
Mass Flow Controller Market, Opportunity, Growth Drivers, Industry Trend Analysis and Forecast, 2024-2032
Description
The Global Mass Flow Controller Market, valued at USD 1.64 billion in 2023, is expected to grow at a robust CAGR of 6.1% between 2024 - 2032. Mass flow controllers (MFCs) are widely used in industrial and scientific applications to accurately control and measure the flow of gases and liquids. The market's expansion is driven by increasing demand for stainless steel-based MFCs in marine applications, the growing need for low flow rate measurement, and the rising adoption of thermal mass flow meters across various industries in the Asia Pacific region.
The mass flow controller market is experiencing significant growth, propelled by advancements in flow measurement technologies and their applications in a variety of industries. Stainless steel, due to its corrosion resistance and strength, is increasingly being used for marine-type MFCs. This material is ideal for harsh marine environments, where reliability and durability are paramount. As marine operations continue to expand, the demand for stainless steel-based MFCs is expected to increase.
Additionally, the demand for low flow rate measurement is growing in industries such as pharmaceuticals, semiconductor manufacturing, and energy production. Low flow rate MFCs provide precise control in applications where even minute variations in flow can lead to significant performance changes. The use of thermal mass flow meters, known for their accuracy and reliability in gas flow measurements, is also on the rise. These meters are especially effective for measuring low flow rates and are anticipated to see widespread adoption in various industrial applications.
Thermal mass flow meters is expected to generate USD 974.81 million in 2032 due to their high accuracy, versatility, and ability to measure low flow rates effectively. These meters are widely used in applications that require gas flow measurement, such as environmental monitoring, HVAC systems, and industrial gas processing. Their adoption is expected to grow as industries continue to demand more efficient and precise flow measurement solutions.
Stainless steel-based mass flow controllers are expected to generate USD 2.03 billion in 2032 due to their ability to withstand extreme environmental conditions. With their resistance to corrosion, these controllers ensure long-term performance in marine environments, where the equipment is exposed to saltwater and varying temperatures. The increasing use of stainless steel MFCs in the marine industry is contributing to the growth of this market segment.
Low flow rate mass flow controllers are anticipated to generate USD 1.37 billion through 2032, as they are highly preferred in industries such as pharmaceuticals, chemicals, and semiconductor manufacturing, where precise flow control at low flow rates is essential. These controllers are used to ensure the accuracy of chemical dosing, gas flow regulation, and various other critical processes where small flow rates are involved.
Asia Pacific Mass Flow Controller Market generated 956.77 million in 2023 driven by rapid industrialization, advancements in manufacturing technologies, and increasing investments in infrastructure. Countries like China, Japan, South Korea, and India are key contributors to the market's growth, particularly in sectors such as chemicals, oil & gas, and electronics. The region's growing demand for energy-efficient and precise flow measurement solutions is further accelerating the uptake of mass flow controllers.
The mass flow controller market is experiencing significant growth, propelled by advancements in flow measurement technologies and their applications in a variety of industries. Stainless steel, due to its corrosion resistance and strength, is increasingly being used for marine-type MFCs. This material is ideal for harsh marine environments, where reliability and durability are paramount. As marine operations continue to expand, the demand for stainless steel-based MFCs is expected to increase.
Additionally, the demand for low flow rate measurement is growing in industries such as pharmaceuticals, semiconductor manufacturing, and energy production. Low flow rate MFCs provide precise control in applications where even minute variations in flow can lead to significant performance changes. The use of thermal mass flow meters, known for their accuracy and reliability in gas flow measurements, is also on the rise. These meters are especially effective for measuring low flow rates and are anticipated to see widespread adoption in various industrial applications.
Thermal mass flow meters is expected to generate USD 974.81 million in 2032 due to their high accuracy, versatility, and ability to measure low flow rates effectively. These meters are widely used in applications that require gas flow measurement, such as environmental monitoring, HVAC systems, and industrial gas processing. Their adoption is expected to grow as industries continue to demand more efficient and precise flow measurement solutions.
Stainless steel-based mass flow controllers are expected to generate USD 2.03 billion in 2032 due to their ability to withstand extreme environmental conditions. With their resistance to corrosion, these controllers ensure long-term performance in marine environments, where the equipment is exposed to saltwater and varying temperatures. The increasing use of stainless steel MFCs in the marine industry is contributing to the growth of this market segment.
Low flow rate mass flow controllers are anticipated to generate USD 1.37 billion through 2032, as they are highly preferred in industries such as pharmaceuticals, chemicals, and semiconductor manufacturing, where precise flow control at low flow rates is essential. These controllers are used to ensure the accuracy of chemical dosing, gas flow regulation, and various other critical processes where small flow rates are involved.
