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JAPAN AUTONOMOUS MOBILE ROBOTS (AMR) MARKET FORECAST 2024-2032

SCOPE OF THE REPORT

Japan Autonomous Mobile Robots (AMR) Market by Component (Hardware, Software, Service) Market by Robot Type (Goods-to-Person Picking Robots, Self-driving Forklifts, Autonomous Inventory Robots, Unmanned Aerial Vehicles) Market by Application (Sorting, Pick & Place, Towing, Tugging, Other Applications) Market by End-user (Automotive, Electronics, Healthcare & Pharmaceuticals, Logistics & E-commerce, Aerospace & Defense, Fast-moving Consumer Goods (FMCG), Other End-users)


MARKET OVERVIEW

The Japan autonomous mobile robots (AMR) market is anticipated to register a CAGR of 19.38% during the forecast period, 2024-2032, and is set to reach a revenue of $xx million by 2032.

In Japan, the autonomous mobile robots (AMR) market is witnessing significant growth and innovation. With Japan’s longstanding reputation for technological advancement and robotics expertise, the adoption of AMRs is a natural progression in the country’s industrial landscape. Key industries driving the demand for AMRs in Japan include manufacturing, logistics, healthcare, and retail.

Meanwhile, Locus Robotics is set to launch its inaugural fleet of autonomous mobile robots (AMRs) in Japan, aimed at facilitating seamless connections between builders and materials. Last week, DesignFuture Japan Inc. and Locus Robotics jointly revealed their intention to introduce LocusBots into the distribution warehouse of Material Bank Japan.

Japan Autonomous Mobile Robots (AMR) Market

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The Japan autonomous mobile robots (AMR) market segmentation component, robot type, application, and end-user. The application segment includes tugging, sorting, pick & place, towing, and other applications.

AMRs, specifically designed for tugging tasks, are witnessing increasing adoption due to their efficiency, flexibility, and cost-effectiveness.

Organizations across various industries, including manufacturing, warehousing, and e-commerce, are embracing AMRs for their ability to autonomously transport materials and goods within facilities. This trend is fueled by the rising demand for streamlining internal logistics operations, improving throughput, and reducing manual labor costs.

Key players in the AMR market are continuously innovating to enhance the capabilities of tugging robots, enabling them to navigate dynamic environments, collaborate with human workers safely, and integrate seamlessly with existing infrastructure and systems.

Furthermore, the integration of advanced technologies like artificial intelligence, computer vision, and predictive analytics is empowering tugging AMRs to adapt to changing environments, optimize routes, and improve operational efficiency over time.

Overall, the tugging application segment within the AMR market is poised for significant growth, driven by the increasing need for flexible and scalable automation solutions to meet the evolving demands of modern supply chains.

Autonomous Mobile Robots (AMRs) are revolutionizing various industries with their ability to automate tasks traditionally performed by humans. In the sorting application sector, AMRs are increasingly being utilized to streamline warehouse and distribution center operations.

AMRs offer unparalleled flexibility and efficiency in sorting tasks, allowing companies to adapt to changing demands and handle large volumes of items with ease. They navigate autonomously through warehouse aisles, efficiently picking up items and sorting them according to predetermined criteria.

Key players in the AMR market, such as ABB Ltd, Aethon Inc, Boston Dynamics, and others, are continuously innovating to improve the capabilities and efficiency of their sorting robots. These advancements include enhanced navigation systems, increased payload capacities, and integration with other warehouse management systems.

Some of the leading companies in the Japan autonomous mobile robots (AMR) market are Boston Dynamics, Clearpath Robotics Inc, GreyOrange, etc.

Boston Dynamics, a subsidiary of Hyundai Motor Company, is known for its expertise in crafting sophisticated mobile Manipulator robots distinguished by their exceptional mobility, dexterity, perception, and agility. By harnessing sensor-based controls and computation, the company unleashes the capabilities of intricate mechanisms. The Boston Dynamics team demonstrates proficiency in prototyping groundbreaking concepts, employing iterative engineering processes through build-test-build cycles and conducting field trials, ultimately transitioning successful designs into commercial robot products. It is headquartered in Waltham, Massachusetts, the United States.

