3D Scanning Market Size, Share, Growth and Global Industry Analysis By Type & Application, Regional Insights and Forecast to 2024-2032

Growth Factors of 3D Scanning Market

The 3D Scanning market was valued at USD 5.02 billion in 2023, and the market is now projected tgrow tUSD 10.90 billion by 2032, exhibiting a CAGR of 10.2% during the forecast period of 2024-2032.

3D scanning technologies played a crucial part in healthcare amid the widespread, especially in planning and fabricating restorative gear like personal protective equipment (PPE), ventilator components, and custom prosthetics. Scanners were utilized for non-contact imaging in therapeutic diagnostics and treatment arranging, supporting telehealth activities. Businesses quickened their advanced change endeavours. 3D scanning innovation got tbe fundamental for farther collaboration, particularly in segments like design, building, and fabricating.

Companies are considering 3D scanning as a basic device in each stage of the product lifecycle management (PLM) prepare counting concept arrange, plan arrange, fabricating organize and adjusting organize. Within the concept arrange of PLM, checking is utilized in deciding necessities and determinations, concept plan and prototyping. In plan arrange, it is utilized for fast prototyping, computer-aided design (CAD), testing, simulation and examination. Within the fabricating arrange, it has application in device plan, gathering and generation, and quality control. Amid the adjusting arrange, it is utilized for documentation, upkeep, repair and substitution, and for reusing and rebuilding of parts. For occurrence, FARO 8-Axis Plan ScanArm 2.5C by FarAdvances, has application in nearly each organize of item lifecycle administration prepare. It is utilized as a scanner in switch building, 3D modeling, and CAD-based plan. The developmental utilization or the usage of 3D filtering in PLM forms is further supplementing the 3D scanning market growth.

Indeed, in spite of the fact that 3D checking gives unmistakable benefits over the generation cycle, in this manner incredibly upgrading the generally plan and production prepare; the introductory high fetched of the item is constraining the development of the 3D Checking showcase. Moreover, the company has got tspend cash in preparing their workers tget it the framework. As checking arrangements can be coordinates with other arrangements, it require specialized ability tdso. Though most of the SMEs have a low budget they as a rule avoid using filtering arrangement and instep take other elective cheap items which anticipated thinder the development of 3D scanning market.

Comprehensive Analysis of 3D Scanning Market

The component analysis of the 3D scanning market has been categorized intequipment and program. The equipment portion is encourage categorized intlaser scanner, organized light scanner, and optical scanner. 3D laser scanner accounts for the biggest showcase share owing tits capacity tcapture millions of information focuses on seconds. The twsorts of gadgets accessible within the 3D filtering showcase are versatile and stationary. Stationary 3D scanners are mounted an arm or a tripod that are settled at an area. These scanners are generally favoured for filtering expansive objects like trains, trucks, planes among others. The 3D scanning market on the analysis of extend is tri sectioned as brief run, medium extend and long extend 3D scanners. The brief run 3D scanners are generally utilized in different applications as these gadgets are less touchy tsurrounding light and changing light condition and offer high determination.

The 3D filtering has application in turn around building, quality control and review, fast prototyping, full body checking, and gaming among others. 3D scanners are for the most part utilized for quality control and assessment handle in fabricating. The companies are given assistance by 3D scanning providing exact and solid yield. By end-user, the advertise has been portioned intaviation and defence, healthcare, car, design and development, mechanical fabricating, excitement and media, and others. Among these, the mechanical fabricating portion accounts for the greatest share owing tit utilization in different stages of item plan advancement and usage.

Among all districts, North America taken after by Europe, is considered tbe the dominant 3D scanning market share in the global market owing tthe highest valuation of USD 1.64 billion and expanding application of scanning in different businesses, including, healthcare, automotive, excitement, fabricating among others. Developing centre of companies towards 3D printing, and 3D machine vision are toa few of the variables driving the development of North America market.

