Summary
Triton’s research report estimates that the Latin America autonomous mobile robots market is expected to garner revenue at a CAGR of 22.04% during the forecast years 2024-2032.
The autonomous mobile robot (AMR) market in Latin America is experiencing significant growth, driven by a combination of technological advancements, increasing labor costs, and a growing need for automation across various industries. Additionally, the manufacturing sector in this region is increasingly adopting Industry 4.0 practices, which include the integration of AMRs to streamline production lines, improve material handling, and enable just-in-time inventory management. The government policies promoting automation and digital transformation, along with favorable trade agreements, are contributing to the expansion of this market in the region.
The countries studied in this region include Brazil, Mexico, and Rest of Latin America.
Mexico captured the highest share in the autonomous mobile robots market, obtaining about $57.89 million in 2023.
● As Mexico becomes an important hub for automotive, electronics, and consumer goods manufacturing, the need for efficient material handling and transportation within factories and warehouses has grown, leading to increased demand for AMRs.
● Additionally, the rise of e-commerce in the region has accelerated the need for automated solutions in distribution centers to manage inventory and streamline order fulfillment processes.
● The shortage of skilled labor has also led companies in Mexico to adopt robotic solutions for business continuity. Consequently, the AMR market in the country is set for significant growth, fueled by technological advancements, supportive government policies, and evolving industry demands.
Autonomous Mobile Robots Market Forecast for Brazil
Brazil’s government and private sector have invested heavily in Industry 4.0 over recent years, with investments reaching nearly $9 billion in advanced manufacturing technologies in 2021. A substantial portion of these investments is directed toward robotics, including AMRs, as industries aim to enhance their competitiveness on a global scale. The focus on robotics and AMRs stems from the potential to drastically improve efficiency, reduce operational costs, and enhance flexibility within production environments. This shift is particularly crucial for Brazil, which aims to transform its traditionally labor-intensive industries into more technologically advanced and resilient sectors.
The autonomous mobile robots market is segmented based on robot type, application, component, and end-user. Based on robot type, it is further classified into autonomous inventory robots, self-driving forklifts, goods-to-person picking robots, and unmanned aerial vehicles. Self-driving forklifts, also known as autonomous forklifts or automated guided forklifts (AGFs), are a type of autonomous mobile robot (AMR) specifically designed for material handling and logistics operations. These forklifts can autonomously pick up, transport, and place pallets or other materials. They are often used for repetitive tasks such as loading and unloading pallets from storage racks, transporting goods between different areas of a facility, and organizing inventory.
Contender Analysis in the Autonomous Mobile Robots Market:
Vecna Robotics is a technology company specializing in automated material handling, hybrid fulfillment, and workflow optimization solutions. Leveraging its Pivot.al orchestration engine, beacon service, aerospace-grade multi-layer safety system, and an intuitive user interface, the company develops robots and autonomous vehicles tailored for the distribution, e-commerce, warehousing, and manufacturing industries. It is headquartered in Massachusetts, United States.
Recently, the company has secured over $100 million in funding to drive the expansion of its warehouse automation solutions, particularly for material handling in warehousing and distribution.
The key entities in the reviewed market are Bleum, Clearpath Robotics Inc, Omron Corporation, ABB Ltd, Boston Dynamics, Greyorange, and Locus Robotics Inc.
