UD-481 LINEAR ATC CNC ROUTER

Eight-tool ATC and 300 mm Z travel for multi-process woodworking

We configure the UD-481 as a multi-process woodworking solution built around a 1300 × 2500 × 300 mm working envelope, an 8-tool linear magazine and the referenced 9 kW HSD, Yaskawa and Syntec 6MA package.

1300 × 2500 × 300 mm8-tool linear ATC9 kW HSDYaskawa + Syntec 6MA

Share your materials, tool sequence and fixture height. Our sales and engineering team will match the spindle, vacuum, tooling and site requirements to your production before quotation.

UD-481 linear ATC CNC router with control cabinet

UD-481 or UE-481?

We help you choose between UD-481 and UE-481 by matching tool count, usable clearance and component requirements to your real program.

Production requirementUD-481 solutionUE-481 solution
Tools in a normal programUp to eight tools cover the sequence.More than eight tools are regularly required.
Working envelope1300 × 2500 × 300 mm reference.1220 × 2440 × 200 mm on the current UE page.
Main reason to buyGreater Z travel and the referenced HSD/Yaskawa/Syntec 6MA package.12-tool capacity for a larger prepared tool set.
Reject whenEight positions are not enough or the job needs drill-bank/line automation.200 mm Z is not enough after fixture and tool clearance are counted.

A UD-481 solution for multi-process production

We recommend UD-481 for workshops that use several tools in one program and want to reduce manual changes without moving to a full nesting line.

Applications we support

Cabinet doors, custom furniture, carved panels, stair and furniture parts, signage, acrylic and mixed low-to-medium batches.

Tool plan matched to your program

Send us one representative program or tool list. We will confirm whether eight prepared tools are enough and recommend the holder package.

When we recommend another solution

We will direct you to another configuration for automatic loading, labeling, drill-bank-led cabinet work, six-side machining, heavy metal removal or more than eight required tools.

UD-481 technical specifications

We use these reference values as the starting point for your solution. Final electrical, vacuum, layout and commercial scope follow the quotation and technical agreement.

ModelUD-481
Machine type3-axis linear ATC CNC router
Working area1300 × 2500 × 300 mm
Tool magazine8-tool linear magazine
Spindle9 kW HSD ATC spindle; referenced ISO30 air-cooled configuration
Spindle speed24,000 rpm reference
Drive systemJapan Yaskawa servo
ControllerTaiwan Syntec 6MA
TableVacuum table with T-slot clamping
Inverter11 kW
Listed maximum working speed35 m/min; actual cutting feed is process-dependent
Electrical supplyConfigured to destination; historical reference AC 380 V, 3-phase, 50/60 Hz
Larger size options2000 × 3000 × 300 mm; 2000 × 4000 × 300 mm
OptionsFourth-axis attachment; Becker vacuum-pump package
Front view of the UD-481 CNC router and control cabinet
The listed 35 m/min value is not a guaranteed cutting feed or output. Material, tool diameter, depth per pass, path geometry, holding, evacuation and finish requirement control the usable process.

Configuration decisions that change the result

Every option must solve a real production constraint. A longer specification sheet is not automatically a better machine.

8-tool linear magazine

Best suited to: programs that use four to eight prepared tools.

We recommend another magazine when: more than eight tools are regularly required or long tools and fixtures create clearance risk.

Vacuum + T-slot table

Best suited to: flat sheets with enough sealing area.

We add mechanical holding or another table strategy when: parts are small, porous, warped or exposed to higher cutting force.

9 kW HSD spindle

We match it to: material, tool diameter, pass depth, duty cycle and speed range.

Spindle power alone does not prove: rigidity, finish, tolerance or heavy-metal capability.

Fourth-axis option

We add it when: cylindrical or indexed parts can be held safely by the confirmed fixture.

We omit it when: flat-sheet work does not need rotation or the job requires true simultaneous four-axis access.

Materials and applications—with the limits visible

The machine can support several material groups, but the tool, holding, evacuation and sample-test method must change with the job.

