SUSTAINABLE MANUFACTURING
Bio-based materials
We are redefining the standard of orthotic support through advanced Bio-Manufacturing. By utilizing renewable feedstocks—such as Castor Oil, Algae, and Sugarcane—we formulate high-performance bio-foams that rival traditional petroleum-based materials.
Our bio-based orthotics offer the same structural integrity and rebound resilience required for medical-grade support, while significantly reducing the carbon footprint of every step. It is the perfect balance of biomechanical precision and environmental responsibility.
Waste recycling
By integrating GRS-certified rPET (Recycled Polyethylene Terephthalate) into our manufacturing, we intercept plastic bottles destined for landfills and oceans.
These materials are cleaned, shredded, and re-engineered into durable orthotic shells and breathable top covers. This process reduces our reliance on virgin plastics by up to 80%, creating a product that supports both your feet and a cleaner planet.
Eco-Driven Manufacturing
Our adoption of 3D Selective Laser Sintering (SLS) technology represents a shift from "Subtractive" to "Additive" sustainability. Unlike traditional methods that cut away material to shape a product, SLS builds your orthotics layer by layer, using only the material that is strictly necessary.
Furthermore, unsintered powder is continuously recovered, sifted, and recycled back into the production cycle, ensuring near-zero material wastage
Pressed Cork
Our use of natural cork is a commitment to a truly circular ecosystem. Unlike timber or fossil-based materials, cork is harvested by stripping the bark from the Cork Oak tree without cutting it down.
This process is entirely regenerative. The bark grows back every nine years, and remarkably, a harvested tree absorbs 3-5 times more CO2 than an unharvested one to aid its regeneration.
🌳 Tree-Friendly: 100% harvested by hand, leaving the tree alive to grow for over 200 years.
☁️ Carbon Negative: Harvested oak forests are powerful carbon sinks.
♻️ End-of-Life: Completely biodegradable and recyclable.
GRS
Verified Recycled Content Guarantees the authenticity of our recycled materials through a verified chain of custody, ensuring full transparency from waste source to final product.
OEKO
Certified Product Safety Confirms that our materials are tested for harmful substances. We ensure every insole is non-toxic, skin-friendly, and safe for daily wear
BSCI
Ethical Manufacturing Demonstrates our commitment to social responsibility. We ensure fair labor practices, safe working conditions, and a transparent supply chain.
Energy Transition
Our manufacturing facility is equipped with an advanced rooftop photovoltaic (PV) system, converting sunlight directly into clean electricity for our machinery.
By integrating solar power into our daily operations, we significantly reduce our reliance on traditional fossil-fuel grids. This transition allows us to produce your orthotic insoles with lower energy consumption and fewer greenhouse gas emissions
Eliminating Hazardous Chemicals
Innovating for Cleaner Chemistry Chemistry is the key to sustainability. We prioritize "Green Chemistry" alternatives in our raw materials to enhance both performance and recyclability. By designing out hazards at the source, we ensure our products support a healthy environment and a closed-loop economy.
Ethical Manufacturing / Social Compliance
We are proud to be an Ethical Manufacturer, committed to fair labor practices, safe working conditions, and transparent management. Our factory is regularly audited and certified by international standards (such as BSCI), Our goal is not only to minimize harm, but also to create a positive impact on the lives of the people we touch through our work.
Closed-Loop Waste Management
In our facility, "waste" is just a resource in the wrong place. We have implemented a rigorous Material Recapture Program. All production waste are collected, shredded, and processed . This recycled material is then reintroduced into the production cycle to create durable base layers or packaging fillers. By closing the loop, we minimize industrial waste and maximize material efficiency.
