Cloud Electronic Design Automation (EDA) Market 2018: Global Industry Size, Share, Development Strategy, Gross Margin Analysis, Competitive Landscape, Growth Prospects and Forecast 2022

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Market Research Future published a research report on “Cloud Electronic Design Automation (EDA) Market Research Report – Global Forecast 2022” – Market Analysis, Scope, Stake, Progress, Trends and Forecast to 2022.

Market Scenario:

Electronic design automation is a software tool which is used in the industries for the designing complex electronic systems. Various Electronic Design Automation tools are used to design and develop complicated and large-scale circuits, which are used in products across different industries. Some of the systems are- CAE (computer added engineering), IC (integrated circuits) among others. Integration of cloud has revolutionized the market of Electronic Design Automation. It also encompasses algorithms and methodologies for the design of very large-scale ICs.

The adoption of Electronic Design Automation leads to a reduction in the design time, errors, and cost and is mainly used in the manufacture of aerospace and defence equipment. Electronic Design Automation tools help semiconductor and electronic product manufacturing companies reduce product development time and increase the accuracy of design. Cloud Electronic Design Automation provides its users a pay-per-usage design environment. The pay-per-use environment effectively reduces the extra costs. Electronic Device Automation system on cloud is a new concept. Industries are yet to hold grips with the cloud Electronic Design Automation systems. This factor is challenging the cloud electronic display market.

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Key Players

The prominent players in the global Cloud Electronic Design Automation (EDA) market are Cadence Design Systems, Mentor Graphics, Synopsys, Agilent, Agnisys, Aldec, Ansys, JEDA Technologies, MunEDA, Sigrity, Zuken among others.

Cloud Electronic Design Automation (EDA) Global Market   – Segmentation

  • Segmentation by Type: CAE, SIP (Semiconductor Intellectual Property), IC Physical Design andVerification, Printed Circuit Board (PCB) and Multi-Chip Module (MCM)
  • Segmentation by Application: Military/Defense, Aerospace, Telecom, Automotive, Industrial, Others

Regional Analysis:

Cloud Electronic Design Automation Market is growing with the positive growth in all the regions. Growing need of efficient and automated manufacturing system in the industry is driving the market of cloud EDA around the world. By geography, North America is dominating the market due to the presence of global players in the region and high development in the field of technology and cloud computing is supporting the market growth in North America region. Also, high development and adoption of automation in the manufacturing sector in U.S. and Canada is also helping the market growth. Asia-Pacific stands as second largest market for cloud EDA. Rich presence of semiconductor manufacturing companies in China, Japan and South Korea are some of the major driving factors supporting the market in Asia Pacific. Also, high demand for consumer electronic products from the region is forcing the manufacturers to adopt latest technologies in the manufacturing process. Europe stands as third largest market for the cloud EDA. Presence of developed countries such as Germany, France, Italy, Netherlands and U.K. are one of the major driving factor behind the growth of the market in Europe region. Also, growing automotive industry in European region is also driving the market

Key Findings:

  • The global Cloud Electronic Design Automation (EDA) market is expected to reach USD ~7595 Million by 2022, growing with approximately 5.51% of CAGR during forecast period 2016-2022.
  • By Type in Cloud Electronic Design Automation (EDA) Market the Semiconductor Intellectual Property (SIP) is dominating the market and is expected to reach USD 2,746.5 million by 2022.
  • By Application in Cloud Electronic Design Automation (EDA) Market the Military/Defense application is expected hold largest market share of USD 2418.1 million in 2022 and telecom application is expected to grow with 6.84% CAGR during forecast period 2016-2022.
  • United States is expected to dominate the market of Cloud Electronic Design Automation (EDA) market throughout the forecast period.
  • China is expected to grow with a highest CAGR of 6.11% during the forecast period 2016-2022.

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Intended Audience

  • Investors and consultants
  • System Integrators
  • Government Organizations
  • Research/Consultancy firms
  • Technology solution providers
  • Hardware manufacturers
  • Semiconductor Companies
  • IC manufacturers


1 Industry Overview of Cloud Electronic Design Automation (EDA)

1 Industry Overview Of Cloud Electronic Design Automation (EDA) 10

1.1 Cloud Electronic Design Automation (EDA) Market Overview 10

1.1.1 Cloud Electronic Design Automation (EDA) Product Scope 10

1.2 Market Status And Outlook 10

1.3 Global Cloud Electronic Design Automation (EDA) Market Size And Analysis By Regions 11

1.3.1 United States 11

1.3.2 Europe 11

1.3.3 Japan 12

1.3.4 China 12

1.3.5 India 13

1.3.6 Southeast Asia 13

1.4 Cloud Electronic Design Automation (EDA) Market By Type 14

1.4.1 CAE 14

1.4.2 SIP (Semiconductor Intellectual Property) 15

1.4.3 IC Physical Design And Verification 15

1.4.4 Printed Circuit Board (PCB) And Multi-Chip Module (MCM) 16

1.5 Cloud Electronic Design Automation (EDA) Market By End Users/Application 16

1.5.1 Military/Defense 16

1.5.2 Aerospace 17

1.5.3 Telecom 18

1.5.4 Automotive 18

1.5.5 Industrial 19

1.5.6 Others 19

2 Global Cloud Electronic Design Automation(EDA) Competition Analysis by Players

2.1 Cloud Electronic Design Automation (EDA) Market Size (Value) By Players (2016) 20

2.2 Competitive Status And Trend 20

2.2.1 Market Concentration Rate 20

2.2.2 Product/Service Differences 21

3 Company (Top Players) Profiles

3.1 Cadence Design Systems 22

3.1.1 Business Overview 22

3.1.2 Products, Services And Solutions 22

3.1.3 Cadence Design Systems Revenue (Value) (2014-2016) 23

3.1.4 Recent Developments 23


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