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  3. Citizen Finedevice Co.,Ltd
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Citizen Finedevice Co.,Ltd

EstablishmentApril 1, 2015
capital175312Ten thousand
number of employees902
addressNagano/Miyota-cho, Kitasaku-gun/4107-5 Ooyata, Daiji
phone0267-32-3232
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last updated:Feb 19, 2026
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Citizen Finedevice Co.,Ltd Product Lineup

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46~90 item / All 111 items

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MEMS technology MEMS technology
Liquid Crystal Microdisplay Liquid Crystal Microdisplay
Dissimilar material bonding Dissimilar material bonding
Microplate Microplate
Microchannel Microchannel
Precision fixtures and precision molds Precision fixtures and precision molds
Thin film circuit substrate (submount/carrier) Thin film circuit substrate (submount/carrier)
Crystal oscillator, crystal resonator Crystal oscillator, crystal resonator
Ceramic sliding bearing Ceramic sliding bearing
Gemstone (Alumina Bearing) Gemstone (Alumina Bearing)
Samarium cobalt micro magnet Samarium cobalt micro magnet
Optical current probe sensor Optical current probe sensor
Automation and labor-saving equipment Automation and labor-saving equipment
Small automobile parts Small automobile parts
Combustion pressure sensor/cylinder pressure sensor Combustion pressure sensor/cylinder pressure sensor
Motor Motor
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【For Measurement Instruments】Joining Dissimilar Materials Using AuSn Solder Joint

High-precision joining of dissimilar materials such as glass, metal, and ceramics.

In the measurement instrument industry, the reliability of components is crucial for enabling high-precision measurements. Especially in environments exposed to temperature changes and vibrations, the durability of joints between dissimilar materials is essential for maintaining product performance. Improper bonding can lead to measurement data errors and product failures. Our AuSn solder joints apply sealing technology used in Citizen Watch's quartz devices, allowing for high-precision and robust bonding of dissimilar materials. 【Application Scenarios】 - High-precision measuring instruments - Precision measuring devices - Analytical instruments 【Benefits of Implementation】 - Improved product reliability through high-precision bonding - Long-term performance maintenance due to chemical and water resistance - Stable performance in high vacuum environments

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【For Wearables】Joining of Dissimilar Materials Using AuSn Soldering

Hybrid material joining technology that realizes miniaturization and high reliability of wearable devices.

In the wearable device industry, miniaturization is required alongside durability and reliability of products. Particularly for wearable devices used in diverse environments, strong bonding between dissimilar materials is crucial. Traditional adhesives have faced challenges in chemical resistance and long-term reliability, but our AuSn solder bonding technology achieves excellent chemical resistance and stability under high vacuum conditions, making it suitable for harsh usage conditions. It also provides stable bonding performance in miniaturized devices. 【Application Scenarios】 - Miniature wearable devices - High-precision sensors - Highly reliable electronic components 【Benefits of Implementation】 - Miniaturization of devices - Achievement of high reliability - Assurance of long product lifespan

  • Other processing machines

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Dissimilar material joining with AuSn solder for displays

Strongly bonding dissimilar materials such as glass-metal and ceramics-metal.

In the display industry, especially in touch panels, durable and reliable bonding technology is required. In touch panels exposed to temperature changes and external forces, the delamination and degradation of the bonding area significantly affect the product's performance. Our AuSn solder bonding technology achieves excellent chemical resistance and stability in high vacuum environments, making it capable of withstanding harsh usage conditions. 【Application Scenarios】 - Manufacturing of touch panels - Bonding of display components - Manufacturing of devices using dissimilar materials 【Benefits of Implementation】 - Achieving high reliability and durability - Improving product lifespan - Enhancing yield rate

  • Other processing machines

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Bimetallic joint AuSn soldering for robot joints

Strongly bond dissimilar materials such as glass, metal, and ceramics!

In the robotics industry, the durability and reliability of joints are crucial. In particular, joints that are prone to wear and external environmental influences require strong bonding between dissimilar materials. Deterioration of the joints can lead to malfunctioning of the robot and reduced lifespan. Our AuSn solder bonding technology applies the sealing technology used in Citizen Watch's quartz devices to bond dissimilar materials with high precision and strength. 【Application Scenarios】 - Joints of robotic arms - Bonding of sensor modules - Bonding of components in drive units 【Benefits of Implementation】 - Achieving high durability and reliability - Long-term stable operation - Usable in harsh environments

  • Other processing machines

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Hybrid material bonding using AuSn solder for solar cells.

