Superconductors: Technologies and Global Markets

Superconductors: Technologies and Global Markets

BCC, Date of Publication: Sep 11, 2014, 172 Pages
US$6,650.00
GB-AVM066D

The global market for superconductivity applications was worth nearly $1.8 billion in 2013 and is expected to approach about $2.0 billion in 2014 and nearly $4.2 billion in 2019, with a compound annual growth rate (CAGR) of 16.4% over the next five years.

This report provides:

  • An overview of the global market for superconductors and related technologies.
  • Analyses of global market trends, with data from 2013, estimates for 2014, and projections of compound annual growth rates (CAGRs) through 2019.
  • Analysis of the key drivers and constraints that will shape the market for superconducting applications as the basis for projecting demand over the next five years.
  • Estimations of current and future consumption of superconducting materials and other key enabling technologies.
  • Profiles of the companies that are best positioned to meet this demand because of their proprietary technologies, strategic alliances, or other advantages.

The report addresses trends in superconductivity technology and the global market for superconductivity applications during the period from 2013 through 2019, including:

  • Science, research, and technology development.
  • Healthcare.
  • Electric utilities.
  • Computing.
  • Transportation.
  • Communications.
  • Military/defense.
  • Other applications.

The study format includes the following major elements:

  • Executive summary.
  • Overview (i.e., definitions, brief history, superconductivity characteristics, market summary).
  • Developments in superconducting technology that are expected to influence the market through 2019.
  • Detailed market estimates and projections for each technology, application, and end use during the period from 2013 to 2019.
  • General assessment of expected technological and market trends in the longer term.
  • Description of key players in the emerging superconductivity industry.


TABLE OF CONTENTS

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Chapter 1: INTRODUCTION - Complimentary

STUDY BACKGROUND
STUDY GOALS AND OBJECTIVES
INTENDED AUDIENCESCOPE AND FORMAT
INFORMATION SOURCES AND METHODOLOGY
ANALYST'S CREDENTIALS
DISCLAIMER
 
Chapter- 2: EXECUTIVE SUMMARY 2 $250  

Chapter- 3: SUPERCONDUCTIVITY OVERVIEW 39 $2262 

GENERAL DESCRIPTION OF SUPERCONDUCTIVITY
PROPERTIES OF SUPERCONDUCTORS
Conductivity
Magnetic Properties
Tunneling
MECHANISMS OF SUPERCONDUCTIVITY
BRIEF HISTORY OF SUPERCONDUCTIVITY
ADVANTAGES AND LIMITATIONS OF SUPERCONDUCTORS
Advantages of Superconductors
Advantages of Type II versus Type I Superconductors
Limitations of Superconductors
SUPERCONDUCTING MATERIALS
TYPE I SUPERCONDUCTORS
TYPE II SUPERCONDUCTORS
ATYPICAL SUPERCONDUCTORS
APPLICATIONS AND END USES
APPLICATIONS
Superconducting Magnets
Superconducting Transformers
Superconducting Electric Generators
Superconducting Electric Motors 
Fault Current Limiters (FCLs)
Superconducting Power Storage Systems
Superconducting Magnetic Energy Storage (SMES) 
Superconducting Flywheel Energy Storage (SFES)
Current LeadsSuperconducting WiresSuperconducting Integrated Circuits
Superconducting Radio Frequency (RF) and Microwave Filters
Superconducting Quantum Interference Devices (SQUIDs)
Other Applications
Induction Heaters
Ultrafast Routers
Superconducting Microwave Antennas
END USES
Science, Research, and Technology Development
Healthcare
Electric Utilities
Generation
Storage
Transmission
Computing
Transportation
Maglev Trains
Other Railway Applications
Commercial Ship Propulsion
Electric Vehicles
CommunicationsMilitary/Defense
Other End Uses
MARKET SIZE AND SEGMENTATION
MARKET SIZE
APPLICATION SEGMENTS
END-USE SEGMENTS
TYPES OF SUPERCONDUCTING MATERIALS
 
Chapter 4: SUPERCONDUCTING MATERIALS AND TECHNOLOGIES  13 $754  

SUPERCONDUCTING MATERIALS
TYPE I SUPERCONDUCTORS
TYPE II SUPERCONDUCTORS
CURRENT RESEARCH IN SUPERCONDUCTIVITY
MAJOR PLAYERS AND AREAS OF CONCENTRATION
RECENT TECHNOLOGICAL ADVANCES
PATENT ANALYSIS
 
