Industry: Machinery & Equipment
Published Date: 2024-01-03
Pages: 85 Pages
Report ld: 2121055
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Vacuum Grippers Market Size(US$)

CAGR 2024-2030
36.2%
Market Size,2030
USD 478.1
Million
Market Snapshot
Source: Secondary research, interviews with experts, and QYResearch analysis
Vacuum grippers use the difference between atmospheric pressure and a vacuum to lift, hold and move objects. Typically, the vacuum (or 'vacuum flow') is generated by a miniature electromechanical pump or a compressed air-driven pump. The vacuum flow must be uninterrupted to ensure that cobot can safely hold on to the object it has picked up. Vacuum grippers, also known as suction cup grippers, can be a simple yet highly effective gripping solution for a wide range of applications. With the right type of gripper in the right integration, vacuum grippers provide safe, powerful grips in collaborative robot (cobot) applications. Using the difference between a vacuum and atmospheric pressure, vacuum grippers lift, hold, and move objects. The vacuum is created by a miniature electromechanical pump or compressed air-driven pump. To ensure a cobot can safely hold an object, the vacuum flow must not be interrupted. Vacuum grippers come with added advantages such as the ability to handle a variety of item types. However, vacuum grippers come with added electricity costs to power compressed air or vacuum pumps. Additionally, vacuum grippers are sensitive to dusty conditions. Each of the several types of vacuum grippers has its own advantages and disadvantages. Vacuum grippers commonly use either a compressed air-driven pump or a miniature electromechanical pump. Compressed air-driven grippers produce four to ten times more power than their electromechanical counterparts. Electromechanical vacuum grippers, however, excel in applications demanding a high degree of mobility. While the compressed air-driven pump provides superior lifting capacity, it can also increase operating costs because of the electricity needed to run the compressor. Conversely, miniature electromechanical pumps shine in applications with a high degree of mobility; however, they often generate less power than compressed air-driven pumps. Because vacuum grippers work best in applications when the vacuum flow is uninterrupted, vacuum grippers are ideal for parts that are large enough and flat enough to create enough difference in pressure between the vacuum and atmospheric pressure. This means parts with large, flat sides are ideal for vacuum grippers. However, excessively heavy parts may not be suitable since an enormous amount of negative pressure is needed for this. In cobot applications with light, flat parts, vacuum grippers are an effective gripping solution.
The global Vacuum Grippers market was valued at US$ 57 million in 2023 and is anticipated to reach US$ 478.1 million by 2030, witnessing a CAGR of 36.2% during the forecast period 2024-2030.
The leading vacuum gripper players in the world include Schmalz, Piab AB, SMC, Onrobot and Robotiq. The top three global players by revenue account for nearly 50 per cent. Asia Pacific is the world's largest market with a market share of about 60 percent, followed by Europe and North America with about 19 percent and 15 percent, respectively. In terms of product type, electromechanical driven vacuum gripper is the largest market segment, accounting for 65% of the market share. In terms of application, manufacturing industry has the largest share, about 70%.
This report aims to provide a comprehensive presentation of the global market for Vacuum Grippers, with both quantitative and qualitative analysis, to help readers develop business/growth strategies, assess the market competitive situation, analyze their position in the current marketplace, and make informed business decisions regarding Vacuum Grippers.
MARKET SEGMENTATION
REPORT SCOPE
The Vacuum Grippers market size, estimations, and forecasts are provided in terms of output/shipments (K Units) and revenue ($ millions), considering 2023 as the base year, with history and forecast data for the period from 2019 to 2030. This report segments the global Vacuum Grippers market comprehensively. Regional market sizes, concerning products by Type, by Application, and by players, are also provided.
For a more in-depth understanding of the market, the report provides profiles of the competitive landscape, key competitors, and their respective market ranks. The report also discusses technological trends and new product developments.
The report will help the Vacuum Grippers manufacturers, new entrants, and industry chain related companies in this market with information on the revenues, production, and average price for the overall market and the sub-segments across the different segments, by company, by Type, by Application, and by regions.
CHAPTER OUTLINE
Chapter 1: Introduces the report scope of the report, executive summary of different market segments (by region, by Type, by Application, etc), including the market size of each market segment, future development potential, and so on. It offers a high-level view of the current state of the market and its likely evolution in the short to mid-term, and long term.
Chapter 2: Detailed analysis of Vacuum Grippers manufacturers competitive landscape, price, production and value market share, latest development plan, merger, and acquisition information, etc.
Chapter 3: Production/output, value of Vacuum Grippers by region/country. It provides a quantitative analysis of the market size and development potential of each region in the next six years.
