
Automation in Medical Devices Manufacturing Market Report 2025-2035
Description
The Automation in Medical Devices Manufacturing Market Report 2025-2035 (Including Impact of U.S. Trade Tariffs): This report will prove invaluable to leading firms striving for new revenue pockets if they wish to better understand the industry and its underlying dynamics. It will be useful for companies that would like to expand into different industries or to expand their existing operations in a new region.
The medical device manufacturing landscape is undergoing a quiet revolution—and automation is right at the centre of it. As demand surges for high-precision devices and global regulatory frameworks grow more stringent, manufacturers are leaning into automation not simply as a cost-saving lever, but as a strategic imperative. Whether it's robotics, machine vision, AI, or IIoT, these technologies are reshaping how medical devices are designed, assembled, inspected, and brought to market.
Across cleanrooms, sterile packaging lines, and testing labs, automation is driving tangible results. It reduces human error, ensures repeatable precision, and allows production to scale efficiently without compromising on quality. Smart systems and reprogrammable platforms are enabling faster product changeovers, vital for firms managing diverse portfolios and shorter innovation cycles. For both invasive and non-invasive medical technologies, robotic accuracy and sensor-led feedback loops are no longer optional—they're essential.
But the shift is about more than factory-floor efficiency. Automation is laying the foundation for a new era of data-led manufacturing. With real-time analytics, cloud integration, and predictive maintenance now embedded into core operations, manufacturers are gaining deeper process insight, improving uptime, and ensuring continual compliance in a heavily regulated space. For OEMs and fast-growing MedTech innovators alike, automation offers the scalability and audit readiness needed to compete in an increasingly globalised and quality-sensitive market.
The impact of U.S. trade tariffs—especially on imports from China and the EU—has been felt sharply across the automation value chain. Critical components like sensors, motors, actuators, and precision microelectronics have become costlier and harder to procure, slowing down deployments and raising the barrier for innovation. For medical device manufacturers reliant on globally sourced parts, the effect has been twofold: rising costs and disruptive delays.
Yet, this disruption has prompted an overdue recalibration. Forward-looking manufacturers are rethinking their sourcing strategies—diversifying supplier networks, investing in nearshoring across Southeast Asia and Latin America, and in some cases, reshoring to strengthen domestic supply chains. These shifts, while complex, have also fast-tracked the adoption of advanced automation technologies.
Robotics, AI-powered quality control, and digital twins are no longer viewed as future luxuries—they're today's operational safeguards. The direction of travel is clear: the industry is moving toward a more resilient, regionally distributed, and digitally enabled manufacturing ecosystem. For CXOs, this moment represents not just a challenge, but an inflection point—where automation becomes the strategic lever for both competitiveness and continuity.
In addition to the revenue predictions for the overall world market and segments, you will also find revenue forecasts for five regional and 22 leading national markets:
The report also includes profiles for some of the leading companies in the Automation in Medical Devices Manufacturing Market, 2025 to 2035, with a focus on this segment of these companies' operations.
Overall world revenue for Automation in Medical Devices Manufacturing Market, 2025 to 2035 in terms of value the market will surpass US$9.0 billion in 2025, our work calculates. We predict strong revenue growth through to 2035. Our work identifies which organizations hold the greatest potential. Discover their capabilities, progress, and commercial prospects, helping you stay ahead.
In summary, our 260+ page report provides you with the following knowledge:
Find quantitative and qualitative analyses with independent predictions. Receive information that only our report contains, staying informed with invaluable business intelligence.
Please Note: Prior to initiating fulfillment of an order, the client will be required to sign a document detailing the purchase terms for a publication from this publisher
Automation at the Core of Global Medtech Innovation
The medical device manufacturing landscape is undergoing a quiet revolution—and automation is right at the centre of it. As demand surges for high-precision devices and global regulatory frameworks grow more stringent, manufacturers are leaning into automation not simply as a cost-saving lever, but as a strategic imperative. Whether it's robotics, machine vision, AI, or IIoT, these technologies are reshaping how medical devices are designed, assembled, inspected, and brought to market.
Across cleanrooms, sterile packaging lines, and testing labs, automation is driving tangible results. It reduces human error, ensures repeatable precision, and allows production to scale efficiently without compromising on quality. Smart systems and reprogrammable platforms are enabling faster product changeovers, vital for firms managing diverse portfolios and shorter innovation cycles. For both invasive and non-invasive medical technologies, robotic accuracy and sensor-led feedback loops are no longer optional—they're essential.
