its greatly reduced power demand significantly extends battery lifetime, especially on coin cell-powered devices. In April 2018, Bosch planned a smart plant for electronic components. The company invested EUR 100 million in a new manufacturing plant in central Mexico and is focused on strengthening its local presence in North America.
Reasons to Purchase this report:
– The market estimate (ME) sheet in Excel format
– Report customization as per the client’s requirements
– 3 months of analyst support
1 INTRODUCTION
1.1 Study Deliverables
1.2 Study Assumptions
1.3 Scope of the Study
2 RESEARCH METHODOLOGY
3 EXECUTIVE SUMMARY
4 MARKET DYNAMICS
4.1 Market Overview
4.2 Industry Attractiveness- Porter’s Five Forces Analysis
4.2.1 Threat of New Entrants
4.2.2 Bargaining Power of Buyers/Consumers
4.2.3 Bargaining Power of Suppliers
4.2.4 Threat of Substitute Products
4.2.5 Intensity of Competitive Rivalry
4.3 Industry Value Chain Analysis
4.4 Introduction to Market Drivers and Restraints
4.5 Market Drivers
4.5.1 Increasing Adoption of MEMS Technology
4.5.2 Inclination of Growth Toward Defense and Aerospace
4.5.3 Technological Advancements in Navigation Systems
4.6 Market Restraints
4.6.1 Operational Complexity Coupled With High Maintenance Costs
5 MARKET SEGMENTATION
5.1 By Application
5.1.1 Tactical Applications
5.1.2 Navigational Applications
5.1.3 Industrial Applications
5.1.4 Automotive Applications
5.2 Geography
5.2.1 North America
5.2.2 Europe
5.2.3 Asia-Pacific
5.2.4 Rest of the World
6 COMPETITIVE LANDSCAPE
6.1 Company Profiles
6.1.1 Sercel SA
6.1.2 Safran Colibrys
6.1.3 Physical Logic AG
6.1.4 Innalabs Limited
6.1.5 Sensonor AS
6.1.6 Tronics Microsystems (EPCOS)
6.1.7 Bosch Sensortec GmbH
6.1.8 Thales SA
6.1.9 Analog Devices Inc.
6.1.10 Honeywell International Inc.
6.1.11 STMicroelectronics NV
6.1.12 TE Connectivity
7 INVESTMENT ANALYSIS
8 MARKET OPPORTUNITIES AND FUTURE TRENDS
MARKET SEGMENTATION
By Application
Tactical Applications
Navigational Applications
Industrial Applications
Automotive Applications
Geography
North America
Europe
Asia-Pacific
Rest of the World
Photonic Integrated Circuit Market – Growth, Trends, and Forecast (2019 – 2024)
| Electronics | Published by: Mordor Intelligence | Market: |
| 100 pages | Published: 10-06-2019 |
- Electronics
- Mordor Intelligence
- 100 pages
- Published: 10-06-2019
Market Overview
The global photonic integrated circuit market was valued at USD 472.5 million in 2018, and is expected to register a CAGR of 26.4% over the forecast period (2019-2024). Photonic integrated circuit (PIC) technology is widely used to transfer huge amounts of data at a very high speed and finds applications in the field of optical fiber communications. One of the most significant drawbacks that PICs address is the power consumption issue. In fact, it is estimated that annually more than 5% of all the electricity generated, globally, was used in data center establishments, and this consumption is rising by at least 1.7% every year. But in the case of photonic ICs, it is estimated that the power consumed in such critical applications could be reduced by at least 50%.
Similar to the traditional PICs, which operate at wavelengths of 1.3 and 1.55μm, even hybrid PICs find great applications in telecommunication business and data centers. The need for high rate of data transfer, which cannot be accommodated by the traditional ICs, is the major factor leading to increased adoption of hybrid PIC in both telecom and data center markets.
The increasing number of cloud applications are rapidly up scaling the traffic that has to be handled by data centers. According to Cisco Systems, as of 2017, the volume of cloud traffic alone, across the data centers, exceeded 5 zettabytes per year, indicating a critical need for advanced switching and data transfer hardware, which can be met by hybrid PICs.
Although hybrid photonic integrated circuits are highly efficient and pose several advantages, when compared to their predecessors. They are still new to the market, and hence, experience a very low level of market penetration, when compared to the traditional ICs.
