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Global Nanoelectromechanical Systems (NEMS) Market (2023-2028) by Component, Fabrication Technology, Product Type, Material Type, Application, and Geography., Competitive Analysis, Impact of Covid-19 with Ansoff Analysis

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    Report

  • 180 Pages
  • February 2024
  • Region: Global
  • Infogence Global Research
  • ID: 5585797
The Global Nanoelectromechanical Systems (NEMS) Market is estimated to be USD 124.51 Mn in 2023 and is expected to reach USD 198.8 Mn by 2028 growing at a CAGR of 9.81%.

Market Dynamics

Market dynamics are forces that impact the prices and behaviors of the Global Nanoelectromechanical Systems (NEMS) Market stakeholders. These forces create pricing signals which result from the changes in the supply and demand curves for a given product or service. Forces of Market Dynamics may be related to macro-economic and micro-economic factors. There are dynamic market forces other than price, demand, and supply. Human emotions can also drive decisions, influence the market, and create price signals.

As the market dynamics impact the supply and demand curves, decision-makers aim to determine the best way to use various financial tools to stem various strategies for speeding the growth and reducing the risks.

Market Segmentations

  • The Global Nanoelectromechanical Systems (NEMS) Market is segmented based on Component, Fabrication Technology, Product Type, Material Type, Application, and Geography.
  • By Component, the market is classified into Nanotubes, Nanowires, Nanofilms, and Nanobelts.
  • By Fabrication Technology, the market is classified into Micromachining, Silicon on Insulator Technology (SOI), LIGA (Lithography Electroplating and Molding), and Others.
  • By Product Type, the market is classified into Nano-Tweezers, Nano-Cantilevers, Nano-Switches, Nano-Accelerometers, and Nano-Fluidic Modules.
  • By Material Type, the market is classified into Graphene, Carbon Nanotubes, SiC, SiO2, and Others (ZnO, and GaN).
  • By Application, the market is classified into Tools & Equipment Application, Sensing & Control Applications, and Solid State Electronics.
  • By Geography, the market is classified into Americas, Europe, Middle-East & Africa and Asia-Pacific.

Company Profiles

The report provides a detailed analysis of the competitors in the market. It covers the financial performance analysis for the publicly listed companies in the market. The report also offers detailed information on the companies' recent development and competitive scenario. Some of the companies covered in this report are Agilent Technologies Inc, Applied Nanotools Inc, Asylum Research Corp, Bruker Corp, California Institute of Technology (Caltech), Centre Suisse D'electronique Et Microtechnique S.A., etc.

Countries Studied

  • America (Argentina, Brazil, Canada, Chile, Colombia, Mexico, Peru, United States, Rest of Americas)
  • Europe (Austria, Belgium, Denmark, Finland, France, Germany, Italy, Netherlands, Norway, Poland, Russia, Spain, Sweden, Switzerland, United Kingdom, Rest of Europe)
  • Middle-East and Africa (Egypt, Israel, Qatar, Saudi Arabia, South Africa, United Arab Emirates, Rest of MEA)
  • Asia-Pacific (Australia, Bangladesh, China, India, Indonesia, Japan, Malaysia, Philippines, Singapore, South Korea, Sri Lanka, Thailand, Taiwan, Rest of Asia-Pacific)

Competitive Quadrant

The report includes Competitive Quadrant, a proprietary tool to analyze and evaluate the position of companies based on their Industry Position score and Market Performance score. The tool uses various factors for categorizing the players into four categories. Some of these factors considered for analysis are financial performance over the last 3 years, growth strategies, innovation score, new product launches, investments, growth in market share, etc.

Ansoff Analysis

  • The report presents a detailed Ansoff matrix analysis for the Global Nanoelectromechanical Systems (NEMS) Market. Ansoff Matrix, also known as Product/Market Expansion Grid, is a strategic tool used to design strategies for the growth of the company. The matrix can be used to evaluate approaches in four strategies viz. Market Development, Market Penetration, Product Development and Diversification. The matrix is also used for risk analysis to understand the risk involved with each approach.
  • The publisher analyses the Global Nanoelectromechanical Systems (NEMS) Market using the Ansoff Matrix to provide the best approaches a company can take to improve its market position.
  • Based on the SWOT analysis conducted on the industry and industry players, the publisher has devised suitable strategies for market growth.