In the globalized market pool is being overpowered by few of the key companies owing ttheir strong thing portfolio, key imperative choices, and dominance of grandstand share. These consolidate a accumulate of key companies with more broad geographic closeness and decided R&D, coming almost in a strong thing portfolio. The market is significantly set in nature, with three major players working within the showcase. Moreover, inorganic improvement techniques such as mergers and acquisitions will help brace the significant market revenue. Artec 3D (Luxembourg), CyberOptics Corporation (U.S), NeoMetrix Technologies, Inc. (U.S), Exact Metrology (U.S), FarTechnologies, Inc. (U.S), GOM GmbH (U.S), 3D Systems, Inc. (U.S), Autodesk, Inc. (U.S), Quality Vision International (U.S), Maptek Pty Ltd. (U.S), Topcon Corporation (U.S), Hexagon AB (U.S) and Trimble, Inc. (U.S) are the major players dedicatedly working towards the truly explore and progression of the advancement in manufacturing and moving 3D Scanning things improved with more prosperity benefits and most noteworthy supplement maintenance.

Within February month in the year 2020, Artec 3D, presented proficient 3D scanners and Geomagic 3D instruction program suite for schools, colleges & inquire about establishing. These 3D scanners together with computer program serves a wide cluster of courses, counting building, fabricating, craftsmanship and computer design, design, history and legacy conservation, pharmaceutical, science, among others.

SEGMENTATION TABLE

ATTRIBUTE DETAILS

Study Period 2015-2026

Base Year 2018

Forecast Period 2019-2026

Historical Period 2015-2017

Unit Value (USD billion)

Segmentation By Component

Hardware

Laser Scanner

Structured Light Scanner

Optical Scanner

Software

By Range

Short Range

Medium Range

Long Range

By Device

Portable

Stationary

By Application

Reverse Engineering

Quality Control and Inspection

Rapid Prototyping

Full Body Scanning

Gaming

Others

By End-Use

Aerospace and Defence

Healthcare

Automotive

Architecture and Construction

Industrial Manufacturing

Entertainment and Media

Others

By Region

North America (the US and Canada)

Europe (UK, Germany, France, Italy, and Rest of Europe)

Asia Pacific (China, Japan, India, Southeast Asia and Rest of Asia Pacific)

Middle East & Africa (GCC, South Africa and Rest of the Middle East & Africa)

Latin America (Mexico, Brazil and Rest of Latin America)


