FL-CPR | High-Precision Fiber Laser Cutting Machine

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.

Model
FL-CPR
Manufacturer
Jinan Twin Intelligent Equipment Co., Ltd.
  • CE-compliant & export-ready
  • 1-year limited warranty (extendable on core parts)
  • 30-day money-back guarantee
  • Free lifetime technical support
  • Worldwide shipping & logistics handled

Tell us your material, thickness & throughput — an applications engineer replies with a real configuration and price range within one business day.

High-Accuracy Cutting for Small and Complex Metal Parts

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.

  • 800W / 1500 W / 2000 W / 3000 WLaser Power
  • 200 × 300 mm / 600 × 600 mm / 800 × 800 mm / 1300 × 900 mmWorking Area
  • ±0.03 mmPositioning Accuracy
  • 0.08 mmMinimum Kerf Width

Core Value

Core Value Evidence Visual

High-Precision Cutting

Positioning accuracy: ±0.03 mm; repeat positioning accuracy: ±0.02 mm

Source image 07: precision cutting scene

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 Machine

FL-2030–1309 Series

Compact Size · High Precision · Stable and Reliable · Wide Application

FL-2030

200 × 300 mm

FL-6060

600 × 600 mm

FL-8080

800 × 800 mm

FL-1309

1300 × 900 mm

  • ±0.03 mmHigh Precision
  • 30 m/minFast Speed
  • 800–3000 WHigh Power
  • ±0.02 mmRepeat Positioning

Stable and Efficient Processing

Travel speed: 30 m/min; maximum acceleration: 0.5 G; three-axis high-precision screw modules

Three-Axis Precision Motion System

X Axis

High-precision ball-screw drive.

Y Axis

Dual linear-guide motion support.

Z Axis

High-precision ball-screw module.

Fiber Laser Cutting Head

High-precision focusing optics for detailed cutting.

  • ±0.03 mmPositioning Accuracy
  • 30 m/minTravel Speed
  • 800–3000 WLaser Power
  • ±0.02 mmRepeat Positioning Accuracy

CCD Vision Positioning

CCD-driven cutting system improves positioning accuracy and expands application scenarios

Vision Positioning and Precision Alignment

The CCD camera scans an irregular workpiece and detects its position and orientation for accurate cutting.

  • ±0.03 mmPositioning Accuracy
  • 30 m/minTravel Speed
  • 800–3000 WLaser Power
  • ±0.02 mmRepeat Positioning Accuracy

Compact Enclosed Design

Compact machine structure with enclosed processing area for small-part production

Source image 11: product exterior unverified model

Core Capabilities

Capability Description Evidence Visual

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.

Dual-direction clamping system securing a metal sheet for stable precision fiber laser cutting

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.

Precision fiber laser cutting machine touchscreen with multiple compatible CNC control system options

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

Precision dust protection system covering guide rails ball screws sensors and fiber laser cutting head

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

Automatic collision avoidance system monitoring the distance between laser cutting head and metal sheet

Applications and Materials

Material and Process Guidance

Material / Workpiece Thickness / Size Recommended Configuration Process Note

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.

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.

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.

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 Applications

Industry Typical Workpiece Customer Pain Point How This Machine Helps

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.

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.

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.

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.

Processing Samples

Material Thickness Feature Size Laser Power Kerf Width Tolerance Image

Stainless Steel 304

0.5 mm

Min. hole φ0.6 mm

1000 W

0.08–0.12 mm

±0.05 mm

0.5 mm stainless steel precision parts are cut by the FL-CPR fiber laser cutting machine with 1000 W laser and a fine 0.08–0.12 mm kerf

Carbon Steel

1.0 mm

Min. slot 0.8 mm

1000 W

0.10–0.15 mm

±0.05 mm

1.0 mm carbon steel brackets processed by FL-CPR precision fiber laser cutting machine with clean edges and ±0.05 mm tolerance

Aluminum Alloy 5052

1.0 mm

Min. hole φ1.0 mm

1500 W

0.12–0.18 mm

±0.06 mm

1.0 mm aluminum alloy electronic components cut by 1500 W precision fiber laser machine with detailed holes and smooth edges

Brass Sheet

0.8 mm

Min. feature 1.0 mm

1500–2000 W

0.12–0.20 mm

±0.07 mm

0.8 mm brass electrical components cut by FL-CPR fiber laser cutting machine using 1500–2000 W laser power

Copper Sheet

0.5 mm

Min. feature 1.0 mm

2000 W

0.15–0.22 mm

±0.08 mm

0.5 mm copper conductive parts processed by 2000 W precision fiber laser cutting machine with controlled kerf width

Precision Alloy Sheet

0.3 mm

Min. hole φ0.5 mm

1000–1500 W

0.08–0.12 mm

±0.05 mm

0.3 mm precision alloy components cut by FL-CPR high-precision fiber laser machine with fine features and consistent accuracy