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Table of Contents
TABLE OF CONTENTS
1. LATIN AMERICA AUTONOMOUS MOBILE ROBOTS MARKET - SUMMARY
2. INDUSTRY OUTLOOK
2.1. IMPACT ANALYSIS ON THE AUTONOMOUS MOBILE ROBOTS MARKET
2.1.1. COVID-19 IMPACT ON THE AUTONOMOUS MOBILE ROBOTS MARKET
2.2. PORTER’S FIVE FORCES ANALYSIS
2.2.1. THREAT OF NEW ENTRANTS
2.2.2. THREAT OF SUBSTITUTES
2.2.3. BARGAINING POWER OF BUYERS
2.2.4. BARGAINING POWER OF SUPPLIERS
2.2.5. THREAT OF COMPETITIVE RIVALRY
2.3. REGULATORY OUTLOOK
2.4. SUPPLY CHAIN ANALYSIS
2.4.1. RESEARCH AND DEVELOPMENT
2.4.2. COMPONENT MANUFACTURING
2.4.3. AMR SYSTEM INTEGRATION
2.4.4. INSTALLATION AND DEPLOYMENT
2.4.5. END-USERS
2.5. KEY BUYING IMPACT ANALYSIS
2.5.1. FUNCTIONALITY
2.5.2. SCALABILITY
2.5.3. INTEGRATION
2.5.4. RETURN OF INVESTMENT
2.6. KEY MARKET STRATEGIES
2.6.1. PRODUCT LAUNCHES
2.6.2. ACQUISITIONS
2.6.3. BUSINESS DIVESTITURES & EXPANSIONS
2.7. MARKET DRIVERS
2.7.1. INCREASED ADOPTION OF E-COMMERCE AND WAREHOUSE AUTOMATION
2.7.2. GROWING DEMAND FOR AUTOMATION AND EFFICIENCY ACROSS INDUSTRIES
2.7.3. TECHNOLOGICAL PROGRESS IN SENSOR TECHNOLOGY AND ARTIFICIAL INTELLIGENCE
2.7.4. ADHERENCE TO INDUSTRY REGULATIONS AND STANDARDS FOR SAFETY AND HYGIENE
2.8. MARKET CHALLENGES
2.8.1. SHORTAGE OF SKILLED LABOR FOR OPERATION AND MAINTENANCE
2.8.2. SAFETY AND SECURITY CONCERNS IN SHARED WORKSPACES
2.8.3. SIGNIFICANT INITIAL INVESTMENTS AND INSTALLATION COSTS
2.9. MARKET OPPORTUNITIES
2.9.1. REAL-TIME MONITORING AND CONTROL THROUGH IOT INTEGRATION WITH AMRS
2.9.2. CLOUD-BASED SOLUTIONS FOR EFFICIENT FLEET MANAGEMENT AND OPTIMIZATION
2.9.3. ADVANCEMENTS IN HYBRID AMRS FOR MANUAL AND AUTONOMOUS OPERATIONS
2.9.4. EMPHASIZING COLLABORATIVE ROBOTS (COBOTS) FOR SAFE HUMAN-ROBOT INTERACTION
2.10. ANALYST PERSPECTIVE
3. LATIN AMERICA AUTONOMOUS MOBILE ROBOTS MARKET - BY COMPONENT
3.1. HARDWARE
3.2. SOFTWARE
3.3. SERVICE
4. LATIN AMERICA AUTONOMOUS MOBILE ROBOTS MARKET – BY ROBOT TYPE
4.1. GOODS-TO-PERSON PICKING ROBOTS
4.2. SELF-DRIVING FORKLIFTS
4.3. AUTONOMOUS INVENTORY ROBOTS
4.4. UNMANNED AERIAL VEHICLES
5. LATIN AMERICA AUTONOMOUS MOBILE ROBOTS MARKET – BY APPLICATION
5.1. SORTING
5.2. PICK & PLACE
5.3. TOWING
5.4. TUGGING
5.5. OTHER APPLICATIONS
6. LATIN AMERICA AUTONOMOUS MOBILE ROBOTS MARKET – BY END-USER
6.1. AUTOMOTIVE
6.2. ELECTRONICS
6.3. HEALTHCARE & PHARMACEUTICALS
6.4. LOGISTICS & E-COMMERCE
6.5. AEROSPACE & DEFENSE
6.6. FAST-MOVING CONSUMER GOODS (FMCG)
6.7. OTHER END-USERS
7. LATIN AMERICA AUTONOMOUS MOBILE ROBOTS MARKET – BY COUNTRY OUTLOOK
7.1. LATIN AMERICA
7.1.1. COUNTRY ANALYSIS
