Global LiDAR Market, 2025-2033
Description
Global LiDAR Market, valued at USD 2.5 billion in 2024, is projected to soar to USD 12.0 billion by 2033, registering a dynamic CAGR of 18.0% throughout the 2025-2033 timeframe.
This robust expansion is driven by the burgeoning autonomous vehicle landscape poised to exceed USD 10 trillion by 2030, heightened requirements for precise geospatial data in surveying operations, and ongoing reductions in component pricing for miniaturized units at a 20% annual rate. The sector has gained significant momentum since 2023, underpinned by widespread smart infrastructure projects and advancements in integrated airborne systems for enhanced operational speed. Prominent evolutions feature the prevalence of solid-state configurations for their streamlined design and affordability, laser-scanner assemblies as core elements, ADAS and self-driving technologies dominating usage scenarios, and drone-mounted aerial variants for versatile deployment. Compelling prospects include rapid city development in growing economies like India for mapping solutions, fusions with artificial intelligence for superior data interpretation in North America, and intelligent urban frameworks in Europe emphasizing ecological monitoring and resource extraction. Nonetheless, barriers such as substantial initial investments, intricate analytics demands, and susceptibility to atmospheric and landscape disruptions continue to pose hurdles. North America secures over 35% of the domain, spearheaded by the United States' vibrant innovation hubs in mobility testing, while Asia Pacific accelerates at a 20.0% CAGR, fueled by China's urban tech integrations and India's infrastructural leaps.
Strategic delineations enable precise targeting across configurations, assemblies, mounting methods, utilizations, and territories. Configurations prioritize solid-state for efficiency, assemblies emphasize laser-scanner for foundational accuracy, mounting methods favor airborne for broad coverage, and utilizations highlight ADAS for transformative impact, with zonal differentiations—North America for leadership, Asia Pacific for velocity, and Europe for exploratory depth.
Market Segmentation:
By Type:
Mechanical LiDAR
Solid-State LiDAR
By Component:
Laser & Scanner
GPS Receiver
IMU
Others
By Installation:
Airborne (Topographic, Bathymetric, UAV)
Terrestrial (Mobile, Static)
By Application:
Corridor Mapping (Roadways, Railways)
Environment (Forest, Coastline, Agriculture)
ADAS & Driverless Cars
Exploration (Oil & Gas, Mining)
Urban Planning
Others
By Region:
North America (United States, Canada, Others)
Europe (United Kingdom, Germany, France, Italy, Spain, Others)
Asia Pacific (China, Japan, India, South Korea, Australia, Others)
Latin America (Brazil, Others)
Middle East & Africa (United Arab Emirates, Others)
Please note : Delivery Timeline: 3-5 Business Days
This robust expansion is driven by the burgeoning autonomous vehicle landscape poised to exceed USD 10 trillion by 2030, heightened requirements for precise geospatial data in surveying operations, and ongoing reductions in component pricing for miniaturized units at a 20% annual rate. The sector has gained significant momentum since 2023, underpinned by widespread smart infrastructure projects and advancements in integrated airborne systems for enhanced operational speed. Prominent evolutions feature the prevalence of solid-state configurations for their streamlined design and affordability, laser-scanner assemblies as core elements, ADAS and self-driving technologies dominating usage scenarios, and drone-mounted aerial variants for versatile deployment. Compelling prospects include rapid city development in growing economies like India for mapping solutions, fusions with artificial intelligence for superior data interpretation in North America, and intelligent urban frameworks in Europe emphasizing ecological monitoring and resource extraction. Nonetheless, barriers such as substantial initial investments, intricate analytics demands, and susceptibility to atmospheric and landscape disruptions continue to pose hurdles. North America secures over 35% of the domain, spearheaded by the United States' vibrant innovation hubs in mobility testing, while Asia Pacific accelerates at a 20.0% CAGR, fueled by China's urban tech integrations and India's infrastructural leaps.
