Laser engraving in Orlando, FL, provides permanent part identification for serial numbers, SKUs, logos, part numbers, and other information that must remain legible throughout service.
Roberson Machine Company coordinates fiber laser engraving with the machining workflow to deliver finished components with their required marks already applied. Coordinating these steps reduces third-party transfers, preserves the connection between marking and part requirements, and simplifies final production flow.
Learn More About
- How engraving fits into CNC production
- Which details are commonly engraved on CNC parts
- Materials suited to laser-engraved parts
- Laser engraving with the Epilog G2 Galvo Fiber Laser
- Parts and industries that use fiber laser engraving
- Production runs and repeat orders with permanent marking
- FAQs about fiber laser engraving
For CNC production projects that require permanent part identification, contact us online or call 573-646-3996 to learn how Roberson Machine Company supports laser engraving projects in Orlando, FL.

When Does Laser Engraving Occur During CNC Production?
Laser engraving is typically completed after machining and positioned appropriately among finishing operations, final inspection, and delivery. The marking requirements should be identified before production advances so the content, location, orientation, and appearance remain consistent throughout the workflow.
A typical precision CNC machining workflow may include:
- Reviewing the drawing, material, and production requirements
- Planning how the component will be machined and securely held
- Manufacturing the component through the planned machining process
- Completing the required finishing operations
- Creating the required permanent mark through laser engraving
- Inspecting the finished components and approving them for release
By handling both machining and fiber laser engraving in Orlando, FL, Roberson Machine Company keeps the marking requirements within the same production workflow instead of leaving them to be interpreted later by a separate vendor. It cuts down on avoidable coordination and helps preserve the intended placement of the finished mark.
Why Splitting Machining and Engraving Creates Extra Steps
When another supplier handles engraving after machining, the order gains another round of transportation, coordination, and verification before the parts are ready for delivery.
Separate Engraving Vendor
- Additional packaging and transportation
- A second supplier to coordinate
- Part-marking instructions separated from the machining requirements
- A separate handoff that must be checked before shipment
- More opportunities for the order details to become misaligned
Machining and Engraving Together
- Machining and engraving completed within the same workflow
- Marking details carried through the production process
- One coordinated final review
- Completed components prepared for shipment
By keeping machining and engraving in a single workflow, customers avoid unnecessary outside coordination and receive completed parts with the specified markings in place.
Which Markings Can Be Added to CNC-Machined Parts?
Laser engraving creates permanent part markings for identification, traceability, branding, and operating guidance.
Laser engraving gives machined parts a lasting connection to the records, instructions, and assemblies they belong to.
Typical laser-engraved part information includes:
- Part numbers and SKUs that identify components within assemblies, inventories, or ordering systems.
- Serial numbers for distinguishing individual parts, units, or production runs.
- Lot, batch, and date codes that tie finished components to specific production records.
- Barcodes and QR codes that link physical components to digital records or tracking systems.
- Logos and brand marks applied directly to finished components.
- Assembly and orientation marks used to show how a component fits or faces within a larger system.
- Measurement, warning, or operating information engraved for continued readability over the life of the part.
Part geometry and surface finish influence both the placement and practical size of the engraving.
Which Materials Support Fiber Laser Engraving in Orlando, FL?
Laser engraving works across many materials used in CNC production, but the final mark depends on the material, surface finish, part geometry, and required contrast. Those considerations become part of the production plan so the engraving complements the completed component.
Aluminum
Aluminum CNC machining generally pairs well with permanent laser engraving because the material is widely used for components that need clear, durable identification without adding a separate label or plate.
Surface treatments such as anodizing, paint, and powder coating affect how the finished engraving appears on aluminum. The engraving settings should reflect both the existing finish and the desired appearance of the completed mark.
Stainless Steel
Permanent engraving supports stainless steel components that need identification to remain legible throughout demanding use and routine cleaning. That durability is one of the broader benefits of choosing stainless steel for demanding applications.
Carbon and Tool Steels
Machined steel components may be engraved after machining, before final finishing, or later in production depending on the required result. Because tool steel grades vary in hardness, wear resistance, toughness, and heat-treatment requirements, the material and production sequence should be considered together.
The mark must be timed carefully because later operations may obscure early engraving, while a late engraving step may complicate handling.
Brass and Copper Alloys
Fiber laser engraving in Orlando, FL, works across brass, copper, and related machinable alloys, although the finished mark depends on the specific alloy, surface condition, and finish.
The required contrast, depth, color, and visual appearance should be established before production, especially when the engraved surface remains visible on a finished or customer-facing component.
Other Production Metals
Fiber-laser engraving may also be used on titanium and other compatible production metals when the material properties, finish, and marking requirements align with the process.
