The global Logistics Robots Market By 2024 is expected to witness significant growth, with its market size projected to increase from USD 6.17 billion in 2021 to 2029 by USD 21.01 billion. This reflects a compound annual growth rate (CAGR) of 16.7% over the forecast period. This report highlights industry growth trends, key drivers such as cost-effective solutions and sustainable practices, and emerging opportunities across residential, commercial, and industrial sectors.

The Logistics Robots Market comprises key manufacturers such as ABB Ltd (Switzerland), KUKA AG (Germany), Toyota Industries Corporation (Japan), Fanuc Corporation (Japan), Yaskawa Electric Corporation (Japan), Kion Group Ag (Germany), Toshiba Corporation (Japan), Krones AG (Germany), Kawasaki Heavy Industries Ltd. (Japan), Omron Corporation (Japan) Expansions, collaborations, and deals were some of the major strategies adopted by these key players to enhance their positions in the Logistics Robots Market.

Market Scope:

Featuring in-depth analysis and forward-looking projections, this report is an essential resource for stakeholders aiming to leverage emerging opportunities and address challenges in the Logistics Robots Market. Key recent industry developments include;

  • FANUC Corporation launched advanced LR-10iA/10 robots. These robots are compact and suitable for companies with limited floor space. These robots fit into machine tools for loading and unloading the parts. The LR-10iA/10 solution helps distribution centers, logistics warehouses, and manufacturers overcome obstacles associated with labor shortages and also reduces operating costs.
  • Toyota Industries Corporation launched a global autonomous vehicle software development firm, T-Hive. The new firm T-Hive would provide a control system and industrial logistics robotics solutions, including automated guided forklifts, automated guided vehicles, and autonomous mobile robots. The new firm was established to meet the robots’ growing demands for its customers.
  • ABB Ltd. launched collaborative robots named SWIFTI and GoFa cobot, offering high payloads and speeds for logistics and other industries. These cobots can deliver more robust, faster automation in several industries, including healthcare, electronics, consumer goods, logistics, food and beverages, and others.
  • Kion Group AG partnered with Fraunhofer IML to develop swarm robots for warehouse management. The partnership made a logistic robots project and developed ‘the LoadRunner’ robot for warehousing. The next generation of autonomous transport vehicles revolutionizes intralogistics solutions with Artificial Intelligence (AI) technology. Swarm robotics simplifies the warehouses—with KION as the exclusive champion of the new technology.
  • Toshiba Corporation’s subsidiary firm Toshiba Machine launched collaborative robots. With SCARA duo-arm and humanoid duo-arm cobots, the company expanded its robot line and prepared to do business as Shibaura Machines.

Logistics Robots Market Highlights:

The report provides valuable insights into the Compound Annual Growth Rate (CAGR) of the Logistics Robots Market, projecting its growth from 2021 to 2029. It offers a comprehensive analysis of the key drivers fueling market expansion, highlighting the factors that will propel growth during the forecast period. Additionally, the report delivers precise estimates of the market size and share, helping stakeholders understand the Logistics Robots Market’s position in the broader industry.

Future trends and consumer behavior forecasts are also covered, offering a forward-looking perspective on market shifts. The report includes a regional growth analysis, breaking down the performance of the Logistics Robots Market across;

  • North America (By Type, By Application, By Industry & By Country)
    • U.S. (By Type)
    • Canada (By Type)
  • Europe (By Type, By Application, By Industry & By Country)
    • Germany (By Type)
    • U.K. (By Type)
    • France (By Type)
    • Rest of Europe
  • Asia Pacific (By Type, By Application, By Industry & By Country)
    • China (By Type)
    • India (By Type)
    • Japan (By Type)
    • Southeast Asia (By Type)
    • Rest of Asia Pacific
  • Middle East & Africa (By Type, By Application, By Industry & By Country)
    • South Africa (By Type)
    • GCC (By Type)
    • Rest of Middle East & Africa
  • Latin America (By Type, By Application, By Industry & By Country)
    • Brazil (By Type)
    • Mexico (By Type)
    • Rest of Latin America

Segmentation of this market:

Logistics Robots Market Size, Share & Industry Analysis, By Type (Automated Guided Vehicles, Autonomous Mobile Robots, Robot Arms, Others), By Application (Palletizing & De-palletizing, Pick & Place, Transportation, Others (Shipment & Delivery)), By Industry (E-commerce, Healthcare, Retail, Food & Beverages, Automotive, Others (Consumer Electronics)), and Regional Forecast, 2022-2029

Explore a comprehensive Table of Contents, featuring detailed charts, tables, and figures, spread across 120+ pages. This report offers exclusive data, key statistics, industry trends, and insights into the competitive landscape within this niche sector.

Table of Contents:

  • Introduction
  • Research Scope
  • Market Segmentation
  • Research Methodology
  • Definitions and Assumptions
  • Executive Summary
  • Market Dynamics
    • Drivers
    • Restraints
    • Opportunities
  • Key Insights
  • Industry Developments – Mergers, Acquisitions, and Partnerships
  • Porter’s Five Forces Analysis
  • SWOT Analysis
  • Technological Advancements
  • Value Chain Analysis

TOC Continued…!

Drivers & Restrains:

  • Drivers:
    • Increasing demand for automation in supply chain and warehousing operations driving the adoption of logistics robots to enhance efficiency and reduce labor costs.
    • Technological advancements in robotics, including improved navigation and AI capabilities, enabling logistics robots to perform complex tasks with greater accuracy.
  • Restraints:
    • High initial investment and integration costs associated with logistics robots may deter small and medium-sized enterprises from adopting these technologies.
    • Concerns about job displacement and the need for skilled personnel to operate and maintain robotic systems can hinder market acceptance.

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