Semiconductor Stepper Systems Market – Demand for MEMs Sensors in the Automotive Industry, Fuelling the Demand

Albany, NY — (SBWIRE) — 02/20/2017 — Steppers are devices that are used for manufacturing integrated circuits (IC’s) which are similar in operation to slide projectors or photographic enlargers. Steppers comprise of an essential part in photolithography, (also known as optical lithography or UV lithography is used for micro-fabricating pattern of a thin film) which creates huge amounts of microscopic circuit elements on the surface of minute chips of silicon. Such chips comprise of the heart of the IC’s such as memory chips, and computer processors among others.

The market for semiconductor stepper systems is expected to witness a steady albeit a slow growth during the forecast period. Change in wafer sizes due to the reduction in the size of electronic devices is the major factor aiding in the growth of this market at present. Other key driving the semiconductor stepper systems market are inclusive of increasing usage of memory and logic IC’s which are widely used in computers, laptops, memory devices, storage and mobile devices and the rising markets for flip chips and advanced packaging.

Further, due to the reduction in node sizes, the semiconductor stepping systems market is witnessing the advent of semiconductor technologies which in turn, has affected the overall lithography process. Double patterning technique is a type of high resolution technique that increases the litho cost per function, thereby resulting in the increase of the overall cost of patterning. Thus, the increasing cost of litho functions is another key factor augmenting the growth of the overall semiconductor stepper systems market across the globe.

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The market has been classified on the basis of application into Micro-Electro-Mechanical Systems (MEMS), LED Devices and Advanced Packaging. The MEMS market was the largest market for semiconductor stepping devices and is expected to retain market dominance throughout the forecast period. MEMS find wide use across automotive, consumer electronics, medical, and defense segments among others for a variety of applications. Additionally, shifting preference towards vehicle automation such as in-car infotainment systems, navigation system and anti-lock braking systems (ABS) is fuelling the demand for MEMS sensors in the automotive industry, thereby fuelling the demand for semiconductor stepper systems market in this segment.

The global semiconductor stepper systems market has been bifurcated on the basis of regions into North America, Europe, Asia Pacific, Middle East and Africa and Latin America. Asia Pacific is was and will remain the market leader for semiconductor stepper systems throughout the forecast period with the key contributors being Japan, Taiwan and South Korea. Further, large presence of semiconductor foundries in China and Taiwan among others, such the Semiconductor Manufacturing International in China and Taiwan Semiconductor Manufacturing and United Microelectronics in Taiwan is also expected to stimulate the growth of the market during the forecast period of 2016 to 2024.

The global semiconductor stepper systems market is a consolidated market and only a handful number of players are controlling majority of the market at present. Since the semiconductor industry is prone to frequent technological changes, the manufacturers operating in this industry are engaged in extensive research and development activities in order to adopt new technologies and upgrade their systems. Further, frequent mergers and acquisitions, joint venture and partnerships, geographical expansion are some of the other key strategies adopted by these leading players to sustain in this market and to have a competitive advantage over their peers. Major players operating in the global semiconductor stepping systems market include Canon, Nikon, and ASML Holding among others. However companies like Leica Microsystems, SUSS Microtech, JEOL, Optical Associates and ZEISS also have a significant presence in the market. However, owing to significant growth potential of this market, several local players are trying to increase their presence and compete with the major players.

Biochemical Sensors Market – Agriculture, Nutrition and Healthcare Among the Major Application Areas

Albany, NY — (SBWIRE) — 02/20/2017 — Sensors are devices which are being used for either detection or measurement of any physical input which could be light, motion or pressure among others from the physical environment. Biochemical sensors are devices which has the capability of converting any sort of chemical quantity into electrical signals. Components which are required for biochemical sensor includes transducer, chemically sensitive layer and analyte molecule. The biosensors or biochemical sensors helps in detection of analyte which then combines a physiochemical detector with a biological component like microorganisms, enzymes and antibodies among others. Transducer transforms the signal formed by interaction of analyte with biological element, and further converts that signal into a measurable one. On the basis of product type, the global biochemical sensor market can be segmented into thermal, optical, piezoelectric and electro-chemical among others. Agriculture, nutrition and healthcare among others form the major application areas where biochemical sensors are used globally.

Global biochemical sensors market on the basis of geography is segmented into North America, Europe, Asia Pacific, Latin America, Middle East and Africa.

