Global and China Automotive LiDAR Sensors Dynamic Monitoring and Future Investment Report 2024
Report Code: KNJ1771976
Publisher: Date of Publish:
No. of Pages: 97 Category: Automotive Publisher: Date of Publish:
The report aims at estimating the market size and future growth potential of Automotive LiDAR Sensors market across different segments such as type, application and geography. The base year considered for the study is 2023, and the market size is forecast from 2024 to 2030. The global Automotive LiDAR Sensors market size in 2023 is 792.2 million US dollars, and it is expected to be 5561.0 million US dollars by 2030, with a compound annual growth rate of 32.10% expected in 2024-2030. MARKET COMPETITIVE LANDSCAPE: The main players in the Automotive LiDAR Sensors market include Robert Bosch GmbH, Continental AG, Denso Corporation, Ouster, Inc., and HELLA GmbH & Co. KGaA. The share of the top 3 players in the Automotive LiDAR Sensors market is XX%. REGION SHARE: The report covers the market size information of North America, Europe, Asia Pacific, Latin America, Middle East and Africa, and North America accounted for XX%, Europe accounted for XX% of Automotive LiDAR Sensors market, and Asia Pacific accounted for XX%. SEGMENT OVERVIEW: The report segments the market by Type and Application. 2 Dimensional accounted for XX% of Automotive LiDAR Sensors market in 2023. 3 Dimensional share of XX%. Semi-autonomous Vehicles accounted for XX% of the Automotive LiDAR Sensors market in 2023. Autonomous Vehicles accounts for XX%. The research methodology used to estimate and forecast the Automotive LiDAR Sensors market begins by capturing data on key market player revenues through secondary research. The bottom-up procedure has been employed to arrive at the overall market size, by considering the revenue of key players in the market. After arriving at the overall market size, the total market has been split into several segments and sub-segments, which has been verified through primary research by conducting extensive interviews with key people such as industry experts, executives. This data triangulation and market breakdown procedures have been employed to complete the overall market engineering process and arrive at the exact statistics for segments and sub-segments. This report provides the integrated ecosystem of the Automotive LiDAR Sensors market which offers holistic view of current demand and vendor side market. The research study answers several significant questions, primarily which market segments to focus on in next two to five years to prioritize factors such as resource effort, and investment. Key Target audience: Automotive LiDAR Sensors Manufacturers and Suppliers Research and Development (R&D) Companies Business Research and Consulting Service Providers Research Organizations Academic Centers and Universities Associations and Industrial Bodies Technology Investors Chapter Outline Chapter 1: Introduces the product overview, research purposes, and then includes economic analysis of global regions and inflation analysis, Chapter 2: Analyzes the Automotive LiDAR Sensors manufacturing cost, including manufacturing cost structure, and industrial chain. Chapter 3: Analysis of the competitive environment of Automotive LiDAR Sensors market participants. This mainly includes the revenue and market share of the top players, along with the players' M&A and expansion in recent years. Chapter 4: Analyzes the main companies in the Automotive LiDAR Sensors industry, including their main businesses, products/services, revenue, gross and gross margin. Chapters 5-7: Segmented the global Automotive LiDAR Sensors market by type, application and region. Analyze the revenue of market segments from different perspectives. Chapters 8-12: Provide North America, EMEA, China, Asia-Pacific and Latin America Automotive LiDAR Sensors market type, application, country and player market segmentation