Fiber Laser Cutting Machine For Sale
Last updated: September 2026
High performance fiber laser cutting machines built for job shops and manufacturers who need faster throughput, tighter tolerances, and lower operating costs.
Fiber laser cutting machines have transformed modern metal fabrication by delivering unmatched cutting speed, precision, and efficiency across a wide range of materials. Whether you’re replacing outdated equipment or scaling your shop’s production capacity, investing in the right fiber laser can significantly reduce operating costs while increasing throughput and consistency.
At Moore Machine Tools, we specialize in providing industrial grade fiber laser cutting machines that are built for performance, and ready for immediate delivery, so you can eliminate long lead times and start producing faster.














What Is a Fiber Laser Cutting Machine?
A fiber laser cutting machine uses a high powered laser beam generated through fiber optic technology to cut metal with extreme precision.
Unlike traditional cutting systems, fiber lasers use a solid state laser source, allowing for:
- Faster cutting speeds
- Lower maintenance requirements
- Higher energy efficiency
- Superior cutting performance on reflective metals

Metal Job Shop: Ultimate Versatility
METAL FABRICATION
Metal fabrication shops are the primary users of fiber laser cutting machines. They use them to cut sheet metal, plate, and custom parts for a wide variety of customers. Fiber lasers allow these shops to increase throughput, reduce material waste, and deliver highly precise parts with minimal secondary finishing.
Aerospace: Precision at Altitude
AEROSPACE
Aerospace companies rely on fiber lasers for cutting lightweight, high strength materials like aluminum and titanium. Precision is critical in this industry, and fiber lasers provide tight tolerances and clean edges required for structural and safety-critical components.
Automotive: Speed, Repeatability, and Style
AUTOMOTIVE
Automotive manufacturers use fiber lasers to cut components such as brackets, panels, and structural parts. The speed of fiber lasers supports high volume production environments, while maintaining consistent quality across thousands of parts.
Construction Equipment: Heavy-Duty Durability
CONSTRUCTION
Manufacturers of heavy equipment use fiber lasers to cut thick steel components used in machinery like tractors, trailers, and implements. Fiber lasers help improve durability and consistency in parts exposed to harsh environments.
Structural Steel Fabrication: The Backbone of Building
STRUCTURAL STEEL FABRICATION
Fiber lasers are used to cut beams, plates, and structural components for buildings and infrastructure. Their ability to handle thick materials with precision helps reduce rework and speeds up project timelines.
Enclosure Systems: Medical and Beyond
Enclosures
Companies producing electrical panels and enclosures use fiber lasers to cut precise openings, holes, and panel designs. The accuracy ensures proper fitment of components and reduces the need for manual adjustments.
How Does a Fiber Laser Work?
Fiber lasers generate a highly concentrated beam of light by amplifying photons through a fiber optic cable doped with rare-earth elements. This beam is then precisely directed through a cutting head and focused onto the material surface using high-quality lenses, creating a small and intense focal point.
At this focal point, the energy density becomes powerful enough to rapidly heat the material to its melting or vaporization point. As the laser penetrates the metal, assist gases (typically nitrogen, oxygen, or compressed air) are delivered coaxially through the nozzle. These gases play a critical role by blowing molten material out of the kerf (cut path), preventing contamination, and improving cut quality.
Different gases are used depending on the application:
- Nitrogen produces clean, oxidation free edges ideal for stainless steel and aluminum.
- Oxygen increases cutting speed on mild steel by creating an exothermic reaction.
- Compressed air offers a cost effective solution for thinner materials.
Because the laser beam is noncontact and extremely precise, there is minimal mechanical stress placed on the material. Combined with advanced CNC controls and motion systems, this results in consistent, repeatable cuts across high-volume production runs.
The result of fiber laser cutting with a reliable machine is:
- Clean, precise edges with little to no need for secondary finishing.
- Minimal heat affected zone (HAZ), reducing warping and preserving material integrity.
- High repeatability to ensure consistent part quality from the first cut to the thousandth.
Fiber Laser vs CO₂ Laser vs Plasma
When comparing modern cutting technologies, fiber laser cutting machines have rapidly become the preferred choice for fabrication shops looking to increase efficiency, reduce costs, and improve cut quality. While CO₂ lasers and plasma systems have been industry staples for years, fiber laser technology delivers measurable advantages across nearly every category.
Fiber Laser vs CO₂ Laser
CO₂ lasers use a gas mixture to generate the laser beam, which is then directed using mirrors. While effective, this older technology comes with more maintenance and higher operating costs.
Fiber lasers, on the other hand, use a solid-state laser source and a fiber optic delivery system. This results in a more efficient and reliable process.
Key Advantages of Fiber Lasers over CO₂:
- Significantly faster cutting speeds
- Lower operating costs
- Minimal maintenance
- Superior performance on reflective metals
- Higher electrical efficiency