Hybrid material bonding technology to improve the durability and performance of solar cells.

In the solar cell industry, long-term reliability and high performance are required. Particularly for solar cells exposed to outdoor environments, it is important to prevent material degradation and maintain stable power generation performance. Poor bonding between dissimilar materials can shorten product lifespan. Our AuSn solder joint technology applies the sealing technology used in Citizen Watch's quartz devices to bond dissimilar materials with high precision and strength. 【Application Scenarios】 - Manufacturing of solar cell modules - Bonding of solar cell components using dissimilar materials - Solar cells used in harsh environments 【Benefits of Implementation】 - Improved long-term reliability due to high chemical and water resistance - Stable sealing performance under high vacuum conditions - Extended product lifespan

  • Other processing machines

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Hybrid material bonding using AuSn solder for optical devices.

Hybrid material bonding technology to enhance the reliability of optical devices.

In the optical device industry, as miniaturization and high performance progress, there is a demand for technologies that can firmly bond different materials. In particular, the reliability of bonding optical components such as optical fibers and lenses with dissimilar materials like metals and ceramics is crucial. AuSn solder bonding achieves high chemical resistance and stability in high vacuum environments, contributing to long-term performance maintenance even under harsh conditions. 【Application Scenarios】 - Bonding optical fibers with metal components - Bonding lenses with ceramic substrates - Optical communication modules 【Benefits of Implementation】 - High reliability and long product lifespan - Adaptation to miniaturization and high-density mounting - Streamlining of manufacturing processes

  • Other processing machines

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Dissimilar material bonding with AuSn solder for automotive electrical equipment

Strongly bonding dissimilar materials such as glass, metal, and ceramics.

In automotive electrical components, durability and reliability are extremely important. Particularly in environments exposed to temperature changes and vibrations, the deterioration of joints between different materials can become a problem. AuSn solder joints provide excellent chemical resistance and stability in high vacuum environments, making them capable of withstanding harsh operating conditions. Our AuSn solder sealing technology enables the precise and robust joining of dissimilar materials, enhancing the long-term reliability of electrical components. 【Application Scenarios】 - Automotive electronic devices - Sensor components - ECU (Electronic Control Unit) 【Benefits of Implementation】 - Improved chemical and water resistance - Assurance of long-term reliability - Enhanced product performance

  • Other processing machines

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Lightweighting through dissimilar material bonding for aerospace applications

Joining dissimilar materials of glass, metal, and ceramics with AuSn solder to achieve weight reduction.

In the aerospace industry, reducing the weight of aircraft is essential for improving fuel efficiency and reducing transportation costs. In particular, components used in harsh environments require high reliability and durability. It is important to achieve both lightweight and functionality by combining different materials. Our AuSn soldering technology enables the strong bonding of dissimilar materials such as glass, metal, and ceramics, allowing for the manufacturing of lightweight and highly durable components. 【Application Scenarios】 * Aircraft components * Space exploration vehicle components * Satellite components 【Benefits of Implementation】 * Improved fuel efficiency through weight reduction * Miniaturization and high precision of components * Stable performance in high vacuum environments

  • Other processing machines

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【For Medical Devices】Dissimilar Material Joining by AuSn Soldering

Hybrid material bonding technology to improve the reliability of sensors for medical devices.

In the medical device industry, as miniaturization and high precision progress, sensors that combine various materials are in demand. In particular, biocompatibility and durability are crucial, and strong bonding between dissimilar materials is essential. AuSn solder joints address these challenges and contribute to the reliability of medical devices. 【Application Scenarios】 - Medical sensors - Implantable devices - Diagnostic equipment 【Benefits of Implementation】 - Improved chemical and water resistance - Stability in high vacuum environments - Assurance of long-term reliability

  • Other processing machines

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Dissimilar material AuSn solder joint for semiconductor packaging

Strongly bonding dissimilar materials such as glass, metal, ceramics, and silicon.

In the semiconductor packaging industry, the bonding technology of dissimilar materials has become important due to the miniaturization and high performance of products. In particular, reliable sealing is essential for the long-term performance maintenance of products. Conventional resin-based adhesives have faced challenges in chemical resistance and long-term reliability, but our AuSn solder sealing technology demonstrates excellent chemical resistance and stable sealing performance even in high vacuum environments, making it suitable for harsh usage conditions. The AuSn solder method using heat treatment allows for seamless sealing through uniform melting, achieving stable sealing joints. 【Application Scenarios】 - Sealing of semiconductor packages - Use in high vacuum environments - Environments requiring chemical resistance 【Benefits of Implementation】 - Ensuring high reliability - Extension of product lifespan - Contribution to miniaturization and high performance

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Dissimilar material bonding [Glass, metal, ceramic, silicon AuSn solder bonding]

Realizing the joining of dissimilar materials such as glass-metal, ceramics-metal, ceramics-silicon, and ceramics-glass!

