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  • Lab coating machine Versatile Roll-to-Roll Pilot Coating System with Optional Doctor Blade, Reverse Comma, Tape Cast, Slot Die, Micro Gravure Coating Heads

  • Doctor Blade Coating Machine Doctor Blade Coating Machine For Sheet Material Tractive Tension

    The hot melt coating machine uses a hot melt adhesive heating tank and a special hot melt adhesive extrusion coating head to achieve uniform coating. Lamination and die-cutting are optional.

  • Dip Coater Lab High-end Single Station Dip Coater Suitable for Dipping And Pull Film Preparation

    Micron Range Programmable Dip Coater (1-500 um/sec) with Drying Oven upto 100°C

  • Lab coating machine Economic Desktop Spin Coater (Max. 8000 rpm) with Complete Accessories

     Economic Desktop Spin Coater (Max. 8000 rpm) with Complete Accessories.

  • Vacuum Coater Touch Screen Compact Tape Casting Film Coating Machine with Dryer

    200ºC Max. Automatic Film Coater with Dryer Cover and 140mm Doctor Blade TMAX-JK-TMJ-200 is a CE Certified ready compact tape casting coater with a heating cover designed to produce films with consistent thickness. It has a unique driving system to produce a smooth coating on all types of materials. The flat vacuum chuck is built in to hold the substrate sheet in place, which is particularly useful when making thin coatings. One 140 mm width adjustable micrometer applicator (doctor-blade). Heating cover with digital temperature controller can dry films after coating up to 200°C with a temperature accuracy of +/-1°C. This equipment can be used for researchers on ceramic tape castings and Li-Ion battery electrode coating.

  • Sputter Coater for SEM Sample Preparation RF+DC Magnetron Ion Sputtering Coater Coating Machine For Non-Metals, Oxide, Ceramics