Scope of the Report
Multiple photonic components, such as waveguides, lasers, modulators, and detectors, when integrated on a single chip are referred to as photonic ICs. When compared to traditional ICs, photonic ICs are extremely fast, accommodate higher bandwidth, and are highly power efficient.
Key Market Trends
III-V Material to Hold a Major Market Share
GaAs photonics is a significantly tiny market, whose principal application was data centers. However, after the introduction of a 3D sensing function using GaAs-based VCSELs in Apple’s iPhone X, GaAs VCSEL has attained enormous growth.
The growth in 3D sensing applications in the consumer electronics market, automotive lighting, the increasing LiDAR applications, horticultural lighting, IR LED applications and display applications are expected to increase the demand for GaAs photonics over the forecast period.
In III-V materials, the market potential for InP (Indium Phosphide) PIC is considered very high. It can best be understood as a subset of the PIC market, which as a whole is further developed. The increasing potential for data center solutions and data center construction across the world is expected to aid the adoption of InP PIC over the forecast period.
North America to Hold a Major Market Share
In North America, the demand for photonic integrated circuits (PIC)-based products is driven by data centers and WAN applications of fiber optic communication. The need for high-speed data transmission increased the data traffic in cloud computing, and the rapid roll-out of IoT has created a potentially booming photonic integrated circuit industry in the region.
Service providers are facing an increasing demand for bandwidth, much of which is being driven by mobile, video, and cloud-based service. For instance, in the United States, video streaming from Netflix alone accounts for nearly a quarter of all bytes transferred at peak times. Companies are expected to base their optical networks on the PIC, which is expected to contribute to the market’s growth positively.
Competitive Landscape
The photonics integrated circuit market is highly competitive and consists of several major players. In terms of market share, few of the major players currently dominate the market. However, with innovative and sustainable packaging, many of the companies are increasing their market presence by securing new contracts and by tapping new markets. For instance, in 2017, Finisar introduced the flextune feature for wavelength-tunable optical transceivers, which simplifies the deployment of Dense Wavelength Division Multiplexing (DWDM) transceivers in Remote PHY access networks constructed by multiple system operators (MSOs). Further, in 2018, Lumentum Holdings Inc. acquired Oclaro Inc. Through this acquisition the company aims to enhance its product portfolio and accelerate its innovations.
Reasons to Purchase this report:
