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Global 3d Scanner Market
Market Size in USD Billion
CAGR :
%
USD
5.10 Billion
USD
10.30 Billion
2024
2032
Forecast Period
2025 –2032
Market Size(Base Year)
USD
5.10 Billion
Market Size (Forecast Year)
USD
10.30 Billion
CAGR
10.60
%
Major Markets Players
KEYENCE CORPORATION
JENOPTIK AG
Metrologic Group
Hexagon AB
FARO
Global 3D Scanner Market Segmentation, By Type (Optical Scanner, Laser Scanner and Structured Light Scanner), Range (Short Range Scanner, Medium Range Scanner and Long Range Scanner), Offering (Hardware and Software and Aftermarket Service), Product (Tripod Mounted, Fixed CMM Based, Portable CMM Based and Desktop), Application (Reverse Engineering, Quality Control and Inspection and Virtual Simulation), End Users (Automotive, Healthcare, Aerospace and Defence, Architecture and Construction, Energy and Power, Tunnel and Mining and Artefact and Heritage Preservation Department), Distribution Channel (Direct Sales and Distributor Sales) - Industry Trends and Forecast to 2032
3D Scanner Market Size
The Global 3D Scanner Market size was valued at USD 6.7 billion in 2024 and is expected to reach USD 25.93 billion by 2032,at a CAGR of 7.80% during the forecast period
This growth is driven by factors such as the Rising Adoption Across Industries, Advancements in Scanning Technology, and Growth of 3D Printing and Additive Manufacturing
3D Scanner Market Analysis
A 3D scanner is a device that is used to capture the physical whereabouts such as weight and appearance of a physical object. 3D scanners are used in wide range of applications such as reverse engineering, quality control and inspection and virtual simulation. The collected data in turn is used to create 3D models for analysis and research purposes.
Upsurge in the demand by the manufacturers for the technological solutions that help to maintain the product quality is inducing growth in the demand for 3D scanners. Growth and expansion of various end user verticals such as automotive, healthcare, aerospace and defence, architecture and construction, energy and power and others will directly and positively impact the demand for 3D scanners globally.
North America is expected to dominate the 3D Scanners market due to rising demand for handheld scanning devices and increasing integration of 3D scanners by the various end user industries into machinery and other automated equipment
Asia-Pacific is expected to be the fastest growing region in the 3D Scanner Market during the forecast period due to the deployment of 3D scanners in aerospace and defence industry.
Optical Scanner segment is expected to dominate the market with a market share of 44.21% due to its high precision, speed, and versatility across various industrial applications.
Report Scope and 3D Scanner Market Segmentation
Attributes
3D Scanner Key Market Insights
Segments Covered
By Type (Optical Scanner, Laser Scanner and Structured Light Scanner),
Range (Short Range Scanner, Medium Range Scanner and Long Range Scanner),
Offering (Hardware and Software and Aftermarket Service),
Product (Tripod Mounted, Fixed CMM Based, Portable CMM Based and Desktop),
Application (Reverse Engineering, Quality Control and Inspection and Virtual Simulation),
End Users (Automotive, Healthcare, Aerospace and Defence, Architecture and Construction, Energy and Power, Tunnel and Mining and Artefact and Heritage Preservation Department)
Countries Covered
North America
U.S.
Canada
Mexico
Europe
Germany
France
U.K.
Netherlands
Switzerland
Belgium
Russia
Italy
Spain
Turkey
Rest of Europe
Asia-Pacific
China
Japan
India
South Korea
Singapore
Malaysia
Australia
Thailand
Indonesia
Philippines
Rest of Asia-Pacific
Middle East and Africa
Saudi Arabia
U.A.E.