Medical or healthcare sector forms one of the major areas which helps in driving the growth of biochemical sensors globally. Rising health awareness of people worldwide along with increase in demand for biochemical sensing devices which are hand held form the major reasons which has contributed in the rising demand and growth of the global biochemical sensors market. Biochemical sensors are also extensively used in miniaturized form in different wearable devices which has also helped in the growth of biochemical sensors market globally. In addition to this stringent government norms for safety testing of foods in agriculture industry will further help the global biochemical sensor market to grow. Along with this, biochemical sensors are also used extensively for checking the presence of pesticides, insecticides and other harmful contaminants which in turn will also act as an important driver to positively push the growth of global biochemical sensor market. High costs are associated with the usage of biochemical sensors which acts as a major restraint of global biochemical sensor market further restricting the growth. Other Than this, lack of awareness among people regarding the applications of biochemical sensors along with huge research and development expenditure associated with the usage of biochemical sensors further negatively affects the market for biochemical sensors globally. Even though the commercialization of biochemical; sensors are slow still the rising demand post advancement in the medical sector will provide huge opportunities for the growth of global biochemical sensors market during the forecasted period. Silicon micro sensors and automotive biochemical sensor ae some of the other technologies in the biochemical sensors market which are experiencing high growth trends currently and are expected to further enhance in future.

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Geographically, it is North America which holds the major market share in the global biochemical sensor market. Increased government grants for enhancement of the healthcare sector along with rise in research and development expenditure can be contributed as some of the major reasons for the growth of biochemical sensor market in North America. Biochemical sensor market in Asia Pacific is growing at the fastest rate with huge demand being generated from countries like China, South Korea, India and Japan among others. Enhancement in healthcare infrastructure along with rising demand from agricultural sector is likely to increase the demand for biochemical sensors globally further helping the global biochemical sensor market to grow positively.

Some of the major players operating in the biochemical sensors market include Acon Laboratories Inc. (US), Bayer AG (Germany), Medtronic Plc. (Ireland), Biosensors Laboratories Incorporated (South Korea), Boston Scientific Corporation (US), LifeSensors Inc. (US), Nova Biomedical Corporation (US), Abbott Point of Care Inc. (US), Bio-Rad Laboratories Inc. (US) and Universal Biosensors Inc. (Australia) among others which are present in the market globally.

Automotive Semiconductors Market – Rising Regulations Regarding Safety and Emission Will Drive the Market

Albany, NY — (SBWIRE) — 02/20/2017 — Increasing safety systems, not only passive safety e.g. seat belts, but mainly by electronic such as air bags, anti-lock braking systems (ABS), electronic stability control (ECS), blind spot detection (BSD), adaptive cruise control (ACC) and lane change assist (LCA) among others. These all intelligent functions mentioned above require a semiconductor device to perform their function. The main function of a semiconductor is to conduct electricity easily in one direction among other more specific functions.

Regulations regarding safety and emission will drive the market for connected components and devices in the vehicle to ensure monitoring and reporting of vehicle emission complying to the regulations set by the government. They require increasingly powerful semiconductors to ensure that vehicles’ performance is in compliance. Thus the above reason in turn is helping the market for automotive semiconductors to grow during the forecasted period from 2016 – 2024.

Moreover vehicle standards such as New Car Assessment program (NCAP) that gives safety ratings to new vehicles manufactured as star-ratings, is boosting the car manufacturers to provide more and more electronic components to provide more safety and security systems for the vehicle. Obtaining the highest level of five star rating can act as a strong selling point for the vehicles. Its achievement relies on complex and sophisticated assisted driving systems that require significant semiconductor content for these systems to function.

The major drivers of automotive semiconductors market are growing numbers of electronic devices in a car to add passenger safety features and driver assistance systems. Even connected cars concept and other electronic devices present in the car that need to coordinate with the electronic control unit (ECU) are helping the growth of automotive semiconductors market during the forecasted period.

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For the purpose of detailed analysis, the global automotive semiconductor market can be segmented on the basis of vehicle type, component, application and geography. Based on vehicle type, the market can be bifurcated into passenger car, light commercial vehicle (LCV), heavy commercial vehicle (HCV) and hybrid vehicle. The passenger car segment can be further classified into compact and sub-compact vehicle, sedan, and SUV among others. On the other hand, various components used in automotive semiconductor includes processors, analog ICs, sensors, discrete power and memory. In automotive, different types of semiconductors also finds it application in telematics & infotainment, safety and powertrain. In addition, information regarding current market situation as well as future predictive growth trend of various above mentioned segments is also provided across different regions such as North America, Europe, Asia Pacific, Middle-East and Africa (MEA) and Latin America.

