Monday, 20 April 2020

Linear Motor Market Detailed Analytical Overview by 2027

Transparency Market Research delivers key insights on the global linear motor market. In terms of revenue, the global linear motor market is estimated to expand at a CAGR of 5.5% during the forecast period, owing to numerous factors, regarding which TMR offers thorough insights and forecasts in its report on the global linear motor market.
Linear motors are defined as electric motors that generate the motion in a straight line, unlike the rotational motion. In a linear motor, the stator is unrolled and spread out flat, while the rotor moves past it in a straight line. Linear motors are used in all designs of machines that require linear motion, including overhead-travelling cranes and beltless conveyors used for moving sheet metals.
Linear motors are employed in a wide range of applications in industries such as manufacturing, semiconductor, food & beverages, textile, healthcare, and printing. Linear motors come in three designs: flat-bed, U-channel, and cylindrical. In line with the growth of the global automation industry, manufacturing and process plant operators are adopting advanced technologies for processes and operations focused on achieving improved product efficiency, reduced labor, and decreased operational costs. Linear motor systems offer a reliable and efficient solution to achieve high efficiency and hence, they are increasingly being adopted in applications ranging from simple point-to-point systems to sophisticated or complex automation systems.
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Linear Motor Market: Dynamics
Servo Components and Systems Ltd has designed a new direct drive called Green Drive Actuator (a combination of speed and rugged operations), which can control the ball screw and provide increased reliability to direct drive linear motors. The actuator operates at a speed of up to 5 m/s, with a positional reliability of 50 microns, which makes it suitable for several industrial applications.
Copley Controls Corp provides a range of AC- and DC-powered digital drives for use in servo and stepper motors called New Plus Servo Drives. Safe torque-off capability of these drives eliminates the complex wiring used in traditional safety applications. New Plus Servo Drives use metal enclosures that ensure the maximum level of noise immunity.
Due to technological innovations in direct drives, the demand for linear motors is increasing in various industrial applications. This, in turn, is boosting the global linear motor market. The impact of this driver is expected to remain high during the forecast period
One of the major issues associated with linear motors is their high cost and the complex design of electromagnets used in them. Generally, more powerful electromagnets are required to lift and move one magnet over another, which consumes a large amount of electric power. Linear motors use superconducting magnets to overcome this issue.
As for dynamic applications, linear motors are energy efficient and they can attain high speed. For this purpose, superconducting magnets are used to attain low temperatures, which reduces the power consumption, thereby preventing thermal wear and tear of motors. Use of electromagnets with such complex designs is restraining the global linear motor market. Thus, high costs and complex designs of electromagnets used in linear motors are major restraining factors for the global linear motor market. The impact of this driver is expected to remain high during the forecast period.
Linear Motor Market: Prominent Regions
In terms of revenue, Asia Pacific dominates the global linear motor market. The market in the region is estimated to expand at the maximum CAGR of 6.32% during the forecast period and reach more than US$ 1 Bn by 2027. This is attributable to the fact that players operating in end-user industries in the region such as electronics & assembly, semiconductor, and machine tools directly contact OEMs for their specific requirements for linear motors. Increasing adoption of linear motors in Asia Pacific is expected to offer lucrative opportunities to vendors, especially in the electronics & assembly industry during the forecast period. In terms of revenue, the North America market is expected to expand at a sluggish rate during the forecast period. This is due to the presence of various manufacturing industries in the region, which use robots based on linear motors for product manufacture. Other regions such as Europe witness presence of various industries that require linear motors such as automotive, manufacturing, machine tools (metal forming & metal cutting), and packaging & labeling.