    RF+DC  Magnetron Ion Sputtering Coater Coating Machine For Non-Metals, Oxide, Ceramics     Model: TMAX-BY-JS12| – Product Specifications Technical Specifications Parameter Specification Vacuum Pump System Rotary Vane Pump (Oil-lubricated) + Oil-Free Turbo Molecular Pump Set Rotary Pump Speed 50Hz: 16m³/h (4.4 L/s) | 60Hz: 19.2m³/h (5.2 L/s) Molecular Pump Speed 300 L/s Ultimate Vacuum 5 × 10⁻⁴ Pa Working Pressure 0.5 – 5 Pa Pump-Down Time >10 min (to 10 Pa) Vacuum Measurement Range: Atmosphere to 10⁻⁴ Pa Gas Control Mass Flow Controller (MFC) Chamber Size φ260mm × 200mm (Metal Chamber) Magnetron Target Source Target Size: φ50mm × 3mm (Copper)  Compatible with Weakly Magnetic Materials Operation Method Manual Control (Instruction Manual Provided) Weight / Dimensions 100kg / 610mm (L) × 420mm (W) × 490mm (H) Power Supply AC 110V 60Hz or AC 220V 50Hz Power Consumption <3000W Cooling System Air Cooling (Pump) + Water Cooling (Sputtering Target) Warranty 1-Year Limited Warranty with Lifetime Technical Support Key Features & Applications Core Advantages 1. Multi-Mode Sputtering Supports RF (Radio Frequency), DC (Direct Current), and RF+DC Hybrid modes for conductive, insulating, and composite material coatings. 2. High Vacuum Stability Turbo molecular pump (300 L/s) combined with a rotary pump ensures an ultimate vacuum of 5×10⁻⁴ Pa, guaranteeing high-purity and uniform films. 3. Flexible Compatibility ·Chamber size (φ260mm × 200mm) accommodates small to medium-sized samples. ·φ50mm target supports copper and weakly magnetic materials for diverse applications. 4. Efficient Cooling System ·Water-cooled target minimizes thermal load during high-power sputtering. · Air-cooled pump reduces maintenance costs for continuous operation. Typical Applications ·Research Fields Thin film deposition, nanostructured coatings, semiconductor device development. ·Industrial Uses Optical coatings, wear-resistant layers, surface modification of electronic components.       html {margin:0;padding:0;} body {margin:0;padding:5px;} body, td {font:12px/1.5 "sans serif",tahoma,verdana,helvetica;} body, p, div {word-wrap: break-word;} p {margin:5px 0;} table {border-collapse:collapse;} img {border:0;} noscript {display:none;} table.ke-zeroborder td {border:1px dotted #AAA;} img.ke-flash { border:1px solid #AAA; background-image:url(https://www.lithmachine.com/js/htmledit/kindeditor/themes/common/flash.gif); background-position:center center; background-repeat:no-repeat; width:100px; height:100px; } img.ke-rm { border:1px solid #AAA; background-image:url(https://www.lithmachine.com/js/htmledit/kindeditor/themes/common/rm.gif); background-position:center center; background-repeat:no-repeat; width:100px; height:100px; } img.ke-media { border:1px solid #AAA; background-image:url(https://www.lithmachine.com/js/htmledit/kindeditor/themes/common/media.gif); background-position:center center; background-repeat:no-repeat; width:100px; height:100px; } img.ke-anchor { border:1px dashed #666; width:16px; height:16px; } .ke-script, .ke-noscript, .ke-display-none { display:none; font-size:0; width:0; height:0; } .ke-pagebreak { border:1px dotted #AAA; font-size:0; height:2px; } html {margin:0;padding:0;} body {margin:0;padding:5px;} body, td {font:12px/1.5 "sans serif",tahoma,verdana,helvetica;} body, p, div {word-wrap: break-word;} p {margin:5px 0;} table {border-collapse:collapse;} img {border:0;} noscript {display:none;} table.ke-zeroborder td {border:1px dotted #AAA;} img.ke-flash { border:1px solid #AAA; background-image:url(https://www.lithmachine.com/js/htmledit/kindeditor/themes/common/flash.gif); background-position:center center; background-repeat:no-repeat; width:100px; height:100px; } img.ke-rm { border:1px solid #AAA; background-image:url(https://www.lithmachine.com/js/htmledit/kindeditor/themes/common/rm.gif); background-position:center center; background-repeat:no-repeat; width:100px; height:100px; } img.ke-media { border:1px solid #AAA; background-image:url(https://www.lithmachine.com/js/htmledit/kindeditor/themes/common/media.gif); background-position:center center; background-repeat:no-repeat; width:100px; height:100px; } img.ke-anchor { border:1px dashed #666; width:16px; height:16px; } .ke-script, .ke-noscript, .ke-display-none { display:none; font-size:0; width:0; height:0; } .ke-pagebreak { border:1px dotted #AAA; font-size:0; height:2px; } html {margin:0;padding:0;} body {margin:0;padding:5px;} body, td {font:12px/1.5 "sans serif",tahoma,verdana,helvetica;} body, p, div {word-wrap: break-word;} p {margin:5px 0;} table {border-collapse:collapse;} img {border:0;} noscript {display:none;} table.ke-zeroborder td {border:1px dotted #AAA;} img.ke-flash { border:1px solid #AAA; background-image:url(https://www.lithmachine.com/js/htmledit/kindeditor/themes/common/flash.gif); background-position:center center; background-repeat:no-repeat; width:100px; height:100px; } img.ke-rm { border:1px solid #AAA; background-image:url(https://www.lithmachine.com/js/htmledit/kindeditor/themes/common/rm.gif); background-position:center center; background-repeat:no-repeat; width:100px; height:100px; } img.ke-media { border:1px solid #AAA; background-image:url(https://www.lithmachine.com/js/htmledit/kindeditor/themes/common/media.gif); background-position:center center; background-repeat:no-repeat; width:100px; height:100px; } img.ke-anchor { border:1px dashed #666; width:16px; height:16px; } .ke-script, .ke-noscript, .ke-display-none { display:none; font-size:0; width:0; height:0; } .ke-pagebreak { border:1px dotted #AAA; font-size:0; height:2px; }

  • Sputter Coater for SEM Sample Preparation PVD DC Sputtering Coating System For Oxides & Ceramics & Semiconductors

