Press release
Automotive Robotics Market Outstanding Key Player Analysis of ABB, KUKA, Fanuc, Yamaha, Omron Corporation, Kawasaki Heavy Industries & More

Automotive Robotics Market, Automotive Robotics Market Study, Automotive Robotics Market Size, Automotive Robotics Market Segmenta
Automotive Robotics Market size is projected to exceed USD 5.96 billion by 2024; Increasing demand from applications such as welding, robotic processing, painting & dispense, and handling operations will augment the industry growth rate. Further, benefits offered including light weight, easy deployment, durable and space saving is predicted to increase the product penetration.
Report Mainly focuses on the top Manufacturers in global market are given bellow
ABB, KUKA, Fanuc, Yamaha, Omron Corporation, Kawasaki Heavy Industries, Rockwell Automation, Staubli, and Universal Robots.
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The Automotive Robotics Market Report gives a clear picture of the current situation of the market which covers global industry analysis, size, share, growth, trends, key statistics and forecast Till 2024. The report on global Automotive Robotics market evaluates the growth trends of the industry through historical study and estimates future prospects based on comprehensive research.
The report extensively provides the market share, growth, trends and forecasts for the period 2017-2024. The market size in terms of revenue (USD MN) is calculated for the study period along with the details of the factors affecting the market growth (drivers and restraints).
By Product
• Articulated
• Cartesian
• SCARA
• Parallel
• Cylindrical
By Component
• Hardware [Controllers, Arms, End Effector, Drive, And Sensor]
• Software & Services
By Application
• Welding
• Assembly
• Processing
• Handling Operations
• Paint & Dispense
Technical support will facilitate the product as an alternative for skilled labors. Growth in R&D activities will support the industry growth. It has unlocked multiple avenues for automakers to offer its customers with increased versatility, flexibility, and reliability.
Reduced cost, low energy consumption, and enhanced product quality owing to usage of improved quality sensors, electronics, and software programming will propel the industry demand. Increasing unemployment due to consistent demand for automated solutions will hamper the automotive robotics industry growth rate.
SCARA robots used in the automobile industry will cross over 33 thousand units by 2024. This can be credited to increasing usage in applications such as high-speed assembly and handling operations. Rising demand for reduced bottlenecks and optimized productivity will boost the product penetration.
Parallel robots will witness over 4% CAGR by 2024. Micro-manufacturing automation is a key factor that will fuel the product demand over the forecast time frame. High speed, stiffness, and flexible fixturing are the benefits supporting the product demand.
Software and services segment is projected to cross USD 1 billion in 2024. Improved software programming has enhanced the quality that will further propel the industry growth. Software loaded in the product will enable real time decision making in the production process supporting the industry growth rate.
Automotive robotic controllers are the most commonly used hardware with a CAGR of over 4% in the forecast period. High acceptance of robotic arms is required in areas, where repetitive tasks are performed. Easy installing, lightweight model, and space-saving ability are the features, accelerating the robotic arms industry growth.
Handling operations dominated the automotive robotics market share in 2016 owing to lifting tasks meeting several demands of the automakers. Safety regulations for these advanced products has resulted in employee?s well-being coupled with minimized associated injuries.
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The above information is provided on a regional and country basis for the following:
• North America (U.S., Canada, Mexico)
o Europe (Germany, France, Italy, Spain, Russia, Poland, Switzerland, Netherlands)
o Asia Pacific (China, India, Japan, South Korea, Vietnam, Australia, Thailand)
o Latin America (Mexico, Brazil, Argentina)
o MEA (KSA, UAE, South Africa)
Growth in automobile industry is creating positive impact over the implementation of advanced products to meet the customer demand. Improved focus of vendors on automation solutions to eliminate risk factors arising from labor will spur the demand for automotive robotics. Additionally, extensive usage of robotics will lead to reduction of labor costs and thereby increase OEMs profitability. Necessity for better productivity and proper functioning of assembly lines in vehicle production has enhanced industry growth. Increasing technological advancements in raw materials used for robot making will escalate the product demand.