Why buy this report?

  • The report offers a comprehensive evaluation of the Global Nanoelectromechanical Systems (NEMS) Market. The report includes in-depth qualitative analysis, verifiable data from authentic sources, and projections about market size. The projections are calculated using proven research methodologies.
  • The report has been compiled through extensive primary and secondary research. The primary research is done through interviews, surveys, and observation of renowned personnel in the industry.
  • The report includes an in-depth market analysis using Porter's 5 forces model and the Ansoff Matrix. In addition, the impact of Covid-19 on the market is also featured in the report.
  • The report also includes the regulatory scenario in the industry, which will help you make a well-informed decision. The report discusses major regulatory bodies and major rules and regulations imposed on this sector across various geographies.
  • The report also contains the competitive analysis using Positioning Quadrants, the Proprietary competitive positioning tool.

Report Highlights:

  • A complete analysis of the market, including parent industry
  • Important market dynamics and trends
  • Market segmentation
  • Historical, current, and projected size of the market based on value and volume
  • Market shares and strategies of key players
  • Recommendations to companies for strengthening their foothold in the market

Table of Contents

1 Report Description
1.1 Study Objectives
1.2 Market Definition
1.3 Currency
1.4 Years Considered
1.5 Language
1.6 Key Stakeholders
2 Research Methodology
2.1 Research Process
2.2 Data Collection and Validation
2.2.1 Secondary Research
2.2.2 Primary Research
2.2.3 Models
2.3 Market Size Estimation
2.3.1 Bottom-Up Approach
2.3.2 Top-Down Approach
2.4 Assumptions of the Study
2.5 Limitations of the Study
3 Executive Summary
3.1 Introduction
3.2 Market Size, Segmentations and Outlook
4 Market Dynamics
4.1 Drivers
4.1.1 Increasing Demand of High Precision Microscopes Boosting Overall Market Growth
4.1.2 Increasing Corporate & Government Funding for Life Science and Nanotechnology Research
4.1.3 Demand of the Miniature Electronic Components Due to Various Advantages
4.1.4 Technology Advancements in Nano-Components and Nano-Materials
4.2 Restraints
4.2.1 Manufacturing Difficulties and Absence of Mass Manufacturing Techniques
4.2.2 Health Hazards & Environment Concern
4.3 Opportunities
4.3.1 Nanotechnology Applications for Consumer Electronics
4.3.2 Innovations and Advancements of the Nano Surgical Instruments
4.4 Challenges
4.4.1 High Price Factor of Nanoscale Components
5 Market Analysis
5.1 Regulatory Scenario
5.2 Porter's Five Forces Analysis
5.3 Impact of COVID-19
5.4 Ansoff Matrix Analysis
6 Global Nanoelectromechanical Systems (NEMS) Market, By Component
6.1 Introduction
6.2 Nanotubes
6.2.1 Single-Walled Nanotubes
6.2.2 Multi-Walled Nanotubes
6.2.3 Nanocoils
6.3 Nanowires
6.4 Nanofilms
6.5 Nanobelts
7 Global Nanoelectromechanical Systems (NEMS) Market, By Fabrication Technology
7.1 Introduction
7.2 Micromachining
7.3 Silicon on Insulator Technology (SOI)
7.4 LIGA (Lithography Electroplating and Molding)
7.5 Others
8 Global Nanoelectromechanical Systems (NEMS) Market, By Product Type
8.1 Introduction
8.2 Nano-Tweezers
8.3 Nano-Cantilevers