Chapter 5: SUPERCONDUCTING MAGNET TECHNOLOGIES AND MARKETS 25 $1450  

TECHNOLOGY
CHARACTERISTICS OF SUPERCONDUCTING MAGNETS
CONSTRUCTION, MATERIALS AND PERFORMANCE
Construction
Materials
TYPES OF SYSTEMS
Cryogen-Free Magnets
Low-Helium Consumption Magnets
Projected Magnetic Field Superconducting Magnets
High-Magnetic-Field Systems
Hybrid Magnets
Shielded Magnet Systems
END USES
SCIENCE, RESEARCH, AND TECHNOLOGY DEVELOPMENTHEALTHCARETRANSPORTATIONOTHER END USES
SUPPLIERS
MARKET FOR SUPERCONDUCTING MAGNETS
SUMMARY
SCIENCE, RESEARCH, AND TECHNOLOGY DEVELOPMENT
HEALTHCARE
Magnetic Resonance Imagining (MRI) Scanners
TRANSPORTATION
Superconducting Maglev Trains
OTHER END USES
Magnetic Separations
Disposable Mixing Systems
 
Chapter 6: SUPERCONDUCTING TRANSFORMER TECHNOLOGIES AND MARKETS 10 $580  

TECHNOLOGY
CHARACTERISTICS OF SUPERCONDUCTING TRANSFORMERS
Reduced Load Losses
Lower Cost of Ownership
Safety and Environmental Advantages
Smaller Footprint and Lower Weight
CONSTRUCTION, MATERIALS AND PERFORMANCE
Construction
Materials
TYPES OF SYSTEMS
Iron Core versus Air Core
Hybrid Transformers
END USES
ELECTRIC POWER GENERATION AND TRANSMISSION
Electricity Distribution
TRANSPORTATION
SUPPLIERS
MARKET FOR SUPERCONDUCTING TRANSFORMERS 

Chapter 7: SUPERCONDUCTING ELECTRIC GENERATOR TECHNOLOGIES AND MARKETS 11 $638  

TECHNOLOGY
CHARACTERISTICS OF SUPERCONDUCTING GENERATORS
Greater EfficiencyLonger LifeSmaller Size and Lighter Weight
Lower Acquisition and Installation CostsCONSTRUCTION, MATERIALS AND PERFORMANCEEND USES
ELECTRIC POWER GENERATION AND TRANSMISSIONTRANSPORTATION
MILITARY/DEFENSETable 32 : SUPERCONDUCTING GENERATOR END USES
SUPPLIERSMARKET FOR SUPERCONDUCTING GENERATORS

Chapter 8: SUPERCONDUCTING ELECTRIC MOTOR TECHNOLOGIES AND APPLICATIONS 10 $580  

TECHNOLOGY
CHARACTERISTICS OF SUPERCONDUCTING MOTORS
Compact Size
Flexibility
Reduced Noise
Increased Stability
Lower Acquisition and Operating Cost
CONSTRUCTION, MATERIALS AND PERFORMANCETYPES OF SYSTEMSEND USES
TRANSPORTATION
Marine Propulsion SystemsElectric Vehicles
MILITARY/DEFENSE
PROCESS INDUSTRIESTable 39 : SUPERCONDUCTING MOTOR END USES
SUPPLIERS
MARKET FOR SUPERCONDUCTING ELECTRIC MOTORS
SUMMARY
TRANSPORTATION
MILITARY/DEFENSE
PROCESS INDUSTRIES
 
Chapter 9: FAULT CURRENT LIMITER (FCL) TECHNOLOGIES AND MARKETS 7 $406  


TECHNOLOGY
CHARACTERISTICS
CONSTRUCTION, MATERIALS AND PERFORMANCETYPES OF SYSTEMS
Resistive Fault Current Limiters (FCLs)
Inductive Fault Current Limiters (FCLs)
END USES
ELECTRIC POWER GENERATION AND TRANSMISSION
TRANSPORTATION
MARKET FOR FAULT CURRENT LIMITERS (FCLS)
SUMMARYELECTRIC POWER GENERATION AND TRANSMISSION
TRANSPORTATION 

