FT-C Laser Cutting Machine

The FT-C laser cutting machine delivers high-precision tube cutting with a pneumatic chuck, advanced fiber laser, and a stable structure for efficiency, accuracy, and smooth operation.
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FT-C Laser Cutting Machine
(8 customer reviews)

Product Description

The FT-C laser cutting machine from Faster Laser is designed for high-speed, high-precision tube cutting, making it an ideal solution for industries requiring accuracy, efficiency, and reliability. Equipped with an advanced fiber laser generator, it delivers powerful, stable cutting across a variety of metal tubes, including stainless steel, carbon steel, aluminum, and brass. The precision laser cutting head ensures sharp, clean cuts with minimal material waste, while the reliable pneumatic chuck firmly holds tubes in place, preventing movement for more accurate results. The stable tube welding bed enhances structural integrity, reducing vibration and ensuring long-term precision.
A high torque servo motor and high-performance reducer provide smooth motion control, while the high-precision linear guide enhances cutting accuracy. The user-friendly control system simplifies operation, allowing for easy adjustments and increased productivity. Ideal for automotive, aerospace, construction, and industrial manufacturing, the FT-C laser cutting machine is the perfect choice for businesses seeking high-speed, precision tube cutting with efficient and consistent performance.

Standard Configurations

Product Advantages

High Cutting Precision

Providing ultra-fine cuts with minimal deviation, enabling the fabrication of complex shapes, intricate patterns, and delicate metals.

Faster Processing Speed

Operates at significantly higher speeds than CO2 lasers, boosting production efficiency and reducing turnaround time for orders.

Low Operating Costs

They consume less electricity and require minimal maintenance, thus reducing long-term production costs.

Excellent Material Versatility

Handles a wide range of metals—stainless steel, carbon steel, aluminum, brass—with consistent quality across varying thicknesses.

Stable Performance and Durability

Built with robust components for long-term operation under tough conditions, minimizing downtime and maximizing productivity.

Eco-Friendly and Clean Cutting

Producing fewer emissions, cleaner edges, and environmentally responsible manufacturing without compromising quality.

Technical Parameters

Optional Configurations

Product Applications

The FT-C laser cutting machine is designed for high-precision tube and pipe processing, making it an essential tool for industries requiring efficiency, accuracy, and reliability. With its advanced fiber laser generator and precision laser cutting head, it delivers clean, accurate cuts across various metal tubes, including stainless steel, carbon steel, aluminum, and brass. In the automotive industry, the FT-C laser cutting machine is used for cutting exhaust pipes, chassis components, and structural tubing with high accuracy. The construction sector benefits from its ability to produce custom-cut tubes for frameworks, pipelines, and support structures. Aerospace manufacturers rely on its stability and precision for processing lightweight, high-strength tubing. Additionally, metal fabrication and machinery manufacturing industries use it for producing customized pipe fittings and industrial components. With its reliable pneumatic chuck, stable tube welding bed, and user-friendly control system, the FT-C laser cutting machine maximizes efficiency, productivity, and cutting quality, making it the ideal solution for advanced tube and pipe processing.
Laser Cutting Samples
Laser Cutting Samples
Laser Cutting Samples
Laser Cutting Samples
Laser Cutting Samples
Laser Cutting Samples

Frequently Asked Questions

What Is The Lead Time For The Machine?

The lead time for our fiber laser cutting machine is typically 30 to 40 working days, covering the entire process from order confirmation to shipment. This timeframe ensures that every machine undergoes thorough manufacturing, assembly, and quality control before delivery. The production process begins with order confirmation, where design specifications and technical requirements are finalized. Standard models generally follow the expected lead time, while customized configurations may take longer due to additional engineering and component sourcing.
While the standard lead time remains within 30 to 40 working days, several factors can affect the actual delivery schedule. Custom orders with special features or additional accessories may require extended production time. Additionally, the availability of specific components and the overall factory workload can influence manufacturing speed. Bulk orders may take slightly longer due to increased quality control measures. External factors such as supply chain disruptions or peak production periods can also play a role. Once the machine is ready for dispatch, shipping duration depends on the chosen transportation method and the destination.
For those needing an expedited process, we recommend confirming orders early to secure a production slot, selecting standard models with minimal customization, and working closely with our team to explore the fastest shipping options. By following these steps, we can help reduce delays and ensure a smooth and timely delivery.

