VankCut-1390FL Enclosed Fiber Laser Cutter
The VankCut-1390FL is a fully enclosed fiber laser cutter with a 1300 × 900 mm bed and 1.5, 2 or 3 kW source options for qualified thin-sheet metal work. Its compact format suits detailed flat parts such as eyewear components, watch blanks, jewelry parts, electronics hardware, nameplates and small precision assemblies.
- Work area: 1300 × 900 mm nominal bed for detailed sheet-metal layouts
- Laser source: 1.5/2/3 kW MAX, Raycus, IPG or approved equivalent, finalized by sample and quotation
- Cutting head: Raytools-class autofocus head with capacitive height following, model matched to output power
- Control: Friendess FSCUT2000S-class motion control with the compatible CypCut release
- Cooling: S&A CWFL-class dual-circuit chiller selected for the delivered source and cutting head
- Motion: Servo, rack-and-pinion and linear-guide components documented in the final bill of materials
- Safety and extraction: Enclosed chassis, observation window, interlocks and source-capture exhaust confirmed for the destination configuration

VankCut-1390FL Specifications
| Specification | VankCut-1390FL Configuration |
|---|---|
| Model | VankCut-1390FL |
| Nominal work area | 1300 × 900 mm |
| Enclosure | Fully enclosed cutting area; observation window, access interlocks and finished-system classification confirmed per order |
| Laser output options | 1.5/2/3 kW continuous-wave fiber source |
| Source brands | MAX, Raycus, IPG or approved equivalent; exact model, fiber and warranty by quotation |
| Nominal wavelength | Approximately 1080 nm, source-dependent |
| Cutting head | Raytools-class autofocus head with capacitive height following; exact model matched to power and fiber interface |
| Z-axis travel | 100 mm nominal |
| XY motion | Servo drive, rack-and-pinion transmission and linear guide rails; final brands by bill of materials |
| Control system | Friendess FSCUT2000S-class or confirmed equivalent |
| Software | Compatible CypCut release with nesting, edge finding and process-layer functions according to delivered license and hardware |
| Axis positioning reference | Up to ±0.01 mm under stated factory acceptance conditions; not the finished-part cut tolerance |
| Axis repeatability reference | Up to ±0.005 mm under stated factory acceptance conditions; verify on the delivered machine |
| Finished-cut tolerance | Established by sample from geometry, kerf, heat input, sheet flatness, material, gas, focus and process settings |
| Assist gases | Oxygen, nitrogen or qualified compressed air selected by material, thickness and required edge condition |
| Qualified materials | Carbon steel, stainless steel, galvanized sheet, aluminum, brass and other source-approved sheet metals |
| Cooling | Power-matched dual-circuit industrial water chiller for source and cutting head |
| Electrical supply | Destination-specific three-phase supply; voltage, frequency, protection and grounding confirmed before shipment |
| Extraction | Source-capture fume extraction and filtration sized for material, coating and production duty |
| Laser safety | Class 4 laser source; finished-system classification, enclosure, window and interlocks confirmed for destination |
| Acceptance basis | Approved customer drawing, material lot, thickness, gas, edge quality, contour tolerance, cycle time and final configuration |
| Packaging | Export packaging confirmed in the order and shipping plan |
Thin-Sheet Cutting Thickness Reference
| Material | 1.5 kW | 2 kW | 3 kW | Qualification |
|---|---|---|---|---|
| Carbon steel | 6 / 8 mm* | 8 / 12 mm* | 12 / 16 mm* | Gas, grade, coating, piercing and edge requirement determine acceptance. |
| Stainless steel | 3 / 4 mm* | 4 / 6 mm* | 6 / 8 mm* | Nitrogen purity, pressure, nozzle, focus and finish requirement are critical. |
| Aluminum | 2 / 3 mm* | 3 / 5 mm* | 5 / 7 mm* | Use a source and head approved for reflective metals; sample qualification is mandatory. |
| Brass | 1 / 2 mm* | 2 / 3 mm* | 3 / 4 mm* | Back-reflection protection, alloy, surface and gas must be approved before cutting. |
Cutting Thickness and Quality Notes
1. Reference values before the slash indicate a production-oriented starting point, not a guaranteed thickness or edge quality.
2. Values after the slash indicate occasional blanking references with slower speed and lower edge quality; they are not intended for continuous production.
3. Aluminum, brass, copper and other reflective metals require a source, fiber interface and cutting head approved for back-reflection risk.
4. Final capability depends on alloy, grade, coating, sheet flatness, gas type and purity, pressure, nozzle, focus, piercing strategy, edge requirement and duty cycle. Approve a real sample before ordering.
Qualified Sheet Metals
Typical candidates include carbon steel, stainless steel, galvanized sheet, aluminum and brass. Copper, titanium, precious metals and reflective alloys require written source approval and a process trial. This flatbed configuration is for sheet; tube or profile cutting requires a separate rotary or tube-laser system.
Applications and Industries
Applications include eyewear components, watch and jewelry blanks, electronics hardware, nameplates, signs, kitchenware, enclosures, brackets, precision sheet-metal parts and prototypes. Regulated, load-bearing or safety-critical products require the customer’s own dimensional and material validation.









