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Precision Machining Product List and Ranking from 122 Manufacturers, Suppliers and Companies | IPROS GMS

Last Updated: Aggregation Period:Jun 10, 2026~Jul 07, 2026
This ranking is based on the number of page views on our site.

Precision Machining Manufacturer, Suppliers and Company Rankings

Last Updated: Aggregation Period:Jun 10, 2026~Jul 07, 2026
This ranking is based on the number of page views on our site.

  1. カドミ光学工業 Tokyo//Optical Instruments
  2. ブル精密 (株)ブル精密 本社 Tochigi//Glass and clay products
  3. 型システム Gifu//Manufacturing and processing contract
  4. 4 五輪パッキング Saitama//Manufacturing and processing contract
  5. 5 袋井市 産業未来課産業政策係 Shizuoka//Government

Precision Machining Product ranking

Last Updated: Aggregation Period:Jun 10, 2026~Jul 07, 2026
This ranking is based on the number of page views on our site.

  1. Precision machining of quartz glass カドミ光学工業
  2. Kyoritsu Electric Manufacturing Co., Ltd. Company Introduction 袋井市 産業未来課産業政策係
  3. Ultra-precision machining through "automatic measurement + correction processing" in NC lathe machining. 長野鍛工
  4. 4 Ultra-precision machining | High surface quality and fine processing compatible (UVM-700C(H)) 型システム
  5. 4 [Contract Processing/Machine Sales] Shiba Giken Co., Ltd. Company Profile 芝技研

Precision Machining Product List

181~210 item / All 224 items

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Six strengths of ISS Nishikawa Machinery.

Our strengths lie in our diverse processing equipment, high technical capabilities, and meticulous responsiveness.

At ISS Nishikawa Machinery Co., Ltd., we have many skilled technicians who hold first-class qualifications. In addition, we established a new production technology department in 2022, staffed with experienced personnel to meet the needs for high-precision and complex machining. Our meticulous work is so well-regarded that we are known for the quality of our finishes. Having honed our skills through products related to semiconductor manufacturing equipment, we maintain a level of quality that exceeds our customers' expectations across various machining aspects. We take pride in our high repeat rate not only from our existing customers but also from new clients. **Six Strengths** - High technical capability with numerous first-class skilled workers and a production technology department - Ownership of 20 large machining machines, capable of handling various shapes and materials - Precision machining of castings - High level of finish quality - Thorough quality, inspection, and delivery management - Material procurement capabilities utilizing group companies *For more details, please refer to the PDF document or feel free to contact us.*

  • Processing Contract
  • Precision Machining

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Precision machining using wire cut electrical discharge machining equipment.

To expand the range of processing technologies, we have introduced wire-cut electric discharge machining equipment. We also accommodate difficult-to-cut materials and precision machining in the aerospace and medical fields!

Yamato Seiko Co., Ltd. Introduces Wire Cut Electrical Discharge Machining To broaden our machining technology capabilities, we have introduced a wire cut electrical discharge machining system. Leveraging the strengths of wire cut electrical discharge machining, we will also cater to the processing of difficult-to-cut materials and precision shape machining in the aerospace and medical fields. We are also considering responses to prototype and small-lot production orders.

  • others
  • Electric discharge machine
  • Other machine elements
  • Precision Machining

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Strengths of Eiseisakusho

Reliable technical skills backed by transactions with major manufacturers! An unwavering challenge towards high-precision processing.

We would like to introduce the strengths of Eisei Manufacturing Co., Ltd. Founded in 1961, we are a processing company specializing in high-precision machining. Even for castings, which are difficult to achieve precision with, we can perform high-precision machining based on our long years of experience and knowledge of suitable chucking and processing conditions. In terms of material procurement, we manufacture a variety of materials in our group companies' own factories, allowing us to procure high-quality materials at low costs. Additionally, we can quickly respond to customer requests for prototypes and small lot processing. 【Our Strengths】 ■ Evolving high-precision machining that combines years of cultivated skilled techniques with digital technology ■ One-stop service from material procurement to processing and assembly ■ Agility to respond swiftly to diverse needs ■ Reliable technical capabilities backed by transactions with major manufacturers *For more details, please refer to the related links or feel free to contact us.

  • Processing Contract
  • Precision Machining

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RLM01 Robot Line Marker

Make line marking easy.

