FL-2030
200 × 300 mm
This high-precision fiber laser cutting machine is designed for small-format and detailed metal processing. With working areas from 200 × 300 mm to 1300 × 900 mm and laser power from 800 to 3000 W, it is suitable for electronics, precision hardware, jewelry, automotive parts and metal components. High-precision screw modules on all three axes ensure stable motion, while the CCD vision system supports accurate positioning.
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Tell us your material, thickness & throughput — an applications engineer replies with a real configuration and price range within one business day.
This high-precision fiber laser cutting machine is designed for small-format and detailed metal processing. With working areas from 200 × 300 mm to 1300 × 900 mm and laser power from 800 to 3000 W, it is suitable for electronics, precision hardware, jewelry, automotive parts and metal components. High-precision screw modules on all three axes ensure stable motion, while the CCD vision system supports accurate positioning. Compared with conventional small-format cutting machines, it provides higher precision, a more compact structure and greater application flexibility.
| Core Value | Evidence | Visual |
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High-Precision Cutting |
Positioning accuracy: ±0.03 mm; repeat positioning accuracy: ±0.02 mm |
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Flexible Machine Configurations |
Working areas: 200 × 300 mm, 600 × 600 mm, 800 × 800 mm and 1300 × 900 mm; laser power: 800–3000 W |
High-Precision Fiber Laser Cutting MachineFL-2030–1309 Series Compact Size · High Precision · Stable and Reliable · Wide Application FL-2030200 × 300 mm FL-6060600 × 600 mm FL-8080800 × 800 mm FL-13091300 × 900 mm
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Stable and Efficient Processing |
Travel speed: 30 m/min; maximum acceleration: 0.5 G; three-axis high-precision screw modules |
Three-Axis Precision Motion SystemX AxisHigh-precision ball-screw drive. Y AxisDual linear-guide motion support. Z AxisHigh-precision ball-screw module. Fiber Laser Cutting HeadHigh-precision focusing optics for detailed cutting.
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CCD Vision Positioning |
CCD-driven cutting system improves positioning accuracy and expands application scenarios |
Vision Positioning and Precision AlignmentThe CCD camera scans an irregular workpiece and detects its position and orientation for accurate cutting.
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Compact Enclosed Design |
Compact machine structure with enclosed processing area for small-part production |
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| Capability | Description | Evidence | Visual |
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Dual-Direction Workpiece Clamping |
The dual-direction clamping platform secures the sheet from both sides, reducing movement and vibration during processing. It helps maintain stable workpiece positioning and consistent cutting accuracy throughout detailed and high-precision production. |
Dual-direction fixed clamping; positioning accuracy: ±0.03 mm; repeat positioning accuracy: ±0.02 mm. |
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Flexible Control System Options |
Multiple compatible control-system options allow users to select an operating platform that matches their production habits and application requirements. This flexibility simplifies machine operation, programming and workflow integration for different processing environments. |
Compatible with Bochu, Weihong, Jiaqiang and JCZ control systems for flexible and efficient operation. |
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Precision Dust Protection |
The enclosed protection structure limits dust accumulation around sensitive mechanical and optical components. It helps reduce guide-rail wear, ball-screw contamination, motion jamming, accuracy loss and electrical faults during continuous industrial operation. |
Protects guide rails, ball screws, bearings, laser cutting head, sensors and internal electrical components from processing dust |
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Automatic Collision Avoidance |
The intelligent height-control system continuously monitors the distance between the cutting head and sheet surface. When a potential collision is detected, it can adjust the head height or stop processing to protect the equipment and workpiece. |
Real-time cutting-head distance monitoring; collision prediction; automatic height adjustment or emergency machine stop |
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| Material / Workpiece | Thickness / Size | Recommended Configuration | Process Note |
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Thin Stainless Steel Sheet |
0.2–3.0 mm |
1000–1500 W fiber laser, CCD vision positioning, nitrogen assist gas |
Suitable for precision holes, complex contours and clean edge cutting with minimal deformation. |
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Copper / Brass Components |
0.2–2.0 mm |
1500–2000 W fiber laser, high-stability cutting head, nitrogen or air assist |
Recommended for reflective materials and small conductive parts requiring accurate cutting paths. |
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Aluminum Sheet / Aluminum Parts |
0.3–3.0 mm |
1000–2000 W fiber laser, enclosed structure, high-precision screw modules |