Based on component, the global semiconductor vehicle market is majorly driven by the discrete power segment during the forecast period from 2016 to 2024. Increasing demand for electrification of the major automobile applications such as powertrain and ABS among others is the most important factor anticipated to accelerate the demand of power components such as IGBT and MOSFET.

Again by application, telematics & infotainment segment held the largest market share in 2015. Increasing competition among various vehicle manufacturers to offer better comfort and convenience to their customers is encouraging different automobile manufacturers to use various semiconductor components for telematics and infotainment applications.

Geographically, Asia Pacific region is predicted to dominate the automotive semiconductor market during the forecast period from 2016 to 2024. Rapid technological advancement taking place in the automotive sector in Asia Pacific region in respect of increased safety, reduced fuel consumption and powertrain applications is the primary factor anticipated to drive the demand of semiconductors used in automotive.

Some of the major players operating in the automotive semiconductor market includes Infineon technologies (Germany), NXP Semiconductors N.V. (Netherlands.), Texas Instruments Inc. (U.S.), Toshiba Corporation (Japan.), Robert Bosch GmbH (Germany) and ON Semiconductor Corp. (U.S.) among others.

Semiconductor Photolithography Equipment Market – Increasing Number of Fabless Semiconductor Companies to Fuel the Demand

Albany, NY — (SBWIRE) — 02/20/2017 — There has been an increasing application of semiconductor photolithography equipment across the globe. Widespread use of semiconductor photolithography equipments for technological advancement of smart phones, tablets and computers has augmented the demand during the last couple of years. The semiconductor photolithography equipment market can be categorized on the basis of two segments; product category and geography. The product category segment of the semiconductor photolithography equipment includes advanced packaging, MEMS (Microelectromechanical systems) devices, and LED (Light Emitting Diode) devices. The amplified demand for high-definition, mid-sized, and small-sized LED panels, used in manufacturing of ultra-high definition (UHD) TVs, is expected to encourage market growth during the forecast period. In addition, emergence of advanced consumer products is expected to fuel the growth of the market in the coming years. The growing trends of miniaturization of semiconductor components and the increasing number of fabless semiconductor companies are also expected to fuel the demand for photolithography equipment during the forecast period.

With the growth of electronic device industry, the demand for semiconductor ICs (Integrated Circuit) for different applications, such as consumer electronic devices, communication devices, memory devices, and sensor devices, increases which in turn helps to drive the market for photolithography equipment. The increase in demand for semiconductor devices, especially ICs used in computers, storage, and memory devices, is expected to impel the growth of the semiconductor photolithography equipment market. Moreover, an oversupply of semiconductor ICs in 2015 and 2016 is expected to reduce the capital spending of semiconductor device manufacturers in 2016, which is anticipated to reduce the overall demand for lithography systems including photolithography equipments in the coming years.

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However, in spite of various advantages offered by semiconductor photolithography equipment, there are some restraining factors that inhibit the growth of the market. The major hindering factor behind the growth of this market is uncertain economic condition across different region.

Geographically, the semiconductor photolithography equipment market can be categorized into five regions; North America, Europe, Asia Pacific, Middle East and Africa and Latin America. As per recent trends it has been observed that various semiconductor photolithography equipment manufacturing companies are constantly engaged in research and development activities in order to develop and design their production of semiconductor photolithography equipment. The market for semiconductor photolithography equipment in Asia Pacific has witnessed rapid growth in the last few years and this trend is likely to be witnessed across various industries in the North America, Europe, and Middle East and Africa (MEA) and Latin America regions as well. In Asia Pacific, Taiwan, South Korea, and Japan are the key contributing countries for the growth of the market. The presence of a several prominent semiconductor foundries, such as Taiwan Semiconductor Manufacturing Co. (TSMC), Semiconductor Manufacturing International and United Microelectronics is propelling the demand for photolithography equipment in the region. The presence of dominant players in the mobile devices and consumer electronics market, such as Sony, Samsung, LG, Panasonic and Toshiba in the region is supporting the demand for semiconductor devices in Asia Pacific. The market in the North Americas is expected to grow moderately and maintain its market share in the global space till 2024, while market in Europe and Middle East and Africa (MEA) is growing at a comparatively lower rate due to the presence of low number of semiconductor device manufacturers in this region.