South Africa
Egypt
Israel
Rest of Middle East and Africa
South America
Brazil
Argentina
Rest of South America
Key Market Players
KEYENCE CORPORATION.,
JENOPTIK AG,
Metrologic Group.,
Hexagon AB,
FARO,
CREAFORM.,
Perceptron, Inc.,
Nikon Metrology NV,
Trimble Inc.,
ZEISS,
TOPCON CORPORATION,
RIEGL Laser Measurement Systems GmbH,
Artec Europe.,
Surphaser.,
DeWalt Corporation,
WENZEL Group,
NextEngine, Inc.,
SGM Lightwave, LLC,
Precise Visual Technologies,
Technics Group.,
CyberOptics,
IMAG’ING
McKim & Creed, Inc.
Market Opportunities
Integration of AI and Cloud Technologies
Portable and Reasonable 3D Scanners
Value Added Data Infosets
In addition to the insights on market scenarios such as market value, growth rate, segmentation, geographical coverage, and major players, the market reports curated by the Data Bridge Market Research also include import export analysis, production capacity overview, production consumption analysis, price trend analysis, climate change scenario, supply chain analysis, value chain analysis, raw material/consumables overview, vendor selection criteria, PESTLE Analysis, Porter Analysis, and regulatory framework.
3D Scanner Market Trends
“Increasing Use of 3D Scanning in Healthcare and Dentistry”
One of the fastest-growing trends in the 3D scanner market is its adoption in the healthcare and dental industries. Medical professionals now use 3D scanners to create custom implants, dental crowns, prosthetics, and even surgical models. These tools allow for precise scanning of a patient's anatomy, making treatments faster and more accurate.
The ability to produce 3D models from scans helps doctors plan complex surgeries or develop personalized medical devices. Dentistry has especially embraced this tech to eliminate traditional mold impressions, improving patient comfort and accuracy.
This trend is also growing in developing countries, where affordable handheld scanners are making advanced healthcare more accessible.
For instance, in 2024, Align Technology, the company behind Invisalign, introduced an upgraded iTero Element 5D Plus scanner. It improved intraoral scanning speed and imaging accuracy, helping dentists deliver faster and more customized orthodontic treatment to patients
3D Scanner Market Dynamics
Driver
“Growing Demand for Precision in Manufacturing”
Industries like automotive, aerospace, and electronics are pushing for more precision than ever in their design and production processes.
3D scanners are playing a big role in this by providing extremely accurate measurements of parts and components. Instead of relying solely on blueprints or physical measurements, engineers use 3D scanning to reverse-engineer products, detect defects early, and speed up the quality control process.
This not only saves time and reduces waste but also helps companies stay competitive by improving product performance and reliability
For instance,
In 2024, Ford Motor Company integrated high-speed 3D laser scanners in their production line to inspect car body panels. This allowed them to detect millimeter-level defects instantly and reduced rework time by 30%.
Opportunity
“Integration of AI and Cloud Technologies”
The use of artificial intelligence (AI) and cloud computing in 3D scanning is opening up new possibilities across industries. With AI, scanners can process data in real time, spot patterns, and even predict maintenance needs—helping businesses run more efficiently.
Cloud integration allows teams to access and share 3D data instantly, improving collaboration across departments or locations.
This trend is gaining momentum, with nearly half of businesses exploring AI-powered scanning, and many startups building products around these technologies.
For instance,
In 2025, Niantic added a cutting-edge technique called Gaussian splatting to its Scaniverse app. This update lets users scan real-world objects using just their smartphones and turn them into detailed 3D models. Major tech players like Google and Meta are adopting this kind of innovation for everything from mapping to AR and VR experiences.
Restraint/Challenge
“High Initial Cost of 3D Scanning Equipment”
One of the biggest challenges for the 3D scanner market is the high upfront cost of equipment. Advanced 3D scanners, especially those with high resolution and accuracy, can be quite expensive—sometimes costing tens of thousands of dollars.
This makes it hard for small and mid-sized companies, especially in developing countries, to adopt the technology. Even though prices are gradually coming down, the cost of related software, training, and maintenance still adds to the overall investment.
As a result, many businesses delay adopting 3D scanning despite knowing its long-term benefits.
