In the realm of helmet manufacturing, safety is not merely a slogan; it is a standard forged through countless impact tests. Our technological core lies in an uncompromising pursuit of excellence in both materials and craftsmanship. From internal structural design, aerodynamic ventilation systems, and the integration of MIPS (Multi-directional Impact Protection System), to the use of high-density EPS foam and precision in-mold technology-we ensure that every product not only meets but surpasses international safety certifications such as CPSC, CE, and AS/NZS. By leveraging advanced 3D modeling and fluid dynamics simulations, we continuously optimize helmet stability and aerodynamic performance, ensuring that safety, comfort, and style are no longer mutually exclusive choices.

 

Helmet impact resistance test results

Impact Protection Engineering

Impact protection is the core function of any helmet - and the primary focus of certification testing.

Our impact protection engineering focuses on how structure, geometry, and energy-absorbing materials work together to meet certification requirements while remaining manufacturable at scale.

Impact Protection Engineering

 

Materials And Structural Engineering

Material choice is one of the most critical technical decisions in helmet development.

Our materials and in-mold technology focuses on selecting and controlling materials that support impact performance, comfort, weight targets, and manufacturing consistency.

Materials And Structural Engineering

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Digital Design And Prototyping

Our digital engineering capabilities support:

2D and 3D structural modeling

Assembly and tolerance evaluation

Tooling readiness assessment

Design-to-production consistency

This allows clients to clearly understand product structure before committing to tooling investment.

Digital Design And Prototyping