Advertising Board Oscillating Knife Cutting Machine – Manufacturer
1625 CNC Oscillating Knife Cutting Machine, 1600×2500mm Working Area, ±0.1mm Accuracy — configured with interchangeable tool heads including oscillating knife, creasing wheel and V-groove for cardboard, foam board, PVC and corrugated packaging sample making.
- PLC control panel with CCD camera contour recognition and multi-language display support
- Aluminum bellows vacuum table with zoning matched to sheet size and part geometry
- File format compatibility across PLT, DXF, AI and PDF confirmed before order
Sample cutting performed on the buyer’s own material before commitment, ensuring edge quality and achievable thickness match the production requirement.
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Configurable Tool Head Array — knife, laser and multi-tool cutting systems matched to material and volume rather than forcing one method across every job.
Technical Specifications
| Parameter | Value |
|---|---|
| Model | 1625 |
| Product Type | CNC Oscillating Knife Cutting Machine |
| Working Area | 1600 × 2500 mm |
| Tool Head Options | Oscillating knife, Driven rotary knife, Creasing wheel, Kiss cutting tool, Pneumatic knife, Milling tool, V groove knife |
| Cutting Speed | 0–1500 mm/s |
| Cutting Thickness | ≤ 40 mm (basis not stated in source) |
| Cutting Accuracy | ±0.1 mm |
| Vacuum Table | Aluminum bellows vacuum table |
| Vacuum Pump Power | 9 kW |
| Drive System | Servo motors (Panasonic, Delta, Dorna options) |
| Control System | PLC control panel with optional display languages |
| Voltage Options | 110V, 220V, 380V |
| File Formats Supported | PLT, DXF, AI, PDF |
| Safety Devices | Infrared sensor device, emergency stop device |
| Machine Size | 3300 × 2100 × 1350 mm |
Application Suitability
| Application | Material or Output |
|---|---|
| Packaging sample making | Cardboard, corrugated carton, foam board, honeycomb board |
| Advertising and signage | PVC foam board, acrylic sheet, vinyl, magnet sheet, KT board |
| Automotive interior trimming | Seat cover leather, synthetic leather, carpet, floor mats, door panel felt |
| Furniture and home decor | Genuine leather, PU leather, fabric, cushion foam, curtain cloth |
| Footwear and luggage | Shoe uppers, insoles, luggage shells, fabric linings |
| Composite material fabrication | Carbon fiber prepreg, fiberglass cloth, sound insulation foam, PTFE gasket |
Why the Wrong Tool Head Ruins a Perfectly Sized Machine
A machine specified on working area alone often fails when the material thickness or type is not matched to the correct tool head and vacuum zoning. The cutting method must follow the material, not the other way around.
I have walked into workshops where a buyer invested in a large-format flatbed digital cutting table expecting it to handle dense foam gaskets and corrugated board on the same shift, only to discover the oscillating knife was crushing the foam while the drag knife was leaving ragged edges on the carton. The working area was right, but the tooling was wrong [NEED_CITE: tool head selection criteria for non-metallic CNC cutting]. A CNC oscillating knife cutting machine manufacturer worth working with will ask what you are actually cutting before discussing table dimensions.
Matching Tool Heads to the Production Floor
The 1625 supports seven interchangeable tool heads, each solving a different production problem. Oscillating knives handle dense foam and thick gasket material where drag knives would stall, while driven rotary knives slice through woven fabric without fraying the edges. Creasing wheels score carton stock for folding without cutting through, and kiss cutting tools remove vinyl decals from their backing without damaging the release liner. Switching heads takes minutes on the shop floor, so a single CNC oscillating knife cutting machine manufacturer can supply one machine that covers packaging prototypes in the morning and leather uppers in the afternoon.
Software Compatibility Before the Order is Signed
File format mismatches between the design office and the cutting floor cause more downtime than mechanical failure. The 1625 accepts PLT, DXF, AI and PDF directly, which covers the output of most mainstream vector design and packaging CAD systems. When a buyer sends a sample file before the order, the nesting workflow and cut path logic can be verified on the actual control panel, eliminating the situation where the machine sits idle while operators manually retrace toolpaths [NEED_CITE: common CNC file format compatibility issues in packaging production]. The PLC control panel supports English, Russian, Italian and Chinese, with special languages customizable for specific export markets.
