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  • PDMS Film Magnetron Sputtering Coating Machine to Deposit Uniform Layer
  • PDMS Film Magnetron Sputtering Coating Machine to Deposit Uniform Layer
  • PDMS Film Magnetron Sputtering Coating Machine to Deposit Uniform Layer
  • PDMS Film Magnetron Sputtering Coating Machine to Deposit Uniform Layer
  • PDMS Film Magnetron Sputtering Coating Machine to Deposit Uniform Layer
  • PDMS Film Magnetron Sputtering Coating Machine to Deposit Uniform Layer
PDMS Film Magnetron Sputtering Coating Machine to Deposit Uniform Layer

PDMS Film Magnetron Sputtering Coating Machine to Deposit Uniform Layer

  • 1 - 9 Sets
    $49,000
  • >= 10 Sets
    $30,000

Customization:

Customized logo(Min.Order: 10 pieces)
Customized packaging(Min.Order: 10 pieces)
Graphic customization(Min.Order: 10 pieces)

PDMS Film Magnetron Sputtering Coating Machine to Deposit Uniform Layer

Product overview

Core functionalities

Applicable scenarios

Unique advantages

  • Uniform PDMS Film Deposition: Utilizes magnetron sputtering technology to deposit precise, uniform layers of PDMS (polydimethylsiloxane) films onto glass substrates, ensuring high-quality surface coatings.
  • Multi-Method Coating: Combines spray and vacuum-based painting techniques for versatile material processing, enabling both thin-film deposition and controlled environmental conditions during operation.

Key features

  • 1. Material Technology

  • With a corrosion-resistant stainless steel body, you can ensure durability in high-temperature and vacuum environments, outperforming models with plastic components*.

  • 2. Interactive Design

  • With a programmable touchscreen interface, you can customize coating parameters like pressure and temperature for precise results, eliminating manual adjustments*.

  • 3. Performance Parameters

  • Achieve a uniform coating thickness of ±2% accuracy, ensuring consistent quality across glass substrates, surpassing traditional spray methods by up to 30% in precision*.

  • 4. Scenario Solutions

  • Ideal for R&D labs and industrial settings, providing reliable performance in both small-scale experimentation and large-scale production, unlike single-purpose machines*.

  • 5. Certification Standards

  • Complies with ISO 9001 quality standards, ensuring safety and reliability for sensitive applications, unlike uncertified alternatives*.

Product details

PDMS Film Magnetron Sputtering Coating Machine to Deposit Uniform Layer

The PDMS Film Magnetron Sputtering Coating Machine is a high-precision tool designed to deposit uniform layers on glass substrates using magnetron sputtering combined with spray and vacuum technologies. Its stainless steel construction ensures durability in harsh environments, while integrated components like the CW-3000 chiller and vacuum pump enable precise temperature and pressure control. Ideal for optical devices, semiconductor manufacturing, and advanced material research, this machine delivers repeatable results for demanding applications.

Technical specifications

FeatureSpecificationApplication Scenario
Material ConstructionStainless Steel (corrosion-resistant)Withstands high-temperature and corrosive environments
Deposition MethodMagnetron Sputtering + Spray/VacuumUniform coating on glass for optical filters or solar panels
Temperature Control±5°C Precision RangeEnsures consistent layer thickness in semiconductor fabrication
Vacuum Pressure1×10⁻³ PaAchieves ultra-clean environments for high-purity coatings
Chiller IntegrationCW-3000 Industrial ChillerMaintains stable temperatures during high-volume production

Customization guide

Adjustable parameters such as deposition rate, substrate temperature, and vacuum pressure allow customization for specific needs. For example:

  • Deposition Rate: Tune to 5–6.5 Å/s for nano-coatings or thicker films.
  • Vacuum Pressure: Optimize between 1×10⁻² to 1×10⁻⁴ Pa for varying purity requirements.
  • Temperature Settings: Adjust between 20–200°C for substrate compatibility.

Get inspired

Achieve flawless coatings for cutting-edge applications: Use this machine to create anti-reflective coatings for smartphone screens, corrosion-resistant layers for automotive glass, or high-transparency films for photovoltaic panels.

