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coating Product List and Ranking from 572 Manufacturers, Suppliers and Companies | IPROS GMS

Last Updated: Aggregation Period:Apr 22, 2026~May 19, 2026
This ranking is based on the number of page views on our site.

coating Manufacturer, Suppliers and Company Rankings

Last Updated: Aggregation Period:Apr 22, 2026~May 19, 2026
This ranking is based on the number of page views on our site.

  1. 吉田SKT Aichi//Manufacturing and processing contract
  2. 共進サーフェーシング Hiroshima//Manufacturing and processing contract
  3. フロロコート Saitama//others
  4. 4 シャイン工芸 Nara//Manufacturing and processing contract
  5. 5 日研化学研究所 Aichi//Printing Industry

coating Product ranking

Last Updated: Aggregation Period:Apr 22, 2026~May 19, 2026
This ranking is based on the number of page views on our site.

  1. Instead of exchanging for a new product, choose 'prolongation.' Solve wear on rotating machinery with wear-resistant coating. 共進サーフェーシング
  2. Causes of Teflon coating peeling and how to address them. 吉田SKT
  3. Advantages and disadvantages of re-coating a non-stick frying pan. 吉田SKT
  4. 4 Diamond-like carbon (DLC) coating process 栗田製作所 本社・京都事業部
  5. 5 BALINIT ALCRONA EVO - Born to evolve. Made to last. Oerlikon Japan Co., Ltd.

coating Product List

2101~2130 item / All 2640 items

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Fluororesin coating for seismic isolation devices for data centers

Coating technology that is resistant to shaking, supporting the stable operation of data centers.

In the data center industry, stable operation 24/7 is essential, and system outages due to disasters such as earthquakes can lead to significant losses. In particular, servers and network equipment are at a higher risk of failure even with slight tremors. Our fluoropolymer coating maximizes the performance of seismic isolation devices and reduces building vibrations, supporting the stable operation of data centers. 【Use Cases】 - Earthquake countermeasures - Server rooms - Locations for network equipment installation 【Benefits of Implementation】 - Reduces building vibrations - Lowers the risk of system outages - Mitigates the risk of data loss

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Fluororesin coating for seismic isolation devices for museums

Protecting cultural properties from earthquakes, our company's sliding performance.

In the protection of cultural properties in museums, damage to exhibits caused by earthquakes is a significant challenge. In particular, valuable cultural assets can suffer severe damage from even slight tremors. Seismic isolation structures are an effective means to mitigate earthquake vibrations and protect cultural properties. Our fluororesin coating maximizes the performance of seismic isolation devices, ensuring the safety of cultural assets. 【Usage Scenarios】 - Museum exhibition rooms - Storage facilities - Historical buildings 【Benefits of Implementation】 - Reduces the risk of damage to exhibits from earthquakes - Contributes to the long-term preservation of cultural properties - Ensures the safety of visitors

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Fluororesin coating for seismic isolation devices for robot transport.

Solving the challenges of robot transportation

In robot-assisted transportation, it is crucial to implement measures to prevent liquid spillage and the tipping of transported items due to shaking. Spillage caused by the robot's own movements during transport or by shaking during an earthquake can lead to significant issues, such as environmental contamination and the need for rework. Seismic isolation structures reduce shaking during transport and earthquakes, enabling safe and secure production as well as the provision of food to customers. Our fluoropolymer coating is used on the sliding plates of the seismic isolation devices, allowing them to smoothly dissipate shaking and provide safety and security. 【Usage Scenarios】 - AGV (Automated Guided Vehicle) - AMR (Autonomous Mobile Robot) - Transportation by robotic arms 【Benefits of Implementation】 - Reduction of shaking during transport - Mitigation of shaking during earthquakes - Prevention of spillage of liquids and other transported items due to shaking

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Longevity of Parts with Nano Coat-S for Medical Devices

Improving biocompatibility! Achieving long lifespan for medical device components!

