Product Code: MRFR/SEM/0513-CR
Global Field Programmable Gate Array (FPGA) Market Research Report Forecast to 2030
Market Overview:
Field Programmable Gate Array (FPGA) Market is anticipated to witness an incredible CAGR CAGR of 16.26% during the review period. Expanded IoT infiltration will raise interest, and the global framework as a help area will get momentum are the key market drivers upgrading the market development.
The quicker speed of fulfilling new application needs, for example, adding bigger screens and more sensors to cell phones, has come about in cell phones and cell phone central processors with very short advancement cycles. Because of the need to satisfy cutoff times, there is a more prominent reliance on completely stacked application processors like the Qualcomm Snapdragon or the TI OMAP. In any case, enormous chips, like application processors, expect a few years to make, which suggests that the processors open today were determined quite a while back. New prerequisites are added when the processors are made free. Thus, application designers should delay their thoughts until a processor viable with their ideas is accessible. FPGAs can make up for this shortcoming in the computer processor advancement cycle. In light of the adaptability, they accommodate application designers, FPGAs are quickly being remembered for cell phones and cell phones.
Market Segmentation
Based on technology, the Field Programmable Gate Array (FPGA) Market is segmented into SRAM-based, anti-fuse-based, and flash-based FPGA.
Three categories-Low-End FPGA, Mid-Range FPGA, and High-End FPGA-are used to categorize the configuration segment.
The FPGA market is divided into data processing, consumer electronics, industrial, military and aerospace, automotive, telecom, and other categories based on application.
Regional Insights
North America dominates the global Field Programmable Gate Array (FPGA) market owing to the expanding IoT, simulated intelligence, AI, and enormous information investigations in the US and Canada. This will drive the North American FPGA industry ahead by expanding interest in superior execution processing in server farms.
Europe has the second-biggest FPGA market owing to the Developing interest for FPGAs in the car area because government security rules is one of the key drivers driving market advancement in Germany. Moreover, the
From 2023 to 2032, the Asia-Pacific Field Programmable Gate Array (FPGA) Market will be created at the fastest CAGR. FPGAs are progressively being utilized in communicated and proficient AV frameworks, server farms, and auto silicon and IP answers for driver help frameworks and in-vehicle amusement, which helps the country's modern development.
Major Players
The prominent players in the Field Programmable Gate Array (FPGA) market are Altera Corporation, Achronix Semiconductor Corporation, Arm Ltd., Cypress Semiconductors Corporation, Atmel Corporation, Teledyne E2V Ltd., Microsemi Corporation, Quicklogic Corporation, Lattice Semiconductor, Intel Corporation, Microchip Technology Incorporated and GOWIN Semiconductor Corporation.
TABLE OF CONTENTS