Our company utilizes AuSn solder, developed through the sealing technology adopted in Citizen Watch's crystal devices, to enable the high-precision and robust joining of dissimilar materials. While sealing joints with resin-based adhesives faced challenges in chemical resistance and long-term reliability, our AuSn solder sealing technology not only offers excellent chemical resistance but also demonstrates stable sealing performance even in high vacuum environments, making it suitable for harsh operating conditions. The AuSn solder method, which involves heat treatment, allows for uniform melting and seamless sealing, achieving stable sealing joints. We flexibly apply precision machining techniques cultivated in the manufacturing of small components to achieve small and high-precision sealing joints of dissimilar materials. 【Features】 ■ Strong chemical and water resistance (e.g., sodium hypochlorite) ■ Compatible with low to high vacuum ranges ■ Capable of joining dissimilar materials (glass, metal, ceramics, silicon) *For details, please view the PDF data by downloading the catalog.

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High-precision ceramic sliding bearings *Integrated production from granulation to processing

Do you have concerns about issues such as specified surface roughness, clearance accuracy, cylindricity accuracy, or dimensional accuracy being poor?

We have developed high-precision, high-durability ceramic sliding bearings by applying the molding technology and ultra-precision processing techniques cultivated in the manufacturing of watch bearing stones. Due to their high reliability, we have received numerous inquiries and are supplying them to the market. Our unique precision inner diameter grinding technology and cylindrical grinding technology achieve a level of precision and surface roughness that surpasses that of metal bearings, contributing to high wear resistance, excellent quietness, and extended lifespan. Additionally, ceramics excel in wear resistance, which reduces the generation of wear particles, and their high rigidity prevents deformation even when subjected to impacts such as drops. Leveraging our advanced production technology, we deliver mass-produced, consistently high-quality bearings. ■ Features Our near-net shaping, honed through the manufacturing of watch bearing stones, minimizes unnecessary material input and excessive waste from grinding, contributing to the SDGs. We use zirconia material with a thermal expansion coefficient close to that of SUS materials commonly used for shafts. ■ Molding and precision processing technologies developed in the manufacturing of watch bearing stones ■ Achieving superior inner diameter precision and surface roughness compared to metal using precision inner diameter grinding technology ■ Contributing to noise reduction and extended lifespan due to high wear resistance ■ Reducing the generation of wear particles due to excellent wear resistance ■ High rigidity prevents deformation even when subjected to impacts such as drops.

  • Metal bearings

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Development products *One-stop support from wafer process to implementation

We will respond to your requests from the development stage to mass production.

★Joining of Dissimilar Materials By using metal as an adhesive, dissimilar materials can be firmly bonded through stable melting. Processing under high temperature and high vacuum achieves uniform metal melting. Using metal provides high chemical resistance, making it suitable for bonding medical devices. By utilizing plating, the bonding area can be specified, achieving high bonding precision. ★Anchor plate The anchor effect holds the specimen in an optimal shape at the desired position. ★Precision Jigs and Precision Molds These are high-precision tools utilizing semiconductor MEMS technology. Additionally, we offer a range of developed products such as liquid particle counters and MEMS products. If you would like detailed materials, please request them.

  • Analytical Equipment and Devices

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Samarium cobalt magnet *Achieving micron-order dimensional accuracy!

We will finish samarium cobalt magnets, which are difficult to process, with high precision using our long-developed brittle material processing technology.

Samarium-cobalt magnets have a high Curie point of 800°C and are resistant to rust; however, they are considered brittle and difficult to process compared to neodymium magnets. Our company specializes in brittle processing technology to produce small cylindrical magnets with an outer diameter of less than Φ1.5 mm, with the smallest being Φ0.7 mm, while minimizing chipping and cracking. We can deliver stable, high-quality magnets finished to an internal and external tolerance of ±0.005 mm. With our long-established technology and skills in material crushing, mixing, molding, sintering, processing, and inspection, we can meet our customers' needs to the fullest extent. We can also accommodate plating treatments upon request.

  • Stepping motor

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【For the energy sector】Gemstone (alumina bearings)

Alumina bearings that demonstrate high durability even in high-temperature environments.