In the medical device industry, high biocompatibility and durability are required to protect patient safety and health. Particularly in components of medical devices that are implanted in the body, contamination by wear or degradation and functional failure can lead to serious issues. Nano Coat-S addresses these problems with its excellent wear resistance, enhancing the reliability of medical devices. 【Application Scenarios】 - Implants - Surgical instruments - Parts in contact with biological tissues 【Effects of Implementation】 - Reduction in replacement frequency due to longer component lifespan - Decrease in the risk of contamination - Improved durability of medical devices

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Extension of component lifespan with Nano Coat-S for machine tools

Over 100 times wear resistance! Contributes to maintaining the precision of working machinery!

In the machine tool industry, it is important to suppress the wear of sliding parts in order to maintain high machining accuracy. Wear can cause dimensional changes and looseness, leading to a decline in product quality and a reduction in machine lifespan. Nano Coat-S boasts more than 100 times the wear resistance of hard chrome plating, contributing to the longevity of sliding parts and helping to maintain the precision of machine tools. 【Application Scenarios】 - Various sliding parts - Various transport guides, etc. 【Benefits of Implementation】 - Reduction in the frequency of parts replacement - Improvement in machine operating rates - Stabilization of product quality

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Extension of component lifespan with Nano Coat-S for agricultural machinery

Achieving long lifespan of components even in harsh environments!

In the agricultural machinery industry, the use of equipment outdoors and operation in harsh environments lead to challenges such as the deterioration and wear of parts. Particularly for components that require weather resistance, early degradation can result in decreased machine performance and failures, potentially causing increased maintenance costs and reduced work efficiency. Nano Coat-S addresses these challenges with its outstanding wear resistance. 【Application Scenarios】 - Sliding parts of tractors and combines - Various guides used outdoors 【Benefits of Implementation】 - Reduction in maintenance costs due to extended part lifespan - Increased productivity through improved machine operational rates - Stable performance maintenance in harsh environments

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Understanding Adlon Coating through Manga for Food Manufacturing!

Processing and evaluation technologies that fully utilize the performance of fluororesin!

In the food manufacturing industry, there is a demand for maintaining food quality and improving production efficiency. In particular, the adhesion of food to molds and containers is a significant challenge that reduces product yield, increases cleaning efforts, and hinders productivity. Adron Coating prevents food adhesion with its excellent non-stick properties, addressing these issues. 【Usage Scenarios】 - Food baking trays - Food containers - Food production lines 【Benefits of Implementation】 - Prevention of food adhesion - Reduction in cleaning time - Improvement in yield

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Adron Coating for Automobiles | Improved Wear Resistance

Adron coating that maximizes the performance of fluororesin.

In the automotive industry, wear resistance is required to improve the durability of parts. For components used in harsh environments, performance degradation due to wear is a challenge. Adron coating offers excellent wear-resistant coatings compatible with PTFE, PFA, and modified paint systems. 【Application Scenes】 - Engine parts - Transmission parts - Brake parts 【Benefits of Implementation】 - Extended lifespan of parts - Reduced maintenance costs - Improved product reliability

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Improvement of insulation properties by Adron coating for electronic components.

Coating technology that maximizes the performance of fluororesin.

In the electronic components industry, as miniaturization and high density of products progress, ensuring insulation performance has become an important challenge. The occurrence of short circuits and leakage currents between components significantly undermines product reliability, necessitating coating technologies that achieve high insulation properties. Adron Coating provides excellent insulation and contributes to the performance enhancement of electronic components. 【Usage Scenarios】 - Electronic circuit boards - Connectors - Sensors - Semiconductor devices 【Benefits of Implementation】 - Improved product reliability through enhanced insulation - Increased heat resistance and chemical resistance - Extended product lifespan

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Coating for Covered Wire Winding Pulleys for Wire Manufacturing

Achieving cost reduction and longevity of rubber lining! Corresponding to test measures.

In the wire manufacturing industry, maintaining product quality and reducing costs are important challenges. In particular, the rubber lining of coated wire winding pulleys needs to be replaced due to wear and deterioration, leading to increased costs. Additionally, scratches on the wire can also cause a decline in quality. Adroncoat contributes to cost reduction and extends product lifespan as an alternative to rubber lining. 【Usage Scenarios】 - Coated wire winding pulleys - Wear countermeasures in the wire manufacturing process - Reduction of rubber lining replacement costs 【Effects of Implementation】 - 90% reduction in rubber lining replacement costs - Prevention of product scratches - Improved wear resistance

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Coating for Covered Wire Winding Pulleys for Medical Devices

Supporting hygiene management of medical devices at Adron Court!