Strategic delineations enable precise targeting across configurations, assemblies, mounting methods, utilizations, and territories. Configurations prioritize solid-state for efficiency, assemblies emphasize laser-scanner for foundational accuracy, mounting methods favor airborne for broad coverage, and utilizations highlight ADAS for transformative impact, with zonal differentiations—North America for leadership, Asia Pacific for velocity, and Europe for exploratory depth.
Market Segmentation:
By Type:
Mechanical LiDAR
Solid-State LiDAR
By Component:
Laser & Scanner
GPS Receiver
IMU
Others
By Installation:
Airborne (Topographic, Bathymetric, UAV)
Terrestrial (Mobile, Static)
By Application:
Corridor Mapping (Roadways, Railways)
Environment (Forest, Coastline, Agriculture)
ADAS & Driverless Cars
Exploration (Oil & Gas, Mining)
Urban Planning
Others
By Region:
North America (United States, Canada, Others)
Europe (United Kingdom, Germany, France, Italy, Spain, Others)
Asia Pacific (China, Japan, India, South Korea, Australia, Others)
Latin America (Brazil, Others)
Middle East & Africa (United Arab Emirates, Others)
Please note : Delivery Timeline: 3-5 Business Days
Table of Contents
289 Pages
- Research Objective
- MARKET SEGMENTATION
- Scope of the Study
- Key Questions Answered in the Report
- Chapter 1 Research Methodology
- 1.1 Research Objective
- 1.2 Market Research Process
- 1.2.1 Data Procurement and Data Mining
- 1.2.2 Data Analysis and Standardization
- 1.2.3 Data Processing and Market Formulation
- 1.2.4 Data Validation
- 1.3 Market Research Approach
- 1.3.1 Residential Research
- 1.3.2 Commercial Research
- 1.3.3 Assumptions & Limitations
- 1.4 Year Considered for the Study
- Chapter 2 Executive Summary
- 2.1 Global LiDAR Market Snapshot
- 2.2 Global LiDAR Market
- Chapter 3 Market Variables and Scope
- 3.1 Introduction to LiDAR
- 3.2 Classification and Scope
- Chapter 4 Market Dynamics and Trends
- 4.1 Global LiDAR Market Dynamics
- 4.2 Global LiDAR Market Dynamics, Impact Analysis
- 4.3 Market Drivers
- 4.3.1 Driver 1
- 4.3.2 Driver 2
- 4.4 Market Restraints
- 4.4.1 Restraint 1
- 4.4.2 Restraint 2
- 4.5 Market Opportunity
- 4.5.1 Opportunity 1
- 4.5.2 Opportunity 2
- Chapter 5 Premium Insights
- 5.1 Porter’s Five Forces Analysis
- 5.1.1 Bargaining Power of Suppliers
- 5.1.2 Bargaining Power of Buyers
- 5.1.3 Threat of Substitute Types
- 5.1.4 Rivalry among Existing Firms
- 5.1.5 Threat of New Entrants
- 5.2 Supply Chain Analysis
- 5.3 Market Share Analysis of Key Players, 2024
- 5.4 Market Entry Strategy Assessment
- 5.5 Strategic Recommendation for Stakeholders
- Chapter 6 Global LiDAR Market, By Type
- 6.1 Global LiDAR Market, By Type, 2025 - 2033
- 6.2 Mechanical LiDAR
- 6.3 Solid-State LiDAR
- Chapter 7 Global LiDAR Market, By Component
- 7.1 Global LiDAR Market, By Component, 2025 - 2033
- 7.2 Laser & Scanner
- 7.3 GPS Receiver
- 7.4 Inertial Measurement Unit (IMU)
- 7.5 Others
- Chapter 8 Global LiDAR Market, By Installation
- 8.1 Global LiDAR Market, By Installation, 2025 - 2033
- 8.2 Airborne
- 8.2.1 Topographic