1 EXECUTIVE SUMMARY
2 INDUSTRY OVERVIEW
- 2.1 FIELD PROGRAMMABLE GATE ARRAY (FPGA) MARKET OVERVIEW 20
- 2.1.1 FIELD PROGRAMMABLE GATE ARRAY (FPGA) MARKET 20
- 2.1.2 MARKET STATUS AND OUTLOOK 20
- 2.2 GLOBAL FIELD PROGRAMMABLE GATE ARRAY (FPGA) MARKET SIZE AND ANALYSIS BY REGIONS (2023-2032) 20
- 2.2.1 USA FIELD PROGRAMMABLE GATE ARRAY (FPGA) MARKET STATUS AND OUTLOOK 22
- 2.2.2 EUROPE FIELD PROGRAMMABLE GATE ARRAY (FPGA) MARKET STATUS AND OUTLOOK 22
- 2.2.3 CHINA FIELD PROGRAMMABLE GATE ARRAY (FPGA) MARKET STATUS AND OUTLOOK 23
- 2.2.4 JAPAN FIELD PROGRAMMABLE GATE ARRAY (FPGA) MARKET STATUS AND OUTLOOK 23
- 2.2.5 INDIA FIELD PROGRAMMABLE GATE ARRAY (FPGA) MARKET STATUS AND OUTLOOK 24
- 2.2.6 SOUTHEAST ASIA FIELD PROGRAMMABLE GATE ARRAY (FPGA) MARKET STATUS AND OUTLOOK 24
- 2.2.7 REST OF THE WORLD FIELD PROGRAMMABLE GATE ARRAY (FPGA) MARKET STATUS AND OUTLOOK 25
- 2.3 CLASSIFICATION OF FIELD PROGRAMMABLE GATE ARRAY (FPGA) BY TECHNOLOGY 25
- 2.3.1 GLOBAL FIELD PROGRAMMABLE GATE ARRAY (FPGA) REVENUE (MILLION USD) AND GROWTH (%) COMPARISON BY TECHNOLOGY (2023-2032) 25
- 2.3.2 GLOBAL FIELD PROGRAMMABLE GATE ARRAY (FPGA) MARKET SHARE (%) BY TECHNOLOGY IN 2017 26
- 2.4 CLASSIFICATION OF FIELD PROGRAMMABLE GATE ARRAY (FPGA) BY APPLICATION 27
- 2.4.1 GLOBAL FIELD PROGRAMMABLE GATE ARRAY (FPGA) REVENUE (MILLION USD) AND GROWTH (%) COMPARISON BY APPLICATION (2023-2032) 27
- 2.4.2 GLOBAL FIELD PROGRAMMABLE GATE ARRAY (FPGA) MARKET SHARE (%) BY APPLICATION IN 2017 28
3 RESEARCH METHODOLOGY
- 3.1 RESEARCH PROCESS 30
- 3.2 SCOPE OF THE STUDY 34
- 3.3 MARKET STRUCTURE 34
- 3.4 LIST OF ASSUMPTIONS 35
- 3.5 FORECAST MODEL 36
4 FIELD PROGRAMMABLE GATE ARRAY (FPGA) MARKET DYNAMICS
- 4.1 INTRODUCTION 38
- 4.2 DRIVERS 38
- 4.2.1 FPGA'S DEPLOYMENT ACROSS TELECOMMUNICATION SECTOR FOR INCREASING THE NETWORK BANDWIDTH 38
- 4.2.2 EFFICIENCY OF FPGAS OVER ASICS 39
- 4.3 MARKET RESTRAINT 39
- 4.3.1 SECURITY CONCERNS WITH FPGAS 39
- 4.4 OPPORTUNITIES 40
- 4.4.1 ADOPTION OF FPGA IN SMARTPHONES AND MOBILE DEVICES AND WEARABLE 40
- 4.4.2 RISING USAGE OF FPGA IN THE AUTOMOBILE SECTOR 40
- 4.5 CHALLENGE 41
- 4.5.1 DESIGNING COMPLEXITIES 41
- 4.6 GLOBALIZATION & TRADE 41
- 4.6.1 BUSINESS LOCATIONS 41
- 4.6.2 SUPPLY CHANNELS 41
- 4.6.3 BARRIERS TO ENTRY 41
- 4.7 SUPPLY CHAIN ANALYSIS 42
- 4.7.1 RAW MATERIAL SUPPLIERS 42
- 4.7.2 COMPONENT MANUFACTURERS 42
- 4.7.3 DESIGNERS AND PROGRAMMERS 42
- 4.7.4 SYSTEM INTEGRATORS 43
- 4.7.5 END-USERS 43
- 4.8 PRODUCTION PROCESS 43
- 4.9 END -USER MARKET ANALYSIS 43
5 GLOBAL FIELD PROGRAMMABLE GATE ARRAY (FPGA) MARKET SIZE, BY TECHNOLOGY (2023-2032)
- 5.1 GLOBAL FIELD PROGRAMMABLE GATE ARRAY (FPGA) MARKET SIZE BY TECHNOLOGY (2023-2032) 45
- 5.1.1 SRAM PROGRAMMED FPGA 46
- 5.1.2 ANTIFUSE PROGRAMMED FPGA 47
- 5.1.3 EEPROM PROGRAMMED FPGA 47
6 GLOBAL FIELD PROGRAMMABLE GATE ARRAY (FPGA) MARKET SIZE, BY APPLICATION (2023-2032)
- 6.1 GLOBAL FIELD PROGRAMMABLE GATE ARRAY (FPGA) MARKET SIZE BY APPLICATION (2023-2032) 49
- 6.1.1 TELECOMMUNICATION 50
- 6.1.2 CONSUMER ELECTRONICS 51
- 6.1.3 AUTOMOTIVE 51
- 6.1.4 DATA CENTER 51
- 6.1.5 INDUSTRIAL 51
7 GLOBAL FIELD PROGRAMMABLE GATE ARRAY (FPGA) MARKET, BY REGION