But the shift is about more than factory-floor efficiency. Automation is laying the foundation for a new era of data-led manufacturing. With real-time analytics, cloud integration, and predictive maintenance now embedded into core operations, manufacturers are gaining deeper process insight, improving uptime, and ensuring continual compliance in a heavily regulated space. For OEMs and fast-growing MedTech innovators alike, automation offers the scalability and audit readiness needed to compete in an increasingly globalised and quality-sensitive market.
What would be the Impact of US Trade Tariffs on the Global Automation in Medical Devices Manufacturing Market?
The impact of U.S. trade tariffs—especially on imports from China and the EU—has been felt sharply across the automation value chain. Critical components like sensors, motors, actuators, and precision microelectronics have become costlier and harder to procure, slowing down deployments and raising the barrier for innovation. For medical device manufacturers reliant on globally sourced parts, the effect has been twofold: rising costs and disruptive delays.
Yet, this disruption has prompted an overdue recalibration. Forward-looking manufacturers are rethinking their sourcing strategies—diversifying supplier networks, investing in nearshoring across Southeast Asia and Latin America, and in some cases, reshoring to strengthen domestic supply chains. These shifts, while complex, have also fast-tracked the adoption of advanced automation technologies.
Robotics, AI-powered quality control, and digital twins are no longer viewed as future luxuries—they're today's operational safeguards. The direction of travel is clear: the industry is moving toward a more resilient, regionally distributed, and digitally enabled manufacturing ecosystem. For CXOs, this moment represents not just a challenge, but an inflection point—where automation becomes the strategic lever for both competitiveness and continuity.
What Questions Should You Ask before Buying a Market Research Report?
- How is the automation in medical devices manufacturing market evolving?
- What is driving and restraining the automation in medical devices manufacturing market?
- How will each automation in medical devices manufacturing submarket segment grow over the forecast period and how much revenue will these submarkets account for in 2035?
- How will the market shares for each automation in medical devices manufacturing submarket develop from 2025 to 2035?
- What will be the main driver for the overall market from 2025 to 2035?
- Will leading automation in medical devices manufacturing markets broadly follow the macroeconomic dynamics, or will individual national markets outperform others?
- How will the market shares of the national markets change by 2035 and which geographical region will lead the market in 2035?
- Who are the leading players and what are their prospects over the forecast period?
- What are the automation in medical devices manufacturing projects for these leading companies?
- How will the industry evolve during the period between 2025 and 2035? What are the implications of
automation in medical devices manufacturing projects taking place now and over the next 10 years? - Is there a greater need for product commercialisation to further scale the automation in medical devices manufacturing market?
- Where is the automation in medical devices manufacturing market heading and how can you ensure you are at the forefront of the market?
- What are the best investment options for new product and service lines?
- What are the key prospects for moving companies into a new growth path and C-suite?
You need to discover how this will impact the automation in medical devices manufacturing market today, and over the next 10 years:
- Our 264-page report provides 111 tables and 167 charts/graphs exclusively to you.
- The report highlights key lucrative areas in the industry so you can target them – NOW.
- It contains in-depth analysis of global, regional and national sales and growth.
- It highlights for you the key successful trends, changes and revenue projections made by your competitors.
Forecasts to 2035 and other analyses reveal commercial prospects
- In addition to revenue forecasting to 2035, our new study provides you with recent results, growth rates, and market shares.
- You will find original analyses, with business outlooks and developments.
- Discover qualitative analyses (including market dynamics, drivers, opportunities, and restraints), Porter's Five Forces Analysis, PEST Analysis and recent developments.
Segments Covered in the Report
Process
- Assembly & Packaging
- Material Handling
- Inspection & Quality Assurance (QA)
- Others
Automation Type
- Fixed
- Flexible/Programmable
- Robotics & AI
- IIoT Systems
Device Type
- Surgical Instruments
- Diagnostic Devices
- Others
End-users
- Medical Device OEMs
- Contract Manufacturing Organisations (CMOs)
- R&D and Prototyping Facilities
In addition to the revenue predictions for the overall world market and segments, you will also find revenue forecasts for five regional and 22 leading national markets:
North America
- U.S.