Examples of acrylic, light metal, MDF, foam, PVC and wood routing applications

Wood panels and furniture parts

MDF, plywood, particle board, laminated panels, doors and furniture parts fit when the panel is flat, tooling matches the face/core and dust collection is effective. Test the smallest part and the first production panel.

Acrylic, PVC and plastics

Use sharp tooling, secure holding and material-specific chip/fume control. Test exact grade, thickness and edge requirement; one setting cannot guarantee a polished edge on every sheet.

Rigid foam and modeling board

The 300 mm Z travel can help with thicker models, but usable clearance and long-tool stability must be checked against the fixture and surface requirement.

Soft aluminum—conditional

Light routing requires rigid fixturing, dedicated low-flute tooling, chip evacuation and approved air blast or lubrication. Do not use UD-481 for steel, heavy removal or machining-center-level tolerance.

Machine structure and component package

The value of the configuration appears only when the component package, program and process conditions match.

UD-481 ATC spindle head and eight-position linear tool magazine

Referenced core configuration

  • 9 kW HSD ATC spindle
  • 8-tool linear magazine
  • Japan Yaskawa servo system
  • Taiwan Syntec 6MA controller
  • Vacuum table with T-slot clamping
  • 11 kW inverter

Our engineering team verifies the frame, transmission, calibration, tooling, workholding and program as one complete process. Send one real file when postprocessor compatibility or complex tool calling is critical.

Servo system, ATC spindle and tool holders used in the UD-481 configuration

Production workflow and operating boundaries

  1. Confirm material, fixture and tool list.
  2. Prepare up to eight holders and verify tool numbers.
  3. Locate the workpiece, close unused vacuum zones and check the spoilboard.
  4. Run the approved program with extraction operating.
  5. Inspect the first part for cut-through, edge quality and movement.
  6. Release the batch only after acceptance.
ATC removes repeated manual tool changes; it does not make unattended operation safe. Monitor holding, dust, tool condition, alarms and fire risk.
UD-481 CNC router in workshop and factory production scenes

See the UD-481 workflow

See how the UD-481 is arranged and operated. We use your final component list and approved test plan—not video alone—to define the delivered solution.

Installation, software and site preparation

Electrical and air

We confirm destination voltage, phase, frequency, breaker, cable, grounding, transformer need and final compressed-air requirement in the delivered electrical drawing.

Dust and vacuum

Size dust collection for the material and duct layout. Select the vacuum package from material porosity, smallest part, spoilboard and open table area—not from one pump number.

Software workflow

We confirm the CAM version, license responsibility, Syntec-compatible postprocessor, USB or network method and one real file before order lock.

Need a different working size, safety cover or process package? We can build a tailored solution through our custom CNC configuration service.

Factory testing, delivery and support

QC evidence

We assemble, inspect and test every machine before shipment. Our product-series framework includes CMM, laser interferometer, Ballbar and 24–72-hour continuous-operation testing. Exact UD-481 methods and results follow its approved plan and traceable records.

See the Quick CNC quality-control process.

Delivery and support

We provide a standard production lead time of 45 days, excluding ocean freight. Standard warranty is one year from buyer receipt; exact coverage, exclusions and service responsibilities follow the final signed agreement. Manuals, videos, remote guidance and online training are available, and paid on-site service may be arranged.

Tell us what you need—we'll prepare the right UD-481 solution

Share the details below and our sales and engineering team will recommend the machine, tool count, workholding and sample-test plan for your production.

  • Material grade, thickness and surface
  • Largest sheet and finished part
  • Maximum fixture/workpiece height
  • Smallest part after cut-through
  • Drawings, photos and one program/CAM file
  • Tools used per program and holder sizes
  • Holes, grooves, profiles, relief and rotary work
  • Shift target and batch mix
  • Power, dust, air and workshop layout
  • Destination and sample-test criteria

UD-481 FAQ

Build your UD-481 solution with Quick CNC

Tell us the material, largest part, fixture height, smallest part and program tool list. We will recommend the right UD-481 configuration—or a better-fit Quick CNC solution—before you place the order.

Get the latest quotes in September

Tell us your material, working size and production needs. Our engineers will recommend a suitable CNC machine for your business.