Reading the Specification Sheet Beyond Working Area
The 1600 × 2500 mm working area covers standard full sheets of corrugated board and most leather hides, but the aluminum bellows vacuum table and 9 kW vacuum pump are what actually hold the material flat during high-speed cutting. Without sufficient vacuum pressure, small cardboard packaging samples lift off the bed and produce dimensional errors, which is why the vacuum zone count matters as much as the table size. Cutting accuracy of ±0.1 mm is achievable when the servo-driven system (available with Panasonic, Delta or Dorna motors) is paired with the correct vacuum zoning for the part geometry. Cutting speed runs up to 1500 mm/s, though actual feed rates depend on material density and knife penetration depth. The cutting thickness is listed at ≤ 40 mm, though this figure varies with material compressibility and must be confirmed on a sample before committing to a production specification.
The Hidden Cost of Skipping the Sample Cut
Buyers who skip the material sample test frequently discover problems only after the machine is bolted to their factory floor. A vacuum table with too few zones will allow small signage letters to shift during cutting, producing scrap rather than sellable product [NEED_CITE: vacuum table zoning requirements for small part cutting]. A voltage mismatch that was not confirmed before shipment can trip the workshop breaker the moment the 9 kW vacuum pump starts, or worse, burn out the servo drive. These are not manufacturing defects — they are specification gaps that a proper pre-order sample cutting protocol catches before the crate leaves the factory.
Why Source This Range Here
In-house design and production covers both knife and laser cutting technologies, so a buyer evaluating the 1625 can compare it directly against CO2 and fiber laser options for the same material and make an informed choice. Tool head and table configuration is specified per material type and daily volume, not sold as a fixed package. CCD camera positioning is available for printed contour work where registration marks must be tracked at production speed. Voltage, plug type, control language and software compatibility are confirmed before the order enters production. Sample cutting on the buyer’s own material is standard practice, producing a documented report on edge quality, achievable thickness and cycle time before any commitment is made.
Documentation & Verification
- Machine specification sheet listing every configured tool head, working area and vacuum zone count
- Sample cutting report on buyer’s own material confirming edge quality and cutting depth
- Electrical schematic with voltage, plug type and frequency confirmed for target market
- Software licence and file format compatibility note for the buyer’s existing nesting workflow
- Factory test record documenting axis travel, vacuum pressure and cut accuracy before dispatch
- Operation and maintenance manual with tool change procedures and spare parts list
Installation, Commissioning & Support
- Floor space requirement accounts for the 3300 × 2100 mm machine footprint plus operator access on three sides
- Dedicated power circuit sized for the 9 kW vacuum pump plus servo drive load at the confirmed voltage
- Machine ships with tool heads pre-calibrated; on-site assembly limited to gantry, vacuum table and electrical connection
- First-run commissioning includes vacuum zoning test and tool path verification on buyer’s production files
- Operator training covers tool head changeover, file import from PLT/DXF/AI/PDF sources and daily calibration checks
- Spare parts list identifies knife blades, creasing wheels and vacuum seals with reorder intervals
What to Include in Your Inquiry
Send the material type, thickness range, maximum sheet dimensions and expected daily cutting volume so the correct tool head and vacuum configuration can be selected. Confirm your workshop voltage, frequency and plug standard, along with the preferred control panel language. If your design team works in a specific CAD or nesting platform, share a sample file so software compatibility is verified before quotation.
Frequently Asked Questions
Q: How do I decide between an oscillating knife and a laser for my material?
A: Oscillating knives cut without heat, which avoids melted edges on foam, fabric and PVC-based signage materials. Lasers seal edges on synthetics and handle intricate acrylic lettering. The choice depends on material composition, edge quality requirements and whether heat-affected zones are acceptable for the finished product. A sample cut on both methods clarifies the decision.
Q: What factors matter beyond raw working area when sizing a flatbed cutting table?
A: Sheet dimensions are only the starting point. Vacuum zone count determines whether small parts stay flat during cutting, and the material feed method — manual lay-up, conveyor or roll feed — affects usable cutting area. Operator access space around the 3300 × 2100 × 1350 mm machine envelope must also be planned into the workshop layout.
Q: How should tool heads be selected for different materials and thicknesses?
A: Oscillating knives handle dense, thick materials up to the machine’s verified cutting depth. Creasing wheels score fold lines in carton without cutting through. Driven rotary knives prevent fraying on woven textiles. The selection must match material density and the edge finish requirement, confirmed by a test cut on the buyer’s actual stock.
Q: Why must voltage and control language be confirmed before production?
A: The 9 kW vacuum pump and servo drives draw significant current, and a workshop circuit that cannot sustain the load at the correct voltage will cause intermittent faults or drive damage. Control panel language affects daily operator efficiency and safety comprehension. Both are locked in before production to avoid costly field modifications [NEED_CITE: voltage and frequency standards by export market].