7.1.1.1. BRAZIL
7.1.1.1.1. BRAZIL AUTONOMOUS MOBILE ROBOTS MARKET FORECAST & PROSPECTS
7.1.1.2. MEXICO
7.1.1.2.1. MEXICO AUTONOMOUS MOBILE ROBOTS MARKET FORECAST & PROSPECTS
7.1.1.3. REST OF LATIN AMERICA
7.1.1.3.1. REST OF LATIN AMERICA AUTONOMOUS MOBILE ROBOTS MARKET FORECAST & PROSPECTS
8. COMPETITIVE LANDSCAPE
8.1. AETHON INC
8.1.1. OVERVIEW
8.1.2. PORTFOLIO
8.1.3. KEY STRENGTHS
8.1.4. KEY CHALLENGES
8.2. KUKA AG
8.2.1. OVERVIEW
8.2.2. PORTFOLIO
8.2.3. KEY STRENGTHS
8.2.4. KEY CHALLENGES
8.3. LOCUS ROBOTICS INC
8.3.1. OVERVIEW
8.3.2. PORTFOLIO
8.3.3. KEY STRENGTHS
8.3.4. KEY CHALLENGES
8.4. OMRON CORPORATION
8.4.1. OVERVIEW
8.4.2. PORTFOLIO
8.4.3. KEY STRENGTHS
8.4.4. KEY CHALLENGES
8.5. ABB LTD
8.5.1. OVERVIEW
8.5.2. PORTFOLIO
8.5.3. KEY STRENGTHS
8.5.4. KEY CHALLENGES
8.6. BOSTON DYNAMICS
8.6.1. OVERVIEW
8.6.2. PORTFOLIO
8.6.3. KEY STRENGTHS
8.6.4. KEY CHALLENGES
8.7. CLEARPATH ROBOTICS INC
8.7.1. OVERVIEW
8.7.2. PORTFOLIO
8.7.3. KEY STRENGTHS
8.7.4. KEY CHALLENGES
8.8. GREYORANGE
8.8.1. OVERVIEW
8.8.2. PORTFOLIO
8.8.3. KEY STRENGTHS
8.8.4. KEY CHALLENGES
8.9. BLEUM
8.9.1. OVERVIEW
8.9.2. PORTFOLIO
8.9.3. KEY STRENGTHS
8.9.4. KEY CHALLENGES
8.10. INVIA ROBOTICS
8.10.1. OVERVIEW
8.10.2. PORTFOLIO
8.10.3. KEY STRENGTHS
8.10.4. KEY CHALLENGES
8.11. TERADYNE INC
8.11.1. OVERVIEW
8.11.2. PORTFOLIO
8.11.3. KEY STRENGTHS
8.11.4. KEY CHALLENGES
8.12. VECNA ROBOTICS
8.12.1. OVERVIEW
8.12.2. PORTFOLIO
8.12.3. KEY STRENGTHS
8.12.4. KEY CHALLENGES
9. RESEARCH METHODOLOGY & SCOPE
9.1. RESEARCH SCOPE & DELIVERABLES
9.2. SOURCES OF DATA
9.3. RESEARCH METHODOLOGY
LIST OF TABLES
TABLE 1: LATIN AMERICA AUTONOMOUS MOBILE ROBOTS MARKET, BY COUNTRY OUTLOOK, FORECAST YEARS, 2024-2032 (IN $ MILLION)
TABLE 2: REGULATORY OUTLOOK
TABLE 3: LIST OF PRODUCT LAUNCHES
TABLE 4: LIST OF ACQUISITIONS
TABLE 5: LIST OF BUSINESS DIVESTITURES & EXPANSIONS
TABLE 6: LATIN AMERICA AUTONOMOUS MOBILE ROBOTS MARKET, BY COMPONENT, 2024-2032 (IN $ MILLION)
TABLE 7: LATIN AMERICA AUTONOMOUS MOBILE ROBOTS MARKET, BY ROBOT TYPE, 2024-2032 (IN $ MILLION)
TABLE 8: LATIN AMERICA AUTONOMOUS MOBILE ROBOTS MARKET, BY APPLICATION, 2024-2032 (IN $ MILLION)
TABLE 9: LATIN AMERICA AUTONOMOUS MOBILE ROBOTS MARKET, BY END-USER, 2024-2032 (IN $ MILLION)
TABLE 10: LATIN AMERICA AUTONOMOUS MOBILE ROBOTS MARKET, BY COUNTRY OUTLOOK, FORECAST YEARS, 2024-2032 (IN $ MILLION)
LIST OF FIGURES
FIGURE 1: PORTER’S FIVE FORCES ANALYSIS
FIGURE 2: KEY BUYING IMPACT ANALYSIS
FIGURE 3: SUPPLY CHAIN ANALYSIS
FIGURE 4: LATIN AMERICA AUTONOMOUS MOBILE ROBOTS MARKET, BY COMPONENT, 2023 & 2032 (IN %)