– The market estimate (ME) sheet in Excel format
– Report customization as per the client’s requirements
– 3 months of analyst support
1 INTRODUCTION
1.1 Key Deliverables of the Market
1.2 Study Assumptions
1.3 Scope of the Study
2 RESEARCH METHODOLOGY
2.1 Analysis Methodology
2.2 Research Phases
3 EXECUTIVE SUMMARY
4 MARKET DYNAMICS
4.1 Market Overview
4.2 Introduction to Market Drivers and Restraints
4.3 Market Drivers
4.3.1 Wide Range of Applications in Telecommunications and Data Centers
4.4 Market Restraints
4.4.1 Strong Demand for Traditional ICs
4.5 Industry Attractiveness – Porter’s Five Forces Analysis
4.5.1 Threat of New Entrants
4.5.2 Bargaining Power of Buyers/Consumers
4.5.3 Bargaining Power of Suppliers
4.5.4 Threat of Substitute Products
4.5.5 Intensity of Competitive Rivalry
5 MARKET SEGMENTATION
5.1 By Type of Component
5.1.1 Laser (Optical Laser)
5.1.2 Modulators
5.1.3 Detectors
5.1.4 Transceivers
5.1.5 Multiplexer / Demultiplexer (MUX/DEMUX)
5.1.6 Optical Amplifiers
5.2 By Type of Raw Material
5.2.1 III-V Material
5.2.2 Lithium Niobate
5.2.3 Silica-on-Silicon
5.2.4 Quantum Dots
5.2.5 Other Raw Materials (Graphene, Silicon-on-Insulator)
5.3 By Integration Process
5.3.1 Hybrid
5.3.2 Monolithic
5.4 By Application
5.4.1 Telecommunications
5.4.2 Biomedical
5.4.3 Data Centers
5.4.4 Other Applications (Optical Sensors(LiDAR), Metrology, etc.)
5.5 Geography
5.5.1 North America
5.5.2 Europe
5.5.3 Asia-Pacific
5.5.4 Rest of the World
6 COMPETITIVE LANDSCAPE
6.1 Company Profiles
6.1.1 Neophotonics Corporation
6.1.2 Infinera Corporation
6.1.3 Lumentum Holdings Inc.
6.1.4 Intel Corporation
6.1.5 Colorchip Ltd
6.1.6 Ciena Corporation
6.1.7 Finisar Corporation
6.1.8 Huawei Technologies Co. Ltd
6.1.9 Source Photonics Inc.
6.1.10 Luxtera
6.1.11 VLC Photonics
6.1.12 Mellanox Technologies Ltd
7 INVESTMENT ANALYSIS
8 MARKET OPPORTUNITIES AND FUTURE TRENDS
MARKET SEGMENTATION
By Type of Component
Laser (Optical Laser)
Modulators
Detectors
Transceivers
Multiplexer / Demultiplexer (MUX/DEMUX)
Optical Amplifiers
By Type of Raw Material
III-V Material
Lithium Niobate
Silica-on-Silicon
Quantum Dots
Other Raw Materials (Graphene, Silicon-on-Insulator)
By Integration Process
Hybrid
Monolithic
By Application
Telecommunications
Biomedical
Data Centers
Other Applications (Optical Sensors(LiDAR), Metrology, etc.)
Geography
North America
Europe
Asia-Pacific
Rest of the World
UV LED Market – Growth, Trends, and Forecast (2019 – 2024)
| Electronics | Published by: Mordor Intelligence | Market: |
| 100 pages | Published: 11-06-2019 |
- Electronics
- Mordor Intelligence
- 100 pages
- Published: 11-06-2019
Market Overview
The UV LED Market was valued at USD 345.77 million in 2018, and it is expected to reach a value of USD 900 million by 2024, at a CAGR of 17.13% over the forecast period (2019-2024).
UV-C LEDs have a particularly low external quantum efficiency (EQE). They only convert about 5% of the power input into light. The remaining 95% of the power is converted to heat, which must be quickly removed to keep the LED junction below its maximum operating temperature. Failure to keep the LED cool will at best shorten its life, and at worse cause it to fail catastrophically.
Increasing environmental concerns and ongoing actions under the legislation to cut the emissions of volatile organic compounds (VOCs) have been the major driving forces behind the development of radiation curing coatings over the past few years.
UV LED’s power output grows considerably with its technologies being redeveloped. Also, UV LED has a longer lifespan, smaller size, more uniform light distribution, and it saves more energy. Due to this, most countries approved the Minamata Convention on Mercury in 2013 and approved energy-saving policies.
Scope of the Report
Ultraviolet (UV) LED lights emit a light that is nearly invisible to the naked eye, but has many practical applications. UV LED lights can be used to authenticate documents like driver’s licenses, passports, credit cards, and currency, all of which include watermarks that are visible under UV light.
Key Market Trends
Increasing Investments in Healthcare and Scientific Applications
A UV-B LED is usually used in applications, such as medical phototherapy. This technology is highly effective and efficient in offering vitamin D3 to the human skin, as compared to sunlight.
UV LEDs are used in medical equipment used for phototherapy, DNA analysis, drug discovery, and vitamin analysis. The global healthcare industry is progressing at a rapid pace and will expand indefinitely during the forecast period. The increasing investments in healthcare and scientific applications in the Americas have been driving the revenues for all related markets, including the UV LED technology market
Vitamin D is one of the most important nutrients for human health, and moreover, people having malabsorption disorders are highly reliant on vitamin D3. The UV-B LED was found to be more than 2.4 times efficient in an experiment with Rayvio’s 293nm LED than sunlight in 1/60th the time.
North America is Expected to have Highest Market Share
In the United States, UV lights have been using in the industry, military, and customer products over a long period. The principal application is based on the technology of UV used, i.e., whether it lies in the A, B, or C wavelength of the electromagnetic spectrum.
UVA lamps have been traditionally used in the printing, photolithography, and curing through UV lamps that worked with arc-discharge mercury or amalgam lamps. One of the primary concerns with such lamps is the use of mercury that is regarded as toxic and non-environment-friendly technology. These shortcomings have resulted in the use of UV LED in the market and has been a common trend in every region. The major use of UVA has been in the energy-curable printing.