In the energy industry, stable operation under high-temperature environments is required. Particularly for equipment exposed to heat and friction, the durability of bearings is key to maintaining performance. Wear and damage to bearings can lead to equipment failure and decreased efficiency. Our precious stone (alumina) bearings achieve high wear resistance and dimensional accuracy, demonstrating stable performance even in high-temperature environments. [Application Scenarios] - Various energy-related equipment used in high-temperature environments - Thermocouples, sensors, etc. [Effects of Implementation] - Prolonged lifespan of bearings in high-temperature environments - Stable operation of equipment and reduction in maintenance costs - Assurance of high reliability

  • Plastic bearings

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Gemstones (Alumina Bearings) for Optical Equipment

High-precision alumina bearings with transparency close to that of artificial ruby.

In the optical equipment industry, bearings that support the fine movements of lenses and precision parts require high accuracy and durability. In particular, contamination by foreign substances that could affect light transmission and refractive index, as well as precision degradation due to wear, are critical issues that significantly impact product performance. Our precious stone (alumina bearings) achieve transparency nearly identical to that of synthetic ruby, along with high wear resistance and precise dimensional accuracy, contributing to the enhancement of optical equipment performance. 【Application Scenarios】 - Precision measuring instruments - Cameras - Microscopes - Telescopes 【Benefits of Implementation】 - Realization of high-precision operation - Extension of product lifespan - Improvement of optical performance

  • Plastic bearings

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Gemstone (Alumina Bearings) for Fiber Machinery

High wear resistance contributes to the longevity of textile machinery.

In the textile machinery industry, the longevity of parts is essential to maintain a high operating rate. Particularly in areas that operate at high speeds, wear and damage can lead to performance degradation and production stoppages. Our precious stone (alumina bearings) contribute to the longevity of textile machinery due to their high wear resistance. 【Usage Scenarios】 - High-speed rotating bearing parts - Wear-prone sliding parts - Use in harsh environments 【Benefits of Implementation】 - Improved machine operating rate - Reduced maintenance costs - Stabilization of product quality

  • Plastic bearings

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【For the printing industry】Gemstone (Alumina bearings)

High-precision and high-durability alumina bearings that support high-speed transportation.

In the printing industry, high-speed transport systems require high precision and durability. To maintain the quality of printed materials, it is important to minimize vibrations during transport and ensure accurate positioning. Wear and tear of bearings and a decrease in precision can lead to deterioration in print quality and potential system shutdowns. Our gem (alumina bearings) achieves high wear resistance and high dimensional accuracy, contributing to the stable operation of high-speed transport systems. 【Usage Scenarios】 - Transport rollers for high-speed printing machines - Head movement mechanisms for inkjet printers - Paper feeding mechanisms 【Benefits of Implementation】 - Increased lifespan of transport systems - Improved print quality - Reduced maintenance costs

  • Plastic bearings

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Gemstone (Alumina Bearings) for Food Processing

Excellent corrosion resistance, contributing to the maintenance of quality in food processing.

In the food processing industry, corrosion-resistant parts are required to maintain product quality and safety. Particularly in areas that come into direct contact with food or are frequently cleaned, corrosion resistance is crucial. Corroded parts can lead to foreign matter contamination and deterioration of product quality. Our precious stone (alumina bearings) excels in corrosion resistance and contributes to maintaining quality in food processing. 【Usage Scenarios】 - Food filling machines - Food transportation systems - Areas with high cleaning frequency 【Benefits of Implementation】 - Reduced risk of foreign matter contamination - Preservation of product quality - Reduced maintenance costs

  • Plastic bearings

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【For precision measuring instruments】Gemstones (Alumina bearings)

Transparency that is almost indistinguishable from synthetic ruby, supporting high-precision measurements.

In the precision measurement equipment industry, it is important to minimize friction and wear of bearings in order to obtain high-precision measurement results. Especially in measuring instruments that capture minute movements, the performance of the bearings greatly affects measurement accuracy. If the quality of the bearings is low, measurement errors may occur, leading to the possibility of obtaining inaccurate data. Citizen Fine Devices' gem (alumina bearings) achieve high wear resistance and high dimensional accuracy, contributing to the performance improvement of precision measurement instruments that require high resolution. 【Application Scenarios】 - Measurement instruments that require high precision - Sensors that detect minute movements - Equipment that requires stable measurements over long periods 【Effects of Implementation】 - Improvement in measurement accuracy - Prolonged lifespan of equipment - Provision of stable measurement results