Some of the key players operating in the semiconductor photolithography equipment market are Applied Materials, SUSS Microtec, ASML, and Tokyo Electron, Nikon, Canon, NuFlare Technology, JEOL, Ultratech andVistec Semiconductor Systems among others. The top four players in the semiconductor photolithography equipment market accounts for a significant market share in different product category in 2016.

Semiconductor IP Market – Rising Trend of Internet of Things (IoT) Is Creating the Need for Semiconductor Intellectual Property

Albany, NY — (SBWIRE) — 02/20/2017 — Semiconductor intellectual Property (IP) is a reusable component of the cell, chipset or a logic layout design. The intellectual property cores can be owned by a party or licensed to another party. The ongoing technological development in the semiconductor industry is expected to drive the market during the forecast period.

The ongoing technological innovation is creating the demand for automation across all the industries such as automotive, telecommunication, manufacturing and construction among others. The rising concept of connected cards and connected devices is driving the market for semiconductor industries. Furthermore, the growing demand for internet of things (IoT) is creating the need for interconnected devices which involves the development of sophisticated controller units. Semiconductor IP is an integral part of smart devices and hence is expected to witness steady demand during the forecast period. Moreover, the major players are undergoing frequent mergers and acquisition in the semiconductor segment in order to develop innovative electronic devices to sustain with the competition. Moreover, the failing price of semiconductor components is further boosting the demand of semiconductor IPs globally. In addition, the semiconductors are also being used in the healthcare industry in order assist the doctors to monitor their patients remotely. Moreover, the IPs is used as part of sensors units to perform several functions like temperature, humidity, pressure and heart rate sensing. The data collected can then be shared with the supervisors in order to understand the patient conditions.

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However, the market is expected to witness a fall in the growth due to the technology shift that is expected to restraint the market during the forecast period. There is opportunity in the Asia Pacific market as the developing economies like India and China are increasing the implementation of new technologies as a part of urbanization plan. This factor is expected to the push the market for Semiconductors IPs in future.

The market can be segmented into form factor, design architecture, processor type, application and by geography. By form factor, the semiconductor IP market can be divided into integrated circuit IP and System on Chip (SoC) IP. In terms of design architecture, the market can be segregated into IP nature which includes hard IP core and soft IP core, by customization which includes customizable IP and standard IP core, and processor design which can be further sub-segmented into general processor IP and embedded processor IP. By processor type, the market can be categorized into digital signal processor IP and microprocessor core IP. The semiconductor IP find their application in several areas such as telecommunication infrastructure, computer and peripherals, security, networking, home entertainment, automotive and mobiles and tables among others.

By region, the semiconductor IP market can be segmented into five regions such as North America, Europe, Asia Pacific, Middle East and Africa and Latin America. North America is expected to witness slow growth as they are the early adapters of this technology. The demand for semiconductor IP in Europe is expected to be steady as the region is witnessing demand in the form of constant up gradation of their transportation network with the implementation of smart transportation in countries like Germany and the U.K. However, the Asia Pacific region is expected to witness the fastest growth due to the presence of developing regions like India which is witness robust industrialization and urbanization. Moreover, the region is the base for manufacturing for several major players due to the availability of the cheap labor.

The semiconductor IP market is witnessing strong competition from the major players. The leading players in the market include Mentor Graphics, Lattice Semiconductor, ARM Holdings, PLC, Cava, Inc., Sonics, Inc., Vivante Corporation, Renesas Electronic Corporation, Atmel Corporation and Imagination Technologies among other players.

‘Historic’ day as last FARC-EP members gather to turn in arms – UN mission in Colombia

20 February 2017 – About 300 members of the Revolutionary Armed Forces of Colombia-People’s Army (FARC-EP) today arrived in central Colombia’s Agua Bonita zone, bringing the number to close to 6,900, to lay down their arms under United Nations verification, and to begin a transition to social, economic and political life, the UN Mission in the country said today.

&#8220In the past 19 days they rode cars, buses, boats or walked some 8,700 kilometres […] across the country, accompanied by over 860 [members] of the tripartite Monitoring and Verification Mechanism (MVM),&#8221 read a news release from the UN Mission in Colombia.

