OMSTAR DX1

Fuel-Soluble Lubrication Technology for Aviation & Defense

  • Enhances fuel performance characteristics

  • Compatible across multiple fuel types

  • Designed for next-generation aviation fuels

WHAT DX1 IS?

OMSTAR DX1 is a fuel-soluble lubrication technology developed to work within aviation and multi-fuel environments. Unlike conventional additives, DX1 becomes part of the fuel itself—allowing for uniform distribution and consistent system-wide interaction.

By integrating at the molecular level within the fuel, DX1 supports improved lubricity, reduced friction, and enhanced operational stability without requiring changes to existing infrastructure.

AVIATION

  • Lubricity gap in unleaded fuels

  • Compatibility with UL100E / Swift 100R strategy

DEFENSE

  • Multi-fuel compatibility

  • Reliability in extreme environments

COMMERCIAL

  • Cleaner combustion potential

  • System efficiency benefits

Why It Matters

Aviation

Modern aviation fuels—particularly emerging unleaded solutions—introduce new challenges in lubricity and system protection. OMSTAR DX1 is designed to support these evolving fuel environments by enhancing performance from within the fuel itself.

Defense

In multi-fuel and mission-critical environments, reliability is essential. DX1 is designed to maintain consistent behavior across varying fuel types and operating conditions, supporting dependable system performance.

Commercial & Industrial

Across diesel and fuel-based systems, lubricity and combustion efficiency play a key role in performance and longevity. DX1 supports improved system operation without requiring additional handling or modification.

Tested. Evaluated. Proven.

OMSTAR DX1 has been evaluated across independent laboratories, government agencies, and industry-aligned testing protocols.

Independent Laboratory Testing

Demonstrated strong fuel cleanliness and lubricity performance under ASTM-aligned methodologies

Performance & Compatibility Testing

Validated to maintain fuel and oil system compatibility while improving performance characteristics under operational conditions

Emissions & Efficiency Evaluation

Observed reductions in emissions and improvements in fuel efficiency under controlled testing environments

Historical & Multi-Source Validation

Evaluated across multiple laboratories and testing bodies over time, supporting consistent performance observations

Once introduced into fuel, OMSTAR DX1 forms a stable, homogeneous solution that travels with the fuel throughout the entire system.

As fuel moves from storage to combustion, DX1:

  • Remains evenly distributed without separation

  • Enhances lubricity across pumps, injectors, and system components

  • Reduces friction and wear under operating conditions

  • Supports consistent performance throughout the fuel lifecycle

Performance Benefits

Enhanced Lubricity

Supports improved lubrication across critical fuel system components

Reduced Wear

Minimizes friction-related degradation in pumps, injectors, and fuel pathways

Uniform Distribution

Maintains a stable, fuel-soluble state throughout the system

Seamless Integration

Works within existing fuel infrastructure without requiring modifications

A Different Approach to Fuel Performance

OMSTAR DX1 is engineered as a fully fuel-soluble solution—eliminating many of the limitations associated with conventional additive approaches.

Rather than existing alongside the fuel, DX1 becomes part of it—enabling consistent interaction across the entire system and supporting more uniform performance outcomes.

Current Development & Integration

OMSTAR DX1 is actively being positioned for integration within modern aviation fuel ecosystems, including:

  • Alignment with FAA EAGLE initiative pathways

  • Evaluation with unleaded aviation fuels such as UL100E and Swift 100R

  • Exploration of defense and multi-fuel operational applications

Our focus is on supporting the transition toward more efficient, reliable, and adaptable fuel systems

Detailed technical data, reports, and validation materials are available upon request.