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Coating Product List and Ranking from 574 Manufacturers, Suppliers and Companies | IPROS GMS

Last Updated: Aggregation Period:Jun 17, 2026~Jul 14, 2026
This ranking is based on the number of page views on our site.

Coating Manufacturer, Suppliers and Company Rankings

Last Updated: Aggregation Period:Jun 17, 2026~Jul 14, 2026
This ranking is based on the number of page views on our site.

  1. 吉田SKT Aichi//Manufacturing and processing contract
  2. フロロテクノロジー Aichi//Chemical
  3. トシコ Saitama//Manufacturing and processing contract
  4. 4 日建塗装工業 Tokyo//Manufacturing and processing contract
  5. 5 フロロコート Saitama//others

Coating Product ranking

Last Updated: Aggregation Period:Jun 17, 2026~Jul 14, 2026
This ranking is based on the number of page views on our site.

  1. Causes of Teflon coating peeling and how to address them. 吉田SKT
  2. Advantages and disadvantages of re-coating a non-stick frying pan. 吉田SKT
  3. Tosical S Coating <PFAS Free> トシコ
  4. 4 [Case Study] PH Coating 鋼鈑工業
  5. 5 Basic knowledge for selecting non-stick and release coatings *Materials available upon request

Coating Product List

1411~1440 item / All 2925 items

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Solving manufacturing site challenges with various functional coatings! Nikken Coating Industry.

Fundamentally improve on-site issues with various surface treatment technologies.

Many troubles in manufacturing sites, such as wear, adhesion, corrosion, and contamination, are often caused not by the materials themselves but by the "surface." These issues can be significantly improved by applying appropriate surface treatments. As a contract processing manufacturer specializing in functional coatings, we propose optimal coating specifications tailored to the application and usage environment. While handling a variety of materials such as fluororesin, PEEK resin, and ceramic-based materials, we emphasize specification design based on challenges rather than merely providing products. We offer consistent support from prototyping to mass production, providing practical solutions suitable for the field. For technical consultations and prototype evaluations, please feel free to contact us.

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  • Surface treatment contract service
  • Coating

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PFAS regulation compliance! Fluorine alternative technology PEEK coating

Balancing regulatory compliance and performance maintenance. A new alternative to fluororesins.

In recent years, the strengthening of regulations on PFAS (per- and polyfluoroalkyl substances) has increased interest in alternative technologies to fluoropolymer coatings. Traditionally, fluoropolymers have been widely adopted due to their excellent properties such as non-stickiness, chemical resistance, and heat resistance. However, moving forward, ensuring compliance with regulations while maintaining performance and cost balance has become an important challenge. In this context, PEEK (polyether ether ketone), a super engineering plastic, is gaining attention as PEEKCOAT. PEEK maintains stable mechanical properties even in high-temperature environments and exhibits excellent wear resistance and chemical resistance, contributing to the longevity of equipment through an approach different from that of fluoropolymers. Particularly in components where wear and contact are repeated, durability often becomes more important than non-stickiness, making PEEK coatings a viable option for such applications. Our company offers optimal PEEK coating specifications tailored to the application and usage environment. If you are considering compliance with PFAS regulations or reviewing existing coatings, please feel free to contact us for technical consultations and prototype testing.

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  • Surface treatment contract service
  • Coating

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Coating for hot rivet resin adhesion and thread pulling prevention.

Prevent appearance defects with a tendency towards separation. Achieve stable riveting quality.

In the thermal riveting process, the behavior of the molten resin significantly affects quality, as heated jigs are used to deform and fix resin parts. A common issue in many workplaces is the adhesion of resin to the riveting jig and appearance defects caused by stringing. When resin adheres to the jig surface, stringing or further adhesion occurs during the next shot, leading to a decline in the appearance quality of the riveted area. Additionally, depending on the state of resin adhesion, variations in bonding strength may arise, potentially resulting in decreased product reliability and worsened yield. An effective solution to these challenges is the application of surface treatments with excellent release properties. Our "Thermo Pro Release" demonstrates stable non-stick properties even in high-temperature environments, suppressing the adhesion of molten resin. This contributes to the reduction of stringing and appearance defects, ensuring stable riveting quality. It can also be applied to existing equipment, making it a feature that promises immediate effectiveness in process improvement. If you are facing issues with quality stability or defect reduction in the thermal riveting process, please feel free to contact us for technical consultation and prototype verification.

