Hardware assisted verification (HAV) market is set to grow at a significant rate through 2032 owing to the increasing adoption of connected and smart devices, which has surged the demand for ML & AI technologies. The approach enables the end users to establish cross-device connectivity during the manufacturing process and support operators to rapidly verify SoC designs, which is resulting in an increasing demand for HAV.
Besides, key market players are attempting to expand their horizons and presence in the market through strategic collaborations and new product launches. To cite an example, in March 2022, TATA Elxsi entered into a strategic partnership with Renesas Electronics Corporation, with the aim of developing new integrated solutions to be used in EVs. As per the agreement, Renesas will provide TATA Elxsi with its deep expertise in semiconductor production and designing, which will then be used for critical EV subsystems, comprising battery management systems and motor control units.
Overall, the hardware assisted verification (HAV) market is bifurcated in terms of platform, application, and region.
In terms of platform, the hardware assisted verification (HAV) market is likely to be characterized by the FPGA prototyping segment. Robust operation performance and low initial costs are the major factors behind the adoption of FPGA prototyping in various chipset design verifications. Besides, FPGA prototyping can be equipped with different tools to enhance its service offerings, which will further drive the market through the analysis timeframe.
Based on application, the market will be defined through the aerospace & defense segment, which will grow at more than 10% CAGR through the estimated timespan. The increasing requirement for secured communication equipment in satellites and UAS (Unmanned Aircraft Systems) has created electric design complexities, as a single device needs to be integrated with thousands of ICs. This requires the vital use of hardware assisted verification tools.
In the regional context, the HAV market in the MEA region is expected to grow at a steady rate through the estimated timespan. The widespread adoption of the 5G network as a part of digital transformation and the proliferation of smart cities in the GCC region will lead to an increase in the adoption of HAV for testing and verification of ICs. Besides, it will also help boost their network in the communication sector in the region.
Some of the key participants in the HAV market comprise Cadence Design Systems Inc., Synopsys Inc., Hardent, and Siemens AG. Apart from offering strong verification solutions for industries, these companies are currently focusing on innovating their solutions, according to the changing demands of the end users.
