Building a safer generation of aerial systems.
TARVYN was founded to rethink how small aerial platforms may operate near people, infrastructure, and public-safety environments. The company is developing an enclosed-impeller architecture designed for controlled, persistent aerial operation without exposed propellers.
Advance aerial systems for proximity, persistence, and control.
The company is focused on a future where small aerial platforms can support public-safety, emergency-response, and critical-infrastructure teams without relying on exposed open propellers.
- No open propellers
- Controlled lift demonstrated
- Tethered configuration in development
- Public-safety direction
- Patent-pending architecture
From enclosed airflow concept to controlled lift.
TARVYN began with a simple technical question: can an aerial system generate useful lift while keeping high-speed rotating components enclosed within the body? Through repeated prototyping and physical testing, the architecture demonstrated controlled lift using an enclosed impeller-deflector system.
Enclosed propulsion concept
A first-principles exploration of internal airflow, impeller modules, duct geometry, and controlled deflection.
30+ design iterations
Prototype geometry, printed components, airflow paths, and structural decisions were repeatedly built, tested, and revised.
200+ functional tests
Physical tests informed lift behavior, airflow response, structural needs, and the next engineering questions.
Controlled lift demonstrated
Guided prototype testing demonstrated controlled lift and established the foundation for the current tethered-platform development phase.
The engineering work now is integration.
Controlled lift has been demonstrated, but TARVYN is not presenting the platform as a finished commercial product. The current focus is turning prototype evidence into an integrated tethered aerial system.
Prototype progress
Controlled lift demonstrated through guided testing, repeated physical iteration, functional prototype components, and patent-pending system architecture.
Stability and system integration
Free hover, active stabilization, control authority, tethered power/data integration, thermal behavior, acoustic refinement, and weight reduction remain active development milestones.
The team behind the technology.
TARVYN is being developed by a multidisciplinary team working across product development, applied engineering, electronics, simulation, rapid prototyping, physical testing, and intellectual property. The current focus is turning demonstrated controlled lift into an integrated tethered aerial platform.
Vasyl Petechel
Hands-on engineering
Prototype DevelopmentPhysical testing, airflow experimentation, structural iteration, electronics integration, and system packaging are developed through repeated build-test-learn cycles.
Platform integration
Tethered System DirectionThe next stage centers on stability, control, power delivery, data transmission, payload readiness, and field-test preparation for controlled environments.
A controlled aerial system for persistent operations.
The first intended configuration is a tethered aerial lighting and observation platform for future public-safety, emergency-response, and critical-infrastructure use cases.
Help move the platform into the next phase.
TARVYN is seeking engineering, research, public-safety, manufacturing, aerospace, and investment partners who can help validate, refine, and field-test the system.
Follow the next stage of TARVYN.
Follow prototype development, testing progress, technical milestones, partnership updates, and future field-testing plans.
founders@tarvyn.com