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Large Area Float Glass Coating Magnetron Sputtering Coating System

Product overview

Core functionalities

Applicable scenarios

Unique advantages

  • Magnetron Sputtering Coating: Enables precise and uniform thin-film coating on large float glass surfaces for applications like solar panels, architectural glass, and automotive glass.
  • High-Capacity Automation: Features robotic arms and conveyor belts for seamless, high-volume processing, reducing manual intervention and enhancing productivity.

Key features

  • 1. Corrosion-Resistant Material Technology

  • With a stainless steel corrosion-resistant body, ensure long-term durability in high-humidity or chemical-exposed industrial environments. This material outperforms traditional aluminum alloys in resisting rust and wear over time*.

  • 2. Advanced Interactive Automation Design

  • With a touchscreen-controlled interface, program and monitor coating parameters (e.g., sputtering speed, thickness) for precise magnetron sputtering processes. This reduces manual adjustments compared to legacy systems*.

  • 3. High-Performance Coating Efficiency

  • With magnetron sputtering technology, achieve coating speeds of up to 1,500 glass panels annually*—~30% faster than conventional dip-coating methods*.

  • 4. Modular Scenario Adaptability

  • With a modular design, customize the system to handle large float glass sheets (up to 6m in length) and adapt to diverse industrial applications, from automotive glass to architectural panels.

  • 5. Safety & Energy Efficiency Certifications

  • With ISO 14001 and CE-certified safety features, comply with global industrial standards for energy efficiency and operator protection, minimizing environmental impact and downtime*.

Product details

Large Area Float Glass Coating Magnetron Sputtering Coating System

The Large Size Float Glass Coating System Magnetron Sputtering Coating System is a high-capacity industrial machine designed for precision glass coating in manufacturing. Built with corrosion-resistant stainless steel and modular components, it supports automated operations, energy efficiency, and customizable production workflows.

Technical specifications

FeatureSpecificationBenefit
MaterialStainless steel main structureEnsures durability and corrosion resistance
Voltage380VStandard industrial power compatibility
Automation LevelRobotic arms + conveyor beltsReduces manual labor and improves efficiency
Production CapacityCustomizable (yearly output)Scalable to meet diverse production demands
Coating Precision±3% thickness uniformity (Pro model)High-quality, defect-free coatings

Customization guide

Adjustable conveyor belt speeds and robotic arm positions allow customization to meet specific production needs. Modular design enables integration with existing CNC systems or expansion for future scalability.

Get inspired

With this advanced magnetron sputtering system, you can achieve precise, high-volume glass coating for applications ranging from automotive glass to architectural panels. Its automated workflows and customizable parameters empower businesses to streamline production while maintaining strict quality standards.

Choose your model

ParameterBase ModelAdvanced ModelPro Model
Coating Thickness Accuracy±5%±3%±1%*
Processing Speed10 units/hour15 units/hour (+50%)20 units/hour (+100%)*
Automation LevelSemi-automaticFully automatedAI-integrated
Energy EfficiencyStandard15% improvement30% improvement*

Supplier's note

  1. Technical Breakthroughs:

    • The Pro model’s ±1% coating accuracy enables defect-free coatings for premium automotive and aerospace applications.
    • AI-integrated automation (Pro) reduces downtime by 40% via real-time process adjustments.
    • Modular design allows easy retrofitting of existing production lines, lowering upgrade costs.
  2. Optimal Version Selection:

    • Base Model: Ideal for SMEs requiring basic coating capabilities (e.g., standard architectural glass).
    • Advanced Model: Suited for mid-scale manufacturers needing faster processing (e.g., automotive suppliers).
    • Pro Model: Best for high-end industries (e.g., semiconductor or medical glass) demanding precision and energy efficiency.

*Pro model exceeds industry benchmarks by 30% in energy efficiency and coating accuracy, ensuring sustainable and premium-quality outputs.

Frequently asked questions

  • Which magnetron sputtering coating machine suits large-scale glass production facilities?

  • How do I maintain the coating chamber of a float glass coating system?

  • What materials are used in industrial glass coating systems for durability?

  • Can the magnetron sputtering machine be customized for specific coating thicknesses?

  • Is the magnetron sputtering coating system compliant with international safety standards?

  • What annual production capacity does the large float glass coating system offer?

  • Does the 380V magnetron sputtering machine support global voltage requirements?

  • How does the modular design improve upgrades for glass coating systems?

Product comparison

CategoryUsage ScenariosCharacteristicsAdvantagesDisadvantages
Production CapacityLarge-scale glass manufacturersIndustry Standard: 300,000 sqm/year
Our Base: 400,000 sqm/year ▲
Our Advanced: 500,000 sqm/year ▲▲
High output meets mass production demands (ISO 9001-certified processes)Requires significant floor space and capital investment for advanced models
Energy EfficiencyEco-conscious factoriesIndustry Standard: 25 kWh/sqm
Our Base: 20 kWh/sqm ▲
Our Advanced: 18 kWh/sqm ▲▲
Reduces operational costs by 28% (IEC 60038-compliant voltage optimization)Higher upfront cost for advanced energy-saving components
Coating UniformityPremium glass product manufacturersIndustry Standard: ±10µm
Our Base: ±7µm ▲
Our Advanced: ±5µm ▲▲
Ensures consistent quality for high-end applications (ISO 14644 certification)Requires precise calibration and maintenance for advanced systems
Automation LevelHigh-volume production linesIndustry Standard: Semi-automated
Our Base: Fully automated ▲
Our Advanced: AI-driven automation ▲▲
Reduces labor costs by 40% (ISO 10218-1 robotic safety compliance)Advanced models require skilled operators and IT infrastructure
Maintenance RequirementsFacilities with limited downtimeIndustry Standard: MTBF 5,000h
Our Base: MTBF 7,000h ▲
Our Advanced: MTBF 10,000h ▲▲
Minimizes unplanned downtime (ISO 13374 predictive maintenance protocols)Advanced systems may need specialized technicians for servicing
Safety FeaturesRegulated industries (e.g., automotive)Industry Standard: Basic safety protocols
Our Base: ISO 13849-1 ▲
Our Advanced: ISO 13849-1 + emergency stop ▲▲
Meets global safety standards (e.g., OSHA compliance)Adds to equipment cost due to redundant safety systems

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