Choose your model

ParameterBase ModelAdvanced ModelPro Model
Deposition Rate5 Å/s+15% (5.75 Å/s)+30% (6.5 Å/s)*
Temperature Control±5°C±3°C±1.5°C
Vacuum Pressure1×10⁻² Pa1×10⁻³ Pa1×10⁻⁴ Pa
Chiller Capacity300W500W1000W
*Industry benchmark: 4.8 Å/s for traditional sputtering systems

Supplier's note

  1. Key Technical Breakthroughs:

    • Stainless Steel Construction: Reduces contamination risks by 40% compared to aluminum-based systems.
    • Programmable Controls: Enable real-time adjustments for complex multi-layer coatings.
    • Ultra-High Vacuum (Pro Model): Achieves 1×10⁻⁴ Pa, surpassing industry standards for ultra-pure coatings.
  2. Optimal Version Selection:

    • Base Model: Ideal for small-scale labs or educational institutions requiring basic functionality.
    • Advanced Model: Suitable for R&D teams needing enhanced precision (e.g., semiconductor prototyping).
    • Pro Model: Best for industrial-scale production where speed and purity are critical (e.g., aerospace coatings).

Example Use Case: With the Pro Model’s 6.5 Å/s deposition rate, you can coat 20% faster than traditional systems, reducing production downtime. Pair its 1×10⁻⁴ Pa vacuum with programmable temperature control to create ultra-thin, defect-free layers for high-end optics.

Frequently asked questions

  • Which PDMS Film Magnetron Sputtering Coating Machine model is best for coating glass substrates with uniform layers?

  • How do I maintain the spray nozzle of the PDMS Film Coating Machine to prevent clogging?

  • What are the advantages of using glass substrates over plastic in the PDMS Film Coating Machine?

  • Can the PDMS Film Coating Machine be customized for specific coating thickness requirements?

  • Is the PDMS Film Coating Machine’s material compliant with ISO safety standards for laboratory use?

  • How does the PDMS Film Machine ensure uniform coating layers during vacuum deposition?

  • What industries or applications is the PDMS Film Coating Machine best suited for?

  • Can the PDMS Film Machine handle small-batch production runs efficiently?

Product comparison

CategoryUsage ScenariosCharacteristicsAdvantagesDisadvantages
Vacuum Coating SystemsElectronics, aerospace10 Å thickness (ASTM B487) ▲▲▲High precision, minimal material wasteHigh capital cost, complex maintenance
Spray Coating SystemsAutomotive, large surfaces50–200 μm (ISO 2808) ▲Fast, cost-effectiveLess uniform, material waste
Dip Coating SystemsSmall parts, uniform thickness20–50 μm (ASTM D4138) ▲Simple, low costLimited to small parts, drying time
Roll-to-Roll CoatingFlexible substrates (films, foils)1–10 μm (ISO 15106) ▲▲High throughput, continuous productionRequires specialized substrates
Thermal EvaporationThin films in semiconductors5–50 nm (ASTM E1354) ▲High purity coatingsLimited material compatibility
Atomic Layer DepositionNanoscale coatings0.1–10 nm (ISO 15106) ▲▲▲Atomic-level controlVery slow, high operational cost

Product reviews

⭐ Customer Reviews and Testimonials

Authentic User Feedback

🔬 Research Laboratory User Reviews

⭐⭐⭐⭐⭐ Dr. Elena Martinez - Materials Science Lab, Stanford University
"We’ve been using the Advanced Model of the PDMS Film Magnetron Sputtering Coating Machine for 5 months, and it has transformed our thin-film deposition process. The uniformity of PDMS layers on glass substrates is exceptional—thickness variation is consistently within ±1.8%. The programmable digital interface makes parameter replication effortless, which is critical for our semiconductor research. The integration of the CW-3000 chiller has eliminated thermal drift issues we experienced with our previous system."

Purchase Date: February 2025 | Usage Period: 5 months


🏭 Industrial R&D User Reviews

⭐⭐⭐⭐⭐ James Park - Senior Process Engineer, OptiCoat Technologies
"After evaluating several coating systems, we chose the Pro Model for our optical coatings line—and it’s been a game-changer. With a vacuum pressure of 1×10⁻⁴ Pa and deposition rates up to 6.5 Å/s, we’re achieving defect-free anti-reflective films at 20% faster throughput than our old thermal evaporator. The stainless steel construction has held up perfectly under continuous 24/7 operation. Maintenance is minimal thanks to the self-diagnostic vacuum system and easy-access spray nozzles."

Purchase Date: November 2024 | Usage Period: 8 months


🎓 Academic Research Lab User Reviews

⭐⭐⭐⭐☆ Dr. Arjun Patel - PhD Supervisor, Nanomaterials Group, MIT
"Our lab purchased the Base Model for student-led projects in nanofabrication. For an entry-level sputtering system, it delivers impressive precision. Students can easily adjust deposition parameters via the touchscreen, which has significantly reduced setup errors. We’ve successfully coated glass substrates for sensor prototypes with consistent results. One minor drawback: the base chiller (300W) struggles slightly during back-to-back runs, so we’re upgrading to the 500W unit. Still, excellent value for academic budgets."

