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MinWave

MinWave designs and manufactures miniaturized microwave and millimeter-wave components using patented metamaterial technology, achieving devices that are ten times smaller and lighter than traditional solutions. This technology addresses the need for compact, high-performance RF front-end solutions in the telecommunications and space industries, reducing weight and size while enhancing performance and cost efficiency.

Lausanne, SwitzerlandFounded 20203700+ followers
Updated 20 months ago

Funding

$150K 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.

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Funding rounds are not available yet.

Founders

Product

Problem

The telecommunications and space industries require increasingly compact and high-performance RF front-end (RFFE) solutions. Traditional microwave and millimeter-wave components are often too large and heavy, limiting their applicability in modern applications. This necessitates innovative approaches to miniaturization without sacrificing performance or increasing costs.

Solution

MinWave designs and manufactures miniaturized microwave and millimeter-wave components utilizing patented metamaterial technology. Their RFFE solutions achieve significant reductions in size and weight compared to conventional designs while maintaining high performance. By leveraging low-loss metamaterials in small lengths, MinWave creates compact devices with sharp selectivity and high rejection levels. These components are suitable for both space and telecommunications applications, offering cost savings through reduced weight, size, noise, and energy consumption.

Target Audience

MinWave serves the telecommunications and space industries, including manufacturers of SATCOM terminals, 5G infrastructure, and satellite communication systems.

Features

  • Metamaterial-based design for miniaturized RF front-end components
  • Low-loss metamaterials enable high performance in compact sizes (typically <λ/2)
  • Sharp selectivity and high rejection levels for improved signal quality
  • Additive manufacturing techniques for low-cost monolithic assembly with complex geometries
  • Customizable solutions for specific application requirements
  • Components suitable for Ka-band Frequency Division Duplex (FDD) systems
  • Solutions for both SpaceCom and TeleCom applications, including 5G and 6G networks
This profile is AI-generated and may contain inaccuracies.