Chapter 4: Consumption of Vacuum Grippers in regional level and country level. It provides a quantitative analysis of the market size and development potential of each region and its main countries and introduces the market development, future development prospects, market space, and production of each country in the world.
Chapter 5: Provides the analysis of various market segments by Type, covering the market size and development potential of each market segment, to help readers find the blue ocean market in different market segments.
Chapter 6: Provides the analysis of various market segments by Application, covering the market size and development potential of each market segment, to help readers find the blue ocean market in different downstream markets.
Chapter 7: Provides profiles of key players, introducing the basic situation of the main companies in the market in detail, including product production/output, value, price, gross margin, product introduction, recent development, etc.
Chapter 8: Analysis of industrial chain, including the upstream and downstream of the industry.
Chapter 9: Introduces the market dynamics, latest developments of the market, the driving factors and restrictive factors of the market, the challenges and risks faced by manufacturers in the industry, and the analysis of relevant policies in the industry.
Chapter 10: The main points and conclusions of the report.
QYRESEARCH'S STRENGTHS
Unlike generic global market reports, this study combines macro-level industry trends with hyper-local operational intelligence, empowering data-driven decisions across the Compound Chocolate value chain, addressing:
We identify regional market threats and growth prospects to guide your overseas layout.
We adjust product portfolios in line with local consumption habits.
We unpack rivals’ operation strategies for scattered and highly concentrated industries.
We cover competition landscape, full supply chain and quantified market size data, and deliver tailor-made customized surveys to meet your unique business demands.
We own self-owned massive exclusive databases, backed by 19 years of global market research experience across thousands of sectors.
Our team operates 24 hours a day, 365 days a year, enabling ultra-fast report turnaround to respond to your research needs efficiently.
We integrate regional risk assessment, localized product optimization and competitor analysis to deliver actionable market strategies.
All data is cross-verified from multiple industry sources to deliver thorough, precise analysis that supports reliable corporate strategic decisions.
We provide responsive, dedicated after-sales support to resolve all follow-up inquiries about reports, data and industry interpretation.
TABLE OF CONTENTS
1 Vacuum Grippers Market Overview
1.1 Product Definition
1.2 Vacuum Grippers Segment by Type
1.2.1 Global Vacuum Grippers Market Value Growth Rate Analysis by Type 2023 VS 2030
1.2.2 Compressed Air-type Vacuum Grippers
1.2.3 Electromechanical-driven Vacuum Grippers
1.3 Vacuum Grippers Segment by Application
1.3.1 Global Vacuum Grippers Market Value Growth Rate Analysis by Application: 2023 VS 2030
1.3.2 Manufacturing
1.3.3 Logistics
1.3.4 Others
1.4 Global Market Growth Prospects
1.4.1 Global Vacuum Grippers Production Value Estimates and Forecasts (2019-2030)
1.4.2 Global Vacuum Grippers Production Capacity Estimates and Forecasts (2019-2030)
1.4.3 Global Vacuum Grippers Production Estimates and Forecasts (2019-2030)
1.4.4 Global Vacuum Grippers Market Average Price Estimates and Forecasts (2019-2030)
1.5 Assumptions and Limitations
2 Market Competition by Manufacturers
2.1 Global Vacuum Grippers Production Market Share by Manufacturers (2019-2024)
2.2 Global Vacuum Grippers Production Value Market Share by Manufacturers (2019-2024)
2.3 Global Key Players of Vacuum Grippers, Industry Ranking, 2022 VS 2023 VS 2024
2.4 Global Vacuum Grippers Market Share by Company Type (Tier 1, Tier 2 and Tier 3)
2.5 Global Vacuum Grippers Average Price by Manufacturers (2019-2024)
2.6 Global Key Manufacturers of Vacuum Grippers, Manufacturing Base Distribution and Headquarters
2.7 Global Key Manufacturers of Vacuum Grippers, Product Offered and Application
2.8 Global Key Manufacturers of Vacuum Grippers, Date of Enter into This Industry
2.9 Vacuum Grippers Market Competitive Situation and Trends
2.9.1 Vacuum Grippers Market Concentration Rate