The FJD PaintMaster Pro RLM01 robot line marker is an essential intelligent line marking robot for sports fields. With two industrial-grade GNSS positioning systems and a local base station, it achieves centimeter-level accuracy. When combined with FJD's laser kit, this robot achieves millimeter-level marking precision even in GPS-challenging locations such as under trees or near stands. This robot, which can significantly save time and labor costs, is the perfect solution for any sports field.

  • Power tools
  • Precision Machining

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In-house integrated production is possible! Revatech's precision machining.

By in-house manufacturing of automotive parts, we control price, quality, and delivery time!

Introducing the strength of Rivatec: "In-house Consistent Production." The manufacturing of automotive parts is characterized by a very high number of processes. By in-sourcing these processes, we can respond quickly in the event of defects and prevent issues from occurring through the accumulation of know-how. Additionally, we have been continuously implementing measures to reduce worker movement, achieving the best prices. We also respond flexibly to urgent inquiries. 【Features】 ■ In-sourcing processes to control price, quality, and delivery time ■ Achieving the best price by reducing worker movement ■ Quick response in case of defects ■ Preventing defects through the accumulation of know-how ■ Easy adjustments and flexible responses to urgent inquiries *For more details, please download the PDF or feel free to contact us.

  • Auto Parts
  • Precision Machining

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Processing services for universities: Assisting with the design and processing of fixtures and materials for research purposes.

Supports a wide range of services including single-item precision machining, design drafting, and reverse engineering!

"I would like you to do just one custom processing that I cannot do myself." "I want to create something from scratch while consulting with a professional." "I want to replace parts of an old device from a laboratory that is no longer sold." Are there any students or researchers facing such concerns? At Equal, we can solve all of these issues. For example, in single-item precision processing, orders can be placed starting from just one unit. This is ideal for experimental prototypes. We also accommodate many other requests, so if you have even a slight interest, please feel free to contact us. 【Features】 ■ Single-item precision processing - Orders can be placed starting from one unit - Ideal for experimental prototypes ■ Design drafting - Proposals for designs tailored to your needs through consultation ■ Reverse engineering - Ability to recreate items that no longer have drawings or parts that have been discontinued *For more details, please refer to the PDF materials or feel free to contact us.

  • Processing Contract
  • Mold Design
  • Other contract services
  • Precision Machining

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Precision machining realized with CAMCORE EX for medical devices.

Centralized management of drawings and processing data to streamline the precision processing of medical devices.

In the medical device industry, precise machining of components is essential to ensure product safety and reliability. Particularly for products that require high precision, such as implants and surgical instruments, the accuracy of machining data and efficient management are crucial. Errors in machining data or complicated management can lead to a decline in product quality and an increase in manufacturing costs. CAMCORE EX streamlines the editing of machining data by managing drawings and machining data in the same file, making it easier to create NC data. 【Usage Scenarios】 - Precision machining of components such as implants and surgical instruments - Machining of complex-shaped medical device parts - Management of machining data in prototype and small-scale production 【Benefits of Implementation】 - Rapid response to changes in machining data - Reduction in NC data creation time - Improvement in product quality

  • Other CAM related software
  • Precision Machining

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Precision processing of thin materials such as aluminum, non-ferrous metals, and plastic resins.

Our unique technology for "adhesive processing" offers high-precision cutting at 0.01mm increments! A substitute for laser processing. We have numerous achievements in various industries, including medical, food, and cosmetics!

Meiwa's unique technology "adhesive processing" is a new processing method that achieves precision of 【0.01mm units】 compared to laser processing, which has a precision of about 0.2mm. With numerous processes using clamps, it is possible to process many products in a single process! It also contributes to cost reduction and is adopted in various fields such as automotive, medical, food, and cosmetics. In particular, in the medical field, it is used in parts for ultrasound and DNA destruction devices. There are inquiries from various manufacturers in Europe as well as domestically. 【Features】 ■ Capable of processing multiple items simultaneously ■ Strong in aluminum, but can also process other materials ■ Produces minimal burrs, eliminating the need for subsequent processes ■ Active in inspection equipment in the medical field, among others *For more details, please contact us or download the PDF to view.

  • Processing Contract
  • Precision Machining

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[A5052 Thin-Walled Processing for Medical Devices] φ60 t1.2

We achieve lightweight and high-precision processing of medical device enclosures.

