Report Detail

Electronics & Semiconductor Global Antifuse FPGA Market Professional Survey Report 2019

  • RnM3743770
  • |
  • 13 September, 2019
  • |
  • Global
  • |
  • 114 Pages
  • |
  • QYResearch
  • |
  • Electronics & Semiconductor

A field-programmable gate array is an integrated circuit designed tobe configured by a customer or a designer after manufacturing –hence "field-programmable". The FPGA configuration is generallyspecified using a hardware description language, similar to that usedfor an application-specific integrated circuit. Circuit diagrams werepreviously used to specify the configuration, but this is increasinglyrare due to the advent of electronic design automation tools.

The global Antifuse FPGA market was valued at xx million US$ in 2018 and will reach xx million US$ by the end of 2025, growing at a CAGR of xx% during 2019-2025.
This report focuses on Antifuse FPGA volume and value at global level, regional level and company level. From a global perspective, this report represents overall Antifuse FPGA market size by analyzing historical data and future prospect.
Regionally, this report categorizes the production, apparent consumption, export and import of Antifuse FPGA in North America, Europe, China, Japan, Southeast Asia and India.
For each manufacturer covered, this report analyzes their Antifuse FPGA manufacturing sites, capacity, production, ex-factory price, revenue and market share in global market.

The following manufacturers are covered:
Xilinx (US)
Intel (US)
Lattice Semiconductor (US)
Microsemi (US)
QuickLogic (US)
TSMC (Taiwan)
Microchip (US)
United Microelectronics (Taiwan)
GLOBALFOUNDRIES (US)
Achronix (US)
S2C Inc (US)

Segment by Regions
North America
Europe
China
Japan
Southeast Asia
India

Segment by Type
Less Than 28 nm
28-90 nm
More Than 90 nm

Segment by Application
Telecommunications
Automotive
Industrial Control
Consumer Products
Data Center
Medical
Others


Table of Contents

    Executive Summary

      1 Industry Overview of Antifuse FPGA

      • 1.1 Definition of Antifuse FPGA
      • 1.2 Antifuse FPGA Segment by Type
        • 1.2.1 Global Antifuse FPGA Production Growth Rate Comparison by Types (2014-2025)
        • 1.2.2 Less Than 28 nm
        • 1.2.3 28-90 nm
        • 1.2.4 More Than 90 nm
      • 1.3 Antifuse FPGA Segment by Applications
        • 1.3.1 Global Antifuse FPGA Consumption Comparison by Applications (2014-2025)
        • 1.3.2 Telecommunications
        • 1.3.3 Automotive
        • 1.3.4 Industrial Control
        • 1.3.5 Consumer Products
        • 1.3.6 Data Center
        • 1.3.7 Medical
        • 1.3.8 Others
      • 1.4 Global Antifuse FPGA Overall Market
        • 1.4.1 Global Antifuse FPGA Revenue (2014-2025)
        • 1.4.2 Global Antifuse FPGA Production (2014-2025)
        • 1.4.3 North America Antifuse FPGA Status and Prospect (2014-2025)
        • 1.4.4 Europe Antifuse FPGA Status and Prospect (2014-2025)
        • 1.4.5 China Antifuse FPGA Status and Prospect (2014-2025)
        • 1.4.6 Japan Antifuse FPGA Status and Prospect (2014-2025)
        • 1.4.7 Southeast Asia Antifuse FPGA Status and Prospect (2014-2025)
        • 1.4.8 India Antifuse FPGA Status and Prospect (2014-2025)

      2 Manufacturing Cost Structure Analysis

      • 2.1 Raw Material and Suppliers
      • 2.2 Manufacturing Cost Structure Analysis of Antifuse FPGA
      • 2.3 Manufacturing Process Analysis of Antifuse FPGA
      • 2.4 Industry Chain Structure of Antifuse FPGA

      3 Development and Manufacturing Plants Analysis of Antifuse FPGA

      • 3.1 Capacity and Commercial Production Date
      • 3.2 Global Antifuse FPGA Manufacturing Plants Distribution
      • 3.3 Major Manufacturers Technology Source and Market Position of Antifuse FPGA
      • 3.4 Recent Development and Expansion Plans

      4 Key Figures of Major Manufacturers

      • 4.1 Antifuse FPGA Production and Capacity Analysis
      • 4.2 Antifuse FPGA Revenue Analysis
      • 4.3 Antifuse FPGA Price Analysis
      • 4.4 Market Concentration Degree