Fiber Laser vs Plasma Cutting
Plasma cutting has long been used for thick materials and low cost operations, but it comes with trade offs in precision and finish quality.
Fiber lasers provide a much higher level of accuracy and consistency, making them ideal for applications where quality matters.
Key Advantages of Fiber Lasers over Plasma:
- Higher precision and tighter tolerances
- Cleaner edges and superior cut quality
- Reduced need for secondary finishing
- Smaller heat affected zone (HAZ)
- Better material utilization
Why Fabricators Are Switching to Fiber Lasers
Across the industry, fabrication shops are moving away from CO₂ and plasma systems in favor of fiber laser technology because it offers faster and more precise production. This lowers the cost per part and improves part quality. Additionally, fiber laser cutting machines offer greater versatility across materials.
The result of upgrading is a cutting solution that not only improves day-to-day operations but also delivers a strong return on investment over time.
Fiber Laser Cutting Machine Options
Choosing the right fiber laser cutting machine depends on your production goals, material types, part complexity, and required throughput. From power levels to machine size and automation, each configuration plays a critical role in overall performance, efficiency, and return on investment.
Understanding these options will help you select a system that not only meets your current needs—but also scales with your business as production demands grow.
Fiber Laser Power Options

| Power | Cutting Capacity | Best For |
|---|---|---|
| 4 kW | Thinner sheet metal, typically under 3/16″ | Small shops, prototyping, low-volume work, lowest upfront cost |
| 6 kW | Sheet metal typically under 1/4″ | Shops transitioning from plasma or CO₂, strong efficiency for mid-size operations |
| 12 kW | Up to 60mm mild steel & stainless, 50mm aluminum — roughly 3× faster than 6kW on thick plate | The most popular choice for growing operations — balances performance, cost and flexibility |
| 20 kW+ | Thick materials at significantly faster speeds | High-output, heavy-duty production — maximizes throughput, minimizes cost per part |
| 30 kW+ | Heaviest plate work at maximum speed | Shops scaling production and increasing capacity |
- Ideal for light-duty production and thinner materials
- Best suited for sheet metal typically under 3/16″
- Lower upfront investment and operating costs
- Great for small shops, prototyping, and low-volume work
- Efficient solution for businesses entering laser cutting for the first time
- Ideal for lighter production environments and thinner materials
- Excellent for shops cutting primarily sheet metal under 1/4″
- Lower upfront investment with strong efficiency for small to mid-sized operations
- Great entry point for shops transitioning from plasma or CO₂
- A versatile, all-around solution for most fabrication shops
- Capable of cutting both thin and moderately thick materials with speed and precision
- Balances performance, cost, and flexibility
- One of the most popular choices for growing operations
- Built for high-output, heavy-duty production environments
- Designed to cut thick materials at significantly faster speeds
- Maximizes throughput and minimizes cost per part
- Ideal for shops focused on scaling production and increasing capacity
- Built for high-output, heavy-duty production environments
- Designed to cut thick materials at significantly faster speeds
- Maximizes throughput and minimizes cost per part
- Ideal for shops focused on scaling production and increasing capacity
Fiber Laser Cutting Machine Size
The size of the machine determines the maximum sheet size you can process, which directly impacts workflow efficiency and material handling.

- Industry-standard size for most fabrication shops
- Compatible with commonly available sheet sizes
- Efficient for general-purpose cutting and job shop work
- Larger cutting area for increased productivity
- Reduces the need for material repositioning
- Ideal for shops processing higher volumes or larger parts
- Designed for oversized sheets, plates, and high-volume production
- Common in heavy fabrication, structural steel, and industrial manufacturing
- Handles full-size plates with minimal repositioning, improving efficiency
- Maximizes material utilization and reduces handling time for large components
- Customizable configurations available to accommodate nearly any length and up to 12′ wide, depending on your application
Fiber Laser Compressor Setup
Fiber laser cutting demands more than just power. It requires clean, dry, and stable compressed air to truly perform.
Moisture, oil, and contaminants in your air supply quickly lead to inconsistent cuts, poor edge quality, contaminated consumables, and increased maintenance. All of this leads to longer production times.