2.9.2 Global 5 and 10 Largest Vacuum Grippers Players Market Share by Revenue
2.10 Mergers & Acquisitions, Expansion
3 Vacuum Grippers Production by Region
3.1 Global Vacuum Grippers Production Value Estimates and Forecasts by Region: 2019 VS 2023 VS 2030
3.2 Global Vacuum Grippers Production Value by Region (2019-2030)
3.2.1 Global Vacuum Grippers Production Value Market Share by Region (2019-2024)
3.2.2 Global Forecasted Production Value of Vacuum Grippers by Region (2025-2030)
3.3 Global Vacuum Grippers Production Estimates and Forecasts by Region: 2019 VS 2023 VS 2030
3.4 Global Vacuum Grippers Production by Region (2019-2030)
3.4.1 Global Vacuum Grippers Production Market Share by Region (2019-2024)
3.4.2 Global Forecasted Production of Vacuum Grippers by Region (2025-2030)
3.5 Global Vacuum Grippers Market Price Analysis by Region (2019-2024)
3.6 Global Vacuum Grippers Production and Value, Year-over-Year Growth
3.6.1 North America Vacuum Grippers Production Value Estimates and Forecasts (2019-2030)
3.6.2 Europe Vacuum Grippers Production Value Estimates and Forecasts (2019-2030)
3.6.3 China Vacuum Grippers Production Value Estimates and Forecasts (2019-2030)
3.6.4 Japan Vacuum Grippers Production Value Estimates and Forecasts (2019-2030)
4 Vacuum Grippers Consumption by Region
4.1 Global Vacuum Grippers Consumption Estimates and Forecasts by Region: 2019 VS 2023 VS 2030
4.2 Global Vacuum Grippers Consumption by Region (2019-2030)
4.2.1 Global Vacuum Grippers Consumption by Region (2019-2024)
4.2.2 Global Vacuum Grippers Forecasted Consumption by Region (2025-2030)
4.3 North America
4.3.1 North America Vacuum Grippers Consumption Growth Rate by Country: 2019 VS 2023 VS 2030
4.3.2 North America Vacuum Grippers Consumption by Country (2019-2030)
4.3.3 United States
4.3.4 Canada
4.4 Europe
4.4.1 Europe Vacuum Grippers Consumption Growth Rate by Country: 2019 VS 2023 VS 2030
4.4.2 Europe Vacuum Grippers Consumption by Country (2019-2030)
4.4.3 Germany
4.4.4 France
4.4.5 U.K.
4.4.6 Italy
4.4.7 Russia
4.5 Asia Pacific
4.5.1 Asia Pacific Vacuum Grippers Consumption Growth Rate by Region: 2019 VS 2023 VS 2030
4.5.2 Asia Pacific Vacuum Grippers Consumption by Region (2019-2030)
4.5.3 China
4.5.4 Japan
4.5.5 South Korea
4.5.6 China Taiwan
4.5.7 Southeast Asia
4.5.8 India
4.6 Latin America, Middle East & Africa
4.6.1 Latin America, Middle East & Africa Vacuum Grippers Consumption Growth Rate by Country: 2019 VS 2023 VS 2030
4.6.2 Latin America, Middle East & Africa Vacuum Grippers Consumption by Country (2019-2030)
4.6.3 Mexico
4.6.4 Brazil
4.6.5 Turkey
5 Segment by Type
5.1 Global Vacuum Grippers Production by Type (2019-2030)
5.1.1 Global Vacuum Grippers Production by Type (2019-2024)
5.1.2 Global Vacuum Grippers Production by Type (2025-2030)
5.1.3 Global Vacuum Grippers Production Market Share by Type (2019-2030)
5.2 Global Vacuum Grippers Production Value by Type (2019-2030)
5.2.1 Global Vacuum Grippers Production Value by Type (2019-2024)
5.2.2 Global Vacuum Grippers Production Value by Type (2025-2030)
5.2.3 Global Vacuum Grippers Production Value Market Share by Type (2019-2030)
5.3 Global Vacuum Grippers Price by Type (2019-2030)
6 Segment by Application
6.1 Global Vacuum Grippers Production by Application (2019-2030)
6.1.1 Global Vacuum Grippers Production by Application (2019-2024)
6.1.2 Global Vacuum Grippers Production by Application (2025-2030)
6.1.3 Global Vacuum Grippers Production Market Share by Application (2019-2030)
6.2 Global Vacuum Grippers Production Value by Application (2019-2030)
6.2.1 Global Vacuum Grippers Production Value by Application (2019-2024)
6.2.2 Global Vacuum Grippers Production Value by Application (2025-2030)
6.2.3 Global Vacuum Grippers Production Value Market Share by Application (2019-2030)
6.3 Global Vacuum Grippers Price by Application (2019-2030)
7 Key Companies Profiled
7.1 Schmalz
7.1.1 Schmalz Vacuum Grippers Corporation Information
7.1.2 Schmalz Vacuum Grippers Product Portfolio
7.1.3 Schmalz Vacuum Grippers Production, Value, Price and Gross Margin (2019-2024)
7.1.4 Schmalz Main Business and Markets Served
7.1.5 Schmalz Recent Developments/Updates
7.2 Piab AB
7.2.1 Piab AB Vacuum Grippers Corporation Information
7.2.2 Piab AB Vacuum Grippers Product Portfolio
7.2.3 Piab AB Vacuum Grippers Production, Value, Price and Gross Margin (2019-2024)
7.2.4 Piab AB Main Business and Markets Served