Chapter 1 Methodology and Scope
1.1 Scope & definitions
1.2 Base estimates and calculations
1.3 Forecast calculations
1.4 Data Sources
1.4.1 Primary
1.4.2 Secondary
1.4.2.1 Paid sources
1.4.2.2 Public sources
Chapter 2 Executive Summary
2.1 Hardware assisted verification industry 360 degree synopsis, 2018-2032
2.2 Business trends
2.2.1 Total Addressable Market (TAM), 2023-2032
2.3 Platform trends
2.4 Application trends
2.5 Regional trends
Chapter 3 Hardware Assisted Verification Market Industry Insights
3.1 Introduction
3.2 Impact of COVID-19
3.2.1 North America
3.2.2 Europe
3.2.3 Asia Pacific
3.2.4 Latin America
3.2.5 MEA
3.3 Russia- Ukraine war impact on hardware assisted verification industry
3.4 Industry ecosystem analysis
3.4.1 Hardware providers
3.4.2 System integrators
3.4.3 End use landscape
3.4.4 Profit margin analysis
3.4.5 Distribution channel analysis
3.4.6 Vendor matrix
3.5 Technology & innovation landscape
3.6 Patent analysis
3.7 Key initiative and news
3.8 Regulatory landscape
3.8.1 North America
3.8.2 Europe
3.8.3 Asia Pacific
3.8.4 Latin America
3.8.5 MEA
3.9 Industry impact forces
3.9.1 Growth drivers
3.9.1.1 Increasing adoption of AI and machine learning in hardware assisted verification
3.9.1.2 Surge in the number of electronic products in vehicles
3.9.1.3 Rising adoption of FPGA in the aerospace & defense applications will boost the market value
3.9.1.4 Growing trends toward industrial automation and IIoT in developing nations
3.9.2 Industry pitfalls & challenges
3.9.2.1 High cost of implementation & maintenance
3.10 Growth potential analysis
3.11 Porter's analysis
3.12 PESTEL analysis
Chapter 4 Competitive Landscape, 2022
4.1 Introduction
4.2 Company market share, 2022
4.3 Competitive analysis of major market players, 2022
4.3.1 Synopsys Inc
4.3.2 Siemens AG (Mentor Graphics)
4.3.3 Cadence Design Systems, Inc
4.3.4 Blue Pearl Software
4.3.5 Aldec Inc
4.3.6 Agnisys
4.3.7 EMA Design Automation Inc.
4.4 Competitive analysis of innovation leaders, 2022
4.4.1 S2C EDA Solutions
4.4.2 Embien Technologies India Pvt Ltd
4.4.3 Inno-Logic
4.4.4 Logic Fruit Technologies
4.4.5 Corigine, Inc
4.4.6 Avery Design Systems, Inc.
4.5 Competitive positioning matrix
4.6 Strategic outlook matrix
Chapter 5 Hardware-Assisted Verification Market, By Platform
5.1 Key trends, by platform
5.2 Hardware emulation
5.2.1 Market estimates and forecast, 2018-2032
5.3 FPGA prototyping
5.3.1 Market estimates and forecast, 2018-2032
Chapter 6 Hardware assisted verification Market, By Application
6.1 Key trends, by application
6.2 Automotive
6.2.1 Market estimates and forecast, 2018-2032
6.3 Medical
6.3.1 Market estimates and forecast, 2018-2032
6.4 Telecom
6.4.1 Market estimates and forecast, 2018-2032
6.5 Others
6.5.1 Market estimates and forecast, 2018-2032
6.6 Medical
6.6.1 Market estimates and forecast, 2018-2032
6.7 Telecom
6.7.1 Market estimates and forecast, 2018-2032
6.8 Others
6.8.1 Market estimates and forecast, 2018-2032
Chapter 7 Hardware assisted verification Market, By Region
7.1 Key trends, by region
7.2 North America
7.2.1 Market estimates and forecast, by platform, 2018-2032
7.2.2 Market estimates and forecast, by application, 2018-2032
7.2.3 U.S.
7.2.3.1 Market estimates and forecast, by platform, 2018-2032
7.2.3.2 Market estimates and forecast, by application, 2018-2032
7.2.4 Canada
7.2.4.1 Market estimates and forecast, by platform, 2018-2032
7.2.4.2 Market estimates and forecast, by application, 2018-2032
7.3 Europe
7.3.1 Market estimates and forecast, by platform, 2018-2032
7.3.2 Market estimates and forecast, by application, 2018-2032
7.3.3 UK
7.3.3.1 Market estimates and forecast, by platform, 2018-2032
7.3.3.2 Market estimates and forecast, by application, 2018-2032
7.3.4 Germany
7.3.4.1 Market estimates and forecast, by platform, 2018-2032
7.3.4.2 Market estimates and forecast, by application, 2018-2032
7.3.5 France
7.3.5.1 Market estimates and forecast, by platform, 2018-2032
7.3.5.2 Market estimates and forecast, by application, 2018-2032
7.3.6 Italy
7.3.6.1 Market estimates and forecast, by platform, 2018-2032
7.3.6.2 Market estimates and forecast, by application, 2018-2032
7.3.7 Russia
7.3.7.1 Market estimates and forecast, by platform, 2018-2032
7.3.7.2 Market estimates and forecast, by application, 2018-2032
7.4 Asia Pacific
7.4.1 Market estimates and forecast, by platform, 2018-2032
7.4.2 Market estimates and forecast, by application, 2018-2032