Specifications

General Specifications

Parameter Value

Model

FL-CPR-2030 / FL-CPR-6060 / FL-CPR-8080 / FL-CPR-1309

Machine Dimensions

Vary by model and selected configuration; confirm with the final machine layout drawing

Net Weight

Varies by working area, laser power and optional configuration; confirm in the technical quotation

Warranty

Subject to the final sales contract and selected component warranty terms

Product-Specific Specifications

Parameter Value

Laser Power

800W / 1500 W / 2000 W / 3000 W

Working Area

200 × 300 mm / 600 × 600 mm / 800 × 800 mm / 1300 × 900 mm

Positioning Accuracy

±0.03 mm

Minimum Kerf Width

Depends on material type, thickness, laser power, focal position and assist gas; sample testing required

Repeat Positioning Accuracy

±0.02 mm

Travel Speed

Up to 30 m/min

Maximum Acceleration

0.5 G

Motion System

High-precision screw modules on the X, Y and Z axes

Control System Options

Bochu, Weihong, Jiaqiang or JCZ, subject to final configuration

Electrical and Environmental Requirements

Parameter Value

Voltage / Frequency

Customized according to the destination country and selected laser power; confirm before production

Rated Power Consumption

Depending on the laser source, water chiller, extraction system and auxiliary equipment

Operating Environment

Clean, dry and well-ventilated indoor workshop; avoid condensation, excessive dust, corrosive gas and strong vibration

Safety Requirement

Reliable grounding, industrial fume extraction, protective enclosure and safety interlocks are required; installation must follow local electrical and laser-safety regulations

Assist Gas

Nitrogen, oxygen or compressed air, selected according to the processed material and required edge quality

Dust Extraction

Industrial extraction system recommended for continuous cutting operations

Need Help Choosing a Configuration?

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Core Components

Key Components

High-quality core parts ensure stable performance and long-term reliability.

Laser Source

High power, stable output

Cutting Head

High precision, fast response

Control System

User-friendly interface

Servo Motor

High precision, strong power

Guide Rail

High rigidity, high accuracy

Cooling System

Efficient cooling, stable operation

Source graphic model label: FL-CM-3015G 6kW GENE

Precision · Reliability · Performance

Component Brand / Model Function Why It Matters Image

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.

Source image 22: machine bed exterior conflict

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.

Source image 23: motion system product attribution unverified

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.

Source image 24: control system product attribution unverified

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.

Source image 25: cutting head product attribution unverified

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.

Source image 26: laser source alt conflict

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.

Source image 27: ccd control assignment unverified

Configuration Options

Option Standard / Optional Recommended For Effect on Price / Lead Time

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

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

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

Standard Configuration Includes

  • FL-CPR-2030, FL-CPR-6060, FL-CPR-8080 or FL-CPR-1309 machine structure
  • High-precision ball-screw modules and linear guide rails on the X, Y and Z axes
  • Fiber laser source with selected power from 800–3000 W
  • Precision fiber laser cutting head
  • CNC control system and industrial operating screen
  • Enclosed protective cabinet and safety interlocks
  • Water chiller matched to the selected laser power
  • Standard metal-sheet cutting platform
  • Basic electrical cabinet and machine accessories

Options Requiring Engineering Confirmation

  • Linear-motor motion-system customization
  • Automatic loading and unloading integration
  • Customized working area or machine dimensions
  • Laser-source and cutting-head brand selection
  • Copper, brass or other highly reflective material configurations
  • Voltage, electrical standard and safety certification requirements

Indicative Configuration Prices

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

Service, Delivery, and Customer Cases

Delivery Process

Stage Customer Provides FerroLaser Delivers Estimated Time

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

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

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

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.

Customer Cases

Field Case 1 Case 2

Customer / Industry

Anonymized medical-device and miniature precision-component supplier

Anonymized electronics and precision sheet-metal component manufacturer

Market

Medical-device component and precision-instrument manufacturing

Electronics manufacturing and electrical-component supply chain

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.

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

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

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.

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.

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

FAQ

Q1. What are the minimum kerf width and hole size?

A: Kerf width reaches approx. 0.08–0.12 mm for thin stainless steel. Minimum hole size varies with material, thickness and cutting parameters.

Q2. What accuracy can the machine achieve?

A: Positioning accuracy up to ±0.03 mm; repeat positioning accuracy up to ±0.02 mm.

Q3. Which materials can it cut?

A: Processes stainless steel, carbon steel, aluminum, brass, copper and selected precision alloy.

Q4. Does it support vision positioning?

A: Yes. Optional CCD system identifies irregular workpieces for automatic alignment.

Q5. How is the heat-affected zone controlled?

A: Tuned laser power, cutting speed, focus position and assist gas lower heat input and deformation.

Q6. How is finished-part accuracy verified?

A: Inspect via calipers, micrometers, optical measuring systems or coordinate measuring machines.

Discuss Your Cutting Application

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