- Canada
Europe
- Germany
- UK
- France
- Italy
- Spain
- Rest of Europe
Asia Pacific
- Japan
- China
- India
- Australia
- South Korea
- Rest of Asia Pacific
Latin America
- Brazil
- Mexico
- Rest of Latin America
MEA
- GCC
- South Africa
- Rest of MEA
The report also includes profiles for some of the leading companies in the Automation in Medical Devices Manufacturing Market, 2025 to 2035, with a focus on this segment of these companies' operations.
Leading companies and the potential for market growth
- ATS Life Sciences plc
- Beckhoff Automation
- Celestica HealthTech
- Emerson Electric Co.
- Festo AG & Co. KG
- Flex Ltd.
- GE HealthCare
- Genesis Automation
- Honeywell International Inc.
- JR Automation
- Mikron Group
- Omron Corporation
- PAR Systems
- Rockwell‚ÄØAutomation
- Sanmina Corporation
- The Dürr Group
Overall world revenue for Automation in Medical Devices Manufacturing Market, 2025 to 2035 in terms of value the market will surpass US$9.0 billion in 2025, our work calculates. We predict strong revenue growth through to 2035. Our work identifies which organizations hold the greatest potential. Discover their capabilities, progress, and commercial prospects, helping you stay ahead.
How will the Automation in Medical Devices Manufacturing Market, 2025 to 2035 report help you?
In summary, our 260+ page report provides you with the following knowledge:
- Revenue forecasts to 2035 for Automation in Medical Devices Manufacturing Market 2025 to 2035, with forecasts for process, automation type, device type, and end-users, each forecast at a global and regional level – discover the industry's prospects, finding the most lucrative places for investments and revenues.
- Revenue forecasts to 2035 for five regional and 22 key national markets – See forecasts for the Automation in Medical Devices Manufacturing Market, 2025 to 2035 market in North America, Europe, Asia-Pacific, Latin America, and MEA. Also forecasted is the market in the US, Canada, Mexico, Brazil, Germany, France, UK, Italy, China, India, Japan, and Australia among other prominent economies.
- Prospects for established firms and those seeking to enter the market – including company profiles for 16 of the major companies involved in the Automation in Medical Devices Manufacturing Market, 2025 to 2035.
Find quantitative and qualitative analyses with independent predictions. Receive information that only our report contains, staying informed with invaluable business intelligence.
Please Note: Prior to initiating fulfillment of an order, the client will be required to sign a document detailing the purchase terms for a publication from this publisher
Table of Contents
264 Pages
- 1 Report Overview
- 1.1 Objectives of the Study
- 1.2 Introduction to Automation in Medical Devices Manufacturing Market
- 1.3 What This Report Delivers
- 1.4 Why You Should Read This Report
- 1.5 Key Questions Answered by This Analytical Report Include:
- 1.6 Who is This Report For?
- 1.7 Methodology
- 1.7.1 Market Definitions
- 1.7.2 Market Evaluation & Forecasting Methodology
- 1.7.3 Data Validation
- 1.7.3.1 Primary Research
- 1.7.3.2 Secondary Research
- 1.8 Frequently Asked Questions (FAQs)
- 1.9 Associated Visiongain Reports
- 1.10 About Visiongain
- 2 Executive Summary
- 3 Market Overview
- 3.1 Key Findings
- 3.2 Market Dynamics
- 3.3 Impact Analysis
- 3.3.1 Market Driving Factors
- 3.3.1.1 Rising Complexity and Miniaturization of Medical Devices
- 3.3.1.2 Demand for Cost-Effective Manufacturing and Operational Efficiency
- 3.3.1.3 Increasing Regulatory Scrutiny and Need for Compliance
- 3.3.2 Market Restraining Factors
- 3.3.2.1 High Capital Investment and Cost of Automation Technologies
- 3.3.2.2 Limited Flexibility for Low-Volume and Custom Production
- 3.3.2.3 Integration Challenges with Legacy Systems and Fragmented Infrastructure
- 3.3.3 Market Opportunities
- 3.3.3.1 Adoption of Smart Factory and Industry 4.0 Technologies
- 3.3.3.2 Integration of AI and Predictive Analytics in Quality Control and Production
- 3.3.3.3 Expansion Opportunities in Emerging Markets and Asia-Pacific
- 3.4 U.S. Tariffs: What's the Impact on Global Automation in Medical Devices Manufacturing Market?
