Router Multilathe
SCM IT Enterprise

Router Multilathe

CNC Machining Centers โ€” SCM Group

CNC machining centre with multiple work stations for manufacturing four work-pieces simultaneously.

The SCM Router Multilathe is a four-station CNC machining centre engineered for high-throughput simultaneous processing of multiple solid wood workpieces. Unlike single-spindle routers, this machine operates four independent electrospindle units in parallel, enabling continuous production cycles where one station loads while others machineโ€”effectively multiplying throughput without multiplying cycle time.

The machine's technical architecture centres on four 13 kW electrospindles capable of 30,000 rpm, each spaced 272 mm apart on the machining head, paired with a 112-position tool changer that minimizes changeover downtime. Workpiece capacity ranges from 300 mm to 1,500 mm in length, accommodating everything from small solid wood components to medium-length architectural elements. This configuration allows for complex routing, mortising, profiling, and drilling operations across all four stations without tool repositioning between workpieces.

The Router Multilathe is purpose-built for medium to industrial woodworking facilities processing solid wood elements at production volumes between 100โ€“500 pieces per shift. It suits manufacturers of cabinet components, window and door frames, furniture blanks, and custom millwork elements where both precision and speed are commercial requirements. The four-station design is particularly valuable where labour costs justify equipment investment but flexibility across product variants remains essential.

In its class, the Router Multilathe bridges the gap between universal single-spindle routers and fully automated production lines. Its parallel-station architecture and substantial tool storage deliver industrial throughput while maintaining the programming flexibility needed for job-shop and semi-continuous production runs typical of European solid wood manufacturers.

Technical Specifications

Working Areas

Max. Workable Work-piece Length 1,500 mm
Min. Workable Work-piece Length 300 mm

Routing Unit

Machining Unit Electrospindles 4 n.
Max. Electrospindles Power 13 kW
Max. Electrospindles Rotating Speed 30,000 rpm
Electrospindles Vertical Center Distance 272 mm

Tool Changers

Tools Store 112 positions

Applications

custom millwork production

medium workshop

Execute precision moulding, profiling, and detailed routing for architectural trim, handrails, and bespoke architectural elements. The 112-tool capacity accommodates complex profile sets without mid-job changes; the four-station design enables batch processing of different profiles on the same shift by queue-loading different workpiece sets.

furniture component manufacturing

medium workshop

Produce cabinet sides, shelving standards, chair components, and decorative panels with consistent edge profiling and internal detailing. The four-station workflow allows one operator to manage continuous loading while the machine completes routing, edge profiling, and drill operations across all pieces. Ideal for semi-custom furniture runs of 50โ€“200 units requiring multiple profile variations.

solid wood element manufacturing

industrial workshop

Process solid wood blanks for construction-grade elements, timber frames, and engineered wood components requiring consistent drilling, routing, and edge treatment. The machine's 30,000 rpm maximum speed and 13 kW power handle hardwoods and engineered materials; parallel stations reduce per-unit production time while 112 tool positions support multi-operation jobs without changeover.

window door production

industrial workshop

Manufacture stile-and-rail frames, mortise-and-tenon joints, and profile routing for window and door components. Four simultaneous stations process frame blanks (300โ€“1,500 mm lengths) in parallel, with the 13 kW spindles executing mortising, profiling, and through-routing operations in a single setup. Production rates of 80โ€“120 frames per shift are achievable while maintaining tight tolerances required for hardware compatibility.

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