7.2.5 Piab AB Recent Developments/Updates
7.3 SMC
7.3.1 SMC Vacuum Grippers Corporation Information
7.3.2 SMC Vacuum Grippers Product Portfolio
7.3.3 SMC Vacuum Grippers Production, Value, Price and Gross Margin (2019-2024)
7.3.4 SMC Main Business and Markets Served
7.3.5 SMC Recent Developments/Updates
7.4 Onrobot
7.4.1 Onrobot Vacuum Grippers Corporation Information
7.4.2 Onrobot Vacuum Grippers Product Portfolio
7.4.3 Onrobot Vacuum Grippers Production, Value, Price and Gross Margin (2019-2024)
7.4.4 Onrobot Main Business and Markets Served
7.4.5 Onrobot Recent Developments/Updates
7.5 Robotiq
7.5.1 Robotiq Vacuum Grippers Corporation Information
7.5.2 Robotiq Vacuum Grippers Product Portfolio
7.5.3 Robotiq Vacuum Grippers Production, Value, Price and Gross Margin (2019-2024)
7.5.4 Robotiq Main Business and Markets Served
7.5.5 Robotiq Recent Developments/Updates
7.6 FIPA
7.6.1 FIPA Vacuum Grippers Corporation Information
7.6.2 FIPA Vacuum Grippers Product Portfolio
7.6.3 FIPA Vacuum Grippers Production, Value, Price and Gross Margin (2019-2024)
7.6.4 FIPA Main Business and Markets Served
7.6.5 FIPA Recent Developments/Updates
7.7 Coval
7.7.1 Coval Vacuum Grippers Corporation Information
7.7.2 Coval Vacuum Grippers Product Portfolio
7.7.3 Coval Vacuum Grippers Production, Value, Price and Gross Margin (2019-2024)
7.7.4 Coval Main Business and Markets Served
7.7.5 Coval Recent Developments/Updates
7.8 Gimatic S.r.l
7.8.1 Gimatic S.r.l Vacuum Grippers Corporation Information
7.8.2 Gimatic S.r.l Vacuum Grippers Product Portfolio
7.8.3 Gimatic S.r.l Vacuum Grippers Production, Value, Price and Gross Margin (2019-2024)
7.8.4 Gimatic S.r.l Main Business and Markets Served
7.7.5 Gimatic S.r.l Recent Developments/Updates
7.9 NIHON PISCO
7.9.1 NIHON PISCO Vacuum Grippers Corporation Information
7.9.2 NIHON PISCO Vacuum Grippers Product Portfolio
7.9.3 NIHON PISCO Vacuum Grippers Production, Value, Price and Gross Margin (2019-2024)
7.9.4 NIHON PISCO Main Business and Markets Served
7.9.5 NIHON PISCO Recent Developments/Updates
8 Industry Chain and Sales Channels Analysis
8.1 Vacuum Grippers Industry Chain Analysis
8.2 Vacuum Grippers Key Raw Materials
8.2.1 Key Raw Materials
8.2.2 Raw Materials Key Suppliers
8.3 Vacuum Grippers Production Mode & Process
8.4 Vacuum Grippers Sales and Marketing
8.4.1 Vacuum Grippers Sales Channels
8.4.2 Vacuum Grippers Distributors
8.5 Vacuum Grippers Customers
9 Vacuum Grippers Market Dynamics
9.1 Vacuum Grippers Industry Trends
9.2 Vacuum Grippers Market Drivers
9.3 Vacuum Grippers Market Challenges
9.4 Vacuum Grippers Market Restraints
10 Research Finding and Conclusion
11 Methodology and Data Source
11.1 Methodology/Research Approach
11.1.1 Research Programs/Design
11.1.2 Market Size Estimation
11.1.3 Market Breakdown and Data Triangulation
11.2 Data Source
11.2.1 Secondary Sources
11.2.2 Primary Sources
11.3 Author List
11.4 Disclaimer
TABLE OF FIGURES
List of Tables
List of Figures
KEY QUESTIONS ADDRESSED BY THE REPORT
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Vacuum grippers use the difference between atmospheric pressure and a vacuum to lift, hold and move objects. Typically, the vacuum (or 'vacuum flow') is generated by a miniature electromechanical pump or a compressed air-driven pump. The vacuum flow must be uninterrupted to ensure that cobot can safely hold on to the object it has picked up. Vacuum grippers, also known as suction cup grippers, can be a simple yet highly effective gripping solution for a wide range of applications. With the right type of gripper in the right integration, vacuum grippers provide safe, powerful grips in collaborative robot (cobot) applications. Using the difference between a vacuum and atmospheric pressure, vacuum grippers lift, hold, and move objects. The vacuum is created by a miniature electromechanical pump or compressed air-driven pump. To ensure a cobot can safely hold an object, the vacuum flow must not be interrupted. Vacuum grippers come with added advantages such as the ability to handle a variety of item types. However, vacuum grippers come with added electricity costs to power compressed air or vacuum pumps. Additionally, vacuum grippers are sensitive to dusty conditions. Each of the several types of vacuum grippers has its own advantages and disadvantages. Vacuum grippers commonly use either a compressed air-driven pump or a miniature electromechanical