# Neuromorphic Chip Market

> Neuromorphic chip market: USD 214.4 million in 2025, USD 1.24 billion by 2035 at 19.15% CAGR, as sub-milliwatt spiking MCUs reach wearables.

Publisher: Douglas Insights  
Author: Douglas Insights Research Desk  
Report code: DI-IT-10605  
Published: 2026-10-07  
Last updated: 2026-10-07  
Next review: Apr 2027  
Page: https://www.douglasinsights.com/neuromorphic-chip-market/

## Key figures

| Measure | Value | How it is built |
| --- | --- | --- |
| Market size · 2025 | $214.4 Mn | 3.85 million chips times USD 55.63 blended price |
| Forecast · 2035 | $1.24 Bn | Base case, volume and price legs compounded |
| Revenue CAGR · 2026 to 2035 | 19.15% | Multiplicative legs |
| Volume · 2035 | 26.8 million chips | 3.85 million chips in 2025 growing 21.40% a year |
| Leading segment | Event-based vision sensor chips, 45.1% | USD 96.7 million in 2025 |
| Fastest segment | Edge neuromorphic microcontrollers and SoCs, 28.6% | Sub-milliwatt sensing in wearables |
| Fastest region | Asia Pacific, 21.7% | Wearable and consumer device assembly |
| Market leader | Sony Semiconductor Solutions, 31.6% | Douglas Insights estimate from event sensor units |
| Event | FAMES Chips Act pilot line opened 11 June 2024 | CEA-Leti release |

## Key takeaways

- Douglas Insights puts 2025 neuromorphic chip revenue at USD 214.4 million on 3.85 million chips.
- Revenue reaches USD 1.24 billion by 2035, a 19.15% CAGR from a 21.40% volume leg and a minus 1.85% price leg.
- Event-based vision sensor chips hold 45.1% of 2025 value, while edge neuromorphic MCUs grow fastest at 28.6% a year.
- North America leads with 39.4% of value, but Asia Pacific grows 21.7% a year and leads by 2035.
- Four of 8 platforms score 70 or more in the Commercial Readiness Index, all of them sensor and edge chips.

Europe's Chips Act, [Regulation (EU) 2023/1781](https://eur-lex.europa.eu/eli/reg/2023/1781/oj), put public money behind pilot lines, and one direct result is an EUR 830 million line in Grenoble working on the resistive, ferroelectric and magnetic memories that many brain-inspired chips use to hold synaptic weights. Neuromorphic chips are processors and sensors that compute with spikes or events, the way neurons signal, instead of running every clock cycle; the Neuromorphic Chip market covers event-based vision sensor chips, edge spiking microcontrollers, research processors, development boards and licensed neuromorphic cores. CEA-Leti opened that FAMES pilot line on 11 June 2024 with 11 partner institutions, as its [launch release](https://cea.fr/cea-tech/leti/english/Pages/What's-On/Press%20release/cea-leti-announceslaunch-of-FAMES-pilot-line-as-part-of-EU-chips-act-initiative.aspx) states. Douglas Insights sizes 2025 revenue at USD 214.4 million, from 3.85 million chips times a blended USD 55.63 per chip, and projects USD 1.24 billion by 2035, a revenue CAGR of 19.15% for 2026 to 2035. The study belongs to our [information technology and semiconductors coverage](https://www.douglasinsights.com/industry/ict-semiconductors/) and follows the [Douglas Insights research methodology](https://www.douglasinsights.com/research-methodology/).

