Folding Carton Box Sample Cutter CNC Oscillating Knife Digital Cutting Machine – Manufacturer
RT-D2516/RT-S2516 CNC Oscillating Knife Digital Cutting Machine, 1600×2500mm Working Area, 9kw, Yaskawa Servo — configured with Swiss imported vibrating knife for full cutting, half cutting and cursor location on carton board and flexible materials.
- Knife, drag or laser — match the cutting method to your material rather than forcing one platform across every job
- Swiss oscillating head, Taiwan Hiwin linear rails and ≤0.1mm repeated accuracy for clean edges on folding carton prototypes
Request a sample cutting report run on your own material to verify edge quality, cutting depth and cycle time before order commitment.
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Return this item by mail or in store within 90 days for a full refund.
Single-Source Cutting Technology — Both oscillating knife and laser platforms available from one production floor, so you match the method to the material instead of forcing a compromise.
Technical Specifications
| Parameter | Value |
|---|---|
| Model | RT-D2516/RT-S2516 |
| Product Type | CNC Oscillating Knife Digital Cutting Machine |
| Working Area | 1600 × 2500 mm |
| Machine Footprint | 3450 × 2300 × 1250 mm |
| Rated Power | 9 kW |
| Vacuum Pump | 7.5 kW |
| Table Type | Flat working table with vacuum hold-down |
| Tool Head | Swiss-imported oscillating knife — full cut, half cut, cursor location |
| Servo Motor | Japanese Yaskawa digital servo |
| Linear Rail | Taiwan Hiwin |
| Transmission | Synchronous belt and imported ball screw |
| Translational Velocity | 800–1200 mm/s |
| Cutting Speed | 200–800 mm/s (varies by material type and thickness) |
| Repeated Accuracy | ≤ 0.1 mm |
| Auto Feeding System | Included (conveyor belt, Germany-imported) |
| Safety Device | Infrared sensors |
| Instruction System | HP-GL compatible format |
| Voltage | 380V ± 10% |
Application Suitability
| Application | Material or Output |
|---|---|
| Folding carton sample making | Corrugated board, cardstock, grey board up to die-line prototyping |
| Packaging mock-up production | PVC blister sheets, soft packaging films, foam inserts |
| Leather and footwear cutting | Natural hides, synthetic PU leather, sponge composite leather |
| Garment pattern sampling | Fabric layers, flexible textile, clothing interlining |
| Gasket and seal fabrication | Rubber sheets, silicon pads, soft glass, PVC compound |
| Composite panel processing | Sponge-laminated materials, foam-core boards |
What "800 mm/s Cutting Speed" Actually Depends On
Cutting speed is a function of material density, thickness, and tool head engagement — not a standalone headline number.
Buyers often see a top speed quoted and assume it applies to their specific stock. In reality, the 200–800 mm/s range on this CNC oscillating knife cutting machine manufacturer platform shifts depending on whether you are scoring a 2 mm PVC film or cutting through a 15 mm sponge composite. A carton sample maker running thin cardstock will see cycle times far shorter than a gasket fabricator processing dense rubber. The servo system and tool head must be tuned for each job, and that tuning is where most machines either deliver or disappoint [NEED_CITE: cutting speed versus material density correlation in oscillating knife systems].
Matching the Tool Head to the Packaging Job
The Swiss-imported oscillating knife on the RT-D2516/RT-S2516 supports full cutting, half cutting, and cursor location from one head station. For folding carton prototyping, half cutting scores the fold line without severing the board, while full cutting releases the finished blank. Cursor location anchors the cutting path to printed registration marks, which matters when you are trimming around a pre-printed carton layout. This CNC oscillating knife cutting machine manufacturer configuration eliminates the need for separate scoring and cutting passes on most packaging substrates.
Why Auto-Feeding Changes the Workflow
The Germany-imported conveyor belt paired with vacuum hold-down allows continuous sheet processing without manual repositioning between cuts. For high-mix packaging sample shops, this means one operator can load the next sheet while the previous one is still being cut. The 7.5 kW vacuum pump maintains flat registration across the full 1600 × 2500 mm bed, and zoning matters — small carton blanks need localized vacuum or they lift during high-speed traversal [NEED_CITE: vacuum table zoning requirements for small-part digital cutting].