revenue data. Chapter 13: Introduces the market dynamics, the trends factors and drivers factors of the market, and the challenges and restraints faced by manufacturers in the industry. Chapter 14: The main points and conclusions of the report. Highlights-Regions North America United States Canada China Asia Pacific (Excluding China) Japan Korea Southeast Asia India Australia EMEA Europe Germany France UK Italy Russia Nordic Middle East Africa Latin America Brazil Argentina Mexico Player list Robert Bosch GmbH Continental AG Denso Corporation Ouster, Inc. HELLA GmbH & Co. KGaA First Sensor AG (TE Connectivity Ltd.) Texas Instruments, Inc. KUBOTA Corporation Quanergy Systems, Inc. LeddarTech Inc. Types list 2 Dimensional 3 Dimensional Application list Semi-autonomous Vehicles Autonomous Vehicles
Table of Content 1 Automotive LiDAR Sensors Market Introduction and Overview 1.1 Automotive LiDAR Sensors Definition 1.2 Research Purposes 1.3 Currency Rate 1.4 Report Timeline 1.5 Economic Analysis of Global Regions 1.6 Inflation Analysis 2 Automotive LiDAR Sensors Business Cost Analysis 2.1 Proportion of Manufacturing Cost Structure 2.1.1 Labor Cost 2.1.2 Operating Expenses 2.2 Automotive LiDAR Sensors Industrial Chain Analysis 3 Market Competition by Manufacturers 3.1 Global Automotive LiDAR Sensors Revenue and Market Share by Manufacturer 3.2 Manufacturers Automotive LiDAR Sensors Production Sites, Area Served, Product Types 3.3 Automotive LiDAR Sensors Market Competitive Situation and Trends 3.3.1 Automotive LiDAR Sensors Market Concentration Rate 3.3.2 Global Top 5 and Top 10 Players Market Share by Revenue in 2024 3.3.3 Mergers & Acquisitions, Expansion 4 Players Profiles 4.1 Robert Bosch GmbH 4.1.1 Robert Bosch GmbH Company Profile 4.1.2 Automotive LiDAR Sensors Product Overview 4.1.3 Robert Bosch GmbH Automotive LiDAR Sensors Market Performance (2019-2024) 4.1.4 Robert Bosch GmbH Business Overview 4.2 Continental AG 4.2.1 Continental AG Company Profile 4.2.2 Automotive LiDAR Sensors Product Overview 4.2.3 Continental AG Automotive LiDAR Sensors Market Performance (2019-2024) 4.2.4 Continental AG Business Overview 4.3 Denso Corporation 4.3.1 Denso Corporation Company Profile 4.3.2 Automotive LiDAR Sensors Product Overview 4.3.3 Denso Corporation Automotive LiDAR Sensors Market Performance (2019-2024) 4.3.4 Denso Corporation Business Overview 4.4 Ouster, Inc. 4.4.1 Ouster, Inc. Company Profile 4.4.2 Automotive LiDAR Sensors Product Overview 4.4.3 Ouster, Inc. Automotive LiDAR Sensors Market Performance (2019-2024) 4.4.4 Ouster, Inc. Business Overview 4.5 HELLA GmbH & Co. KGaA 4.5.1 HELLA GmbH & Co. KGaA Company Profile 4.5.2 Automotive LiDAR Sensors Product Overview 4.5.3 HELLA GmbH & Co. KGaA Automotive LiDAR Sensors Market Performance (2019-2024) 4.5.4 HELLA GmbH & Co. KGaA Business Overview 4.6 First Sensor AG (TE Connectivity Ltd.) 4.6.1 First Sensor AG (TE Connectivity Ltd.) Company Profile 4.6.2 Automotive LiDAR Sensors Product Overview 4.6.3 First Sensor AG (TE Connectivity Ltd.) Automotive LiDAR Sensors Market Performance (2019-2024) 4.6.4 First Sensor AG (TE Connectivity Ltd.) Business Overview 4.7 Texas Instruments, Inc. 4.7.1 Texas Instruments, Inc. Company Profile 4.7.2 Automotive LiDAR Sensors Product Overview 4.7.3 Texas Instruments, Inc. Automotive LiDAR Sensors Market Performance (2019-2024) 4.7.4 Texas Instruments, Inc. Business Overview 4.8 KUBOTA Corporation 4.8.1 KUBOTA Corporation Company Profile 4.8.2 Automotive LiDAR Sensors Product Overview 4.8.3 KUBOTA Corporation Automotive LiDAR Sensors Market Performance (2019-2024) 4.8.4 KUBOTA Corporation Business Overview 4.9 Quanergy Systems, Inc. 4.9.1 Quanergy Systems, Inc. Company Profile 4.9.2 Automotive LiDAR Sensors Product Overview 4.9.3 Quanergy Systems, Inc. Automotive LiDAR Sensors Market Performance (2019-2024) 4.9.4 Quanergy Systems, Inc. Business Overview 4.10 LeddarTech Inc. 4.10.1 LeddarTech