- 8.2.2 Bathymetric
- 8.2.3 UAV
- 8.3 Terrestrial
- 8.3.1 Mobile
- 8.3.2 Static
- Chapter 9 Global LiDAR Market, By Application
- 9.1 Global LiDAR Market, By Application, 2025 - 2033
- 9.2 Corridor Mapping
- 9.2.1 Roadways
- 9.2.2 Railways
- 9.3 Environment
- 9.3.1 Forest Management
- 9.3.2 Coastline Management
- 9.3.3 Agriculture
- 9.4 ADAS & Driverless Cars
- 9.5 Exploration
- 9.5.1 Oil & Gas
- 9.5.2 Mining
- 9.6 Urban Planning
- 9.7 Others
- Chapter 10 Global LiDAR Market, By Region
- 10.1 Overview
- 10.2 North America
- 10.2.1 North America LiDAR Market, By Country
- 10.2.2 North America LiDAR Market, By Type
- 10.2.3 North America LiDAR Market, By Component
- 10.2.4 North America LiDAR Market, By Installation
- 10.2.5 North America LiDAR Market, By Application
- 10.2.6 United States
- 10.2.6.1 United States LiDAR Market, By Type
- 10.2.6.2 United States LiDAR Market, By Component
- 10.2.6.3 United States LiDAR Market, By Installation
- 10.2.6.4 United States LiDAR Market, By Application
- 10.2.7 Canada
- 10.2.7.1 Canada LiDAR Market, By Type
- 10.2.7.2 Canada LiDAR Market, By Component
- 10.2.7.3 Canada LiDAR Market, By Installation
- 10.2.7.4 Canada LiDAR Market, By Application
- 10.2.8 Others
- 10.2.8.1 Others LiDAR Market, By Type
- 10.2.8.2 Others LiDAR Market, By Component
- 10.2.8.3 Others LiDAR Market, By Installation
- 10.2.8.4 Others LiDAR Market, By Application
- 10.3 Europe
- 10.3.1 Europe LiDAR Market, By Country
- 10.3.2 Europe LiDAR Market, By Type
- 10.3.3 Europe LiDAR Market, By Component
- 10.3.4 Europe LiDAR Market, By Installation
- 10.3.5 Europe LiDAR Market, By Application
- 10.3.6 United Kingdom
- 10.3.6.1 United Kingdom LiDAR Market, By Type
- 10.3.6.2 United Kingdom LiDAR Market, By Component
- 10.3.6.3 United Kingdom LiDAR Market, By Installation
- 10.3.6.4 United Kingdom LiDAR Market, By Application
- 10.3.7 Germany
- 10.3.7.1 Germany LiDAR Market, By Type
- 10.3.7.2 Germany LiDAR Market, By Component
- 10.3.7.3 Germany LiDAR Market, By Installation
- 10.3.7.4 Germany LiDAR Market, By Application
- 10.3.8 France
- 10.3.8.1 France LiDAR Market, By Type
- 10.3.8.2 France LiDAR Market, By Component
- 10.3.8.3 France LiDAR Market, By Installation
- 10.3.8.4 France LiDAR Market, By Application
- 10.3.9 Italy
- 10.3.9.1 Italy LiDAR Market, By Type
- 10.3.9.2 Italy LiDAR Market, By Component
- 10.3.9.3 Italy LiDAR Market, By Installation
- 10.3.9.4 Italy LiDAR Market, By Application
- 10.3.10 Spain
- 10.3.10.1 Spain LiDAR Market, By Type
- 10.3.10.2 Spain LiDAR Market, By Component
- 10.3.10.3 Spain LiDAR Market, By Installation
- 10.3.10.4 Spain LiDAR Market, By Application
- 10.3.11 Others
- 10.3.11.1 Others LiDAR Market, By Type
- 10.3.11.2 Others LiDAR Market, By Component
- 10.3.11.3 Others LiDAR Market, By Installation
- 10.3.11.4 Others LiDAR Market, By Application
- 10.4 Asia Pacific
- 10.4.1 Asia Pacific LiDAR Market, By Country
- 10.4.2 Asia Pacific LiDAR Market, By Type
- 10.4.3 Asia Pacific LiDAR Market, By Component
- 10.4.4 Asia Pacific LiDAR Market, By Installation
