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世界のサファイアベースの光ファイバーセンサの市場予測 2018-2024年

Sapphire-Based Fiber Optic Sensors

Global Market Forecast 2018-2024

 

出版社 出版年月電子媒体価格ページ数
ElectroniCast Consultants
エレクトロニキャスト社
2018年6月US$1,000
電子ファイル (PDF)
37

サマリー

米国調査会社エレクトロニキャスト社の調査レポート「世界のサファイアベースの光ファイバーセンサの市場予測 2018-2024年は、最も固く、通常用いられる導光体で最も融点が高い材料であるサファイアをベースとした光ファイバーセンサの世界市場の消費を予測している。サファイアは融点が2072度で化学的にも物理的な傷にも耐性が高いため、過酷な環境で使用される光ファイバーセンサの場合にはサファイアの使用が望ましい。

One-Fee Policy   

All employees of the client company/organization may use this report worldwide at the consultant service subscription fee shown above.

Report Description

This is the ElectroniCast forecast of global market consumption value of component-level sapphire-based fiber optic sensors.  Sapphire is the hardest material and has the highest melting point of any transparent material that is commonly available.  The use of sapphire is desirable when fiber optic sensors are used in certain harsh environments, since sapphire is a chemical and scratch resistant material with a melting point of 2,072°C.  

In addition to the properties of sapphire itself, this report addresses packaging technology, such as radiation hardening (Rad-Hard), rough handling and other concerns of the use of sensors in harsh environments.  This Executive Summary study report also provides selected research paper abstracts, as well as product descriptions and other relative information researched by ElectroniCast.

Regions

The 2018-2024 market forecast data presented in this study report are segmented into the following geographic regions, plus a Global summary:

•    America (North America, Central and South America)
•    EMEA (Europe, Middle Eastern countries, plus Africa)
•    APAC (Asia Pacific)

Sensor Types

The data in this study are presented in two independent sorts:

•    Sapphire-based Distributed Fiber Optic Sensor – component level
        
•    Sapphire-based Point Fiber Optic Sensors - component level

Applications

The market forecast of the sapphire-based fiber optic sensors systems is further segmented by application, as follows:

•    Industrial (Manufacturing Process/Factory)
•    Military/Aerospace
•    Energy (Petrochemical/ Nuclear Power/Utilities/Natural Resources)

Fiber Optic Sensors- Market Research By ElectroniCast

Overall, fiber optic sensor technology has experienced impressive growth since ElectroniCast first started providing market and technology analysis of the subject since the early 1980s. In fact our analysts were tracking the various advanced photonic technologies, since 1976. In regards to fiber optic sensors, laboratory demonstrations in the 1970s of fiber-optic gyros and acoustic sensors eventually led to the introduction of the first commercial intensity and spectrally based sensors.

About ElectroniCast

ElectroniCast, founded in 1981, specializes in forecasting technology and global market trends in fiber optics communication components and devices.

As an independent consultancy we offer multi-client and custom market research studies to the world's leading companies based on comprehensive, in- depth analysis of quantitative and qualitative factors. This includes technology forecasting, markets and applications forecasting, strategic planning, competitive analysis, customer-satisfaction surveys and marketing/sales consultation. ElectroniCast, founded as a technology-based independent consulting firm, meets the information needs of the investment community, industry planners and related suppliers.

Proprietary Statement

All data and other information contained in this data base are proprietary to ElectroniCast and may not be distributed or provided in either original or reproduced form to anyone outside the client's internal employee organization, without prior written permission of ElectroniCast. ElectroniCast, in addition to multiple-client programs, conducts proprietary custom studies for single clients in all areas of management planning and interest.  Other independent consultants, therefore, are considered directly competitive.  ElectroniCast proprietary information may not be provided to such consultants without written permission from ElectroniCast Consultants.
 



目次

1.    Executive Summary                                1

1.1    Market Forecast - Overview                            1
        Sapphire Distributed FO Sensors Forecast by Region ($Million)           4
        Sapphire Distributed FO Sensors Forecast by Application ($Million)           5
        Sapphire Point FO Sensors Forecast by Region ($Million)           6
        Sapphire Point FO Sensors Forecast by Application ($Million)           7

1.2     Technology - Overview                                 8
        Sapphire-Based Fiber Optic Point Sensor for High Temperature         8
        White Light Polarization Interferometry (WLPI) Technology         9
        Reduced Mode Sapphire Fiber and Distributed Sensing System        11
        Fiber Optic Sensing for Very High Temperatures                13
        Sapphire fiber cladding development - harsh environment sensing     13
        Fiber Sensors for Extreme Conditions                     15
        Sapphire-fiber-based distributed high-temperature sensing system     15
        Sapphire-Based Optical Fiber Sensing                     16
        Package Technologies                             19
        Harsh Environment Optical Fiber                       20
        Optical Fiber coated with carbon, metal, or silicon nitride             24
        Metallized Optical Fibers                           25
        POF for humidity insensitive high temperature FBG sensors         25
        Laser Heated Pedestal Growth (LHPG) Sapphire Optical Fibers          26
        Single Crystal Sapphire Optical Fiber                     28
        Single-Crystal Sapphire Optical Fiber Instrumentation for Coal Gasifiers    29
        High Temperature Sapphire Fiber Cladding                    31
        Nanostructured Sapphire Optical Fiber (NSOF)                   32
        High temperature sensing with FBGs in sapphire-derived all-glass fibers     32
        Submicron diameter single crystal sapphire optical fiber             33
        Modal reduction in single crystal sapphire optical fiber (SCSF)        33
        Sapphire photonic crystal fiber chemical sensing                34
        Sapphire Optical Fiber Sensor Fabrication                 35
        Fusion Splicing of Sapphire and Silica Optical Fibers             37
 

 

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[プレスリリース原文]

Sapphire Fiber Optic Sensor Forecast – Executive Summary

Sapphire-based Distributed and Point fiber optics sensors are forecast to increase at over 50% per year

Aptos, CA (USA) – June 13, 2018  -- ElectroniCast Consultants, a leading market/technology forecast consultancy, today announced the release of an Executive Summary, which provides a global market forecast for sapphire-based fiber optic sensors.

According to the Executive Summary, the combined consumption of component-level Distributed and Point (local) sapphire-based fiber optics sensors is projected to reach a global value of less than $2 million this year; however, both product categories are forecast to increase at an impressive rate of over 50% per year (2018-2024).

Sapphire is the hardest material and has the highest melting point of any transparent material that is commonly available.  The use of sapphire is desirable when fiber optic sensors are used in certain harsh environments, since sapphire is a chemical and scratch resistant material with a melting point of over 2,000°C.  

The market forecast of the sapphire-based fiber optic sensors systems is further segmented by application, as follows: Industrial, Military/Aerospace, and Energy.

The market forecast data is presented for the America, EMEA, and APAC regions.

The data in this study are presented in two independent sorts: Sapphire-based Distributed Fiber Optic Sensor (component level) and Sapphire-based Point Fiber Optic Sensors (component level).

Overall, fiber optic sensor technology has experienced impressive growth since ElectroniCast first started providing market and technology analysis of the subject in the early 1980s. In fact their analysts were tracking the various advanced photonic technologies, since 1976. In regards to fiber optic sensors, laboratory demonstrations in the 1970s of fiber-optic gyros and acoustic sensors eventually led to the introduction of the first commercial intensity and spectrally based sensors.

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