Selecting the best laser cutting machine depends on several factors, including the type of materials you work with, required precision, production volume, and budget.

  • Material Compatibility: Fiber lasers are ideal for metals like stainless steel, carbon steel, aluminum, brass, copper, and titanium. CO2 lasers suit non-metals such as wood, acrylic, plastic, fabric, and glass. Choosing the right type ensures optimal performance.
  • Material Thickness: Laser power determines cutting capacity. Low-power (1kW to 3kW) handles thin metals, mid-power (4kW to 12kW) cuts medium-thickness metals (up to 22mm), and high-power (20kW–60kW) cuts thick plates (up to 40mm). CO2 lasers work well for thin to medium non-metals but struggle with reflective metals.
  • Material Size: The cutting bed size should match the material dimensions. Small-format machines work for intricate designs, while medium/large-format machines handle full-size metal sheets. Larger cutting beds improve efficiency by minimizing repositioning.
  • Cutting Accuracy Requirements: Standard accuracy (±05mm) suffices for general fabrication, signage, and decorative work. High-precision (±0.02mm) is needed for aerospace, medical, and fine engraving. Servo motors, guide rails, and software control influence precision.
  • Laser Generator Brand Selection: The laser generator affects performance and longevity. IPG Photonics (Germany) offers top-tier precision, Raycus & Maxphotonics (China) provide cost-effective solutions, and RECI & Synrad are preferred for CO2 laser processing. Selection depends on budget and material needs.
  • Total Productivity Requirements: Production volume dictates machine choice. Low-production workshops can use manual-loading machines, medium factories need mid-range models with faster speeds, and large-scale industries benefit from high-power, fully automated machines with dual worktables.
  • Budget and Long-Term Investment: Costs vary by type and power. Fiber lasers range from $10,000 to $300,000+, while CO2 lasers cost $3,000 to $15,000. Besides upfront costs, factors like electricity, gas, maintenance, and software impact long-term investment.
  • Automation Options and Features: Automation boosts efficiency and reduces labor costs. Key features include auto-focusing heads, automatic loading/unloading, dual worktables, and CNC software integration. Essential for high-volume production, while manual or semi-automated options suit smaller operations.

Selecting the best laser cutting machine depends on multiple factors, including material type, thickness, size, accuracy needs, production volume, budget, and automation features. For cutting metals, fiber lasers provide the best efficiency, while CO2 lasers are better suited for non-metal applications. A well-chosen laser cutter ensures optimal performance, cost-effectiveness, and long-term reliability based on your specific manufacturing needs.

Laser cutting machines are widely used for precision cutting in industries such as metal fabrication, automotive, and electronics. To ensure seamless operation, these machines support a range of file formats that cater to different design software and user requirements.

  • DXF (Drawing Exchange Format): DXF is one of the most commonly used file formats in laser cutting. It is a vector-based format developed by Autodesk and is widely supported by CAD (Computer-Aided Design) software.
  • AI (Adobe Illustrator Format): AI files are vector graphics files created by Adobe Illustrator. They contain scalable, high-quality graphics, making them perfect for laser engraving and cutting.
  • PLT (Plotter File Format): PLT files are plotter-based vector files used for technical drawing and cutting. They are based on the HPGL (Hewlett-Packard Graphics Language) standard.
  • SVG (Scalable Vector Graphics): SVG is a widely used vector file format for web and design applications. It is XML-based and retains scalable quality.
  • PDF (Portable Document Format): PDF files can contain both vector and raster elements. Vector-based PDFs are preferred in laser cutting as they ensure clean and precise cuts.
  • DWG (Drawing File Format): DWG is a proprietary format developed by Autodesk for CAD designs. It contains detailed drawings used in engineering and manufacturing.

The compatibility of laser cutting machines with multiple file formats makes them adaptable for various industries, from industrial manufacturing to artistic design. Choosing the right file format ensures precise cuts, minimal errors, and high-quality output. For the best results, always use vector-based files such as DXF, AI, and DWG, as they maintain design accuracy and allow smooth cutting operations.