REPORT SYNOPSIS

REPORT SCOPEDETAILS
Market Forecast Years2024-2032
Base Year2023
Market Historical Years2018-2022
Forecast Units

Revenue ($ Million)

Segments Analyzed
Component, Robot Type, Application, and End-User
Countries AnalyzedJapan
Companies AnalyzedAethon Inc, Bleum, Boston Dynamics, GreyOrange, inVia Robotics, Locus Robotics Inc, OMRON Corporation
TABLE OF CONTENTS
  1. RESEARCH SCOPE & METHODOLOGY
    1. STUDY OBJECTIVES
    2. METHODOLOGY
    3. ASSUMPTIONS & LIMITATIONS
  2. EXECUTIVE SUMMARY
    1. MARKET SIZE & ESTIMATES
    2. MARKET OVERVIEW
    3. COUNTRY SNAPSHOT
    4. COUNTRY ANALYSIS
    5. SCOPE OF STUDY
    6. CRISIS SCENARIO ANALYSIS
      1. IMPACT OF COVID-19 ON AUTONOMOUS MOBILE ROBOTS (AMR) MARKET
    7. MAJOR MARKET FINDINGS
      1. SIGNIFICANT GROWTH IN DEMAND FOR AMRs IN LOGISTICS AND WAREHOUSE MANAGEMENT
      2. EXPANSION OF APPLICATIONS INTO HEALTHCARE, RETAIL, AND MANUFACTURING SECTORS
      3. INCREASED INVESTMENT AND PARTNERSHIPS AMONG KEY PLAYERS
      4. ROBOTICS-AS-A-SERVICE (RAAS) ENABLES AMR ADOPTION WITH MINIMAL UPFRONT COSTS FOR BUSINESSES
  3. MARKET DYNAMICS
    1. KEY DRIVERS
      1. INCREASING DEMAND FOR AUTOMATION AND EFFICIENCY IN VARIOUS INDUSTRIES
      2. TECHNOLOGICAL ADVANCEMENTS IN SENSOR TECHNOLOGY AND ARTIFICIAL INTELLIGENCE
      3. RISING ADOPTION OF E-COMMERCE AND WAREHOUSE AUTOMATION
      4. COMPLIANCE WITH INDUSTRY REGULATIONS AND STANDARDS LIKE SAFETY AND HYGIENE 
    2. KEY RESTRAINTS
      1. HIGH INITIAL INVESTMENTS AND INSTALLATION COSTS
      2. CONCERNS REGARDING SAFETY AND SECURITY IN SHARED WORKSPACES
      3. LACK OF SKILLED LABOR FOR OPERATION AND MAINTENANCE 
  4. KEY ANALYTICS
    1. KEY MARKET TRENDS
      1. INTEGRATION OF AMRs WITH INTERNET OF THINGS (IOT) FOR REAL-TIME MONITORING AND CONTROL
      2. EMPHASIS ON COLLABORATIVE ROBOTS (COBOTS) FOR SAFE HUMAN-ROBOT INTERACTION
      3. ADOPTION OF CLOUD-BASED SOFTWARE SOLUTIONS FOR FLEET MANAGEMENT AND OPTIMIZATION
      4. DEVELOPMENT OF HYBRID AMRs CAPABLE OF BOTH MANUAL AND AUTONOMOUS OPERATION
    2. PORTER’S FIVE FORCES ANALYSIS
      1. BUYERS POWER
      2. SUPPLIERS POWER
      3. SUBSTITUTION
      4. NEW ENTRANTS
      5. INDUSTRY RIVALRY
    3. GROWTH PROSPECT MAPPING
    4. MARKET MATURITY ANALYSIS
    5. MARKET CONCENTRATION ANALYSIS
    6. VALUE CHAIN ANALYSIS
      1. RESEARCH AND DEVELOPMENT (R&D)
      2. COMPONENT MANUFACTURING
      3. AMR SYSTEM INTEGRATION
      4. INSTALLATION AND DEPLOYMENT
      5. END-USERS
    7. KEY BUYING CRITERIA
      1. FUNCTIONALITY
      2. SCALABILITY
      3. INTEGRATION
      4. RETURN OF INVESTMENT (ROI)
    8. REGULATORY FRAMEWORK