Asia Pacific Mass Flow Controller Market generated 956.77 million in 2023 driven by rapid industrialization, advancements in manufacturing technologies, and increasing investments in infrastructure. Countries like China, Japan, South Korea, and India are key contributors to the market's growth, particularly in sectors such as chemicals, oil & gas, and electronics. The region's growing demand for energy-efficient and precise flow measurement solutions is further accelerating the uptake of mass flow controllers.
Table of Contents
302 Pages
- Chapter 1 Research Methodology and Scope
- 1.1 Scope and definition
- 1.1.1 Scope
- 1.1.2 Definitions
- 1.2 Research Design
- 1.2.1 Data collection techniques
- 1.2.2 Market size estimation
- 1.2.3 Forecasting model
- 1.3 Data Sources
- 1.3.1 Primary Sources
- 1.3.2 Secondary Sources
- 1.3.2.1 Paid Sources
- 1.3.2.2 Public Sources
- Chapter 2 Executive Summary
- 2.1 Mass flow controller, 2023-2032
- 2.2 Business trends
- 2.3 Regional trends
- 2.4 Material type trends
- 2.5 Flow Rate
- 2.6 Product type trends
- 2.7 Connectivity technology trends
- 2.8 Industry vertical trends
- Chapter 3 Mass flow controller Industry Insights
- 3.1 Industry ecosystem analysis
- 3.1.1 Raw material & component suppliers
- 3.1.2 Mass flow controller manufacturers
- 3.1.3 Technology & software providers
- 3.1.4 System integrators & OEMs
- 3.1.5 End-use industries
- 3.2 Vendor matrix
- 3.3 Profit margin analysis
- 3.4 Technology and innovation landscape
- 3.4.1 Integration of IoT & smart sensors
- 3.4.2 Adoption of MEMS-based MFCs
- 3.4.3 AI & machine learning for flow optimization
- 3.4.4 Advanced material development
- 3.5 Patent analysis
- Mass Flow Controller Market Report, 2024-2032
- 3.6 Industry impact forces
- 3.6.1 Growth drivers
- 3.6.1.1 Surge in demand for industrial automation in several developing nations
- 3.6.1.2 Rising adoption of mass flow controllers in fuel cells for renewable energy applications .62
- 3.6.1.3 Increasing demand for advanced mass flow controllers in water and wastewater
- treatment plants
- 3.6.1.4 Rapid government initiatives to boost semiconductor manufacturing in Asia Pacific
- 3.6.1.5 Continuous investments in pharmaceuticals and healthcare industries for advanced
- equipment
- 3.6.2 Pitfalls & challenges
- 3.6.2.1 High initial investment in mass flow controller
- 3.6.2.2 Variation in differential pressure MFCs can create offset in flow measurement
- 3.7 Growth potential analysis, 2023
- 3.8 Porter’s analysis
- 3.9 PESTEL analysis
- 3.10 Future market trends
- 3.11 Regulatory landscape
- 3.11.1 International standards
- 3.11.1.1 International Organization for Standardization (ISO)
- 3.11.1.1.1 ISO 9001:
- 3.11.1.1.2 ISO 14644:
- 3.11.1.1.3 ISO 13485:
- 3.11.1.2 IEC 61508 series
- 3.11.1.3 SEMI (Semiconductor Equipment and Materials International)
- 3.11.2 North America
- 3.11.2.1 National Institute of Standards and Technology (NIST)
- 3.11.2.2 Food and Drug Administration (FDA) (FDA 21 CFR Part 11)
- 3.11.2.3 Measurement Canada
- 3.11.3 Europe
- 3.11.3.1 REACH (Regulation on Registration, Evaluation, Authorization, and Restriction of
- Chemicals)
- 3.11.3.2 ATEX Directive (2014/34/EU)
- 3.11.4 Asia Pacific
- 3.11.4.1 China Compulsory Certification (CCC)
- 3.11.4.2 Japan’s Pharmaceutical and Medical Device Act (PMDA)
- 3.11.5 Latin America
- 3.11.5.1 Mexican Official Standards (NOM)
- 3.11.5.2 National Institute of Metrology, Standardization, and Industrial Quality (INMETRO)
- 3.11.6 Middle East and Africa
- 3.11.6.1 Emirates Authority for Standardization & Metrology (ESMA)
- Mass Flow Controller Market Report, 2024-2032
- Chapter 4 Competitive Landscape, 2023
- 4.1 Introduction
- 4.2 Company market share, 2023
- 4.3 Strategic initiatives
- 4.4 Competitive analysis of the key market players
- 4.4.1 Horiba, Ltd.
