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Neuromorphic Chips for Autonomous Vehicles Market Size, Market Share, Application Analysis, Regional Outlook, Growth Trends, Key Players, Competitive Strategies and Forecasts, 2025 to 2033

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    Report

  • 196 Pages
  • November 2025
  • Region: Global
  • Acute Market Reports
  • ID: 6234372
The neuromorphic chips for autonomous vehicle market is growing at a 20.0% CAGR as OEMs and Tier-1 suppliers look for ultra-low-power, high-speed processing to handle perception, sensor fusion, and decision-making at the vehicle edge. Neuromorphic architectures mimic the way biological neurons and synapses work, offering event-driven, parallel computation that can reduce latency and energy use compared with conventional GPUs and CPUs in certain tasks. Within chip architectures, digital neuromorphic chips currently generate the highest revenue because they are easier to integrate in standard CMOS flows and existing automotive electronics platforms, while mixed-signal neuromorphic chips are expected to post the highest CAGR as they combine analog efficiency with digital programmability for advanced autonomous driving workloads. By deployment, on-board (edge) processing accounts for the highest revenue today since safety-critical functions must run in the vehicle with low latency, whereas hybrid processing (combining edge and cloud) is expected to record the highest CAGR as automakers build continuous-learning and fleet-optimization loops around vehicles in the field.

Market Drivers

Market growth is driven by the increasing complexity and compute intensity of autonomous driving stacks. High-resolution cameras, radar, lidar, and in-cabin sensors generate huge volumes of data that must be processed in real time for perception, object tracking, and path planning. Traditional compute approaches push power consumption and thermal limits, especially in compact ECUs and domain controllers. Neuromorphic chips offer event-based processing that only consumes energy when relevant information is present, making them attractive for always-on perception, low-power sensing, and near-sensor processing. As vehicles move toward higher levels of autonomy and continuous over-the-air updates, OEMs also seek architectures that can support on-board learning or rapid adaptation to new environments. The growth of software-defined vehicles and zonal architectures further supports demand for edge intelligence in compact, efficient form factors. For fleets, neuromorphic-enabled edge processing can help reduce data transmission cost by pre-filtering and compressing information before sending summaries to the cloud.

Market Restraints

Adoption is constrained by the early-stage maturity of neuromorphic ecosystems compared with established GPU, CPU, and dedicated accelerator platforms. Toolchains, programming models, and standard benchmarks are still evolving, which makes OEMs cautious about committing to large-scale deployments. Integrating neuromorphic chips into safety-critical automotive environments requires rigorous functional safety concepts, explainability of behavior, and robust validation of learning methods, all of which are still developing. Many autonomous driving stacks are currently optimized for conventional deep-learning hardware, so redesigning algorithms to fully leverage neuromorphic advantages requires investment and skills that not all OEMs and Tier-1s have. Supply chain reliability, long-term availability, and automotive qualification for newer neuromorphic devices also remain key concerns. In the short term, cost per unit of compute can still be higher than mature alternatives in many use cases, limiting neuromorphic deployment to pilot programs and selected edge functions.

Market by Chip Architecture

Analog neuromorphic chips implement neuron and synapse behavior directly in analog circuitry, offering very low power and high density for spiking neural networks. They are well suited for always-on sensing, pattern detection, and low-latency trigger functions, but face challenges in process variation control, large-scale programmability, and integration with digital toolchains. Digital neuromorphic chips represent neurons and spikes in digital logic, leveraging existing CMOS design flows, verification tools, and memory technologies. Within chip architectures, digital neuromorphic chips currently generate the highest revenue because they fit more easily into automotive electronics roadmaps and can be integrated alongside existing processors and accelerators in autonomous ECUs. Mixed-signal neuromorphic chips combine analog computation blocks with digital control and interfaces, aiming to capture analog's efficiency while retaining digital configurability and reliability. As autonomous driving tasks become more demanding and carmakers seek better energy efficiency at the edge, mixed-signal neuromorphic chips are expected to post the highest CAGR, serving roles in perception pre-processing, sensor fusion, and always-on co-processors that offload work from main SoCs.

Market by Deployment

On-board (edge) processing is central to autonomous vehicles because safety-critical decisions must be made locally, even when connectivity is weak or absent. Neuromorphic chips deployed at the edge can support real-time object detection, event-based vision, in-cabin monitoring, and anomaly detection with low power use and minimal latency; within deployment types, on-board processing currently generates the highest revenue as most neuromorphic pilots and early series programs focus on in-vehicle use. Cloud-assisted processing uses data uploaded from vehicles for training, model updates, and fleet-wide optimization, with neuromorphic principles occasionally applied in data centers or specialized cloud hardware, but direct neuromorphic chip demand here is smaller and more experimental. Hybrid processing links powerful edge neuromorphic nodes in vehicles with cloud infrastructure that retrains, refines, and distributes updated models or parameters back to the fleet. As OEMs and mobility operators build large autonomous fleets and want continuous improvement in perception and behavior, hybrid processing is expected to record the highest CAGR, turning vehicles into learning endpoints that both consume and generate intelligence.

Regional Insights

North America and Europe lead early adoption due to strong autonomous driving R&D, advanced semiconductor and AI ecosystems, and active pilot programs involving robotaxis, automated shuttles, and premium vehicles with high-end ADAS. Technology companies, start-ups, and established Tier-1s in these regions collaborate with automakers to test neuromorphic platforms in sensor modules, ECUs, and edge-AI devices. Asia-Pacific, led by China, Japan, and South Korea, is expected to show strong growth as local OEMs and chipmakers accelerate investment in AI accelerators and explore neuromorphic options for next-generation electric and autonomous platforms. Regional policies promoting local semiconductor innovation and intelligent vehicles further support pilot projects. Other regions, including the Middle East and selective Latin American markets, may adopt neuromorphic technologies more gradually, mainly through imported vehicles and fleet solutions developed elsewhere. Markets that move fastest toward Level 3+ autonomy, software-defined vehicles, and dense AV fleets will show the highest demand for neuromorphic edge compute.