Next Generation Ballistic Protection Armor Market Insights and Growth 2025

The next generation ballistic protection armor market is one of the major markets globally with a huge growth potential. Increasing terrorism attacks and growing violence globally are some of the major factor boosting the demand of next generation ballistic protection armor market in the coming years. 
Based on type, the next generation ballistic protection armor market is segmented into personal protective equipment (PPE) and vehicle armor. Among various types, in 2016, the personal protective equipment (PPE) segment dominated the next generation ballistic protection armor market and expected to be the same during the forecast period of 2017 – 2025. Personal protective equipment (PPE) is further be segmented into protective headgear, hard armor and soft armor. Soft body armor is mainly used for regular bullet where as hard armor, which is rigid body armor, is used in high risk situations by combat soldiers and police tactical units. Vehicle armor states to the armor plating mainly used in military vehicles to survive the impact of bullets, shrapnel and missiles protecting the person inside from the enemy attack. 
Based on material types, the next generation ballistic protection armor market is segmented into fiber, glass, kevlar, lexan and others. Among various end user, in 2016, the kevlar segment dominated the next generation ballistic protection armor market followed by fiber and expected to be the same during the forecast period of 2017 – 2025. Technological advancement to improve the survivability of soldier is one of the key factor fueling the demand of kevlar segment in next generation ballistic protection armor market during the forecast period. 
Based on application, the next generation ballistic protection armor market is segmented into defense, commercial and homeland security. Among various end user, in 2016, the defense segment dominated the next generation ballistic protection armor market followed by commercial and expected to be the same during the forecast period of 2017 – 2025. External and internal  security threats and commercial security awareness are some of the key factor fueling the market for the next generation ballistic protection armor. 
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The Asia-Pacific region is anticipated to be the key growth area for next generation ballistic protection armor in the coming years. India, China, Japan, Thailand, Malaysia, South Korea and Singapore all have next generation ballistic protection armor replacements in the coming years. 
By geography, the next generation ballistic protection armor market has been segmented into five regions namely North America, Asia-Pacific, Europe, Middle East and Africa and Latin America. In 2016, North America is expected to be the major market followed by Europe and estimated to be the same during the forecast period of 2017 – 2025. Increase in the external and internal threats, rise in the demand to armor in commercial purpose and pressure to retain the super power are some of the major factor boosting the demand of the next generation ballistic protection armor market in North America. Europe holds the second largest market for the next generation ballistic protection armor market.
Continuous terror threats as well as procurement of armored vehicles are some of the major factors driving the market in Europe. Asia Pacific is expected to grow at a high CAGR during the forecast period of 2017 – 2025. Increase in the terrorist activities, demand for lighter body armor, increase in the defense budget and Soldier Modernization Programs are some of the major factor boosting the demand of next generation ballistic protection armor market in Asia Pacific. China is expected to be the major market in Asia Pacific and expected to grow at a healthy rate during the forecast period. Middle East and Africa is anticipated to grow at a healthy rate during the forecast period due to rise in the demand of personal protective equipment (PPE) and vehicle armor in countries such as Saudi Arabia and U.A.E. among others. 

Extreme Ultraviolet Lithography (EUVL) Market Prophesied to Grow at a Faster Pace by 2026