The Mission’s Chief Observer and MVM coordinator, Major General Javier Pérez Aquino, called the day &#8220historic.&#8221

&#8220The UN Mission in Colombia and the MVM consider that the FARC-EP’s decision to move into the zones &#8211 in spite of the limited logistics in the majority of them &#8211 very positive,&#8221 he said.

&#8220This decision considerably reduces the possibility of armed contact […] and we also hope that their presence will accelerate the construction works in these camps, creating the appropriate conditions to continue with the process that will lead to their reinsertion into the social, economic and political life,&#8221 he added.

The Chief Observer also noted that despite limited logistics, the deadline for the completion of the laying down of arms &#8211 180 days after the Final Agreement, which came into force on 1 December &#8211 stands.

Working hand-in-hand so that ‚our children and grandchildren live in a conflict-free country’

In Colombia’s capital, Bogotá, as well as at eight regional and 26 local sites, FARC-EP and Government members, along with 350 UN observers, are working together to verify the parties’ commitments towards the ceasefire and cessation of hostilities.

&#8220We work together to implement the Final Agreement and I feel hopeful that this process will lead to a country with more social justice,&#8221 said 45-year-old Esperanza Fajardo, who jointed FARC-EP in the 1990’s, now working with Government and UN Mission counterparts.

Mayor Alejandro Cruz, from the Government, echoed: &#8220I feel very committed to this process because I want our children and grandchildren to live in a conflict-free country.&#8221

Mr. Cruz was twice injured in combat with the FARC-EP and bears a large scar on his chest while Ms. Fajardo joined the rebel group to escape the killings of left-wing Unión Patriotica political affiliates.

In early October 2016, Colombian voters narrowly rejected the historic peace accord between the Government and the FARC-EP. That deal led to a cessation of hostilities and agreements on key issues such as political participation, land rights, illicit drugs and victims’ rights and transitional justice. The two sides signed a new agreement in late November.

2017 Lady Gaga Tickets for Upcoming Joanne World Tour: TicketProcess.com Offers Lady Gaga Tickets at Pepsi Center in Denver, Colorado For December 12, 2017 Concert.

Lady Gaga will be at Pepsi Center in Denver, Colorado on December 12, 2017. TicketProcess has an abundance of cheap Lady Gaga tickets that are now on sale! Fans can purchase tickets online or call toll free to order by phone.

Lady Gaga will play a concert at the Pepsi Center in Denver, Colorado on the evening of November 12 as part of her 2017 Joanne World Tour. TicketProcess.com is proud to announce that they are the first to the party in terms of offering affordable tickets to all fans now.

The unofficial “First Lady of Pop” officially re-claimed her unofficial spot at the top of the pop music charts with a gigantic performance during halftime of Super Bowl LI on the first Sunday of February. It took place during the midway break of a football game featuring the New England Patriots and the Atlanta Falcons.

The Falcons were up by an abundance of points when the 30-year-old New York City-native took to the stage. By the time the dust settled and the confetti fell from the rafters, the New England Patriots and quarterback Tom Brady cemented their fifth Championship.

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By the time Gaga was done with her romp around the stage constructed at NRG Stadium in Houston, millions of fans around the world were tweeting and posting on social media that it was the best Super Bowl performance ever. There is no current protocol for determining whether or not that proclamation is correct, but it is safe to say that Gaga absolutely dominated.

Now comes the time where she will be able to perform gigantic live concerts in front of sold-out audiences around North America. The December 12 show in Denver at the Pepsi Center will be the second-to-last show out of 33 that will unfold in the United States and Canada. For all Mid-America fans interested in attending this Denver Lady Gaga 2017 show, TicketProcess.com is the place to go.

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TicketProcess.com has been a secondary ticket exchange for both brokers and consumers for some time now. By offering a large selection of inventory to an array of the most exclusive sports, live concerts, theater events and other live entertainment, they have established their place as a reputable source of quality, guaranteed tickets for fans around the United States and beyond.

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*TicketProcess.com is not associated or otherwise connected in any form with the college or professional organizations, teams, artists, bands or other performers featured on this site.

Additionally, TicketProcess.com has no affiliation with any of the venues listed on the site. Names and titles used in this press release are solely for descriptive purposes and do not imply, suggest or indicate that any type of endorsement or partnership is in place.

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Lady GaGa Tickets For Upcoming 2017 Joanne World Tour: TicketProcess.com Offers Lady GaGa Tickets at Vivint Smart Home Arena in Salt Lake City, Utah For December 14, 2017 Concert.