Competitive Landscape

IBM, Intel, Micron, NVIDIA, Qualcomm, Samsung Electronics, Sony, and Hewlett Packard Enterprise are global semiconductor and computing companies exploring neuromorphic or neuromorphic-inspired architectures, often leveraging their existing strengths in AI accelerators, memory, and sensor integration. BrainChip Holdings, Aspinity, Gyrfalcon Technology, MemryX, Mythic, Polyn Technology, Prophesee, General Vision, Grayscale AI, and Applied Brain Research focus more directly on neuromorphic hardware, event-based vision sensors, spiking neural networks, and associated development tools, targeting low-power edge AI in automotive and industrial markets. Figaro Engineering and other sensor specialists contribute sensing technologies that can pair with neuromorphic processors for ultra-low-power perception. Cadence Design Systems supports the ecosystem with EDA tools, IP, and flows needed to design and verify neuromorphic chips at automotive-grade reliability. Accenture and other consulting and systems integration firms help OEMs and Tier-1s assess where neuromorphic computing fits into their autonomous driving roadmaps and how to integrate it with existing software stacks. Companies that combine robust neuromorphic hardware with mature development frameworks, automotive safety concepts, and clear integration into autonomous driving ECUs are positioned to lead current revenue, while those that enable scalable, mixed-signal neuromorphic edge platforms tightly linked to cloud-based training and fleet analytics are likely to capture the highest CAGR in the neuromorphic chips for autonomous vehicle market.

Historical & Forecast Period

This study report represents an analysis of each segment from 2023 to 2033 considering 2024 as the base year. Compounded Annual Growth Rate (CAGR) for each of the respective segments estimated for the forecast period of 2025 to 2033.

The report comprises quantitative market estimations for each micro market for every geographical region and qualitative market analysis such as micro and macro environment analysis, market trends, competitive intelligence, segment analysis, porters five force model, top winning strategies, top investment markets, emerging trends & technological analysis, case studies, strategic conclusions & recommendations and other key market insights.

Research Methodology

The complete research study was conducted in three phases, namely: secondary research, primary research, and expert panel review. The key data points that enable the estimation of Neuromorphic Chips for Autonomous Vehicles market are as follows:
  • Research and development budgets of manufacturers and government spending
  • Revenues of key companies in the market segment
  • Number of end users & consumption volume, price, and value.
  • Geographical revenues generated by countries considered in the report
  • Micro and macro environment factors that are currently influencing the Neuromorphic Chips for Autonomous Vehicles market and their expected impact during the forecast period.
The market forecast was performed through proprietary software that analyzes various qualitative and quantitative factors. Growth rate and CAGR were estimated through intensive secondary and primary research. Data triangulation across various data points provides accuracy across various analyzed market segments in the report. Application of both top-down and bottom-up approach for validation of market estimation assures logical, methodical, and mathematical consistency of the quantitative data.

Market Segmentation

  • Chip Architecture
    • Analog
    • Digital
    • Mixed-Signal

  • Deployment
    • On-Board (Edge) Processing
    • Cloud-Assisted Processing
    • Hybrid Processing

  • Vehicle Category
    • Passenger Cars
    • Commercial Vehicles
      • Trucks
      • Buses

    • Autonomous Shuttles & Robo-Taxis
    • Off-Road & Specialized Vehicles
      • Agriculture
      • Mining
      • Construction

    • Others

  • End Use
    • Automotive OEMs
    • Tier-1 Suppliers
    • Aftermarket Solution Providers
    • Research & Development Entities
    • Others

Region Segment (2023 - 2033; US$ Million)

  • North America
    • U.S.
    • Canada
    • Rest of North America
  • UK and European Union
    • UK
    • Germany
    • Spain
    • Italy
    • France
    • Rest of Europe
  • Asia-Pacific
    • China
    • Japan
    • India
    • Australia
    • South Korea
    • Rest of Asia-Pacific
  • Latin America
    • Brazil
    • Mexico
    • Rest of Latin America
  • Middle East and Africa
    • GCC
    • Africa
    • Rest of Middle East and Africa

Key questions answered in this report

  • What are the key micro and macro environmental factors that are impacting the growth of Neuromorphic Chips for Autonomous Vehicles market?
  • What are the key investment pockets concerning product segments and geographies currently and during the forecast period?
  • Estimated forecast and market projections up to 2033.
  • Which segment accounts for the fastest CAGR during the forecast period?
  • Which market segment holds a larger market share and why?
  • Are low and middle-income economies investing in the Neuromorphic Chips for Autonomous Vehicles market?
  • Which is the largest regional market for Neuromorphic Chips for Autonomous Vehicles market?
  • What are the market trends and dynamics in emerging markets such as Asia-Pacific, Latin America, and Middle East & Africa?
  • Which are the key trends driving Neuromorphic Chips for Autonomous Vehicles market growth?
  • Who are the key competitors and what are their key strategies to enhance their market presence in the Neuromorphic Chips for Autonomous Vehicles market worldwide?