Drinking water contaminants pose harm to public health. Some can cause immediate illness. There have been incidents, such as the 16 million cases of acute gastroenteritis occurring each year at US community water systems. In the United States, as per the National trends in drinking water quality violations research, Feb 2018 findings, health-based drinking water quality violations are widespread, with 9 million to 45 million people affected during each of the past 34 years. The results were published in US National Library of Medicine National Institutes of Health Search database and are a good indicator of demand in the future.
CFR – Code of Federal Regulations Title 21, mentions the regulatory obligations of the product to be followed by the UV LED manufacturers and has pushed for further improvements. Stricter regulations and the scarcity of raw materials are generally considered to be drivers of innovation, and the same has been observed in the market for products that are directly used by customers.
Competitive Landscape
The UV LED Market is highly fragmented with many companies in the competition, Some of the major players in UV LED Market are LG, Nordosn. Some of the key developments in UV LED Market are as follows:
Legrand and Lumileds announced a partnership agreement that will bring to market a simple to integrate and easy-to-install plug and play solution that delivers high-quality tunable-white light. Under this agreement, Lumileds will provide intelligent light sources (LUXEON-based solutions) through its Matrix Platform that are uniquely characterized and programmed to work with Legrand’s Wattstopper Blanco tunable-white logic modules within the Wattstopper digital lighting management (DLM) lighting controls solution.
LG Innotek planed to launch the high-end UV LED brand,InnoUV .†The company plans to give the common name “InnoUV†to all of its UV LED products, apply a separately created brand logo design to them, and allow all finished products that use the company’s UV LED to use the logo.
Seoul Viosys introduced its plans to commercialize UV LEDs based on chip-scale packaging (CSP) technology. In line with this, the company was also been awarded with a patent for the technology development and design.
Reasons to Purchase this report:
