Neuromorphic chips mimic biological brain neurons and synaptic connections between neurons in hardware. These chips are increasingly being used for applications such as image and speech recognition, predictive analytics, and other cognitive functions as they consume less power and space compared to traditional CPUs and GPUs. Neuromorphic chips can perform parallel processes similar to biological brains which enables faster computation of complex algorithms. The global Neuromorphic Chip Market is estimated to be valued at US$ 44.8 Bn in 2023 and is expected to exhibit a CAGR of 67% over the forecast period 2023 to 2030, as highlighted in a new report published by Coherent Market Insights. Market Opportunity: The expanding applications of neuromorphic computing technology presents a key opportunity for the growth of the neuromorphic chip market. Neuromorphic chips can solve complex problems involving pattern recognition, sensory feedback and control tasks much more efficiently than conventional computers. This has enabled their usage in developing autonomous vehicles that can process huge amounts of visual and environmental data in real-time for navigation. Their low power consumption also makes neuromorphic chips suitable for applications in IoT devices. As the demand for autonomous technologies and IoT solutions increases exponentially, the neuromorphic chip market is expected to witness a substantial spike in the forecast period with growing adoption across different end-use industries. Porter's Analysis Threat of new entrants: The neuromorphic chip market requires huge R&D investments and technological capabilities which pose high entry barriers for new companies. Bargaining power of buyers: Buyers have moderate bargaining power due to the presence of several vendors offering neuromorphic chip solutions. However, switching costs are high which limits their bargaining power. Bargaining power of suppliers: A few companies supply materials and technologies required for the manufacturing of neuromorphic chips giving them significant influence on pricing. Threat of new substitutes: No direct substitutes presently exist for neuromorphic chips which mimic human brain functions for artificial intelligence. Competitive rivalry: The neuromorphic chip market comprises major technology companies investing heavily in R&D to drive innovations. SWOT Analysis Strengths: Neuromorphic chips provide faster computing at lower power by imitating human brain's neural networks. Growing adoption of AI and demand for low-power devices provide opportunities to chip makers. Weaknesses: High R&D costs, design complexity, and lack of skilled expertise restrict wider commercialization of neuromorphic technologies. Opportunities: Rising applications in robotics, autonomous driving, healthcare, and other sectors fuel the neuromorphic chips market growth. Government support also aids research. Threats: Technology challenges in areas like architectural design, neuron modeling, and hardware scaling remain to be solved completely. Key Takeaways The Global Neuromorphic Chip Market Size is expected to witness high growth at a CAGR of 67.% during the forecast period of 2023 to 2030. It was valued at US$ 44.8 billion in 2023. Regional analysis: North America dominates currently due to the presence of major neuromorphic chip developers like IBM and Intel in the US. Asia Pacific is anticipated to grow fastest owing to strong government support for AI research in China and increasing chip manufacturing capabilities in the region. Key players: Key players operating in the neuromorphic chip market are IBM Research, Inc., Knowm Inc., Intel Corp., BrainChip Holdings Ltd., General Vision Inc., HRL Laboratories, LLC, Qualcomm Technologies Inc., and Hewlett Packard Labs. IBM has demonstrated early successes with TrueNorth, Loihi and other neuromorphic chip designs for varying applications. Get more insights on this topic: https://www.marketwebjournal.com/neuromorphic-chip-market-size-analysis/
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