In the medical device industry, hygiene management of products is extremely important. Particularly for parts that require repeated use and cleaning, surface degradation and foreign matter adhesion can become problematic. This can lead to a decrease in equipment performance and an increased risk of infection. Adroncoat maintains the hygienic condition of medical devices by preventing discoloration and scratching of the substrate and improving wear resistance. Low-temperature processing also makes it possible to reduce damage to the base material. 【Usage Scenarios】 - Surgical instruments - Testing equipment - Parts requiring sterilization 【Benefits of Implementation】 - Improved cleanability - Reduced risk of foreign matter adhesion - Enhanced durability of equipment

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Thick film PEEK coating resistant to chemical environments.

Thick-film PEEK coating that demonstrates stable performance in pharmaceutical and corrosive environments.

In components used in chemical environments, the reduction of lifespan due to corrosion and degradation is a challenge. PEEK is a resin with excellent chemical resistance, but conventional coatings have thin film thicknesses, which poses challenges for long-term protective performance. Our PEEKCOAT forms a stable protective layer even in chemical environments due to a thick film of up to 3000µm. It is easier to maintain performance in corrosive atmospheres and under chemical contact conditions, contributing to the longevity of equipment. It is also possible to achieve a balance with wear resistance, making it a suitable surface treatment for harsh environments. We also accommodate the consideration of individual specifications and prototype evaluations. For technical consultations and prototype verifications, please feel free to contact us.

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Coating for damage prevention in transportation engineering

Reduce contact damage with metal plates and stabilize print quality.

In metal printing processes, fine scratches caused by contact during transportation can lead to quality defects. Particularly, contact with transport fixtures during the drying process is unavoidable, making surface damage prevention crucial. PEEKCOAT reduces friction and snagging during contact due to its high hardness and smooth coating layer, helping to suppress the occurrence of scratches. It eliminates the need for regular maintenance like traditional varnish applications and can also avoid the risk of printing defects associated with fluororesin tubes. Its excellent wear resistance ensures sustained performance even in environments with repeated contact. This surface treatment achieves both quality stabilization and process improvement simultaneously. We support everything from the consideration of optimal specifications based on application and equipment conditions to prototype evaluation. If you are struggling with preventing scratches in the transport process, please contact us for technical consultation and prototype verification.

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PEEK coating that achieves long-term stable operation of metal printing processes.

Stable quality maintenance with excellent wear resistance PEEK coating.

The metal printing transport fixtures come into contact with metal plates repeatedly, making them prone to surface wear and degradation, which can lead to the occurrence of scratches. PEEKCOAT maintains a stable surface condition over a long period due to its high hardness and excellent wear resistance. Because it is less likely to experience performance degradation from wear, it helps reduce quality variation and contributes to long-term stable operation. Additionally, it leads to a reduction in maintenance frequency and a decrease in the risk of equipment downtime. In actual field applications, both defect reduction and durability have been confirmed, contributing to the overall reliability of the process. When considering surface treatments that emphasize durability, we can propose optimal coating designs tailored to the usage environment and component specifications. For technical consultations and prototype verification, please feel free to contact us.

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Vacuum technology for primerless fluororesin coating

High-adhesion, high-purity fluororesin coating achieved through a unique process.

In general fluoropolymer coatings, it is common to have a primer layer to ensure adhesion to the metal substrate. However, this structure can become an unnecessary layer depending on the application, posing challenges in terms of cleanliness and material-related risks. Our HYPERCOAT utilizes a unique vacuum technology to directly form a fluoropolymer coating without the use of a primer, representing a new approach to coating. Unlike a simple primer-less specification, it ensures practical performance through a design that considers the balance between adhesion and functionality. While maintaining the characteristics of fluoropolymers such as non-stick properties and chemical resistance, it can provide optimal surface characteristics tailored to specific applications. We welcome inquiries regarding differences from conventional specifications, applicability assessments, evaluation tests, and more. Please feel free to contact us for technical consultations and prototype verifications.

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Fluorine-based coating that accommodates stretch and bending in rubber materials.

