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CANADA, Victoria - BC V8V 4Y9
185-911 Yates Street, Suite 352

+1 (778) 404 0050

info@reinventy.com

RΣVENANT™

RΣVENANT™

Structural Stealth Composite Technology

Engineered Interaction. Silent by Design.

RΣVENANT™ is Reinventy’s proprietary Structural Stealth Composite technology, developed to control and attenuate radar energy while preserving full structural integrity.

This is not a surface treatment and not a passive coating. RΣVENANT™ is a material technology engineered to interact with electromagnetic energy as part of the structure itself.

How RΣVENANT™ Behaves

When radar energy reaches a structure built with RΣVENANT™, the interaction is fundamentally different from conventional materials.

Radar wavefronts approaching the surface—whether at normal, oblique, or high-incidence angles—are progressively attenuated and diffused. Instead of reflecting back toward the source, the energy dissipates within the structural volume.

Throughout this interaction, the surface remains unchanged: rigid, continuous, and mechanically stable.

No deformation. No surface alteration. No functional trade‑off.

A Structural Response, Not a Visual Effect

The attenuation behavior of RΣVENANT™ is communicated through subtle, controlled visual cues:

  • Gradual reduction of wave amplitude

  • Smooth energy fading within the material

  • Absence of reflected wavefronts

The response is deliberate and repeatable, conveying engineered control rather than passive absorption.

Performance Under Real Conditions

RΣVENANT™ is designed to maintain its stealth behavior under operational stress.

In representative scenarios involving:

  • thermal gradients,

  • airflow and aerodynamic loading,

  • particulate impact such as sand and dust,

the structural response remains consistent. The material continues to attenuate radar energy without visible degradation or loss of effectiveness.

Designed for Aerospace Reality

The visual and functional language of RΣVENANT™ is intentionally restrained and technical.

There are no exposed layers, no internal cross‑sections, and no explanatory overlays. The material is presented as it is intended to be used: as an external aerospace structure.

Camera movements are slow, analytical, and precise—mirroring aerospace test environments rather than marketing demonstrations.

Technology Characteristics

  • Structural Stealth Composite

  • Integrated electromagnetic attenuation

  • Effectiveness across multiple radar incidence angles

  • Millimetric structural skin thickness

  • Stable behavior under environmental stress

These characteristics are achieved without revealing internal composition or manufacturing methodology.

Application Domains

RΣVENANT™ is intended for platforms where stealth performance must coexist with structural reliability:

  • Low‑observable UAV platforms

  • Forward fuselage sections

  • Leading edges and aerodynamic surfaces

  • Sensor‑adjacent aerospace structures

Controlled, Credible, Industrial

RΣVENANT™ is developed within a controlled industrial framework, designed for integration into qualified aerospace manufacturing environments.

The technology is governed by strict process control and quality assurance, ensuring repeatability and long‑term reliability.

Availability & Compliance

RΣVENANT™ is a controlled dual‑use technology.

Deployment, evaluation, and integration are subject to Reinventy approval and applicable export regulations.

Structural Stealth. Engineered Interaction.

RΣVENANT™ represents Reinventy’s approach to next‑generation low‑observable structures: a disciplined, engineered response to radar energy—designed for real platforms, real environments, and real missions.

RΣ-SKIN™ S1

Balanced Structural Stealth Composite

Description
RΣ-SKIN™ S1 is Reinventy’s certification-oriented structural stealth composite, engineered to deliver reliable radar observability reduction while preserving mechanical robustness and industrial repeatability.

Designed as a load-bearing external skin, RΣ-SKIN™ S1 integrates stealth functionality directly into the composite structure, eliminating the need for external radar-absorbing coatings or surface treatments.

This variant prioritizes stability, predictability, and qualification readiness across aerospace platforms.

Technical Specifications

  • Structural Role: Load-bearing external composite skin

  • Radar Effectiveness: Optimized for X-band operations

  • Angular Performance: Stable attenuation from normal incidence up to 45°

  • Thickness Class: Millimetric structural skin

  • Mechanical Integrity: Aerospace-grade secondary structure capability

  • Environmental Resistance: Validated for thermal cycling, sand, dust, and saline environments

  • Manufacturing Profile: High repeatability, low process risk

All values depend on geometry and configuration. No process details disclosed.

Key Applications

  • Low-observable UAV fuselage skins

  • Wing skins (secondary and semi-structural areas)

  • Aerodynamic fairings and panels

  • Sensor-adjacent aerospace structures

RΣ-SKIN™ S2

High-Performance Structural Stealth Composite

Description
RΣ-SKIN™ S2 is Reinventy’s maximum-performance structural stealth solution, engineered for stealth-critical zones where enhanced radar attenuation is required.

While maintaining load-bearing capability, RΣ-SKIN™ S2 delivers increased electromagnetic attenuation and controlled directional response, making it ideal for forward-facing and high-signature aerospace structures.

This variant is intended for advanced low-observable platforms operating in complex radar environments.

Technical Specifications

  • Structural Role: Load-bearing stealth-critical skin

  • Radar Effectiveness: X-band baseline with extended Ku-band performance

  • Angular Behavior: Optimized for oblique and high-incidence angles (15°–45°)

  • Directional Control: Tunable anisotropic response (design-level)

  • Thickness Class: Millimetric structural skin

  • Mechanical Integrity: Structural performance suitable for stealth-critical zones

  • Environmental Resistance: Stable performance under thermal, particulate, and aerodynamic stress

  • Manufacturing Profile: Qualified production environments required

All values depend on geometry and configuration. No process details disclosed.

Key Applications

  • Leading edges and nose structures

  • Forward fuselage sections

  • Sensor-proximal aerospace components

  • Advanced low-observable UAV platforms

Controlled Technology Notice

RΣ-SKIN™ S1 and RΣ-SKIN™ S2 are controlled dual-use technologies.
Availability, evaluation, and integration are subject to Reinventy approval and applicable export regulations.

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