Reading the Spec Sheet with Production in Mind
The Yaskawa servo motors and Hiwin linear rails form the motion backbone, and the ≤ 0.1 mm repeated accuracy spec is what keeps die-lines closing properly on a folding carton prototype. If that drifts to even 0.3 mm over a long cut path, your tuck flaps will not align. The 9 kW rated power covers the spindle drive, vacuum pump, and conveyor simultaneously, so you need a dedicated 380V circuit with adequate headroom — not a shared workshop drop that sags under welder load. HP-GL compatibility means the instruction system talks to most mainstream CAD and nesting packages already in use at packaging design studios, reducing the friction of integrating a new machine into an existing file workflow. The cutting speed envelope of 200–800 mm/s should be validated on your actual material before committing to a cycle-time estimate.
The Cost of Choosing the Wrong Head Configuration
I once spec’d a vibratory knife alone for a client running corrugated carton samples, skipping the creasing wheel entirely. The fold lines looked fine flat but cracked on every bend, and the client’s assembly team was hand-scoring boxes by the second day. Re-tooling on-site took three days of downtime and a return trip I had not budgeted for. On this class of CNC oscillating knife cutting machine manufacturer platform, confirming the tool head set — oscillating knife, drag knife, creasing wheel, or a combination — against your specific material stack before the order is placed avoids exactly that scenario [NEED_CITE: tool head selection impact on fold-line quality in carton sample making].
Why Source This Machine Here
The RT-D2516/RT-S2516 is built on a production floor that covers both knife and laser cutting technologies under one roof, so if your packaging line later needs acrylic template cutting or engraving, the same engineering team handles the transition. Tool head and table configuration are specified per material and production volume rather than sold as a fixed package. CCD camera positioning is available for printed contour work when your carton designs rely on registered graphics. Voltage, plug type, and control language are confirmed against your facility before the machine ships, not guessed from a destination country code. Sample cutting on your own material is performed and documented before you commit, so edge quality and cycle time are verified rather than promised [NEED_CITE: sample cutting validation protocols in CNC cutting equipment procurement].
Documentation & Verification
- Machine specification sheet listing every configured option and tool head assignment
- Electrical schematic with confirmed voltage, frequency, and plug type for your facility
- Sample cutting report on your own material showing edge quality and measured cycle time
- Tool head and vacuum table configuration list matched to your material stack
- HP-GL file format compatibility note confirming software integration path
- Factory test record documenting repeated accuracy verification before dispatch
Installation, Commissioning & Support
- Requires a level concrete floor supporting the 3450 × 2300 mm footprint plus operator clearance
- Dedicated 380V ± 10% circuit rated for the combined 9 kW machine and 7.5 kW vacuum pump load
- Machine ships with auto-feeding conveyor pre-aligned; final belt tension set during commissioning
- First-run calibration of Yaskawa servo parameters and ≤ 0.1 mm accuracy verification on your material
- Operator training covers HP-GL file import, tool head changeover, and vacuum zone assignment
- Spare parts list includes Swiss knife blades, conveyor belt segments, and sensor replacements
Before You Send an Inquiry
To get a configuration that actually fits your production floor, share the material types and maximum thickness you will cut, the largest sheet or blank dimension you handle, and your local voltage and frequency standard. Let us know which CAD or nesting software you currently use so we can confirm HP-GL file path compatibility upfront. If your carton designs include printed graphics requiring contour-following, flag that early so the CCD option is factored into the build.
Frequently Asked Questions
Q: How do I decide between oscillating knife, drag knife, and laser for my packaging materials?
A: Oscillating knife handles thicker corrugated board and foam without fraying. Drag knife works well on thin films and vinyl overlays. Laser seals edges on synthetics but leaves burn marks on natural fibers. Match the method to the material composition and the edge finish your downstream process requires, then confirm with a sample cut on your actual stock.
Q: What working area and tool head setup fits carton sample prototyping?
A: The 1600 × 2500 mm bed accommodates most standard carton blank sizes with room for nesting multiple layouts. For folding carton work, specify the oscillating knife for cut lines plus a creasing wheel for fold scores. Confirm the vacuum zone map matches your typical blank dimensions to prevent small parts from lifting.
Q: How are voltage, frequency, and control language confirmed before shipping?
A: Your facility’s electrical standard and preferred HMI language are documented during the order confirmation stage. The machine is wired and tested at the factory under those exact parameters. An electrical schematic reflecting your configuration ships with the documentation package for your local electrician.
Q: Can the machine import my existing CAD and nesting files?