Q: What can CCD camera contour recognition track, and where does it fall short?
A: CCD systems read printed registration marks to align cut paths with pre-printed graphics, which is essential for signage and packaging prototype work. Performance depends on mark contrast, lighting consistency and print quality. At very high cutting speeds, low-contrast marks may be missed, so production speed must be validated during the sample cutting stage.
Configurable Tool Head Array — knife, laser and multi-tool cutting systems matched to material and volume rather than forcing one method across every job.
Technical Specifications
| Parameter | Value |
|---|---|
| Model | 1625 |
| Product Type | CNC Oscillating Knife Cutting Machine |
| Working Area | 1600 × 2500 mm |
| Tool Head Options | Oscillating knife, Driven rotary knife, Creasing wheel, Kiss cutting tool, Pneumatic knife, Milling tool, V groove knife |
| Cutting Speed | 0–1500 mm/s |
| Cutting Thickness | ≤ 40 mm (basis not stated in source) |
| Cutting Accuracy | ±0.1 mm |
| Vacuum Table | Aluminum bellows vacuum table |
| Vacuum Pump Power | 9 kW |
| Drive System | Servo motors (Panasonic, Delta, Dorna options) |
| Control System | PLC control panel with optional display languages |
| Voltage Options | 110V, 220V, 380V |
| File Formats Supported | PLT, DXF, AI, PDF |
| Safety Devices | Infrared sensor device, emergency stop device |
| Machine Size | 3300 × 2100 × 1350 mm |
Application Suitability
| Application | Material or Output |
|---|---|
| Packaging sample making | Cardboard, corrugated carton, foam board, honeycomb board |
| Advertising and signage | PVC foam board, acrylic sheet, vinyl, magnet sheet, KT board |
| Automotive interior trimming | Seat cover leather, synthetic leather, carpet, floor mats, door panel felt |
| Furniture and home decor | Genuine leather, PU leather, fabric, cushion foam, curtain cloth |
| Footwear and luggage | Shoe uppers, insoles, luggage shells, fabric linings |
| Composite material fabrication | Carbon fiber prepreg, fiberglass cloth, sound insulation foam, PTFE gasket |
Why the Wrong Tool Head Ruins a Perfectly Sized Machine
A machine specified on working area alone often fails when the material thickness or type is not matched to the correct tool head and vacuum zoning. The cutting method must follow the material, not the other way around.
I have walked into workshops where a buyer invested in a large-format flatbed digital cutting table expecting it to handle dense foam gaskets and corrugated board on the same shift, only to discover the oscillating knife was crushing the foam while the drag knife was leaving ragged edges on the carton. The working area was right, but the tooling was wrong [NEED_CITE: tool head selection criteria for non-metallic CNC cutting]. A CNC oscillating knife cutting machine manufacturer worth working with will ask what you are actually cutting before discussing table dimensions.
Matching Tool Heads to the Production Floor
The 1625 supports seven interchangeable tool heads, each solving a different production problem. Oscillating knives handle dense foam and thick gasket material where drag knives would stall, while driven rotary knives slice through woven fabric without fraying the edges. Creasing wheels score carton stock for folding without cutting through, and kiss cutting tools remove vinyl decals from their backing without damaging the release liner. Switching heads takes minutes on the shop floor, so a single CNC oscillating knife cutting machine manufacturer can supply one machine that covers packaging prototypes in the morning and leather uppers in the afternoon.
Software Compatibility Before the Order is Signed
File format mismatches between the design office and the cutting floor cause more downtime than mechanical failure. The 1625 accepts PLT, DXF, AI and PDF directly, which covers the output of most mainstream vector design and packaging CAD systems. When a buyer sends a sample file before the order, the nesting workflow and cut path logic can be verified on the actual control panel, eliminating the situation where the machine sits idle while operators manually retrace toolpaths [NEED_CITE: common CNC file format compatibility issues in packaging production]. The PLC control panel supports English, Russian, Italian and Chinese, with special languages customizable for specific export markets.
Reading the Specification Sheet Beyond Working Area
The 1600 × 2500 mm working area covers standard full sheets of corrugated board and most leather hides, but the aluminum bellows vacuum table and 9 kW vacuum pump are what actually hold the material flat during high-speed cutting. Without sufficient vacuum pressure, small cardboard packaging samples lift off the bed and produce dimensional errors, which is why the vacuum zone count matters as much as the table size. Cutting accuracy of ±0.1 mm is achievable when the servo-driven system (available with Panasonic, Delta or Dorna motors) is paired with the correct vacuum zoning for the part geometry. Cutting speed runs up to 1500 mm/s, though actual feed rates depend on material density and knife penetration depth. The cutting thickness is listed at ≤ 40 mm, though this figure varies with material compressibility and must be confirmed on a sample before committing to a production specification.
