The Shop Upgrade

Best Fiber Laser Cutting Machine Manufacturers in the US

Written by Jess Muehlfeld | Oct 9, 2026, 6:58:10 PM

Fiber laser cutting has become the standard for processing steel, aluminum, stainless, and other reflective metals, largely replacing CO2 lasers for metal work because the fiber wavelength is absorbed far more efficiently by metal surfaces, which translates directly into faster cutting speeds and lower operating costs per part. But "fiber laser manufacturer" covers a wide range of companies: some build complete industrial cutting systems from the ground up, some supply the laser source that other machine builders install into their own equipment, and some focus on lower-power marking and engraving rather than cutting structural sheet metal at all. Understanding which category a given manufacturer falls into matters as much as comparing wattage specs, since a laser source supplier and a complete machine builder solve very different problems for a buyer. This guide covers thirteen manufacturers active in the US fiber laser market, what each one actually builds, and how to evaluate them before making a purchase decision.

Quick Comparison Chart of the Best Fiber Laser Cutting Machine Manufacturers

Manufacturer

Headquarters

Power Range

Best Known For

Laguna Tools

Grand Prairie, TX

500W to 30kW

SmartShop FC and DLP fiber lasers for sheet and tube

TRUMPF Inc.

Farmington, CT (US)

Up to 9kW+

TruLaser series, full-line sheet and tube laser systems

Amada

Buena Park, CA (US)

3kW to 26kW

ENSIS beam-shaping fiber technology, REGIUS series

Mazak Optonics

Elgin, IL (US)

Up to 15kW+

OPTIPLEX series, thick and thin plate cutting

Bystronic

Hoffman Estates, IL (US)

Up to 30kW

ByCut and BySmart Fiber, US-assembled systems

Cincinnati Inc.

Harrison, OH

2kW to 15kW

CL and CLX series, built entirely in Ohio since 1898

Mitsubishi Laser

Nagoya, Japan (US ops)

3kW to 20kW

ML and MX series, engineered on shared CNC platform

IPG Photonics

Marlborough, MA

N/A (laser sources)

Pioneering fiber laser source technology, not complete machines

Coherent Corp.

Saxonburg, PA

N/A (laser sources)

Photonics and laser source manufacturer, not complete machines

Epilog Laser

Golden, CO

10W to 50W (fiber)

FiberMark series, metal marking and engraving

LaserStar Technologies

Orlando, FL

Varies by system

Precision laser welding, marking, and cutting for jewelry and medical

RMI Laser

Lafayette, CO

Varies by system

Industrial laser marking for part identification and traceability

Boss Laser

Sanford, FL

20W to 2,000W

HP-Series hybrid CO2/fiber and dedicated fiber marking systems

Top Fiber Laser Cutting Machine Manufacturers in the US

Laguna Tools

Laguna's SmartShop fiber laser lineup includes the FC for flat sheet cutting and the DLP, which adds optional tube and pipe cutting to the same platform, with power options from 3kW up to 30kW. The DLP uses a BOCI closed-loop cutting head and Yaskawa servo motors across all axes, and the lineup is built to cut steel, aluminum, stainless, copper, and brass for industries including aerospace, automotive, and general metal fabrication.

TRUMPF Inc.

TRUMPF Inc., the North American subsidiary of Germany's TRUMPF Group, operates its headquarters and a solid-state laser production facility in Farmington, Connecticut, with additional technology centers in Michigan, Illinois, and California. TRUMPF's TruLaser series covers 2D sheet cutting, tube cutting, and combination punch-laser machines, and the company designs and produces laser resonators and laser diodes domestically at its Connecticut facility.

Amada

Amada America, headquartered in Buena Park, California, manufactures fiber laser cutting systems ranging from 3kW to 26kW at its Brea, California production facility. Amada's proprietary ENSIS technology automatically adjusts beam mode based on material type and thickness, simplifying setup, and the company's REGIUS and Ensis series are used across general fabrication, automotive, and heavy equipment manufacturing.

Mazak Optonics

Mazak Optonics, a unit of Japan's Yamazaki Mazak Corporation, operates its North American headquarters and a 30,000-square-foot laser technology center in Elgin, Illinois. The company's OPTIPLEX series uses Variable Beam fiber laser technology to optimize cutting across both thin and thick materials, and Mazak Optonics has offered laser-cutting systems in North America for over 30 years.

Bystronic

Bystronic, headquartered in Switzerland, assembles fiber laser cutting machines at its Americas headquarters in Hoffman Estates, Illinois, where it locally sources components including the mainframe, housing, and dust tray. The company's ByCut and BySmart Fiber lines run up to 30kW, and Bystronic has invested roughly $30 million in its US assembly operation to reduce lead times for North American customers.

Cincinnati Inc.

Cincinnati Incorporated has continuously manufactured metal fabrication machinery from its Harrison, Ohio campus since 1898, and the company states its CL and CLX fiber laser systems, ranging from 2kW to 15kW, are designed, assembled, and commissioned entirely in Ohio with no offshore sub-assembly. Cincinnati introduced its first CNC laser cutting system in 1987 and has since shipped more than 50,000 machines across its full product line.