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Table of Contents

1. Preface
1.1. Report Description
1.1.1. Purpose of the Report
1.1.2. Target Audience
1.1.3. Key Offerings
1.2. Market Segmentation
1.3. Research Methodology
1.3.1. Phase I - Secondary Research
1.3.2. Phase II - Primary Research
1.3.3. Phase III - Expert Panel Review
1.3.4. Assumptions
1.3.5. Approach Adopted
2. Executive Summary
2.1. Market Snapshot: Global Neuromorphic Chips for Autonomous Vehicles Market
2.2. Global Neuromorphic Chips for Autonomous Vehicles Market, by Chip Architecture, 2024 (US$ Million)
2.3. Global Neuromorphic Chips for Autonomous Vehicles Market, by Deployment, 2024 (US$ Million)
2.4. Global Neuromorphic Chips for Autonomous Vehicles Market, by Vehicle Category, 2024 (US$ Million)
2.5. Global Neuromorphic Chips for Autonomous Vehicles Market, by End Use, 2024 (US$ Million)
2.6. Global Neuromorphic Chips for Autonomous Vehicles Market, by Geography, 2024 (US$ Million)
2.7. Attractive Investment Proposition by Geography, 2024
3. Neuromorphic Chips for Autonomous Vehicles Market: Competitive Analysis
3.1. Market Positioning of Key Neuromorphic Chips for Autonomous Vehicles Market Vendors
3.2. Strategies Adopted by Neuromorphic Chips for Autonomous Vehicles Market Vendors
4. Neuromorphic Chips for Autonomous Vehicles Market: Macro Analysis & Market Dynamics
4.1. Introduction
4.2. Global Neuromorphic Chips for Autonomous Vehicles Market Value, 2023-2033, (US$ Million)
4.3. Market Dynamics
4.3.1. Market Drivers
4.3.2. Market Restraints
4.3.3. Key Challenges
4.3.4. Key Opportunities
4.4. Impact Analysis of Drivers and Restraints
4.5. Porter's Five Force Model
4.5.1. Supplier Power
4.5.2. Buyer Power
4.5.3. Threat Of Substitutes
4.5.4. Threat Of New Entrants
4.5.5. Competitive Rivalry
4.6. PESTEL Analysis
4.6.1. Political Landscape
4.6.2. Economic Landscape
4.6.3. Technology Landscape
4.6.4. Legal Landscape
4.6.5. Social Landscape
5. Neuromorphic Chips for Autonomous Vehicles Market: by Chip Architecture, 2023-2033, USD (Million)
5.1. Market Overview
5.2. Growth & Revenue Analysis: 2024 Versus 2033
5.3. Market Segmentation
5.3.1. Analog
5.3.2. Digital
5.3.3. Mixed-Signal
6. Neuromorphic Chips for Autonomous Vehicles Market: by Deployment, 2023-2033, USD (Million)
6.1. Market Overview
6.2. Growth & Revenue Analysis: 2024 Versus 2033
6.3. Market Segmentation
6.3.1. On-Board (Edge) Processing
6.3.2. Cloud-Assisted Processing
6.3.3. Hybrid Processing
7. Neuromorphic Chips for Autonomous Vehicles Market: by Vehicle Category, 2023-2033, USD (Million)
7.1. Market Overview
7.2. Growth & Revenue Analysis: 2024 Versus 2033
7.3. Market Segmentation
7.3.1. Passenger Cars
7.3.2. Commercial Vehicles
7.3.2.1. Trucks
7.3.2.2. Buses
7.3.3. Autonomous Shuttles & Robo-Taxis
7.3.4. Off-Road & Specialized Vehicles
7.3.4.1. Agriculture
7.3.4.2. Mining
7.3.4.3. Construction
7.3.5. Others
8. Neuromorphic Chips for Autonomous Vehicles Market: by End Use, 2023-2033, USD (Million)
8.1. Market Overview
8.2. Growth & Revenue Analysis: 2024 Versus 2033
8.3. Market Segmentation
8.3.1. Automotive OEMs
8.3.2. Tier-1 Suppliers
8.3.3. Aftermarket Solution Providers
8.3.4. Research & Development Entities
8.3.5. Others
9. North America Neuromorphic Chips for Autonomous Vehicles Market, 2023-2033, USD (Million)
9.1. Market Overview
9.2. Neuromorphic Chips for Autonomous Vehicles Market: by Chip Architecture, 2023-2033, USD (Million)
9.3. Neuromorphic Chips for Autonomous Vehicles Market: by Deployment, 2023-2033, USD (Million)
9.4. Neuromorphic Chips for Autonomous Vehicles Market: by Vehicle Category, 2023-2033, USD (Million)
9.5. Neuromorphic Chips for Autonomous Vehicles Market: by End Use, 2023-2033, USD (Million)
9.6. Neuromorphic Chips for Autonomous Vehicles Market: by Region, 2023-2033, USD (Million)
9.6.1. North America
9.6.1.1. U.S.
9.6.1.1.1. Neuromorphic Chips for Autonomous Vehicles Market: by Chip Architecture, 2023-2033, USD (Million)
9.6.1.1.2. Neuromorphic Chips for Autonomous Vehicles Market: by Deployment, 2023-2033, USD (Million)
9.6.1.1.3. Neuromorphic Chips for Autonomous Vehicles Market: by Vehicle Category, 2023-2033, USD (Million)
9.6.1.1.4. Neuromorphic Chips for Autonomous Vehicles Market: by End Use, 2023-2033, USD (Million)
9.6.1.2. Canada
9.6.1.2.1. Neuromorphic Chips for Autonomous Vehicles Market: by Chip Architecture, 2023-2033, USD (Million)
9.6.1.2.2. Neuromorphic Chips for Autonomous Vehicles Market: by Deployment, 2023-2033, USD (Million)
9.6.1.2.3. Neuromorphic Chips for Autonomous Vehicles Market: by Vehicle Category, 2023-2033, USD (Million)
9.6.1.2.4. Neuromorphic Chips for Autonomous Vehicles Market: by End Use, 2023-2033, USD (Million)
9.6.1.3. Rest of North America
9.6.1.3.1. Neuromorphic Chips for Autonomous Vehicles Market: by Chip Architecture, 2023-2033, USD (Million)
9.6.1.3.2. Neuromorphic Chips for Autonomous Vehicles Market: by Deployment, 2023-2033, USD (Million)
9.6.1.3.3. Neuromorphic Chips for Autonomous Vehicles Market: by Vehicle Category, 2023-2033, USD (Million)
9.6.1.3.4. Neuromorphic Chips for Autonomous Vehicles Market: by End Use, 2023-2033, USD (Million)
10. UK and European Union Neuromorphic Chips for Autonomous Vehicles Market, 2023-2033, USD (Million)
10.1. Market Overview