1. Introduction
1.1. Definition, By Segment
1.2. Research Approach
1.3. Sources
2. Executive Summary
3. Market Dynamics
3.1. Drivers, Restraints, and Opportunities
3.2. Emerging Trends
4. Key Insights
4.1. Macro and Micro Economic Indicators
4.2. Consolidated SWOT Analysis of Key Players
5. Global 3D Scanning Market Analysis, Insights and Forecast, 2015-2026
5.1. Key Findings / Summary
5.2. Market Size Estimates and Forecasts
5.2.1. By Component (Value)
5.2.1.1. Hardware
5.2.1.1.1. Laser Scanner
5.2.1.1.2. Structured Light Scanner
5.2.1.1.3. Optical Scanner
5.2.1.2. Software
5.2.2. By Range (Value)
5.2.2.1. Short Range
5.2.2.2. Medium Range
5.2.2.3. Long Range
5.2.3. By Device (Value)
5.2.3.1. Portable
5.2.3.2. Stationary
5.2.4. By Application (Value)
5.2.4.1. Reverse Engineering
5.2.4.2. Quality Control and Inspection
5.2.4.3. Rapid Prototyping
5.2.4.4. Full Body Scanning
5.2.4.5. Gaming
5.2.4.6. Others
5.2.5. By End-User (Value)
5.2.5.1. Aerospace and Defense
5.2.5.2. Healthcare
5.2.5.3. Automotive
5.2.5.4. Architecture and Construction
5.2.5.5. Industrial Manufacturing
5.2.5.6. Entertainment and Media
5.2.5.7. Others
5.2.6. By Region (Value)
5.2.6.1. North America
5.2.6.2. Europe
5.2.6.3. Asia Pacific
5.2.6.4. Middle East and Africa
5.2.6.5. Latin America
6. North America 3D Scanning Market Analysis, Insights and Forecast, 2015-2026
6.1. Key Findings / Summary
6.2. Market Size Estimates and Forecasts
6.2.1. By Component (Value)
6.2.1.1. Hardware
6.2.1.1.1. Laser Scanner
6.2.1.1.2. Structured Light Scanner
6.2.1.1.3. Optical Scanner
6.2.1.2. Software
6.2.2. By Range (Value)
6.2.2.1. Short Range
6.2.2.2. Medium Range
6.2.2.3. Long Range
6.2.3. By Device (Value)
6.2.3.1. Portable
6.2.3.2. Stationary
6.2.4. By Application (Value)
6.2.4.1. Reverse Engineering
6.2.4.2. Quality Control and Inspection
6.2.4.3. Rapid Prototyping
6.2.4.4. Full Body Scanning
6.2.4.5. Gaming
6.2.4.6. Others
6.2.5. By End-User (Value)
6.2.5.1. Aerospace and Defense
6.2.5.2. Healthcare
6.2.5.3. Automotive
6.2.5.4. Architecture and Construction
6.2.5.5. Industrial Manufacturing
6.2.5.6. Entertainment and Media
6.2.5.7. Others
6.2.6. By Country (Value)
6.2.6.1. US
6.2.6.2. Canada
7. Europe 3D Scanning Market Analysis, Insights and Forecast, 2015-2026
7.1. Key Findings / Summary
7.2. Market Size Estimates and Forecasts
7.2.1. By Component (Value)
7.2.1.1. Hardware
7.2.1.1.1. Laser Scanner
7.2.1.1.2. Structured Light Scanner
7.2.1.1.3. Optical Scanner
7.2.1.2. Software
7.2.2. By Range (Value)
7.2.2.1. Short Range
7.2.2.2. Medium Range
7.2.2.3. Long Range
7.2.3. By Device (Value)
7.2.3.1. Portable
7.2.3.2. Stationary
7.2.4. By Application (Value)
7.2.4.1. Reverse Engineering
7.2.4.2. Quality Control and Inspection
7.2.4.3. Rapid Prototyping
7.2.4.4. Full Body Scanning
7.2.4.5. Gaming
7.2.4.6. Others
7.2.5. By End-User (Value)
7.2.5.1. Aerospace and Defense
7.2.5.2. Healthcare
7.2.5.3. Automotive
7.2.5.4. Architecture and Construction
7.2.5.5. Industrial Manufacturing
7.2.5.6. Entertainment and Media
7.2.5.7. Others
7.2.6. By Country (Value)
7.2.6.1. UK
7.2.6.2. Germany
7.2.6.3. France
7.2.6.4. Italy
7.2.6.5. Rest of Europe
8. Asia Pacific 3D Scanning Market Analysis, Insights and Forecast, 2015-2026
8.1. Key Findings / Summary
8.2. Market Size Estimates and Forecasts
8.2.1. By Component (Value)
8.2.1.1. Hardware
8.2.1.1.1. Laser Scanner
8.2.1.1.2. Structured Light Scanner
8.2.1.1.3. Optical Scanner
8.2.1.2. Software
8.2.2. By Range (Value)
8.2.2.1. Short Range
8.2.2.2. Medium Range
8.2.2.3. Long Range
8.2.3. By Device (Value)
8.2.3.1. Portable
8.2.3.2. Stationary
8.2.4. By Application (Value)
8.2.4.1. Reverse Engineering
8.2.4.2. Quality Control and Inspection
8.2.4.3. Rapid Prototyping
8.2.4.4. Full Body Scanning
8.2.4.5. Gaming
8.2.4.6. Others
8.2.5. By End-User (Value)
8.2.5.1. Aerospace and Defense
8.2.5.2. Healthcare
8.2.5.3. Automotive
8.2.5.4. Architecture and Construction
8.2.5.5. Industrial Manufacturing
8.2.5.6. Entertainment and Media
8.2.5.7. Others