For instance,
In 2023, several small-scale manufacturers in Southeast Asia reported hesitancy to switch from traditional measurement tools to 3D scanning due to costs exceeding $25,000 per unit, limiting market penetration in the region
3D Scanner Market Scope
The 3D scanner market is segmented on the basis of type, range, offering, product, application and end users. The growth among segments helps you analyse niche pockets of growth and strategies to approach the market and determine your core application areas and the difference in your target markets.
Segmentation
Sub-Segmentation
By Type
Optical Scanner,
Laser Scanner
Structured Light Scanner
Range
Short Range Scanner,
Medium Range Scanner
Long Range Scanner
Offering
Hardware
Software
Aftermarket Service
Product
Tripod Mounted,
Fixed CMM Based,
Portable CMM Based
Desktop
Application
Reverse Engineering,
Quality Control and Inspection
Virtual Simulation
End Users
Automotive,
Healthcare,
Aerospace and Defence,
Architecture and Construction,
Energy and Power,
Tunnel
Mining and Artefact
Heritage Preservation Department
In 2025, the Optical Scanner is projected to dominate the market with a largest share in Type segment
In 2025, the Optical Scanner segment is expected to lead the 3D scanner market, capturing the largest share of 44.21% in the type category. This growth is driven by its high accuracy, speed, and non-contact scanning capabilities, making it ideal for applications in healthcare, automotive, and cultural preservation. Optical scanners are especially preferred for capturing detailed surface textures and complex geometries, helping industries improve quality control, reverse engineering, and design processes efficiently.
The Laser Scanner is expected to account for the largest share during the forecast period in technology market
The Laser Scanner segment is projected to hold the largest share of 41.73% in the 3D scanner technology market during the forecast period. This dominance is mainly due to its exceptional precision, long-range capabilities, and speed, which make it ideal for large-scale applications like construction, mining, and infrastructure inspection. Laser scanners are widely used for creating accurate 3D models of complex environments, helping companies improve planning, maintenance, and safety.
3D Scanner Market Regional Analysis
“North America Holds the Largest Share in the 3D Scanner Market”
North America is currently the leading region in the global 3D scanner market, holding a dominant market share of 53.78%. This strong position is largely due to the widespread adoption of advanced technologies across industries like aerospace, automotive, healthcare, and manufacturing.
The region benefits from a highly developed infrastructure, strong R&D capabilities, and the presence of major 3D scanning companies and software developers. In addition, U.S. companies are heavily investing in automation and quality control, where 3D scanners play a critical role.
Educational institutions and research labs are also increasingly using this technology for innovation and product development. Furthermore, demand for 3D scanning in cultural heritage preservation and medical imaging continues to grow.
Supportive government funding and rapid integration of AI and cloud solutions are also fueling market expansion. These factors together make North America a technological hub for 3D scanning. As a result, the region continues to set global standards and drive future trends in the market.
“Asia-Pacific is Projected to Register the Highest CAGR in the 3D Scanner Market”
The Asia-Pacific region is expected to experience the highest growth rate in the global 3D scanner market, with a projected CAGR of 8.45%. This rapid growth is fueled by the increasing adoption of 3D scanning technology across key industries like automotive, electronics, construction, and healthcare.
Countries like China, Japan, and India are seeing significant investments in manufacturing and infrastructure, where 3D scanning is crucial for improving product design, quality control, and automation processes. The region’s strong focus on technological advancements, particularly in AI and robotics, is further driving market expansion.
Additionally, the rise of e-commerce and the need for digitalization in various sectors are contributing to the demand for 3D scanning solutions. The increasing number of small and medium-sized enterprises (SMEs) adopting these technologies for cost-effective prototyping and product development is also a key factor.
With growing industrialization and the need for precision, Asia-Pacific is positioning itself as a major player in the global 3D scanner market. This trend is expected to continue as more companies embrace digital transformation.
3D Scanner Market Share
The market competitive landscape provides details by competitor. Details included are company overview, company financials, revenue generated, market potential, investment in research and development, new market initiatives, global presence, production sites and facilities, production capacities, company strengths and weaknesses, product launch, product width and breadth, application dominance. The above data points provided are only related to the companies' focus related to market.
