A complete CNC machining center system for demanding production requirements including stairs, furniture, windows, doors, and interior fittings. Features scalable performance with individually equipped moving gantry and machining depths exceeding 3,000 mm.
The CENTATEQ P-510|610 + E-510 is a high-performance CNC processing center engineered as a complete production system for large-format woodworking. It combines a moving dual-drive gantry with SORB TECH mineral composite frame construction to deliver precision machining across workpieces up to 7400 mm length and 3250 mm width, with Z-axis capacity of 510 or 610 mm. This architecture eliminates traditional bed movement, enabling faster cycle times and superior repeatability for complex geometries. The machine's technical foundation includes an 18.5 kW spindle driving up to 126 tool positions, accommodating the full spectrum of cutting operations—milling, drilling, grooving, boring, and edge processing—without intermediate tool changes. Multiple table configurations (console, aluminum grid, A-Flex, AP variants) support both batch and shuttle processing up to 3075 mm lengths, with integrated safety systems including bumper detection, comfort scanner, and speedpack safety protocols. The modular spindle architecture allows scaling from single-head to multi-spindle setups, directly matching production volume and product complexity requirements. This system serves medium to industrial workshops producing demanding applications including architectural stairs, fitted furniture systems, window and door frames, kitchen cabinetry, and interior fittings. The deep 3000+ mm machining depth accommodates solid wood components, engineered panels, and composite materials requiring edge processing and surface detailing. Production environments ranging from 5-person custom shops to 100+ person manufacturing facilities benefit from the platform's flexible configurations and high throughput capacity, particularly where batch sizes exceed manual CNC constraints and precision tolerances demand rigid frame stability.