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When Lady Gaga speaks, fans around the globe listen, and millions were recently treated to the news that she will play over 30 shows in the United States and Canada throughout 2017 on a tour that will conclude in Salt Lake City on December 14. Find tickets now at TicketProcess.com.

Gaga is on top of the pop music world following her performance during halftime of this year’s Super Bowl. She has arguably been on the top of the pop music world for the last six years, but she reaffirmed that notion with a gigantic display of acrobatics, choreography and singing in front of a sold-out audience at NRG Stadium in Houston.

Halftime performers during the Super Bowl have recently used the mammoth stage as a launching pad for a gigantic tour. Gaga did just that, naming the tour after her most recently released studio album, Joanne.

The album came in October of last year, immediately shooting to the top of the Billboard pop music charts. It has done well overseas, as many Gaga albums have. She will play in South America and Europe between two large North American runs.

As of now, the Utah show is the conclusion of this tour, although artists of this scope and popularity have been known to add tour dates to tours. Livint Smart Home Arena originally opened to the public in May, 1990. It was built to be the permanent home of the NBA’s Utah Jazz, and it is also the home court, field and ice for a small handful of other professional squads.

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About TicketProcess.com

TicketProcess.com has been a secondary ticket exchange for both brokers and consumers for some time now. By offering a large selection of inventory to an array of the most exclusive sports, live concerts, theater events and other live entertainment, they have established their place as a reputable source of quality, guaranteed tickets for fans around the United States and beyond.

Seven-days-a-week customer service combined with a 100% satisfaction guarantee has proved to be a simple yet effective strategy for the constantly growing online secondary ticket market. All fans of live entertainment are openly welcome to visit the easily accessible site and purchase their tickets with the confidence that comes with a proven track record.

*TicketProcess.com is not associated or otherwise connected in any form with the college or professional organizations, teams, artists, bands or other performers featured on this site.

Additionally, TicketProcess.com has no affiliation with any of the venues listed on the site. Names and titles used in this press release are solely for descriptive purposes and do not imply, suggest or indicate that any type of endorsement or partnership is in place.

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Liquid Lenses Market – Finding Immense Application for Reading Distances

Albany, NY — (SBWIRE) — 02/20/2017 — Liquid lenses are used to create infinitely variable lenses with the help of one or more fluids. An infinitely variable lens is created without the movement of any parts by controlling the surface of the fluid. Liquid lens can be categorized into two types such as reflective and transmissive. Such types of liquid lenses are very different from liquid formed lenses, which are created by placing an epoxy or a drop of plastic on a surface and then left to harden into the shape of a lens.

Reflective liquid lenses are variable mirrors, which are used in reflector telescopes instead of traditional glass mirrors. When a fluid container is rotated, the centripetal force creates a reflective concavity, which is highly suitable for telescopic applications. Transmissive liquid lenses uses two unmixable fluids, each having different refractive index. The different refractive index allows the creation of variable focus lenses with high optical quality of 10 microns. Among the two fluids, one is an electrically conductive aqueous solution and the other is a non-conducting oil. The two fluids are stored in a small tube with lucid end caps. One of the caps and the tube’s interior are coated with hydrophobic material, which allows the aqueous solution to form a shape of hemispherical lens on the opposite side of the tube. In order to control the shape of the lens and decrease water repellency, dc voltage is applied across its coating and this process is known as electrowetting.

The module of a liquid lens is an electronically controllable variable focus system. Liquid lenses makes the use of two iso-density liquids, water as a conductor and oil as an insulator. The change in the voltage leads to the variation in the curvature of two liquids, which changes the focal length of the installed optical lens. The major advantages and characteristics of liquid lenses are its ruggedness, better optical quality, lesser power consumption, small in size and swift response times. In addition, liquid lens ensures the smooth installation, maintenance and setup by eliminating the requirement of opening the reader and touching the lens. It has immense application for reading distances, which changes part to part and has extraordinary swift response times compared to other auto focus equipment.

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Liquid lens technology is highly preferred over conventional lens technology. Liquid lens does not have any movable parts and has an optimal power consumption level. Unlike the liquid lens, conventional lens technology requires mechanical adjustments in order to focus or enlarge the images, being captured. In addition, liquid lens is 85% smaller in size compared to typical camera lenses and therefore it finds immense application in mobile and optical devices, where weight and size savings are extremely vital.