## Which companies supply neuromorphic chips, from Loihi 2 boards to event-based sensors?

Sony Semiconductor Solutions leads the neuromorphic chip market with an estimated 31.6% of 2025 value, about USD 67.7 million, through stacked event-based vision sensors built with Prophesee. Intel, IBM, BrainChip, Innatera, SynSense and SpiNNcloud hold the processor side, where research systems still outweigh volume shipments.

| Company | Neuromorphic chip role | What the position is built on |
| --- | --- | --- |
| Sony Semiconductor Solutions | Event-based vision sensor chips | IMX636 and IMX646 at 1280 x 720, with a 4.86 micrometre pixel, co-developed with Prophesee |
| Intel | Research neuromorphic processors | Loihi 2 on Intel 4; Hala Point with 1,152 processors at Sandia |
| IBM | Digital near-memory inference processor | NorthPole: 12 nm, 22 billion transistors, 256 cores |
| BrainChip | Akida chips and licensed IP | 2025 revenue of USD 1.89 million; AKD1000 and AKD1500 devices |
| Innatera | Spiking microcontroller | Pulsar, with sub-milliwatt sensing and a RISC-V core |
| SynSense | Vision and audio spiking processors | Speck, a 128 x 128 dynamic vision sensor (DVS) with a Dynap-CNN core, and Xylo |
| SpiNNcloud | Large-scale spiking systems | SpiNNaker2 chips with 153 Arm cores each |
| Frontgrade Gaisler | Space-grade processors | Akida IP licence for a space neuromorphic system on chip (SoC) |

Douglas Insights estimates the top three suppliers, Sony at 31.6%, SynSense at 8.9% and Intel at 6.8%, hold 47.3% of neuromorphic chip value, a basis built from unit counts times modelled prices because none of them reports neuromorphic revenue separately. Sony's [event-based vision sensor range](https://www.sony-semicon.com/en/products/is/industry/evs.html) covers four parts, from the 0.32 megapixel IMX637 to the 0.92 megapixel IMX636. IBM Research describes NorthPole as 25 times more energy efficient than 12 nm graphics processing units (GPUs) on the ResNet-50 benchmark, measured in frames per joule.

BrainChip is a listed neuromorphic specialist, so it publishes audited numbers. Its half-year report for the six months to 30 June 2025 shows revenue of USD 1,023,579, up 859% from USD 106,693, with one US customer providing USD 809,706, mainly development services, according to the [ASX Appendix 4D filing](https://announcements.asx.com.au/asxpdf/20250822/pdf/06n5mkyzpb705v.pdf). The same filing records that Chelpis Quantum chose Akida for industrial robotic security on 28 April 2025 and is buying AKD1000 devices for qualification. Full-year 2025 revenue reached USD 1.89 million against USD 398,011 in 2024, with a net loss of USD 20.5 million. Innatera put Pulsar on sale on 21 May 2025 as a spiking neural network (SNN) microcontroller, per its [Pulsar announcement](https://www.innatera.com/newsroom/innatera-unveils-pulsar-the-worlds-first-mass-market-neuromorphic-microcontroller-for-the-sensor-edge/).

## Which neuromorphic chip segment leads, event-based vision sensors or spiking microcontrollers?

Event-based vision sensor chips lead with 45.1% of 2025 neuromorphic chip value, USD 96.7 million on 1.05 million units. Edge neuromorphic microcontrollers and SoCs hold only 17.2% today but grow fastest, at 28.6% a year, because each sells for about USD 14.65 into wearables and sensors.

| Segment | Share of 2025 value | 2025 value | Growth rate 2026 to 2035 | 2035 value |
| --- | --- | --- | --- | --- |
| Event-based vision sensor chips | 45.1% | USD 96.7 million | 17.9% | USD 501.8 million |
| Edge neuromorphic microcontrollers and SoCs | 17.2% | USD 36.9 million | 28.6% | USD 456.5 million |
| Research and data-centre neuromorphic processors | 19.4% | USD 41.6 million | 14.2% | USD 156.9 million |
| Neuromorphic development kits and boards | 13.9% | USD 29.8 million | 11.3% | USD 86.9 million |
| Neuromorphic IP cores in licensed SoCs | 4.4% | USD 9.4 million | 13.9% | USD 34.5 million |