Chapter 10: SUPERCONDUCTING POWER STORAGE TECHNOLOGIES AND MARKETS 7 $406  


TECHNOLOGY
CHARACTERISTICS
TYPES OF SYSTEMS
Superconducting Magnetic Energy Storage (SMES)
Superconducting Flywheel Energy Storage (SFES)
CONSTRUCTION, MATERIALS AND PERFORMANCE
Construction
Materials
END USES
ELECTRIC POWER GENERATION AND TRANSMISSION
MANUFACTURING


Chapter 11: SUPERCONDUCTING CURRENT LEAD TECHNOLOGIES AND MARKETS 6 $348  

TECHNOLOGY
CHARACTERISTICS OF SUPERCONDUCTING CURRENT LEADS
CONSTRUCTION, MATERIALS AND PERFORMANCE
Construction
Materials
END USES
SCIENCE, RESEARCH, AND TECHNOLOGY DEVELOPMENT
HEALTHCARE AND OTHER APPLICATIONS
MARKET FOR SUPERCONDUCTING CURRENT LEADS 

Chapter 12: SUPERCONDUCTING CABLE TECHNOLOGIES AND MARKETS 4 $232  

TECHNOLOGY
CHARACTERISTICS OF SUPERCONDUCTING WIRES
CONSTRUCTION, MATERIALS AND PERFORMANCE
END USES
SUPPLIERS
MARKET FOR SUPERCONDUCTING CABLE 

Chapter 13: SUPERCONDUCTING INTEGRATED CIRCUIT (IC) TECHNOLOGIES AND MARKETS 7 $406  

TECHNOLOGY
CHARACTERISTICS
CONSTRUCTION, MATERIALS AND PERFORMANCE
END USES
SCIENCE, RESEARCH, AND TECHNOLOGY DEVELOPMENT APPLICATIONS
COMMUNICATIONS
COMPUTING

Chapter 14: SUPERCONDUCTING RADIO FREQUENCY (RF) AND MICROWAVE FILTER TECHNOLOGIES AND APPLICATIONS 3 $174  

TECHNOLOGY
CHARACTERISTICS
CONSTRUCTION, MATERIALS AND PERFORMANCE
END USES
SUPPLIERSMARKETS
 
Chapter 15: SUPERCONDUCTING QUANTUM INTERFERENCE DEVICE (SQUID) TECHNOLOGIES AND MARKETS 6 $348  

TECHNOLOGY
CHARACTERISTICS
CONSTRUCTION, MATERIALS AND PERFORMANCE
END USES
SCIENCE, RESEARCH, AND TECHNOLOGY DEVELOPMENT
HEALTHCARE
OTHER

Chapter 16: APPENDIX: COMPANY PROFILES 18 $1044  

ABB LTD.
ADVANCED MAGNET LAB INC.
ALSTOMAMERICAN MAGNETICS INC.
AMERICAN SUPERCONDUCTOR CORP.
ASG SUPERCONDUCTORS SPA
BABCOCK NOELL GMBHBRUKER ENERGY AND SUPERCON TECHNOLOGIES INC.
COLORADO SUPERCONDUCTOR CORP.
CRYOELECTRA GMBHCRYOMAGNETICS INC.
CRYOTON LTD.
DIBORIDE CONDUCTORS LTD.
D-WAVE SYSTEMS INC.
ERIEZ MANUFACTURING CO.
EVICO GMBHFUJI ELECTRIC CO.
FUJIKURA LTD.
FURUKAWA ELECTRIC CO. LTD.
GENERAL ELECTRIC CO.
GRIDON
HITACHI LTD.
HTS-110 LTD.
HYPER TECH RESEARCH INC.
HYPRES INC.
INNOVA SUPERCONDUCTOR TECHNOLOGIES
ISCO INTERNATIONAL LLC
ISHIKAWAJIMA-HARIMA HEAVY INDUSTRIES CO. LTD.
JANIS RESEARCH CO. INC.
KARLSRUHER INSTITUT FÜR TECHNOLOGIE 
KAWASAKI HEAVY INDUSTRIES LTD.
LUVATA PORI OY
MAGLEV 2000
METAL OXIDE TECHNOLOGIES INC.
NEOCERA INC.
NEXANS
NORTHROP GRUMMAN CORP.
OXFORD INSTRUMENTS PLC
OXFORD SUPERCONDUCTING TECHNOLOGY LP
QUANTUM DESIGN INC.
ROYAL PHILIPS ELECTRONICS NV
SCIENTIFIC MAGNETICS
SIEMENS AG
SPX TRANSFORMER SOLUTIONS INC.
SUMITOMO ELECTRIC INDUSTRIES LTD.
SUPERCONDUCTOR TECHNOLOGIES INC.
SUPERPOWER INC.
TOSHIBA CORP. 