10.2. Neuromorphic Chips for Autonomous Vehicles Market: by Chip Architecture, 2023-2033, USD (Million)
10.3. Neuromorphic Chips for Autonomous Vehicles Market: by Deployment, 2023-2033, USD (Million)
10.4. Neuromorphic Chips for Autonomous Vehicles Market: by Vehicle Category, 2023-2033, USD (Million)
10.5. Neuromorphic Chips for Autonomous Vehicles Market: by End Use, 2023-2033, USD (Million)
10.6. Neuromorphic Chips for Autonomous Vehicles Market: by Region, 2023-2033, USD (Million)
10.6.1. UK and European Union
10.6.1.1. UK
10.6.1.1.1. Neuromorphic Chips for Autonomous Vehicles Market: by Chip Architecture, 2023-2033, USD (Million)
10.6.1.1.2. Neuromorphic Chips for Autonomous Vehicles Market: by Deployment, 2023-2033, USD (Million)
10.6.1.1.3. Neuromorphic Chips for Autonomous Vehicles Market: by Vehicle Category, 2023-2033, USD (Million)
10.6.1.1.4. Neuromorphic Chips for Autonomous Vehicles Market: by End Use, 2023-2033, USD (Million)
10.6.1.2. Germany
10.6.1.2.1. Neuromorphic Chips for Autonomous Vehicles Market: by Chip Architecture, 2023-2033, USD (Million)
10.6.1.2.2. Neuromorphic Chips for Autonomous Vehicles Market: by Deployment, 2023-2033, USD (Million)
10.6.1.2.3. Neuromorphic Chips for Autonomous Vehicles Market: by Vehicle Category, 2023-2033, USD (Million)
10.6.1.2.4. Neuromorphic Chips for Autonomous Vehicles Market: by End Use, 2023-2033, USD (Million)
10.6.1.3. Spain
10.6.1.3.1. Neuromorphic Chips for Autonomous Vehicles Market: by Chip Architecture, 2023-2033, USD (Million)
10.6.1.3.2. Neuromorphic Chips for Autonomous Vehicles Market: by Deployment, 2023-2033, USD (Million)
10.6.1.3.3. Neuromorphic Chips for Autonomous Vehicles Market: by Vehicle Category, 2023-2033, USD (Million)
10.6.1.3.4. Neuromorphic Chips for Autonomous Vehicles Market: by End Use, 2023-2033, USD (Million)
10.6.1.4. Italy
10.6.1.4.1. Neuromorphic Chips for Autonomous Vehicles Market: by Chip Architecture, 2023-2033, USD (Million)
10.6.1.4.2. Neuromorphic Chips for Autonomous Vehicles Market: by Deployment, 2023-2033, USD (Million)
10.6.1.4.3. Neuromorphic Chips for Autonomous Vehicles Market: by Vehicle Category, 2023-2033, USD (Million)
10.6.1.4.4. Neuromorphic Chips for Autonomous Vehicles Market: by End Use, 2023-2033, USD (Million)
10.6.1.5. France
10.6.1.5.1. Neuromorphic Chips for Autonomous Vehicles Market: by Chip Architecture, 2023-2033, USD (Million)
10.6.1.5.2. Neuromorphic Chips for Autonomous Vehicles Market: by Deployment, 2023-2033, USD (Million)
10.6.1.5.3. Neuromorphic Chips for Autonomous Vehicles Market: by Vehicle Category, 2023-2033, USD (Million)
10.6.1.5.4. Neuromorphic Chips for Autonomous Vehicles Market: by End Use, 2023-2033, USD (Million)
10.6.1.6. Rest of Europe
10.6.1.6.1. Neuromorphic Chips for Autonomous Vehicles Market: by Chip Architecture, 2023-2033, USD (Million)
10.6.1.6.2. Neuromorphic Chips for Autonomous Vehicles Market: by Deployment, 2023-2033, USD (Million)
10.6.1.6.3. Neuromorphic Chips for Autonomous Vehicles Market: by Vehicle Category, 2023-2033, USD (Million)
10.6.1.6.4. Neuromorphic Chips for Autonomous Vehicles Market: by End Use, 2023-2033, USD (Million)
11. Asia-Pacific Neuromorphic Chips for Autonomous Vehicles Market, 2023-2033, USD (Million)
11.1. Market Overview
11.2. Neuromorphic Chips for Autonomous Vehicles Market: by Chip Architecture, 2023-2033, USD (Million)
11.3. Neuromorphic Chips for Autonomous Vehicles Market: by Deployment, 2023-2033, USD (Million)
11.4. Neuromorphic Chips for Autonomous Vehicles Market: by Vehicle Category, 2023-2033, USD (Million)
11.5. Neuromorphic Chips for Autonomous Vehicles Market: by End Use, 2023-2033, USD (Million)
11.6. Neuromorphic Chips for Autonomous Vehicles Market: by Region, 2023-2033, USD (Million)
11.6.1. Asia-Pacific
11.6.1.1. China
11.6.1.1.1. Neuromorphic Chips for Autonomous Vehicles Market: by Chip Architecture, 2023-2033, USD (Million)
11.6.1.1.2. Neuromorphic Chips for Autonomous Vehicles Market: by Deployment, 2023-2033, USD (Million)
11.6.1.1.3. Neuromorphic Chips for Autonomous Vehicles Market: by Vehicle Category, 2023-2033, USD (Million)
11.6.1.1.4. Neuromorphic Chips for Autonomous Vehicles Market: by End Use, 2023-2033, USD (Million)
11.6.1.2. Japan
11.6.1.2.1. Neuromorphic Chips for Autonomous Vehicles Market: by Chip Architecture, 2023-2033, USD (Million)
11.6.1.2.2. Neuromorphic Chips for Autonomous Vehicles Market: by Deployment, 2023-2033, USD (Million)
11.6.1.2.3. Neuromorphic Chips for Autonomous Vehicles Market: by Vehicle Category, 2023-2033, USD (Million)
11.6.1.2.4. Neuromorphic Chips for Autonomous Vehicles Market: by End Use, 2023-2033, USD (Million)
11.6.1.3. India
11.6.1.3.1. Neuromorphic Chips for Autonomous Vehicles Market: by Chip Architecture, 2023-2033, USD (Million)
11.6.1.3.2. Neuromorphic Chips for Autonomous Vehicles Market: by Deployment, 2023-2033, USD (Million)
11.6.1.3.3. Neuromorphic Chips for Autonomous Vehicles Market: by Vehicle Category, 2023-2033, USD (Million)
11.6.1.3.4. Neuromorphic Chips for Autonomous Vehicles Market: by End Use, 2023-2033, USD (Million)
11.6.1.4. Australia
11.6.1.4.1. Neuromorphic Chips for Autonomous Vehicles Market: by Chip Architecture, 2023-2033, USD (Million)
11.6.1.4.2. Neuromorphic Chips for Autonomous Vehicles Market: by Deployment, 2023-2033, USD (Million)
11.6.1.4.3. Neuromorphic Chips for Autonomous Vehicles Market: by Vehicle Category, 2023-2033, USD (Million)