- 3.4.1 Overview
- 3.4.2 V-Shaped Recovery Scenario
- 3.4.3 Why V-Shaped Recovery?
- 3.4.3.1 Impact from Tariffs
- 3.4.3.2 Market Dynamics and Demand Recovery
- 3.4.3.3 Policy and Funding Support
- 3.4.3.4 Timeframe for Recovery
- 3.4.4 U-Shaped Recovery Scenario
- 3.4.4.1 Why U-Shaped Recovery?
- 3.4.4.2 Impact from Tariffs
- 3.4.4.3 Market Dynamics and Demand Recovery
- 3.4.4.4 Policy and Funding Support
- 3.4.4.5 Timeframe for Recovery
- 3.4.5 L Shaped Recovery Scenario
- 3.4.5.1 Why L-Shaped Recovery?
- 3.4.5.2 Impact from Tariffs
- 3.4.5.3 Market Dynamics and Demand Recovery
- 3.4.5.4 Policy and Funding Support
- 3.4.5.5 Timeframe for Recovery
- 3.4.6 What Strategic Considerations Should Clients Factor into Their Near-term (2025–2030) and Long-term (2025–2035) Planning?
- 3.4.7 Impact of U.S. and China Trade War on Automation in Medical Devices Manufacturing Market
- 3.4.8 How Might the Most Impacted Countries Experience Positive and Negative Effects Resulting from These Policy Changes?
- 3.5 Porter's Five Forces Analysis
- 3.5.1 Bargaining Power of Suppliers
- 3.5.2 Bargaining Power of Buyers
- 3.5.3 Competitive Rivalry
- 3.5.4 Threat of Substitutes
- 3.5.5 Threat of New Entrants
- 3.6 PEST Analysis
- 4 Automation in Medical Devices Manufacturing Market Analysis by Process
- 4.1 Key Findings
- 4.2 Process Segment: Market Attractiveness Index
- 4.3 Automation in Medical Devices Manufacturing Market Size Estimation and Forecast by Process
- 4.4 Assembly & Packaging
- 4.4.1 Market Forecast by Region, 2025-2035 (US$ Billion, AGR %)
- 4.4.2 Market Share by Region, 2025 & 2035 (%)
- 4.5 Material Handling
- 4.5.1 Market Forecast by Region, 2025-2035 (US$ Billion, AGR %)
- 4.5.2 Market Share by Region, 2025 & 2035 (%)
- 4.6 Inspection & Quality Assurance (QA)
- 4.6.1 Market Forecast by Region, 2025-2035 (US$ Billion, AGR %)
- 4.6.2 Market Share by Region, 2025 & 2035 (%)
- 4.7 Others
- 4.7.1 Market Forecast by Region, 2025-2035 (US$ Billion, AGR %)
- 4.7.2 Market Share by Region, 2025 & 2035 (%)
- 5 Automation in Medical Devices Manufacturing Market Analysis by Automation Type
- 5.1 Key Findings
- 5.2 Automation Type Segment: Market Attractiveness Index
- 5.3 Automation in Medical Devices Manufacturing Market Size Estimation and Forecast by Automation Type
- 5.4 Fixed
- 5.4.1 Market Forecast by Region, 2025-2035 (US$ Billion, AGR %)
- 5.4.2 Market Share by Region, 2025 & 2035 (%)
- 5.5 Flexible/Programmable
- 5.5.1 Market Forecast by Region, 2025-2035 (US$ Billion, AGR %)
- 5.5.2 Market Share by Region, 2025 & 2035 (%)
- 5.6 Robotics & AI
- 5.6.1 Market Forecast by Region, 2025-2035 (US$ Billion, AGR %)
- 5.6.2 Market Share by Region, 2025 & 2035 (%)
- 5.7 IIoT Systems
- 5.7.1 Market Forecast by Region, 2025-2035 (US$ Billion, AGR %)
- 5.7.2 Market Share by Region, 2025 & 2035 (%)
- 6 Automation in Medical Devices Manufacturing Market Analysis by Device Type
- 6.1 Key Findings
- 6.2 Device Type Segment: Market Attractiveness Index
- 6.3 Automation in Medical Devices Manufacturing Market Size Estimation and Forecast by Device Type
- 6.4 Surgical Instruments
- 6.4.1 Market Forecast by Region, 2025-2035 (US$ Billion, AGR %)
- 6.4.2 Market Share by Region, 2025 & 2035 (%)
- 6.5 Diagnostic Devices
- 6.5.1 Market Forecast by Region, 2025-2035 (US$ Billion, AGR %)
- 6.5.2 Market Share by Region, 2025 & 2035 (%)
- 6.6 Others
- 6.6.1 Market Forecast by Region, 2025-2035 (US$ Billion, AGR %)