  • Plastic bearings

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Gemstones for automobiles (alumina bearings)

Achieving low friction, Citizen Fine Devices' gemstone (alumina bearings)

In the automotive industry, there is a demand for improved fuel efficiency and enhanced durability of components. Particularly for movable parts such as engines and transmissions, it is important to reduce friction resistance and suppress wear. High friction can lead to decreased energy efficiency and potentially shorten the lifespan of components. Citizen Fine Devices' gem (alumina bearings) addresses these challenges with its high wear resistance and low friction characteristics. 【Application Scenes】 - Bearings inside the engine - Bearings inside the transmission - Steering mechanism 【Effects of Implementation】 - Improved fuel efficiency due to reduced friction resistance - Extended lifespan of components - Achieving smooth operation

  • Plastic bearings

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Aerospace-grade precious stones (alumina bearings)

Achieving both lightweight and high precision. Active in the aerospace field.

In the aerospace industry, reducing the weight of aircraft is essential for improving fuel efficiency and performance. At the same time, high reliability and precise operation under harsh conditions are required. The lightweighting of bearing components is a crucial factor in reducing the overall weight of the aircraft and enhancing fuel efficiency. Our precious stone (alumina bearings) achieves high wear resistance and high dimensional accuracy, contributing to weight reduction and improved reliability in the aerospace field. 【Application Scenarios】 - Aircraft engine components - Precision instruments for space exploration vehicles - Bearings for air traffic control systems 【Benefits of Implementation】 - Improved fuel efficiency through weight reduction - Enhanced reliability of equipment due to high-precision operation - High durability under harsh conditions

  • Plastic bearings

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Gemstone (Alumina Bearing) for Robotics

High wear resistance contributes to the longevity of robots.

In the field of robotics, long-term operation in harsh environments is required. In particular, wear and damage to moving parts can lead to a decline in robot performance and failures, resulting in increased maintenance costs. Citizen Fine Devices' gem (alumina bearings) improves the durability of robot moving parts due to its high wear resistance, contributing to a longer lifespan. 【Usage Scenarios】 * Joints * Drive units * Sensor units 【Benefits of Implementation】 * Reduced maintenance frequency * Increased operating time * Reduced total costs

  • Plastic bearings

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Gemstone (Alumina Bearings) for Machine Tools

Supports high-speed rotation! Achieves both wear resistance and high precision.

In the machine tool industry, high precision and durability are required. Particularly in areas involving high-speed rotation, wear and precision degradation of bearings significantly affect product quality and lifespan. Abnormalities in bearings can lead to processing defects and machine stoppages, potentially reducing production efficiency. Citizen Fine Devices' gem (alumina bearings) achieve high wear resistance and high dimensional accuracy, contributing to the performance improvement of machine tools. 【Application Scenarios】 - Bearings for machine tools requiring high-speed rotation - Areas requiring high-precision positioning - Areas demanding stable operation over long periods 【Benefits of Implementation】 - Extended lifespan due to high wear resistance - Improved processing accuracy due to high dimensional precision - Increased productivity through stable machine operation

  • Plastic bearings

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【For medical devices】Gemstone (alumina bearings)

Supporting high-precision rotation! Improving the reliability of medical devices.

In the medical device industry, precise operation and high reliability are required. Particularly in rotating components, it is important to minimize friction and wear to maintain stable performance over a long period. Low bearing accuracy can lead to equipment malfunctions or failures, potentially jeopardizing patient safety. Citizen Fine Devices' gem (alumina bearings) contribute to improving the reliability of medical devices due to their high wear resistance and high dimensional accuracy. 【Application Scenarios】 - Surgical robots - Analytical instruments - Imaging diagnostic devices 【Benefits of Implementation】 - Achievement of high-precision rotational performance - Extension of equipment lifespan - Improvement of patient safety

  • Plastic bearings

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Gemstones (alumina bearings) for semiconductor manufacturing

Alumina bearings that achieve high-precision positioning.

In the semiconductor manufacturing industry, as manufacturing processes become more advanced, precise positioning of components such as wafers and masks is required. Particularly in fine processing technology, even slight deviations in positioning can significantly impact product quality. Our gem (alumina bearings) enable precise positioning due to their high wear resistance and high dimensional accuracy, contributing to improved yield. 【Application Scenarios】 - Precision positioning mechanisms for semiconductor manufacturing equipment - Wafer transport mechanisms - Inspection equipment 【Benefits of Implementation】 - Improved yield through high-precision positioning - Extended lifespan of equipment - Stable supply of quality products

  • Plastic bearings

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Aluminaruby (alumina bearing)

Transparency that is almost indistinguishable from synthetic rubies! Widely adopted in fields such as watches, measuring instruments, and meters.