- 4.4.2 Hitachi Metals, Ltd
- 4.4.3 Parker Hannifin
- 4.4.4 Azbil Corporation
- 4.4.5 MKS Instruments
- 4.4.6 Bronkhorst High-Tech
- 4.4.7 Burkert Fluid Control Systems
- 4.5 Competitive positioning matrix
- 4.6 Strategic outlook matrix
- Chapter 5 Mass Flow Controller Market, By Material Type
- 5.1 Key trends
- 5.2 Stainless steel
- 5.3 Exotic alloys
- Chapter 6 Mass Flow Controller Market, By Flow Rate
- 6.1 Key trends
- 6.2 Low flow rate
- 6.3 Medium flow rate
- 6.4 High flow rate
- Chapter 7 Mass Flow Controller Market, By Product Type
- 7.1 Key trends
- 7.2 Differential pressure flow meter
- 7.3 Thermal mass flow meter
- 7.4 Coriolis mass flow meter
- 7.5 Pressure based MFC
- Chapter 8 Mass Flow Controller Market, By Connectivity Technology
- 8.1 Key trends
- 8.2 Analog
- 8.3 Profibus
- 8.4 RS-485
- 8.5 Profinet
- 8.6 EtherCAT
- 8.7 Ethernet/IP
- 8.8 Modbus RTU
- 8.9 DeviceNet
- Mass Flow Controller Market Report, 2024-2032
- 8.10 Foundation fieldbus
- Chapter 9 Mass Flow Controller Market, By Industry Vertical
- 9.1 Key trends
- 9.2 Oil & gas
- 9.3 Pharmaceutical
- 9.4 Food & beverages
- 9.5 Chemical
- 9.6 Healthcare & life sciences
- 9.7 Semiconductor
- 9.8 Water & wastewater treatment
- 9.9 Others
- Chapter 10 Mass Flow Controller Market, By Region
- 10.1 Key trends
- 10.2 North America
- 10.3 Europe
- 10.4 Asia Pacific
- 10.5 Latin America
- 10.6 Middle East & Africa (MEA)
- Chapter 11 Company Profiles
- 11.1 AALBORG INSTRUMENTS & CONTROLS, INC.
- 11.1.1 Global overview
- 11.1.2 Market/Business Overview
- 11.1.3 Financial data
- 11.1.4 Product Landscape
- 11.1.5 SWOT analysis
- 11.2 Alicat Scientific
- 11.2.1 Global overview
- 11.2.2 Market/Business Overview
- 11.2.3 Financial data
- 11.2.4 Product Landscape
- 11.2.5 SWOT analysis
- 11.3 Axetris AG
- 11.3.1 Global overview
- 11.3.2 Market/Business Overview
- 11.3.3 Financial data
- 11.3.4 Product Landscape
- 11.3.5 SWOT analysis
- 11.4 Azbil Corporation
- 11.4.1 Global overview
- Mass Flow Controller Market Report, 2024-2032
- 11.4.2 Market/Business Overview
- 11.4.3 Financial data
- 11.4.3.1 Sales Revenue, 2022-2024 (USD Million)
- 11.4.4 Product Landscape
- 11.4.5 SWOT analysis
- 11.5 Bronkhorst High-Tech
- 11.5.1 Global overview
- 11.5.2 Market/Business Overview
- 11.5.3 Financial data
- 11.5.4 Product Landscape
- 11.5.5 SWOT analysis
- 11.6 Brooks Instrument
- 11.6.1 Global overview
- 11.6.2 Market/Business Overview
- 11.6.3 Financial data
- 11.6.4 Product Landscape
- 11.6.5 Strategic Outlook
- 11.6.6 SWOT analysis
- 11.7 Burkert Fluid Control Systems
- 11.7.1 Global overview
- 11.7.2 Market/Business Overview
- 11.7.3 Financial data
- 11.7.4 Product Landscape
- 11.7.5 Strategic Outlook
- 11.7.6 SWOT analysis
- 11.8 Dakota Instruments, Inc
- 11.8.1 Global overview
- 11.8.2 Market/Business Overview
- 11.8.3 Financial data
- 11.8.4 Product Landscape
- 11.8.5 SWOT analysis
- 11.9 Dwyer Instruments
- 11.9.1 Global overview
- 11.9.2 Market/Business Overview
- 11.9.3 Financial data
- 11.9.4 Product Landscape
- 11.9.5 SWOT analysis
- 11.10 Fcon Co.
- 11.10.1 Global overview
- 11.10.2 Market/Business Overview
- Mass Flow Controller Market Report, 2024-2032
- 11.10.3 Financial data
- 11.10.4 Product Landscape
- 11.10.5 SWOT analysis
- 11.11 Hitachi Metals (Proterial)
- 11.11.1 Global overview
- 11.11.2 Market/Business Overview
- 11.11.3 Financial data
- 11.11.3.1 Sales Revenue, 2021-2023(USD Million)
- 11.11.4 Product Landscape
- 11.11.5 SWOT analysis
- 11.12 Horiba, Ltd.
