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LATYS

LATYS develops ultra-compact, dynamically reconfigurable wireless relays utilizing proprietary metasurface technology. This approach creates inherently interference-immune systems that enable robust, spectrally efficient full-duplex communications. Their infrastructure supports next-generation standards across indoor WiFi, 5G, and Industrial IoT applications.

Montréal, CanadaFounded 2020171K+ followers
Updated 4 months ago

Funding

$3.6M raised to dateRaised to date based on public sources. This may differ from the amount the company actually raised and is based only on what is publicly available on the internet.

Funding rounds are not available yet.

Founders

Product

Problem

Existing wireless communication systems in industrial environments often suffer from interference, multi-path fading, and noise, leading to unreliable connectivity and limiting the performance of critical applications. Traditional antenna designs struggle to overcome these challenges, resulting in increased infrastructure costs and reduced spectral efficiency.

Solution

LATYS Intelligence™ is developing a non-reciprocal wireless relay system that utilizes reconfigurable metasurfaces to create ultra-compact antennas designed to be inherently immune to interference, multi-path fading, and noise. This proprietary technology enables full-duplex communications that are protocol and modulation-agnostic, enhancing wireless connectivity in challenging industrial settings. By leveraging metasurfaces, LATYS aims to break the current limitations of antenna design, providing faster, more reliable, and spectrally efficient wireless infrastructure. The system's dynamic reconfigurability allows it to adapt to changing environmental conditions, ensuring consistent performance.

Target Audience

The primary target audience includes industrial enterprises, facility managers, and system integrators seeking to improve wireless connectivity and reliability in factories, warehouses, and other industrial environments.

Features

  • Reconfigurable metasurfaces for dynamic beamforming and interference mitigation
  • Non-reciprocal design to isolate transmit and receive signals, enabling full-duplex communication
  • Ultra-compact antenna form factor for easy deployment in space-constrained environments
  • Protocol and modulation-agnostic operation, compatible with various wireless standards (WiFi, 5G, Industrial IoT)
  • Immunity to interference, multi-path fading, and noise for robust connectivity
This profile is AI-generated and may contain inaccuracies.