Technology Developments to Drive Growth in the Global Level Sensors Market, According to New Report by Global Industry Analysts, Inc.

San Jose, California (PRWEB) July 24, 2014

Follow us on LinkedIn Level measurement represents a critical process in industries where fluids and fluidized-solids are handled. Chemical, petroleum refineries, petrochemical, and food and beverage industries among others, routinely perform level measurement in order to ensure reliability of manufacturing processes. Level sensors in this regard, help detect level of different fluids (including those in production or those produced as end-product) to prevent overflows. Besides process industries, level sensors are also used extensively in water and wastewater management where they find applications in measuring drinking water, sewage, raw water, brackish water, industrial effluent, and sea water desalination.

Demand for level sensors is primarily reliant on the health of industrial processing and manufacturing industry. Rising focus on water conservation and recycling and subsequent rise in water & wastewater management projects, and growing power sector investments are driving demand for level sensors. While growing demand for petroleum products fuels demand for level sensors in petroleum refineries, steady consumption of a range of chemicals and their increased production drives use of level sensors in the chemical industry. Increasing application of level sensors in the oil and gas industry for identification of leak detection and fuel loss, measuring cooling water flow level, hydraulic fluid flow level and process gas flow level, and measuring discharged water level for environmental compliance, is also benefiting market growth. Stringent regulations such as Wastewater Systems Effluent Regulations and Clean Water Act in Europe and the United States are fueling growth in the market. Technology developments and product enhancements that help expand application possibilities will spur opportunities for growth in the coming years. Sensor manufacturers are increasingly focusing on the development of new, miniature, electronic level sensors, featuring low power consumption and ease-of-use as primary benefits.

As stated by the new market research report on Level Sensors, Europe and the United States represent the largest regional markets worldwide. Asia-Pacific ranks as the fastest growing market with a CAGR of 8.3% over the analysis period. Steady economic development, robust industrial growth, strong manufacturing, construction, mining, and energy generation activities, automation of industrial processes, and increased use of production line equipment in countries such as Korea, Singapore, India, and China, represent key growth drivers in the region. Ultrasonic Level Sensors represent the largest product market, with growth supported by increased preference for non-contact level sensors. Radar/Microwave Level sensors represent the fastest growing product market fueled by product improvements in accuracy, ease of installation, low maintenance, and suitability for use in harsh environment.

Key players covered in the report include ABB Ltd., AMETEK Inc., Ametek Drexelbrook, ANDERSON-NEGELE, Emerson Electric Co., Endress+Hauser Consult AG, General Electric Company, Gems Sensors & Controls, GF Piping Systems, Hans TURCK GmbH Co. KG, Hella KGaA Hueck & Co., Honeywell International, Inc., Kobold Messring GmbH, Kobold Instruments Inc., Krohne Messtechnik GmbH & Co. KG, Magnetrol International Inc., Measurement Specialties Inc., Pepperl + Fuchs GmbH, Siemens AG, and SSI Technologies Inc. among others.

The research report titled, Level Sensors: A Global Strategic Business Report, announced by Global Industry Analysts Inc., provides a comprehensive review of market trends, growth drivers, product innovations and launches, and strategic industry activities of major companies worldwide. The report provides market estimates and projections in US dollars for all major geographic markets, including the US, Canada, Japan, Europe (France, Germany, Italy, UK, Spain, Russia, and Rest of Europe), Asia-Pacific (China, India, South Korea, and Rest of Asia-Pacific), Latin America (Brazil and Rest of Latin America) and Rest of World. Product segments analyzed in the report include Magnetostrictive, Tuning Fork, Hydrostatic, Capacitance, Conductivity, Ultrasonic, Radar-Microwave and Others (Includes Optical Interface Point Level Sensors, Laser Level Transmitters, Nuclear Level Sensors, Tape Float, High Flow Rate Sensors, Float-Type Sensors, Resistance Tapes, Rotating Paddle Level Sensors, Pneumatic Level Sensors, Resistive Chain Level Sensors, Submersible Waste Water Level Sensors, Semi-Flexible Sensors, Tank Level Sensors, Oil Sensors, Magnetic & Mechanical Float Level Sensors, Capacitive Level Sensors, and Flow-Thru Style Sensors among Others.).