– The market estimate (ME) sheet in Excel format
– Report customization as per the client’s requirements
– 3 months of analyst support
1 INTRODUCTION
1.1 Study Deliverables
1.2 Study Assumptions
1.3 Scope of the Study
2 RESEARCH METHODOLOGY
3 EXECUTIVE SUMMARY
4 MARKET DYNAMICS
4.1 Market Overview
4.2 Introduction to Market Drivers and Restraints
4.3 Market Drivers
4.3.1 Rising Adoption of UV Curing
4.3.2 Benefits of UV LED Technology
4.4 Market Restraints
4.4.1 Thermal Challenges
4.5 Industry Attractiveness Porters Five Force Analysis
4.5.1 Threat of New Entrants
4.5.2 Bargaining Power of Buyers/Consumers
4.5.3 Bargaining Power of Suppliers
4.5.4 Threat of Substitute Products
4.5.5 Intensity of Competitive Rivalry
5 MARKET SEGMENTATION
5.1 By Technology
5.1.1 UV-A
5.1.2 UV-B
5.1.3 UV-C
5.2 By Application
5.2.1 Optical Sensors and Instrumentation
5.2.2 Counterfeit Detection
5.2.3 Sterilization
5.2.4 UV Curing
5.2.5 Medical Light Therapy
5.2.6 Other Applications (Photocatalytic purification, Tanning)
5.3 Geography
5.3.1 North America
5.3.1.1 US
5.3.1.2 Canada
5.3.2 Europe
5.3.2.1 Germany
5.3.2.2 UK
5.3.2.3 France
5.3.2.4 Rest of Europe
5.3.3 Asia Pacific
5.3.3.1 China
5.3.3.2 Japan
5.3.3.3 South Korea
5.3.3.4 Rest of Asia-Pacific
5.3.4 Latin America
5.3.4.1 Brazil
5.3.4.2 Chile
5.3.4.3 Mexico
5.3.4.4 Rest of South America
5.3.5 Middle East and Africa
5.3.5.1 UAE
5.3.5.2 South Africa
5.3.5.3 Rest of Middle East and Africa
6 COMPETITIVE LANDSCAPE
6.1 Company Profiles
6.1.1 Lumileds Holding B.V.
6.1.2 LG Innotek Co. LTD.
6.1.3 Nordson Corporation
6.1.4 Honle UV America Inc.
6.1.5 Seoul Viosys Co. Ltd.
6.1.6 Nichia Corporation
6.1.7 Semileds Corporation
6.1.8 Aquionics Inc. (A Halma Company)
6.1.9 Crystal IS Inc.
6.1.10 Heraeus Holding GmbH
6.1.11 Fuji Xerox Co. Ltd.
7 MARKET INVESTMENT ANALYSIS
8 MARKET OPPORTUNITIES AND FUTURE TRENDS
MARKET SEGMENTATION
By Technology
UV-A
UV-B
UV-C
By Application
Optical Sensors and Instrumentation
Counterfeit Detection
Sterilization
UV Curing
Medical Light Therapy
Other Applications (Photocatalytic purification, Tanning)
Geography
North America
US
Canada
Europe
Germany
UK
France
Rest of Europe
Asia Pacific
China
Japan
South Korea
Rest of Asia-Pacific
Latin America
Brazil
Chile
Mexico
Rest of South America
Middle East and Africa
UAE
South Africa
Rest of Middle East and Africa
Particle Size Analysis Market – Growth, Trends, and Forecast (2019 – 2024)
| Electronics | Published by: Mordor Intelligence | Market: |
| 100 pages | Published: 11-06-2019 |
- Electronics
- Mordor Intelligence
- 100 pages
- Published: 11-06-2019
Market Overview
The particle size analysis market was valued at USD 325.6 million in 2018, and is expected to reach USD 437 million by 2024, at a CAGR of 5.1%, over the forecast period (2019-2024). Immense support from government organizations to strengthen their domestic pharmaceutical markets is expected to boost the demand form this sector. For example, China is planning to establish several data centers exclusively to serve the medical research proposes, facilitating the exchange of precious clinical trial data over the public domain.
Nanomaterials are finding major applications across various industries. Initially, they found major applications in the healthcare, cosmetics, and manufacturing industries. However, increasing advancements in nanotechnology are creating opportunities for nanoparticles in other industries as well.
Although particle size analysis equipment for legacy procedures, like sedimentation and sieving, is considerably low, the modern portable and compact equipment are often costly. Especially the probe equipment used in in-line techniques, which are in high demand in the industrial sector, are both costly for initial purchase and also to maintain.
Particle size analysis plays a key role in the manufacturing of carbon fiber components. Single wall carbon nanotubes are often subjected to dynamic light scattering (DLS) technology to assess if the required strength of the material could be drawn from a batch of carbon nanotubes.
Scope of the Report
Particle size analysis, particle size measurement, or simply particle sizing is the collective name of the technical procedures or laboratory techniques that determine the size range, and/or the average, or mean size of the particles in a powder or liquid sample. Particle size analysis is part of particle science and its determination is carried out generally in particle technology laboratories.
Key Market Trends
Laser Diffraction Technology to Hold Significant Share
Laser diffraction is one of the most prominent particle size analysis techniques that works on particles ranging from 10nm to 3,500 microns. Laser diffraction provides a result for the whole sample, rather than for individual particles. Immense demand for quality control in several manufacturing activities and increasing research activities are expected to drive the demand for laser diffraction equipment.
Laser diffraction measures particle size by measuring the angular variation in the intensity of light scattered by the sample (Mie theory of light scattering) assuming a volume equivalent sphere model. When exposed to the laser beam, if the sample has large particles, it scatters light at small angles, and vice versa in the case of smaller particles.
Laser diffraction also suffers a fair deal of drawbacks. The analysis needs a high degree of metadata and extensive preparation. If the sample under test is a wet sample, the dispersion unit has to use a liquid dispersant to disperse the sample, in order to subject it to the laser beam.
Further, increasing software applications that are providing required metadata on optical properties of samples and instruments based on the Fraunhofer approximation approach are expected to create huge opportunities to the laser diffraction technology over the forecast period.
Europe Region to Hold Significant Share
The European particle size analysis market is estimated to grow at a healthy rate over the forecast period. Significant factors supporting the growth are increasing investments in research and innovation centers and rising government programs and policies, which are motivating market vendors to invest in advancements in analyzing methods.
The high rate of development of new analyzing methods, equipment, and protocols in the region is boosting the European healthcare and chemical industries to increase advancements in particle size analysis methods.
