Providing ultra-fine cuts with minimal deviation, enabling the fabrication of complex shapes, intricate patterns, and delicate metals.
Operates at significantly higher speeds than CO2 lasers, boosting production efficiency and reducing turnaround time for orders.
They consume less electricity and require minimal maintenance, thus reducing long-term production costs.
Handles a wide range of metals—stainless steel, carbon steel, aluminum, brass—with consistent quality across varying thicknesses.
Built with robust components for long-term operation under tough conditions, minimizing downtime and maximizing productivity.
Producing fewer emissions, cleaner edges, and environmentally responsible manufacturing without compromising quality.
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.
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.
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.
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.
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.
Every Faster Laser machine is built with the latest advancements, ensuring precise cuts, faster operation speeds, and the ability to handle complex designs effortlessly.
We use only premium-grade materials and components, ensuring that every machine delivers consistent performance and maintains durability under heavy use.
Our team works closely with each customer to develop tailored laser cutting solutions that meet specific production needs and business objectives.
Faster Laser provides thorough training, responsive technical support, and ongoing maintenance services to keep your machines running at peak efficiency.
We offer high-quality laser cutting machines at competitive prices, ensuring you get maximum performance and long-term value from your investment.
With years of expertise and a strong global client base, Faster Laser has built a reputation for reliability, innovation, and customer satisfaction.
8 reviews for FP Laser Cutting Machine
Timothy –
Edge oxidation on weathering steel comes out even, creating a nice patina effect after treatment. I like how the software imports layers from Illustrator without extra steps. Small kerf width keeps fine details sharp, so my sculpture pieces assemble like puzzle parts. Foot pedals for jog functions free my hands.
Zoe –
The built-in quoting module imports our ERP prices for material and overhead, giving instant cost breakdowns. I can generate customer quotes in minutes instead of hours. Actual run times closely match estimates, boosting confidence. The consistent output quality reduces risk buffers, making bids more competitive without hurting margins.
Quentin –
Integrating the laser with our cobot loader took one weekend. The open API exposes commands, so the robot places sheets and stacks parts without operator presence. Safety interlocks communicate status, stopping the cell gracefully if doors open. Since launch, nighttime production doubled while keeping staffing costs unchanged.
Riley –
Intricate lace patterns in three-millimeter brass are used to warp on our waterjet. This laser keeps them flat and shiny, with no taper. The fine-point nozzle handles tiny kerfs, so delicate details survive handling. Customers notice the crispness and are willing to pay premium prices for the new designs.
Brian –
Integration with robotic load/unload was straightforward. The controller’s API exposes job commands, letting our cobot pick sheets, place them, and stack finished parts without operator input. The fiber laser’s consistent timing makes sync easy. Safety interlocks communicate status, so the whole cell halts safely if a door opens.
Amelia –
Intricate lace patterns in 3 mm brass are used to warp on our waterjet. This laser keeps them flat and shiny, with no taper. The fine-point nozzle handles tiny kerfs. I can market more complex designs now, confident they’ll cut accurately. Customers remark on the crisp detail and polished edge.
Abigail –
We study microfluidic channels in thin stainless foils. The laser can cut slots 150 µm wide with straight walls. Repeatability between samples is outstanding. The operator interface allows parameter logging for every pass, essential for peer-reviewed studies. The noise level is low enough to share a lab with other sensitive equipment.
Andrew –
The machine’s housekeeping reminders pop up at sensible intervals. Following them keeps uptime high. Remote diagnostics saved a service visit by spotting a loose sensor connector. Training modules break complex tasks into five-minute lessons, perfect for shift handovers. Financially, laser throughput offsets labor within a year.