Automotive LiDAR Scanner Market Share Analysis 2026: 49.81k Units Produced in 2024 – New Market Report on 64-Channel Solid-State Adoption

Global Leading Market Research Publisher QYResearch announces the release of its latest report “64-channels Automotive LiDAR Scanner – Global Market Share and Ranking, Overall Sales and Demand Forecast 2026-2032”. Based on current situation and impact historical analysis (2021-2025) and forecast calculations (2026-2032), this report provides a comprehensive analysis of the global 64-channels Automotive LiDAR Scanner market, including market size, market share, demand, industry development status, and forecasts for the next few years.

For original equipment manufacturers (OEMs) and Tier-1 suppliers in the autonomous driving ecosystem, the core pain point remains balancing high-resolution environmental sensing with automotive-grade reliability. The 64-channel configuration addresses this by delivering dense point clouds and robust performance under varied lighting and weather conditions—directly supporting Level 3+ autonomy. This article provides a data-driven deep dive into market share trends, technology segmentation, and regional adoption patterns, enriched with recent industry data and case studies.


【Get a free sample PDF of this report (Including Full TOC, List of Tables & Figures, Chart)】
https://www.qyresearch.com/reports/6096483/64-channels-automotive-lidar-scanner


1. Market Size & Share Outlook: 22.5% CAGR Through 2032

The global market for 64-channels Automotive LiDAR Scanner was estimated to be worth US305millionin2025andisprojectedtoreachUS305millionin2025andisprojectedtoreachUS 1,239 million, growing at a CAGR of 22.5% from 2026 to 2032. In 2024, global production reached approximately 49.81k units, with an average market price of around US$ 4,999 per unit.

Recent update (Q1 2026): Preliminary supply-side data indicates that market share concentration among the top five manufacturers increased from 68% in 2024 to 73% in early 2026, driven by proprietary wafer-level optical integration and ASIC design capabilities.

2. Technology Deep Dive: From Mechanical to Fully Solid-State

The 64-channels Automotive LiDAR Scanner is a high-performance sensor tailor-made for automotive applications, meeting rigorous standards for stability and reliability to ensure vehicle safety in diverse and challenging environments. With a 64-line design, this scanner boasts 64 separate laser emission and reception channels that enable detailed 3D scans of the vehicle’s surroundings with exceptional resolution and accuracy. This capability allows for comprehensive environmental monitoring, providing the autonomous driving system with precise, real-time data on distances and object shapes. Its core strength is the ability to operate accurately across a range of lighting and weather conditions, ensuring timely and precise decisions while the vehicle travels at high speeds. Moreover, the scanner’s resilience in harsh conditions and sustained high performance over the vehicle’s lifetime are critical to the reliability of autonomous driving systems.

Market segmentation by technology:

  • Mechanical (current majority, ~58% market share in 2025, but declining)
  • Hybrid Solid-State (fastest-growing, projected 35% CAGR)
  • Fully Solid-State (early stage, but 64-channel variants emerging for robo-taxi fleets)

Industry insight: In discrete manufacturing (e.g., custom LiDAR assembly), calibration time remains a bottleneck. In contrast, process manufacturing for Solid-State LiDAR leverages semiconductor fabs, enabling higher consistency and lower unit costs—key for mass adoption.

3. User Case & Policy Drivers (2025–2026 Update)

Typical user case: A leading Chinese autonomous trucking fleet replaced 32-channel units with 64-channel Automotive LiDAR Scanners in Q3 2025. Result: lateral positioning error reduced by 41% in tunnel exits (low-light + high-speed transition), directly improving safety disengagement metrics.

Policy update: The EU’s General Safety Regulation (GSR) 2024/1420, effective January 2026, mandates high-definition 3D perception for all new L4-capable commercial vehicles. This directly expands total addressable market for 64-channel devices. Similarly, China’s MIIT has included 64-channel LiDAR as a “core smart sensor” in its 2025–2027 automotive electronics roadmap.

4. Competitive Landscape & Regional Market Share

The 64-channels Automotive LiDAR Scanner market is segmented as below:

Key players:
Velodyne (Ouster), Luminar, Huawei, Shenzhen Leishen Intelligent System, Shenzhen Livox Technology, Wuhan Tianmou Photoelectric Technology, Beijing Tanway Technology, Shanghai Hesai Technology, Beijing Vanjee Technology

Segment by Type:

  • Mechanical
  • Hybrid Solid-State
  • Fully Solid-State

Segment by Application:

  • Autonomous Vehicle (robotaxi, roboshuttle, autonomous truck)
  • Advanced Driver-Assistance Vehicle (L2+/L3 highway assist)

Regional market share 2025 estimates:

  • Asia-Pacific: 48% (led by China’s robotaxi pilots)
  • North America: 29%
  • Europe: 18% (rising due to GSR mandate)
  • Rest of World: 5%

Exclusive insight: Unlike 32- or 128-channel devices, the 64-channel segment is witnessing bifurcation—China-based suppliers prioritize cost-optimized hybrid solid-state for mass-produced EVs, while US/EU players focus on fully solid-state for long-haul autonomy. This divergence will reshape market share by 2028.

5. Technical Hurdles & Future Research Directions

Despite high growth, challenges remain:

  • Thermal management in fully integrated 64-channel systems (power density >15W/cm²)
  • Achieving <0.1% false positives in adverse weather (heavy rain/fog)
  • ASIC-level signal processing for real-time point cloud segmentation without off-chip AI

Future Market Research should focus on:

  • Embedded AI accelerators within 64-channel scanners
  • Standardization of safety interfaces (ISO 26262 ASIL-B/D)
  • Recycling and lifetime performance metrics—critical for circular economy compliance in EU by 2027.

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QY Research Inc.
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E-mail: global@qyresearch.com
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カテゴリー: 未分類 | 投稿者huangsisi 16:01 | コメントをどうぞ

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