We offer a comprehensive warranty policy to ensure reliable performance and long-term support for our laser cutting machines. Below is a detailed breakdown of our warranty coverage, including the warranty period, terms and conditions for different components, and how customers can apply for warranty service.

  • 3-Year Warranty for the Entire Machine: The entire machine is warranted for 3 years from the date of delivery. Including: frame and structure, guide rails and transmission components, cutting head (excluding consumables), electrical system, and control panel. This warranty provides protection against defects in materials and workmanship. But, it does not cover damage caused by misuse, accidents, or improper maintenance.
  • 2-Year Warranty for the Laser Source: The laser source is a key component of the laser cutting machine, and we provide a two-year warranty to ensure its efficiency and durability. This warranty covers: manufacturing defects, performance issues within the specified warranty period, troubleshooting technical support. Customers should follow the recommended maintenance guidelines to extend the life of the laser source beyond the warranty period.
  • 1-Year Warranty for Core Components: Certain core components of the laser cutting machine are covered by a 1-year warranty, including: optical lenses and protective glasses, cooling system (chiller), circuit boards and power supply units, CNC controllers and related electronic devices. Proper handling and regular maintenance of these parts are essential to ensure long-term performance.
  • Warranty Terms & Conditions: While our warranty policy provides extensive coverage, it is subject to the following terms and conditions: Warranty starts from the date of delivery; Warranty covers manufacturing defects and failures in material or workmanship; Damage caused by improper operation, lack of maintenance, unauthorized modifications, or external factors (e.g., power surges, accidents) is not covered; Consumables such as nozzles, protective lenses, and filters are not covered under warranty. Warranty service is provided through remote support, part replacement, or on-site repair, depending on the nature of the problem.

Our laser cutting machine has a 3-year warranty on the entire machine, a 2-year warranty on the laser generator, and a 1-year warranty on core components. This structured warranty ensures that customers receive high-quality support and service. To maintain the performance of the machine and extend its life, we recommend regular maintenance and correct operation. If any problems arise, our technical support team can assist with troubleshooting and warranty claims.

Our laser cutting machines meet international quality, safety, and regulatory standards, ensuring reliability, compliance, and customer confidence. Below is a detailed overview of the key certifications our machines hold and their significance.

  • ISO 9001 Certification: ISO 9001 is an internationally recognized quality management system (QMS) standard issued by the International Organization for Standardization (ISO).
  • CE Certification: The CE (Conformité Européenne) certification is a mandatory marking for products sold in the European Economic Area (EEA), ensuring that they comply with EU safety, health, and environmental requirements.
  • FDA Certification: The FDA (U.S. Food and Drug Administration) certification applies to machines that emit laser radiation, ensuring their safety for use in the United States.

Our laser cutting machines are certified to meet international quality and safety standards, including ISO 9001, CE, and FDA certifications. These certifications ensure that our machines are manufactured with strict quality control, meet European safety regulations, and comply with U.S. laser safety requirements. Customers can be assured of high performance, reliability, and legal compliance when purchasing and operating our machines.

On-site technical support is available for laser cutting machines, providing customers with hands-on assistance for installation, troubleshooting, training, and maintenance. However, this service comes at an additional cost. The standard service fee is US$200 per day, and customers are also responsible for covering the engineer’s round-trip airfare, board, lodging, and local transportation if required. This ensures that customers receive expert guidance directly at their facility to maximize machine performance and minimize downtime. The process for requesting on-site support involves contacting customer service, providing details of the issue, receiving a cost estimate, and scheduling an engineer visit. While on-site service is a valuable option, customers can also choose remote support, which includes troubleshooting via phone, email, or video calls, as well as access to online training materials and documentation at no additional cost. If in-person assistance is necessary, we are ready to arrange a visit to ensure the machine operates efficiently and reliably.

Product Reviews

8 reviews for FT-C Laser Cutting Machine

  1. Connor

    For R&D projects, turnaround speed matters. I export DXF, upload, and hold a finished part in under an hour. Copper heat sinks stay perfectly flat, and micro text down to one millimeter remains sharp. The intuitive interface means I seldom need help from the shop team.