11.6.1.4.4. Neuromorphic Chips for Autonomous Vehicles Market: by End Use, 2023-2033, USD (Million)
11.6.1.5. South Korea
11.6.1.5.1. Neuromorphic Chips for Autonomous Vehicles Market: by Chip Architecture, 2023-2033, USD (Million)
11.6.1.5.2. Neuromorphic Chips for Autonomous Vehicles Market: by Deployment, 2023-2033, USD (Million)
11.6.1.5.3. Neuromorphic Chips for Autonomous Vehicles Market: by Vehicle Category, 2023-2033, USD (Million)
11.6.1.5.4. Neuromorphic Chips for Autonomous Vehicles Market: by End Use, 2023-2033, USD (Million)
11.6.1.6. Rest of Asia-Pacific
11.6.1.6.1. Neuromorphic Chips for Autonomous Vehicles Market: by Chip Architecture, 2023-2033, USD (Million)
11.6.1.6.2. Neuromorphic Chips for Autonomous Vehicles Market: by Deployment, 2023-2033, USD (Million)
11.6.1.6.3. Neuromorphic Chips for Autonomous Vehicles Market: by Vehicle Category, 2023-2033, USD (Million)
11.6.1.6.4. Neuromorphic Chips for Autonomous Vehicles Market: by End Use, 2023-2033, USD (Million)
12. Latin America Neuromorphic Chips for Autonomous Vehicles Market, 2023-2033, USD (Million)
12.1. Market Overview
12.2. Neuromorphic Chips for Autonomous Vehicles Market: by Chip Architecture, 2023-2033, USD (Million)
12.3. Neuromorphic Chips for Autonomous Vehicles Market: by Deployment, 2023-2033, USD (Million)
12.4. Neuromorphic Chips for Autonomous Vehicles Market: by Vehicle Category, 2023-2033, USD (Million)
12.5. Neuromorphic Chips for Autonomous Vehicles Market: by End Use, 2023-2033, USD (Million)
12.6. Neuromorphic Chips for Autonomous Vehicles Market: by Region, 2023-2033, USD (Million)
12.6.1. Latin America
12.6.1.1. Brazil
12.6.1.1.1. Neuromorphic Chips for Autonomous Vehicles Market: by Chip Architecture, 2023-2033, USD (Million)
12.6.1.1.2. Neuromorphic Chips for Autonomous Vehicles Market: by Deployment, 2023-2033, USD (Million)
12.6.1.1.3. Neuromorphic Chips for Autonomous Vehicles Market: by Vehicle Category, 2023-2033, USD (Million)
12.6.1.1.4. Neuromorphic Chips for Autonomous Vehicles Market: by End Use, 2023-2033, USD (Million)
12.6.1.2. Mexico
12.6.1.2.1. Neuromorphic Chips for Autonomous Vehicles Market: by Chip Architecture, 2023-2033, USD (Million)
12.6.1.2.2. Neuromorphic Chips for Autonomous Vehicles Market: by Deployment, 2023-2033, USD (Million)
12.6.1.2.3. Neuromorphic Chips for Autonomous Vehicles Market: by Vehicle Category, 2023-2033, USD (Million)
12.6.1.2.4. Neuromorphic Chips for Autonomous Vehicles Market: by End Use, 2023-2033, USD (Million)
12.6.1.3. Rest of Latin America
12.6.1.3.1. Neuromorphic Chips for Autonomous Vehicles Market: by Chip Architecture, 2023-2033, USD (Million)
12.6.1.3.2. Neuromorphic Chips for Autonomous Vehicles Market: by Deployment, 2023-2033, USD (Million)
12.6.1.3.3. Neuromorphic Chips for Autonomous Vehicles Market: by Vehicle Category, 2023-2033, USD (Million)
12.6.1.3.4. Neuromorphic Chips for Autonomous Vehicles Market: by End Use, 2023-2033, USD (Million)
13. Middle East and Africa Neuromorphic Chips for Autonomous Vehicles Market, 2023-2033, USD (Million)
13.1. Market Overview
13.2. Neuromorphic Chips for Autonomous Vehicles Market: by Chip Architecture, 2023-2033, USD (Million)
13.3. Neuromorphic Chips for Autonomous Vehicles Market: by Deployment, 2023-2033, USD (Million)
13.4. Neuromorphic Chips for Autonomous Vehicles Market: by Vehicle Category, 2023-2033, USD (Million)
13.5. Neuromorphic Chips for Autonomous Vehicles Market: by End Use, 2023-2033, USD (Million)
13.6. Neuromorphic Chips for Autonomous Vehicles Market: by Region, 2023-2033, USD (Million)
13.6.1. Middle East and Africa
13.6.1.1. GCC
13.6.1.1.1. Neuromorphic Chips for Autonomous Vehicles Market: by Chip Architecture, 2023-2033, USD (Million)
13.6.1.1.2. Neuromorphic Chips for Autonomous Vehicles Market: by Deployment, 2023-2033, USD (Million)
13.6.1.1.3. Neuromorphic Chips for Autonomous Vehicles Market: by Vehicle Category, 2023-2033, USD (Million)
13.6.1.1.4. Neuromorphic Chips for Autonomous Vehicles Market: by End Use, 2023-2033, USD (Million)
13.6.1.2. Africa
13.6.1.2.1. Neuromorphic Chips for Autonomous Vehicles Market: by Chip Architecture, 2023-2033, USD (Million)
13.6.1.2.2. Neuromorphic Chips for Autonomous Vehicles Market: by Deployment, 2023-2033, USD (Million)
13.6.1.2.3. Neuromorphic Chips for Autonomous Vehicles Market: by Vehicle Category, 2023-2033, USD (Million)
13.6.1.2.4. Neuromorphic Chips for Autonomous Vehicles Market: by End Use, 2023-2033, USD (Million)
13.6.1.3. Rest of Middle East and Africa
13.6.1.3.1. Neuromorphic Chips for Autonomous Vehicles Market: by Chip Architecture, 2023-2033, USD (Million)
13.6.1.3.2. Neuromorphic Chips for Autonomous Vehicles Market: by Deployment, 2023-2033, USD (Million)
13.6.1.3.3. Neuromorphic Chips for Autonomous Vehicles Market: by Vehicle Category, 2023-2033, USD (Million)
13.6.1.3.4. Neuromorphic Chips for Autonomous Vehicles Market: by End Use, 2023-2033, USD (Million)
14. Company Profiles
14.1. Accenture
(Company Overview, Financial Performance, Product Portfolio, Strategic Initiatives)
14.2. Applied Brain Research Inc.
14.3. Aspinity Inc.
14.4. BorgWarner Inc. (USA)
14.5. BrainChip Holdings Ltd.
14.6. Cadence Design Systems, Inc.
14.7. Figaro Engineering Inc. (Japan)
14.8. General Vision Inc.
14.9. Grayscale AI