      5 Antifuse FPGA Regional Market Analysis

      • 5.1 Antifuse FPGA Production by Regions
        • 5.1.1 Global Antifuse FPGA Production by Regions
        • 5.1.2 Global Antifuse FPGA Revenue by Regions
      • 5.2 Antifuse FPGA Consumption by Regions
      • 5.3 North America Antifuse FPGA Market Analysis
        • 5.3.1 North America Antifuse FPGA Production
        • 5.3.2 North America Antifuse FPGA Revenue
        • 5.3.3 Key Manufacturers in North America
        • 5.3.4 North America Antifuse FPGA Import and Export
      • 5.4 Europe Antifuse FPGA Market Analysis
        • 5.4.1 Europe Antifuse FPGA Production
        • 5.4.2 Europe Antifuse FPGA Revenue
        • 5.4.3 Key Manufacturers in Europe
        • 5.4.4 Europe Antifuse FPGA Import and Export
      • 5.5 China Antifuse FPGA Market Analysis
        • 5.5.1 China Antifuse FPGA Production
        • 5.5.2 China Antifuse FPGA Revenue
        • 5.5.3 Key Manufacturers in China
        • 5.5.4 China Antifuse FPGA Import and Export
      • 5.6 Japan Antifuse FPGA Market Analysis
        • 5.6.1 Japan Antifuse FPGA Production
        • 5.6.2 Japan Antifuse FPGA Revenue
        • 5.6.3 Key Manufacturers in Japan
        • 5.6.4 Japan Antifuse FPGA Import and Export
      • 5.7 Southeast Asia Antifuse FPGA Market Analysis
        • 5.7.1 Southeast Asia Antifuse FPGA Production
        • 5.7.2 Southeast Asia Antifuse FPGA Revenue
        • 5.7.3 Key Manufacturers in Southeast Asia
        • 5.7.4 Southeast Asia Antifuse FPGA Import and Export
      • 5.8 India Antifuse FPGA Market Analysis
        • 5.8.1 India Antifuse FPGA Production
        • 5.8.2 India Antifuse FPGA Revenue
        • 5.8.3 Key Manufacturers in India
        • 5.8.4 India Antifuse FPGA Import and Export

      6 Antifuse FPGA Segment Market Analysis (by Type)

      • 6.1 Global Antifuse FPGA Production by Type
      • 6.2 Global Antifuse FPGA Revenue by Type
      • 6.3 Antifuse FPGA Price by Type

      7 Antifuse FPGA Segment Market Analysis (by Application)

      • 7.1 Global Antifuse FPGA Consumption by Application
      • 7.2 Global Antifuse FPGA Consumption Market Share by Application (2014-2019)