Few Table of Content@
Chapter 1. Methodology and Scope
1.1. Methodology
1.1.1. Initial data exploration
1.1.2. Statistical model and forecast
1.1.3. Industry insights and validation
1.1.4. Scope, definition and forecast parameters
1.2. Data Sources
1.2.1. Primary
1.2.2. Secondary
Chapter 2. Executive Summary
2.1. Automotive robotics industry 3600 synopsis, 2013 - 2024
2.1.1. Business trends
2.1.2. Product trends
2.1.3. Component trends
2.1.4. Application trends
2.1.5. Regional trends
Chapter 3. Automotive robotics Industry Insights
3.1. Industry segmentation
3.2. Industry landscape, 2013 - 2024
3.3. Industry ecosystem analysis
3.3.1. Raw material supplier
3.3.2. Manufacturers
3.3.3. Profit margin analysis
3.3.4. Distribution channel analysis
3.3.4.1. B2B
3.3.4.2. OEM
3.3.4.3. Aftermarket
3.3.5. Application
3.3.6. Vendor matrix
3.3.6.1. Product portfolio
3.3.6.2. Role
3.3.6.3. Global presence
3.4. Technology & innovation landscape
3.5. Regulatory landscape
3.5.1. U.S.
3.5.2. EU
3.5.3. China
3.6. Industry impact forces
3.6.1. Growth drivers, by region
3.6.1.1. NA
3.6.1.2. EU
3.6.1.3. APAC
3.6.1.4. LATAM
3.6.1.5. MEA
3.6.2. Industry pitfalls & challenges
3.7. Growth potential analysis
3.8. Porter's analysis
3.9. Competitive landscape, 2016
3.9.1. Company market share analysis, 2016
3.9.2. Key stake holders
3.9.3. Strategy dashboard
3.10. PESTEL analysis
Chapter 4. Automotive robotics Market, By Product
4.1. Global automotive robotics market share by product, 2016 & 2024
4.2. Articulated
4.2.1. Global market estimates and forecasts, 2013 – 2024
4.2.2. Market estimates and forecast, by region, 2013 – 2024
4.3. Cartesian
4.3.1. Global market estimates and forecasts, 2013 – 2024
4.3.2. Market estimates and forecast, by region, 2013 – 2024
4.4. SCARA
4.4.1. Global market estimates and forecasts, 2013 – 2024
4.4.2. Market estimates and forecast, by region, 2013 – 2024
4.5. Parallel
4.5.1. Global market estimates and forecasts, 2013 – 2024
4.5.2. Market estimates and forecast, by region, 2013 – 2024
4.6. Cylindrical
4.6.1. Global market estimates and forecasts, 2013 – 2024
4.6.2. Market estimates and forecast, by region, 2013 – 2024
Chapter 5. Automotive Robotics Market, By Component
5.1. Global automotive robotics market share by component, 2016 & 2024
5.2. Hardware
5.2.1. Global market estimates and forecasts, 2013 – 2024
5.2.2. Market estimates and forecast, by region, 2013 – 2024
5.2.3. Controllers
5.2.3.1. Global market estimates and forecasts, 2013 – 2024
5.2.3.2. Market estimates and forecast, by region, 2013 – 2024
5.2.4. Robotics arm
5.2.4.1. Global market estimates and forecasts, 2013 – 2024
5.2.4.2. Market estimates and forecast, by region, 2013 – 2024
5.2.5. End effector
5.2.5.1. Global market estimates and forecasts, 2013 – 2024
5.2.5.2. Market estimates and forecast, by region, 2013 – 2024
5.2.6. Automotive robotic drive
5.2.6.1. Global market estimates and forecasts, 2013 – 2024
5.2.6.2. Market estimates and forecast, by region, 2013 – 2024
5.2.7. Automotive robotic sensor
5.2.7.1. Global market estimates and forecasts, 2013 – 2024
5.2.7.2. Market estimates and forecast, by region, 2013 – 2024
5.3. Software & services
5.3.1. Global market estimates and forecasts, 2013 – 2024
5.3.2. Market estimates and forecast, by region, 2013 – 2024
Chapter 6. Automotive Robotics Market, By Application
6.1. Global automotive robotics market share by application, 2016 & 2024
6.2. General assembly
6.2.1. Global market estimates and forecasts, 2013 – 2024
6.2.2. Market estimates and forecast, by region, 2013 – 2024
6.3. Plastics and press automation
6.3.1. Global market estimates and forecasts, 2013 – 2024
6.3.2. Market estimates and forecast, by region, 2013 – 2024
6.4. Powertrain robotic assembly
6.4.1. Global market estimates and forecasts, 2013 – 2024
6.4.2. Market estimates and forecast, by region, 2013 – 2024
6.5. Paint & dispense
6.5.1. Global market estimates and forecasts, 2013 – 2024
6.5.2. Market estimates and forecast, by region, 2013 – 2024
6.6. Others
6.6.1. Global market estimates and forecasts, 2013 – 2024
6.6.2. Market estimates and forecast, by region, 2013 – 2024
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