Auto Digital Cutting Machine 11kW Vacuum Table for Packaging | Manufacturer
RT-D2516/RT-S2516 Packaging CNC Cutting Machine, 1600×2500mm Vacuum Table, 9kW Rated Power — configured for carton prototyping and flexible material processing with Swiss imported oscillating knife head, Japanese Yaskawa servo, and 7.5kW vacuum pump for secure sheet hold-down. HP-GL compatible control supports existing nesting workflows. ≤0.1mm repeatability across leather, PVC, silicon and corrugated stock. – Cutting method and tool head specified per your material type and thickness – Sample cutting on buyer’s own stock before order commitment – Voltage, plug and software language confirmed prior to shipment
Precision Tooling Match — We align the cutting tool and vacuum zoning to your actual material and part geometry, not just the sheet size you quote.
Technical Specifications
| Parameter | Value |
|---|---|
| Product Type | CNC Oscillating Knife Cutting Machine |
| Working Area | 1600 × 2500 mm |
| Machine Size | 3450 × 2300 × 1250 mm |
| Rated Power | 9 kW |
| Translational Velocity | 800–1200 mm/s |
| Cutting Speed | 200–800 mm/s (varies by material type and thickness) |
| Repeated Accuracy | ≤0.1 mm |
| Tool Head | Swiss imported knife with vibration full cutting, half cutting, and cursor location |
| Transmission System | Digital servo motor, linear guide, synchronous belt, ball screw |
| Servo Motor | Japanese Yaskawa |
| Linear Rail | Taiwan Hiwin |
| Vacuum Pump | 7.5 kW |
| Table Type | Flat working table with vacuum suction and auto-feeding conveyor |
| Instruction System | HP-GL compatible format |
| Voltage | 380 V ±10% |
| Safety Device | Infrared sensors |
Application Suitability
| Application | Material or Output |
|---|---|
| Packaging sample making and carton prototyping | Corrugated board, folding carton stock, greyboard |
| Garment and footwear production | Leather, sponge composite leather, flexible fabrics |
| Gasket and seal fabrication | PVC, silicon, rubber, soft glass |
| Automotive interior trimming | Composite leather, foam-backed textiles |
Why "9 kW Rated Power" Needs a Second Question
Ask whether that figure covers the vacuum pump draw or only the motion and cutting head.
In packaging sample shops running small carton blanks all day, the vacuum pump and the cutting head both pull current simultaneously. A 7.5 kW vacuum pump running alongside servo drives and an oscillating head means the total instantaneous draw can exceed the rated 9 kW figure if the rating only accounts for one subsystem. I have walked into workshops where the breaker tripped on the third shift because nobody confirmed the combined load before wiring the circuit [NEED_CITE: industrial electrical load calculation standards for CNC cutting equipment]. When you evaluate a laser cutting and engraving machine manufacturer for knife-based systems, the power conversation must include every active component, not just the spindle or head.
Tool Head Selection and Edge Quality on Flexible Materials
The Swiss imported knife on the RT-D2516/RT-S2516 offers vibration full cutting, half cutting, and cursor location in a single head. Full cutting handles thicker stock like corrugated board and dense foam, while half cutting scores fold lines on carton samples without severing the sheet. Cursor location lets the operator set a reference point for multi-pass jobs where the material cannot be repositioned. This matters when you switch between leather for footwear uppers and PVC gaskets in the same shift — the tool head stays in place and only the cutting depth and vibration amplitude change.
Vacuum Zoning and Small Part Hold-Down
A flat 1600 × 2500 mm table with a 7.5 kW vacuum pump generates strong suction across a large area, but small packaging samples — think business-card-sized carton inserts — concentrate very little surface area over any single zone. Without partitioned valve groups isolating active zones, air bleeds in from the uncovered regions and the suction at the cutting line drops. Parts lift, the knife catches, and you get ragged edges or a damaged blade. Confirming the zone layout before the machine ships prevents a costly return visit to retrofit the valve manifold [NEED_CITE: vacuum table zoning principles for CNC flatbed cutting systems].
Reading the Specs That Actually Affect Your Floor
Cutting speed of 200–800 mm/s spans a wide range because material resistance governs how fast the oscillating knife can travel without deflecting. Thin PVC film runs at the upper end; dense sponge composite leather forces the lower range. The ≤0.1 mm repeated accuracy depends on the combination of Yaskawa servo motors and Hiwin linear rails holding position under lateral cutting load — if the rail preload is insufficient, accuracy degrades as the tool head pushes sideways through thick stock. Translational velocity of 800–1200 mm/s governs non-cutting moves, so the overall cycle time depends on nesting efficiency as much as cutting speed. HP-GL compatibility means the instruction system accepts standard plotter files, but you still need to confirm your nesting software exports a format the controller reads natively.