According to a new market research report titled ‘Extreme Ultraviolet Lithography Market - Global Industry Analysis, Size, Share, Growth, Trends, and Forecast, 2018–2026,’ published by Transparency Market Research, the global extreme ultraviolet lithography market is expected to reach value of US$ 3,807.5 Mn by 2026, expanding at a CAGR of 26.8% from 2018 to 2026.
According to the report, the global market is expected to be influenced by a range of macroeconomic and market-specific factors during the forecast period. In terms of demand, Asia Pacific is projected to lead the global market, with the market in the region expanding at a CAGR of 28.6% between 2018 and 2026. Advancements in the miniaturization of electronic devices and reduced number of masking layers are anticipated to significantly drive the market during the forecast period.
Growing adoption of miniaturization to drive the global extreme ultraviolet lithography market
The global extreme ultraviolet lithography is projected to expand at a significant growth rate during the forecast period, due to growing adoption of miniaturization and sophistication of electronic circuit devices. The cutting-edge EUV lithography system enables customers to manufacture smaller, more rapid, and more powerful chips, giving rise to the demand for extreme ultraviolet lithography.
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Also, the conventional argon fluoride (ArF) immersion technology requires expensive multi-patterning mask sets. This technology needs up to four masks to create a silicon wafer layer, while the EUV lithography technology requires only a single mask to create the layer. This factor is likely to augment the extreme ultraviolet lithography market in the next few years.
Global Extreme Ultraviolet Lithography Market: Scope of Report
The global extreme ultraviolet lithography market has been broadly segmented based on light source, end-use, and region. In terms of light source, the market has been segmented into laser-produced plasma, gas discharge, and vacuum sparks. Among these, the laser-produced plasma segment holds a significant share of the market.
The segment is anticipated to expand at a CAGR of 27.4% during the forecast period. Based on end-use, the global extreme ultraviolet lithography market has been classified into memory, foundry, and integrated device manufacturers (IDMs). Among these, the memory segment held a prominent i.e. 46.9% share of the global market in 2017, followed by the foundry segment. In terms of region, the global extreme ultraviolet lithography market has been segmented into North America, Europe, Asia Pacific, Middle East & Africa, and South America.
In terms of revenue, Asia Pacific held a leading share of the global market in 2017. The market in the region is anticipated to expand at a CAGR of 28.6% during the forecast period. Presence of a large number of semiconductor companies in the region has led to rise in the adoption of extreme ultraviolet lithography in Asia Pacific.
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In terms of revenue, South Korea holds a major share of the extreme ultraviolet lithography market in Asia Pacific, due to high usage of semiconductor devices such as memories in the country. The country is followed by Taiwan. Moreover, in terms of revenue, the market in Japan is anticipated to expand at a significant CAGR during the forecast period, due to growing semiconductor industry in the country.
Global Extreme Ultraviolet Lithography Market: Competition Scenario
The research study includes profiles of leading companies operating in the global extreme ultraviolet lithography market. Market players have been profiled in terms of attributes such as company overview, financial overview, business strategies, and recent developments. Currently, only one player i.e. ASML Holding N.V. operates in the global EUVL market. However, in the next few years, companies such as Intel Corporation, Samsung Electronics Co., Ltd., Taiwan Semiconductor Manufacturing Company Limited (TSMC), Canon, Inc., Nikon Corporation, and Carl Zeiss AG are expected to invest in the market.

Micro Power Relay Market to Gain a Stronghold by 2027

  • Micro power relays is a smaller version of standard relays. Micro power relays have inbuilt small resistors that protect electric devices from high voltage spikes
  • Micro power relays are small in size and they receive power from a battery source, due to which they are largely used in small-sized electric devices. Moreover, these relays are light in weight and durable. They offer reliable performance.
  • Micro power relays are used in applications such as head lamp controls, electric appliances, starter motors, and radiator fans
  • Micro power relays are used in various sectors such as automotive, consumer goods, electrical & electronics (E&E), and telecommunications
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Rise in Demand for Micro Power Relays in Automotive Sector

  • Automotive has emerged as an attractive sector for investments by organizations across the globe. In this sector, micro power relays are significantly used in head lamp controls, radiator fans, starter motors, interior lights, sun roofs, seat controls, and wiper controls
  • Micro power relays are largely used in automobile applications, as they are light in weight, small in size, and resistant to heat, moisture, and vibrations. They are capable to carry high power.
  • Furthermore, the demand for automobile is increasing among end-users across the globe, owing to technological advancements and integration of multiple safety features, for which micro power relays are required. Hence, the demand for micro power relays is increasing in the automotive sector.
  • Thus, increase in the demand for automobiles among end-users is expected to drive the global micro power relay market during the forecast period

Electricals & Electronics Segment to Witness Lucrative Opportunities

  • Based on end-use industry, the global micro power relay market can be segmented into automotive, electricals & electronics, telecommunications, and others.
  • Micro power relays are significantly used in electric appliances to control electric loads, as they offer high performance and are capable to withstand high power.
  • Hence, rise in the demand for micro power relays for use in electric and electronic applications is anticipated to drive the global micro power relay market during the forecast period.
North America to Lead Global Market
  • In terms of region, the global micro power relay market can be divided into North America, Europe, Asia Pacific, Latin America, and Middle East & Africa
  • Asia Pacific is anticipated to dominate the global micro power relay market throughout the forecast period, owing to increase in automation and ongoing technological advancements in the semiconductor industry in the region
  • The micro power relay market in North America and Europe is expected to expand at a substantial rate during the forecast period. However, the market in Latin America and Middle East & Africa is estimated to expand at a moderate rate during the forecast period.