FIGURE 5: LATIN AMERICA AUTONOMOUS MOBILE ROBOTS MARKET, BY HARDWARE, 2024-2032 (IN $ MILLION)
FIGURE 6: LATIN AMERICA AUTONOMOUS MOBILE ROBOTS MARKET, BY SOFTWARE, 2024-2032 (IN $ MILLION)
FIGURE 7: LATIN AMERICA AUTONOMOUS MOBILE ROBOTS MARKET, BY SERVICE, 2024-2032 (IN $ MILLION)
FIGURE 8: LATIN AMERICA AUTONOMOUS MOBILE ROBOTS MARKET, BY ROBOT TYPE, 2023 & 2032 (IN %)
FIGURE 9: LATIN AMERICA AUTONOMOUS MOBILE ROBOTS MARKET, BY GOODS-TO-PERSON PICKING ROBOTS, 2024-2032 (IN $ MILLION)
FIGURE 10: LATIN AMERICA AUTONOMOUS MOBILE ROBOTS MARKET, BY SELF-DRIVING FORKLIFTS, 2024-2032 (IN $ MILLION)
FIGURE 11: LATIN AMERICA AUTONOMOUS MOBILE ROBOTS MARKET, BY AUTONOMOUS INVENTORY ROBOTS, 2024-2032 (IN $ MILLION)
FIGURE 12: LATIN AMERICA AUTONOMOUS MOBILE ROBOTS MARKET, BY UNMANNED AERIAL VEHICLES, 2024-2032 (IN $ MILLION)
FIGURE 13: LATIN AMERICA AUTONOMOUS MOBILE ROBOTS MARKET, BY APPLICATION, 2023 & 2032 (IN %)
FIGURE 14: LATIN AMERICA AUTONOMOUS MOBILE ROBOTS MARKET, BY SORTING, 2024-2032 (IN $ MILLION)
FIGURE 15: LATIN AMERICA AUTONOMOUS MOBILE ROBOTS MARKET, BY PICK & PLACE, 2024-2032 (IN $ MILLION)
FIGURE 16: LATIN AMERICA AUTONOMOUS MOBILE ROBOTS MARKET, BY TOWING, 2024-2032 (IN $ MILLION)
FIGURE 17: LATIN AMERICA AUTONOMOUS MOBILE ROBOTS MARKET, BY TUGGING, 2023 & 2032 (IN %)
FIGURE 18: LATIN AMERICA AUTONOMOUS MOBILE ROBOTS MARKET, BY OTHER APPLICATIONS, 2024-2032 (IN $ MILLION)
FIGURE 19: LATIN AMERICA AUTONOMOUS MOBILE ROBOTS MARKET, BY END-USER, 2023 & 2032 (IN %)
FIGURE 20: LATIN AMERICA AUTONOMOUS MOBILE ROBOTS MARKET, BY AUTOMOTIVE, 2024-2032 (IN $ MILLION)
FIGURE 21: LATIN AMERICA AUTONOMOUS MOBILE ROBOTS MARKET, BY ELECTRONICS, 2024-2032 (IN $ MILLION)
FIGURE 22: LATIN AMERICA AUTONOMOUS MOBILE ROBOTS MARKET, BY HEALTHCARE & PHARMACEUTICALS, 2024-2032 (IN $ MILLION)
FIGURE 23: LATIN AMERICA AUTONOMOUS MOBILE ROBOTS MARKET, BY LOGISTICS & E-COMMERCE, 2024-2032 (IN $ MILLION)
FIGURE 24: LATIN AMERICA AUTONOMOUS MOBILE ROBOTS MARKET, BY AEROSPACE & DEFENSE, 2024-2032 (IN $ MILLION)
FIGURE 25: LATIN AMERICA AUTONOMOUS MOBILE ROBOTS MARKET, BY FAST-MOVING CONSUMER GOODS (FMCG), 2024-2032 (IN $ MILLION)
FIGURE 26: LATIN AMERICA AUTONOMOUS MOBILE ROBOTS MARKET, BY OTHER END-USERS, 2024-2032 (IN $ MILLION)
FIGURE 27: LATIN AMERICA AUTONOMOUS MOBILE ROBOTS MARKET, BY COUNTRY OUTLOOK, 2023 & 2032 (IN %)
FIGURE 28: BRAZIL AUTONOMOUS MOBILE ROBOTS MARKET 2024-2032 (IN $ MILLION)
FIGURE 29: MEXICO AUTONOMOUS MOBILE ROBOTS MARKET 2024-2032 (IN $ MILLION)
FIGURE 30: REST OF LATIN AMERICA AUTONOMOUS MOBILE ROBOTS MARKET 2024-2032 (IN $ MILLION)