HomeProductsLaser Marking Machines for JewelryEnclosed Fiber Laser Marking Machine, 30-100 W
Enclosed Fiber Laser Marking Machine, 30-100 W
Enclosed Fiber Laser Marking Machine, 30-100 W
Enclosed Fiber Laser Marking Machine, 30-100 W
Enclosed Fiber Laser Marking Machine, 30-100 W
Enclosed Fiber Laser Marking Machine, 30-100 W
Enclosed Fiber Laser Marking Machine, 30-100 W
Enclosed Fiber Laser Marking Machine, 30-100 W
Enclosed Fiber Laser Marking Machine, 30-100 W
Enclosed Fiber Laser Marking Machine, 30-100 W
Enclosed Fiber Laser Marking Machine, 30-100 W

Enclosed Fiber Laser Marking Machine, 30-100 W

Laser Marking Machines for Jewelry

The enclosed fiber laser marking machine combines a 1064 nm source, galvanometer, field lens and enclosed work area for permanent marking and controlled-depth engraving on metals and qualified plastics.

Choose 30, 50, 60, 70 or 100 W with a 75 × 75 to 300 × 300 mm field, JCZ/EZCAD2 workflow and optional rotary fixtures. Source model, lens, mark quality and cycle time are confirmed by customer sample.

Complete-system safety classification is confirmed only after the enclosure, wavelength-rated window, interlocks, emergency stop, emission indication and extraction are engineered and tested for the destination market.

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Product Description

Enclosed Fiber Laser Marking Applications

  • Electronics and components: serial numbers, Data Matrix codes and logos on qualified metal housings, connectors and coated parts after contrast and heat testing.
  • Jewelry and watch parts: fine surface marking, texture and controlled-depth engraving on approved precious metals; inside-ring work requires a matched rotary fixture and sample approval.
  • Medical-device traceability: identifiers on stainless instruments and components when the customer validates material effects, cleaning, corrosion resistance and regulatory requirements.
  • Industrial metal parts: permanent IDs, scales, logos and traceability codes on steel, stainless steel, aluminum, brass, copper and coated nameplates.
  • Automotive and aerospace supply: part codes and traceability marks on qualified alloys; safety-critical parts require customer process approval and documentation.
  • Consumer and promotional products: logos and personalization on metal tools, hardware, gifts, drinkware and approved coated accessories.

Send the exact alloy or polymer grade, coating, part geometry, artwork, required contrast or depth and throughput target for a marking test. The approved sample defines the source, lens, parameters, fixture, extraction and acceptance criteria.

Enclosed fiber laser marking machine family overview

Enclosed Workstation Configuration

Technical Specifications

ModelVankMark-E enclosed fiber laser marking workstation
Laser ProcessGalvo marking and controlled-depth engraving; cutting capability is not assumed
Nominal Wavelength1064 nm pulsed fiber laser
Rated Power Options30 / 50 / 60 / 70 / 100 W as quoted
Source ArchitectureQ-switched or MOPA source selected for the required pulse behavior, material and mark result
Pulse FrequencyExact range depends on the quoted source model and must follow its datasheet
Pulse WidthFixed or adjustable by source model; MOPA range confirmed in the quotation
Marking Field Options75 × 75 / 110 × 110 / 150 × 150 / 175 × 175 / 200 × 200 / 300 × 300 mm, subject to lens and enclosure clearance
Field LensF-theta lens matched to field size, spot requirement and working distance
EnclosureFully enclosed workstation with wavelength-rated viewing window and configured access door
Laser Safety ClassificationDetermined only for the tested complete product and destination market; the embedded source may expose Class 4 radiation during service
Safety ControlsDoor interlock, emergency stop, key control, emission indication and service access provisions confirmed in the final safety file
Scan HeadDual-axis galvanometer and correction file matched to the selected lens and working field
Production SpeedQualified by sample for artwork, fill density, material, contrast, depth and heat limit; scanner travel speed is not a cycle-time guarantee
Mark QualityLine width, character size, field distortion and repeatability verified on the approved sample and fixture
CoolingAir-cooled unless the exact source or enclosure configuration specifies another method
ControllerJCZ/EZCAD2-compatible control card or other quoted controller; exact model and firmware confirmed
SoftwareEZCAD2 workflow; LightBurn Pro only when the supplied board, driver and current software version are supported
File WorkflowVector, raster, text, serial number, barcode and Data Matrix imports subject to the supplied software and customer file test
Rotary and FixturesOptional ring, cylindrical or flat-part fixtures selected for part diameter, weight, clearance and indexing requirement
Fume ExtractionLocal extraction or filtration sized for the marked material, coating and production duty
Electrical ServiceVoltage, frequency, connected load, plug, grounding and local compliance confirmed before shipment
Operating EnvironmentTemperature, humidity, dust and condensation limits follow the final source, controller and workstation manuals
AcceptanceFinal configuration approved against customer material, artwork, mark quality, cycle time, safety and documentation requirements

Configuration starts with the mark requirement. Provide the exact material and coating, part dimensions, artwork, field size, contrast or engraving-depth target, cycle time, fixture needs and destination-market safety requirements. The quotation will identify the source model, lens, controller, enclosure, extraction and acceptance sample.