  
List of Tables
 
Summary Table : GLOBAL MARKET FOR SUPERCONDUCTIVITY TECHNOLOGIES, THROUGH 2019
Table 1 : MAJOR END USES AND APPLICATIONS OF SUPERCONDUCTIVITY
Table 2 : POTENTIAL APPLICATIONS OF SUPERCONDUCTOR INTEGRATED CIRCUITS (ICS)
Table 3 : GLOBAL MARKET FOR SUPERCONDUCTIVITY APPLICATIONS BY TYPE OF APPLICATION, THROUGH 2019
Table 4 : GLOBAL MARKET FOR SUPERCONDUCTIVITY APPLICATIONS BY TYPE OF END USE, THROUGH 2019
Table 5 : GLOBAL MARKET FOR SUPERCONDUCTING MATERIALS, THROUGH 2019
Table 6 : TYPE I SUPERCONDUCTORS
Table 7 : TYPE II SUPERCONDUCTORS
Table 8 : MAJOR ORGANIZATIONS CONDUCTING SUPERCONDUCTIVITY RESEARCH
Table 9 : SUPERCONDUCTING MAGNET END USES
Table 10 : SUPPLIERS OF SUPERCONDUCTING MAGNETS AND COMPONENTS
Table 11 : GLOBAL MARKET FOR SUPERCONDUCTING MAGNETS, THROUGH 2019
Table 12 : GLOBAL CONSUMPTION OF SUPERCONDUCTING MATERIALS USED IN MAGNETIC APPLICATIONS, THROUGH 2019
Table 13 : GLOBAL MARKET FOR SUPERCONDUCTING MAGNETS USED IN SCIENCE, RESEARCH, AND TECHNOLOGY DEVELOPMENT APPLICATIONS, THROUGH 2019
Table 14 : GLOBAL MARKET FOR SUPERCONDUCTING MAGNETS USED IN NUCLEAR MAGNETIC RESONANCE (NMR) SPECTROMETERS, THROUGH 2019
Table 15 : GLOBAL CONSUMPTION OF SUPERCONDUCTING WIRE USED IN NUCLEAR MAGNETIC RESONANCE (NMR) SPECTROMETER MAGNETS, THROUGH 2019
Table 16 : GLOBAL MARKET FOR SUPERCONDUCTING MAGNETS USED IN SCIENCE, RESEARCH, AND TECHNOLOGY DEVELOPMENT APPLICATIONS, THROUGH 2019
Table 17 : U.S. PROTON THERAPY CENTERS
Table 18 : GLOBAL MARKET FOR SUPERCONDUCTING MAGNETS AND WIRE USED IN PROTON THERAPY MACHINES, THROUGH 2019
Table 19 : GLOBAL MARKET FOR SUPERCONDUCTING MAGNETS USED IN MAGNETIC RESONANCE IMAGING (MRI) SCANNERS, THROUGH 2019
Table 20 : GLOBAL CONSUMPTION OF SUPERCONDUCTING WIRE USED IN MAGNETIC RESONANCE IMAGING (MRI) SCANNER MAGNETS, THROUGH 2019
Table 21 : GLOBAL MARKET FOR SUPERCONDUCTING MAGNETS USED IN MAGLEV RAILCARS, THROUGH 2019
Table 22 : GLOBAL MARKET FOR SUPERCONDUCTING MAGNETS USED IN OTHER INDUSTRIAL APPLICATIONS, THROUGH 2019
Table 23 : GLOBAL MARKET FOR SUPERCONDUCTING MAGNETS USED IN HIGH-GRADIENT SEPARATION SYSTEMS, THROUGH 2019
Table 24 : GLOBAL MARKET FOR SUPERCONDUCTING MATERIALS USED IN DISPOSABLE MIXING SYSTEMS, THROUGH 2019
Table 25 : SUPERCONDUCTING TRANSFORMER END USES
Table 26 : SUPPLIERS OF SUPERCONDUCTING TRANSFORMERS AND COMPONENTS
Table 27 : GLOBAL MARKET FOR SUPERCONDUCTING TRANSFORMERS, THROUGH 2019
Table 28 : GLOBAL CONSUMPTION OF SUPERCONDUCTING MATERIALS USED IN TRANSFORMER APPLICATIONS, THROUGH 2019