A coating that adheres well and maintains functionality while following deformation.

Coating on rubber materials poses challenges due to significant stress on the coating film caused by deformation and stretching, making it prone to cracking and peeling with conventional surface treatments. FU-2015 takes into account the unique usage environment of rubber and adopts a design that balances flexibility and adhesion. It easily adapts to repeated deformations such as compression, stretching, and bending, maintaining stable surface functionality. A major advantage is that it can impart performance without compromising the inherent properties of rubber, while utilizing the non-stick and slippery characteristics of fluorine compounds. This provides a new option for applications that have faced challenges with traditional coatings. We also accommodate discussions on applicability and prototype evaluations based on materials and usage conditions, so please feel free to contact us for technical consultations and prototype verifications.

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Coating for preventing adhesion of resin parts

Low-temperature processing technology capable of handling everything from general-purpose resins to super engineering plastics.

Resin parts are lightweight and have excellent processability, but they are prone to accumulating dirt and adhesive substances on their surfaces, which can lead to process troubles. However, high-temperature sintering coatings carry risks of thermal deformation and reduced material properties, and there are often cases where their application is limited. FU-1240 is a coating that minimizes thermal impact on the resin through low-temperature sintering while providing non-stick and release properties. It suppresses the adhesion of adhesives and resins, improving cleanability and maintainability, thereby contributing to production stability. It can accommodate a wide range of materials from general-purpose resins to engineering plastics and super engineering plastics, allowing for specification design tailored to specific applications. We also support application considerations and evaluation tests, so please contact us for technical consultations and prototype verifications.

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Low-temperature sintering fluorine-based coating suitable for precision parts.

Surface treatment that can impart surface functions while suppressing dimensional changes.

In precision parts and small mechanical components, even slight thermal deformation or dimensional discrepancies can significantly impact product performance. Therefore, surface treatments that involve high-temperature firing may be difficult to apply. Our FU-1240 can form a film at low temperatures, allowing us to impart non-stick and slip properties while minimizing deformation and warping due to heat. It is also easy to apply to thin metal sheets and finely processed parts, which helps reduce constraints during the design phase. By providing functions such as reduced contact resistance and adhesion prevention, it contributes to the stabilization of component performance. It is an effective option for surface treatment in applications with high precision requirements. We are also able to support the examination of application conditions and prototype evaluations, so please feel free to contact us for technical consultations and prototype verifications.

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PFA coating suitable for insulation purposes

Surface treatment PFA coating to enhance insulation reliability with a low-defect film.

In electrical insulation applications, pinholes and voids in the coating can cause partial discharge and insulation breakdown. PFA coating excels in fluidity during melting, allowing it to fill gaps between particles and form a dense coating, thereby suppressing the occurrence of such defects. As a result, it becomes easier to ensure stable insulation characteristics, contributing to improved reliability of electrical properties. Furthermore, it also has excellent heat resistance, making it suitable for insulation applications in high-temperature environments. It is effective as a surface treatment aimed at enhancing insulation performance in electrical components and device parts. We are also available for consultations regarding the selection of optimal specifications and evaluation tests based on applications and conditions, so please feel free to contact us for technical inquiries and prototype verification.

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Anti-corrosion PFA coating for plating jigs

Protecting fixtures from the chemical environment to achieve process stabilization and quality improvement.

In the plating process, jigs and racks are constantly exposed to chemical solutions, leading to issues such as performance degradation due to corrosion and deterioration. Surface roughness and deformation can cause a decrease in product retention and uneven plating, resulting in quality defects and reduced yield. By applying PFA coating, it is possible to protect the surface of jigs from chemical solutions and maintain a stable condition over a long period. This coating can accommodate a wide range of acidic and alkaline chemical solutions, allowing for flexible responses to various product types and process changes. Additionally, by suppressing metal leaching and foreign substance generation due to corrosion, it contributes to maintaining the cleanliness of the plating solution. This surface treatment can achieve both process stabilization and quality improvement simultaneously. We also support the consideration of optimal specifications and prototype evaluations based on application conditions, so please feel free to contact us for technical consultations and prototype verifications.

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PFA coating to extend the lifespan of jigs.

Contribute to reducing total costs by decreasing exchange frequency.