- 6.6.2 Market Share by Region, 2025 & 2035 (%)
- 7 Automation in Medical Devices Manufacturing Market Analysis by End-users
- 7.1 Key Findings
- 7.2 End-users Segment: Market Attractiveness Index
- 7.3 Automation in Medical Devices Manufacturing Market Size Estimation and Forecast by End-users
- 7.4 Medical Device OEMs
- 7.4.1 Market Forecast by Region, 2025-2035 (US$ Billion, AGR %)
- 7.4.2 Market Share by Region, 2025 & 2035 (%)
- 7.5 Contract Manufacturing Organisations (CMOs)
- 7.5.1 Market Forecast by Region, 2025-2035 (US$ Billion, AGR %)
- 7.5.2 Market Share by Region, 2025 & 2035 (%)
- 7.6 R&D and Prototyping Facilities
- 7.6.1 Market Forecast by Region, 2025-2035 (US$ Billion, AGR %)
- 7.6.2 Market Share by Region, 2025 & 2035 (%)
- 8 Automation in Medical Devices Manufacturing Market Analysis by Region
- 8.1 Key Findings
- 8.2 Regional Market Size Estimation and Forecast
- 9 North America Automation in Medical Devices Manufacturing Market Analysis
- 9.1 Key Findings
- 9.2 North America Automation in Medical Devices Manufacturing Market Attractiveness Index
- 9.3 North America Automation in Medical Devices Manufacturing Market by Country, 2025, 2030 & 2035 (US$ Billion)
- 9.4 North America Automation in Medical Devices Manufacturing Market Size Estimation and Forecast by Country
- 9.5 North America Automation in Medical Devices Manufacturing Market Size Estimation and Forecast by Process
- 9.6 North America Automation in Medical Devices Manufacturing Market Size Estimation and Forecast by Automation Type
- 9.7 North America Automation in Medical Devices Manufacturing Market Size Estimation and Forecast by Device Type
- 9.8 North America Automation in Medical Devices Manufacturing Market Size Estimation and Forecast by End-users
- 9.9 U.S. Automation in Medical Devices Manufacturing Market Analysis
- 9.10 Canada Automation in Medical Devices Manufacturing Market Analysis
- 10 Europe Automation in Medical Devices Manufacturing Market Analysis
- 10.1 Key Findings
- 10.2 Europe Automation in Medical Devices Manufacturing Market Attractiveness Index
- 10.3 Europe Automation in Medical Devices Manufacturing Market by Country, 2025, 2030 & 2035 (US$ Billion)
- 10.4 Europe Automation in Medical Devices Manufacturing Market Size Estimation and Forecast by Country
- 10.5 Europe Automation in Medical Devices Manufacturing Market Size Estimation and Forecast by Process
- 10.6 Europe Automation in Medical Devices Manufacturing Market Size Estimation and Forecast by Automation Type
- 10.7 Europe Automation in Medical Devices Manufacturing Market Size Estimation and Forecast by Device Type
- 10.8 Europe Automation in Medical Devices Manufacturing Market Size Estimation and Forecast by End-users
- 10.9 Germany Automation in Medical Devices Manufacturing Market Analysis
- 10.10 UK Automation in Medical Devices Manufacturing Market Analysis
- 10.11 France Automation in Medical Devices Manufacturing Market Analysis
- 10.12 Italy Automation in Medical Devices Manufacturing Market Analysis
- 10.13 Spain Automation in Medical Devices Manufacturing Market Analysis
- 10.14 Russia Automation in Medical Devices Manufacturing Market Analysis
- 10.15 Rest of Europe Automation in Medical Devices Manufacturing Market Analysis
- 11 Asia Pacific Automation in Medical Devices Manufacturing Market Analysis
- 11.1 Key Findings
- 11.2 Asia Pacific Automation in Medical Devices Manufacturing Market Attractiveness Index
