Liquid Crystal on Silicon Market - Global Industry Analysis, Growth, Forecast 2016 - 2023

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REPORT DESCRIPTION
Transparency Market Research Reports incorporated a definite business overview and investigation inclines on “Liquid Crystal
on Silicon (LCoS) Market - Global Industry Analysis, Size, Share, Growth, Trends and Forecast 2016 - 2023” This
report likewise incorporates more illumination about fundamental review of the business including definitions, requisitions and
worldwide business sector industry structure.
Liquid crystal on silicon (LCoS) is a reflective active matrix liquid crystal display. It is generally termed as micro-display because
of its miniature size that is built using liquid crystal layer on top of a silicon backplane. LCoS was initially developed for the
purpose of projection in televisions but it has wider applications. It is used for structured illumination, near eye displays,
wavelength selective switching and optical pulse shaping. The two major categories of LCoS displays are single-panel and threepanel. In a single-panel design, one display chip shows the green, blue and red components, one after another based on the
eyes of the observer to combine the three components. When each colour is presented, a colour wheel or a RGB LED array
brightens the display by red, blue or green light. An effect called colour breakup is seen when the frequency of colour fields get
lower than 540 Hz. Single-panel projectors require high-speed display components to develop all three colours during a single
frame time and are less expensive compared to three-panels. In a three-panel design, there is one display chip per colour, where
the images are combined optically. The white light is diverged into three components- red, green and blue, and then converged
back after modulation. In addition, the light is polarized by beam splitters.
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The LCoS technology is used in major products such as head-mounted display (HMD), projectors and head-up display (HUD).
Projectors are used in home theatre systems, educational and business purposes. HUDs are largely used for simulation and
training, and finds application in high-end cars and aircrafts. HMD products find use in sports activities, gaming, research,
aviation and military. The major application segments of LCoS, based on industry are consumer electronics, automotive,
aviation, military, medical and optical 3D measurement. Consumer electronics segment is the most attractive market followed
by the aviation sector. Advanced HUD and HMD panels are used in the aviation sector. HUDs are commonly used in the
automotive sector at a large scale.
The increasing demand for high resolution display is set to bolster the growth of the global LCoS market. In comparison to liquid
crystal display (LCD) and digital light processing (DLP), LCoS based products provide greater performance and higher quality.
LCoS ensures wider compatibility with a number of products and superiority in relation to competing technology. LCoS
technology is expensive and there are very few players in the market but in the coming years, the cost of technology is
expected to reduce, with the increase in competition in the global market.
North America dominates the global liquid crystal on silicon market, followed by Europe, Asia Pacific (APAC) and Rest of the
World (ROW) region. The market in APAC and ROW is expected to grow at a decent rate, with the increase in demand in the
consumer electronics and projectors market. The key participants in the global LCoS market are JVC Kenwood Corporation,
Himax Display Inc., 3M, Cannon Inc., Pioneer Corporation, LG Electronics Inc., Sony Corporation, Microvision Inc., Syndiant Inc.
and Holoeye Systems Inc.
This research report analyzes this market on the basis of its market segments, major geographies, and current
market trends. Geographies analyzed under this research report include
•
North America
•
Asia Pacific
•
Europe
•
Middle East and Africa
•
Latin America
This report provides comprehensive analysis of
•
Market growth drivers
•
Factors limiting market growth
•
Current market trends
•
Market structure
•
Market projections for upcoming years
This report is a complete study of current trends in the market, industry growth drivers, and restraints. It provides market
projections for the coming years. It includes analysis of recent developments in technology, Porter’s five force model analysis
and detailed profiles of top industry players. The report also includes a review of micro and macro factors essential for the
existing market players and new entrants along with detailed value chain analysis.
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Reasons for Buying this Report
•
This report provides pin-point analysis for changing competitive dynamics
•
It provides a forward looking perspective on different factors driving or restraining market growth
•
It provides a six-year forecast assessed on the basis of how the market is predicted to grow
•
It helps in understanding the key product segments and their future
•
It provides pin point analysis of changing competition dynamics and keeps you ahead of competitors
•
It helps in making informed business decisions by having complete insights of market and by making in-depth analysis of
market segments
•
It provides distinctive graphics and exemplified SWOT analysis of major market segments
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Liquid crystal on silicon (LCoS) is a reflective active matrix liquid crystal display. It is generally termed as micro-display because of its miniature size that is built using liquid crystal layer on top of a silicon backplane. LCoS was initially developed for the purpose of projection in televisions but it has wider applications. It is used for structured illumination, near eye displays, wavelength selective switching and optical pulse shaping. The two major categories of LCoS displays are single-panel and three-panel. In a single-panel design, one display chip shows the green, blue and red components, one after another based on the eyes of the observer to combine the three components. When each colour is presented, a colour wheel or a RGB LED array brightens the display by red, blue or green light. An effect called colour breakup is seen when the frequency of colour fields get lower than 540 Hz. Single-panel projectors require high-speed display components to develop all three colours during a single frame time and are less expensive compared to three-panels. In a three-panel design, there is one display chip per colour, where the images are combined optically. The white light is diverged into three components- red, green and blue, and then converged back after modulation. In addition, the light is polarized by beam splitters.