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Compact Mini Desktop Magnetron Sputtering System for Making Metallic Coatings

Product overview

Core functionalities

Applicable scenarios

Unique advantages

  • Metallic Coating Deposition: Enables precise application of metallic coatings on glass substrates using magnetron sputtering technology under vacuum conditions.
  • Compact Desktop Design: A space-efficient system ideal for small-scale production or research, offering portability without compromising performance.

Key features

  • 1. Material Technology

  • With a corrosion-resistant stainless steel chamber and transparent borosilicate glass, you can ensure durability and visibility during coating processes, outperforming plastic-based systems*.

  • 2. Interactive Design

  • With a programmable digital control panel featuring multi-program presets and intuitive knobs, you can customize coating parameters for diverse applications, reducing setup time by up to 30%*.

  • 3. Performance Parameters

  • With a compact design optimized for 220V operation, you can achieve rapid coating cycles, up to 20% faster than traditional larger systems*, while maintaining precision for glass substrates.

  • 4. Scenario Solutions

  • With a compact desktop design tailored for glass substrates, you can seamlessly integrate into laboratory workflows or small-scale production lines, enhancing flexibility in R&D and industrial settings.

  • 5. Certification Standards

  • With safety certifications meeting ISO industrial standards, you can ensure reliable operation under high-pressure vacuum conditions, surpassing basic lab equipment safety norms*.

Product details

Compact Mini Desktop Magnetron Sputtering System for Making Metallic Coatings

The Compact Mini Desktop Magnetron Sputtering System is a versatile tool for depositing metallic coatings on glass substrates under vacuum conditions. Designed for laboratory and industrial use, it combines a transparent borosilicate glass reactor chamber for real-time process observation with programmable controls for precise pressure and temperature management. Operates at 220V with a 1-year warranty, ensuring reliability and ease of integration into existing setups.

Technical specifications

FeatureSpecificationBenefit
MaterialBorosilicate glass reactor chamberHigh-temperature resistance + visibility
Coating MethodMagnetron sputtering (vacuum-based)Uniform, durable metallic coatings
Substrate SupportGlassIdeal for optical or electronic devices
Control SystemDigital display + programmable knobsAdjustable pressure/temperature settings
Voltage Requirement220V ACGlobal compatibility
Safety FeaturesPressure relief valve + temp sensorsPrevents overpressure/overheating

Customization guide

Adjustable parameters such as vacuum pressure (10⁻³ to 10⁻⁵ Torr) and operating temperature (25°C to 400°C) allow customization for specific coating thicknesses or material compatibility.

Get inspired

With its compact design and transparent chamber, this system enables researchers and manufacturers to experiment with metallic coatings for applications like anti-reflective glass, conductive surfaces, or decorative finishes—all while monitoring reactions in real time.

Choose your model

ParameterBase ModelAdvanced ModelPro Model
Max Pressure (Torr)10⁻³+15% (10⁻³.5)+30% (10⁻⁴)
Temp Range (°C)25–30025–35025–400
Coating SpeedStandard20% faster40% faster
Safety SensorsBasic temp/pressureDual temp/pressureTriple redundancy

Supplier's note

  1. Three Breakthroughs:

    • Transparent Reactor Chamber: Allows real-time monitoring of coating formation, reducing errors.
    • Programmable Controls: Enables precise replication of coating parameters across experiments.
    • Enhanced Safety: Triple redundancy sensors in the Pro model prevent catastrophic failures.
  2. Version Selection Guide:

    • Base Model: Ideal for academic labs requiring basic coating experiments (e.g., thin film research).
    • Advanced Model: Suitable for industrial prototyping needing faster deposition and higher temps (e.g., semiconductor coatings).
    • Pro Model: Best for R&D facilities handling extreme conditions (e.g., aerospace-grade coatings).

With the Pro model’s 400°C capability, you can deposit ultra-durable coatings for high-temperature applications. Pair its 10⁻⁴ Torr vacuum with borosilicate glass to ensure minimal impurities—a game-changer for optical device manufacturers.

Frequently asked questions

  • Which compact magnetron sputtering system suits small labs or offices?

  • How to clean the control panel of a desktop sputtering system?

  • Glass vs Plastic Substrates: Which is better for vacuum coating?

  • Can I customize coating thickness on this system?

  • Is the system CE-certified for lab safety?

  • Does 220V voltage work with standard outlets?

  • Can I use metal substrates with this sputtering system?

  • What warranty covers the desktop sputtering system?

Product comparison

CategoryUsage ScenariosCharacteristicsAdvantagesDisadvantages
Coating MethodPrecision thin-film depositionVacuum coating: Achieves 5–500 nm film thickness (ISO 3406-5)▲▲ Superior uniformity and adhesion for electronics/glass surfacesRequires controlled environment (vacuum chamber)
Substrate CompatibilityGlass coating for optics/electronicsGlass substrates: Handles up to 500°C (ASTM C162)▲▲ Ideal for optical components and semiconductor manufacturingLimited to heat-resistant materials (e.g., borosilicate glass)
Operating VoltageStandard lab setups220V input: Matches global household/industrial standards (IEC 60950)▲ Plug-and-play compatibility without specialized power infrastructureCannot support high-power advanced features (e.g., pulsed DC magnetron)
Safety FeaturesHazardous material handlingPressure relief valve: Auto-shuts at ≥0.8 MPa (ASME PTC 25)▲▲ Prevents explosion risks during high-pressure sputteringRequires annual calibration for pressure sensors
Warranty PeriodLong-term industrial use1-year warranty (Industry Standard: 6 months; Advanced: 2 years)▲ Matches industry baseline for basic maintenance coverageLimited support for wear-and-tear components (e.g., vacuum pumps)
Powder Recovery EfficiencyCost-effective coating95% powder reuse (ASTM D3287) for Advanced models▲▲ Reduces material waste by 50% compared to Industry Standard (70%)Only applicable to systems with cyclone separators (not included in Base)

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