  5. MARKET BY COMPONENT
    1. HARDWARE
      1. MARKET FORECAST FIGURE
      2. SEGMENT ANALYSIS
    2. SOFTWARE
      1. MARKET FORECAST FIGURE
      2. SEGMENT ANALYSIS
    3. SERVICE
      1. MARKET FORECAST FIGURE
      2. SEGMENT ANALYSIS
  6. MARKET BY ROBOT TYPE
    1. GOODS-TO-PERSON PICKING ROBOTS
      1. MARKET FORECAST FIGURE
      2. SEGMENT ANALYSIS
    2. SELF-DRIVING FORKLIFTS
      1. MARKET FORECAST FIGURE
      2. SEGMENT ANALYSIS
    3. AUTONOMOUS INVENTORY ROBOTS
      1. MARKET FORECAST FIGURE
      2. SEGMENT ANALYSIS
    4. UNMANNED AERIAL VEHICLES
      1. MARKET FORECAST FIGURE
      2. SEGMENT ANALYSIS
  7. MARKET BY APPLICATION
    1. SORTING
      1. MARKET FORECAST FIGURE
      2. SEGMENT ANALYSIS
    2. PICK & PLACE
      1. MARKET FORECAST FIGURE
      2. SEGMENT ANALYSIS
    3. TOWING
      1. MARKET FORECAST FIGURE
      2. SEGMENT ANALYSIS
    4. TUGGING
      1. MARKET FORECAST FIGURE
      2. SEGMENT ANALYSIS
    5. OTHER APPLICATIONS
      1. MARKET FORECAST FIGURE
      2. SEGMENT ANALYSIS
  8. MARKET BY END-USER
    1. AUTOMOTIVE
      1. MARKET FORECAST FIGURE
      2. SEGMENT ANALYSIS
    2. ELECTRONICS
      1. MARKET FORECAST FIGURE
      2. SEGMENT ANALYSIS
    3. HEALTHCARE & PHARMACEUTICALS
      1. MARKET FORECAST FIGURE
      2. SEGMENT ANALYSIS
    4. LOGISTICS & E-COMMERCE
      1. MARKET FORECAST FIGURE
      2. SEGMENT ANALYSIS
    5. AEROSPACE & DEFENSE
      1. MARKET FORECAST FIGURE
      2. SEGMENT ANALYSIS
    6. FAST-MOVING CONSUMER GOODS (FMCG)
      1. MARKET FORECAST FIGURE
      2. SEGMENT ANALYSIS
    7. OTHER END-USERS
      1. MARKET FORECAST FIGURE
      2. SEGMENT ANALYSIS
  9. COMPETITIVE LANDSCAPE
    1. KEY STRATEGIC DEVELOPMENTS
      1. MERGERS & ACQUISITIONS
      2. PRODUCT LAUNCHES & DEVELOPMENTS
      3. PARTNERSHIPS & AGREEMENTS
      4. BUSINESS EXPANSIONS & DIVESTITURES
    2. COMPANY PROFILES
      1. AETHON INC
        1. COMPANY OVERVIEW
        2. PRODUCT LIST
        3. STRENGTHS & CHALLENGES
      2. BLEUM
        1. COMPANY OVERVIEW
        2. PRODUCT LIST
        3. STRENGTHS & CHALLENGES
      3. BOSTON DYNAMICS
        1. COMPANY OVERVIEW
        2. PRODUCT LIST
        3. STRENGTHS & CHALLENGES
      4. GREYORANGE
        1. COMPANY OVERVIEW
        2. PRODUCT LIST
        3. STRENGTHS & CHALLENGES
      5. INVIA ROBOTICS
        1. COMPANY OVERVIEW
        2. PRODUCT LIST
        3. STRENGTHS & CHALLENGES
      6. LOCUS ROBOTICS INC
        1. COMPANY OVERVIEW
        2. PRODUCT LIST
        3. STRENGTHS & CHALLENGES
      7. OMRON CORPORATION
        1. COMPANY OVERVIEW
        2. PRODUCT LIST
        3. STRENGTHS & CHALLENGES

