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全球现场可编程逻辑门阵列(FPGA)市场报告(2017-2021年)

Global Field-Programmable Gate Array Market 2017-2021

加工时间:2017-07-17 信息来源:EMIS 索取原文[63 页]
关键词:现场可编程逻辑门阵列(FPGA);逻辑器件;硬件处理
摘 要:

An FPGA is a logic device, wherein the function can be changed while the device is in place within its working environment, allowing the hardware processing of a system to be altered by an external configuration loading process. Configuration bitstreams for FPGAs can be used to change the logical processing of input data, and so alter the functionality of a device. FPGAs are mainly used in automotive, medical, factory equipment, and defense equipment that require rapid concurrent processing.This report presents a detailed study of the present scenario and growth prospects of the global field-programmable gate array (FPGA) market for the period 2017-2021. It considers 2016 as the base year and forecasts the market value through to 2021.


目 录:

PART 01: Executive summary 6

PART 02: Scope of the report 18

Market coverage 18

Base year and forecast period 18

Vendor segmentation 18

Market segmentation 19

Geographical segmentation 20

Top-vendor offerings 21

PART 03: Market research methodology 24

Research methodology 24

Economic indicators 24

PART 04: Introduction 25

Key market highlights 25

PART 05: Market landscape 29

Market overview 29

Market size and forecast 31

Five forces analysis 32

PART 06: Market segmentation by application 33

Global FPGA market by application 2016-2021 33

Telecommunications segment 34

Industrial segment 35

Consumer electronics segment 36

Data processing segment 37

Automotive segment 38

Others segment 39

PART 07: Market segmentation by technology 40

Global FPGA market by type 2016-2021 40

PART 08: Geographical segmentation 41

Global FPGA market by geography 41

APAC 42

EMEA 43

Americas 44

PART 09: Key leading countries 45

China 45

South Korea 46

Japan 46

PART 10: Market drivers 47

High adoption of smartphones and tablets globally 47

Demand for optimization in big data analytics 49

Development of efficient FPGAs 50

PART 11: Impact of drivers 52

PART 12: Market challenges 54

Cloning concerns in FPGA design 54

Potential vulnerabilities in FPGA design and

configuration 54

Risks associated with foreign business operations

outside US 55

PART 13: Impact of drivers and challenges 56

PART 14: Market trends 57

Increased proliferation of IoT 57

Automation in automobiles 57

Shift to PLDs from ASICs and ASSPs 58

Shift to silicon convergence and associated

semiconductor economics 58

Increasing number of embedded processors in FPGA

design 59

PART 15: Vendor landscape 60

Competitive scenario 60

Other prominent vendors 62

PART 16: Appendix 63

List of abbreviations 63

PART 17: Explore Technavio 65


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