- 10.4.5 Asia Pacific LiDAR Market, By Application
- 10.4.6 China
- 10.4.6.1 China LiDAR Market, By Type
- 10.4.6.2 China LiDAR Market, By Component
- 10.4.6.3 China LiDAR Market, By Installation
- 10.4.6.4 China LiDAR Market, By Application
- 10.4.7 Japan
- 10.4.7.1 Japan LiDAR Market, By Type
- 10.4.7.2 Japan LiDAR Market, By Component
- 10.4.7.3 Japan LiDAR Market, By Installation
- 10.4.7.4 Japan LiDAR Market, By Application
- 10.4.8 India
- 10.4.8.1 India LiDAR Market, By Type
- 10.4.8.2 India LiDAR Market, By Component
- 10.4.8.3 India LiDAR Market, By Installation
- 10.4.8.4 India LiDAR Market, By Application
- 10.4.9 South Korea
- 10.4.9.1 South Korea LiDAR Market, By Type
- 10.4.9.2 South Korea LiDAR Market, By Component
- 10.4.9.3 South Korea LiDAR Market, By Installation
- 10.4.9.4 South Korea LiDAR Market, By Application
- 10.4.10 Australia
- 10.4.10.1 Australia LiDAR Market, By Type
- 10.4.10.2 Australia LiDAR Market, By Component
- 10.4.10.3 Australia LiDAR Market, By Installation
- 10.4.10.4 Australia LiDAR Market, By Application
- 10.4.11 Others
- 10.4.11.1 Others LiDAR Market, By Type
- 10.4.11.2 Others LiDAR Market, By Component
- 10.4.11.3 Others LiDAR Market, By Installation
- 10.4.11.4 Others LiDAR Market, By Application
- 10.5 Latin America
- 10.5.1 Latin America LiDAR Market, By Country
- 10.5.2 Latin America LiDAR Market, By Type
- 10.5.3 Latin America LiDAR Market, By Component
- 10.5.4 Latin America LiDAR Market, By Installation
- 10.5.5 Latin America LiDAR Market, By Application
- 10.5.6 Brazil
- 10.5.6.1 Brazil LiDAR Market, By Type
- 10.5.6.2 Brazil LiDAR Market, By Component
- 10.5.6.3 Brazil LiDAR Market, By Installation
- 10.5.6.4 Brazil LiDAR Market, By Application
- 10.5.7 Others
- 10.5.7.1 Others LiDAR Market, By Type
- 10.5.7.2 Others LiDAR Market, By Component
- 10.5.7.3 Others LiDAR Market, By Installation
- 10.5.7.4 Others LiDAR Market, By Application
- 10.6 Middle East and Africa (MEA)
- 10.6.1 Middle East and Africa (MEA) LiDAR Market, By Country
- 10.6.2 Middle East and Africa (MEA) LiDAR Market, By Type
- 10.6.3 Middle East and Africa (MEA) LiDAR Market, By Component
- 10.6.4 Middle East and Africa (MEA) LiDAR Market, By Installation
- 10.6.5 Middle East and Africa (MEA) LiDAR Market, By Application
- 10.6.6 United Arab Emirates
- 10.6.6.1 United Arab Emirates LiDAR Market, By Type
- 10.6.6.2 United Arab Emirates LiDAR Market, By Component
- 10.6.6.3 United Arab Emirates LiDAR Market, By Installation
- 10.6.6.4 United Arab Emirates LiDAR Market, By Application
- 10.6.7 Others
- 10.6.7.1 Others LiDAR Market, By Type
- 10.6.7.2 Others LiDAR Market, By Component
- 10.6.7.3 Others LiDAR Market, By Installation
- 10.6.7.4 Others LiDAR Market, By Application
- Chapter 11 Competitive Landscape
- 11.1 Strategic Move Analysis
- 11.1.1 Top Player Positioning/Market Share Analysis
- 11.1.2 Top Winning Strategies, By Year, 2021-2024
- 11.1.3 Competitive Analysis by Revenue, 2022-2024
- 11.2 Recent Developments by the Market Participants (2024-25)
- Chapter 12 Company Profiles
- 12.1 Velodyne Lidar Inc.