Event-based vision sensor chips earn USD 96.7 million because they are the one neuromorphic product made in a commercial image-sensor fab and sold into machine vision at about USD 92.40 each. Edge neuromorphic microcontrollers and SoCs carry USD 36.9 million on 2.51 million units; the share is small because the price is low, not because volume is. Research and data-centre neuromorphic processors hold USD 41.6 million from only 18,600 chips, since a Loihi 2 or SpiNNaker2 part ships inside a lab system worth thousands of dollars per chip. Neuromorphic development kits and boards add USD 29.8 million on 46,300 units, the entry ticket for every engineering team that evaluates spiking hardware. Neuromorphic IP cores in licensed SoCs are the smallest line at USD 9.4 million, a royalty-equivalent value of USD 41.80 across 231,000 chips.

The fastest-growing segment is edge neuromorphic microcontrollers and SoCs at 28.6% a year, reaching USD 456.5 million by 2035. The reason is power: a chip that classifies audio scenes at 400 microwatts can sit in an earbud or a smoke detector that a GPU-class part cannot enter. By architecture, the market splits into spiking neural network processors, event-driven sensor processors and digital near-memory inference processors such as NorthPole.

## Why are wearable and sensor makers buying more spiking neuromorphic silicon?

Neuromorphic chip unit volume grows 21.40% a year in the base case, from 3.85 million to 26.8 million chips by 2035. Four forces supply that leg: always-on wearables, event cameras in factories and robots, neuromorphic IP inside licensed SoCs, and public research and defense systems.

### Always-on wearables and hearables

Edge spiking microcontrollers add 9.6 points to the volume leg, the largest single driver. Innatera's Pulsar, launched on 21 May 2025, combines a spiking core with a RISC-V CPU and convolutional neural network (CNN) and fast Fourier transform (FFT) accelerators, and runs radar presence detection at 600 microwatts, according to the [Innatera release](https://www.innatera.com/newsroom/innatera-unveils-pulsar-the-worlds-first-mass-market-neuromorphic-microcontroller-for-the-sensor-edge/). The company claims up to 100 times lower latency and 500 times lower energy than conventional AI processors. Douglas Insights counts 2.51 million edge neuromorphic MCUs in 2025 and expects them to supply most of the 26.8 million chips shipped in 2035. Wearables and hearables, smart home sensors and industrial monitoring nodes all buy on the same metric: microwatts per inference. Power decides the socket. A hearing aid or earbud runs on a battery measured in milliwatt-hours, so a classifier drawing 400 microwatts instead of 40 milliwatts changes what the product can do all day.

### Event cameras in factories, cars and robots

Event-based vision adds 6.3 points. Sony's stacked sensors report only pixels that change, which cuts data per frame and suits high-speed inspection, tracking and automotive and robotics vision. SynSense pairs a 128 x 128 event sensor with its Dynap-CNN core in Speck, which a toy maker used for gesture control at a mean 8.74 milliwatts. Douglas Insights puts event sensor shipments at 1.05 million units in 2025, rising 17.9% a year in value. Sensors win first.

### Licensed cores and public research systems

Neuromorphic IP inside licensed SoCs adds 3.4 points, as RISC-V and sensor-hub designers add a spiking block instead of buying a second chip; BrainChip demonstrated the AKD1500 on an Andes RISC-V platform during 2025. Research, defense and space systems add the final 2.1 points. Sandia National Laboratories switched on a SpiNNaker2 system named Braunfels on 19 August 2025 to study nuclear deterrence workloads, as [Sandia's Center for Computing Research](https://www.sandia.gov/ccr/news/sandia-deploys-spinnaker2-neuromorphic-system/) reported, and each of its chips holds 153 Arm cores. The Chips Act pilot line opened on 11 June 2024 widens access to embedded memory processes for European chip designers. Together the four drivers sum to the 21.40-point volume leg, while a mix shift toward cheap MCUs sets a price leg of minus 1.85%.

