We have compiled a list of manufacturers, distributors, product information, reference prices, and rankings for Microfabrication.
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Microfabrication Product List and Ranking from 68 Manufacturers, Suppliers and Companies | IPROS GMS

Last Updated: Aggregation Period:Feb 18, 2026~Mar 17, 2026
This ranking is based on the number of page views on our site.

Microfabrication Manufacturer, Suppliers and Company Rankings

Last Updated: Aggregation Period:Feb 18, 2026~Mar 17, 2026
This ranking is based on the number of page views on our site.

  1. 光機械製作所 HIKARI LASER LAB. Mie//Manufacturing and processing contract
  2. リプス・ワークス Tokyo//Manufacturing and processing contract
  3. ウィル 本社 Kyoto//Manufacturing and processing contract
  4. Y-MOLD Nagano//Manufacturing and processing contract
  5. ナムテクノ Gifu//Manufacturing and processing contract

Microfabrication Product ranking

Last Updated: Aggregation Period:Feb 18, 2026~Mar 17, 2026
This ranking is based on the number of page views on our site.

  1. [Processing Example] Achieving high-precision processing and quality stabilization of catheter tips. ウィル 本社
  2. Mold Order and Delivery Platform 'CAMPUS' CAPABLE 本社
  3. [Processing Introduction] Fine processing technology of 0.02mm (20μm) (Electrical Discharge Machining) ナムテクノ
  4. 4 High-speed dicing of difficult-to-process materials such as SiC and glass - TLS-Dicing
  5. 4 We have many achievements in precision prototype sheet metal processing for thin small items! High-precision ultra-fine processing. クロダ精機

Microfabrication Product List

121~133 item / All 133 items

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Microfabrication Technology Data Collection

Achieving stable high quality! Introduction of various metal processing examples using microfabrication technology.

At Yoneyama Mold Manufacturing, we pursue a dimensional accuracy of ±1μm by utilizing the machining center MEGAIII (processing accuracy of 1μm) and the shape electric discharge machine MA2000 (processing accuracy of 2μm). We would like to introduce some challenging metal processing examples that utilize cutting and wire electric discharge machining. 【Metal Processing Examples】 ○ Fine mirror surface cutting ○ Fine hole processing ○ Precision mold components ○ Other fine processing For more details, please contact us or download the catalog.

  • Processing Contract
  • Microfabrication

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Fundamental Knowledge of Microfabrication: "The Difference Between Precision Machining and Microfabrication"

The most problematic aspect of microfabrication is that the processing conditions cannot be visually confirmed with the naked eye.

The biggest issue in microfabrication is that the processing conditions cannot be visually confirmed with the naked eye. The parts and shapes being processed are at a microscopic size, making it impossible to judge the cutting load from the sound of cutting or the way chips are produced. Similarly, if a tool breaks during processing, it is difficult to assess the situation due to the extremely small size of the tool. Furthermore, when dealing with micro components, the dimensional tolerances become nearly zero, and even a few microns of error can significantly affect the quality of the product. Naturally, finishing work by hand and measuring during the process are not possible, so the quality of the product cannot be determined until processing is complete. In other words, compared to precision machining where processing conditions can be visualized, microfabrication places an even greater demand on the experience and imagination of the technician, and the precision of the machines and temperature control required to achieve these results becomes even more stringent. For more details, please contact us or refer to our catalog.

  • Technical and Reference Books
  • Microfabrication

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"I want laser-processed products that have water and oil repellency." 【Seeking Applications】

We solve challenges with anti-adhesion coating technology and laser microfabrication technology.

We offer the following processing services based on the technology cultivated in electronic component manufacturing: - Original surface treatment (coating) - Laser fine processing technology 【Features of Processing Technology】 ■ Original Surface Treatment (Coating): Product name "JC Coat P" - No need for redesign considering coating due to thin film (up to 1μm) - Strong adhesion to the substrate makes it difficult to peel off, eliminating concerns about foreign matter contamination. - Has a hardness approximately 4-5 times that of stainless steel - Complies with domestic regulations for food contact materials ■ Laser Fine Processing Technology - High-precision hole processing with ±0.003mm accuracy is possible - Minimum opening of Φ0.008mm and above - High aspect ratios of 10 or more are possible, including slit processing By leveraging each of these strengths, we can solve various challenges. If you are interested in: - "Wanting to perform fine processing" - "Not wanting to contaminate fine processed products" - "Wanting to stably apply, discharge, or supply from fine holes or slits" please feel free to consult with us. We also accommodate inquiries for each service individually. 【Examples of Applications】 Metal masks for solder printing … Achieves high-quality printing by stabilizing solder volume, reducing smudging, and minimizing residual ink.