In the medical device industry, there is a trend towards miniaturization and lightweighting of products, which requires high precision and durability in the enclosures. Particularly in enclosures that protect precise electronic components, lightweighting through thin-wall processing and high dimensional accuracy significantly affect product performance. Our A5052 thin-wall processing was developed to meet these needs. 【Application Scenes】 - Medical monitor enclosures - Analytical instrument enclosures - Surgical robot enclosures 【Benefits of Implementation】 - Improved handling due to lightweighting - Increased reliability of components through high-precision processing - Adaptability to diverse shapes

  • Processing Contract
  • Precision Machining

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Support available from as short as 2 to 3 days, starting from one piece! Precision wire EDM machining.

We also perform wire cut electrical discharge machining for high-precision progressive press molds of extremely small parts inside mobile phones and home appliances (t=0.08)!

We have a wealth of processing achievements in precision progressive molds with a thickness of 0.06, precision plastic molds, large die-casting molds, blank products, spline gauges, coupling gauges, screw gauges, medical devices, prototype parts, conductive ceramics, and more! We conduct meetings with customers regarding each processed item, as well as CAD/CAM production, processing, and measurement. 【Processing Technology】    Material       Processing/Treatment (Technology)     Products  Iron, high-speed steel  Wire electrical discharge machining  Molds, machine parts  Conductive ceramics   Wire electrical discharge machining  Machine parts 【Final Products】  Products (Items)     Parts (Components)  Automobiles     Plastic molds, press molds, die-casting molds, testing jigs, prototype parts  Home appliances   Plastic molds, press molds, line components, inspection jigs  Construction hardware Molds for door wheels, etc.  Manufacturing machinery LCD line manufacturing components, inspection jigs, spline gauges, etc.

  • Processing Contract
  • Other processing machines
  • Electric discharge machine
  • Precision Machining

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Taiwan Precision Machining (Grinding, Electrical Discharge Machining, Wire Cutting, Machining)

We are committed to quality and service, adhere to deadlines, and provide our customers with the best products.

Our company is equipped with various processing facilities such as discharge machining, grinding, wire cutting, and machining. We handle requests for the processing of special precision parts tailored to our customers using materials such as aluminum, copper, steel, stainless steel, iron, and resin.

  • Other machine elements
  • Processing Contract
  • Contract manufacturing
  • Precision Machining

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Precision machining of probe pins for vehicle-mounted ECUs and sensors.

Probes used for inspecting electronic components for automobiles are manufactured through high-precision cutting processes. This addresses quality issues such as contact failure and inspection variability.

We accept requests for "probe pin processing." We assemble multiple parts, including springs, within the mold. Additionally, we have many achievements in producing items that may seem impossible with conventional pressing techniques, thanks to our technical expertise. 【Reasons to Choose Wako Seiki Co., Ltd.】 ■ Established a comprehensive in-house production system for press molds ■ Mold production is possible at four locations, including the headquarters and mass production factory ■ Shortened production lead times through load distribution ■ Stable supply of high-quality press products ■ ODM proposals leveraging high mold technical capabilities *For more details, please download our catalog or feel free to contact us.

  • probe
  • Precision Machining

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Essential for those struggling with precision machining of super hard brazed stainless materials.

Precision processing of stainless steel × carbide brazed products at the micron level.

We provide precision machining services using cemented carbide and austenitic stainless steel (SUS304 series) as base materials for brazed products. The base material with brazed cemented carbide will be precisely machined using techniques such as grinding and electrical discharge machining. The brazed products have been heated in the previous process, which usually results in distortion of the base material. We will perform precision machining that requires strict geometric tolerances while removing the distortion of the base material. In particular, when the base material is made of high thermal expansion coefficient materials such as SUS, significant warping occurs during the brazing of cemented carbide, and new warping can also develop during the grinding process, necessitating advanced machining techniques. For more details, please refer to the "Machining Technology Special" document.

  • Other processing machines
  • Precision Machining

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Precision machining of Inconel thin plates (lathe and milling compatible)

Leave precision-focused Inconel machining to us!

Hayashida Giken Co., Ltd. specializes in the processing of thin sheets of Inconel 600 (including alloys). We achieve high processing precision and can perform fine machining on a scale of approximately 1/10 to 1/100. We are also flexible in accommodating specifications for geometric tolerances (note: there may be limitations depending on shape and material). If you are considering product processing that requires precision, please feel free to consult us. 【Services Offered】 Maximum processing size: up to approximately φ400 Quantity support: small lots (1 to 30 pieces) *For more details, please refer to the PDF document or contact us.