The jigs and racks used in the plating process require regular replacement due to corrosion and wear, leading to increased costs and maintenance burdens. By applying PFA coating, it is possible to suppress corrosion and surface degradation caused by chemicals, thereby extending the lifespan of the jigs. This not only reduces the frequency of replacements but also contributes to minimizing unexpected troubleshooting and the risk of line stoppages. Particularly for large jigs and custom-designed parts, the cost benefits from the longevity effects become significant. This is a practical improvement measure that can achieve both stable equipment operation and cost reduction. We also accommodate the consideration of optimal specifications and prototype evaluations based on site conditions, so please feel free to contact us for technical consultations and prototype verifications.

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ETFE coating with excellent abrasion resistance.

Surface treatment that is strong against shock and wear, contributing to increased longevity.

Fluoropolymer coatings excel in non-stick properties, but may have challenges regarding mechanical strength and wear resistance. ETFE coatings possess relatively high wear resistance and impact resistance among fluoropolymers, making them suitable for parts that experience repeated contact and wear. Due to the high toughness of the film, it is less prone to cracking and chipping, allowing for stable performance over an extended period. This leads to an extension of component lifespan and a reduction in maintenance frequency. It is an effective option for conveying parts and sliding parts that require durability. We can also accommodate the consideration of optimal specifications and evaluation tests based on usage environments and load conditions, so please feel free to contact us for technical consultations and prototype verifications.

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ETFE coating that is easy to process into thick films.

Surface treatment that enhances design flexibility with thick film and secondary processing support.

ETFE is a thermoplastic resin with melt flow properties, allowing for stable film formation as a coating. Furthermore, it has high mechanical strength among fluoropolymers, making it easier to handle thick films and machining after film formation. This enables flexible responses in designs that require dimensional accuracy and consider functional aspects. It allows for finishing and adjustments through machining after painting, which is difficult with conventional coatings, thus contributing to improved design freedom. It is a suitable coating for applications where both functionality and processability are important. We also support the consideration of optimal specifications and prototype evaluations based on application and design conditions, so please feel free to contact us for technical consultations and prototype verification.

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Non-stick coating to improve the release failure of baked goods.

Improved yield with dough adhesion and burn prevention.

In the manufacturing process of baked goods, the adhesion of dough to molds and baking sheets is a critical issue directly linked to quality and productivity. When release failures occur, it leads to appearance defects such as chipping and deformation of the products, resulting in decreased yield and increased waste loss. Moreover, under harsh usage conditions such as high-temperature baking and repeated cleaning, the deterioration of coating performance exacerbates adhesion problems. Against this backdrop, there is a demand for surface treatments that achieve stable non-stick properties and durability. Biceram, with its high non-stick properties unique to ceramics, suppresses dough adhesion and burning. It maintains stable release properties even after baking, contributing to quality stabilization and improved production efficiency. We can also accommodate specification considerations and prototype responses tailored to on-site challenges. If you are facing issues with release failures or adhesion problems, please feel free to contact us.

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What are the measures against edge chipping and dulling due to pre-painting treatment (sandblasting)?

Explanation of mechanical damage to be cautious of during blasting treatment for fluororesin coating and PEEK coating on blades and sharp parts.

In fluororesin coatings and PEEK coatings, sandblasting is performed to ensure adhesion. However, for products with cutting edges or sharp edges, impacts from blasting may cause chipping of the cutting edge, edge deformation, or partial distortion. Especially for precision cutting tools and thin-edge shapes, even slight changes in shape can affect performance, making prior consideration important. Our company proposes processing conditions that take into account the balance between product protection and coating adhesion by adjusting blasting media, projection pressure, and changing substrate treatment methods. Please feel free to consult us when considering coatings for industrial cutting tools and cutter components.

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We prevent equipment troubles in advance with contracted coating!

We contribute to improving productivity by reducing adhesion, corrosion, and wear issues in equipment through contract processing of fluororesin and PEEK coatings!