8.4 Nano-Switches
8.5 Nano-Accelerometers
8.6 Nano-Fluidic Modules
9 Global Nanoelectromechanical Systems (NEMS) Market, By Material Type
9.1 Introduction
9.2 Graphene
9.3 Carbon Nanotubes
9.4 SiC
9.5 SiO2
9.6 Others (ZnO, GaN)
10 Global Nanoelectromechanical Systems (NEMS) Market, By Application
10.1 Introduction
10.2 Tools & Equipment Application
10.2.1 Scanning Tunneling Microscope (STM)
10.2.2 Atomic Force Microscope (AFM)
10.2.3 Mass Spectrometry
10.2.4 Nano Nozzles
10.3 Sensing & Control Applications
10.3.1 Automotive Medical
10.3.2 Industrial Process Control
10.4 Solid State Electronics
10.4.1 Random Access
11 Americas' Global Nanoelectromechanical Systems (NEMS) Market
11.1 Introduction
11.2 Argentina
11.3 Brazil
11.4 Canada
11.5 Chile
11.6 Colombia
11.7 Mexico
11.8 Peru
11.9 United States
11.10 Rest of Americas
12 Europe's Global Nanoelectromechanical Systems (NEMS) Market
12.1 Introduction
12.2 Austria
12.3 Belgium
12.4 Denmark
12.5 Finland
12.6 France
12.7 Germany
12.8 Italy
12.9 Netherlands
12.10 Norway
12.11 Poland
12.12 Russia
12.13 Spain
12.14 Sweden
12.15 Switzerland
12.16 United Kingdom
12.17 Rest of Europe
13 Middle East and Africa's Global Nanoelectromechanical Systems (NEMS) Market
13.1 Introduction
13.2 Egypt
13.3 Israel
13.4 Qatar
13.5 Saudi Arabia
13.6 South Africa
13.7 United Arab Emirates
13.8 Rest of MEA
14 APAC's Global Nanoelectromechanical Systems (NEMS) Market
14.1 Introduction
14.2 Australia
14.3 Bangladesh
14.4 China
14.5 India
14.6 Indonesia
14.7 Japan
14.8 Malaysia
14.9 Philippines
14.10 Singapore
14.11 South Korea
14.12 Sri Lanka
14.13 Thailand
14.14 Taiwan
14.15 Rest of Asia-Pacific
15 Competitive Landscape
15.1 Competitive Quadrant
15.2 Market Share Analysis
15.3 Strategic Initiatives
15.3.1 M&A and Investments
15.3.2 Partnerships and Collaborations
15.3.3 Product Developments and Improvements
16 Company Profiles
16.1 Agilent Technologies Inc
16.2 Applied Nanotools Inc
16.3 Asylum Research Corp
16.4 Bruker Corp
16.5 California Institute of Technology (Caltech)
16.6 Centre Suisse D'electronique Et Microtechnique S.A.
16.7 Cnano Technology Ltd
16.8 Cranfield University
16.9 Defense Advanced Research Projects Agency (Darpa)
16.10 Fraunhofer-Gesellschaft
16.11 Iit Madras
16.12 Imec (Interuniversity Microelectronics Centre)
16.13 Inframat Advanced MaterialsTM LLC
16.14 Institute Of Microengineering And Nanoelectronics (Imen)
16.15 Korea Institute Of Science And Technology
16.16 Material And Electrochemical Research (Mer) Corp
16.17 Nanocyl SA.
16.18 Nanoshell Company LLC
16.19 Northeastern University: Nems Laboratory
17 Appendix
17.1 Questionnaire

Companies Mentioned

  • Agilent Technologies Inc
  • Applied Nanotools Inc
  • Asylum Research Corp
  • Bruker Corp
  • California Institute of Technology (Caltech)
  • Centre Suisse D'electronique Et Microtechnique S.A.
  • Cnano Technology Ltd
  • Cranfield University
  • Defense Advanced Research Projects Agency (Darpa)
  • Fraunhofer-Gesellschaft
  • Iit Madras
  • Imec (Interuniversity Microelectronics Centre)
  • Inframat Advanced MaterialsTM LLC
  • Institute Of Microengineering And Nanoelectronics (Imen)
  • Korea Institute Of Science And Technology
  • Material And Electrochemical Research (Mer) Corp
  • Nanocyl SA.
  • Nanoshell Company LLC
  • Northeastern University: Nems Laboratory