Compact 1300 × 900 mm Enclosed Platform
The enclosed 1390FL platform is designed for detailed thin-sheet work. Finished-part tolerance is approved from the customer drawing and sample, not inferred from the machine-axis positioning reference.

Configured CW Fiber Laser Source
- Source brand, model, rated output and fiber interface documented in the quotation
- Installation altitude, ambient temperature and humidity confirmed for the destination
- Beam delivery and process package matched to the selected 1.5, 2 or 3 kW output
- Output-fiber length and routing finalized with the machine layout
- Protective optics, connector cleanliness, alarms and chiller condition included in preventive maintenance
- Back-reflection protection confirmed before processing aluminum, brass, copper or other reflective alloys
Auto-Focus Laser Cutting Head
A Raytools-class autofocus head combines motorized focus with capacitive height following. The exact model, power rating, fiber interface, protective windows, nozzle range and collision protection are matched to the delivered source.


CypCut Control System
The compatible CypCut release provides drawing import, layers, nesting, edge finding and process control according to the delivered FSCUT hardware and license. Operator training and a backed-up machine-parameter file are required.
HIWIN Linear Guideways
Linear guide rails support the XY motion system. Rail brand, size, lubrication method, rack, reducer and servo package are confirmed in the final bill of materials and maintenance schedule.


S&A Water Chiller
A power-matched dual-circuit chiller cools the fiber source and cutting-head optics. Coolant, setpoints, alarms, flow, ambient range and maintenance interval follow the delivered source and chiller manuals.
VankCut-1390FL Fiber Laser Cutter FAQ
What is the cutting accuracy of the 1390 fiber laser cutting machine?
The machine-axis reference is up to ±0.01 mm positioning and ±0.005 mm repeatability under stated factory conditions. Finished-part tolerance is different and must be approved from the drawing, kerf, material, gas, heat input and measured sample.
How does accuracy vary when cutting different materials?
- Material and geometry: Alloy, thickness, flatness, coating, feature size and heat accumulation affect dimensional results.
- Machine condition: Calibration, backlash, guides, rack, servo tuning, nozzle centering and height following affect trajectory.
- Process settings: Focus, speed, power, piercing, gas purity and pressure, nozzle and kerf compensation affect edge and size.
- Acceptance: Use the actual drawing and material lot, then measure agreed features with a documented inspection method.
MAX, Raycus, IPG or another approved continuous-wave source can be configured. Confirm the exact brand, model, rated output, fiber interface, back-reflection protection, warranty and local service in the quotation.
What laser source brands does the 1390 support?
The machine supports premium brands including MAX, Raycus, IPG, GW, and nLIGHT, offering flexibility for different performance and budget needs.
What are the maintenance costs for the 1390 fiber laser cutting machine?
Routine costs include nozzles, ceramic rings, protective windows, gas, filters, extraction service, coolant, lubrication and scheduled checks. Cost depends on duty cycle, material, gas quality, consumable life and local service.
What after-sales service is provided?
Remote support, commissioning, training, spare parts, on-site service and warranty terms are defined in the final sales contract. Confirm coverage, exclusions, response times and local responsibilities before ordering.
What materials can the 1390FL cut?
Qualified carbon steel, stainless steel, galvanized sheet, aluminum and brass are common. Copper, titanium, precious metals and reflective alloys require written source approval and a sample. This flatbed page does not cover tube cutting.
What thickness can the 1.5, 2 and 3 kW versions cut?
The table provides production-oriented and occasional-blanking reference pairs. They are not guarantees. Final thickness and edge quality require the actual alloy, grade, coating, gas, nozzle, drawing and sample approval.
What laser power options are available?
This 1390FL page covers 1.5, 2 and 3 kW configurations. Higher powers require a separately engineered platform, head, motion system, chiller, extraction and electrical package.
What is the working area of the 1390FL?
The VankCut-1390FL has a nominal 1300 × 900 mm bed. Compact 6060 and larger sheet formats are separate models with different enclosures, motion, sources and utilities.
Are installation, training and technical support available?
Yes, subject to the sales contract. Define site preparation, commissioning method, operator and maintenance training, language, travel, remote access, response times and warranty terms before shipment.
What conformity documents, software and file formats are supplied?
Conformity documents depend on the destination and final configuration; request the exact declaration, standards and machine serial data before shipment. The delivered FSCUT/CypCut package supports approved drawing formats such as DXF, subject to software version and import testing.
Can I test the machine with my own samples?
Factory or remote sample testing can be arranged subject to scheduling and material safety review. Provide the drawing, material specification, thickness, coating, tolerance, edge requirement and target cycle time.
How does a fiber laser compare with a CO2 laser?
At these wavelengths, fiber lasers are generally preferred for sheet-metal cutting, while CO2 lasers are commonly selected for acrylic, wood, paper, leather and other approved nonmetals. Choose by material absorption, geometry, thickness, edge requirement and sample result.
Can the 1390FL be configured for my process?
Power, source brand, cutting head, gas package, chiller, extraction, software, electrical supply, guarding and service can be configured within the 1390FL platform limits. The approved quotation and sample define the final scope.