pump. Compressed air-driven grippers produce four to ten times more power than their electromechanical counterparts. Electromechanical vacuum grippers, however, excel in applications demanding a high degree of mobility. While the compressed air-driven pump provides superior lifting capacity, it can also increase operating costs because of the electricity needed to run the compressor. Conversely, miniature electromechanical pumps shine in applications with a high degree of mobility; however, they often generate less power than compressed air-driven pumps. Because vacuum grippers work best in applications when the vacuum flow is uninterrupted, vacuum grippers are ideal for parts that are large enough and flat enough to create enough difference in pressure between the vacuum and atmospheric pressure. This means parts with large, flat sides are ideal for vacuum grippers. However, excessively heavy parts may not be suitable since an enormous amount of negative pressure is needed for this. In cobot applications with light, flat parts, vacuum grippers are an effective gripping solution.
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Published: 2026-08-01
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The global Vacuum Grippers market size was US$ 146 million in 2025 and is forecast to reach a readjusted size of US$ 848 million by 2032 with a CAGR of 29.0% during the forecast period 2026-2032.
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The global Vacuum Grippers market was valued at US$ 146 million in 2025 and is anticipated to reach US$ 848 million by 2032, at a CAGR of 29.0% from 2026 to 2032.
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Vacuum grippers use the difference between atmospheric pressure and a vacuum to lift, hold and move objects. Typically, the vacuum (or 'vacuum flow') is generated by a miniature electromechanical pump or a compressed air-driven pump. The vacuum flow must be uninterrupted to ensure that cobot can safely hold on to the object it has picked up. Vacuum grippers, also known as suction cup grippers, can be a simple yet highly effective gripping solution for a wide range of applications. With the right type of gripper in the right integration, vacuum grippers provide safe, powerful grips in collaborative robot (cobot) applications. Using the difference between a vacuum and atmospheric pressure, vacuum grippers lift, hold, and move objects. The vacuum is created by a miniature electromechanical pump or compressed air-driven pump. To ensure a cobot can safely hold an object, the vacuum flow must not be interrupted. Vacuum grippers come with added advantages such as the ability to handle a variety of item types. However, vacuum grippers come with added electricity costs to power compressed air or vacuum pumps. Additionally, vacuum grippers are sensitive to dusty conditions. Each of the several types of vacuum grippers has its own advantages and disadvantages. Vacuum grippers commonly use either a compressed air-driven pump or a miniature electromechanical pump. Compressed air-driven grippers produce four to ten times more power than their electromechanical counterparts. Electromechanical vacuum grippers, however, excel in applications demanding a high degree of mobility. While the compressed air-driven pump provides superior lifting capacity, it can also increase operating costs because of the electricity needed to run the compressor. Conversely, miniature electromechanical pumps shine in applications with a high degree of mobility; however, they often generate less power than compressed air-driven pumps. Because vacuum grippers work best in applications when the vacuum flow is uninterrupted, vacuum grippers are ideal for parts that are large enough and flat enough to create enough difference in pressure between the vacuum and atmospheric pressure. This means parts with large, flat sides are ideal for vacuum grippers. However, excessively heavy parts may not be suitable since an enormous amount of negative pressure is needed for this. In cobot applications with light, flat parts, vacuum grippers are an effective gripping solution.
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REPORT COVERAGE
DESCRIPTION
OVERVIEW
MARKET SEGMENTATION
REPORT SCOPE
CHAPTER OUTLINE
QYRESEARCH'S STRENGTHS
TABLE OF CONTENTS
TABLE OF FIGURES
RLEATED REPORTS
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