The gemstones of Citizen Fine Devices have achieved a world-class share due to their high wear resistance and high precision dimensional accuracy. We offer consistent processing from granulation to molding, firing, and completion in a wide variety of mass production. With a transparency that is nearly indistinguishable from synthetic ruby, we provide stable quality utilizing our in-house processing machines, tools, and years of accumulated technology. If you have specific shapes or dimensions in mind, please feel free to consult with us. 【Features】 ■ High wear resistance and high precision dimensional accuracy ■ Widely adopted in fields such as watches, measuring instruments, and meters ■ Consistent processing from granulation to molding, firing, and completion in a wide variety of mass production ■ Transparency that is nearly indistinguishable from synthetic ruby ■ Near-net shape molding allows for the provision of blanks close to the final dimensions *For more details, please refer to the PDF document or feel free to contact us.

  • Plastic bearings

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Microplate

The anchor effect allows you to hold the specimen in a shape suitable for the targeted position.

- In-house consistent processing for hydrophilic, water-repellent, and anchor production using unique processing equipment! - Processing for materials ranging from metal to glass is also possible! - Development of hydrophilic laser processing is also possible!

  • Analytical Equipment and Devices

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Precision jigs and precision molds *Mold manufacturing using ultra-fine processing technology!

Molds for rubber, resin, and glass forming that have undergone ultra-fine processing using semiconductor manufacturing technology.

■Ultra-fine: L/S of about 2μm is possible ■Durability: Withdrawal slope of 0° to 30° ■Complexity: Release properties, anti-fouling properties, and extended lifespan ■Release properties: Complex shapes are possible

  • Resin mold

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Microfluidics *High-precision control of tiny liquids! We will measure it!

Control and measure micro liquids with high precision using MEMS technology and functional thin film technology!

■Ultra-high precision 3D structures using semiconductor processes ■Ultra-fine flow paths that achieve high precision and speed in mixing, separation, and extraction

  • Analytical Equipment and Devices

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Case Study on Thin Film Submounts in the Telecommunications Industry

We will introduce a case where thin-film submounts were delivered to a telecommunications company with limited experience and knowledge regarding submounts!

Customers in the telecommunications industry have limited experience and knowledge regarding sub-mounts, which has led to an inability to engage in equal discussions. As a result, most specifications were determined based on proposals from manufacturers, leading to issues such as defects arising later. Our company provides detailed technical explanations and considerations for each of the customer's concerns and requests, allowing us to make proposals on the spot. As a result, we created a specification document and held follow-up meetings to ensure the customer fully understood it before finalizing and delivering the document, which led to very appreciative feedback from them. [Case Summary (Excerpt)] ■ Concerns about sub-mounts - Limited experience and knowledge regarding sub-mounts - Inability to engage in equal discussions with the sub-mount manufacturer found - Most specifications were determined based on proposals from the manufacturer, resulting in defects later on *For more details, please refer to the related links or feel free to contact us.

  • Other metal materials

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Frequently Asked Questions about Thin Film Circuit Boards (Carrier and Submount)

We introduce frequently asked questions about thin film circuit substrates (carrier and submount)!

Here are some frequently asked questions about the "thin film circuit boards (carrier/submount)" that we handle. Starting with "What kind of metal is the metal thin film?" and including questions like "What is the composition of the solder? (types)" and "What kinds of films can be made with metals?" we provide answers to many inquiries. Feel free to use this information for product selection, and don't hesitate to contact us for more details. 【Excerpt of Questions】 ■ What kind of metal is the metal thin film? ■ What is the composition of the solder? (types) ■ What methods can be used for patterns? ■ What types of substrates can be prepared? ■ What kinds of equipment are available? *For more details, please refer to the related links or feel free to contact us.

  • Other metal materials

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High-precision ceramic components for analytical instruments

High-strength and durable components made from alumina and ceramics, contributing to the performance enhancement of analytical instruments.