8.2.6. By Country (Value)
8.2.6.1. China
8.2.6.2. Japan
8.2.6.3. India
8.2.6.4. Southeast Asia
8.2.6.5. Rest of Asia-Pacific
9. Middle East and Africa 3D Scanning Market Analysis, Insights and Forecast, 2015-2026
9.1. Key Findings / Summary
9.2. Market Size Estimates and Forecasts
9.2.1. By Component (Value)
9.2.1.1. Hardware
9.2.1.1.1. Laser Scanner
9.2.1.1.2. Structured Light Scanner
9.2.1.1.3. Optical Scanner
9.2.1.2. Software
9.2.2. By Range (Value)
9.2.2.1. Short Range
9.2.2.2. Medium Range
9.2.2.3. Long Range
9.2.3. By Device (Value)
9.2.3.1. Portable
9.2.3.2. Stationary
9.2.4. By Application (Value)
9.2.4.1. Reverse Engineering
9.2.4.2. Quality Control and Inspection
9.2.4.3. Rapid Prototyping
9.2.4.4. Full Body Scanning
9.2.4.5. Gaming
9.2.4.6. Others
9.2.5. By End-User (Value)
9.2.5.1. Aerospace and Defense
9.2.5.2. Healthcare
9.2.5.3. Automotive
9.2.5.4. Architecture and Construction
9.2.5.5. Industrial Manufacturing
9.2.5.6. Entertainment and Media
9.2.5.7. Others
9.2.6. By Country (Value)
9.2.6.1. GCC
9.2.6.2. South Africa
9.2.6.3. Rest of Middle East & Africa
10. Latin America 3D Scanning Market Analysis, Insights and Forecast, 2015-2026
10.1. Key Findings / Summary
10.2. Market Size Estimates and Forecasts
10.2.1. By Component (Value)
10.2.1.1. Hardware
10.2.1.1.1. Laser Scanner
10.2.1.1.2. Structured Light Scanner
10.2.1.1.3. Optical Scanner
10.2.1.2. Software
10.2.2. By Range (Value)
10.2.2.1. Short Range
10.2.2.2. Medium Range
10.2.2.3. Long Range
10.2.3. By Device (Value)
10.2.3.1. Portable
10.2.3.2. Stationary
10.2.4. By Application (Value)
10.2.4.1. Reverse Engineering
10.2.4.2. Quality Control and Inspection
10.2.4.3. Rapid Prototyping
10.2.4.4. Full Body Scanning
10.2.4.5. Gaming
10.2.4.6. Others
10.2.5. By End-User (Value)
10.2.5.1. Aerospace and Defense
10.2.5.2. Healthcare
10.2.5.3. Automotive
10.2.5.4. Architecture and Construction
10.2.5.5. Industrial Manufacturing
10.2.5.6. Entertainment and Media
10.2.5.7. Others
10.2.6. By Country (Value)
10.2.6.1. Mexico
10.2.6.2. Brazil
10.2.6.3. Rest of Latin America
11. Competition Matrix
11.1. Business Strategies Adopted by Leading Players
12. Global 3D Scanning Market Revenue Share Analysis, 2018
13. Company Profile (For Key 10 Players)
13.1. THOR3D
13.1.1. Overview
13.1.2. Description
13.1.3. Product Portfolio
13.1.4. Recent Developments
13.2. CREAFORM
13.2.1. Overview
13.2.2. Description
13.2.3. Product Portfolio
13.2.4. Recent Developments
13.3. Artec 3D
13.3.1. Overview
13.3.2. Description
13.3.3. Product Portfolio
13.3.4. Recent Developments
13.4. CyberOptics Corporation
13.4.1. Overview
13.4.2. Description
13.4.3. Product Portfolio
13.4.4. Recent Developments
13.5. NeoMetrix Technologies, Inc.
13.5.1. Overview
13.5.2. Description
13.5.3. Product Portfolio
13.5.4. Recent Developments
13.6. Exact Metrology
13.6.1. Overview
13.6.2. Description
13.6.3. Product Portfolio
13.6.4. Recent Developments
13.7. Faro Technologies, Inc.
13.7.1. Overview
13.7.2. Description
13.7.3. Product Portfolio
13.7.4. Recent Developments
13.8. GOM GmbH
13.8.1. Overview
13.8.2. Description
13.8.3. Product Portfolio
13.8.4. Recent Developments
13.9. 3D Systems, Inc.
13.9.1. Overview
13.9.2. Description
13.9.3. Product Portfolio
13.9.4. Recent Developments
13.10. Autodesk, Inc.
13.10.1. Overview
13.10.2. Description
13.10.3. Product Portfolio
13.10.4. Recent Developments
13.11. Quality Vision International
13.11.1. Overview
13.11.2. Description
13.11.3. Product Portfolio
13.11.4. Recent Developments
13.12. Maptek Pty Ltd
13.12.1. Overview
13.12.2. Description
13.12.3. Product Portfolio
13.12.4. Recent Developments
13.13. Topcon Corporation
13.13.1. Overview
13.13.2. Description
13.13.3. Product Portfolio
13.13.4. Recent Developments
13.14. Hexagon AB
13.14.1. Overview
13.14.2. Description
13.14.3. Product Portfolio
13.14.4. Recent Developments
13.15. Trimble Inc.
13.15.1. Overview
13.15.2. Description
13.15.3. Product Portfolio
13.15.4. Recent Developments
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