  • Other contract services
  • others
  • Other contract manufacturing
  • Microfabrication

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Cost reduction of precision machining with overseas cutting tools for medical devices.

Reduce costs in precision machining for medical device manufacturing and achieve high-quality products.

In the medical device industry, precise component processing affects the safety and performance of products. In particular, high precision and durability are required for fine processing of implants and surgical instruments. Cost reduction is also an important issue. Our overseas cutting tools provide the same quality as Japanese-made tools while being offered at a lower price, thus addressing these challenges. 【Application Scenarios】 - Implant manufacturing - Surgical instrument manufacturing - Precision medical device component processing 【Benefits of Implementation】 - Cost reduction for tooling expenses - Achievement of high-precision processing - Improvement in product quality

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  • End Mills
  • Tap
  • Other cutting tools
  • Microfabrication

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Precision Microfabrication for Environmental Measurement

Ideal for analytical purposes. Enhances reliability with ultra-precise microfabrication.

In the field of environmental measurement, high-quality optical components are essential to obtain high-precision measurement results. Particularly in the detection of trace substances and the observation of fine structures, the precision of glass processing significantly impacts the measurement results. Improper processing can lead to measurement errors and reduced sensitivity, potentially hindering accurate analysis. Our company provides precision microfabrication tailored to customer needs, contributing to the improvement of analysis reliability. 【Application Scenarios】 - Analysis of trace components in the environment - Measurement of air pollutants - Water quality analysis - Optical sensors 【Effects of Implementation】 - Achievement of high-precision measurement results - Improvement of analysis accuracy - Acquisition of reliable data - Increased efficiency in research and development

  • Processing Contract
  • Microfabrication

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Fundamental Knowledge of Microfabrication: "Key Points of Microfabrication"

Microfabrication differs from conventional processing in that there are various considerations during design and processing.

Microfabrication differs from conventional machining in that there are various considerations during design and processing. In "Points of Microfabrication," it is noted that "the shapes are extremely small, making it impossible to visually confirm the shape or the progress of processing," "manual work cannot be performed on micro shapes," "while the objects being processed are extremely small, the tools are also extremely small, resulting in longer processing times," "specialized equipment is required for production," "specialized equipment is required for inspection," "because the cutting tools are extremely small, they may not withstand hard materials," and "if the material is soft, micro parts are weak against processing loads." Various countermeasures are provided for these characteristics of microfabrication. For more details, please contact us or refer to the catalog.

  • Technical and Reference Books
  • Microfabrication

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Fundamental Knowledge of Microfabrication: Key Points for Researchers and Developers to Know about Microfabrication

We will introduce points that researchers and developers should pay attention to during development, design, and processing.

We will introduce points that researchers and developers who require micro-machined parts should pay attention to during development, design, and processing, such as 'confirming the equipment of the ordering source if even a part requires micro-machining,' 'designing to match commercially available tools as much as possible to reduce costs,' 'keeping corner radii as large as possible to reduce costs,' 'having fewer curved shapes to keep costs and delivery times down,' 'deburring of micro parts,' and 'when using expensive materials, the small size of the parts can lead to cost advantages.' For more details, please contact us or refer to the catalog.

  • Technical and Reference Books
  • Microfabrication

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*Aluminum cutting processing: aluminum mirror tube outer cam multi-surface processing & aluminum precision micro machining*

We accommodate fine holes and grooves, as well as high-precision machining for materials such as aluminum, stainless steel, rare metals, high-purity metals, and difficult-to-cut materials.

★Supported Materials Metals: Aluminum, stainless steel, copper, brass, titanium, tantalum, super Invar, iron, etc. Plastics: ABS, PC, PC glass, POM, PEEK, PP, PPS, PEEK, PMMA acrylic, etc. ■ The TEC Division of You Corporation, which started with mold-less processing of plastics, has gained long-standing appreciation from customers by creating complex shapes that cannot be clamped into free forms. For key parts that refine the performance of devices and products, we realize the creativity of our customers into tangible forms. ■ We have relationships with customers in various fields such as aerospace, optical components, and medical parts, and we can accommodate inquiries for small lots starting from just one piece. ★Sample of Mirror Tube Parts ○ Outer cam multi-surface machining, cylindrical machining with a combined lathe, thin-walled machining ○ Machining equipment: Combined lathe, 5-axis machining center ○ Material: Aluminum A5056 *For more details, please refer to the PDF materials or feel free to contact us. When inquiring, please reach out through the related link (inquiry form) below.