LIST OF TABLES

TABLE 1: MARKET SNAPSHOT – AUTONOMOUS MOBILE ROBOTS (AMR)

TABLE 2: COUNTRY SNAPSHOT – JAPAN

TABLE 3: REGULATORY FRAMEWORK

TABLE 4: JAPAN AUTONOMOUS MOBILE ROBOTS (AMR) MARKET, BY COMPONENT, HISTORICAL YEARS, 2018-2022 (IN $ MILLION)

TABLE 5: JAPAN AUTONOMOUS MOBILE ROBOTS (AMR) MARKET, BY COMPONENT, FORECAST YEARS, 2024-2032 (IN $ MILLION)

TABLE 6: JAPAN AUTONOMOUS MOBILE ROBOTS (AMR) MARKET, BY ROBOT TYPE, HISTORICAL YEARS, 2018-2022 (IN $ MILLION)

TABLE 7: JAPAN AUTONOMOUS MOBILE ROBOTS (AMR) MARKET, BY ROBOT TYPE, FORECAST YEARS, 2024-2032 (IN $ MILLION)

TABLE 8: JAPAN AUTONOMOUS MOBILE ROBOTS (AMR) MARKET, BY APPLICATION, HISTORICAL YEARS, 2018-2022 (IN $ MILLION)

TABLE 9: JAPAN AUTONOMOUS MOBILE ROBOTS (AMR) MARKET, BY APPLICATION, FORECAST YEARS, 2024-2032 (IN $ MILLION)

TABLE 10: JAPAN AUTONOMOUS MOBILE ROBOTS (AMR) MARKET, BY END-USER, HISTORICAL YEARS, 2018-2022 (IN $ MILLION)

TABLE 11: JAPAN AUTONOMOUS MOBILE ROBOTS (AMR) MARKET, BY END-USER, FORECAST YEARS, 2024-2032 (IN $ MILLION)

TABLE 12: LIST OF MERGERS & ACQUISITIONS

TABLE 13: LIST OF PRODUCT LAUNCHES & DEVELOPMENTS

TABLE 14: LIST OF PARTNERSHIPS & AGREEMENTS

TABLE 15: LIST OF BUSINESS EXPANSIONS & DIVESTITURES

LIST OF FIGURES

FIGURE 1: MAJOR MARKET FINDINGS

FIGURE 2: MARKET DYNAMICS

FIGURE 3: KEY MARKET TRENDS

FIGURE 4: PORTER’S FIVE FORCES ANALYSIS

FIGURE 5: GROWTH PROSPECT MAPPING

FIGURE 6: MARKET MATURITY ANALYSIS

FIGURE 7: MARKET CONCENTRATION ANALYSIS

FIGURE 8: VALUE CHAIN ANALYSIS

FIGURE 9: KEY BUYING CRITERIA

FIGURE 10: JAPAN AUTONOMOUS MOBILE ROBOTS (AMR) MARKET, GROWTH POTENTIAL, BY COMPONENT, IN 2023

FIGURE 11: JAPAN AUTONOMOUS MOBILE ROBOTS (AMR) MARKET, BY HARDWARE, 2024-2032 (IN $ MILLION)