Piezoelectric Positioners Market Gain Impetus due to the Growing Demand over 2027

  • The global piezoelectric positioners market has witnessed significant growth over the last few years and the trend is expected to continue throughout the forecast period
  • Piezoelectricity is a property of specific classes of crystalline materials. This piezoelectricity is similar to electrostriction, which is a property of all dielectric materials. Piezoelectricity exhibits various mechanisms when exposed to an electric field.
  • Typically, the electrostrictive impact is low and the course of this little change in geometry does not alter if the course of the electric field is reversed. As opposed to this condition, piezoelectric materials exhibit an inversion toward geometrical alter when the course of the electrical field is reversed.
  • Commercially, piezoelectric positioners are largely applied in the fabrication industry for the development of components such as transducers, actuators, and acoustic wave devices
  • Piezoelectric positioners are highly popular, due to advantages associated with them such as high compatibility, unlimited resolution, operation at cryogenic temperatures, quick expansion, generation of a large amount of force, and absence of magnetic fields.
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Rising Demand for Precise Control in Nano Positioning Applications
  • Ultra-high precision latitudinal positioning of objects is of prime importance in the emerging field of nanotechnology. Precise motion control is extremely critical when it comes to nano positioning applications including microlithography, bio-nanotechnology, nanoimprinting, optical alignment, and semiconductor test and measurement.
  • Piezo stages are the highest-rated mechanisms for nano positioning, due to their advanced characteristics and benefits associated with them such as high scanning speed, ultra-compact translation stages, high reliability, and high resolution capabilities
  • Demand for precise control is significantly rising in nano positioning applications in several industry verticals, which is influencing manufacturers of piezoelectric positioners to introduce more advanced products in order to meet end-use requirements.
  • This, in turn, is likely to create new growth opportunities for the global piezoelectric positioners market in the next few years.

Semiconductor Wafer Cleaning Equipment Market Higher Mortality Rates by 2027

The top three players in the global semiconductor wafer cleaning equipment market are Lam Research Corporation, Tokyo Electron Limited, and SCREEN Holdings Co. Ltd., states Transparency Market Research (TMR) in a research report. In 2018, these companies held a collective share of 87.7%. The leading companies operating in the global market for semiconductor wafer cleaning equipment are incessantly focusing on activities relating to research and development to keep pace with the constantly evolving semiconductor industry.
The market is likely to witness a significantly high competition over the years ahead. The leading vendors are likely to get into less mergers and acquisitions keeping in mind the consolidated nature of the market. On the other hand, in order to give rise to lucrative opportunities in the future, the players are likely to extremely focus on research and development activities.
According to a TMR analyst, “The global market for semiconductor wafer cleaning equipment is projected to rise at a 7.7% CAGR from 2019 to 2027. In 2019, rising from a valuation of US$ 5.11 bn, the market is likely to be of worth US$ 7.28 bn by the end of 2027.” Based on equipment, the market was led by the rotary wafer etching systems segment in 2018 owing to the rising use of wafer cleaning and processing devices in the production of several smart gadgets. Region-wise, the global market for semiconductor wafer cleaning equipment is likely to be reigned by Asia Pacific over the course of the forecast period, closely trailed by North America. The growth of the market in these regions can be attributed to the growing demand for consumer electronic appliances.
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Market to Benefit from Proliferating Demand for Single Wafer Processing
One of the center advocates of minifab operations is the utilization of single wafer preparing. Administrators are moving in huge numbers towards the minifab, which permits the diminishment of process durations for a great deal of procedures. It makes utilization of hydrogen fluoride and ozonized water in its use of single turn preparing innovation to do as such, making single wafer processing the best driver for the worldwide semiconductor wafer cleaning equipment market.
The worldwide semiconductor wafer cleaning equipment market is additionally finding a strong pace of advancement through the blasting demand for printed gadgets. This section of the semiconductors industry is making waves as far as advancement endeavors and demand because of its predominance more than a few sorts of traditional gadgets in various industry verticals. This is likewise making a stunning volume of interest for semiconductor wafer cleaning equipment over the world.
Players to Face Difficulties Because of Cost Related Issues
The worldwide semiconductor wafer cleaning equipment market is as yet an issue for a considerable measure of new contestants and additionally little and even medium-sized players to extend their part in it. The substantial cost of foundation is the main issue in charge of a lower generation volume and player enthusiasm, as putting forward in the worldwide semiconductor wafer cleaning equipment market requires a huge measure of beginning speculation, as well as support, and innovative work endeavors. This is a particularly high need worry in rising economies where players may essentially not have the capacity to bear to manage themselves in the market.
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Speedier improvement is the place a considerable lot of the main players in the worldwide semiconductor wafer cleaning equipment market are looking to for answers, and many of them have discovered a few. One of the main elements anticipated that would acquire more open doors for the players in this market is the presentation of new predominant materials.