Compressor → Wet Tank → Pre-Filter → Dryer → Post-Filters → Dry Tank → Fiber Laser
To protect your investment and ensure consistent results, your compressed air system should be properly configured.
The Wet Tank stabilizes pressure and removes bulk moisture.
The Pre Filter captures water and oil before drying.
The Dryer eliminates moisture to prevent condensation
The Post Filters remove remaining oil vapor and fine particles.
The Dry Tank stores clean, dry air for consistent delivery.
A high quality compressed air system isn’t optional for production. It’s critical.
Proper air treatment helps ensure consistent cut quality, which helps with production time. This treatment also helps the longevity of machines and components.
Quality compressed air also helps reduce maintenance costs and increase uptime and productivity.
We help customers go beyond the machine by ensuring their entire system is set for performance.
Fiber Laser Cost
One of the most important factors when investing in a fiber laser cutting machine is understanding the balance between initial cost and long-term return on investment (ROI). While fiber lasers require a higher upfront investment compared to some traditional cutting methods, they consistently deliver lower operating costs and significantly higher productivity.
Simply put, fiber lasers are one of the most profitable upgrades a fabrication shop can make.
Machine Power (kW)
Higher power machines (20kW and up) come with a higher upfront cost. These higher power fiber lasers also provide:
- Faster cutting speeds
- Greater thickness capacity
- Lower cost per part at scale
More power equals higher output. This can lead to a faster ROI in production environments with the right consumer base.
Table Size & Machine Configuration
Larger fiber laser machines (such as 6′ x 12′ or large-format systems):
- Handle bigger sheets and parts
- Reduce material repositioning
- Improve workflow efficiency
However, they require more floor space. These machines also typically come at a higher price point. However, if working with larger sheets, the investment makes sense.
Automation Level
Automation impacts cost. However, it also impacts productivity.
- Manual systems have a lower upfront cost but a higher labor involvement
- Shuttle tables increase efficiency. These systems have minimal added cost.
- Full automation systems have the highest investment, but offer major gains in uptime and labor reduction
Automation often delivers some of the fastest ROI in high volume environments
Fiber Laser Quality
Not all fiber lasers are built the same. Higher-quality machines offer:
- Better reliability, uptime, and programmability.
- More consistent cut quality which leads to less reworks. Consistent cuts also lead to less finish time and finish effort.
- Stronger long term performance.
A lower cost machine upfront often leads to higher costs over time. When evaluating maintenance and downtime. Rework and finishing costs add up too.