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  • Processing Contract
  • Precision Machining

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Precision processing of stainless steel thin plates (lathe/milling, approximately 10mm thickness)

High-precision machining that flexibly accommodates difficult-to-cut materials!

At Hayashida Giken Co., Ltd., we process thin sheets of stainless steel (SUS304, SUS316, SUS303, low carbon materials). With the know-how we have cultivated over many years, we can achieve dimensional accuracy of approximately 1/100 level. Furthermore, we can accommodate requests for geometric tolerances (depending on shape and size). 【Overview of Services】 Processing Size: Up to approximately φ400 Quantity: Small lots (about 1 to 30 pieces) Please feel free to consult with us. *For more details, please refer to the PDF materials or contact us.

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  • sample3.png
  • Processing Contract
  • Precision Machining

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Precision processing of titanium thin plates (aerospace and medical components)

High-precision machining suitable for fields where reliability is required!

At Hayashida Giken Co., Ltd., we accept processing of pure titanium and Ti-64 thin plates. We ensure dimensional accuracy at the 1/100 level and can accommodate strict geometric tolerances. Our services can also be utilized for prototypes in aerospace and medical applications. [Overview] Maximum processing diameter: approximately φ400 Quantity: from 1 to about 30 pieces *For more details, please refer to the PDF document or feel free to contact us.

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  • Processing Contract
  • Precision Machining

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銅タングステン加工のご相談(試作・小ロット対応)

外注先が見つからないお悩みにお応えします!

林田技研は、銅タングステン加工をお探しの方のご要望にお応えします。 旋盤・フライス・マシニング・ワイヤーなどを駆使し、素材特性に合わせた最適な加工を実現。精度は1/10~1/100レベルまで対応可能です。 【製品概要】 加工サイズ:ご相談ください 数量:1個~100個程度 ※詳しくはPDF資料をご覧いただくか、お気軽にお問い合わせ下さい。

  • Processing Contract
  • Precision Machining

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Inverter and Super Inverter Precision Machining

Supports precision machining with an accuracy of 1/100!

At Rintian Giken, we perform precision machining of inverters and super inverters. With experienced technicians and well-equipped facilities, we can achieve high-precision machining in the range of approximately 1/10 to 1/100 units. We cater to a wide range of needs, from single items to small lots. 【Overview】 Machining capacity: Up to approximately φ500 Quantity: 1 to 100 pieces *For more details, please refer to the PDF document or feel free to contact us.

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  • Processing Contract
  • Precision Machining

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Heiwa Metal Industry Co., Ltd. Key Points of Precision Machining

With the fine processing technology and management skills cultivated in the semiconductor production field as our weapons, we can achieve high-precision processing of metal parts for electronic precision applications!

Even in seemingly difficult-to-maintain precision processing products, such as thin and complexly shaped bending work or glossy plating where scratches are not allowed, our quality control capabilities are demonstrated. This is also true for our expertise in copper processing. To meet the product quality demanded by our customers, our engineers, who possess the experience and know-how to anticipate potential issues during actual processing, propose and carry out processing under optimal conditions. In addition to improving precision in basic quality control and measures to prevent warping of parts, we also do not overlook environmental management, such as temperature control within the factory and machinery, and vibration countermeasures. We will maximize the know-how cultivated in the manufacturing of precision electronic components. For more details, please feel free to contact us.

  • Processing Contract
  • Precision Machining

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Multi-process and multi-layer bonding of composite precision parts processing for wearable devices.

Achieving thinner wearable devices through component integration! [Punching processing of film, double-sided tape, cushioning, heat dissipation sheets, and copper foil tape]

In the wearable device industry, miniaturization and lightweight design are always in demand. To achieve a slim profile, it is essential to reduce the number of components and to thin each component. Our multi-process, multi-layer laminated composite precision parts processing combines double-sided tape, films, cushioning materials, and conductive/insulating materials, enabling the integration and thinning of components. This contributes to the miniaturization and lightweight design of wearable devices. 【Usage Scenarios】 - Housing for wearable devices - Battery protection - Display protection - Protection for various sensors 【Benefits of Implementation】 - Thinning of devices - Reduction in the number of components - Reduction in assembly labor - Cost reduction

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  • Other Auto Parts
  • LCD display
  • Processing Contract
  • Precision Machining

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Composite precision parts processing for multi-process and multi-layer applications in environmental measurement.