Surface Acoustic Wave (SAW) Resonator Market to Make Great Impact in near Future by 2019-2027

  • surface acoustic wave is an acoustic wave that travels along the surface of an elastic material with an amplitude that typically declines exponentially with depth in the material. For electronic circuits, surface acoustic waves are typically used in devices called SAW systems. SAW systems are used as filters, oscillators, transformers, and the devices based on acoustic wave transduction. By using piezoelectric materials, transduction from electric energy to mechanical energy is achieved.
  • The resonance frequency and the delay line of SAW devices depend on properties of materials forming the device.
Key Drivers and Restraints of Global Surface Acoustic Wave (SAW) Resonator Market
  • Growing concerns about security and surveillance and increasing demand for temperature sensors based on surface acoustic waves (SAW) across various industries led by their accuracy, wide temperature-sensing range, quick response, low cost, repeatability, and microelectromechanical sensor (MEMS) technology are some of the major factors fueling the global surface acoustic wave (SAW) resonator market
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Growing adoption of surface acoustic wave resonators in various industries and increasing demand for acoustic wave sensors for use in security and surveillance in sectors such as industrial, automotive, military, and healthcare are a few other factors driving the global market
  • SAW resonators are used in several of the same applications wherein quartz crystals are used, as they can operate at a high frequency. They are often used in radio transmitters in which tunability is not required.
  • Surface acoustic wave (SAW) resonators represent some of the most prominent acoustic devices used for chemical sensing applications. Furthermore, as their frequency ranges from several hundred megahertz to gigahertz, they can change frequency quickly, due to exceptionally small mass loads. These devices are highly efficient due to their miniaturized design, high thermal stability, and the facility of wireless integration that they offer. Owing to these special features, surface acoustic wave (SAW) resonators are widely used as smart transducers that can be combined with a variety of layers of recognition based on host-guest interactions, metal oxide coatings, carbon nanotubes, graphene sheets, functional polymers, and biological receptors.
  • Continuous demand for temperature sensors from various industries fuels the global surface acoustic wave resonator market. Temperature sensors are increasingly used in various sectors such as automotive, healthcare, industrial, and chemical in order to integrate sensing technologies in products. This helps minimize replacement costs of components; reduce wear and tear of products; increase the product safety; and meet stringent requirements regarding reliability.
  • However, acoustic wave resonators require several processes and technologies and hence, the compatibility of acoustic wave sensors with other products is one of the major factors that is likely to hinder the global surface acoustic wave resonator market from 2019 to 2027.

Collagen Market-By Source (Pig, Poultry, Cow, and Marine), By Product (Natural, Hydrolyzed and Gelatin), By Application (Cosmetics, Healthcare, Food and Beverage), and By Region-Forecast 2022-2031

SDKI Inc. published a new report on the collagen market on January 25, 2022.  This study includes the statistical and analytical approaches ...