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  • Surface treatment contract service
  • Coating

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PFAS regulation compliance! Ceramic-based non-stick coating for food applications.

A new PFAS-free alternative to fluoropolymer resins.

In recent years, due to the strengthening of PFAS (per- and polyfluoroalkyl substances) regulations, the food processing industry has been exploring alternatives to fluoropolymer coatings. Fluoropolymers, known for their excellent non-stick and heat-resistant properties, have been used for many years, but concerns about future regulatory risks and environmental considerations have increased interest in new surface treatment technologies. Against this backdrop, ceramic-based coatings that do not contain PFAS are gaining attention. This coating, based on inorganic materials, is expected to be a next-generation surface treatment that aims to balance environmental impact reduction with functionality. Our "Biceram" is a coating that is PFAS-free yet offers high non-stick properties and durability, making it suitable for food applications. It demonstrates stable performance even in firing environments, providing a practical alternative to traditional fluoropolymer coatings. If you are considering compliance with PFAS regulations or a review of coatings, we can propose optimal specifications tailored to your applications and conditions. We also welcome technical consultations and prototype verifications, so please feel free to contact us.

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  • Surface treatment contract service
  • Coating

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Improving the yield of label printing: Measures against adhesive troubles.

Prevents adhesive attachment to the label receiving section, eliminating transport defects and positional misalignment. Achieves stable operation and improved yield with 'super' non-stick coating.

In the label printing process, issues such as adhesive attachment to the receiving part leading to transport failures and positional misalignment are significant factors contributing to reduced yield. This is especially true for labels with high adhesive strength, where conventional fluororesin coatings or plating treatments often do not provide sufficient effectiveness, and cases of recurrence after a certain period are not uncommon. An effective solution to these challenges is our "NonStick Coating." Based on silicone release technology, our unique non-stick coating significantly suppresses the adhesion of label adhesives. Furthermore, by reducing the contact area through the fine structure of the surface, it demonstrates excellent release properties even against strongly adhesive materials. This results in direct improvements in stabilizing label transport, reducing cleaning frequency, and lowering the risk of equipment downtime. It is increasingly being adopted in many workplaces as a countermeasure against adhesive troubles in the label printing process.

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  • Surface treatment contract service
  • Coating

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Precautions for fluoropolymer and PEEK coating on products with a hollow structure.

Design points to prevent bursting and deformation accidents that occur during fluororesin coating and PEEK coating.

In fluororesin coatings and PEEK coatings, the firing process involves heating to around 400°C, which poses a risk of deformation and damage due to the expansion of internal air in hollow structures. Particularly in cases where sealed spaces are formed, such as in pipe structures, welded frames, hollow shafts, and box-shaped components, the internal pressure can rise during heating, potentially leading to bulging, distortion, coating defects, and rupture accidents. This article explains the necessity of "vent holes" that should be considered when coating hollow structures, as well as common design oversights that can easily occur. We will introduce important points not only regarding coating quality but also from the perspective of ensuring safety.

  • Surface treatment contract service
  • Coating

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Caution: Substrate deformation due to high-temperature firing during fluororesin and PEEK coating.

What are the risks of distortion and dimensional changes that occur during fluororesin and PEEK coating?

In fluororesin coatings and PEEK coatings, a coating film is formed through high-temperature firing, which imposes a significant thermal load on the substrate. Therefore, depending on the material and heat treatment condition, issues such as strength reduction, hardness changes, warping, and dimensional changes may occur. In particular, aluminum alloys, quenched steel, hardened materials, and welded structures are susceptible to thermal effects, and even slight deformations in precision parts can impact performance. This article explains the effects of high-temperature firing on the substrate and points to check in advance.