Table 29 : GLOBAL MARKET FOR SUPERCONDUCTING UTILITY POWER TRANSFORMERS AND RELATED CONSUMPTION OF SUPERCONDUCTING MATERIALS, THROUGH 2019
Table 30 : ESTIMATED SHINKANSEN-TYPE TRAIN SET DELIVERIES, THROUGH 2019
Table 31 : GLOBAL MARKET FOR SUPERCONDUCTING TRACTION TRANSFORMERS AND RELATED CONSUMPTION OF SUPERCONDUCTING MATERIALS, THROUGH 2019
Table 32 : SUPERCONDUCTING GENERATOR END USES
Table 33 : SUPPLIERS OF SUPERCONDUCTING GENERATORS AND COMPONENTS
Table 34 : GLOBAL MARKET FOR SUPERCONDUCTING GENERATORS, THROUGH 2019
Table 35 : GLOBAL CONSUMPTION OF SUPERCONDUCTING MATERIALS USED IN GENERATOR APPLICATIONS, THROUGH 2019
Table 36 : GLOBAL MARKET FOR SUPERCONDUCTING WIND TURBINE GENERATORS AND RELATED CONSUMPTION OF SUPERCONDUCTING WIRE, THROUGH 2019
Table 37 : GLOBAL MARKET FOR SUPERCONDUCTING MARINE PROPULSION GENERATORS AND RELATED CONSUMPTION OF SUPERCONDUCTING WIRE, THROUGH 2019
Table 38 : GLOBAL MARKET FOR SUPERCONDUCTING AIRBORNE GENERATORS AND RELATED CONSUMPTION OF SUPERCONDUCTING WIRE, THROUGH 2019
Table 39 : SUPERCONDUCTING MOTOR END USES
Table 40 : SUPPLIERS OF SUPERCONDUCTING ELECTRIC MOTORS AND COMPONENTS
Table 41 : GLOBAL MARKET FOR SUPERCONDUCTING ELECTRIC MOTORS, THROUGH 2019
Table 42 : GLOBAL CONSUMPTION OF SUPERCONDUCTING MATERIALS USED IN ELECTRIC MOTOR APPLICATIONS, THROUGH 2019
Table 43 : GLOBAL MARKET FOR SUPERCONDUCTING MARINE ELECTRIC MOTORS AND RELATED CONSUMPTION OF SUPERCONDUCTING WIRE, THROUGH 2019
Table 44 : GLOBAL MARKET FOR SUPERCONDUCTING PROCESS ELECTRIC MOTORS AND RELATED CONSUMPTION OF SUPERCONDUCTING WIRE, THROUGH 2019
Table 45 : FAULT CURRENT LIMITER (FCL) APPLICATIONS
Table 46 : SUPPLIERS OF FAULT CURRENT LIMITERS (FCLS)
Table 47 : GLOBAL MARKET FOR FAULT CURRENT LIMITERS (FCLS), THROUGH 2019
Table 48 : GLOBAL CONSUMPTION OF SUPERCONDUCTING MATERIALS USED IN FAULT CURRENT LIMITERS (FCLS), THROUGH 2019
Table 49 : GLOBAL ELECTRIC UTILITY MARKET FOR FAULT CURRENT LIMITERS (FCLS), THROUGH 2019
Table 50 : GLOBAL MARINE MARKET FOR FAULT CURRENT LIMITERS (FCLS), THROUGH 2019
Table 51 : SUPERCONDUCTING ENERGY STORAGE APPLICATIONS
Table 52 : DEVELOPERS OF SUPERCONDUCTING POWER STORAGE SYSTEMS
Table 53 : GLOBAL MARKET FOR SUPERCONDUCTING POWER STORAGE SYSTEMS, THROUGH 2019
Table 54 : GLOBAL CONSUMPTION OF SUPERCONDUCTING MATERIALS USED IN POWER STORAGE APPLICATIONS, THROUGH 2019
Table 55 : GLOBAL ELECTRIC UTILITY MARKET FOR SUPERCONDUCTING ENERGY STORAGE, THROUGH 2019
Table 56 : GLOBAL INDUSTRIAL MARKET FOR SUPERCONDUCTING ENERGY STORAGE, THROUGH 2019