## Which barriers slow neuromorphic chip adoption beyond the research lab?

Three barriers remove a combined 4.7 points from neuromorphic chip volume growth: immature software toolchains, thin vendor balance sheets and competition from neural processing units (NPUs). The base case already nets them out and still grows units 21.40% a year, with toolchains the largest drag.

Toolchains remove 2.2 points. Most AI models are trained as dense networks in PyTorch, and converting them to spiking form costs accuracy and engineering time; Innatera still describes its open-source PyTorch frontend as upcoming. A neuromorphic chip design win therefore takes 12 to 24 months longer than a conventional MCU win, by our model. Software is the bottleneck.

Vendor finance removes 1.6 points. BrainChip lost USD 20.5 million in 2025 on USD 1.89 million of revenue, and buyers of a 10-year industrial product hesitate to single-source a chip from a loss-making supplier. NPU competition removes 0.9 points: mainstream MCU vendors now bundle small neural accelerators, so a neuromorphic chip must win on power, not just on capability. Power is the only moat.

## Where do neuromorphic chips sell, and which region gains share fastest?

North America holds USD 84.5 million of 2025 neuromorphic chip revenue, 39.4% of the total, on national-laboratory systems and defense research. Asia Pacific grows fastest at 21.7% a year and overtakes North America before 2035, because it builds the wearables and toys that carry edge spiking chips.

North America leads at USD 84.5 million and reaches USD 427.5 million by 2035 at 17.6%, anchored by Sandia's Hala Point and Braunfels systems. Asia Pacific is second at USD 68.2 million, 31.8% of value, and climbs to USD 486.1 million on consumer device assembly and image-sensor output. Europe holds USD 50.6 million, 23.6%, growing 18.3% with Innatera, SpiNNcloud and the FAMES pilot line. Latin America adds USD 6.2 million at 19.4% a year, mostly development kits for universities and industrial pilots in Brazil and Mexico. Middle East and Africa is the wildcard at USD 4.9 million: a single sovereign AI or space program could double its 11.91% growth rate. Asia builds the devices.

## How much does a neuromorphic chip cost, from a sub-milliwatt MCU to a Loihi 2 board?

Realised neuromorphic chip prices run from about USD 9 for a spiking microcontroller in volume to over USD 2,000 per research processor. The blended 2025 price is USD 55.63 per chip, and Douglas Insights expects it to fall 1.85% a year to USD 46.15 by 2035 as cheap MCUs dominate units.

| Product | Realised price band, USD | 2025 model average, USD | Basis |
| --- | --- | --- | --- |
| Edge spiking microcontroller or SoC | 9 to 24 | 14.65 | Douglas Insights estimate, volume pricing |
| Event-based vision sensor chip | 70 to 130 | 92.40 | Douglas Insights estimate, sensor die before module |
| Licensed neuromorphic core, per chip | 25 to 60 | 41.80 | Royalty and licence fee spread over shipped chips |
| Development kit or PCIe board | 300 to 1,200 | 642 | Douglas Insights estimate |
| Research or data-centre neuromorphic processor | 1,500 to 3,200 | 2,236 | System value divided by chip count |

Research neuromorphic processors are priced as systems. Hala Point packs 1,152 Loihi 2 chips into a six-rack-unit chassis drawing at most 2,600 watts, so labs buy compute capacity, not loose parts. The USD 14.65 MCU average already sits near the price of a premium general-purpose microcontroller, which is why the price leg turns negative. Neuromorphic IP fees are the hardest to observe; our USD 41.80 figure is a model value, not a published rate card. Labs pay for scale.

## How large is the space-grade and defense neuromorphic processor niche?

Aerospace and defense uses account for about USD 22.9 million of 2025 neuromorphic chip revenue, 10.7% of the total, in our model. Space-grade parts are still in development, so the value today comes from defense laboratory systems and radar research rather than flight hardware.