The Major Market Leaders Operating in the Market Are:
KEYENCE CORPORATION.,
JENOPTIK AG,
Metrologic Group.,
Hexagon AB,
FARO,
CREAFORM.,
Perceptron, Inc.,
Nikon Metrology NV,
Trimble Inc.,
ZEISS,
TOPCON CORPORATION,
RIEGL Laser Measurement Systems GmbH,
Artec Europe.,
Surphaser.,
DeWalt Corporation,
WENZEL Group,
NextEngine, Inc.,
SGM Lightwave, LLC,
Precise Visual Technologies,
Technics Group.,
CyberOptics,
IMAG’ING
McKim & Creed, Inc
Latest Developments in Global 3D Scanner Market
In January 2025, FARO Technologies introduced the FARO Leap ST®, a versatile handheld 3D scanner designed for high-speed, high-accuracy metrology. It features five scanning modes, including ultra-fast scanning and photogrammetry, making it suitable for various manufacturing applications. The launch was accompanied by an update to FARO's CAM2® software, enhancing the scanning process and integration capabilities. This move strengthens FARO's position in the portable 3D metrology sector.
Nikon released the Lasermeister SB100 in April 2024, a 3D scanner developed to complement its Lasermeister LM300A metal additive manufacturing system. The SB100 enables automated scanning of workpieces, generating tool path data for 3D printing processes. This integration supports applications such as turbine blade and mold repairs, enhancing factory automation and precision in industrial settings.
ZEISS launched the INSPECT Optical 3D 2025 software, introducing several enhancements to streamline 3D surface inspection tasks. Key features include improved surface defect workflows, support for the latest GD&T standards, and sensor fusion capabilities for handling data from multiple sensors. These updates aim to increase productivity and measurement accuracy across various industries.
In February 2025, FARO acquired Opto-Tech SRL and its subsidiary Open Technologies SRL, both Italian companies specializing in compact 3D structured light scanning solutions. This acquisition expands FARO's portfolio in dental and orthopedic applications, enabling the creation of custom crowns, implants, and prosthetics. The move aligns with FARO's strategy to enhance its presence in the medical and industrial sectors.
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Global 3d Scanner Market, Supply Chain Analysis and Ecosystem Framework
To support market growth and help clients navigate the impact of geopolitical shifts, DBMR has integrated in-depth supply chain analysis into its Global 3d Scanner Market research reports. This addition empowers clients to respond effectively to global changes affecting their industries. The supply chain analysis section includes detailed insights such as Global 3d Scanner Market consumption and production by country, price trend analysis, the impact of tariffs and geopolitical developments, and import and export trends by country and HSN code. It also highlights major suppliers with data on production capacity and company profiles, as well as key importers and exporters. In addition to research, DBMR offers specialized supply chain consulting services backed by over a decade of experience, providing solutions like supplier discovery, supplier risk assessment, price trend analysis, impact evaluation of inflation and trade route changes, and comprehensive market trend analysis.
Research Methodology
Data collection and base year analysis are done using data collection modules with large sample sizes. The stage includes obtaining market information or related data through various sources and strategies. It includes examining and planning all the data acquired from the past in advance. It likewise envelops the examination of information inconsistencies seen across different information sources. The market data is analysed and estimated using market statistical and coherent models. Also, market share analysis and key trend analysis are the major success factors in the market report. To know more, please request an analyst call or drop down your inquiry.
The key research methodology used by DBMR research team is data triangulation which involves data mining, analysis of the impact of data variables on the market and primary (industry expert) validation. Data models include Vendor Positioning Grid, Market Time Line Analysis, Market Overview and Guide, Company Positioning Grid, Patent Analysis, Pricing Analysis, Company Market Share Analysis, Standards of Measurement, Global versus Regional and Vendor Share Analysis. To know more about the research methodology, drop in an inquiry to speak to our industry experts.
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