Table 57 : SUPERCONDUCTING CURRENT LEAD END USES
Table 58 : SUPPLIERS OF SUPERCONDUCTING CURRENT LEADS
Table 59 : GLOBAL MARKET FOR SUPERCONDUCTING CURRENT LEADS, THROUGH 2019
Table 60 : GLOBAL CONSUMPTION OF SUPERCONDUCTING MATERIALS USED IN SUPERCONDUCTING CURRENT LEAD APPLICATIONS, THROUGH 2019
Table 61 : GLOBAL MARKET FOR SUPERCONDUCTING CURRENT LEADS USED IN SCIENCE, RESEARCH, AND TECHNOLOGY DEVELOPMENT APPLICATIONS, THROUGH 2019
Table 62 : GLOBAL MARKET FOR SUPERCONDUCTING CURRENT LEADS USED IN HEALTHCARE APPLICATIONS, THROUGH 2019
Table 63 : DEVELOPERS AND SUPPLIERS OF SUPERCONDUCTING ELECTRIC TRANSMISSION WIRE AND CABLE
Table 64 : GLOBAL MARKET FOR SUPERCONDUCTING ELECTRIC TRANSMISSION CABLE, THROUGH 2019
Table 65 : SUPERCONDUCTING INTEGRATED CIRCUIT (IC) END USES
Table 66 : SUPPLIERS OF SUPERCONDUCTING INTEGRATED CIRCUITS (ICS)
Table 67 : GLOBAL MARKET FOR SUPERCONDUCTING INTEGRATED CIRCUITS (ICS), THROUGH 2019
Table 68 : GLOBAL CONSUMPTION OF SUPERCONDUCTING THIN-FILM MATERIALS IN THE FABRICATION OF SUPERCONDUCTING INTEGRATED CIRCUITS (ICS), THROUGH 2019
Table 69 : GLOBAL MARKET FOR SUPERCONDUCTING INTEGRATED CIRCUITS (ICS) USED IN VOLTAGE METROLOGY APPLICATIONS, THROUGH 2019
Table 70 : GLOBAL MARKET FOR SUPERCONDUCTING INTEGRATED CIRCUITS (ICS) USED IN DIGITAL SIGNAL PROCESSING APPLICATIONS, THROUGH 2019
Table 71 : GLOBAL MARKET FOR SUPERCONDUCTING INTEGRATED CIRCUITS (ICS) USED IN QUANTUM AND OTHER HIGH-PERFORMANCE PROCESSORS, THROUGH 2019
Table 72 : COMPANIES THAT ARE MANUFACTURING OR DEVELOPING SUPERCONDUCTING RADIO FREQUENCY (RF) FILTERS
Table 73 : GLOBAL MARKET FOR SUPERCONDUCTING RADIO FREQUENCY (RF) FILTERS, THROUGH 2019
Table 74 : SUPERCONDUCTING QUANTUM INTERFERENCE DEVICE (SQUID) END USES
Table 75 : SUPERCONDUCTING QUANTUM INTERFERENCE DEVICE (SQUID) SUPPLIERS
Table 76 : GLOBAL MARKET FOR SUPERCONDUCTING QUANTUM INTERFERENCE DEVICES (SQUIDS), THROUGH 2019
Table 77 : GLOBAL CONSUMPTION OF SUPERCONDUCTING MATERIALS IN THE FABRICATION OF SUPERCONDUCTING QUANTUM INTERFERENCE (SQUID) SENSORS, THROUGH 2019
Table 78 : GLOBAL MARKET FOR SUPERCONDUCTING QUANTUM INTERFERENCE DEVICES (SQUIDS) USED IN SCIENCE, RESEARCH, AND TECHNOLOGY DEVELOPMENT, THROUGH 2019
Table 79 : GLOBAL MARKET FOR SUPERCONDUCTING QUANTUM INTERFERENCE DEVICES (SQUIDS) USED IN HEALTHCARE APPLICATIONS, THROUGH 2019
Table 80 : GLOBAL MARKET FOR SUPERCONDUCTING QUANTUM INTERFERENCE DEVICES (SQUIDS) USED IN OTHER APPLICATIONS, THROUGH 2019
 