      8 Antifuse FPGA Major Manufacturers Analysis

      • 8.1 Xilinx (US)
        • 8.1.1 Xilinx (US) Antifuse FPGA Production Sites and Area Served
        • 8.1.2 Xilinx (US) Product Introduction, Application and Specification
        • 8.1.3 Xilinx (US) Antifuse FPGA Production, Revenue, Ex-factory Price and Gross Margin (2014-2019)
        • 8.1.4 Main Business and Markets Served
      • 8.2 Intel (US)
        • 8.2.1 Intel (US) Antifuse FPGA Production Sites and Area Served
        • 8.2.2 Intel (US) Product Introduction, Application and Specification
        • 8.2.3 Intel (US) Antifuse FPGA Production, Revenue, Ex-factory Price and Gross Margin (2014-2019)
        • 8.2.4 Main Business and Markets Served
      • 8.3 Lattice Semiconductor (US)
        • 8.3.1 Lattice Semiconductor (US) Antifuse FPGA Production Sites and Area Served
        • 8.3.2 Lattice Semiconductor (US) Product Introduction, Application and Specification
        • 8.3.3 Lattice Semiconductor (US) Antifuse FPGA Production, Revenue, Ex-factory Price and Gross Margin (2014-2019)
        • 8.3.4 Main Business and Markets Served
      • 8.4 Microsemi (US)
        • 8.4.1 Microsemi (US) Antifuse FPGA Production Sites and Area Served
        • 8.4.2 Microsemi (US) Product Introduction, Application and Specification
        • 8.4.3 Microsemi (US) Antifuse FPGA Production, Revenue, Ex-factory Price and Gross Margin (2014-2019)
        • 8.4.4 Main Business and Markets Served
      • 8.5 QuickLogic (US)
        • 8.5.1 QuickLogic (US) Antifuse FPGA Production Sites and Area Served
        • 8.5.2 QuickLogic (US) Product Introduction, Application and Specification
        • 8.5.3 QuickLogic (US) Antifuse FPGA Production, Revenue, Ex-factory Price and Gross Margin (2014-2019)
        • 8.5.4 Main Business and Markets Served
      • 8.6 TSMC (Taiwan)
        • 8.6.1 TSMC (Taiwan) Antifuse FPGA Production Sites and Area Served
        • 8.6.2 TSMC (Taiwan) Product Introduction, Application and Specification
        • 8.6.3 TSMC (Taiwan) Antifuse FPGA Production, Revenue, Ex-factory Price and Gross Margin (2014-2019)
        • 8.6.4 Main Business and Markets Served
      • 8.7 Microchip (US)
        • 8.7.1 Microchip (US) Antifuse FPGA Production Sites and Area Served
        • 8.7.2 Microchip (US) Product Introduction, Application and Specification
        • 8.7.3 Microchip (US) Antifuse FPGA Production, Revenue, Ex-factory Price and Gross Margin (2014-2019)
        • 8.7.4 Main Business and Markets Served
      • 8.8 United Microelectronics (Taiwan)
        • 8.8.1 United Microelectronics (Taiwan) Antifuse FPGA Production Sites and Area Served
        • 8.8.2 United Microelectronics (Taiwan) Product Introduction, Application and Specification
        • 8.8.3 United Microelectronics (Taiwan) Antifuse FPGA Production, Revenue, Ex-factory Price and Gross Margin (2014-2019)
        • 8.8.4 Main Business and Markets Served
      • 8.9 GLOBALFOUNDRIES (US)
        • 8.9.1 GLOBALFOUNDRIES (US) Antifuse FPGA Production Sites and Area Served
        • 8.9.2 GLOBALFOUNDRIES (US) Product Introduction, Application and Specification
        • 8.9.3 GLOBALFOUNDRIES (US) Antifuse FPGA Production, Revenue, Ex-factory Price and Gross Margin (2014-2019)
        • 8.9.4 Main Business and Markets Served
      • 8.10 Achronix (US)
        • 8.10.1 Achronix (US) Antifuse FPGA Production Sites and Area Served
        • 8.10.2 Achronix (US) Product Introduction, Application and Specification
        • 8.10.3 Achronix (US) Antifuse FPGA Production, Revenue, Ex-factory Price and Gross Margin (2014-2019)
        • 8.10.4 Main Business and Markets Served
      • 8.11 S2C Inc (US)

      9 Development Trend of Analysis of Antifuse FPGA Market

      • 9.1 Global Antifuse FPGA Market Trend Analysis
        • 9.1.1 Global Antifuse FPGA Market Size (Volume and Value) Forecast 2019-2025
      • 9.2 Antifuse FPGA Regional Market Trend
        • 9.2.1 North America Antifuse FPGA Forecast 2019-2025
        • 9.2.2 Europe Antifuse FPGA Forecast 2019-2025
        • 9.2.3 China Antifuse FPGA Forecast 2019-2025
        • 9.2.4 Japan Antifuse FPGA Forecast 2019-2025
        • 9.2.5 Southeast Asia Antifuse FPGA Forecast 2019-2025
        • 9.2.6 India Antifuse FPGA Forecast 2019-2025
      • 9.3 Antifuse FPGA Market Trend (Product Type)
      • 9.4 Antifuse FPGA Market Trend (Application)
      • 10.1 Marketing Channel
        • 10.1.1 Direct Marketing
        • 10.1.2 Indirect Marketing
      • 10.3 Antifuse FPGA Customers

      11 Market Dynamics

      • 11.1 Market Trends
      • 11.2 Opportunities
      • 11.3 Market Drivers
      • 11.4 Challenges
      • 11.5 Influence Factors

      12 Conclusion

        13 Appendix

        • 13.1 Methodology/Research Approach
          • 13.1.1 Research Programs/Design
          • 13.1.2 Market Size Estimation
          • 13.1.3 Market Breakdown and Data Triangulation
        • 13.2 Data Source
          • 13.2.1 Secondary Sources
          • 13.2.2 Primary Sources
        • 13.3 Author List

        Summary:
        Get latest Market Research Reports on Antifuse FPGA. Industry analysis & Market Report on Antifuse FPGA is a syndicated market report, published as Global Antifuse FPGA Market Professional Survey Report 2019. It is complete Research Study and Industry Analysis of Antifuse FPGA market, to understand, Market Demand, Growth, trends analysis and Factor Influencing market.

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