Ideal for lightweight parts with detailed profiles; helps maintain stable accuracy and smooth edges. |
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Precision Alloy / Small Metal Parts |
0.2–2.0 mm |
1000–1500 W fiber laser, CCD camera system, three-axis precision motion system |
Good for small-format, high-value parts that require stable positioning and repeatable cutting quality. |
| Industry | Typical Workpiece | Customer Pain Point | How This Machine Helps |
|---|---|---|---|
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Electronics |
Shielding covers, connector parts, sensor brackets |
Small parts require high precision, fine holes and low thermal deformation |
Delivers accurate cutting, stable repeatability and clean edges for compact electronic components. |
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Medical Devices |
Surgical accessories, stainless housings, precision metal components |
Strict dimensional tolerance and high surface-quality requirements |
Supports high-precision processing with stable motion control and clean, detailed cutting results. |
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Jewelry |
Metal tags, decorative pieces, fine-pattern components |
Complex patterns and tiny features are difficult to cut consistently |
CCD positioning and precision motion modules improve detail cutting and processing consistency. |
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Precision Parts |
Hardware inserts, small mechanical parts, custom metal components |
Multiple part sizes and complex contours reduce production efficiency |
Offers flexible format options, fast cutting speed and reliable accuracy for batch and custom production. |
| Material | Thickness | Feature Size | Laser Power | Kerf Width | Tolerance | Image |
|---|---|---|---|---|---|---|
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Stainless Steel 304 |
0.5 mm |
Min. hole φ0.6 mm |
1000 W |
0.08–0.12 mm |
±0.05 mm |
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Carbon Steel |
1.0 mm |
Min. slot 0.8 mm |
1000 W |
0.10–0.15 mm |
±0.05 mm |
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Aluminum Alloy 5052 |
1.0 mm |
Min. hole φ1.0 mm |
1500 W |
0.12–0.18 mm |
±0.06 mm |
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Brass Sheet |
0.8 mm |
Min. feature 1.0 mm |
1500–2000 W |
0.12–0.20 mm |
±0.07 mm |
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Copper Sheet |
0.5 mm |
Min. feature 1.0 mm |
2000 W |
0.15–0.22 mm |
±0.08 mm |
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Precision Alloy Sheet |
0.3 mm |
Min. hole φ0.5 mm |
1000–1500 W |
0.08–0.12 mm |
±0.05 mm |
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| Parameter | Value |
|---|---|
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Model |
FL-CPR-2030 / FL-CPR-6060 / FL-CPR-8080 / FL-CPR-1309 |
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Machine Dimensions |
Vary by model and selected configuration; confirm with the final machine layout drawing |
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Net Weight |
Varies by working area, laser power and optional configuration; confirm in the technical quotation |
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Warranty |
Subject to the final sales contract and selected component warranty terms |
| Parameter | Value |
|---|---|
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Laser Power |
800W / 1500 W / 2000 W / 3000 W |
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Working Area |
200 × 300 mm / 600 × 600 mm / 800 × 800 mm / 1300 × 900 mm |
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Positioning Accuracy |
±0.03 mm |
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Minimum Kerf Width |
Depends on material type, thickness, laser power, focal position and assist gas; sample testing required |
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Repeat Positioning Accuracy |
±0.02 mm |
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Travel Speed |
Up to 30 m/min |
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Maximum Acceleration |
0.5 G |
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Motion System |
High-precision screw modules on the X, Y and Z axes |
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Control System Options |
Bochu, Weihong, Jiaqiang or JCZ, subject to final configuration |
| Parameter | Value |
|---|---|
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Voltage / Frequency |
Customized according to the destination country and selected laser power; confirm before production |
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Rated Power Consumption |
Depending on the laser source, water chiller, extraction system and auxiliary equipment |
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Operating Environment |
Clean, dry and well-ventilated indoor workshop; avoid condensation, excessive dust, corrosive gas and strong vibration |
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Safety Requirement |
Reliable grounding, industrial fume extraction, protective enclosure and safety interlocks are required; installation must follow local electrical and laser-safety regulations |
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Assist Gas |
Nitrogen, oxygen or compressed air, selected according to the processed material and required edge quality |
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Dust Extraction |
Industrial extraction system recommended for continuous cutting operations |
Tell us your material, size or thickness and daily output target.
