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Portable Auto Ion Sputtering Coater for SEM Conductive Coating

Contact Person:Gilia Ding


Email: gilia@inthelaboratory.com

Tel:+86 177 5900 4070
Telephone:+86-177-59004070
Whatsapp: +86 177 5900 4070
Wechat:Dingqiuna



  • Item no.:

    Lith-BY-JS13
  • Payment:

    L/C, T/T, Western Union, Credit Cards, Paypal
  • Lead Time:

    7 days
  • Compliance:

    CE Certified
  • Warranty:

    Two years limited standard warranty
Categories
  • Product Detail

Portable Auto Ion Sputtering Coater for SEM Conductive Coating


Lith-BY-JS13- Glovebox-CompatibleSEM Sample Coater for Conductive Coatings


1. Key Features & Design Highlights

Ultra-Compact Design

· Chamber volume reduced by 67% (φ115×100 mm) vs. conventional systems

· 0.02 m³ footprint (307×260×260 mm) and 40 kg weight for easy benchtop placement

Rapid Process Ready

· Achieves working vacuum in <2 minutes (vs. industry-standard 5–10 mins)

· Oil-lubricated rotary pump with dual-frequency support (50/60Hz)

Precision Sputtering

· φ50×0.1 mm ultra-thin targets (Au/Ag/Pt) for microscale coating

· Scratch-resistant quartz viewport for real-time monitoring

 Energy Efficient

· <1500W power consumption (30% lower than comparable systems)

· Air-cooled operation eliminates water chiller requirements


2. Complete Technical Specifications

Core Parameters

Parameter

Specification

Vacuum Pump

Oil-required rotary pump

Pumping Speed

50Hz: 8 m³/h (2.2 L/s) • 60Hz: 9.6 m³/h (2.6 L/s)

Base Pressure

Achievable in <2 mins

Target Materials

Au (std.), Ag, Pt (φ50×0.1 mm)

Max Substrate Size

Ø50 mm

Power Supply

110V/60Hz or 220V/50Hz auto-switching

Cooling Method

Passive air cooling

Warranty

1-year limited + lifetime support

Mechanical Details

· Chamber Material: Stainless steel with quartz viewport

· Control Interface: Timer-based automation (manual override)

· Safety: Overcurrent protection, grounding detection


3. Recommended Applications

✔ SEM Sample Preparation

· Conductive coatings for non-metallic samples (e.g., polymers, biological tissues)

· Charge dissipation layers for high-resolution imaging

✔ Material Science Research

· Micro/nano-scale metal film deposition

· Prototype coating for flexible electronics

✔ Field & Educational Use

· Portable solution for shared lab spaces

· Low-maintenance operation (no water cooling)


4. Comparison vs. Conventional Systems

Aspect

Lith-BY-JS13

Traditional Coaters

Footprint

0.02 m³

≥0.05 m³

Setup Time

<5 mins

15–30 mins

Target Thickness

0.1 mm

0.3–1 mm

Cooling

Air-cooled

Water-chilled


Ion Sputtering Coater


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