14.10. Gyrfalcon Technology Inc.
14.11. Hewlett Packard Enterprise Development LP
14.12. IBM Corporation
14.13. Intel Corporation
14.14. MemryX Inc.
14.15. Micron Technology, Inc.
14.16. Mythic Inc.
14.17. NVIDIA Corporation
14.18. Polyn Technology
14.19. Prophesee SA
14.20. Qualcomm Technologies, Inc.
14.21. Samsung Electronics Co., Ltd.
14.22. Sony Corporation
14.23. Other Notable Players
List of Tables
Table 1 Global Neuromorphic Chips for Autonomous Vehicles Market by Chip Architecture, 2023-2033, USD (Million)
Table 2 Global Neuromorphic Chips for Autonomous Vehicles Market by Deployment, 2023-2033, USD (Million)
Table 3 Global Neuromorphic Chips for Autonomous Vehicles Market by Vehicle Category, 2023-2033, USD (Million)
Table 4 Global Neuromorphic Chips for Autonomous Vehicles Market by End Use, 2023-2033, USD (Million)
Table 5 North America Neuromorphic Chips for Autonomous Vehicles Market by Chip Architecture, 2023-2033, USD (Million)
Table 6 North America Neuromorphic Chips for Autonomous Vehicles Market by Deployment, 2023-2033, USD (Million)
Table 7 North America Neuromorphic Chips for Autonomous Vehicles Market by Vehicle Category, 2023-2033, USD (Million)
Table 8 North America Neuromorphic Chips for Autonomous Vehicles Market by End Use, 2023-2033, USD (Million)
Table 9 U.S. Neuromorphic Chips for Autonomous Vehicles Market by Chip Architecture, 2023-2033, USD (Million)
Table 10 U.S. Neuromorphic Chips for Autonomous Vehicles Market by Deployment, 2023-2033, USD (Million)
Table 11 U.S. Neuromorphic Chips for Autonomous Vehicles Market by Vehicle Category, 2023-2033, USD (Million)
Table 12 U.S. Neuromorphic Chips for Autonomous Vehicles Market by End Use, 2023-2033, USD (Million)
Table 13 Canada Neuromorphic Chips for Autonomous Vehicles Market by Chip Architecture, 2023-2033, USD (Million)
Table 14 Canada Neuromorphic Chips for Autonomous Vehicles Market by Deployment, 2023-2033, USD (Million)
Table 15 Canada Neuromorphic Chips for Autonomous Vehicles Market by Vehicle Category, 2023-2033, USD (Million)
Table 16 Canada Neuromorphic Chips for Autonomous Vehicles Market by End Use, 2023-2033, USD (Million)
Table 17 Rest of North America Neuromorphic Chips for Autonomous Vehicles Market by Chip Architecture, 2023-2033, USD (Million)
Table 18 Rest of North America Neuromorphic Chips for Autonomous Vehicles Market by Deployment, 2023-2033, USD (Million)
Table 19 Rest of North America Neuromorphic Chips for Autonomous Vehicles Market by Vehicle Category, 2023-2033, USD (Million)
Table 20 Rest of North America Neuromorphic Chips for Autonomous Vehicles Market by End Use, 2023-2033, USD (Million)
Table 21 UK and European Union Neuromorphic Chips for Autonomous Vehicles Market by Chip Architecture, 2023-2033, USD (Million)
Table 22 UK and European Union Neuromorphic Chips for Autonomous Vehicles Market by Deployment, 2023-2033, USD (Million)
Table 23 UK and European Union Neuromorphic Chips for Autonomous Vehicles Market by Vehicle Category, 2023-2033, USD (Million)
Table 24 UK and European Union Neuromorphic Chips for Autonomous Vehicles Market by End Use, 2023-2033, USD (Million)
Table 25 UK Neuromorphic Chips for Autonomous Vehicles Market by Chip Architecture, 2023-2033, USD (Million)
Table 26 UK Neuromorphic Chips for Autonomous Vehicles Market by Deployment, 2023-2033, USD (Million)
Table 27 UK Neuromorphic Chips for Autonomous Vehicles Market by Vehicle Category, 2023-2033, USD (Million)
Table 28 UK Neuromorphic Chips for Autonomous Vehicles Market by End Use, 2023-2033, USD (Million)
Table 29 Germany Neuromorphic Chips for Autonomous Vehicles Market by Chip Architecture, 2023-2033, USD (Million)
Table 30 Germany Neuromorphic Chips for Autonomous Vehicles Market by Deployment, 2023-2033, USD (Million)
Table 31 Germany Neuromorphic Chips for Autonomous Vehicles Market by Vehicle Category, 2023-2033, USD (Million)
Table 32 Germany Neuromorphic Chips for Autonomous Vehicles Market by End Use, 2023-2033, USD (Million)
Table 33 Spain Neuromorphic Chips for Autonomous Vehicles Market by Chip Architecture, 2023-2033, USD (Million)
Table 34 Spain Neuromorphic Chips for Autonomous Vehicles Market by Deployment, 2023-2033, USD (Million)
Table 35 Spain Neuromorphic Chips for Autonomous Vehicles Market by Vehicle Category, 2023-2033, USD (Million)
Table 36 Spain Neuromorphic Chips for Autonomous Vehicles Market by End Use, 2023-2033, USD (Million)
Table 37 Italy Neuromorphic Chips for Autonomous Vehicles Market by Chip Architecture, 2023-2033, USD (Million)
Table 38 Italy Neuromorphic Chips for Autonomous Vehicles Market by Deployment, 2023-2033, USD (Million)
Table 39 Italy Neuromorphic Chips for Autonomous Vehicles Market by Vehicle Category, 2023-2033, USD (Million)
Table 40 Italy Neuromorphic Chips for Autonomous Vehicles Market by End Use, 2023-2033, USD (Million)
Table 41 France Neuromorphic Chips for Autonomous Vehicles Market by Chip Architecture, 2023-2033, USD (Million)
Table 42 France Neuromorphic Chips for Autonomous Vehicles Market by Deployment, 2023-2033, USD (Million)
Table 43 France Neuromorphic Chips for Autonomous Vehicles Market by Vehicle Category, 2023-2033, USD (Million)
Table 44 France Neuromorphic Chips for Autonomous Vehicles Market by End Use, 2023-2033, USD (Million)