The Hidden Cost of Skipping the Sample Cut
Buyers who skip the material sample test frequently discover problems only after the machine is bolted to their factory floor. A vacuum table with too few zones will allow small signage letters to shift during cutting, producing scrap rather than sellable product [NEED_CITE: vacuum table zoning requirements for small part cutting]. A voltage mismatch that was not confirmed before shipment can trip the workshop breaker the moment the 9 kW vacuum pump starts, or worse, burn out the servo drive. These are not manufacturing defects — they are specification gaps that a proper pre-order sample cutting protocol catches before the crate leaves the factory.
Why Source This Range Here
In-house design and production covers both knife and laser cutting technologies, so a buyer evaluating the 1625 can compare it directly against CO2 and fiber laser options for the same material and make an informed choice. Tool head and table configuration is specified per material type and daily volume, not sold as a fixed package. CCD camera positioning is available for printed contour work where registration marks must be tracked at production speed. Voltage, plug type, control language and software compatibility are confirmed before the order enters production. Sample cutting on the buyer’s own material is standard practice, producing a documented report on edge quality, achievable thickness and cycle time before any commitment is made.
Documentation & Verification
- Machine specification sheet listing every configured tool head, working area and vacuum zone count
- Sample cutting report on buyer’s own material confirming edge quality and cutting depth
- Electrical schematic with voltage, plug type and frequency confirmed for target market
- Software licence and file format compatibility note for the buyer’s existing nesting workflow
- Factory test record documenting axis travel, vacuum pressure and cut accuracy before dispatch
- Operation and maintenance manual with tool change procedures and spare parts list
Installation, Commissioning & Support
- Floor space requirement accounts for the 3300 × 2100 mm machine footprint plus operator access on three sides
- Dedicated power circuit sized for the 9 kW vacuum pump plus servo drive load at the confirmed voltage
- Machine ships with tool heads pre-calibrated; on-site assembly limited to gantry, vacuum table and electrical connection
- First-run commissioning includes vacuum zoning test and tool path verification on buyer’s production files
- Operator training covers tool head changeover, file import from PLT/DXF/AI/PDF sources and daily calibration checks
- Spare parts list identifies knife blades, creasing wheels and vacuum seals with reorder intervals
What to Include in Your Inquiry
Send the material type, thickness range, maximum sheet dimensions and expected daily cutting volume so the correct tool head and vacuum configuration can be selected. Confirm your workshop voltage, frequency and plug standard, along with the preferred control panel language. If your design team works in a specific CAD or nesting platform, share a sample file so software compatibility is verified before quotation.
Frequently Asked Questions
Q: How do I decide between an oscillating knife and a laser for my material?
A: Oscillating knives cut without heat, which avoids melted edges on foam, fabric and PVC-based signage materials. Lasers seal edges on synthetics and handle intricate acrylic lettering. The choice depends on material composition, edge quality requirements and whether heat-affected zones are acceptable for the finished product. A sample cut on both methods clarifies the decision.
Q: What factors matter beyond raw working area when sizing a flatbed cutting table?
A: Sheet dimensions are only the starting point. Vacuum zone count determines whether small parts stay flat during cutting, and the material feed method — manual lay-up, conveyor or roll feed — affects usable cutting area. Operator access space around the 3300 × 2100 × 1350 mm machine envelope must also be planned into the workshop layout.
Q: How should tool heads be selected for different materials and thicknesses?
A: Oscillating knives handle dense, thick materials up to the machine’s verified cutting depth. Creasing wheels score fold lines in carton without cutting through. Driven rotary knives prevent fraying on woven textiles. The selection must match material density and the edge finish requirement, confirmed by a test cut on the buyer’s actual stock.
Q: Why must voltage and control language be confirmed before production?
A: The 9 kW vacuum pump and servo drives draw significant current, and a workshop circuit that cannot sustain the load at the correct voltage will cause intermittent faults or drive damage. Control panel language affects daily operator efficiency and safety comprehension. Both are locked in before production to avoid costly field modifications [NEED_CITE: voltage and frequency standards by export market].
Q: What can CCD camera contour recognition track, and where does it fall short?
A: CCD systems read printed registration marks to align cut paths with pre-printed graphics, which is essential for signage and packaging prototype work. Performance depends on mark contrast, lighting consistency and print quality. At very high cutting speeds, low-contrast marks may be missed, so production speed must be validated during the sample cutting stage.

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