Inc. Company Profile 4.10.2 Automotive LiDAR Sensors Product Overview 4.10.3 LeddarTech Inc. Automotive LiDAR Sensors Market Performance (2019-2024) 4.10.4 LeddarTech Inc. Business Overview 5 Global Automotive LiDAR Sensors Historical and Forecast Market Analysis by Type 5.1 Market Size Analysis by Types 5.2 Global Automotive LiDAR Sensors Revenue and Market Share by Type 5.3 Global Automotive LiDAR Sensors Revenue Market Forecast by Type (2024-2030) 6 Global Automotive LiDAR Sensors Historical and Forecast Market Analysis by Application 6.1 Market Size Analysis by Application 6.2 Global Automotive LiDAR Sensors Revenue Market Share by Application (2019-2024) 6.3 Automotive LiDAR Sensors Revenue Market Forecast by Application (2024-2030) 7 Global Market Growth Trends Analysis 7.1 Global Automotive LiDAR Sensors Market Size & Forecast (2019-2030) 7.2 Automotive LiDAR Sensors Growth Trends Analysis by Regions 7.2.1 Automotive LiDAR Sensors Market Size by Regions: 2019 VS 2024 VS 2030 7.2.2 Automotive LiDAR Sensors Historic Revenue Market Size by Regions (2019-2024) 7.2.3 Automotive LiDAR Sensors Forecasted Revenue Market Size by Regions (2024-2030) 7.2.4 North America Automotive LiDAR Sensors Market Size & Forecast (2019-2030) 7.2.5 EMEA Automotive LiDAR Sensors Market Size & Forecast (2019-2030) 7.2.6 China Automotive LiDAR Sensors Market Size & Forecast (2019-2030) 7.2.7 Asia-Pacific (Excluding China) Automotive LiDAR Sensors Market Size & Forecast (2019-2030) 7.2.8 Latin America Automotive LiDAR Sensors Market Size & Forecast (2019-2030) 8 North America 8.1 North America Automotive LiDAR Sensors Revenue by Players 8.2 North America Automotive LiDAR Sensors Revenue by Types 8.3 North America Automotive LiDAR Sensors Revenue by Applications 8.4 North America Automotive LiDAR Sensors Market by Countries 8.4.1 North America Automotive LiDAR Sensors Revenue by Countries (2019-2030) 8.5 North America SWOT Analysis 8.6 United States 8.7 Canada 9 China 9.1 China Automotive LiDAR Sensors Revenue by Players 9.2 China Automotive LiDAR Sensors Revenue by Types 9.3 China Automotive LiDAR Sensors Revenue by Applications 9.4 China SWOT Analysis 9.5 China 10 Asia Pacific (Excluding China) 10.1 Asia Pacific Automotive LiDAR Sensors Revenue by Players 10.2 Asia Pacific Automotive LiDAR Sensors Revenue by Types 10.3 Asia Pacific Automotive LiDAR Sensors Revenue by Applications 10.4 Asia Pacific Automotive LiDAR Sensors Market by Countries 10.4.1 Asia Pacific Automotive LiDAR Sensors Revenue by Countries (2019-2030) 10.5 Asia Pacific SWOT Analysis 10.6 Japan 10.7 Korea 10.8 Southeast Asia 10.9 India 10.10 Australia 11 EMEA 11.1 EMEA Automotive LiDAR Sensors Revenue by Players 11.2 EMEA Automotive LiDAR Sensors Revenue by Types 11.3 EMEA Automotive LiDAR Sensors Revenue by Applications 11.4 EMEA Automotive LiDAR Sensors Market by Countries 11.4.1 EMEA Automotive LiDAR Sensors Revenue by Countries (2019-2030) 11.5 EMEA SWOT Analysis 11.6 Europe 11.6.1 Europe Automotive LiDAR Sensors Revenue by Countries (2019-2030) 11.6.2 Germany 11.6.3 France 11.6.4 UK 11.6.5 Italy 11.6.6 Russia 11.6.7 Nordic 11.7 Middle East 11.8 Africa 12 Latin America 12.1 Latin America Automotive LiDAR Sensors Revenue by Players 12.2 Latin America Automotive LiDAR Sensors Revenue by Types 12.3 Latin America Automotive LiDAR Sensors Revenue by Applications 12.4 Latin America Automotive LiDAR Sensors Market by Countries 12.4.1 Latin America Automotive LiDAR Sensors Revenue by Countries (2019-2030) 12.5 Latin America SWOT Analysis 12.6 Brazil 12.7 Argentina 12.8 Mexico 13 Automotive LiDAR Sensors Industry Dynamic Analysis 13.1 Automotive LiDAR Sensors Market Trends Analysis 13.2 Automotive LiDAR Sensors Market Drivers Analysis 13.3 Automotive LiDAR Sensors Market Challenges Analysis 13.4 Automotive LiDAR Sensors Market Restraints Analysis 14 Research Findings and Conclusion
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