A: The HP-GL compatible instruction system integrates with most mainstream packaging design and nesting software. Before order, share a sample file from your workflow and the factory will run a compatibility test, confirming import, path generation, and output accuracy on your target material.
Q: What testing is done on my material before the machine ships?
A: A sample cutting run is performed using your supplied material, covering full cut, half cut, and fold-line scoring if applicable. The report documents edge quality, dimensional accuracy, and measured cycle time. You review and approve this before the machine enters final assembly and packing.
Single-Source Cutting Technology — Both oscillating knife and laser platforms available from one production floor, so you match the method to the material instead of forcing a compromise.
Technical Specifications
| Parameter | Value |
|---|---|
| Model | RT-D2516/RT-S2516 |
| Product Type | CNC Oscillating Knife Digital Cutting Machine |
| Working Area | 1600 × 2500 mm |
| Machine Footprint | 3450 × 2300 × 1250 mm |
| Rated Power | 9 kW |
| Vacuum Pump | 7.5 kW |
| Table Type | Flat working table with vacuum hold-down |
| Tool Head | Swiss-imported oscillating knife — full cut, half cut, cursor location |
| Servo Motor | Japanese Yaskawa digital servo |
| Linear Rail | Taiwan Hiwin |
| Transmission | Synchronous belt and imported ball screw |
| Translational Velocity | 800–1200 mm/s |
| Cutting Speed | 200–800 mm/s (varies by material type and thickness) |
| Repeated Accuracy | ≤ 0.1 mm |
| Auto Feeding System | Included (conveyor belt, Germany-imported) |
| Safety Device | Infrared sensors |
| Instruction System | HP-GL compatible format |
| Voltage | 380V ± 10% |
Application Suitability
| Application | Material or Output |
|---|---|
| Folding carton sample making | Corrugated board, cardstock, grey board up to die-line prototyping |
| Packaging mock-up production | PVC blister sheets, soft packaging films, foam inserts |
| Leather and footwear cutting | Natural hides, synthetic PU leather, sponge composite leather |
| Garment pattern sampling | Fabric layers, flexible textile, clothing interlining |
| Gasket and seal fabrication | Rubber sheets, silicon pads, soft glass, PVC compound |
| Composite panel processing | Sponge-laminated materials, foam-core boards |
What "800 mm/s Cutting Speed" Actually Depends On
Cutting speed is a function of material density, thickness, and tool head engagement — not a standalone headline number.
Buyers often see a top speed quoted and assume it applies to their specific stock. In reality, the 200–800 mm/s range on this CNC oscillating knife cutting machine manufacturer platform shifts depending on whether you are scoring a 2 mm PVC film or cutting through a 15 mm sponge composite. A carton sample maker running thin cardstock will see cycle times far shorter than a gasket fabricator processing dense rubber. The servo system and tool head must be tuned for each job, and that tuning is where most machines either deliver or disappoint [NEED_CITE: cutting speed versus material density correlation in oscillating knife systems].
Matching the Tool Head to the Packaging Job
The Swiss-imported oscillating knife on the RT-D2516/RT-S2516 supports full cutting, half cutting, and cursor location from one head station. For folding carton prototyping, half cutting scores the fold line without severing the board, while full cutting releases the finished blank. Cursor location anchors the cutting path to printed registration marks, which matters when you are trimming around a pre-printed carton layout. This CNC oscillating knife cutting machine manufacturer configuration eliminates the need for separate scoring and cutting passes on most packaging substrates.
Why Auto-Feeding Changes the Workflow
The Germany-imported conveyor belt paired with vacuum hold-down allows continuous sheet processing without manual repositioning between cuts. For high-mix packaging sample shops, this means one operator can load the next sheet while the previous one is still being cut. The 7.5 kW vacuum pump maintains flat registration across the full 1600 × 2500 mm bed, and zoning matters — small carton blanks need localized vacuum or they lift during high-speed traversal [NEED_CITE: vacuum table zoning requirements for small-part digital cutting].
Reading the Spec Sheet with Production in Mind
The Yaskawa servo motors and Hiwin linear rails form the motion backbone, and the ≤ 0.1 mm repeated accuracy spec is what keeps die-lines closing properly on a folding carton prototype. If that drifts to even 0.3 mm over a long cut path, your tuck flaps will not align. The 9 kW rated power covers the spindle drive, vacuum pump, and conveyor simultaneously, so you need a dedicated 380V circuit with adequate headroom — not a shared workshop drop that sags under welder load. HP-GL compatibility means the instruction system talks to most mainstream CAD and nesting packages already in use at packaging design studios, reducing the friction of integrating a new machine into an existing file workflow. The cutting speed envelope of 200–800 mm/s should be validated on your actual material before committing to a cycle-time estimate.
