How ELOS is Made

Technology

ELOS Thermal Breakdown

Intentionally Engineered Insoles

See how our team carefully crafted the only heated insole with both comfort and and performance at the top of mind.

Weight-Bearing Pillars

Traditional heated insoles degrade under high-impact use, but ELOS insoles use micro-engineered weight-bearing pillars to evenly distribute pressure, enhancing durability, flexibility, while maintaining consistent support and reducing foot fatigue.

Regulated Heating Element

ELOS insoles feature a precision-engineered blend of Iron-Filings that regulate thermal output for consistent, even warmth, preventing overheating, discomfort, and excessive sweating while using phase-change thermal regulation to maintain optimal foot temperature in extreme cold.

Heat-Storing Inner Cavity

ELOS insoles feature an internal heat storage cavity that acts as a thermal reservoir, gradually releasing stored heat to maintain consistent warmth, prevent rapid heat loss, and ensure extended thermal performance even in fluctuating cold conditions.

Supportive Heel Cup

ELOS insoles feature a contoured heel cup that stabilizes the heel, promotes natural foot alignment, and enhances shock absorption, reducing strain and fatigue during high-impact activities while providing orthotic-grade support for long-term foot health.

Heating Meets Comfort

The only insole to provide thermal and orthotic support.

Weight-Bearing Pillars

Evenly distributes pressure for consistent support and reduced foot fatigue.

Weight-Bearing Pillars

Weight-Bearing Pillars

Supportive Heel Cup

Precisely engineered to provide orthotic support for optimal performance.

Regulated Heating Element

Our Iron-Filing formula releases heat once exposed to oxygen.