  • Processing Contract
  • Microfabrication

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Micro-processing on the tip and side of ultra-fine, small-diameter pipes.

Micro-machining on the tip and side of "ultra-thin and small-diameter pipes" using wire electrical discharge machining and fine hole electrical discharge machining! The minimum order quantity is just "one."

Fine and small-diameter pipes used in medical devices With Namtechno! Precision machining is possible on the tips and sides using wire electrical discharge machining and fine hole electrical discharge machining! Issues such as workpieces bending, crushing, burrs appearing, and difficulties in machining due to vibrations, etc., "Drilling holes," "slitting," "creating steps," "adding grooves," "fine machining," "irregular shapes," "burr-free hole machining," "burr-free shape machining." Please consult Namtechno once! We can process and manufacture from one part or one hole, and test machining is also possible! The types of wire handled by Namtechno are: 0.02mm, 0.03mm, 0.05mm, 0.07mm, 0.1mm, 0.2mm, 0.25mm. We respond to a wide range of customer needs! *For more details, please contact us or refer to the related links.

  • Other molds
  • Processing Contract
  • Processing Jig
  • Microfabrication

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Miniaturization of components achieved through precision machining technology for automobiles.

Supporting miniaturization and high precision of automotive parts with wire cut electrical discharge machining!

In the automotive industry, miniaturization of components is essential for improving fuel efficiency and space efficiency. In particular, high-precision micro-machining technology is required for engine parts and electronic control components. When faced with shapes that are difficult to process using conventional methods or when high surface precision is required, there is a possibility that product performance and durability may be affected. Our wire-cut electrical discharge machining technology addresses these challenges and contributes to the miniaturization and high precision of automotive parts. 【Application Scenarios】 - Micro-machining of engine parts - Precision machining of electronic control components - Manufacturing of small sensor components 【Benefits of Implementation】 - Weight reduction through component miniaturization - Performance improvement through high-precision machining - Increased design flexibility

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  • Processing Contract
  • Microfabrication

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Microfabrication of joint parts using die-sinking electrical discharge machining for robots.

Diagonal grooves for robot joint parts, for fine shape processing. Solving challenges with die-sinking electrical discharge machining!

In the robotics industry, there is a demand for miniaturization and high precision of joint components. Particularly in joint components that affect the robot's range of motion and durability, complex shapes and fine machining accuracy are crucial. Machining of diagonal grooves and intermediate grooves, which are difficult with wire-cut electrical discharge machining, can potentially degrade the robot's performance. Our partner's die-sinking electrical discharge machining technology addresses these challenges. 【Application Scenarios】 - Machining of diagonal grooves in robot joint components - Machining of grooves up to the intermediate section of robot joint components - Fine shape machining of small robot parts 【Benefits of Implementation】 - Realization of high-precision joint components - Improvement of robot performance - Supply of parts within a short delivery time

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  • Other processing machines
  • Microfabrication

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Microprocessing of connectors using die-sinking electrical discharge machining for electronic devices.

For angled grooves and complex-shaped connector machining. Solve challenges with die-sinking electrical discharge machining!

In the electronics industry, connectors are increasingly required to have more complex and intricate shapes due to the miniaturization and high performance of products. In particular, shapes that are difficult to handle with wire-cut electrical discharge machining, such as diagonal grooves and intermediate stop grooves, present high machining difficulty and can impact delivery times and costs. Our partner's die-sinking electrical discharge machining technology addresses these challenges. 【Application Scenarios】 - Machining of diagonal grooves inside connectors - Machining of complex three-dimensional shapes - Machining of fine grooves 【Benefits of Implementation】 - Achievement of high-precision shape machining - Supply of parts in a short delivery time - Potential for cost reduction

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  • Other processing machines
  • Microfabrication

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Microprocessing of decorative parts using die-sinking electrical discharge machining for watches.

Oblique grooves and complex shapes. Achieving fine processing of watch decorative parts with die-sinking electrical discharge machining!

In the watch industry, the beauty and intricacy of decorative components greatly influence the value of the products. Particularly for highly designed decorative parts, fine shapes and complex processing are required. Delicate shapes such as angled grooves that are difficult to achieve with wire-cut electrical discharge machining, as well as grooves extending to the mid-section of components, are crucial elements that affect product quality. Our partners address these challenges using die-sinking electrical discharge machining technology. 【Application Scenes】 - Watch dials - Bezels - Cases - Buckles 【Benefits of Implementation】 - Realization of highly designed decorative components - Provision of high-quality products - Differentiation from competitors

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  • Other processing machines
  • Microfabrication

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