- 11.3 Asia Pacific Automation in Medical Devices Manufacturing Market by Country, 2025, 2030 & 2035 (US$ Billion)
- 11.4 Asia Pacific Automation in Medical Devices Manufacturing Market Size Estimation and Forecast by Country
- 11.5 Asia Pacific Automation in Medical Devices Manufacturing Market Size Estimation and Forecast by Process
- 11.6 Asia Pacific Automation in Medical Devices Manufacturing Market Size Estimation and Forecast by Automation Type
- 11.7 Asia Pacific Automation in Medical Devices Manufacturing Market Size Estimation and Forecast by Device Type
- 11.8 Asia Pacific Automation in Medical Devices Manufacturing Market Size Estimation and Forecast by End-users
- 11.9 Japan Automation in Medical Devices Manufacturing Market Analysis
- 11.10 China Automation in Medical Devices Manufacturing Market Analysis
- 11.11 India Automation in Medical Devices Manufacturing Market Analysis
- 11.12 Australia Automation in Medical Devices Manufacturing Market Analysis
- 11.13 South Korea Automation in Medical Devices Manufacturing Market Analysis
- 11.14 South-East Asia Automation in Medical Devices Manufacturing Market Analysis
- 11.15 Rest of Asia Pacific Automation in Medical Devices Manufacturing Market Analysis
- 12 Latin America Automation in Medical Devices Manufacturing Market Analysis
- 12.1 Key Findings
- 12.2 Latin America Automation in Medical Devices Manufacturing Market Attractiveness Index
- 12.3 Latin America Automation in Medical Devices Manufacturing Market by Country, 2025, 2030 & 2035 (US$ Billion)
- 12.4 Latin America Automation in Medical Devices Manufacturing Market Size Estimation and Forecast by Country
- 12.5 Latin America Automation in Medical Devices Manufacturing Market Size Estimation and Forecast by Process
- 12.6 Latin America Automation in Medical Devices Manufacturing Market Size Estimation and Forecast by Automation Type
- 12.7 Latin America Automation in Medical Devices Manufacturing Market Size Estimation and Forecast by Device Type
- 12.8 Latin America Automation in Medical Devices Manufacturing Market Size Estimation and Forecast by End-users
- 12.9 Brazil Automation in Medical Devices Manufacturing Market Analysis
- 12.10 Mexico Automation in Medical Devices Manufacturing Market Analysis
- 12.11 Rest of Latin America Automation in Medical Devices Manufacturing Market Analysis
- 13 MEA Automation in Medical Devices Manufacturing Market Analysis
- 13.1 Key Findings
- 13.2 MEA Automation in Medical Devices Manufacturing Market Attractiveness Index
- 13.3 MEA Automation in Medical Devices Manufacturing Market by Country, 2025, 2030 & 2035 (US$ Billion)
- 13.4 MEA Automation in Medical Devices Manufacturing Market Size Estimation and Forecast by Country
- 13.5 MEA Automation in Medical Devices Manufacturing Market Size Estimation and Forecast by Process
- 13.6 MEA Automation in Medical Devices Manufacturing Market Size Estimation and Forecast by Automation Type
- 13.7 MEA Automation in Medical Devices Manufacturing Market Size Estimation and Forecast by Device Type
- 13.8 MEA Automation in Medical Devices Manufacturing Market Size Estimation and Forecast by End-users
- 13.9 GCC Automation in Medical Devices Manufacturing Market Analysis
- 13.10 South Africa Automation in Medical Devices Manufacturing Market Analysis
- 13.11 Rest of MEA Automation in Medical Devices Manufacturing Market Analysis
- 14 Company Profiles
- 14.1 Emerson Electric Co.