In the analytical machinery industry, the dimensional accuracy and chemical resistance of sample containers are crucial for precise analysis of samples. Particularly when handling trace amounts of samples, the material and shape of the container can significantly impact the analysis results. Inappropriate containers may lead to decreased analytical accuracy or equipment failure. Our ceramic components offer high dimensional accuracy and chemical resistance, contributing to the reliability of analysis results. 【Application Scenarios】 - Sample containers - Reagent containers - Analytical cells 【Benefits of Implementation】 - Achievement of high-precision analysis results - Long-term use due to chemical resistance - Accurate handling of trace samples

  • Ceramics

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High-precision ceramic parts for optical lenses

Providing high-strength and durable lens components made of alumina and ceramics.

In the optical lens industry, precise components are required to maximize the performance of lenses. Particularly in environments susceptible to temperature changes and vibrations, the dimensional accuracy and durability of components are crucial. Inadequate components can lead to degradation or failure of lens performance. Our ceramic components, backed by years of technology and a consistent production system, provide high-precision and durable parts, contributing to solving your challenges. 【Application Scenarios】 - Optical lenses - Precision instruments 【Benefits of Implementation】 - Improved dimensional accuracy - Realization of high functionality

  • Ceramics

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High-precision ceramic parts for watches

Providing high-strength, durable ceramic components for precision gears in watches.

In the watch industry, the miniaturization and high precision of products are progressing, and the quality of precision gears influences the performance of the products. In particular, durability and wear resistance are important, requiring accurate operation over long periods. Ceramic components are necessary to address these challenges and enhance the reliability of watches. 【Application Scenes】 - Gears for precision watches - Movement components - High-precision measuring instruments 【Effects of Implementation】 - Increased lifespan due to high strength and durability - Accurate operation due to high dimensional precision - Stable performance maintenance due to wear resistance

  • Ceramics

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High-precision ceramic parts for robots

For robot joints. Providing high-strength, durable ceramic parts.

In the robotics industry, product durability and precise operation are essential. In particular, joint parts must withstand wear and shock from repeated movements, requiring high precision. Inappropriate components can lead to decreased performance or failure of the robot. Our ceramic parts achieve high strength and durability through years of technology and a consistent production system, contributing to the improvement of robot performance. 【Application Scenarios】 - Joints of robotic arms - Precision positioning mechanisms - Various sensors 【Benefits of Implementation】 - Increased longevity due to high durability - Realization of precise movements - Reduction in maintenance costs

  • Ceramics

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High-precision ceramic components for measuring instruments

Providing high-strength, durable precision parts made from alumina and ceramics.

In the measurement equipment industry, the fine shape and durability of nozzles are crucial for achieving high-precision measurements. Particularly in nozzles used for liquid flow control and trace component analysis, wear resistance and dimensional accuracy significantly influence product performance. Wear and distortion of the nozzle can lead to measurement errors and failures, potentially compromising the reliability of the product. Our ceramic components enable the manufacturing of high-precision nozzles through years of expertise and a consistent production system. 【Application Scenarios】 - Flow meters - Analytical instruments - Inkjet printers 【Benefits of Implementation】 - High-precision flow control - Increased longevity due to high wear resistance - Achievement of stable measurement results

  • Ceramics

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High-precision ceramic parts for fuel cells

High-strength and durable ceramic components that contribute to the performance improvement of fuel cells.

In the energy industry, particularly in the fuel cell sector, there is a demand for durable and reliable components. Fuel cells are often used in high-temperature, high-pressure, or corrosive environments, and the deterioration of components can lead to performance degradation and reduced lifespan. Our ceramic components, primarily made from alumina, achieve high strength and durability through years of manufacturing technology and a consistent production system. This contributes to the longevity and stable performance of fuel cells. 【Application Scenarios】 - Fuel cell stacks - Hydrogen stations - Stationary fuel cells 【Benefits of Implementation】 - Improved durability of fuel cells - Enhanced reliability of systems - Long-term cost reduction

  • Ceramics

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High-precision ceramic parts for optical fibers

High-strength, durable ceramic components that support the reliability of optical fiber communication.

In the optical fiber communication industry, stability of signals and longevity are required. Particularly for optical fibers used in harsh environments, the durability of components is crucial. Ceramic components are essential for maximizing the performance of optical fibers due to their high strength, heat resistance, and insulation properties. Our high-precision ceramic components contribute to improving the reliability of optical fiber communication. [Application Scenarios] - Optical fiber connectors - Optical transceivers - Optical communication modules [Effects of Implementation] - Improved signal stability - Increased longevity - Ensured high reliability

  • Ceramics

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High-precision ceramic components for electronic devices

High-strength, durable ceramic components that contribute to the performance improvement of small substrates.