    PVD DC Sputtering Coating System For Oxides & Ceramics & Semiconductors   Model: TMAX-BY-JS09| – Product Specifications Product Overview The TMAX-BY-JS09 is a compact, high-vacuum magnetron sputtering system specifically designed for glovebox-integrated applications. Its space-saving flush-mount design allows the observation window to align perfectly with the glovebox wall, eliminating internal space occupation—a common limitation of traditional sputtering systems. Since its launch, this system has been widely adopted by research institutions for its efficiency and precision. Technical Specifications Category Specification Vacuum System Rotary vane pump (oil) + Turbo molecular pump (oil-free) Pumping Speed Rotary pump: 16 m³/h (4.4 L/s) @50Hz / 19.2 m³/h (5.2 L/s) @60Hz  Turbo pump: 300 L/s Ultimate Vacuum 5×10⁻⁵ Pa Working Pressure 0.5–5 Pa Pump-Down Time ≤10 min (to 10⁻³ Pa) Vacuum Measurement From atmosphere to 10⁻⁶ Pa Gas Control Precision gas flow controller Chamber Size φ260 mm × 200 mm (metal) Sputtering Target φ50 mm × 3 mm (Cu target); suitable for weakly magnetic materials Power Supply AC 220V 50Hz or AC 110V 60Hz Power Consumption ≤3000 W Cooling System Air cooling (pump) + Water cooling (sputtering target) Dimensions & Weight 610 mm (L) × 420 mm (W) × 490 mm (H) / ~100 kg Warranty 1-year limited warranty, lifetime technical support Key Features & Customer Benefits 1. Space-Saving Glovebox Integration · Problem Solved: Traditional sputtering systems occupy valuable glovebox space, limiting workflow efficiency. · Our Solution: The flush-mounted design minimizes protrusion, allowing seamless integration without compromising internal workspace—ideal for labs with limited glovebox capacity. 2. High-Performance Vacuum & Fast Pump-Down · Achieves 5×10⁻⁵ Pa ultimate vacuum, ensuring ultra-clean deposition conditions for sensitive materials (e.g., semiconductors, optical coatings). · Rapid pump-down (≤10 min to 10⁻³ Pa) reduces idle time, enhancing lab productivity. 3. Precision Process Control · Stable gas flow control enables repeatable deposition rates, critical for uniform thin-film growth. · Broad vacuum measurement range (atmosphere to 10⁻⁶ Pa) ensures accurate monitoring across all process stages. 4. Versatile Material Compatibility · Supports argon and other process gases for reactive/non-reactive sputtering. · Accommodates 50mm targets (Cu standard, customizable for weakly magnetic materials). 5. Reliable Cooling & Safety · Hybrid air + water cooling prevents overheating during extended operation, ensuring system longevity.       html {margin:0;padding:0;} body {margin:0;padding:5px;} body, td {font:12px/1.5 "sans serif",tahoma,verdana,helvetica;} body, p, div {word-wrap: break-word;} p {margin:5px 0;} table {border-collapse:collapse;} img {border:0;} noscript {display:none;} table.ke-zeroborder td {border:1px dotted #AAA;} img.ke-flash { border:1px solid #AAA; background-image:url(https://www.lithmachine.com/js/htmledit/kindeditor/themes/common/flash.gif); background-position:center center; background-repeat:no-repeat; width:100px; height:100px; } img.ke-rm { border:1px solid #AAA; background-image:url(https://www.lithmachine.com/js/htmledit/kindeditor/themes/common/rm.gif); background-position:center center; background-repeat:no-repeat; width:100px; height:100px; } img.ke-media { border:1px solid #AAA; background-image:url(https://www.lithmachine.com/js/htmledit/kindeditor/themes/common/media.gif); background-position:center center; background-repeat:no-repeat; width:100px; height:100px; } img.ke-anchor { border:1px dashed #666; width:16px; height:16px; } .ke-script, .ke-noscript, .ke-display-none { display:none; font-size:0; width:0; height:0; } .ke-pagebreak { border:1px dotted #AAA; font-size:0; height:2px; }

  • Laminating Coating Machine Carbon Fiber Automatic Laminating & Coating Machine

    The hot melt coating machine uses a hot melt adhesive heating tank and a special hot melt adhesive extrusion coating head to achieve uniform coating. Lamination and die-cutting are optional.