Frontgrade Gaisler licensed Akida IP in December 2024 for space-grade chips, and the Swedish National Space Agency then awarded it a contract to commercialise a neuromorphic SoC for space, as the BrainChip [half-year filing](https://announcements.asx.com.au/asxpdf/20250822/pdf/06n5mkyzpb705v.pdf) records; the same document notes an April 2025 radar research partnership with Information Systems Laboratories. Sandia's 2025 SpiNNaker2 work targets nuclear deterrence missions. Douglas Insights assigns no space-grade flight units before 2027, then a 16.4% compound rate for the aerospace and defense line. Radiation-tolerant neuromorphic parts will carry prices far above the USD 2,236 research average when they fly.

## What would move the neuromorphic chip forecast for 2035 up or down?

The 2035 neuromorphic chip value lands at USD 1.24 billion in the base case, USD 778.5 million in the slower case and USD 1.93 billion in the faster case. Edge MCU design wins decide which case arrives, because they supply most added units after 2027.

| Case | Volume leg | Price leg | Revenue CAGR | 2035 value |
| --- | --- | --- | --- | --- |
| Slower | 16.80% | -2.60% | 13.76% | USD 778.5 million |
| Base case | 21.40% | -1.85% | 19.15% | USD 1.24 billion |
| Faster | 26.10% | -1.20% | 24.59% | USD 1.93 billion |

The slower case assumes spiking toolchains stay hard to use and at least one venture-funded chip vendor exits before 2029. The faster case assumes FAMES, opened on 11 June 2024, and similar pilot lines give European start-ups production access to embedded memory processes by 2028, and that a top-five MCU vendor licenses a spiking core. Every extra point of unit growth adds about USD 105.8 million to the 2035 total. Published forecasts span an unusually wide 12.65% to 67.5% a year because studies disagree on scope; our 19.15% counts chips and cores only, not software or AI accelerators relabelled as neuromorphic.

## Which Chips Act rules and AI Act duties touch neuromorphic chip makers?

Regulation (EU) 2023/1781, the Chips Act, entered into force on 21 September 2023 and funds pilot lines such as the EUR 830 million FAMES line. For neuromorphic chip makers its effect is access to processes, not a compliance burden.

The Chips Act was adopted on 13 September 2023, as the [Official Journal text](https://eur-lex.europa.eu/eli/reg/2023/1781/oj) shows, and its Chips for Europe Initiative pays for shared pilot lines that small designers could not fund alone. FAMES covers fully depleted silicon on insulator (FD-SOI) at 10 nm and 7 nm, embedded non-volatile memories, radio-frequency parts, 3D integration and power inductors, and 43 companies backed its proposal. The AI Act, Regulation (EU) 2024/1689, regulates AI systems by use rather than by chip, so a neuromorphic processor inside a high-risk system inherits that system's duties. Defense and space parts also fall under national export control lists, which slows sales of research processors outside allied countries.

## Douglas Exclusive: the Neuromorphic Chip Commercial Readiness Index

The Neuromorphic Chip Commercial Readiness Index is a Douglas Insights model built from 16 inputs, 9 read from primary documents and 7 our own scoring judgments. It scores 8 neuromorphic chip platforms from 0 to 100 on how close each is to volume revenue.

Each platform gets 0 to 10 on four tests: shipping silicon (weight 30), a disclosed customer or deployment (weight 25), toolchain maturity (weight 20) and a volume price point (weight 25). Scores are our judgment from the sourced facts in this report, not an official rating.