FIGURE 12: JAPAN AUTONOMOUS MOBILE ROBOTS (AMR) MARKET, BY SOFTWARE, 2024-2032 (IN $ MILLION)

FIGURE 13: JAPAN AUTONOMOUS MOBILE ROBOTS (AMR) MARKET, BY SERVICE, 2024-2032 (IN $ MILLION)

FIGURE 14: JAPAN AUTONOMOUS MOBILE ROBOTS (AMR) MARKET, GROWTH POTENTIAL, BY ROBOT TYPE, IN 2023

FIGURE 15: JAPAN AUTONOMOUS MOBILE ROBOTS (AMR) MARKET, BY GOODS-TO-PERSON PICKING ROBOTS, 2024-2032 (IN $ MILLION)

FIGURE 16: JAPAN AUTONOMOUS MOBILE ROBOTS (AMR) MARKET, BY SELF-DRIVING FORKLIFTS, 2024-2032 (IN $ MILLION)

FIGURE 17: JAPAN AUTONOMOUS MOBILE ROBOTS (AMR) MARKET, BY AUTONOMOUS INVENTORY ROBOTS, 2024-2032 (IN $ MILLION)

FIGURE 18: JAPAN AUTONOMOUS MOBILE ROBOTS (AMR) MARKET, BY UNMANNED AERIAL VEHICLES, 2024-2032 (IN $ MILLION)

FIGURE 19: JAPAN AUTONOMOUS MOBILE ROBOTS (AMR) MARKET, GROWTH POTENTIAL, BY APPLICATION, IN 2023

FIGURE 20: JAPAN AUTONOMOUS MOBILE ROBOTS (AMR) MARKET, BY SORTING, 2024-2032 (IN $ MILLION)

FIGURE 21: JAPAN AUTONOMOUS MOBILE ROBOTS (AMR) MARKET, BY PICK & PLACE, 2024-2032 (IN $ MILLION)

FIGURE 22: JAPAN AUTONOMOUS MOBILE ROBOTS (AMR) MARKET, BY TOWING, 2024-2032 (IN $ MILLION)

FIGURE 23: JAPAN AUTONOMOUS MOBILE ROBOTS (AMR) MARKET, BY TUGGING, 2024-2032 (IN $ MILLION)

FIGURE 24: JAPAN AUTONOMOUS MOBILE ROBOTS (AMR) MARKET, BY OTHER APPLICATIONS, 2024-2032 (IN $ MILLION)

FIGURE 25: JAPAN AUTONOMOUS MOBILE ROBOTS (AMR) MARKET, GROWTH POTENTIAL, BY END-USER, IN 2023

FIGURE 26: JAPAN AUTONOMOUS MOBILE ROBOTS (AMR) MARKET, BY AUTOMOTIVE, 2024-2032 (IN $ MILLION)

FIGURE 27: JAPAN AUTONOMOUS MOBILE ROBOTS (AMR) MARKET, BY ELECTRONICS, 2024-2032 (IN $ MILLION)

FIGURE 28: JAPAN AUTONOMOUS MOBILE ROBOTS (AMR) MARKET, BY HEALTHCARE & PHARMACEUTICALS, 2024-2032 (IN $ MILLION)

FIGURE 29: JAPAN AUTONOMOUS MOBILE ROBOTS (AMR) MARKET, BY LOGISTICS & E-COMMERCE, 2024-2032 (IN $ MILLION)

FIGURE 30: JAPAN AUTONOMOUS MOBILE ROBOTS (AMR) MARKET, BY AEROSPACE & DEFENSE, 2024-2032 (IN $ MILLION)

FIGURE 31: JAPAN AUTONOMOUS MOBILE ROBOTS (AMR) MARKET, BY FAST MOVING CONSUMER GOODS (FMCG), 2024-2032 (IN $ MILLION)

FIGURE 32: JAPAN AUTONOMOUS MOBILE ROBOTS (AMR) MARKET, BY OTHER END-USERS, 2024-2032 (IN $ MILLION)

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