  • Surface treatment contract service
  • Coating

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Risk of deformation caused by fluororesin and PEEK coating on thin plate products.

Explanation of measures against warping, distortion, and chipping caused by heat and blasting during fluororesin coating and PEEK coating.

In fluoropolymer coatings and PEEK coatings, substrate preparation is performed through high-temperature firing and sandblasting, which may cause deformation or damage in thin plates, thin-walled parts, and blade shapes. In particular, products with thin thickness or parts with edge sections are susceptible to the effects of thermal expansion and mechanical stress from blasting, which can lead to issues such as warping, distortion, dimensional changes, and chipping of cutting edges. When requesting fluoropolymer or PEEK coatings, we confirm the product shape, thickness, and material in advance, optimizing blasting and firing conditions. We propose processing specifications that take into account the risks of deformation and damage. If you are considering coatings for precision sheet metal parts or cutting tool components, please feel free to consult with us.

  • Surface treatment contract service
  • Coating

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ふっ素×PEEK!摩耗と滑りの課題を解決する摺動コーティング

ふっ素のすべり性とPEEKの耐摩耗性を融合。強靭なPEEKマトリクスにふっ素樹脂を均一分散した特殊摺動グレードです。

自動化・高速化が進む製造現場において、摺動部の「すべり性」と「耐摩耗性」の両立は重要な課題です。 優れた滑性を与えるふっ素樹脂コーティングは、塗膜が柔らかく高負荷環境では摩耗や傷つきが早いという弱点がありました。 一方、耐摩耗性や耐熱性に優れるPEEKコーティングは、摩擦係数がやや高く「もっと滑りを良くしたい」という要求に一歩及ばないケースがありました。 ■PEEKCOAT Gグレードとは? 本製品は、当社の高機能PEEKコーティングシリーズの特殊摺動グレードです。 ■PEEKマトリックスに分散した固体潤滑剤 強靭なPEEK樹脂の中に「少量の固体潤滑剤(ふっ素樹脂)」を均一に分散。ふっ素樹脂単体のような容易な摩耗・剥がれを防ぎつつ、通常のPEEKコーティングを大きく上回る低摩擦特性を実現しました。 高荷重・高速摺動に耐え、初期の優れたすべり性能を長期間維持します。「ふっ素の寿命が短くて困っている」「PEEKの耐久性は魅力だが滑り性がほしい」という現場に最適なソリューションです。

  • Surface treatment contract service
  • Coating

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PFAS-free hard release ceramic coating compliant with the Food Sanitation Act.

An alternative to fluoropolymer! "Biceram" using the sol-gel method. A surface treatment that balances regulatory compliance with a scratch resistance of "pencil hardness 9H."

Amid the tightening global regulations on per- and polyfluoroalkyl substances (PFAS), there is an urgent need to explore "fluoropolymer alternative technologies" in manufacturing. ■ Ceramic Coating "Biceram" This is a surface treatment technology that is completely free of organic fluorinated compounds [PFAS-free]. It complies with Japan's "Food Sanitation Act (Ministry of Health, Labour and Welfare Notification No. 370)" standards, making it safe and secure for use in parts and molds of manufacturing machinery that come into direct contact with food, as well as cooking utensils. ■ Composition of the Coating The technology is based on the "sol-gel method," which produces a dense ceramic solid from a liquid. By incorporating a silicone release agent that exhibits non-stick properties at the molecular level within a robust three-dimensional silica network, we achieved excellent initial release properties and scratch resistance that significantly surpasses that of fluoropolymers, reaching a pencil hardness of 9H. This is ideal for those who want to evaluate alternatives in anticipation of future regulatory tightening and are looking for a safe, scratch-resistant release coating.

  • Surface treatment contract service
  • Coating

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Smooth release even with complex molds! PTFE coating for kugelhopf molds.

【Prevention of deformation and improvement of yield】Excellent non-stick properties and heat resistance. Reduces release agent usage, increases work efficiency, and dramatically simplifies the cleaning and maintenance of deep molds!