High-quality core parts ensure stable performance and long-term reliability.
High power, stable output
High precision, fast response
User-friendly interface
High precision, strong power
High rigidity, high accuracy
Efficient cooling, stable operation
Source graphic model label: FL-CM-3015G 6kW GENE
Precision · Reliability · Performance
| Component | Brand / Model | Function | Why It Matters | Image |
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Precision Machine Bed |
FerroLaser customized structure; subject to final machine size |
Provides a rigid structural foundation for the cutting platform, motion system and optical components while reducing vibration during precision processing. |
A stable machine structure helps maintain cutting accuracy, repeatability and consistent part quality during long production cycles. |
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Precision Screw Motion System |
High-precision ball-screw modules and linear guides; brand/model subject to configuration |
Drives the X, Y and Z axes with controlled, repeatable movement for small holes, narrow slots and complex metal contours. |
Precision mechanical transmission supports positioning accuracy of up to ±0.03 mm and stable detailed cutting. |
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CNC Control System |
Bochu / Weihong / Jiaqiang / JCZ; subject to selected configuration |
Controls drawing import, toolpath generation, cutting parameters, machine movement and real-time processing operations. |
Multiple control-system options allow the machine to match different operating habits, production workflows and application requirements. |
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Precision Fiber Laser Cutting Head |
Customized precision cutting head; brand/model subject to configuration |
Focuses the laser beam onto the material and maintains the required working distance during high-precision thin-sheet cutting. |
A stable cutting head supports fine kerf control, detailed contours and consistent edge quality while the collision-avoidance system helps protect the head and workpiece. |
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Fiber Laser Source |
800–3000 W customized fiber laser source; brand/model subject to configuration |
Generates the fiber laser beam used to process stainless steel, carbon steel, aluminum, brass, copper and precision alloys. |
Different power options allow the machine to be configured according to material type, thickness, cutting speed and required edge quality. |
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CCD Vision Positioning System |
CCD camera system; optional and subject to configuration |
Captures the workpiece image, identifies its position and orientation, and assists the control software with accurate cutting-path alignment. |
Vision positioning improves processing flexibility for irregular, pre-cut or difficult-to-fixture components and reduces manual alignment work. |
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| Option | Standard / Optional | Recommended For | Effect on Price / Lead Time |
|---|---|---|---|
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Linear Motor Drive |
Custom engineering option; not included in the standard screw-driven configuration |
Applications requiring higher acceleration, reduced mechanical transmission backlash and specialized ultra-precision motion performance |
Significant price increase; requires structural redesign and engineering evaluation, resulting in a longer production lead time |
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Dust Extraction System |
Optional; strongly recommended for continuous production |
Customers process coated, oily or high-volume metal sheets, especially in enclosed workshops with strict air-quality requirements |
Moderate additional cost; usually has limited impact on lead time when selected before production |
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Custom Fixture / Clamping System |
Optional; subject to workpiece evaluation |
Small, irregular, pre-cut or easily deformed components that cannot be positioned reliably on a standard cutting platform |
Price and lead time depend on fixture complexity; sample workpieces or technical drawings are required before quotation |
FOB Qingdao. The source price sheet lists 12 configurations at 1500 W, 2000 W and 3000 W; no 800 W price is supplied.