Fiber Laser ROI
The true value of a fiber laser cutting machine comes from how quickly it improves your shop’s efficiency and profitability.
Fiber lasers cut faster than other cutting alternatives. This speed increase allows you to:
- Produce more parts in less time
- Take on more jobs
- Increase overall revenue
With faster cutting speeds and increased automation capabilities:
- Fewer operators are needed
- Less manual handling is required
- Shops can reallocate labor to higher value tasks
- Narrow kerf widths that allow tighter nesting
- More parts per sheet
- Reduced scrap and improved material utilization
With fiber laser cutting machines improving efficiency, you will have shorter lead times. This means:
- Happier customers
- More repeat business
- Ability to win time sensitive jobs
With fiber laser cutting machines improving efficiency, you will have shorter lead times. This means:
- Happier customers
- More repeat business
- Ability to win time sensitive jobs
When you combine these qualities of a fiber laser, what you truly get is one of the lowest costs per part production capabilities.
Fiber Laser ROI Calculator
Estimate how quickly a Fiber Laser from Moore Machine Tools can reduce outsourcing, lower labor costs, and pay for itself — without installation or training fees.
Current Cutting Costs
Labor & Efficiency
Fiber Laser Configuration
Your Estimated Results
Estimated Monthly Savings:
Estimated Payback Period:
These estimates reflect typical customer outcomes with a Masterline Fiber Laser, including:
- No installation or training fees
- Lower learning curve
- U.S.-based service & support
- Automation- and IoT-ready design
In Stock Fiber Laser Cutting Machines
Skip the Wait. Start Cutting.
Most fiber laser manufacturers quote 24+ week lead times. That’s half a year of lost production. 6 months of missed jobs. That delays the ROI.
Moore Machine Tools is different.
We stock most high demand fiber laser systems, so you can go from purchase to production in a matter of weeks, not months.
The Moore Machine Tools Advantage
By choosing a partnership with us, you gain:
- In Stock Machines Ready To Ship
- Fast and Free Installation
- Training Included with Purchases
- USA Based Service Team
- Non Proprietary Components (Faster Service)
- The Industries Best Return on Investment
Fiber Laser FAQ
How thick can a fiber laser cut?
Fiber laser cutting thickness depends on machine power and material type. Most industrial systems can cut up to 20–25 mm (¾”–1”) on mild steel (not production times), with higher-powered machines capable of even more.
What gas is used in fiber laser cutting?
Fiber lasers use assist gases to improve cut quality and remove molten material. The most common are nitrogen (used for oxide free edges), oxygen (faster cutting on carbon steel), and compressed air (cost effective option).
These gases impact edge quality, speed, and operating cost.
How much does a fiber laser cost?
Fiber laser pricing varies widely based on size, power, automation, and brand. Typically, industrial entry level systems start at approximately $150k. These are typically single table and lower kW options. Moving into the midrange pushes systems into the $300k-$1M range. This range covers most fiber laser systems and is typical for 6-20kW with dual shuttle tables. High power (and legacy brands) approach and exceed the $1M range.
While the upfront investment is higher than plasma, fiber lasers deliver lower operating and consumable costs and faster ROI due to speed and efficiency.
Is a fiber laser better than a plasma?
It depends on your application. Fiber lasers provide higher precision with clean edges. They’re faster than plasma cutting and require little to no secondary finishing. Fiber lasers have a lower long term operating cost.
However, plasma has a lower upfront cost. These facts make fabrication shops focused on speed, precision, part quality, great candidates for fiber laser cutting solutions.
What materials can a fiber laser cut?
Fiber lasers are designed for metal cutting applications and excel with reflective materials compared to older CO₂ lasers. Common materials include:
- Mild steel
- Stainless steel
- Aluminum
- Brass & Copper (with proper setup)
How fast is a fiber laser?
Fiber lasers are significantly faster than traditional cutting methods. The real reason fiber laser cutting systems shine though, is their precision and clean edge quality. This increased speed, combined with minimal post processing, dramatically improves overall production efficiency.
Do fiber lasers require a lot of maintenance?
No. Especially if you are used to dealing with a CO₂ system. Fiber lasers are known for low maintenance requirements. They have fewer moving parts, no mirrors like CO₂ systems, and longer component life, making them more reliable for production environments.
Request A Quote
If you’re searching for fiber laser cutting machines for sale, CNC fiber lasers in the United States, high-power fiber laser systems, or industrial sheet metal laser cutting equipment, Moore Machine Tools is ready to help. Whether you’re expanding production, replacing outdated CO₂ or plasma systems, or launching a new fabrication operation, our specialists can match you with the right fiber laser, automation, and material handling solutions for your goals. Request a fiber laser quote today to discuss power requirements, cutting capacity, automation options, financing, and the best solution for your shop’s long-term success.
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EXCELLENT Based on 306 reviews Posted on Google Paul MurdoffTrustindex verifies that the original source of the review is Google. My work bought a new 150 ton press break. The service tech did a great job getting it assembled and running. He showed us how to program it and answered all the questions we had.Posted on Google Klay AhlesTrustindex verifies that the original source of the review is Google. The tech that came out was very knowledgeable about the machine and tooling. Any questions that we had that he wasn’t able to answer he was on the phone and making sure we got a definitive answer. The whole experience was great. I can’t wait to make parts in the new press brake!!Posted on Google tanner kelleyTrustindex verifies that the original source of the review is Google. Purchased an accrual 12kw laser it’s been easy to install and cuts great! Looking forward to cutting thick plate all day.Posted on Google Edgar GasparTrustindex verifies that the original source of the review is Google. The process for the installment went very smooth & easy to understand. The machine is dummy proof and easy to operate. Very pleased with my experience and product. Brock T. Was my helpful tech.Posted on Google Ryan SchambaughTrustindex verifies that the original source of the review is Google. Moore Machine Tools provided top notch service and customer care during quoting, purchasing, installation and training on a new Accurl CNC Pres Brake for our manufacturing facility. Jason, Kenzie, and Nikki took great care of us and kept us up to date every step of the way, and Brock was a very helpful and knowledgeable install technician. We look forward to working with Moore again in the future.Posted on Google Chet AndersonTrustindex verifies that the original source of the review is Google. Tanner, and Brock, did awesome installing our new breaks. I’ve been working on our older ones for 2 and a half years now and just love it. Super excited for the new ones!Posted on Google Arron HarnessTrustindex verifies that the original source of the review is Google. Customer was very helpful in every wayPosted on Google Justin HughesTrustindex verifies that the original source of the review is Google. They are very professional and very dedicated and dependable about the things they do.Posted on Google Ashlyn ThomTrustindex verifies that the original source of the review is Google. Brock was amazing. He helped set us up and get running. Definitely recommend him.Posted on Google Brennan BergerTrustindex verifies that the original source of the review is Google. Very professional company with employees that care. Jason, our salesman, communicated with us extremely well and in a timely manner. The tech they sent out to install our brake, Brock, crushed it and left us with zero complaints. we will be working with Moore Machine again with future equipment.Verified by TrustindexTrustindex verified badge is the Universal Symbol of Trust. Only the greatest companies can get the verified badge who has a review score above 4.5, based on customer reviews over the past 12 months. Read more
