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Product Code IW091281444HAX
Published Date 2021/8/2
English156 PagesNorth America

NORTH AMERICA INDUSTRIAL ROBOTICS MARKET FORECAST 2021-2028IndustrialMachinery Market


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Product Code IW091281444HAX◆The Aug 2025 edition is also likely available. We will check with the publisher immediately.
Published Date 2021/8/2
English 156 PagesNorth America

NORTH AMERICA INDUSTRIAL ROBOTICS MARKET FORECAST 2021-2028IndustrialMachinery Market



Abstract


Summary

KEY FINDINGS The North America industrial robotics market is anticipated to project a CAGR of 8.91% during the forecast period, 2021-2028. The rising use of industrial robots in the region is accredited to the growing FDI (foreign direct investments) from non-NAFTA car manufacturers. Also, new product developments and research has expanded industrial robots' use in many manufacturing applications in the US. MARKET INSIGHTS Canada and the United States are evaluated for the assessment of the North America industrial robotics market growth. Canada has the benefit of a conducive regulatory framework for robotics firms to develop and test their products. Also, the country has a well-established robotics-focused university and technical education. Over 20 Canadian technical colleges and universities offer courses in computer control techniques, pneumatics, hydraulics, mechatronics, and robotics. Moreover, businesses across varied industry verticals increasingly invest in novel production technology to capitalize on new processes and factory retooling that facilitate flexible automation. Also, the government has identified robotics as an important area for economic stimulus financing. It has allocated funds to the Canadian Space Agency to supplement the construction of rover and robotic arm prototypes. Furthermore, as a world leader in cutting-edge R&D, the country supports the entrepreneurship and innovation of investors through considerable incentive support for R&D activities from the provincial and federal governments. COMPETITIVE INSIGHTS Some of the prominent companies in the market include Staubli International AG, Universal Robots, Kawasaki Heavy Industries Ltd, Rethink Robotics, Rockwell Automation Inc, etc. Our report offerings include: • Explore key findings of the overall market • Strategic breakdown of market dynamics (Drivers, Restraints, Opportunities, Challenges) • Market forecasts for a minimum of 9 years, along with 3 years of historical data for all segments, sub-segments, and regions • Market Segmentation cater to a thorough assessment of key segments with their market estimations • Geographical Analysis: Assessments of the mentioned regions and country-level segments with their market share • Key analytics: Porter's Five Forces Analysis, Vendor Landscape, Opportunity Matrix, Key Buying Criteria, etc. • Competitive landscape is the theoretical explanation of the key companies based on factors, market share, etc. • Company profiling: A detailed company overview, product/services offered, SCOT analysis, and recent strategic developments

Table of Contents

  • 1 RESEARCH SCOPE & METHODOLOGY

    • 1.1 STUDY OBJECTIVES
    • 1.2 SCOPE OF STUDY
    • 1.3 METHODOLOGY
    • 1.4 ASSUMPTIONS & LIMITATIONS
  • 2 EXECUTIVE SUMMARY

    • 2.1 MARKET SIZE & ESTIMATES
    • 2.2 MARKET OVERVIEW
    • 2.3 KEY DRIVERS
      • 2.3.1 EMERGENCE OF SMART FACTORIES
      • 2.3.2 GROWING ADOPTION OF INDUSTRIAL ROBOTS IN THE F&B, AUTOMOTIVE, ELECTRICAL, AND ELECTRONICS INDUSTRIES
      • 2.3.3 CONTINUAL R&D AND INVESTMENT IN ROBOTICS
    • 2.4 KEY RESTRAINTS
      • 2.4.1 COST OF ROBOTICS
      • 2.4.2 RESISTANCE FROM WORKERS/WORKER UNIONS
      • 2.4.3 LACK OF SKILLED WORKFORCE
  • 3 KEY ANALYTICS

    • 3.1 IMPACT OF COVID-19 ON INDUSTRIAL ROBOTICS MARKET
    • 3.2 KEY MARKET TRENDS
    • 3.3 PORTER'S FIVE FORCES ANALYSIS
      • 3.3.1 BUYERS POWER
      • 3.3.2 SUPPLIERS POWER
      • 3.3.3 SUBSTITUTION
      • 3.3.4 NEW ENTRANTS
      • 3.3.5 INDUSTRY RIVALRY
    • 3.4 OPPORTUNITY MATRIX
    • 3.5 VENDOR LANDSCAPE
  • 4 MARKET BY ROBOT TYPE

    • 4.1 ARTICULATED ROBOTS
    • 4.2 CARTESIAN ROBOTS
    • 4.3 SCARA ROBOTS
    • 4.4 CYLINDRICAL ROBOTS
    • 4.5 OTHER ROBOTS (DELTA AND POLAR ROBOTS)
  • 5 MARKET BY APPLICATION

    • 5.1 MATERIAL HANDLING
    • 5.2 ASSEMBLING & DISASSEMBLING
    • 5.3 WELDING & SOLDERING
    • 5.4 DISPENSING
    • 5.5 PROCESSING
    • 5.6 OTHER APPLICATIONS
  • 6 MARKET BY END-USER

    • 6.1 AUTOMOTIVE
    • 6.2 ELECTRONIC & ELECTRIC
    • 6.3 MACHINERY PRODUCTS & METAL
    • 6.4 CHEMICAL, PLASTICS, AND RUBBER
    • 6.5 FOOD & BEVERAGE
    • 6.6 OTHER END-USER
  • 7 GEOGRAPHICAL ANALYSIS

    • 7.1 NORTH AMERICA
      • 7.1.1 MARKET SIZE & ESTIMATES
      • 7.1.2 KEY DRIVERS
      • 7.1.3 KEY CHALLENGES
      • 7.1.4 KEY PLAYERS
      • 7.1.5 COUNTRY ANALYSIS
        • 7.1.5.1 UNITED STATES
        • 7.1.5.2 CANADA
  • 8 COMPETITIVE LANDSCAPE

    • 8.1 KEY STRATEGIC DEVELOPMENTS
      • 8.1.1 PRODUCT LAUNCHES & DEVELOPMENTS
      • 8.1.2 PARTNERSHIPS & AGREEMENTS
      • 8.1.3 BUSINESS EXPANSIONS
    • 8.2 COMPANY PROFILES
      • 8.2.1 ABB LTD
      • 8.2.2 AUROTEK CORPORATION
      • 8.2.3 FANUC CORPORATION
      • 8.2.4 KAWASAKI HEAVY INDUSTRIES LTD
      • 8.2.5 KUKA AG
      • 8.2.6 MITSUBISHI ELECTRIC CORPORATION
      • 8.2.7 NACHI FUJIKOSHI CORPORATION
      • 8.2.8 OMRON ADEPT
      • 8.2.9 RETHINK ROBOTICS
      • 8.2.10 ROCKWELL AUTOMATION INC
      • 8.2.11 SCHUNK GMBH
      • 8.2.12 SEIKO EPSON CORPORATION
      • 8.2.13 STAUBLI INTERNATIONAL AG
      • 8.2.14 UNIVERSAL ROBOTS
      • 8.2.15 YAMAHA ROBOTICS
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