Equipment troubles such as stoppages and quality defects have a significant impact on production sites. In particular, issues like material adhesion, corrosion from chemicals, and component wear are common challenges in many manufacturing environments. Our company offers contract processing services using fluororesin coating and PEEK coating to address these challenges. Fluororesin coating is excellent in non-stick properties, low friction, and chemical resistance, and is widely used for conveying parts, tanks, molds, and more. Additionally, PEEK coating excels in heat resistance and wear resistance, making it suitable for mechanical parts used in high-load environments. We listen to the usage conditions, work shapes, and required performance to propose the optimal coating specifications. Rather than just a simple painting process, we support our customers' equipment improvements as a "functional surface treatment" aimed at solving on-site challenges.

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Proposal for extending equipment lifespan through contract coating.

We support the long lifespan and stable operation of production equipment through contract processing with fluororesin coating and PEEK coating!

In the manufacturing field, issues such as wear and corrosion of equipment parts, as well as adhesion, lead to decreased productivity and increased maintenance burdens. Our company addresses these challenges by providing contract processing using fluoropolymer coating and PEEK coating. Fluoropolymer coating is effective for preventing adhesion and dirt due to its excellent non-stick properties and chemical resistance. On the other hand, PEEK coating possesses high heat resistance and wear resistance, demonstrating stable performance even in high-load environments. We not only perform coating processing but also propose optimal specifications while organizing "what kind of issues are occurring" and "what performance is needed." As a functional surface treatment aimed at improving equipment and extending the lifespan of parts, we support the resolution of many on-site challenges.

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Signal stabilization using Electrolube products for the telecommunications industry.

Electrolube's conformal coatings, encapsulation resins, and thermal management materials improve the reliability of communication equipment.

In the telecommunications industry, the stability of signals and the long-term reliability of equipment are essential. Various environmental factors such as radio interference, temperature changes, and humidity can potentially degrade signal quality. Electrolube's products are designed to address these challenges and maximize the performance of communication equipment. Conformal coatings protect electronic components from the environment and prevent signal degradation. Encapsulation resins protect components from vibration and shock, enabling stable signal transmission. Thermal management materials prevent equipment from overheating and contribute to a longer lifespan. 【Usage Scenarios】 - Base stations - Wireless communication devices - Data centers 【Benefits of Implementation】 - Improved signal quality - Enhanced equipment reliability - Extended product lifespan

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Improving reliability with Electrolube products for medical devices.

Achieve long-term reliability of medical devices with Electrolube products.

In the medical device industry, the reliability of products is crucial for ensuring patient safety and the accuracy of medical procedures. Medical devices used in harsh environments are susceptible to various factors such as temperature changes, humidity, vibration, and electromagnetic interference, and failures of electronic components can lead to a complete malfunction of the device. Electrolube's conformal coatings, encapsulation resins, and thermal management materials are designed to address these challenges and enhance the long-term reliability of medical devices. These products protect electronic components from external environments and support stable operation of the equipment. [Application Scenarios] - X-ray machines - MRI machines - Patient monitors - Surgical robots [Effects of Implementation] - Reduced risk of failure through protection of electronic components - Extended lifespan of equipment - Improved patient safety - Enhanced reliability of medical procedures

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Sputtering Equipment Multifunctional Sputter Device MiniLab-S060A

Compact multi-film device that incorporates sputtering, deposition, EB, and annealing thin film modules in a 60L volume chamber, suitable for various applications.

4 units of Φ2 inch cathodes installed Simultaneous film deposition: 3-component simultaneous deposition (RF 500W or DC 850W) + HiPIMS (PulseDC 5KW) x 1 Power distribution and configuration settings for 4 cathodes can be freely changed via the HMI screen with the plasma relay switch 3 systems of MFC (Ar, O2, N2) for reactive sputtering Plasma etching stage RF 300W (main chamber) + <30W soft etching (LL chamber) Substrate heating: Max 500℃, 800℃, or 1000℃ (C/C or SiC coat) Substrate rotation and vertical movement (automatically controlled by stepping motor) APC automatic control: Upstream (MFC flow adjustment) or downstream (automatic valve opening adjustment on the exhaust side) Dimensions: 1,120(W) x 800(D) ● It is also possible to configure a mixed specification for resistance heating deposition, organic material deposition, EB deposition, etc.

  • Sputtering Equipment
  • Evaporation Equipment
  • CVD Equipment
  • coating

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