Table 45 Rest of Europe Neuromorphic Chips for Autonomous Vehicles Market by Chip Architecture, 2023-2033, USD (Million)
Table 46 Rest of Europe Neuromorphic Chips for Autonomous Vehicles Market by Deployment, 2023-2033, USD (Million)
Table 47 Rest of Europe Neuromorphic Chips for Autonomous Vehicles Market by Vehicle Category, 2023-2033, USD (Million)
Table 48 Rest of Europe Neuromorphic Chips for Autonomous Vehicles Market by End Use, 2023-2033, USD (Million)
Table 49 Asia Neuromorphic Chips for Autonomous Vehicles Market by Chip Architecture, 2023-2033, USD (Million)
Table 50 Asia Neuromorphic Chips for Autonomous Vehicles Market by Deployment, 2023-2033, USD (Million)
Table 51 Asia Neuromorphic Chips for Autonomous Vehicles Market by Vehicle Category, 2023-2033, USD (Million)
Table 52 Asia Neuromorphic Chips for Autonomous Vehicles Market by End Use, 2023-2033, USD (Million)
Table 53 China Neuromorphic Chips for Autonomous Vehicles Market by Chip Architecture, 2023-2033, USD (Million)
Table 54 China Neuromorphic Chips for Autonomous Vehicles Market by Deployment, 2023-2033, USD (Million)
Table 55 China Neuromorphic Chips for Autonomous Vehicles Market by Vehicle Category, 2023-2033, USD (Million)
Table 56 China Neuromorphic Chips for Autonomous Vehicles Market by End Use, 2023-2033, USD (Million)
Table 57 Japan Neuromorphic Chips for Autonomous Vehicles Market by Chip Architecture, 2023-2033, USD (Million)
Table 58 Japan Neuromorphic Chips for Autonomous Vehicles Market by Deployment, 2023-2033, USD (Million)
Table 59 Japan Neuromorphic Chips for Autonomous Vehicles Market by Vehicle Category, 2023-2033, USD (Million)
Table 60 Japan Neuromorphic Chips for Autonomous Vehicles Market by End Use, 2023-2033, USD (Million)
Table 61 India Neuromorphic Chips for Autonomous Vehicles Market by Chip Architecture, 2023-2033, USD (Million)
Table 62 India Neuromorphic Chips for Autonomous Vehicles Market by Deployment, 2023-2033, USD (Million)
Table 63 India Neuromorphic Chips for Autonomous Vehicles Market by Vehicle Category, 2023-2033, USD (Million)
Table 64 India Neuromorphic Chips for Autonomous Vehicles Market by End Use, 2023-2033, USD (Million)
Table 65 Australia Neuromorphic Chips for Autonomous Vehicles Market by Chip Architecture, 2023-2033, USD (Million)
Table 66 Australia Neuromorphic Chips for Autonomous Vehicles Market by Deployment, 2023-2033, USD (Million)
Table 67 Australia Neuromorphic Chips for Autonomous Vehicles Market by Vehicle Category, 2023-2033, USD (Million)
Table 68 Australia Neuromorphic Chips for Autonomous Vehicles Market by End Use, 2023-2033, USD (Million)
Table 69 South Korea Neuromorphic Chips for Autonomous Vehicles Market by Chip Architecture, 2023-2033, USD (Million)
Table 70 South Korea Neuromorphic Chips for Autonomous Vehicles Market by Deployment, 2023-2033, USD (Million)
Table 71 South Korea Neuromorphic Chips for Autonomous Vehicles Market by Vehicle Category, 2023-2033, USD (Million)
Table 72 South Korea Neuromorphic Chips for Autonomous Vehicles Market by End Use, 2023-2033, USD (Million)
Table 73 Latin America Neuromorphic Chips for Autonomous Vehicles Market by Chip Architecture, 2023-2033, USD (Million)
Table 74 Latin America Neuromorphic Chips for Autonomous Vehicles Market by Deployment, 2023-2033, USD (Million)
Table 75 Latin America Neuromorphic Chips for Autonomous Vehicles Market by Vehicle Category, 2023-2033, USD (Million)
Table 76 Latin America Neuromorphic Chips for Autonomous Vehicles Market by End Use, 2023-2033, USD (Million)
Table 77 Brazil Neuromorphic Chips for Autonomous Vehicles Market by Chip Architecture, 2023-2033, USD (Million)
Table 78 Brazil Neuromorphic Chips for Autonomous Vehicles Market by Deployment, 2023-2033, USD (Million)
Table 79 Brazil Neuromorphic Chips for Autonomous Vehicles Market by Vehicle Category, 2023-2033, USD (Million)
Table 80 Brazil Neuromorphic Chips for Autonomous Vehicles Market by End Use, 2023-2033, USD (Million)
Table 81 Mexico Neuromorphic Chips for Autonomous Vehicles Market by Chip Architecture, 2023-2033, USD (Million)
Table 82 Mexico Neuromorphic Chips for Autonomous Vehicles Market by Deployment, 2023-2033, USD (Million)
Table 83 Mexico Neuromorphic Chips for Autonomous Vehicles Market by Vehicle Category, 2023-2033, USD (Million)
Table 84 Mexico Neuromorphic Chips for Autonomous Vehicles Market by End Use, 2023-2033, USD (Million)
Table 85 Rest of Latin America Neuromorphic Chips for Autonomous Vehicles Market by Chip Architecture, 2023-2033, USD (Million)
Table 86 Rest of Latin America Neuromorphic Chips for Autonomous Vehicles Market by Deployment, 2023-2033, USD (Million)
Table 87 Rest of Latin America Neuromorphic Chips for Autonomous Vehicles Market by Vehicle Category, 2023-2033, USD (Million)
Table 88 Rest of Latin America Neuromorphic Chips for Autonomous Vehicles Market by End Use, 2023-2033, USD (Million)
Table 89 Middle East and Africa Neuromorphic Chips for Autonomous Vehicles Market by Chip Architecture, 2023-2033, USD (Million)
Table 90 Middle East and Africa Neuromorphic Chips for Autonomous Vehicles Market by Deployment, 2023-2033, USD (Million)
Table 91 Middle East and Africa Neuromorphic Chips for Autonomous Vehicles Market by Vehicle Category, 2023-2033, USD (Million)
Table 92 Middle East and Africa Neuromorphic Chips for Autonomous Vehicles Market by End Use, 2023-2033, USD (Million)
