Industries

Telecommunications

NeutrinoX delivers a comprehensive portfolio of wired and wireless networking components engineered for ultra-low latency and maximum uptime. Our products are designed to meet the demanding performance needs of modern telecom infrastructure, where speed, reliability, and predictability are paramount.

At the heart of our networking solutions is White Rabbit timing integration, enabling sub-nanosecond synchronization across all devices. This level of precision ensures deterministic throughput, which is particularly critical for latency-sensitive environments such as financial trading networks and real-time communications.

Our Metro Ethernet switches, point-to-point microwave radios, and optical transmission systems are equipped with embedded sensors and edge AI capabilities. These devices continuously analyze performance indicators and build a localized model of their operational environment. This intelligence allows each unit to anticipate and mitigate latency inducing conditions, ensuring consistent throughput and minimal jitter.

Additionally, all telemetry and predictive insights are shared in real-time across the timing-synchronized network. This distributed intelligence enables latency-based path selection, dynamically optimizing network traffic routes for the lowest possible delay.

NeutrinoX solutions bring telecom operators a new level of visibility, responsiveness, and determinism, enabling next-generation networks to meet the challenges of mission-critical applications.

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Key Offerings:

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Microwave Radio Transceivers

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Microwave Radio Transceivers

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Microwave Radio Transceivers

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DWDM Optical Components

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DWDM Optical Components

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DWDM Optical Components

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Packet forwarding ASICs

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Packet forwarding ASICs

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Packet forwarding ASICs

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Edge AI ASSP

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Edge AI ASSP

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Edge AI ASSP

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High-Linearity RFICs & MMICs

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High-Linearity RFICs & MMICs

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High-Linearity RFICs & MMICs

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Low Phase Noise Oscillators

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Low Phase Noise Oscillators

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Low Phase Noise Oscillators

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RF Front-End Modules

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RF Front-End Modules

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RF Front-End Modules

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Modulators / Drivers for Optical Links

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Modulators / Drivers for Optical Links

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Modulators / Drivers for Optical Links

Defense & Space

NeutrinoX delivers high-performance, ultra-low-latency semiconductor solutions purpose-built for the defense and space industries. Our portfolio supports mission-critical systems that demand uncompromising reliability, speed, and situational awareness whether on the battlefield or in orbit.

We specialize in phased array radar components optimized for next-generation threats such as supersonic missiles, low-observable drones, and electronic warfare tactics. By enabling real-time beam steering and rapid signal processing, our solutions give defense platforms the speed and precision needed to intercept evolving threats with confidence.

In an era where digital and physical threats are converging, NeutrinoX embeds hardware-based security, anomaly detection, and AI driven signal integrity monitoring into all critical components. This dual layered defense architecture guards against jamming, spoofing, and cyber intrusions ensuring operational resilience even in contested environments.

For space-based applications, we develop mmWave communication modules designed for high-speed, low-latency satellite links. These enable robust downlinks and uplinks between moving platforms, ground stations, and LEO constellations, supporting both defense and commercial missions.

A key advantage of NeutrinoX is our in-house European manufacturing capability. Unlike competitors dependent on overseas supply chains, our vertically integrated production ensures sovereign control, rapid scaling, and uninterrupted delivery even in the face of geopolitical disruption or wartime logistics challenges.

With NeutrinoX, defense and space organizations gain a trusted European partner ready to meet tomorrow’s challenges at the edge, in the sky, and beyond the atmosphere.

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Key Offerings:

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Radar Front-End Modules (X, Ku, Ka, W, and THz bands)

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Radar Front-End Modules (X, Ku, Ka, W, and THz bands)

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Radar Front-End Modules (X, Ku, Ka, W, and THz bands)

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Secure RF Communication Subsystems

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Secure RF Communication Subsystems

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Secure RF Communication Subsystems

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Wideband Power Amplifiers

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Wideband Power Amplifiers

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Wideband Power Amplifiers

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Low-Noise Amplifiers (LNAs)

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Low-Noise Amplifiers (LNAs)

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Low-Noise Amplifiers (LNAs)

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High Dynamic Range Downconverters

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High Dynamic Range Downconverters

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High Dynamic Range Downconverters

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Radiation-Hardened ICs

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Radiation-Hardened ICs

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Radiation-Hardened ICs

Edge AI & Advanced Computing

NeutrinoX designs and manufactures custom silicon ASICs and ASSPs purpose-built for the unique demands of Edge AI and advanced computing systems. Our focus is on delivering low-power, high-throughput solutions that bring intelligence closer to the data source reducing latency, offloading cloud workloads, and enabling real-time decision-making at the edge.

From industrial IoT to telecom infrastructure, our edge AI chips are tailored to operate under tight thermal and power constraints without compromising on inference speed or accuracy. These highly specialized devices integrate on-chip acceleration, sensor fusion, and deterministic networking support enabling autonomous operations in mission-critical environments.

In parallel, NeutrinoX develops high-performance ASICs and FPGAs for datacenter-class AI workloads, where compute density, bandwidth, and scalability are paramount. Whether powering AI training clusters or real-time inference engines, our silicon is designed to maximize performance per watt and optimize data movement across high-speed fabrics.

By tightly aligning our hardware with the computational models and deployment constraints of our partners, we eliminate the compromises of generic AI processors. NeutrinoX delivers application-specific performance where it matters most at the edge and in the core.

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Key Technologies:

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Antenna beam steering using real-time sensor fusion

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Antenna beam steering using real-time sensor fusion

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Antenna beam steering using real-time sensor fusion

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Biometric signal processing from high-frame-rate security cameras

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Biometric signal processing from high-frame-rate security cameras

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Biometric signal processing from high-frame-rate security cameras

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On-device AI inference for surveillance, targeting, or autonomous response

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On-device AI inference for surveillance, targeting, or autonomous response

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On-device AI inference for surveillance, targeting, or autonomous response

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Radiation-tolerant Edge AI modules for aerospace or tactical deployment

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Radiation-tolerant Edge AI modules for aerospace or tactical deployment

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Radiation-tolerant Edge AI modules for aerospace or tactical deployment

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Advanced ultra Low Latency Drone Identification and localisation

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Advanced ultra Low Latency Drone Identification and localisation

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Advanced ultra Low Latency Drone Identification and localisation

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AI ASICs optimized for edge inference (low-power, high-throughput)

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AI ASICs optimized for edge inference (low-power, high-throughput)

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AI ASICs optimized for edge inference (low-power, high-throughput)

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Multichiplet Packaging (3D stacking, silicon interposers, RF/digital integration)

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Multichiplet Packaging (3D stacking, silicon interposers, RF/digital integration)

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Multichiplet Packaging (3D stacking, silicon interposers, RF/digital integration)

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Secure compute modules with integrated RF, AI, and sensor interfaces

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Secure compute modules with integrated RF, AI, and sensor interfaces

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Secure compute modules with integrated RF, AI, and sensor interfaces

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Compatible with biometric, radar, optical, and environmental sensors

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Compatible with biometric, radar, optical, and environmental sensors

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Compatible with biometric, radar, optical, and environmental sensors