Because different alloys respond differently to 1064 nm infrared energy, the marking approach should account for the required readability, surface appearance, engraving depth, and any finishing operations that occur before or after the mark is applied. For fiber laser engraving projects in Orlando, FL, the material should guide the laser settings, marking depth, and finishing sequence.
Machinable Plastics
Some machined plastic parts, including compatible grades of ABS, PVC, polycarbonate, and polypropylene, accept clear laser engraving. Different plastics respond to laser-generated heat and concentrated energy in very different ways.
Plastic engraving results may include discoloration, weak contrast, melting, or distortion when the resin and surface characteristics are not well suited to the process. Material compatibility should be confirmed before the marking process is finalized so the required readability does not compromise the part surface.
Not every material produces the same depth, contrast, or visual finish. Laser engraving should be planned around the part, its service environment, and the broader material-selection decisions involved in production.
Production-Grade Fiber Laser Engraving

Epilog G2 Galvo Fiber Laser | View Product Details
A 60-watt Epilog G2 Galvo fiber laser supports Roberson Machine Company’s industrial marking and production engraving work. Its 1064 nm infrared beam produces permanent, high-contrast identification on compatible metals, hard plastics, coated materials, and other production substrates.
This is not a hobby, desktop, or trophy engraving system. Its fiber-laser configuration, adjustable work fields, and production output support deeper marks and recurring engraving requirements tied to CNC parts.
| Machine | Epilog G2 Galvo Fiber Laser |
|---|---|
| Laser Output | 60 watts |
| Wavelength | 1064 nm infrared |
| Marking System | Three-axis galvanometer |
| Selectable Work Fields | 4″ × 4″, 16″ × 16″, and 24″ × 24″ |
Adjustable Work Fields for Different Parts
The Epilog G2 offers selectable 4″ × 4″, 16″ × 16″, and 24″ × 24″ work fields. That flexibility allows our team to configure the engraving area around the size of the component and the space available for the required mark rather than relying on one fixed field for every part.
Built for Production Engraving
The 60-watt fiber laser is designed for industrial marking rather than decorative trophy engraving. Its output supports high-volume part identification, deeper engraving, and repeatable marks across production orders.
The most efficient workflow keeps machining and engraving together, allowing Roberson Machine Company to produce the parts and add SKUs, serial information, logos, or other required identification before delivery.
Why Is Laser Engraving Used in Orlando, FL?
When information must stay permanently readable across manufacturing, installation, cleaning, maintenance, and service, laser engraving provides a durable marking method.
Which Parts Commonly Require Laser Engraving?
- Manifolds and valve bodies
- Covers, housings, and enclosures
- Mounts, brackets, and plates
- Rotating components such as shafts, pins, bushings, and rollers
- Gauges, fixtures, and tooling components
- Panels and control-system hardware
- Engraved medical microscope components and acrylic medical instrument parts
- Robotic end-of-arm tooling and automation parts
- Machined replacement parts and maintenance components
- Customer-facing parts with logos or branding
What Machining Processes Prepare Parts for Orlando, FL, Laser Engraving?
Laser engraving commonly follows CNC machining and inspection. Choosing the machining process requires consideration of the part shape, functional features, and access to the surface that will receive the mark.
- CNC milling: Supports parts with flat faces, angled features, contoured surfaces, pockets, and other milled geometry.
- CNC turning: Produces round components that may be engraved on an end face, flange, shoulder, or accessible outside diameter.
- 5-axis machining: Machines difficult geometry and angled features while accounting for how the finished part will be positioned for engraving.
- Wire EDM: Produces precision tooling components, inserts, profiles, and hardened conductive parts that need permanent post-machining identification.
Which Industries Use Laser-Engraved Components?
Across Roberson Machine Company’s industrial machining capabilities, engraved marks support the identification, assembly, inspection, and maintenance needs associated with varied parts and working environments.
| Industry | Common Components | How Engraving Supports the Application |
|---|---|---|
| Aerospace | Precision parts, production fixtures, and tooling | Connects individual components and tooling to inspection, maintenance, and production records |
| Medical | Instruments, device components, and specialized tooling | Provides durable identification for components exposed to cleaning, handling, and repeated use |
| Automotive and EV | Vehicle components, tooling, and fixtures | Helps maintain part tracking and assembly orientation throughout repeat automotive production |
| Packaging | Production equipment, replacement parts, and changeover tooling | Gives operators durable setup and maintenance references during packaging-line changeovers |
| Automation and Robotics | Automation tooling, motion components, panels, and control-system hardware | Marks ports, tooling locations, motion-system components, and service points throughout automated equipment |
| Oil and Energy | Valves, pump parts, fittings, and replacement components | Provides lasting identification for parts exposed to difficult operating and maintenance conditions |
Fiber Laser Engraving for Repeat Production Orders
Roberson Machine Company integrates Orlando, FL, fiber laser engraving into repeat manufacturing to keep identification consistent from the initial production release through future orders.