- 11.12.1 Global overview
- 11.12.2 Market/Business Overview
- 11.12.3 Financial data
- 11.12.3.1 Sales Revenue, 2022-2024 (USD Million)
- 11.12.4 Product Landscape
- 11.12.5 SWOT analysis
- 11.13 Kelly Pneumatics, Inc.
- 11.13.1 Global overview
- 11.13.2 Market/Business Overview
- 11.13.3 Financial data
- 11.13.4 Product Landscape
- 11.13.5 SWOT analysis
- 11.14 MKS Instruments
- 11.14.1 Global overview
- 11.14.2 Market/Business Overview
- 11.14.3 Financial data
- 11.14.3.1 Sales Revenue, 2021-2023(USD Million)
- 11.14.4 Product Landscape
- 11.14.5 SWOT analysis
- 11.15 NEW-FLOW (Golden Mountain Enterprise Co., Ltd)
- 11.15.1 Global overview
- 11.15.2 Market/Business Overview
- 11.15.3 Financial data
- 11.15.4 Product Landscape
- 11.15.5 SWOT analysis
- 11.16 Ohkura Electric Co. Ltd.
- 11.16.1 Global overview
- 11.16.2 Market/Business Overview
- Mass Flow Controller Market Report, 2024-2032
- 11.16.3 Financial data
- 11.16.4 Product Landscape
- 11.16.5 SWOT analysis
- 11.17 OMEGA Engineering Inc
- 11.17.1 Global overview
- 11.17.2 Market/Business Overview
- 11.17.3 Financial data
- 11.17.4 Product Landscape
- 11.17.5 SWOT analysis
- 11.18 Parker Hannifin
- 11.18.1 Global overview
- 11.18.2 Market/Business Overview
- 11.18.3 Financial data
- 11.18.3.1 Sales Revenue, 2022-2024 (USD Million)
- 11.18.4 Product Landscape
- 11.18.5 SWOT analysis
- 11.19 Sensirion AG
- 11.19.1 Global overview
- 11.19.2 Market/Business Overview
- 11.19.3 Financial data
- 11.19.3.1 Sales Revenue, 2021-2023 (USD Million)
- 11.19.4 Product Landscape
- 11.19.5 Strategic Outlook
- 11.19.6 SWOT analysis
- Chapter 12 Additional Requirement
- 12.1 Supplier Analysis
- 12.1.1 MFC Supplier Market Share Analysis, 2023 (%)
- 12.1.2 Market share analysis of key 10 MFC supplier by Semiconductor OEM, 2023
- 12.1.2.1 Bronkhorst High-Tech market share analysis by OEMs, 2023
- 12.1.2.2 Brooks Instrument market share analysis by OEMs, 2023
- 12.1.2.3 Burkert Fluid Control Systems market share analysis by OEMs, 2023
- 12.1.2.4 Fujikin market share analysis by OEMs, 2023
- 12.1.2.5 Hitachi Metals, Ltd. Company market share analysis by OEMs, 2023
- 12.1.2.6 HORIBA, Ltd. market share analysis by OEMs, 2023
- 12.1.2.7 MKS Instruments market share analysis by OEMs, 2023
- 12.1.2.8 Pivotal market share analysis by OEMs, 2023
- 12.1.2.9 Sensirion AG market share analysis by OEMs, 2023
- 12.1.2.10 Tokyo Keiso Co., Ltd. market share analysis by OEMs, 2023
- 12.1.3 List of key customers, by key 10 MFC Supplier
- Mass Flow Controller Market Report, 2024-2032
- 12.1.3.1 List of key customers, by key 5 MFC suppliers
- 12.1.3.1 List of key customers, by key 5 MFC suppliers
- 12.2 MFC for semiconductor industry market estimates and forecast, 2021– 2032 (USD Million)
- 12.2.1 MFC for semiconductor industry market, by application, 2023 & 2032
- 12.2.2 MFC for semiconductor industry market Estimates and Forecast by application, 2021– 2032 (USD
- Million)
- 12.2.2.1 Chemical Vapor Deposition (CVD)
- 12.2.2.2 Physical Vapor Deposition (PVD)
- 12.2.2.3 Etching Processes
- 12.2.2.4 Ion Implantation
- 12.2.2.5 Wafer Cleaning
- 12.2.2.6 Others
- 12.3 LAM Research Corporation competitive intelligence assessment
- 12.3.1 Competitor and positioning of LAM Research Corporation
- 12.3.1.1 Market share analysis of Lamp Research Corporation for MFC in semiconductor market,
- 2023297
- 12.3.2 Competitive analysis of LAM Research Corporation with other prominent market players. 298
- 12.4 Alternative technology replacing the usage on MFC
- 12.4.1 Coriolis Mass Flow Meters
- 12.4.2 Positive Displacement Flow Meters
- 12.4.3 Electromagnetic Flow Meters
- 12.4.4 Ultrasonic Flow Meters
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