  • Roll Coating Machine Roll to Roll Coating Machine with 6 Meter Drying Oven For Lithium Ion Battery

    The coating machine TMAX-DYG-132MS is a single face continuous and Intermittent coating machine mainly used for Slurry drying process of lithium battery electrode coating. The battery coating machine adopts continuous and Intermittent coating mode, is mainly used for lithium battery pilot scale production line.

  • Dip Coater Dip Coater (1-200 mm/min) with Drying Oven up to 100°C

    Dip Coater (1-200 mm/min) with Drying Oven up to 200°C 

  •  De-ironing Filtration System 5L Magnetic De-ironing Filtration Machine for Battery Slurry Before Coating

  • Meyer Rod Coating Machine Customizable Meyer Rod Coating Machine Metering Rod Coater

    The hot melt coating machine uses a hot melt adhesive heating tank and a special hot melt adhesive extrusion coating head to achieve uniform coating. Lamination and die-cutting are optional.

  • Lab coating machine Programmable Hi-Speed Spin Coater (10K rpm & 5" max) with Vacuum Chucks (Optional Heating Cover)

    Programmable Hi-Speed Spin Coater (10K rpm & 5" max) with Vacuum Chucks (Optional Heating Cover)

  • Laser Thickness Measurement Laser Thickness Measurement Device for Coating Thickness or Calender Electrode Thickness Measurement

  • Sputter Coater for SEM Sample Preparation Lab PVD Ion Sputtering Coater For Metal and Carbon Layer

    Lab PVD Ion Sputtering Coater For Metal and Carbon Layer        Model: TMAX-JY-JS01-SEM Preparation Overview The TMAX-JY-JS01 compact magnetron ion sputtering coater is designed for high-quality conductive coating (e.g., gold film) on SEM samples or material surfaces. Featuring stable performance and user-friendly operation, it employs cold magnetron sputtering technology, minimizing heat generation to protect sensitive samples. Key Features · Durable Metal Bellows – Corrosion-resistant and aesthetically refined vacuum pump tubing. · Precision Adjustment – Sensitive micro-valve control with clear scale markings. · High-Efficiency Vacuum Pump – Fast pumping speed (8 m³/h) with low noise, ideal for lab environments. · Reliable Circuitry – Stable control board for consistent operation. · Cold Sputtering – Near-zero temperature rise preserves sample integrity. Technical Specifications Parameter Specification Vacuum Chamber Ø150 mm × 110 mm (H) Sample Stage Ø60 mm Gold Target Size Ø50 mm Vacuum System Pumping speed: 8 m³/h Vacuum Monitoring Custom Pirani gauge + analog dial Exhaust Mode Automatic Sputtering Time 0–1000 sec (programmable) Process Gas Air or argon (dedicated inlet) Compatible Target Materials Au, Au/Pd, Pt, Pt/Pd, Cu, Ag, etc. Dimensions ~450 × 330 × 235 mm (L×W×H) Applications & Advantages · SEM Sample Prep: Uniform conductive coatings enhance imaging accuracy. · Material Science: Versatile metal deposition for thin-film research. · User-Centric Design: Fast target switching, low maintenance, and lab-friendly noise levels. Ideal for: Academic labs, quality control, and R&D requiring precision coating with minimal thermal impact.   html {margin:0;padding:0;} body {margin:0;padding:5px;} body, td {font:12px/1.5 "sans serif",tahoma,verdana,helvetica;} body, p, div {word-wrap: break-word;} p {margin:5px 0;} table {border-collapse:collapse;} img {border:0;} noscript {display:none;} table.ke-zeroborder td {border:1px dotted #AAA;} img.ke-flash { border:1px solid #AAA; background-image:url(https://www.lithmachine.com/js/htmledit/kindeditor/themes/common/flash.gif); background-position:center center; background-repeat:no-repeat; width:100px; height:100px; } img.ke-rm { border:1px solid #AAA; background-image:url(https://www.lithmachine.com/js/htmledit/kindeditor/themes/common/rm.gif); background-position:center center; background-repeat:no-repeat; width:100px; height:100px; } img.ke-media { border:1px solid #AAA; background-image:url(https://www.lithmachine.com/js/htmledit/kindeditor/themes/common/media.gif); background-position:center center; 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