In the electronics industry, there is a simultaneous demand for miniaturization and high performance, making the reliability of substrate components crucial. Particularly, as high-density mounting progresses, the dimensional accuracy and durability of components significantly affect product quality. Our ceramic components contribute to addressing these challenges through high-precision manufacturing technology and a consistent production system. 【Application Scenarios】 - Miniature electronic devices - High-density mounting substrates - Precision instruments 【Benefits of Implementation】 - Contributes to miniaturization and high performance of products - Achieves high reliability and durability - Supports a variety of applications

  • Ceramics

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High-precision ceramic parts for automotive engine components

Providing high-strength and durable engine parts made from alumina and ceramics.

In the field of automotive engine components, parts that can withstand high temperatures, high pressures, and intense vibrations are required. In particular, components with excellent dimensional accuracy and wear resistance are crucial for improving combustion efficiency and ensuring durability. Ceramic parts can meet these demands. 【Application Scenarios】 - Sliding components inside the engine - Sensor components - Fuel injection system components 【Benefits of Implementation】 - Improved engine performance - Extended lifespan of components - Enhanced fuel efficiency

  • Ceramics

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Ceramic parts for aerospace applications

High-strength, durable ceramic components that perform under harsh conditions.

In the aerospace industry, components used in harsh environments such as high temperature, high pressure, and high load require high heat resistance and reliability. Particularly for engine parts and airframe structural components, durability that can withstand temperature changes and vibrations is essential for safe flight and long-term operation. Inappropriate materials or manufacturing processes can lead to component failure or performance degradation, potentially causing serious accidents. Our ceramic components achieve high strength and durability using alumina and ceramics, contributing to solving challenges in the aerospace field. 【Application Scenarios】 - Jet engine parts - Rocket engine parts - Space probe components - Thermal shields 【Benefits of Implementation】 - Extended component lifespan due to high heat resistance - Improved fuel efficiency through weight reduction - Enhanced safety due to high strength - Improved performance through precise dimensional accuracy

  • Ceramics

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High-precision ceramic components for medical devices

High-strength, durable ceramic components that enhance the performance of precision sensors.

In the medical device industry, the reliability of precision sensors is crucial for patient safety and accurate diagnosis. Particularly in sensors that measure biological signals or capture minute changes, the dimensional accuracy and durability of components significantly affect the accuracy of measurement results. Ceramic components possess high insulation, wear resistance, and heat resistance, contributing to the performance enhancement of precision sensors. 【Application Scenarios】 - Biological information monitoring - Medical imaging diagnostic equipment - Analytical instruments 【Benefits of Implementation】 - Prolonged sensor lifespan - Improved measurement accuracy - Realization of miniaturization and lightweight design

  • Ceramics

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High-precision ceramic parts for semiconductor manufacturing

Ideal for precision machining. High-strength, durable ceramic components that support semiconductor manufacturing.

In the semiconductor manufacturing industry, the demand for microfabrication technology is increasing due to the miniaturization and high performance of products. In particular, high-precision components are a crucial factor that influences the quality and reliability of products. As dimensional accuracy and surface precision are required, ceramic components are gaining attention due to their characteristics. Our ceramic components are produced through a consistent process from raw material formulation to processing, contributing to solving our customers' challenges. 【Usage Scenarios】 - Semiconductor manufacturing equipment - Microfabrication jigs - Precision measuring instruments 【Benefits of Implementation】 - Achieving high-precision processing - Improving product quality - Extending the lifespan of equipment

  • Ceramics

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<High Precision and Ultra Small> Ceramic Parts *Integrated production from raw material formulation to processing

With years of expertise and a consistent production system, we provide high-strength and durable components made from alumina and ceramics. These can be utilized in a variety of applications, including precision instruments.

Our company has extensive experience in the manufacturing of ceramic components, conducting integrated production from raw material formulation and granulation to molding, firing, and processing. Our ceramic components possess the flexibility to accommodate a variety of applications and contribute to solving your challenges, such as "pursuing dimensional accuracy" and "aiming for high functionality." We can provide extremely small parts, insulating components for field-through applications, magnets and bearing stones for watches, as well as bearings for fans and motors. 【Product Lineup (Partial)】 ■ Micro Parts ■ Insulating Components for Field-Through Applications ■ Ceramic Magnets and Hole Stones ■ Ceramic Sliding Bearings ■ Precious Stones (Alumina Bearings) ■ Thin Film Circuit Boards (Submounts) *For more details, please refer to the PDF materials. Feel free to contact us with any inquiries.

  • Ceramics

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