The shape defects of products caused by "dough sticking" and "poor release from molds" in the manufacturing process of Western-style confections and food are significant challenges that reduce production efficiency and yield. ■ Release Coating for Traditional Baked Goods and Gugelhupf Molds For metal Gugelhupf molds with very complex and three-dimensional shapes, such as beautifully spiraled wave patterns and central protrusions, a uniform thickness of fluoropolymer PTFE coating is applied down to the finest details. ■ Purpose of the Coating The primary goal is to impart "non-stick (release)" and "heat resistance." The coating is resistant to degradation even in the harsh thermal environment during baking, thoroughly preventing dough from sticking and corner adhesion. This allows the baked Gugelhupf to smoothly and cleanly release from the mold, significantly reducing the deformation of delicate products and directly improving yield in the production process. Additionally, it minimizes (or eliminates) the need for the application of release oils (butter or oil), leading to cost savings on raw materials and reducing the time required for application. This strongly supports the streamlining and automation of the manufacturing line.

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  • Surface treatment contract service
  • Coating

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PVD ceramic coating TiCN

TiCN ceramic coating beyond the TiN film.

The TiCN film is a ceramic coating film that has the characteristics of high hardness and low friction, as well as strong adhesion. Its applications are expanding to include cutting of hard-to-machine materials with high hardness and high viscosity, as well as punching, bending, and drawing of difficult-to-process materials, and it is also being applied to machine parts under stringent sliding conditions.

  • Ceramics
  • Other metal materials
  • Coating

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PVD ceramic coating diamond-like carbon

Carbon thin films with high hardness, electrical insulation properties, and infrared transmittance.

DLC (Diamond Like Carbon) refers to a general term for carbon thin films synthesized by a gas-phase synthesis method using plasma, which possess high hardness, electrical insulation properties, and infrared transparency. The structure of DLC films is typically a smooth amorphous structure that contains a small amount of hydrogen and is said to have diamond bonds and graphite bonds. The properties of DLC vary depending on the manufacturing method. The presence or absence of hydrogen in the film affects the hardness and adhesion of the film. It is necessary to select the film quality based on the conditions of use. Please feel free to consult us.

  • Ceramics
  • Other metal materials
  • Coating

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PVD ceramic coating CrN

It provides excellent anti-seizing properties, corrosion resistance, high-temperature oxidation resistance, and sliding characteristics to molds, machine parts, and the like.

The CrN ceramic coating using the PVD ion plating method is a new surface treatment technology that combines the properties of ceramics with high hardness and excellent wear resistance, as well as resistance to seizure, corrosion, and high-temperature oxidation. It demonstrates excellent characteristics not only in wear resistance at room temperature or in the atmosphere but also under high-temperature or corrosive environments.

  • Ceramics
  • Other metal materials
  • Coating

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PVD Ceramic Coating Prime Coat-T

Ceramic coating with excellent high-speed dry machining properties for high-hardness steel.

A heat-resistant coating that far exceeds conventional wisdom. The new composition coating achieves unprecedented "heat oxidation resistance" and "high hardness." It demonstrates outstanding performance in high-speed machining and dry machining of high-hardness steel.

  • Ceramics
  • Other metal materials
  • Coating

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Fluororesin coating

I recommend this when you want to give various materials slip and non-stick properties!

We offer a variety of options to meet requests such as wanting greater corrosion resistance and conductivity, depending on applications in fields like kitchen and industrial sectors.

  • Chemicals
  • Coating

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For automotive parts! Lubricating electrostatic coating EDE-1

You can obtain a PTFE-containing coating with excellent properties such as abrasion resistance, slip resistance, and water repellency!

【Features】 ■ It is a water-based epoxy paint that uses anionic electrodeposition and has excellent storage stability. ■ Uniform coating is possible on complex shapes or small parts. ■ Coating efficiency is high, allowing for cost reduction. ■ As it is a water-based paint, the working environment is improved. *For more details, please contact us.

  • Engine parts
  • Coating

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Improvement of departure type effects with "Y Coat Type BL Plus" ★ Case study collection available now

A new coating that enhances the release properties of resin molding molds. With a combination of special dimple processing and unique film technology, it has achieved an 85% reduction in release resistance!