- 14.1.1 Company Snapshot
- 14.1.2 Company Overview
- 14.1.3 Financial Analysis
- 14.1.3.1 Net Revenue, 2020-2024
- 14.1.3.2 Regional Market Shares, 2024
- 14.1.3.3 Business Segment Market Shares, 2024
- 14.1.4 Product Benchmarking
- 14.1.5 Strategic Outlook
- 14.2 JR Automation
- 14.2.1 Company Snapshot
- 14.2.2 Company Overview
- 14.2.3 Product Benchmarking
- 14.3 Mikron Group
- 14.3.1 Company Snapshot
- 14.3.2 Company Overview
- 14.3.3 Financial Analysis
- 14.3.3.1 Net Revenue, 2020-2024
- 14.3.3.2 Regional Market Shares, 2024
- 14.3.3.3 Business Segment Market Shares, 2024
- 14.3.4 Product Benchmarking
- 14.4 Sanmina Corporation
- 14.4.1 Company Snapshot
- 14.4.2 Company Overview
- 14.4.3 Financial Analysis
- 14.4.3.1 Net Revenue, 2020-2024
- 14.4.3.2 Regional Market Shares, 2024
- 14.4.3.3 Business Segment Market Shares, 2024
- 14.4.4 Product Benchmarking
- 14.4.5 Strategic Outlook
- 14.5 Celestica HealthTech
- 14.5.1 Company Snapshot
- 14.5.2 Company Overview
- 14.5.3 Financial Analysis
- 14.5.3.1 Net Revenue, 2020-2024
- 14.5.4 Product Benchmarking
- 14.6 Flex Ltd.
- 14.6.1 Company Snapshot
- 14.6.2 Company Overview
- 14.6.3 Financial Analysis
- 14.6.3.1 Net Revenue, 2020-2024
- 14.6.3.2 Regional Market Shares, 2024
- 14.6.3.3 Business Segment Market Shares, 2024
- 14.6.4 Product Benchmarking
- 14.6.5 Strategic Outlook
- 14.7 Beckhoff Automation
- 14.7.1 Company Snapshot
- 14.7.2 Company Overview
- 14.7.3 Product Benchmarking
- 14.8 Festo AG & Co. KG
- 14.8.1 Company Snapshot
- 14.8.2 Company Overview
- 14.8.3 Product Benchmarking
- 14.8.4 Strategic Outlook
- 14.9 The Dürr Group
- 14.9.1 Company Snapshot
- 14.9.2 Company Overview
- 14.9.3 Financial Analysis
- 14.9.3.1 Net Revenue, 2020-2024
- 14.9.3.2 Regional Market Shares, 2024
- 14.9.4 Product Benchmarking
- 14.10 Rockwell‚ÄØAutomation
- 14.10.1 Company Snapshot
- 14.10.2 Company Overview
- 14.10.3 Financial Analysis
- 14.10.3.1 Net Revenue, 2020-2024
- 14.10.3.2 Regional Market Shares, 2024
- 14.10.3.3 Business Segment Market Shares, 2024
- 14.10.4 Product Benchmarking
- 14.10.5 Strategic Outlook
- 14.11 Genesis Automation
- 14.11.1 Company Snapshot
- 14.11.2 Company Overview
- 14.11.3 Product Benchmarking
- 14.12 Honeywell International Inc.
- 14.12.1 Company Snapshot
- 14.12.2 Company Overview
- 14.12.3 Financial Analysis
- 14.12.3.1 Net Revenue, 2020-2024
- 14.12.3.2 R&D, 2021-2024
- 14.12.3.3 Business Segment Market Shares, 2024
- 14.12.4 Product Benchmarking
- 14.12.5 Strategic Outlook
- 14.13 ATS Life Sciences plc
- 14.13.1 Company Snapshot
- 14.13.2 Company Overview
- 14.13.3 Product Benchmarking
- 14.14 Omron Corporation
- 14.14.1 Company Snapshot
- 14.14.2 Company Overview
- 14.14.3 Financial Analysis
- 14.14.3.1 Net Revenue, 2020-2024
- 14.14.3.2 R&D, 2020-2024
- 14.14.3.3 Regional Market Shares, 2024
- 14.14.3.4 Business Segment Market Shares, 2024
- 14.14.4 Product Benchmarking
- 14.15 PAR Systems
- 14.15.1 Company Snapshot
- 14.15.2 Company Overview
- 14.15.3 Product Benchmarking
- 14.16 GE HealthCare
- 14.16.1 Company Snapshot
- 14.16.2 Company Overview
- 14.16.3 Financial Analysis
- 14.16.3.1 Net Revenue, 2020-2024
- 14.16.4 Product Benchmarking
- 14.16.5 Strategic Outlook
- 15 Conclusion and Recommendations
- 15.1 Concluding Remarks from Visiongain
- 15.2 Recommendations for Market Players
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