  2. Walter

    Complex chassis panels require myriad cutouts and countersinks. The laser takes care of cutouts, then marks pilot spots for drill locations, reducing errors. Edge precision keeps final assemblies square. Automatic calibration removes the need for manual shim adjustments, saving hours weekly.

  3. Paige

    Real-time inventory linkage updates material balances when runs start, preventing double booking. Quick gas changeovers accommodate rush orders without delaying planned jobs. Shelf life tracking of lenses and filters happens automatically, ensuring we don’t use expired items.

  4. Dennis

    The laser’s narrow kerf and smooth edge prep improve welding penetration consistency. Parts fit with minimal gaps, reducing filler wire usage. Heat input is low, so distortion control is easier. Welder morale improved because they spent less time grinding and straightening.

  5. Iris

    I run a two-person metal sign shop. The laser’s auto-nest fills sheets efficiently, so we waste less material. Job setup wizards walk us through each step. Remote support fixed a parameter glitch in minutes. Customers compliment the clean edges and consistent quality.

  6. Lawrence

    Experimental battery enclosures need clean copper cuts and tight tolerances. The fiber laser delivers both. Edge surface roughness measures under 2 µm. The machine logs every parameter, helping with process validation. Quick swap to argon assist prevents oxidation on sensitive alloys.

  7. Brooke

    Stainless chokers cut on the laser follow fine curves without jagged edges. I can engrave serial numbers in the same program. Minimal burrs mean no sharp edges near skin. Customers appreciate the high polish finish achieved with little post-processing.

  8. Deanna

    I appreciate the modular design. Optic cartridges slide out without special tools, and predictive alarms flag consumables early. The fiber source shows zero power drop after a full year. Only a few greasy points need attention weekly, freeing time for other tasks and keeping uptime consistently above ninety-seven percent.

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Why Choose Us

Choosing the right laser cutting machine is critical to achieving outstanding production results. Faster Laser stands out as a trusted manufacturer with a proven track record of delivering high-quality, high-performance machines tailored to customer needs. We combine advanced technology, expert craftsmanship, and strong customer support to help businesses across industries reach their production goals faster and more efficiently. Our commitment to innovation, reliability, and customer satisfaction has earned us the trust of clients worldwide. Whether you are expanding your manufacturing capacity, starting a new project, or upgrading your production line, Faster Laser is the partner you can count on to deliver cutting-edge solutions and long-term value.

Cutting-Edge Technology

Every Faster Laser machine is built with the latest advancements, ensuring precise cuts, faster operation speeds, and the ability to handle complex designs effortlessly.

Superior Build Quality

We use only premium-grade materials and components, ensuring that every machine delivers consistent performance and maintains durability under heavy use.

Customized Solutions

Our team works closely with each customer to develop tailored laser cutting solutions that meet specific production needs and business objectives.

Comprehensive Support

Faster Laser provides thorough training, responsive technical support, and ongoing maintenance services to keep your machines running at peak efficiency.

Cost-Effective Investment

We offer high-quality laser cutting machines at competitive prices, ensuring you get maximum performance and long-term value from your investment.

Proven Industry Experience

With years of expertise and a strong global client base, Faster Laser has built a reputation for reliability, innovation, and customer satisfaction.

Get Laser Cutting Solutions

Elevate your manufacturing capabilities with our state-of-the-art laser cutting machines. Designed for industries ranging from automotive and aerospace to metal fabrication and electronics, our cutting-edge technology ensures you achieve the highest level of precision and performance.
Our laser cutting machines are suitable for cutting a variety of materials, including stainless steel, aluminum, brass, copper, wood, plastic, etc. From prototyping to full-scale production, our solutions are built to handle any task with ease. Whether you’re scaling up or optimizing your current process, we have a machine that fits your needs.
Contact us today to learn more about how our laser cutting machines can transform your business. Our team of experts will guide you through the best solutions for your specific requirements and help you get started. Request a free quote or consultation now. Let’s discuss your next project!
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