Marking Samples and Material Qualification

Candidate Materials
A 1064 nm fiber source is primarily selected for steel, stainless steel, aluminum, brass, copper, titanium, precious metals, carbide and many coated or anodized metal parts. Some engineering polymers and coatings can produce contrast after testing. Glass, clear acrylic, leather, paper, stone, ceramic bodies and unknown composites are not blanket fiber-laser applications and may require a UV or CO2 source. Review the SDS and run a representative sample before approval.

Applicable Industries

Typical users include electronics, automotive supply, precision tools, appliances, jewelry, eyewear, watches, hardware, identification plates and consumer-product manufacturers. The sample gallery illustrates possible appearances only; the exact source, coating, parameters and post-process determine whether each result can be reproduced.

Metal marking sample
Metal Marking
Dog nameplate marking sample
Dog Nameplate Marking
Tool marking sample
Tool Marking
Mobile phone case marking sample
Mobile Phone Case Marking
Leather bag marking sample
Leather Bag Marking
Stainless steel cup marking sample
Stainless Steel Cup Marking
Aluminium marking sample
Aluminium
Gold marking sample
Gold
Silver marking sample
Silver
Brass marking sample
Brass
Titanium marking sample
Titanium
Stainless steel marking sample
Stainless Steel
Copper marking sample
Copper
Platinum marking sample
Platinum
Carbon steel marking sample
Carbon Steel
Tile engraving sample
Tile
Tungsten marking sample
Tungsten
CS marking sample
Additional Metal Sample
Silicone and plastic marking sample
Silicone & Plastic
Colored acrylic marking sample
Colored Acrylic
Leather engraving sample
Leather
Stone engraving sample
Stone
Granite engraving sample
Granite
Marble engraving sample
Marble

Core System Components

Core components of fiber laser marking machine

JCZ / EZCAD2 Control Workflow

The workstation can be configured with a JCZ control card and EZCAD2 for text, serial data, barcodes, Data Matrix codes, vector artwork and raster images. Controller model, firmware, correction file, source protocol and supported imports are supplied with the approved machine configuration.

LightBurn Pro is an option only when its current compatibility list covers the supplied board and driver. Machine-specific configuration and lens-correction data must be retained, and operators are trained on focusing, fixtures, parameter limits, extraction and safe interlocked operation.

Laser source of fiber laser marking machine

Configured 1064 nm Fiber Source

Raycus, MAX, IPG or JPT source options can be evaluated by model, rated power, pulse-frequency range and pulse-width behavior. Higher power does not automatically improve every mark; spot size, pulse characteristics, heat input, lens field and scan strategy are selected from the approved sample.

BJJCZ laser control card

JCZ Galvo Control Card

The quoted JCZ card links the source, galvanometer and I/O to the marking software. The exact board revision, source protocol, firmware, driver and enclosure-interlock I/O must match the delivered electrical design; software control does not replace hardware safety circuits.

Galvanometer scan head

Galvanometer Scanner

The dual-axis galvanometer positions the scanning mirrors across the calibrated field. Quoted travel-speed figures do not equal production marking speed; the selected scan head, lens, correction file and artwork are verified together. Auto-focus and 3D scanning are separate engineered options, not standard features.

Ring and bracelet rotating axis

Jewelry Ring Rotary Fixture

A compact rotary fixture can support inside or outside marking on rings, bracelets and other small circular parts. Chuck range, concentricity, step resolution, focal clearance and enclosure-door clearance are confirmed for the customer part.

Gold and silver sheet clamps

Flat-Sheet and Small-Part Fixture

A flat-part clamp can locate thin precious-metal sheet, tags and small workpieces. Jaw material, usable opening, part thickness, flatness, repeatability and protection against cosmetic damage are selected for the application.

Wine glass bottle rotating shaft

Cylindrical Rotary Fixture

A chuck or roller rotary can index compatible cylindrical metal products for circumferential marking. Part diameter, length, weight, taper, surface finish, focal position and enclosure clearance are confirmed; transparent glass generally requires another laser process.

How to Get a Configuration-Ready Quotation

  • Exact material and coating: alloy or polymer grade, finish, color, SDS and any passivation, plating or anodizing.
  • Part geometry and size: maximum dimensions, marking location, available focal clearance and flat or cylindrical fixture needs.
  • Required result: artwork, code grade, contrast, texture or controlled depth, smallest character and cosmetic limit.
  • Production target: parts per shift, loading method, serialization source, inspection method and allowed cycle time.
  • Workholding and automation: rotary type, nest count, changeover requirement, barcode integration or external I/O.
  • Installation requirements: destination country, electrical service, extraction, safety classification, documentation and operator language.