| Configuration | Working Area | Indicative Price |
|---|---|---|
| FL-CPR-2030-1500 W | 200×300 mm | USD 10,800 |
| FL-CPR-2030-2000 W | 200×300 mm | USD 12,500 |
| FL-CPR-2030-3000 W | 200×300 mm | USD 15,800 |
| FL-CPR-6060-1500 W | 600×600 mm | USD 13,800 |
| FL-CPR-6060-2000 W | 600×600 mm | USD 15,600 |
| FL-CPR-6060-3000 W | 600×600 mm | USD 19,200 |
| FL-CPR-8080-1500 W | 800×800 mm | USD 16,200 |
| FL-CPR-8080-2000 W | 800×800 mm | USD 18,300 |
| FL-CPR-8080-3000 W | 800×800 mm | USD 22,500 |
| FL-CPR-1309-1500 W | 1300×900 mm | USD 19,500 |
| FL-CPR-1309-2000 W | 1300×900 mm | USD 22,000 |
| FL-CPR-1309-3000 W | 1300×900 mm | USD 26,800 |
| Stage | Customer Provides | FerroLaser Delivers | Estimated Time |
|---|---|---|---|
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Requirement Review |
Material grade, thickness, maximum workpiece size, CAD drawings, required output, destination country and local voltage |
Recommended machine model, laser power, working area, control-system option, preliminary configuration and quotation |
1–2 business days after complete information is received |
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Configuration & Testing |
Material samples, DXF/DWG drawings, tolerance requirements, edge-quality criteria and sample acceptance requirements |
Sample cutting, process-parameter optimization, cutting video, sample photographs and inspection or sample report |
7–15 business days; custom fixtures or CCD testing may require additional time |
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Packaging & Shipping |
Confirmed trade terms, consignee information, destination port, customs requirements and required shipping documents |
Machine inspection, protective wrapping, export plywood case, packing list, commercial documents and logistics coordination |
3–7 business days after final acceptance; international transit time excluded |
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Installation & Support |
Prepared power supply, assist gas, grounding, extraction system, installation area and designated operators |
Installation guidance, commissioning support, control-software setup, operator training, maintenance instructions and troubleshooting |
Remote support: 1–3 business days; on-site service subject to engineer and travel schedule |
保修:1-year warranty and lifetime maintenance, excluding consumable parts, damage caused by improper operation and force-majeure events.
售后响应:Technical support is provided remotely through video, telephone or online communication. The guaranteed response time should be confirmed in the final sales contract.
备件:Long-term spare-parts support is available for protective lenses, nozzles, ceramic rings, sensors, filters, electrical components and other configuration-specific parts. The official service page states that related spare parts are supplied on a long-term basis.
| Field | Case 1 | Case 2 |
|---|---|---|
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Customer / Industry |
Anonymized medical-device and miniature precision-component supplier |
Anonymized electronics and precision sheet-metal component manufacturer |
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Market |
Medical-device component and precision-instrument manufacturing |
Electronics manufacturing and electrical-component supply chain |
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Challenge |
The customer required consistent processing of thin precision-alloy parts with fine openings and complex profiles while limiting deformation and maintaining repeatable workpiece positioning. |
The customer needed to cut thin stainless-steel shielding covers and connector components containing small holes, narrow slots and detailed external contours. Conventional processing required additional tooling and frequent manual alignment. |
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Configuration |
FL precision fiber laser cutting machine with 1500 W laser source, precision cutting head, enclosed dust protection and automatic collision avoidance |
FL precision fiber laser cutting machine with 1000 W laser source, high-precision screw motion system and optional CCD vision positioning |
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Material / Workpiece |
0.3–0.8 mm precision alloy and stainless-steel sensor plates, instrument brackets and miniature mechanical components |
0.5 mm stainless steel shielding covers, sensor brackets and electrical connector components |
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Solution |
The precision motion system maintained stable cutting paths, while dust protection helped protect critical components and automatic collision avoidance monitored the cutting-head clearance above the workpiece. These functions are described on the referenced product page. |
The machine used precision motion control and CCD-assisted alignment to process compact parts with detailed profiles while reducing manual positioning and dedicated-tooling requirements. |
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Verified Result |
Insert actual cutting tolerance, edge-quality assessment, production-capacity data and customer acceptance results before publication. |
Insert actual customer-approved tolerance, production speed, rejection-rate improvement and sample-test results before publication. |
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Evidence |
Sample-cut photographs, measurement report, production video and signed customer feedback required |
Customer sample photographs, cutting video, dimensional inspection report and customer authorization required |
A: Kerf width reaches approx. 0.08–0.12 mm for thin stainless steel. Minimum hole size varies with material, thickness and cutting parameters.
A: Positioning accuracy up to ±0.03 mm; repeat positioning accuracy up to ±0.02 mm.
A: Processes stainless steel, carbon steel, aluminum, brass, copper and selected precision alloy.
A: Yes. Optional CCD system identifies irregular workpieces for automatic alignment.
A: Tuned laser power, cutting speed, focus position and assist gas lower heat input and deformation.
A: Inspect via calipers, micrometers, optical measuring systems or coordinate measuring machines.
Share your material, thickness, workpiece size, drawing and production target for a source-backed configuration review.
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