The "Y Coat Type BL Plus" is a special coating technology that combines a unique dimple processing on the mold substrate with PVD coating to enhance release properties, allowing for excellent release effects over extended periods. The special dimple processing on the mold substrate reduces the contact area with the resin. Combined with the "Y Coat Type BL," which excels in corrosion resistance, wear resistance, stain resistance, and release properties, it reduces the release resistance value by 85% compared to untreated surfaces, and a reduction in release resistance has also been confirmed compared to Teflon-containing plating. (*Company test results) By reducing release failures and imparting various functionalities, it contributes to improving product quality and productivity. ★ We are currently offering a "Case Study Collection" that verifies the effects of "Y Coat Type BL Plus." *Please take a look from the "PDF Download" link below.

  • Processing Contract
  • Coating

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Nylon coating

We provide consistent support from processing to coating.

We also perform wire processing. We specialize in processing items such as baskets for dishwashers. *For more details, please contact us.*

  • Processing Contract
  • Coating

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Metal springs (wire springs, leaf springs), wire processing, nylon coating

We offer a range of products that meet the trust of the industry (metal springs and wire processing). [*We also accommodate items that meet JIS standards of grade 1 or higher.]

Our company provides the best QCD (Quality, Cost, Delivery) through a consistent production system, focusing on household appliances and automotive products, including the manufacturing of metal springs (wire springs, leaf springs), cotton material processing, assembly, and surface treatment. We promote IT initiatives and support SCM and EDI, while also leveraging our factory in Hangzhou, China, to pursue global best costs. It is possible to compare estimates for manufacturing in Japan or China! [Customer Feedback] We have received feedback stating, "We are able to manufacture products that meet JIS standards of grade 1 or higher and deliver them on time." Please feel free to consult or inquire with us. *For more details, please contact us or download our catalog to view.

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Non-adhesive surface treatment technology "IMD Coating" *Technical materials available.

The final form of a non-stick coating that achieves excellent release properties without being limited to target substrates such as iron, SUS, and CFRP: "IMD Coating."

The IMD coating, a non-adhesive surface treatment technology, possesses excellent release and non-adhesive properties, with a long-lasting non-adhesive effect. It can be applied to various substrates, including metals (iron, stainless steel, aluminum) and CFRP, without limitation. The thermal spraying and coating processes are controlled in temperature, preventing distortion and degradation of the substrate. Additionally, since the coating agent is impregnated into the spraying material, it allows for polishing treatment, resulting in a smooth surface with excellent release properties (non-adhesiveness). 【Features】 ■ IMD coating treatment and re-coating are possible for existing products! ■ Various spraying materials can be selected without limitation on the target equipment! ■ We can propose solutions tailored to your requirements for film hardness, surface roughness, and release effects! ★ WEB meetings are also available ★ * For more details, please contact us or download and view the catalog.

  • Other surface treatment equipment
  • Coating

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What is a coating technology with excellent rust resistance? 【*Point materials available!】

Widely adopted from the slope reinforcement frame to the fan guard of the air conditioning outdoor unit! Technology originating from Germany!

The synthetic resin coating handled by Iwatani Material is excellent in rust prevention and is a coating technology originating from Germany known as the flow immersion method, which is among the standard surface treatment techniques. It is widely used in various applications, such as automotive parts front grille nets, soil retaining materials for slope reinforcement frames, fences, commercial refrigerators, and fan guards for outdoor air conditioning units. We have our own coating factories in three locations in Japan: Tatebayashi, Shizuoka, and Osaka, as well as two overseas locations in Zhongshan, Guangdong Province, China, and Bangkok, Thailand. *Exclusive for Ipros users! We are currently offering a free collection of technical materials filled with points! Download it during this opportunity. 【Functional Features】 ■ Safety → Edge and rust prevention ■ Functionality → Diversification of sheet arrangements ■ Quietness → Creaking sounds, etc. *For more details, please contact us or download the catalog to view.

  • Coating Agent
  • Surface treatment contract service
  • Coating

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CVD three-layer coating

This is a widely used coating with a proven track record for pull-out dies and plugs!