The proposal should identify the exact source, controller, field lens, enclosure and safety controls, fixture, extraction, software, utilities, sample-acceptance criteria, documentation, warranty and delivery scope.

Enclosed Fiber Laser Marker FAQ

What materials can a fiber laser marking machine mark?

They are primarily used for steel, stainless steel, aluminum, brass, copper, titanium, precious metals, carbide and many coated metals. Some engineering polymers can mark well, while others melt, discolor poorly or release unsafe fumes. Confirm the exact grade and SDS through a sample test; leather, fabrics, glass and clear acrylic usually call for another laser process.

What laser power options are available?

Common quoted options are 30, 50, 60, 70 and 100 W. The exact source model matters as much as rated power: Q-switched and MOPA sources have different frequency and pulse-width behavior. Select power, lens and pulse range from the required contrast, depth, field and cycle time.

How deep can a fiber laser marking machine engrave into metal?

There is no universal depth value. Alloy, source architecture, rated power, lens, spot size, passes, hatch strategy, heat limit and cycle time all matter. Controlled-depth engraving must be measured on the customer sample and documented separately from surface marking.

What is the difference between fiber laser marking and CO2 laser marking?

A 1064 nm fiber laser couples efficiently with many metals and selected plastics, making it a common choice for durable part identification and metal engraving. A 10.6 µm CO2 laser is generally better for many organic materials, wood, paper, leather and acrylic. UV may be preferred for fine, low-heat marking on sensitive polymers and electronics.

How do I clean and maintain the lenses and mirrors?

Power down, isolate the machine and follow the supplied maintenance procedure. Keep the wavelength-rated window, work area and extraction path clean. Do not touch the field lens; use only approved lens tissue and optical-cleaning fluid when inspection shows contamination. Interlocks, filters and internal optics should be serviced by trained personnel.

What file formats and software are supported?

EZCAD2 commonly imports vector, raster and font formats and supports serial data, dates, barcodes and 2D codes. The exact import list depends on the supplied version. LightBurn Pro is optional only for a supported JCZ or other compatible galvo controller, driver and current license; verify the delivered board before purchase.

How long does the laser source last, and what is the warranty?

Service life is not a guaranteed fixed hour count. It depends on the exact source model, duty cycle, temperature, contamination, power quality and maintenance. The quotation must identify source and workstation warranty terms, exclusions, spare-parts support and the procedure for source or control-board service.

What are the advantages of fiber laser marking over traditional methods (e.g., inkjet or engraving)?

Fiber marking is non-contact, supports software-driven variable data and can create durable codes without ink consumables. It can reduce tool wear and routine ink-system maintenance, but it still requires safe extraction, correct fixtures, clean optics, validated parameters and inspection. Inkjet remains useful where fast, non-thermal marks or very large moving products are required.

Related Products

HOW TO?
  • What laser equipment does Vank Laser supply?

    Vank Laser supplies fiber laser cutting machines, fiber laser marking machines, CO2 laser cutting and engraving systems, laser welding machines and laser cleaning equipment for industrial production and custom automation projects.

  • How do I choose the right laser machine for my application?

    The right configuration depends on your material, thickness, workpiece size, required speed, accuracy target and production workflow. Share drawings, materials or sample parts with our team so we can recommend a suitable machine, laser power and accessories.

  • Can Vank Laser customize laser equipment?

    Yes. We can evaluate custom work areas, laser power, fixtures, rotary devices, loading systems, vision options and automation interfaces according to your process requirements and confirmed quotation.

  • Which industries use Vank Laser equipment?

    Our machines are used in sheet metal fabrication, signage, packaging, textiles, leather goods, electronics, automotive parts, medical device components, craft production, furniture, molds and general industrial marking, cutting, welding and cleaning.

  • What safety and compliance documents are available?

    Available compliance documents depend on the machine model, destination market and final configuration. We can provide the relevant certificates, manuals and safety documentation for the confirmed order. Operators should follow local safety rules and use proper guarding, ventilation and PPE.

  • What after-sales support do you provide?

    Vank Laser provides installation guidance, operator training, troubleshooting support, spare-parts assistance and warranty service according to the confirmed machine configuration and sales agreement. Remote technical support is available for daily operation questions.

  • How is the price of a laser machine quoted?

    Pricing depends on the model, laser power, working area, controller, source brand, cooling system, accessories, shipping terms and service requirements. Send your application details and we will prepare a configuration-based quotation.

  • How can I contact Vank Laser for more information?

    You can contact Vank Laser through the website form, email, WhatsApp or phone. Please include your material, workpiece size, target process and required output so our team can respond with practical recommendations.

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