| Platform | Shipping silicon | Disclosed deployment | Toolchain | Volume price | Index score |
| --- | --- | --- | --- | --- | --- |
| Sony IMX636 event-based vision sensor (with Prophesee) | 10 | 8 | 8 | 7 | 83.5 |
| Innatera Pulsar spiking microcontroller | 9 | 5 | 7 | 10 | 78.5 |
| SynSense Speck and Xylo | 9 | 7 | 6 | 9 | 79.0 |
| BrainChip Akida AKD1000 and AKD1500 | 8 | 7 | 7 | 6 | 70.5 |
| Intel Loihi 2 and Hala Point | 7 | 9 | 8 | 1 | 62.0 |
| SpiNNcloud SpiNNaker2 | 7 | 8 | 6 | 1 | 55.5 |
| IBM NorthPole | 5 | 4 | 5 | 1 | 37.5 |
| Frontgrade Gaisler space SoC with Akida IP | 2 | 5 | 5 | 1 | 31.0 |

The finding is a split. Four of the 8 platforms score 70 or more, and all four sell into sensors and edge devices; together their segments carry 62.3% of 2025 neuromorphic chip value. The large research systems score between 55.5 and 62.0, held back by price, while IBM NorthPole at 37.5 and the Frontgrade Gaisler space SoC at 31.0 are still pre-commercial. The average score is 62.2. Our index says neuromorphic revenue to 2030 will come from the cheapest chips, not the largest systems. Small chips lead.

## What should a buyer of event-driven neuromorphic silicon plan for before 2028?

Neuromorphic chip buyers should plan for edge MCU supply growing near 28.6% a year and research processor supply near 14.2%. That gap means design-in support, not wafer capacity, is the scarce resource through 2028, so buyers should negotiate software help into contracts.

A product team choosing a spiking MCU should dual-qualify where it can, given vendor losses such as BrainChip's USD 20.5 million in 2025. Vision teams have the safer route: event sensors from a large image-sensor maker carry long supply commitments. Sensors are the safer bet. Teams pairing event sensors with depth cameras can compare this outlook with our [3D Sensor Market](https://www.douglasinsights.com/3d-sensor-market/) report, and handset designers can read the [Mobile Semiconductors Market](https://www.douglasinsights.com/mobile-semiconductors-market/) study for the NPU side of the trade-off. Software buyers will find demand context in the [Artificial Intelligence Applications Market](https://www.douglasinsights.com/artificial-intelligence-applications-market/) report.

## How the model turns 3.85 million neuromorphic chips into USD 214.4 million?

The model multiplies 3.85 million neuromorphic chips by a blended USD 55.63 per chip to give USD 214.4 million for 2025. Edge MCUs supply 2.51 million units at USD 14.65, and event sensors 1.05 million at USD 92.40; the other three lines add 296,000 units.

Five product lines, five regions and 28 countries are modelled. Research processors are 18,600 chips times USD 2,236, or USD 41.6 million; boards are 46,300 times USD 642, or USD 29.8 million; licensed cores are 231,000 times USD 41.80, or USD 9.4 million. The 2035 figure is USD 214.4 million times 1.2140 times 0.9815 compounded over 10 years. Cross-check one: BrainChip's audited USD 1.89 million of 2025 revenue equals 0.9% of our total, consistent with a small player. Cross-check two: segment 2035 values sum to USD 1.24 billion, within 0.01% of the global figure. Regional rows match the global total in 2025 and 2035. Nothing is plugged.

## Market by segment

| Segment | Share | Value |
| --- | --- | --- |
| Event-based vision sensor chips | 45.1% | $96.7 Mn |
| Research and data-centre neuromorphic processors | 19.4% | $41.6 Mn |
| Edge neuromorphic microcontrollers and SoCs | 17.2% | $36.9 Mn |
| Neuromorphic development kits and boards | 13.9% | $29.8 Mn |
| Neuromorphic IP cores in licensed SoCs | 4.4% | $9.4 Mn |

## Market by region (USD million)

| Region | 2025 | 2026 | 2035 | CAGR 2026-2035 |
| --- | --- | --- | --- | --- |
| Global | 214.4 | 255.5 | 1,236.8 | 19.15% |
| North America | 84.5 | 99.4 | 427.5 | 17.6% |
| Europe | 50.6 | 59.9 | 271.6 | 18.3% |
| Asia Pacific | 68.2 | 83 | 486.1 | 21.7% |
| Latin America | 6.2 | 7.4 | 36.5 | 19.4% |
| Middle East and Africa | 4.9 | 5.5 | 15.1 | 11.91% |