Table 93 GCC Neuromorphic Chips for Autonomous Vehicles Market by Chip Architecture, 2023-2033, USD (Million)
Table 94 GCC Neuromorphic Chips for Autonomous Vehicles Market by Deployment, 2023-2033, USD (Million)
Table 95 GCC Neuromorphic Chips for Autonomous Vehicles Market by Vehicle Category, 2023-2033, USD (Million)
Table 96 GCC Neuromorphic Chips for Autonomous Vehicles Market by End Use, 2023-2033, USD (Million)
Table 97 Africa Neuromorphic Chips for Autonomous Vehicles Market by Chip Architecture, 2023-2033, USD (Million)
Table 98 Africa Neuromorphic Chips for Autonomous Vehicles Market by Deployment, 2023-2033, USD (Million)
Table 99 Africa Neuromorphic Chips for Autonomous Vehicles Market by Vehicle Category, 2023-2033, USD (Million)
Table 100 Africa Neuromorphic Chips for Autonomous Vehicles Market by End Use, 2023-2033, USD (Million)
Table 101 Rest of Middle East and Africa Neuromorphic Chips for Autonomous Vehicles Market by Chip Architecture, 2023-2033, USD (Million)
Table 102 Rest of Middle East and Africa Neuromorphic Chips for Autonomous Vehicles Market by Deployment, 2023-2033, USD (Million)
Table 103 Rest of Middle East and Africa Neuromorphic Chips for Autonomous Vehicles Market by Vehicle Category, 2023-2033, USD (Million)
Table 104 Rest of Middle East and Africa Neuromorphic Chips for Autonomous Vehicles Market by End Use, 2023-2033, USD (Million)
List of Figures
Figure 1 Global Neuromorphic Chips for Autonomous Vehicles Market: Market Coverage
Figure 2 Research Methodology and Data Sources
Figure 3 Market Size Estimation - Top Down & Bottom-Up Approach
Figure 4 Global Neuromorphic Chips for Autonomous Vehicles Market: Quality Assurance
Figure 5 Global Neuromorphic Chips for Autonomous Vehicles Market, by Chip Architecture, 2024
Figure 6 Global Neuromorphic Chips for Autonomous Vehicles Market, by Deployment, 2024
Figure 7 Global Neuromorphic Chips for Autonomous Vehicles Market, by Vehicle Category, 2024
Figure 8 Global Neuromorphic Chips for Autonomous Vehicles Market, by End Use, 2024
Figure 9 Global Neuromorphic Chips for Autonomous Vehicles Market, by Geography, 2024
Figure 10 Market Geographical Opportunity Matrix - Global Neuromorphic Chips for Autonomous Vehicles Market, 2024
Figure 11 Market Positioning of Key Neuromorphic Chips for Autonomous Vehicles Market Players, 2024
Figure 12 Global Neuromorphic Chips for Autonomous Vehicles Market, by Chip Architecture, 2024 Vs 2033, %
Figure 13 Global Neuromorphic Chips for Autonomous Vehicles Market, by Deployment, 2024 Vs 2033, %
Figure 14 Global Neuromorphic Chips for Autonomous Vehicles Market, by Vehicle Category, 2024 Vs 2033, %
Figure 15 Global Neuromorphic Chips for Autonomous Vehicles Market, by End Use, 2024 Vs 2033, %
Figure 16 U.S. Neuromorphic Chips for Autonomous Vehicles Market (US$ Million), 2023-2033
Figure 17 Canada Neuromorphic Chips for Autonomous Vehicles Market (US$ Million), 2023-2033
Figure 18 Rest of North America Neuromorphic Chips for Autonomous Vehicles Market (US$ Million), 2023-2033
Figure 19 UK Neuromorphic Chips for Autonomous Vehicles Market (US$ Million), 2023-2033
Figure 20 Germany Neuromorphic Chips for Autonomous Vehicles Market (US$ Million), 2023-2033
Figure 21 Spain Neuromorphic Chips for Autonomous Vehicles Market (US$ Million), 2023-2033
Figure 22 Italy Neuromorphic Chips for Autonomous Vehicles Market (US$ Million), 2023-2033
Figure 23 France Neuromorphic Chips for Autonomous Vehicles Market (US$ Million), 2023-2033
Figure 24 Rest of Europe Neuromorphic Chips for Autonomous Vehicles Market (US$ Million), 2023-2033
Figure 25 China Neuromorphic Chips for Autonomous Vehicles Market (US$ Million), 2023-2033
Figure 26 Japan Neuromorphic Chips for Autonomous Vehicles Market (US$ Million), 2023-2033
Figure 27 India Neuromorphic Chips for Autonomous Vehicles Market (US$ Million), 2023-2033
Figure 28 Australia Neuromorphic Chips for Autonomous Vehicles Market (US$ Million), 2023-2033
Figure 29 South Korea Neuromorphic Chips for Autonomous Vehicles Market (US$ Million), 2023-2033
Figure 30 Rest of Asia Neuromorphic Chips for Autonomous Vehicles Market (US$ Million), 2023-2033
Figure 31 Brazil Neuromorphic Chips for Autonomous Vehicles Market (US$ Million), 2023-2033
Figure 32 Mexico Neuromorphic Chips for Autonomous Vehicles Market (US$ Million), 2023-2033
Figure 33 Rest of Latin America Neuromorphic Chips for Autonomous Vehicles Market (US$ Million), 2023-2033
Figure 34 GCC Neuromorphic Chips for Autonomous Vehicles Market (US$ Million), 2023-2033
Figure 35 Africa Neuromorphic Chips for Autonomous Vehicles Market (US$ Million), 2023-2033
Figure 36 Rest of Middle East and Africa Neuromorphic Chips for Autonomous Vehicles Market (US$ Million), 2023-2033

Companies Mentioned

  • Accenture
  • Applied Brain Research Inc.
  • Aspinity Inc.
  • BorgWarner Inc. (USA)
  • BrainChip Holdings Ltd.
  • Cadence Design Systems, Inc.
  • Figaro Engineering Inc. (Japan)
  • General Vision Inc.
  • Grayscale AI
  • Gyrfalcon Technology Inc.
  • Hewlett Packard Enterprise Development LP
  • IBM Corporation
  • Intel Corporation
  • MemryX Inc.
  • Micron Technology, Inc.
  • Mythic Inc.
  • NVIDIA Corporation
  • Polyn Technology
  • Prophesee SA
  • Qualcomm Technologies, Inc.
  • Samsung Electronics Co., Ltd.
  • Sony Corporation