Our packing integration technology achieves cost reduction through component integration! [Punching processing of film, double-sided tape, cushioning, and heat dissipation sheets]

In the environmental measurement industry, the precision of sensor and measuring instrument components is crucial for achieving high-sensitivity measurements. In particular, to capture minute signals, fine structures and high reliability of the components are required. Inappropriate components can lead to measurement errors and noise, potentially hindering accurate data acquisition. Our multi-process and multi-layer bonded composite precision parts processing contributes to the performance enhancement of high-sensitivity environmental measurement devices through high-precision punching and multi-layer structures. 【Application Scenarios】 - High-sensitivity sensors - Precision measuring instruments - Environmental monitoring systems 【Benefits of Implementation】 - Achievement of high-precision measurement results - Miniaturization and lightweighting of products - Assurance of long-term reliability

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  • Other Auto Parts
  • LCD display
  • Processing Contract
  • Precision Machining

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[For Robots] Multi-process and Multi-layer Bonding of Composite Precision Parts Processing

Achieving high performance in robots through component integration! [Punching processing of film, double-sided tape, cushioning, heat dissipation sheets, and copper foil tape]

In the robotics industry, miniaturization, lightweight design, and high functionality are in demand. In particular, improving the durability of moving parts and protecting sensors and electronic components are crucial. Traditional structures with a large number of components can lead to increased assembly labor and a higher risk of failure. Our "multi-process, multi-layer bonded composite precision parts processing" addresses these challenges through component integration. 【Application Scenarios】 - Robot joints - Sensor protection - Insulation of electronic circuit boards - Battery protection 【Benefits of Implementation】 - Space-saving through integration and miniaturization - Cost reduction through decreased assembly labor - Performance improvement of robots through performance optimization - Simplification of material management - Cost reduction (lower manufacturing costs)

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  • Other Auto Parts
  • LCD display
  • Processing Contract
  • Precision Machining

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Composite precision parts processing for multi-process and multi-layer bonding in semiconductor manufacturing.

Our packing integration technology achieves cost reduction through component integration! [Punching processing of film, double-sided tape, cushioning, and heat dissipation sheets]

In the semiconductor manufacturing industry, there is a demand for miniaturization and high performance of products. In microfabrication, the precision and reliability of components are crucial, as even slight misalignments or foreign objects can significantly impact product performance. Our "multi-process, multi-layer bonded composite precision parts processing" addresses these challenges and provides high-quality products. 【Application Scenarios】 - Packing for wafer transport - Gaskets for semiconductor manufacturing equipment - Protective materials for fine components 【Benefits of Implementation】 - High-precision component supply in microfabrication - Reduced risk of foreign object contamination - Improved product yield

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  • Other Auto Parts
  • LCD display
  • Processing Contract
  • Precision Machining

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Aerospace-oriented multi-process and multi-layer composite precision parts processing

Achieving weight reduction and cost savings through component integration! 【Punching processing of film, double-sided tape, cushioning, heat dissipation sheets, and copper foil tape】

In the aerospace industry, reducing the weight of aircraft is essential for improving fuel efficiency and, consequently, reducing operational costs. In particular, aircraft components require high durability and functionality while being lightweight. Traditionally, functionality was achieved by combining multiple parts, which led to increased weight and assembly labor. Our "multi-process, multi-layer composite precision parts processing" achieves both weight reduction and enhanced functionality through the integration of components. 【Application Scenarios】 * Aircraft interior components * Avionics * Parts for space exploration vehicles 【Benefits of Implementation】 * Improved fuel efficiency through weight reduction * Cost reduction by decreasing the number of parts * Increased efficiency by reducing assembly labor

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  • Other Auto Parts
  • LCD display
  • Processing Contract
  • Precision Machining

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Composite precision parts processing with multi-process and multi-layer bonding for the energy industry.

Achieve cost reduction through component integration! Contributing to energy efficiency. [Punching processing of films, double-sided tape, cushions, and heat dissipation sheets]

In the energy industry, energy conservation and cost reduction are important challenges. In particular, in power supply systems and renewable energy equipment, there is a demand for miniaturization, lightweight design, and high performance of components. Multi-layered components are essential to meet these needs. Our "multi-process, multi-layer bonding of composite precision parts processing" addresses these challenges through component integration, contributing to improved energy efficiency. 【Application Scenes】 - Solar power panels - Wind power turbines - Battery storage systems - Power supply systems 【Effects of Implementation】 - Reduction in the number of components - Reduction in assembly man-hours - Cost reduction - Performance optimization