Increasing application of liquid lenses in cameras, telescopes, mobile and optical devices is the major factor driving the growth of liquid lens market, globally. In addition, rising demand for high performance and energy-efficient lens is a crucial driver for the liquid lens market. Moreover, the rising popularity of photography and demand for pro-HD cameras, which are required for extreme sports are also a vital driving factor influencing the growth of liquid lens market. However, high cost associated with the manufacturing of liquid lens is set to inhibit the growth of this market.

North America is considered to be the largest liquid lens market, globally, followed by Europe, Asia Pacific, Middle East and Africa, and Latin America. Increasing application of liquid lens in photography, videography, scientific, medical, mobile and optical instruments are the major factors driving the growth of liquid lens market in North America. Some of the key players in the liquid lens market includes Cognex Corporation (U.S.), Invenios (U.S.), Varioptic (France), Optilux (U.S.) and Imagine Optics, Inc. (U.S.) among others.

Flexible Substrates Market – Lighter as Compared to Glass and Silicon Based Electronic Devices.

Albany, NY — (SBWIRE) — 02/20/2017 — Flexible substrates are an underlying layer or substance. It is used in flexible electronics, which is a technology of assembling electronic circuits, where electronic devices are mounted on these flexible substrates.

Globally, a key factor that is driving the expansion of the flexible substrates market is the surging demand for printed electronic technologies. These printed electronic technologies are used to build electrical devices on numerous substrates. Additionally, the rising demand for Organic Light Emitting Diodes is fuelling the growth of the global flexible substrates market. The OLEDs are made up of carbon-based organic materials which emits light when electricity is applied. The main functions of OLEDs are to make efficient and beautiful displays, and to create white light panels for lighting. Further, the increasing demand for the flexible medical devices and the growing adoption of organic electronics indicate potential growth for the global flexible substrates market during the forecasted period.

Benefits such as improved performance, lower price, and reliability is expected to boost the market for flexible substrates. Moreover, flexible electronic devices, which uses flexible substrates as an intermediate material, such as solar cells, sensor, lighting, and display logic/memory are unbreakable and lighter as compared to glass and silicon based electronic devices. These above mentioned advantages increases demand for electronic devices which in turn fuels the growth of the global flexible substrates market.

Also, the continuous development across the display industry in terms of products and technology is expected to give a boost to the demand for 3D-flexible substrates. The improvement of electronic devices offering flexible form aiding versatile, lightweight and robust application usage without significant tradeoff of the performance of the device is expected to upsurge the demand of flexible substrates.

Despite of the numerous advantages of flexible substrates, there are certain factors that restrains the growth of this market. The major among them is the stringent regulations which tends to hold back growth of the market for flexible substrates.

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The global flexible substrates market is segmented on the basis of types, materials used, applications, and geography.

By types the global flexible substrates market is sub-segmented as ultra-light and ultra-thin. By materials used the market for flexible substrates is categorized as stainless steel, plastic, and glass. On the basis of applications the global flexible substrates market is sub-divided as power, utility, energy, defense & aerospace sector, consumer electronics, medical & healthcare, and automotive. Finally, on the basis of geography the global flexible substrates market is characterized as North America, Asia-Pacific (APAC), Europe, Middle East & Africa (MEA), and Latin America.

By regions, North America is expected to dominate the market for flexible substrates during the forecasted period. This is because of the advanced electronic technologies in this part of the world. The U.S controls a prominent market share for flexible substrates, followed by Canada in North America. In Europe, Italy, Spain, France, U.K, and Germany holds significant share of the flexible substrates market. The market for flexible substrates in Asia is expected to witness growth during the forecasted period. This is primarily because of the construction of manufacturing facilities by a large number of companies in this region. Lesser wages for skilled labor in emerging economies such as China and India is major factor attracting the attention of these companies. Within Asia, India, China and Japan are expected to be the fastest growing markets for flexible substrates.

The key players in the global flexible substrates market includes Griff Paper and Film (U.S), Polyonics, Inc. (U.S), Porex Corporation (U.S), Rogers Corporation (U.S), Corning, Inc. (U.S), AzCoat, Inc. (U.S), BenQ Materials Corporation (Taiwan), Arlon Graphics LLC (U.S), 3M Company (U.S), American Semiconductor, Inc. (U.S), SCHOTT North America, Inc.(U.S), Heraeus Materials Technology GmbH & Co. KG (Germany), and E.I. DuPont de Nemours and Company (U.S).