7.4.3 China
7.4.3.1 Market estimates and forecast, by platform, 2018-2032
7.4.3.2 Market estimates and forecast, by application, 2018-2032
7.4.4 India
7.4.4.1 Market estimates and forecast, by platform, 2018-2032
7.4.4.2 Market estimates and forecast, by application, 2018-2032
7.4.5 Japan
7.4.5.1 Market estimates and forecast, by platform, 2018-2032
7.4.5.2 Market estimates and forecast, by application, 2018-2032
7.4.6 South Korea
7.4.6.1 Market estimates and forecast, by platform, 2018-2032
7.4.6.2 Market estimates and forecast, by application, 2018-2032
7.5 Latin America
7.5.1 Market estimates and forecast, by platform, 2018-2032
7.5.2 Market estimates and forecast, by application, 2018-2032
7.5.3 Brazil
7.5.3.1 Market estimates and forecast, by platform, 2018-2032
7.5.3.2 Market estimates and forecast, by application, 2018-2032
7.5.4 Mexico
7.5.4.1 Market estimates and forecast, by platform, 2018-2032
7.5.4.2 Market estimates and forecast, by application, 2018-2032
7.6 MEA
7.6.1 Market estimates and forecast, by platform, 2018-2032
7.6.2 Market estimates and forecast, by application, 2018-2032
7.6.3 GCC
7.6.3.1 Market estimates and forecast, by platform, 2018-2032
7.6.3.2 Market estimates and forecast, by application, 2018-2032
7.6.4 South Africa
7.6.4.1 Market estimates and forecast, by platform, 2018-2032
7.6.4.2 Market estimates and forecast, by application, 2018-2032
Chapter 8 Company Profiles
8.1 Agnisys Inc.
8.1.1 Business Overview
8.1.2 Financial Data
8.1.3 Product Landscape
8.1.4 Strategic Outlook
8.1.5 SWOT Analysis
8.2 Aldec Inc.
8.2.1 Business Overview
8.2.2 Financial Data
8.2.3 Product Landscape
8.2.4 Strategic Outlook
8.2.5 SWOT Analysis
8.3 Ansys, Inc.
8.3.1 Business Overview
8.3.2 Financial Data
8.3.3 Product Landscape
8.3.4 Strategic Outlook
8.3.5 SWOT Analysis
8.4 Blue Pearl Software Inc.
8.4.1 Business Overview
8.4.2 Financial Data
8.4.3 Product Landscape
8.4.4 Strategic Outlook
8.4.5 SWOT Analysis
8.5 Cadence Design Systems, Inc.
8.5.1 Business Overview
8.5.2 Financial Data
8.5.3 Product Landscape
8.5.4 Strategic Outlook
8.5.5 SWOT Analysis
8.6 EMA Design Automation Inc.
8.6.1 Business Overview
8.6.2 Financial Data
8.6.3 Product Landscape
8.6.4 Strategic Outlook
8.6.5 SWOT Analysis
8.7 Fishtail Design Automation
8.7.1 Business Overview
8.7.2 Financial Data
8.7.3 Product Landscape
8.7.4 Strategic Outlook
8.7.5 SWOT Analysis
8.8 Hardent
8.8.1 Business Overview
8.8.2 Financial Data
8.8.3 Product Landscape
8.8.4 Strategic Outlook
8.8.5 SWOT Analysis
8.9 Innovative Logic
8.9.1 Business Overview
8.9.2 Financial Data
8.9.3 Product Landscape
8.9.4 Strategic Outlook
8.9.5 SWOT Analysis
8.10 Real Intent, Inc.
8.10.1 Business Overview
8.10.2 Financial Data
8.10.3 Product Landscape
8.10.4 Strategic Outlook
8.10.5 SWOT Analysis
8.11 Siemens AG
8.11.1 Business Overview
8.11.2 Financial Data
8.11.3 Product Landscape
8.11.4 Strategic Outlook
8.11.5 SWOT Analysis
8.12 SynaptiCAD Sales, Inc.
8.12.1 Business Overview
8.12.2 Financial Data
8.12.3 Product Landscape
8.12.4 Strategic Outlook
8.12.5 SWOT Analysis
8.13 Synopsys, Inc.
8.13.1 Business Overview
8.13.2 Financial Data
8.13.3 Product Landscape
8.13.4 Strategic Outlook
8.13.5 SWOT Analysis
8.14 Temento Systems SAS.
8.14.1 Business Overview
8.14.2 Financial Data
8.14.3 Product Landscape
8.14.4 Strategic Outlook
8.14.5 SWOT Analysis
Data Tables
TABLE 1 Global Hardware assisted verification industry 360º synopsis, 2018-2032
TABLE 2 Global Hardware assisted verification market, 2018-2022 (USD Million)
TABLE 3 Global Hardware assisted verification market, 2023-2032 (USD Million)
TABLE 4 Global Hardware assisted verification TAM, 2023-2032 (USD Billion)
TABLE 5 Global Hardware assisted verification market, by platform, 2018-2022 (USD Million)
TABLE 6 Global Hardware assisted verification market, by platform, 2023-2032 (USD Million)
TABLE 7 Global Hardware assisted verification market, by application, 2018-2022 (USD Million)
TABLE 8 Global Hardware assisted verification market, by application, 2023-2032 (USD Million)
TABLE 9 Global Hardware assisted verification market, by region, 2018-2022 (USD Million)
TABLE 10 Global Hardware assisted verification market, by region, 2023-2032 (USD Million)
TABLE 11 Vendor matrix
TABLE 12 Patent analysis
TABLE 13 Industry impact forces
TABLE 14 Competitive analysis of major market players, 2022
TABLE 15 Competitive analysis of innovative market players, 2022