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  • Other Auto Parts
  • LCD display
  • Processing Contract
  • Precision Machining

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Automotive multi-process and multi-layer bonded precision parts processing

Our packing integration technology achieves cost reduction through component integration! [Punching processing of film, double-sided tape, cushioning, and heat dissipation sheets]

In the automotive industry, high-precision part processing is required to enhance product reliability and safety. Particularly for automotive components exposed to vibrations and temperature changes, dimensional accuracy and durability are essential for maintaining product performance. Improper processing can lead to component failure or performance degradation. Our "multi-process, multi-layer bonded composite precision part processing" achieves high performance by laminating double-sided tape, films, cushioning materials, conductive and insulating materials, and combining the functions of each layer. We accommodate various specifications and delivery forms through processing technologies such as press processing, half-cutting, and full cutting. 【Application Scenarios】 - Automotive electronic components - Body joints - Interior parts 【Benefits of Implementation】 - Integration and miniaturization - Reduction in assembly man-hours - Performance optimization

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  • Other Auto Parts
  • LCD display
  • Processing Contract
  • Precision Machining

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Diffusion bonding for research and development, precision machining

We expand possibilities with microfabrication and diffusion bonding.

In the field of research and development, precise component processing is required to maximize the performance of prototypes. Particularly when cooling effects or microchannels are necessary, advanced bonding techniques are essential. Diffusion bonding achieves atomic-level bonding of metals, providing high reliability and durability. Our diffusion bonding technology contributes to solving challenges in the prototyping phase of research and development. 【Application Scenarios】 - Research and development of new materials - Prototyping of high-performance devices - Development of cooling systems - Prototyping of microfluidic devices 【Effects of Implementation】 - Production of high-precision prototypes - Miniaturization and enhancement of product performance - Reduction of research and development time - Compatibility with a variety of metal materials

  • Special Processing Machinery
  • Other machine elements
  • Other purification and extraction
  • Precision Machining

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Aerospace Diffusion Bonding Precision Machining

Contributing to weight reduction in the aerospace field through microfabrication and diffusion bonding.

In the aerospace industry, reducing the weight of aircraft is essential for improving fuel efficiency and performance. It is particularly important to achieve weight reduction while maintaining strength. Diffusion bonding allows for the joining of metals at the atomic level, enabling the production of lightweight components while preserving high strength. This contributes to improved fuel efficiency in aircraft and increased payload capacity in spacecraft. 【Application Scenarios】 - Aircraft components (engine parts, structural members, etc.) - Spacecraft components (satellite structures, rocket parts, etc.) - Precision instruments requiring weight reduction 【Benefits of Implementation】 - Improved fuel efficiency through weight reduction of components - Ensured high strength and durability - Capability to manufacture complex-shaped parts - Increased design flexibility

  • Special Processing Machinery
  • Other machine elements
  • Other purification and extraction
  • Precision Machining

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Diffusion bonding precision machining for medical devices

Achieving miniaturization of medical devices through microfabrication and diffusion bonding.

In the medical device industry, miniaturization and precision part processing are required. In particular, miniaturization of components is essential to pack many functions into a limited space. By combining diffusion bonding and microfabrication, it becomes possible to manufacture medical device components that are small yet have high performance. Our technology contributes to the improvement of medical device performance. 【Application Scenarios】 - Miniature medical devices - Precision inspection equipment - Surgical instruments 【Effects of Implementation】 - Miniaturization of components - High cooling efficiency - Fabrication of microchannels

  • Special Processing Machinery
  • Other machine elements
  • Other purification and extraction
  • Precision Machining

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シリコンの素材供給と精密加工

国内大手パワーデバイスメーカーに採用実績!小径加工から微細加工まで各種精密加工に対応!

Φ2インチ~Φ18インチまでのパワーデバイス用プライムウェハーの製造を中心に、構造用部品材料としてΦ450mmまでの単結晶大口径シリコンインゴット・プレートの供給と加工も行っております。 【特長】 ■インゴット・ウェハー・エピタキシャルウェハー・パーツとして供給可能 ■Φ450mmまでの単結晶大口径シリコンインゴット・プレートの供給・加工が可能(構造用部品材料) ■パーツはスライス、ラッピング、エッチング、ポリッシングから小径加工、微細加工まで各種精密加工可能 ※詳しくはカタログをダウンロード、またはお問合せください。

  • Other polymer materials
  • Precision Machining

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