- 12.1.1 Company Snapshot
- 12.1.2 Company Overview
- 12.1.3 Financial Performance
- 12.1.4 Product Portfolio
- 12.1.5 Strategic Growth
- 12.2 Luminar Technologies Inc.
- 12.2.1 Company Snapshot
- 12.2.2 Company Overview
- 12.2.3 Financial Performance
- 12.2.4 Product Portfolio
- 12.2.5 Strategic Growth
- 12.3 Ouster Inc.
- 12.3.1 Company Snapshot
- 12.3.2 Company Overview
- 12.3.3 Financial Performance
- 12.3.4 Product Portfolio
- 12.3.5 Strategic Growth
- 12.4 Innoviz Technologies Ltd.
- 12.4.1 Company Snapshot
- 12.4.2 Company Overview
- 12.4.3 Financial Performance
- 12.4.4 Product Portfolio
- 12.4.5 Strategic Growth
- 12.5 Hesai Technology
- 12.5.1 Company Snapshot
- 12.5.2 Company Overview
- 12.5.3 Financial Performance
- 12.5.4 Product Portfolio
- 12.5.5 Strategic Growth
- 12.6 Aeva Inc.
- 12.6.1 Company Snapshot
- 12.6.2 Company Overview
- 12.6.3 Financial Performance
- 12.6.4 Product Portfolio
- 12.6.5 Strategic Growth
- 12.7 Quanergy Systems Inc.
- 12.7.1 Company Snapshot
- 12.7.2 Company Overview
- 12.7.3 Financial Performance
- 12.7.4 Product Portfolio
- 12.7.5 Strategic Growth
- 12.8 LeddarTech Inc.
- 12.8.1 Company Snapshot
- 12.8.2 Company Overview
- 12.8.3 Financial Performance
- 12.8.4 Product Portfolio
- 12.8.5 Strategic Growth
- 12.9 RoboSense Lidar
- 12.9.1 Company Snapshot
- 12.9.2 Company Overview
- 12.9.3 Financial Performance
- 12.9.4 Product Portfolio
- 12.9.5 Strategic Growth
- 12.10 Sick AG
- 12.10.1 Company Snapshot
- 12.10.2 Company Overview
- 12.10.3 Financial Performance
- 12.10.4 Product Portfolio
- 12.10.5 Strategic Growth
- 12.11 Leica Geosystems AG
- 12.11.1 Company Snapshot
- 12.11.2 Company Overview
- 12.11.3 Financial Performance
- 12.11.4 Product Portfolio
- 12.11.5 Strategic Growth
- 12.12 Trimble Inc.
- 12.12.1 Company Snapshot
- 12.12.2 Company Overview
- 12.12.3 Financial Performance
- 12.12.4 Product Portfolio
- 12.12.5 Strategic Growth
- 12.13 FARO Technologies Inc.
- 12.13.1 Company Snapshot
- 12.13.2 Company Overview
- 12.13.3 Financial Performance
- 12.13.4 Product Portfolio
- 12.13.5 Strategic Growth
- 12.14 Teledyne Optech
- 12.14.1 Company Snapshot
- 12.14.2 Company Overview
- 12.14.3 Financial Performance
- 12.14.4 Product Portfolio
- 12.14.5 Strategic Growth
- 12.15 Riegl Laser Measurement Systems GmbH
- 12.15.1 Company Snapshot
- 12.15.2 Company Overview
- 12.15.3 Financial Performance
- 12.15.4 Product Portfolio
- 12.15.5 Strategic Growth
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