The Cost of Skipping the Material Test
Buyers sometimes select a machine on working area alone and discover on delivery that the standard tool head produces crushed edges on their foam or frayed borders on woven fabric. Switching heads after the machine is built means lead time for the new assembly, re-calibration of the Z-axis depth, and a software profile rewrite. Worse, a vacuum table without proper zoning reveals itself only when small parts fly into the blade path during the first production run. These are problems that a sample cut on your own material, run before the order is finalized, would have surfaced at zero cost [NEED_CITE: pre-order sample cutting protocols in CNC equipment procurement].
Why Source This Configuration Here
Realtop builds both knife and laser systems under one roof, which means the decision between oscillating knife and CO2 laser is driven by your material properties rather than by what a single-technology supplier happens to offer. The RT-D2516/RT-S2516 is configured per order: tool head, vacuum zoning, conveyor belt selection, and voltage all match your facility rather than a stock build. In-house design covers the frame, motion system, and control integration, so specification changes during production do not require third-party renegotiation. Every machine leaves the Jinan factory with a test record run on the buyer’s specified material. The auto-feeding conveyor with Germany-imported belt stock supports continuous roll-fed workflows for garment and flexible material shops that cannot afford to stop between sheets.
Documentation & Verification
- Machine specification sheet confirming RT-D2516/RT-S2516 working area, power, and voltage
- Electrical schematic with 380 V ±10% circuit and vacuum pump load breakdown
- Tool head and table configuration list matched to your material type
- Sample cutting report on your own corrugated, leather, or PVC stock
- HP-GL file format compatibility note for your nesting software
- Factory test record with repeated accuracy measurement before dispatch
Installation, Commissioning & Support
- Floor space of at least 3450 × 2300 mm plus operator clearance on three sides
- Dedicated 380 V ±10% circuit sized for combined 9 kW machine and 7.5 kW pump draw
- Auto-feeding conveyor calibrated to your roll width during on-site commissioning
- Vacuum zone valve settings tuned to your smallest and largest part dimensions
- HP-GL controller trained in your preferred operating language at startup
- Spare oscillating blades and conveyor belt segments included for first-year wear
What to Prepare Before Requesting a Quote
Send your material type, maximum and minimum sheet or roll dimensions, thickness range, and the daily volume you need to sustain. Include the voltage and frequency at your facility, the plug standard, and your preferred control language. If you already run nesting software, share a sample export file so we confirm HP-GL compatibility before building the machine. For packaging sample shops, tell us the smallest part you cut — that determines the vacuum zoning layout.
Frequently Asked Questions
Q: How do I verify the 200–800 mm/s cutting speed range for my material?
A: Cutting speed depends on material density and thickness. Request a sample cutting report on your own stock — the test records the actual speed, blade type, and edge quality achieved. This report gives you a realistic cycle time baseline rather than a generic range that may not apply to your specific leather, PVC, or corrugated board.
Q: Is the 9 kW rating the total machine draw or does the vacuum pump add to it?
A: Confirm this before wiring your shop circuit. The 7.5 kW vacuum pump may operate simultaneously with the cutting head and servo drives, so the combined instantaneous load can exceed the stated rated power. Ask for an electrical schematic showing each subsystem’s draw to size your breaker and cable correctly.
Q: How does the vacuum table handle very small packaging samples without lift?
A: Small parts cover limited surface area, so air bleeds through uncovered zones and suction drops at the cutting line. The solution is a partitioned valve manifold that isolates only the active zone under the part. Specify your minimum part dimensions during inquiry so the correct zoning is built into the table.
Q: Can the HP-GL controller import files from my existing nesting software?
A: HP-GL is a widely supported plotter format, but nesting programs export variations that may not parse correctly. Share a sample file before the order so the controller’s compatibility is confirmed. If your workflow uses DXF or another format, state this early so the software configuration is adjusted before the machine ships.
Q: Which tool head is right for my mix of corrugated board and flexible fabrics?
A: The Swiss imported oscillating knife handles both, using full cutting for thick board and half cutting for scoring fold lines. If you also process woven textiles, a drag knife or rotary tool head may produce cleaner edges. Run a material sample test with each head option before committing to a configuration.
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