Mitsubishi Laser

Mitsubishi Electric's ML and MX fiber laser series are engineered at the company's Nagoya, Japan campus, with the ML covering 3kW to 12kW for general sheet and plate work and the MX extending to 20kW for heavy plate cutting. Both series share a common M800W CNC control platform with Mitsubishi's wire and sinker EDM equipment, and the machines are sold and supported in the US through MC Machinery and its dealer network.

IPG Photonics

IPG Photonics, headquartered in Marlborough, Massachusetts, is credited with introducing the first high-power fiber laser and is widely regarded as a technology reference point for the industry. IPG primarily manufactures fiber laser sources and amplifiers rather than complete cutting machines, and many other manufacturers' laser cutting systems are built around IPG's laser sources.

Coherent Corp.

Coherent Corp., headquartered in Saxonburg, Pennsylvania, is a long-established manufacturer of photonics and laser source technology, with products spanning fiber, diode, and solid-state lasers used in industrial, scientific, and medical applications. Like IPG, Coherent is primarily a laser source and components supplier rather than a builder of complete fiber laser cutting machines for metal fabrication shops.

Epilog Laser

Epilog Laser, based in Golden, Colorado, offers fiber laser systems under its FiberMark and Fusion Pro dual-source lines, with fiber power options generally in the 10 to 60 watt range. These systems are built for marking and engraving bare metals and engineered plastics rather than cutting structural sheet metal, which distinguishes Epilog's fiber offering from the industrial cutting systems built by vendors like TRUMPF or Amada.

LaserStar Technologies

LaserStar Technologies, with facilities in Orlando, Florida, Riverside, Rhode Island, and Arcadia, California, manufactures laser welding, marking, engraving, and cutting systems focused heavily on precision industries including jewelry, medical devices, and aerospace. LaserStar's product line spans multiple laser types, including fiber, and the company's roots in this space trace back to 1957.

RMI Laser

RMI Laser, based in Lafayette, Colorado, designs and manufactures laser marking and etching systems, including fiber-based configurations, primarily for industrial part identification and traceability rather than sheet metal cutting. Its systems are used across automotive, aerospace, medical, and electronics manufacturing for direct part marking on metals and other engineered materials.

Boss Laser

Boss Laser, headquartered in Sanford, Florida, offers both dedicated fiber marking systems in the 20 to 65 watt range and a hybrid HP-5598 system combining a 155W CO2 laser with a 2,000W fiber source for cutting metal and non-metals on one machine. The hybrid approach targets signage and production shops that need both capabilities without buying two separate machines.

How to Choose the Right Fiber Laser Cutting Machine Manufacturer

Start by clarifying whether you need a complete cutting system or a laser source. Companies like IPG Photonics and Coherent Corp. are foundational to the industry's laser technology, but most fabrication shops need a full machine, bed, motion control, and software included, which points toward vendors like TRUMPF, Amada, Mazak Optonics, Bystronic, Cincinnati Inc., Mitsubishi Laser, or Laguna Tools rather than a laser source supplier directly.

Match power to your material thickness and throughput needs. A 2kW to 6kW system handles thin to medium gauge sheet metal well, while heavier plate work in the 12kW to 30kW range requires the higher end of what manufacturers like Bystronic, Cincinnati Inc., Mitsubishi Laser, and Laguna Tools offer. Buying more power than your typical job requires adds cost without adding value.

Consider where the machine is built and supported. Several manufacturers on this list, including Cincinnati Inc. and portions of Bystronic's and TRUMPF's US operations, manufacture or assemble domestically, which can mean faster parts availability and more direct access to engineering support compared to a fully imported system.

Confirm software and automation compatibility. Nesting software, nitrogen or oxygen assist gas requirements, and automation for material loading and part sorting vary by manufacturer, so ask specifically how a system integrates with your existing workflow rather than assuming compatibility.

Fiber Laser ROI: The Real Profit Driver

The headline number on a fiber laser, its wattage, matters less to ROI than how that power translates into billable throughput. A higher-power system cuts faster on thicker material, which can mean fewer machines or fewer shifts needed to hit the same output, but only if your shop has enough volume to keep the machine running near capacity. An underutilized high-power laser can cost more in financing and operating expense than a right-sized machine running closer to full-time.

Automation compounds the ROI picture. Automated material loading, part sorting, and nesting software reduce the labor cost per part and let a single operator run more machine-hours per shift, which matters more to total profitability over the life of the machine than the sticker price difference between two similarly powered systems. Service and parts availability factor in directly too: downtime on a production laser is lost revenue, not just a maintenance inconvenience, so a manufacturer's support infrastructure is as much a financial consideration as a convenience one.

Financing structure also shapes the real return. A machine purchased on a lease or equipment loan needs to generate enough monthly throughput to cover the payment plus a margin, so the ROI question isn't just "how much can this machine cut" but "how much can this machine cut profitably given what we're paying for it each month." Shops that run a realistic volume projection before buying, rather than sizing a machine to their busiest hypothetical month, tend to see a clearer and faster payback period.

Closing Thoughts

There is no single best fiber laser manufacturer for every shop. The right choice depends on the materials and thicknesses you actually cut, your production volume, and how much weight you put on domestic manufacturing and support versus the widest possible machine selection. Use the comparisons above as a starting point, and get a sample cut on your own material before committing to a specific system.