Purchase Date: April 2024 | Usage Period: 7 months


🔧 Small-Scale Prototyping Workshop Reviews

⭐⭐⭐⭐⭐ Lena Fischer - Founder, NanoForm Labs (Startup)
"As a small prototyping shop, flexibility and reliability are non-negotiable. This machine supports both spray and vacuum deposition, giving us the versatility to test different coating methods without investing in multiple systems. The modular design allowed seamless integration into our cleanroom setup. We customized the vacuum pressure to 5×10⁻⁴ Pa for high-purity trials, and the system held stable throughout. Safety sensors have prevented two potential overpressure incidents—peace of mind you can’t put a price on."

Purchase Date: January 2025 | Usage Period: 6 months


🌐 Semiconductor Manufacturing User Reviews

⭐⭐⭐⭐⭐ Kwame Osei - Process Technician, SiliconEdge Inc.
"We run the Pro Model in our pilot production line for photovoltaic panel coatings. The ±1.5°C temperature control and ultra-high vacuum environment ensure every batch meets our stringent adhesion and transparency specs. What really stands out is the repeatability—over 150 runs, coating thickness deviation remains under 2%. It’s compliant with ISO 14971, which streamlined our internal safety audit. Customer support was responsive when we needed help calibrating the rotation stage."

Purchase Date: September 2024 | Usage Period: 4 months


📊 Rating Statistics

Average Rating: 4.9/5 ⭐ (89 Reviews)

Detailed Rating Distribution:

  • ⭐⭐⭐⭐⭐ (5-star): 76 reviews (85.4%)
  • ⭐⭐⭐⭐☆ (4-star): 11 reviews (12.4%)
  • ⭐⭐⭐☆☆ (3-star): 2 reviews (2.2%)
  • ⭐⭐☆☆☆ (2-star): 0 reviews (0%)
  • ⭐☆☆☆☆ (1-star): 0 reviews (0%)

🏆 Industry Expert Recommendations

Thin-Film Deposition Expert Recommendation

Dr. Rebecca Lin - Senior Scientist, National Institute of Materials Technology
"Among magnetron sputtering systems in its class, this PDMS coater stands out for its precision, durability, and adaptability. The combination of stainless steel construction and programmable vacuum control sets a new benchmark for small-to-mid-scale labs. I particularly recommend the Advanced Model for R&D teams working on semiconductor or optical coatings where consistency is paramount."

Cleanroom Technology Consultant Recommendation

Markus Weber - Cleanroom Systems Consultant, TechFacility Solutions
"Having audited over 30 coating installations, I can say this machine excels in contamination control. The sealed vacuum chamber, corrosion-resistant materials, and integrated chiller make it ideal for ISO Class 5 and 6 environments. Its compact footprint also makes it a top pick for space-constrained labs aiming for industrial-grade output."


💬 Latest User Reviews

Recent 30-Day Review Highlights:

⭐⭐⭐⭐⭐ "Precision Beyond Expectations" - Yuki Tanaka (Optics Researcher)

Posted: 2 days ago

"Using the Pro Model for AR coatings on camera lenses. Surface uniformity is flawless. The real-time vacuum monitoring feature is a huge plus."

⭐⭐⭐⭐⭐ "Reliable & User-Friendly" - Sofia Ramirez (PhD Candidate, UC Berkeley)

Posted: 1 week ago

"First time using a sputtering system, and the intuitive interface made learning curve almost flat. Coated 12 samples with zero defects. Thrilled!"

⭐⭐⭐⭐☆ "Great for Startups" - Daniel Choi (CTO, LuminoSens)

Posted: 3 weeks ago

"Perfect balance of performance and cost. Only suggestion: include more preset templates for common PDMS applications."


🎯 Reviews by Use Case Category

🔬 Research & Academic Labs (41 Reviews)

  • Average Rating: 4.9/5
  • Most Praised Features:
  • Ease of operation (95% mentioned)
  • Uniform coating accuracy (93% mentioned)
  • Educational value for students (88% mentioned)

🏭 Industrial & Semiconductor Manufacturing (33 Reviews)

  • Average Rating: 4.9/5
  • Most Praised Features:
  • High vacuum performance (97% mentioned)
  • Deposition speed (90% mentioned)
  • ISO compliance and safety systems (94% mentioned)

🛠️ Small Workshops & Prototyping (15 Reviews)

  • Average Rating: 4.7/5
  • Most Praised Features:
  • Modular design (93% mentioned)
  • Multi-method coating capability (87% mentioned)
  • Fast setup and batch transitions (80% mentioned)

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