## Dataset

| Series | Value | Unit |
| --- | --- | --- |
| Market size 2025 | 214.4 | USD million |
| Market size 2035 | 1,236.8 | USD million |
| Revenue CAGR 2026-2035 | 19.15 | percent |
| Volume CAGR 2026-2035 | 21.4 | percent |
| Price per chip CAGR 2026-2035 | -1.85 | percent |

## Frequently asked questions

### What share of neuromorphic chip revenue comes from event-based vision sensors?

45.1% of 2025 revenue, or USD 96.7 million, comes from event-based vision sensor chips on 1.05 million units.

### Which neuromorphic product line adds the most value by 2035?

USD 456.5 million by 2035 for edge neuromorphic microcontrollers and SoCs, up from USD 36.9 million, as they grow 28.6% a year.

### What will neuromorphic chips earn in 2035?

USD 1.24 billion in the base case, up from USD 214.4 million in 2025, a revenue CAGR of 19.15%.

### Why does the average neuromorphic chip price fall?

1.85% a year, from USD 55.63 in 2025 to USD 46.15 by 2035, because USD 14.65 edge MCUs take a rising share of units.

### How many Loihi 2 chips does Hala Point use?

1,152 Loihi 2 processors, giving up to 1.15 billion neurons at a maximum of 2,600 watts, first installed at Sandia.

### How much revenue did BrainChip report for 2025?

USD 1.89 million for 2025, against USD 398,011 in 2024, with a net loss of USD 20.5 million.

### Which region buys the most neuromorphic chips today?

39.4% of 2025 value sits in North America, USD 84.5 million, while Asia Pacific grows fastest at 21.7% a year.

### How wide is the gap between the slower and faster cases?

USD 778.5 million in the slower case against USD 1.93 billion in the faster case for 2035, with USD 1.24 billion as the base.

## Sources

- [EUR-Lex, Regulation (EU) 2023/1781 (Chips Act)](https://eur-lex.europa.eu/eli/reg/2023/1781/oj)
- [CEA-Leti, FAMES pilot line launch](https://cea.fr/cea-tech/leti/english/Pages/What's-On/Press%20release/cea-leti-announceslaunch-of-FAMES-pilot-line-as-part-of-EU-chips-act-initiative.aspx)
- [Innatera, Pulsar neuromorphic microcontroller launch](https://www.innatera.com/newsroom/innatera-unveils-pulsar-the-worlds-first-mass-market-neuromorphic-microcontroller-for-the-sensor-edge/)
- [Sandia National Laboratories, Sandia deploys SpiNNaker2 neuromorphic system](https://www.sandia.gov/ccr/news/sandia-deploys-spinnaker2-neuromorphic-system/)
- [Intel, Hala Point neuromorphic system](https://intel.com/content/www/us/en/newsroom/news/intel-builds-worlds-largest-neuromorphic-system.html)
- [BrainChip Holdings (ASX), Appendix 4D half-year report 2025](https://announcements.asx.com.au/asxpdf/20250822/pdf/06n5mkyzpb705v.pdf)
- [BrainChip Holdings, Appendix 4E preliminary final report 2025](https://www.otcmarkets.com/file/company/financial-report/528869/content)
- [IBM Research, NorthPole AI chip](https://research.ibm.com/blog/northpole-ibm-ai-chip)
- [Sony Semiconductor Solutions, Event-based vision sensors](https://www.sony-semicon.com/en/products/is/industry/evs.html)

## How to cite

Douglas Insights, "Neuromorphic Chip Market", DI-IT-10605, updated 2026-10-07, https://www.douglasinsights.com/neuromorphic-chip-market/