The increasing government expenditure in the pharmaceutical industry to innovate cost-effective drugs is further estimated to develop a market for nanoparticle tracking analysis in the region.
Competitive Landscape
Being established in the market for a long time, the incumbents have great control over the existing distribution channels. The only place where the new entrants can compete with the giants is through the online retail market. Hence, new entrants often employ intense internet marketing for brand penetration.
Also, most of the manufacturing equipment used in the market are highly customized to derive adequate accuracy in the products that are needed for scientific procedures. Such installations often prove to be very costly, and at times, act as barriers to entry in the market studied.
Some key players include Malvern Panalytical Ltd and Horiba Ltd. Some key developments in the market are as follows:
Malvern Panalytical Ltd launched the Morphologi range of automated static imaging systems for particle characterization from Malvern Panalytical Morphology 4 and Morphologi 4-ID. It delivers substantial improvements in measurement speed, image definition, and the range of materials that can be successfully analyzed.
Agilent Technologies Inc. expanded SureGuide pooled CRISPR libraries for functional genomics, offering pooled libraries for CRISPR activation and interference, in order to accelerate disease research.
Reasons to Purchase this report:
– The market estimate (ME) sheet in Excel format
– Report customization as per the client’s requirements
– 3 months of analyst support
1 INTRODUCTION
1.1 Study Deliverables
1.2 Study Assumptions
1.3 Scope of the Study
2 RESEARCH METHODOLOGY
3 EXECUTIVE SUMMARY
4 MARKET DYNAMICS
4.1 Market Overview
4.2 Introduction to Market Drivers and Restraints
4.3 Market Drivers
4.3.1 Demand for Data Centers Driven by Cloud and HPC Applications among Others
4.3.2 Demand for High-performance and Low-Power Dram in Mobile Devices
4.4 Market Restraints
4.4.1 Storage Class Memory to Overcome the High Costs and Less Memory of Dram
4.5 Value Chain Analysis
4.6 Industry Attractiveness – Porters Five Forces Analysis
4.6.1 Threat of New Entrants
4.6.2 Bargaining Power of Buyers/Consumers
4.6.3 Bargaining Power of Suppliers
4.6.4 Threat of Substitute Products
4.6.5 Intensity of Competitive Rivalry
5 MARKET SEGMENTATION
5.1 By Technology
5.1.1 Taylor Dispersion Analysis
5.1.2 Dynamic Light Scattering
5.1.3 Nanoparticle Tracking Analysis
5.1.4 Resonant Mass Measurement
5.1.5 Laser Diffraction
5.1.6 Other Technologies
5.2 By Dispersion Type
5.2.1 Wet Particle
5.2.2 Dry Particle
5.2.3 Spray Particle
5.3 By End User
5.3.1 Chemicals
5.3.2 Food, Beverage, and Nutrition
5.3.3 Mining
5.3.4 Agriculture and Forestry
5.3.5 Pharmaceuticals
5.3.6 Energy
5.3.7 Other End Users
5.4 Geography
5.4.1 North America
5.4.2 Europe
5.4.3 Asia-Pacific
5.4.4 Latin America
5.4.5 Middle East & Africa
6 COMPETITIVE LANDSCAPE
6.1 Company Profiles
6.1.1 Agilent Technologies Inc.
6.1.2 Horiba Ltd.
6.1.3 Malvern Panalytical Ltd.
6.1.4 Beckman Coulter Inc.
6.1.5 Izon Science Limited
6.1.6 Microtrac Inc.
6.1.7 Shimadzu Corporation
6.1.8 Sympatec GmbH
6.1.9 Micromeritics Instruments Corporation
7 INVESTMENT ANALYSIS
8 MARKET OPPORTUNITIES AND FUTURE TRENDS
MARKET SEGMENTATION
By Technology
Taylor Dispersion Analysis
Dynamic Light Scattering
Nanoparticle Tracking Analysis
Resonant Mass Measurement
Laser Diffraction
Other Technologies
By Dispersion Type
Wet Particle
Dry Particle
Spray Particle
By End User
Chemicals
Food, Beverage, and Nutrition
Mining
Agriculture and Forestry
Pharmaceuticals
Energy
Other End Users
Geography
North America
Europe
Asia-Pacific
Latin America
Middle East & Africa