For more details about this comprehensive market research report, please visit

http://www.strategyr.com/Level_Sensors_Market_Report.asp

About Global Industry Analysts, Inc.:

Global Industry Analysts, Inc. (GIA) is a leading publisher of off-the-shelf market research. Founded in 1987, the company currently employs over 800 people worldwide. Annually, GIA publishes 1500+ full-scale research reports and analyzes 40,000+ market and technology trends, while monitoring more than 126,000 companies worldwide. Serving over 9500 clients in 27 countries, GIA is recognized today, as one of the world’s largest and reputed market research firms.

Global Industry Analysts, Inc.

Telephone: 408-528-9966

Fax: 408-528-9977

Email: press(at)StrategyR(dot)com

Web Site: http://www.StrategyR.com/







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CIR announcement of the next report, “subsequent-generation Ethernet: From one hundred Gbps to 400 Gbps and beyond” Due in November 2013

Charlottesville, VA (PRWEB) October 24, 2013

Sector analyst firm CIR announced right now the addition of a new report to its schedule titled “next-generation Ethernet: From 100 Gbps to 400 Gbps and Beyond “which will be released in November 2013. CIR present in this report our viewpoint on how 400 GigE will be marketed, how the company case for 400 GigE will be made, and exactly where the possibilities lie for operators, gear producers and element producers .

About the Report:

40 GigE and 100 GigE most banal bleeding edge optical networking is prepared to embark on a quest for 400 GigE,. might be an intermediate step on the path to Terabit Ethernet

CIR was followed by the commercial development of Ethernet considering that 1991, when the now ubiquitous GigE technologies was the vanguard. We then analyzed every generation Ethernet all the way to one hundred Gbps. So, we understand the demands of users, technologies needs and deployment models. And we are particularly suited to recognize business opportunities arising from recent developments in optical Ethernet.

the basis of these far more than two decades, CIR present in this report our point of view on how 400 GigE will be marketed, how the enterprise case for 400 GigE will be produced, and where the possibilities lie for carriers, equipment companies and element producers.

This report will

compelling reading for organizations optical networking gear, sub-systems and elements of the worth chain Ethernet. The report contains a quantitative forecast more than the subsequent decade to 400 GigE a number of different scenarios, like an assessment of corporate techniques that CIR believes to be important players in this space.

coverage Points:

Summary

? The enterprise case for 400 GigE? 400 GigE an enabling technology: End User Opportunity? Information centers and LANs
Carrier Networks?? Eight companies to watch in space 400 GigE? When the gear manufacturers to deploy 400 GigE ports?? Possibilities elements and subsystems 400 GigE optical? On the way to Terabit Ethernet

Evolution 400 GigE Technologies

? Lessons learned from the fight one hundred Gbps? Coordination groups, standards and MSA? Gigabit IEEE 400 group? Ethernet study? CDFP hot MSA? Optical Internetworking Forum (OIF)? 400 GigE impact on the improvement of other network standards? Interfaces and transceivers? 16 x 25 Gbps or 50 Gbps?? Optical interface issues?? Consumption? Connectors? To what extent copper?? Support the MMF and SMF? Parallel single-mode fiber? Achievable signaling systems? Achievable use of new modulation schemes? Use of forward error correction

engines and variables delaying for 400 GigE application

? Positive effect of the evolution of existing information on the require for a new generation Ethernet? Big Information? Cloud computing? Video streaming
Farms influence of content material delivery networks (CDN) and content?? Network architecture of variables driving the need to have for 400 GigE? Elements delaying the need to have for 400 GigE networks

prospective markets for 400 GigE

? 400 GigE in the data center
The development in the size of the information center, processing energy and storage capacity?? 400 GigE switches in future LAN? 400 Gbps in metro? 400 GigE for metro aggregation? 400 GigE in the core network? In 400 GigE switches and WAN routers, Networks? OTN 400 mesh and GigE? Crucial points of this chapter

Organization Cases and scenarios for 400 GigE

? economy 400 GigE
Objectives? Charges for 400 GigE? Price elements?? The deadlines for the improvement and deployment of 400 GigE? Very first generation: 16 x 25? Second generation: 8 x 50? Third generation: 4 x one hundred Gbps? Scenarios? Ten years and forecasts for revenue generation from 400 GigE? Calendar for Terabit Ethernet?? Essential points of this chapter

About CIR:

Communications business researchers was the publication hype with no industry analysis of the market place for optical high-speed networks for over 20 years. He lately published reports on rack level and optical interconnect board-to-board and active optical cabling. Go to http://www.cir-inc.com for a total list of reports CIRS and other services.

Get in touch with:

Robert Nolan
ilumatech
Rob (at) ilumatech (dot) com
(804) 938-0030

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