At Towa Denko Co., Ltd., we handle "CVD three-layer coating," which allows us to obtain materials in various forms such as thin films, fine particles, bulk, and composites. The substances that can be synthesized are diverse, including ceramics, metals, semiconductors, and organic polymers, and it is applied in a wide range of fields from submicron fine processing represented by ultra-LSI to coating of piping materials with meter-scale membranes. 【Features】 - By stacking three layers of TiC, TiCN, and TiN on a substrate of cemented carbide to a total thickness of 5 to 6 μm, it is expected to prevent initial seizure and extend the mold life. - Wear resistance and anti-seizure properties are significantly improved. *For more details, please download the PDF or feel free to contact us.

  • Surface treatment contract service
  • Coating Agent
  • Coating

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□■□【MiniLab-026】Flexible Thin Film Experimental Device□■□

Compact and space-saving! Ideal for research and development. Flexible configuration for purposes such as deposition, sputtering, and annealing.

This is a flexible R&D thin film experimental device that achieves minimal waste, compact size, simple operation, and high cost performance by integrating the necessary minimum modules and controllers into a 19" compact rack with a Plug&Play feel. It supports magnetron sputtering (up to 3 sources) or resistance heating evaporation (metal sources up to 4, organic materials x4), and it can also be equipped with a substrate heating stage for annealing and plasma etching. A glove box storage type is also available (*specifications to be discussed). We offer a wide range of optional components that can be flexibly customized. ◉ Maximum substrate size: Φ6 inch ◉ Resistance heating evaporation source filament, crucible, boat type (up to 4 sources) ◉ Organic evaporation source: 1cc or 5cc ◉ Φ2 inch magnetron cathode (up to 3 sources) ◉ Dry etching ◉ Glove box compatible (optional, specifications to be discussed) ◉ Other options: simultaneous deposition from 2 sources, HiPIMS, automatic thin film controller, custom substrate holder, substrate rotation/lifting, substrate heating, and many other options available. *Please first contact us with your required specifications, and we will configure the system to meet your needs.

  • Evaporation Equipment
  • Sputtering Equipment
  • Annealing furnace
  • Coating

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◆nanoPVD-T15A◆ High-performance Organic and Metal Film Deposition Equipment

We have incorporated all the latest vacuum deposition technology into a compact benchtop-sized device that can effectively utilize limited lab space.

High-performance organic source LTE (up to 4 sources) with excellent temperature responsiveness/stability for organic materials such as OLED, OPV, and OTFT, and a metal deposition source TE (up to 2 sources) that allows for easy exchange and maintenance. It can operate in manual mode, as well as in automatic mode for continuous multilayer film deposition and simultaneous film formation. Despite its compact size, it achieves performance comparable to that of large standalone machines without sacrificing basic performance, film quality, uniformity, or operability. Additionally, it features fully automatic control via a simple touch panel with PLC. The user-friendly HMI allows anyone to operate it intuitively without requiring complicated operating procedures. It comes with remote software "IntelliLink," which connects to a Windows PC via USB cable, enabling monitoring of the device's operating status, log saving, online/offline recipe creation and storage, and fault analysis. This compact vacuum deposition system is designed to maximize the effective use of limited development and lab space while also excelling in maintenance.

  • Evaporation Equipment
  • Coating

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Sputtering and deposition source composite thin film deposition device [nanoPVD-ST15A]

Sputter Cathode and Co-evaporation Source Mixed Thin Film Experimental Device: Metal deposition, organic deposition, and sputter cathode installed in a compact frame.