Within a broader bulk CNC production strategy, engraving details can be documented with the machining, inspection, and release requirements instead of rebuilt for every returning order.
Preparing Engraving Requirements for Future Orders
- Defined marking location: A documented marking location keeps placement and orientation consistent from one production run to the next.
- Documented formatting: Established size and layout specifications can be reused when future production releases return.
- Coordinated production records: The engraving specifications remain tied to the machining and inspection requirements.
- Repeat-order readiness: Documented specifications prevent the engraving process from being recreated for every returning order.
Quantities, release schedules, materials, and marking specifications can be reviewed together when planning ongoing production.

Frequently Asked Questions About Fiber Laser Engraving in Orlando, FL
Common questions about fiber laser engraving focus on cost, production timing, material compatibility, and whether the mark affects the finished component. The following answers cover those issues along with replacement components and ongoing production needs.
How is fiber laser engraving priced?
Pricing for fiber laser engraving varies based on the part, the engraving specifications, and the setup required to complete the work. Important considerations include:
- Material and surface finish
- Order quantity
- Mark dimensions and layout requirements
- Accessibility of the selected marking area
- Any custom workholding or positioning requirements
- The need to mark more than one location
- Integration with a larger CNC production workflow
A flat, accessible marking location usually keeps setup requirements lower, while complex geometry, careful orientation, and multiple marks add preparation.
How long does Orlando, FL, laser engraving take?
Turnaround time reflects the part quantity, the amount of engraved information, the layout complexity, and whether the order uses identical or variable marks. The amount of setup, dedicated fixturing, material movement, and inspection involved also affects turnaround.
Laser engraving included within CNC production is timed around the broader finishing, inspection, and release process. The mark itself may be applied quickly, while the full lead time depends on machining, finishing, inspection, and release.
Is a fiber laser-engraved mark designed to last?
Fiber laser engraving forms permanent identification through controlled surface alteration rather than an applied marking material. This surface-level identification is intended to withstand typical handling, installation, maintenance, and operating conditions.
Long-term readability still depends on the material, engraving depth, surface finish, operating environment, and location of the mark. Abrasive wear, later machining, refinishing, corrosion, or heavy surface damage may reduce visibility over time.
What types of materials can be fiber laser engraved?
Fiber laser engraving in Orlando, FL works across many materials used in CNC production, including:
- Aluminum, including many anodized components
- Machined stainless steel components
- Carbon steel and tool steel
- Brass components and certain related alloys
- Selected production-grade machinable plastics
- Compatible painted surfaces, coatings, and post-machining finishes
Engraved depth, contrast, color, and surface appearance vary from one material to another. Material grade, coating, finish, additives, and required readability should be considered before the engraving approach is finalized.
Does Orlando, FL, laser engraving change a part’s dimensions or fit?
Laser engraving is normally placed on a selected surface without changing the component’s functional geometry or overall fit. Placement should receive added attention when engraving is located around:
- Critical sealing areas
- Surfaces involved in part-to-part fit
- Precision-machined areas
- Areas with minimal material thickness
- Surfaces with defined cosmetic requirements
- Frequently handled or abrasion-prone surfaces
Defining mark depth, location, and orientation in advance keeps the engraving readable while protecting the part’s functional and cosmetic requirements.
Is it possible to duplicate engraving on a replacement component?
A replacement mark can usually be established when the original text, formatting, dimensions, orientation, and marking area can be verified. Useful references may include a drawing, CAD file, marked component, detailed photograph, or prior manufacturing record.
Reproducing every visual detail may depend on the original engraving technique, font, component material, surface treatment, and condition of the existing mark. Accurately reproducing the needed information is usually more practical than matching every visual feature of an older mark.
Work With Roberson Machine Company for Orlando, FL, Laser Engraving
Roberson Machine Company coordinates machining, fiber laser engraving, and inspection to provide finished components that are ready for assembly, installation, or use.
- Fiber laser engraving coordinated with CNC machining and inspection
- Engraving specifications documented for repeat orders
- Support for low-volume parts, repeat orders, and production runs
Related machining capabilities include:
- Wire EDM Parts
- Lathe Machine
- Precision Stainless Steel Machining
- CNC Lathe Machining
- Custom CNC Machining for Part Production
- CNC Machine Automation
- Oil and Gas Precision Machining
- Aerospace Manufacturing
- Automotive Part Manufacturing
Start planning your Orlando, FL, laser engraving and CNC machining order by requesting a quote online or calling 573-646-3996.

