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Re-marking – Precision Re-labeling of Defective Codes with Laser Technology

During manufacturing processes, incorrect, misaligned, or unreadable codes may occasionally be applied to products. In such cases, removing or correcting faulty markings using conventional methods is often not possible, or it risks damaging the base material. Laser re-marking technology provides a safe, precise, and highly effective solution to this challenge.

Re-marking process
Precision re-marking Click the video to pause or continue playback
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Surface Correction Technology

When does re-marking offer a real advantage?

01
Incorrect or mispositioned Data Matrix, QR or alphanumeric codes
02
Poor-contrast, damaged or unreadable markings
03
Incorrect production data, serial numbers or part identification
04
Surfaces where markings cannot be removed mechanically or chemically
0 Mechanical contact
100% Traceability restored
Re-use Component recovery
Incorrect laser marking before re-marking
Incorrect marking detected
Original incorrect code Click the image to inspect the marking in full size
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TECHNICAL DOCUMENTATION

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Scrap Cost Recovery

How Much Could Laser Re-Marking Save?

Turn recoverable marking errors into usable parts instead of production scrap.

Enter your own production data to estimate the potential value that could be recovered through Laser Re-Marking. The calculation compares the value of parts that would otherwise become scrap with the remaining scrap value after successful re-marking.

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Laser Re-Marking Savings Simulator
Live Calculation
Your Production Data

Calculate your savings

Change the values below. The result and diagram update automatically.

pcs
80%
Potential Scrap Cost €125,000
Remaining Scrap €25,000
Potential Value Recovered €100,000
Annual Cost Comparison

Scrap Cost Before vs. After Re-Marking

80% value recovery
€125,000
Without
Re-Marking
€25,000
Remaining Scrap
After Re-Marking
Potential Annual Value Recovered €100,000 / year 2,000 finished parts could potentially be recovered instead of becoming scrap.
Potential part recovery 2,000 / 2,500 pcs
This calculator provides an illustrative estimate based on the values entered. Actual recoverability, re-marking feasibility and economic savings depend on the component, material, original marking, required new marking and production process.
Laser Correction Technology

Advantages of the FibeerSX re-marking solution

01
Selective removal of defective markings – only the affected area is modified
02
Material-safe process with no grinding, machining or chemicals involved
03
No scrap generation – products can be recovered and reused
04
High positioning accuracy for precise placement of the new code
05
Full traceability is restored after the correction process
06
Automatable and fully compatible with industrial production lines
0 Chemical consumables
100% Traceability restored
24/7 Automation ready
Perfect code after laser re-marking
Correct marking verified
Perfect code after re-marking Traceability restored – component ready for production
Re-marking process
Laser re-marking practice example
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Laser re-marking technology

What does this mean in practice?

Using laser technology, the defective code can be controlled, neutralized, or removed, after which a new, high-contrast and readable marking can be applied—either in the same location or in a newly optimized position. All of this is achieved without downtime, disassembly, or post-processing. What used to mean scrap can now be recovered. FibeerSX laser re-marking technology helps you reclaim lost value and maintain production efficiency.

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