- 7.1 GLOBAL FIELD PROGRAMMABLE GATE ARRAY (FPGA) DEVELOPMENT STATUS AND OUTLOOK 53
- 7.2 NORTH AMERICA FIELD PROGRAMMABLE GATE ARRAY (FPGA) DEVELOPMENT STATUS AND OUTLOOK 54
- 7.2.1 NORTH AMERICA FIELD PROGRAMMABLE GATE ARRAY (FPGA) MARKET 54
- 7.2.1.1 US 58
- 7.2.1.2 CANADA 59
- 7.2.1.3 MEXICO 60
- 7.3 EUROPE FIELD PROGRAMMABLE GATE ARRAY (FPGA) DEVELOPMENT STATUS AND OUTLOOK 62
- 7.3.1 EUROPE FIELD PROGRAMMABLE GATE ARRAY (FPGA) MARKET 62
- 7.3.1.1 UK 66
- 7.3.1.2 GERMANY 67
- 7.3.1.3 FRANCE 69
- 7.3.1.4 REST OF EUROPE 70
- 7.4 ASIA-PACIFIC FIELD PROGRAMMABLE GATE ARRAY (FPGA) DEVELOPMENT STATUS AND OUTLOOK 72
- 7.4.1 ASIA-PACIFIC FIELD PROGRAMMABLE GATE ARRAY (FPGA) MARKET 72
- 7.4.1.1 CHINA 76
- 7.4.1.2 JAPAN 77
- 7.4.1.3 INDIA 78
- 7.4.1.4 SOUTHEAST ASIA 79
- 7.4.1.5 REST OF ASIA-PACIFIC 81
- 7.5 REST OF THE WORLD (ROW) FIELD PROGRAMMABLE GATE ARRAY (FPGA) DEVELOPMENT STATUS AND OUTLOOK 83
- 7.5.1 REST OF THE WORLD FIELD PROGRAMMABLE GATE ARRAY (FPGA) MARKET 83
8 GLOBAL FIELD PROGRAMMABLE GATE ARRAY (FPGA) SHIPMENTS, SUPPLY (PRODUCTION), CONSUMPTION, EXPORT, IMPORT (2023-2032)
- 8.1 GLOBAL FIELD PROGRAMMABLE GATE ARRAY (FPGA) SHIPMENTS, BY REGION (2023-2032) K UNITS 88
- 8.1.1 USA FIELD PROGRAMMABLE GATE ARRAY (FPGA)PRODUCTION, CONSUMPTION, EXPORT, IMPORT (2023-2032) 89
9 GLOBAL FIELD PROGRAMMABLE GATE ARRAY (FPGA) CONSUMPTION BY TECHNOLOGY (2023-2032)
- 9.1 USA FPGA MARKET CONSUMPTION, BY TECHNOLOGY (K UNITS) 94
- 9.2 EUROPE FPGA MARKET CONSUMPTION, BY TECHNOLOGY (K UNITS) 94
- 9.3 CHINA FPGA MARKET CONSUMPTION, BY TECHNOLOGY (K UNITS) 95
- 9.4 JAPAN FPGA MARKET CONSUMPTION, BY TECHNOLOGY (K UNITS) 95
- 9.5 INDIA FPGA MARKET CONSUMPTION, BY TECHNOLOGY (K UNITS) 96
- 9.6 SOUTHEAST ASIA FPGA MARKET CONSUMPTION, BY TECHNOLOGY (K UNITS) 96
- 9.7 ROW FPGA MARKET CONSUMPTION, BY TECHNOLOGY (K UNITS) 97
- 9.8 GLOBAL FIELD PROGRAMMABLE GATE ARRAY (FPGA) CONSUMPTION BY APPLICATION (2023-2032) 97
10 COMPANY PROFILES
- 10.1 XILINX INC. 99
- 10.1.1 COMPANY OVERVIEW 99
- 10.1.2 FINANCIAL OVERVIEW 99
- 10.1.3 PRODUCTS/SOLUTION OFFERED 100
- 10.2 MICROCHIP TECHNOLOGY INC. 101
- 10.2.1 COMPANY OVERVIEW 101
- 10.2.2 FINANCIAL OVERVIEW 101
- 10.2.3 PRODUCTS/SOLUTION OFFERED 102
- 10.3 ACHRONIX SEMICONDUCTOR CORPORATION 103
- 10.3.1 COMPANY OVERVIEW 103
- 10.3.2 PRODUCTS/SOLUTION OFFERED 103
- 10.4 CYPRESS SEMICONDUCTOR CORPORATION 104
- 10.4.1 COMPANY OVERVIEW 104
- 10.4.2 FINANCIAL OVERVIEW 104
- 10.4.3 PRODUCTS/SOLUTION OFFERED 105
- 10.5 TEXAS INSTRUMENTS INCORPORATED 106
- 10.5.1 COMPANY OVERVIEW 106
- 10.5.2 FINANCIAL OVERVIEW 106
- 10.5.3 PRODUCTS/SOLUTION OFFERED 107
- 10.6 LATTICE SEMICONDUCTOR 108
- 10.6.1 COMPANY OVERVIEW 108
- 10.6.2 FINANCIAL OVERVIEW 108
- 10.6.3 PRODUCTS/SOLUTION OFFERED 109
- 10.7 INTEL CORPORATION 110
- 10.7.1 COMPANY OVERVIEW 110
- 10.7.2 FINANCIAL OVERVIEW 110
- 10.7.3 PRODUCTS/SOLUTION OFFERED 111
- 10.8 QUICKLOGIC CORP. 112
- 10.8.1 COMPANY OVERVIEW 112
- 10.8.2 FINANCIAL OVERVIEW 112
- 10.8.3 PRODUCTS/SOLUTION OFFERED 113
- 10.9 TELEDYNE TECHNOLOGIES INCORPORATED 114
- 10.9.1 COMPANY OVERVIEW 114
- 10.9.2 FINANCIAL OVERVIEW 114
- 10.9.3 PRODUCTS/SOLUTION OFFERED 115