List of Figures
 
Summary Figure : GLOBAL MARKET FOR SUPERCONDUCTIVITY TECHNOLOGIES, 2013-2019
Figure 1 : TRENDS IN GLOBAL MARKET FOR SUPERCONDUCTIVITY APPLICATIONS, 2013-2019
Figure 2 : GLOBAL SUPERCONDUCTIVITY APPLICATION SEGMENTS, 2013-2019
Figure 3 : GLOBAL SUPERCONDUCTIVITY END USE SEGMENTS, 2013-2019
Figure 4 : U.S. PATENTS RELATING TO LOW-TEMPERATURE SUPERCONDUCTIVITY (LTS) VERSUS HIGH-TEMPERATURE SUPERCONDUCTIVITY (HTS)
Figure 5 : NUMBER OF U.S. SUPERCONDUCTIVITY-RELATED PATENTS BY TYPE OF APPLICATION
Figure 6 : U.S. SUPERCONDUCTIVITY-RELATED PATENTS BY TYPE OF ASSIGNEE
Figure 7 : U.S. SUPERCONDUCTIVITY-RELATED PATENTS BY ASSIGNEE'S COUNTRY OF ORIGIN
Figure 8 : GLOBAL SUPERCONDUCTING MAGNET MARKET SHARES BY APPLICATION SEGMENT, 201-2019
Figure 9 : GLOBAL SUPERCONDUCTING MAGNET MARKET SHARES BY TYPE OF SUPERCONDUCTING MATERIAL, 2013-2019
Figure 10 : GLOBAL MARKET FOR NUCLEAR MAGNETIC RESONANCE (NMR) SPECTROMETERS, 2013-2019
Figure 11 : GLOBAL MARKET FOR PROTON THERAPY MACHINES, 2013-2019
Figure 12 : GLOBAL MARKET FOR MAGNETIC RESONANCE IMAGING (MRI) SCANNERS, 2013-2019
Figure 13 : GLOBAL MARKET FOR SUPERCONDUCTING MAGNETIC SEPARATORS, 2013-2019
Figure 14 : GLOBAL MARKET FOR SUPERCONDUCTING MAGNET-DRIVEN DISPOSABLE MIXING SYSTEMS, 2013-2019
Figure 15 : GLOBAL SUPERCONDUCTING TRANSFORMER MARKET SHARES BY APPLICATION SEGMENT, 2013-2019
Figure 16 : GLOBAL MARKET FOR POWER TRANSFORMERS RATED 10 MEGAVBOLT AMPERE (MVA) AND ABOVE, 2013-2019
Figure 17 : GLOBAL SUPERCONDUCTING GENERATOR MARKET SHARES BY APPLICATION SEGMENT, 2013-2019
Figure 18 : GLOBAL MARKET FOR MARINE PROPULSION GENERATORS, 2013-2019
Figure 19 : SUPERCONDUCTING MOTOR MARKET SHARES BY APPLICATION SEGMENT, 2013-2019
Figure 20 : GLOBAL MARKET FOR MARINE ELECTRIC MOTORS, 2013-2019
Figure 21 : FAULT CURRENT LIMITER (FCL) MARKET SHARES BY APPLICATION SEGMENT, 2013-2019
Figure 22 : GLOBAL SUPERCONDUCTING POWER STORAGE SHARES BY APPLICATION SEGMENT, 2013-2019
Figure 23 : SUPERCONDUCTING MAGNET MARKET SHARES BY APPLICATION SEGMENT, 2013-2019
Figure 24 : GLOBAL SUPERCONDUCTING INTEGRATED CIRCUIT (IC) MARKET SHARES BY APPLICATION SEGMENT, 2013-2019
Figure 25 : SUPERCONDUCTING QUANTUM INTERFERENCE DEVICE (SQUID) SENSOR MARKET SHARES BY APPLICATION SEGMENT, 2013-2019
 

Date of Publication:
Sep 11, 2014
File Format:
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Number of Pages:
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