01Base & Steel Edge Preparation
01 / 09Install and position the steel edges precisely onto the snowboard base material to ensure durability, edge grip, and structural accuracy.
Real photos from our production floor — the presses, mold racks, raw material storage, and quality inspection areas where every board comes to life.
A look inside our workshop — from raw material storage and mold rooms to the pressing line and final QC bench. Every square metre exists to produce better boards.

Press Hall
Our main pressing corridor houses 20+ hydraulic heat-press machines, each delivering 12-tonne clamp force to fuse layers under controlled temperature.

CNC Core Milling
Multi-spindle CNC routers profile wood core blanks with sub-millimetre precision, shaping flex patterns and insert pockets in a single pass.

Mold Library
Over 100 precision-machined molds stored on metal racks — each one defines a unique board shape, camber profile, and sidecut geometry.

Wood Core Storage
Pallets of sustainably-sourced poplar, paulownia, and bamboo blanks acclimatise in our climate-controlled warehouse before CNC milling.

Composite Materials Warehouse
Rolls of biaxial and triaxial fiberglass, epoxy resins, rubber sidewall strips, and base material — all imported from premium European suppliers.

Press Control Stations
Each press features individual temperature and pressure controls. Technicians monitor cure cycles to ensure consistent lamination quality.

Finished Board Warehouse
Thousands of completed snowboards and skis on mobile racks, sorted by model and size, awaiting final QC inspection and packaging.

Dispatch Staging Area
Finished products staged on rolling carts for worldwide shipment — organised by order, ready for protective wrapping and container loading.
Precision craftsmanship at every stage — from base preparation to mold pressing. Each step is quality-monitored under our IQC → IPQC → FQC → OQC management system.
01Install and position the steel edges precisely onto the snowboard base material to ensure durability, edge grip, and structural accuracy.
02Apply rubber damping strips along the sidewalls to improve vibration absorption and enhance riding stability.
03Lay the bottom triaxial fiberglass sheet evenly across the mold surface to provide structural reinforcement and flex performance.
04Position the CNC-shaped wood core and install binding inserts accurately for optimal strength and mounting precision.
05Add carbon fiber strips in X or V pattern to improve torsional stiffness, pop response, and high-speed stability.
06Cover the structure with the upper triaxial fiberglass layer to complete the sandwich construction and improve overall durability.
07Place the custom UV/matte-finished topsheet carefully onto the snowboard structure for graphic protection and final surface finishing.
08Transfer the complete layered snowboard assembly into the heated press mold, ensuring precise alignment before curing begins.
09Activate the high-pressure hydraulic press at precisely controlled temperature and time to bond all layers and form the final shape.