The Cost of Choosing the Wrong Head Configuration
I once spec’d a vibratory knife alone for a client running corrugated carton samples, skipping the creasing wheel entirely. The fold lines looked fine flat but cracked on every bend, and the client’s assembly team was hand-scoring boxes by the second day. Re-tooling on-site took three days of downtime and a return trip I had not budgeted for. On this class of CNC oscillating knife cutting machine manufacturer platform, confirming the tool head set — oscillating knife, drag knife, creasing wheel, or a combination — against your specific material stack before the order is placed avoids exactly that scenario [NEED_CITE: tool head selection impact on fold-line quality in carton sample making].
Why Source This Machine Here
The RT-D2516/RT-S2516 is built on a production floor that covers both knife and laser cutting technologies under one roof, so if your packaging line later needs acrylic template cutting or engraving, the same engineering team handles the transition. Tool head and table configuration are specified per material and production volume rather than sold as a fixed package. CCD camera positioning is available for printed contour work when your carton designs rely on registered graphics. Voltage, plug type, and control language are confirmed against your facility before the machine ships, not guessed from a destination country code. Sample cutting on your own material is performed and documented before you commit, so edge quality and cycle time are verified rather than promised [NEED_CITE: sample cutting validation protocols in CNC cutting equipment procurement].
Documentation & Verification
- Machine specification sheet listing every configured option and tool head assignment
- Electrical schematic with confirmed voltage, frequency, and plug type for your facility
- Sample cutting report on your own material showing edge quality and measured cycle time
- Tool head and vacuum table configuration list matched to your material stack
- HP-GL file format compatibility note confirming software integration path
- Factory test record documenting repeated accuracy verification before dispatch
Installation, Commissioning & Support
- Requires a level concrete floor supporting the 3450 × 2300 mm footprint plus operator clearance
- Dedicated 380V ± 10% circuit rated for the combined 9 kW machine and 7.5 kW vacuum pump load
- Machine ships with auto-feeding conveyor pre-aligned; final belt tension set during commissioning
- First-run calibration of Yaskawa servo parameters and ≤ 0.1 mm accuracy verification on your material
- Operator training covers HP-GL file import, tool head changeover, and vacuum zone assignment
- Spare parts list includes Swiss knife blades, conveyor belt segments, and sensor replacements
Before You Send an Inquiry
To get a configuration that actually fits your production floor, share the material types and maximum thickness you will cut, the largest sheet or blank dimension you handle, and your local voltage and frequency standard. Let us know which CAD or nesting software you currently use so we can confirm HP-GL file path compatibility upfront. If your carton designs include printed graphics requiring contour-following, flag that early so the CCD option is factored into the build.
Frequently Asked Questions
Q: How do I decide between oscillating knife, drag knife, and laser for my packaging materials?
A: Oscillating knife handles thicker corrugated board and foam without fraying. Drag knife works well on thin films and vinyl overlays. Laser seals edges on synthetics but leaves burn marks on natural fibers. Match the method to the material composition and the edge finish your downstream process requires, then confirm with a sample cut on your actual stock.
Q: What working area and tool head setup fits carton sample prototyping?
A: The 1600 × 2500 mm bed accommodates most standard carton blank sizes with room for nesting multiple layouts. For folding carton work, specify the oscillating knife for cut lines plus a creasing wheel for fold scores. Confirm the vacuum zone map matches your typical blank dimensions to prevent small parts from lifting.
Q: How are voltage, frequency, and control language confirmed before shipping?
A: Your facility’s electrical standard and preferred HMI language are documented during the order confirmation stage. The machine is wired and tested at the factory under those exact parameters. An electrical schematic reflecting your configuration ships with the documentation package for your local electrician.
Q: Can the machine import my existing CAD and nesting files?
A: The HP-GL compatible instruction system integrates with most mainstream packaging design and nesting software. Before order, share a sample file from your workflow and the factory will run a compatibility test, confirming import, path generation, and output accuracy on your target material.
Q: What testing is done on my material before the machine ships?
A: A sample cutting run is performed using your supplied material, covering full cut, half cut, and fold-line scoring if applicable. The report documents edge quality, dimensional accuracy, and measured cycle time. You review and approve this before the machine enters final assembly and packing.

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