Three types of film formation components are installed in the chamber: resistance heating evaporation source (metal evaporation), organic evaporation source (organic materials), and magnetron sputtering (metal and insulating materials), allowing for various thin film experimental setups to be accommodated within a single chamber. ◉ Three combinations are available: 1. Sputter cathode + resistance heating evaporation source x2 2. Sputter cathode + organic evaporation source x2 3. Sputter cathode + resistance heating source x1 + organic evaporation source x1 (*DC sputtering only) - Evaporation range: Φ4 inch / Φ100 mm - Vacuum exhaust system: Turbo molecular pump + auxiliary pump (rotary or dry scroll pump) - Substrate rotation and vertical lifting stage - Max 500℃ substrate heating heater - Quartz oscillator film thickness sensor - 7” touch panel HMI operation (includes 'IntelliLink' Windows PC remote monitoring software)

  • Sputtering Equipment
  • Evaporation Equipment
  • Annealing furnace
  • Coating

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MiniLab-026/090 Glove Box Thin Film Experiment Device

Compact and space-saving! Ideal for organic thin film development, all processes such as deposition, sputtering, and annealing can be seamlessly performed within the glove box.

In the film formation process of 2D materials such as OLED (Organic EL), OPV (Organic Photovoltaic), OTFT (Organic Thin Film Transistor), graphene, and TMD (Transition Metal Dichalcogenides), it is necessary to handle samples in an inert gas atmosphere isolated from oxygen and moisture. The MiniLab-026/090-GB achieves a "oxygen and moisture-free" experimental environment for organic film applications by housing the PVD chamber within the GB, creating a compact and space-saving environment. 【Features】 ◉ A series of processes such as PVD film formation, spin coating, and hot plate baking can be performed seamlessly within the GB without exposing them to the outside air. ◉ Space-saving: The chamber does not protrude from the back, so it does not take up space. 【MiniLab Models】 ◉ MiniLab-026 (26ℓ volume): Metal/insulator/organic material deposition, sputtering, plasma etching, annealing ◉ MiniLab-090 (90ℓ volume): Metal/insulator/organic material deposition, EB deposition, sputtering, plasma etching, annealing * Please first contact us with your required specifications, and we will configure the system according to your needs.

  • Evaporation Equipment
  • Coating

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□■□【MiniLab-080】Flexible Thin Film Experiment Device□■□

Flexible configuration available upon request for processes such as evaporation, sputtering, and EB. Adopts a tall chamber with a height of 570mm, contributing to improved uniformity during evaporation.

The ML-080, composed of a D-type box chamber with a volume of 80 liters and dimensions of 400(W)x400(D)x570(H)mm, features a higher chamber compared to the 060 model, resulting in a longer TS distance adjustment range and improved film uniformity during deposition on large-diameter substrates. It is an optimal model for vacuum deposition and is a higher-end version of the ML-060, which can also accommodate a load lock mechanism. Like the 060, it is compact yet supports a wide range of applications including resistance heating deposition (for metals, insulators, and organic materials), EB deposition, RF/DC/Pulse DC compatible magnetron sputtering, RIE plasma etching, and annealing. - Maximum substrate size: Φ10 inch - Resistance heating deposition sources: up to 4 sources - Organic deposition sources: up to 4 sources - Magnetron sputtering cathodes: 4 sources - Electron beam deposition - Substrate heating stage (standard 500℃, max 1000℃) - *Plasma etching / <30W soft etching *Plasma etching can be installed in both the main chamber and the load lock chamber.

  • Evaporation Equipment
  • Coating

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□■□【MiniLab-090】Flexible Thin Film Experimental Device□■□

Storage-compatible glove box PVD flexible thin film experimental device, featuring a tall chamber with a height of 570mm, contributes to improved uniformity during deposition.

MiniLab-080 is a glove box model designed to accommodate an 80ℓ large volume chamber within a glove box bench. It features a slide-open and close chamber that maximizes the use of the workbench, and a rear-opening door designed with maintenance in mind. Samples processed can be consistently handled in a controlled environment inside the glove box without exposure to the atmosphere or moisture. For specifications of the GB model, please refer to the gas purification unit. - Maximum substrate size: Φ10 inch - Resistance heating evaporation source x up to 4 sources - Organic evaporation source x up to 4 sources - Magnetron sputtering cathode x 4 sources - Electron beam evaporation - Substrate heating stage (standard 500℃, Max 1000℃) - Plasma etching / <30W soft etching

  • Evaporation Equipment
  • Sputtering Equipment
  • Etching Equipment
  • Coating

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