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Processing Machine Product List and Ranking from 935 Manufacturers, Suppliers and Companies

Last Updated: Aggregation Period:Dec 10, 2025~Jan 06, 2026
This ranking is based on the number of page views on our site.

Processing Machine Manufacturer, Suppliers and Company Rankings

Last Updated: Aggregation Period:Dec 10, 2025~Jan 06, 2026
This ranking is based on the number of page views on our site.

  1. TAINATEC Aichi//Industrial Machinery
  2. アマダ(アマダグループ) Kanagawa//Industrial Machinery
  3. 大野精工 機工販売事業部 Aichi//Industrial Machinery
  4. 4 大陽工機 本社 Kagawa//Trading company/Wholesale
  5. 5 トロテック・レーザー・ジャパン 本社 Tokyo//Industrial Machinery

Processing Machine Product ranking

Last Updated: Aggregation Period:Dec 10, 2025~Jan 06, 2026
This ranking is based on the number of page views on our site.

  1. New release of the CNC wire EDM precision contouring machine 'TX-150'! TAINATEC
  2. Plastic mold steel "KTSM3M" 日本金型材
  3. "Pipe End Processing Machine" 【Fuji】
  4. 4 Electric Fugu Skin Slicing Machine "Fugu Skin Slicing Master" サンテクノ久我
  5. 5 For those struggling with small lot precision sheet metal processing. 中畑製作所

Processing Machine Product List

46~60 item / All 2578 items

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Achieving the highest quality welding in the world. Introducing Furukawa Electric's fiber laser.

World-class beam quality achieved with spatula-less, zero-gap, and high-quality welding. High-value-added welding is possible with arbitrary beam mode control technology.

1: World-class beam quality The fundamental single-mode fiber laser achieves the world's smallest core diameter (14 µm) and possesses the highest level of beam quality. Additionally, the multi-mode fiber laser maintains class-leading quality without significantly degrading the single-mode beam quality, thanks to its unique beam coupling technology. This high beam quality enables equivalent processing performance at lower optical output compared to conventional lasers. 2: High resistance to reflected light When processing highly reflective materials like copper, strong reflected light can return into the fiber, potentially leading to the failure of the oscillator. Our unique measures against reflected light have been experimentally confirmed to prevent damage to the oscillator even under vertical incidence. 3: Flexible beam shaping technology using an optical head with beam mode control function The greatest feature of the beam mode control technology is the freedom of mode design. It allows for the modification of the beam mode into any desired shape, achieving optimal patterns and intensity distributions for the processing material. 4: Sputtering suppression achieved through beam mode control Even under conditions where sputtering typically occurs, it is possible to reduce sputtering by using beam mode control technology.

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Stage control at the nano level is possible. Introduction of ultra-high precision laser processing machines.

Ultra-high precision processing is achieved by enabling nano-level control at the stage of laser processing. It is a processing machine that allows for flexible selection of the mounted transmitter.

Due to limitations in positioning accuracy, certain processes could not be realized; however, by equipping a stage at the level of high-precision machine tools, laser processing is now possible while controlling at the nano level. Various types of transmitters can be mounted depending on the target workpiece and processing content. Other customizations are possible, so please check the reference specifications and feel free to contact us.

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[Example] 5-axis machining machine

This is an example of a 5-axis machining machine. The applications include metal processing, crown processing, and resin processing.

This is a 5-axis machining machine that takes into account the rotation of the table. It can process without any interference from the mechanism. Additionally, it has a proven track record of Tool Center Point control. For more details, please contact us.

  • PLC
  • controller

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Slab-type solid-state laser fine processing device IS / BX / HD series

Slab-type solid-state laser fine processing equipment IS / BX / HD series

Edgewave Inc. 【Features】 ○ Output: IR 100W, Green 40W ○ Short pulse: 5–10ns ○ Beam shape: Gaussian, square, line ○ Glass substrate straight hole processing ● For more details, please contact us or download the catalog.

  • Other machine tools

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Laser processing machine 'WS Turret'

Laser processing equipment suitable for various applications such as nozzle drilling and fine microchannels!

The "WS Turret" is a multifunctional processing device equipped with a three-wavelength ultrashort pulse laser, capable of precise machining with minimal thermal impact on various materials. It also supports three-dimensional processing of transparent materials through nonlinear processing (multiphoton absorption). Additionally, we can propose femtosecond laser-equipped processing devices tailored to your specific processing needs. 【Features】 ■ High quality, non-thermal processing ■ High flexibility ■ Easy setup ■ Minimum processing size <10μm ■ Positioning resolution 1μm *For more details, please download the PDF or feel free to contact us.

  • Other processing machines
  • Special Processing Machinery

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Laser processing

Leave the laser processing of materials centered on ceramics and resins to us.

Our company considers laser processing as one of the processing methods and proposes techniques tailored to shapes and materials. We can also combine it with other methods within the company to accommodate various shapes. We suggest "processing that can do this" rather than "processing that could not be done before." 【Our Laser Processing】 - We propose and process using the optimal optical systems, oscillators, and peripheral technologies suited to the materials. - We own multiple laser processing machines that we sell and perform actual processing. - Rather than just demonstration processing, we can consistently handle everything from single items to repeat projects and equipment sales. *For more details, please refer to the PDF materials or feel free to contact us.

  • Processing Contract
  • Laser microscope

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Ultrafine Processing Machine WATERBEAM MACHINE

Precision processing solutions that achieve high accuracy, non-contact, and low damage for fine processing of high-hardness materials and semiconductor materials.

The combination of water jet and laser processing technology enables clean drilling, cutting, grooving, and surface processing with extremely minimal thermal impact. This device is an ultra-fine processing machine that achieves "high precision," "non-contact," and "low damage" processing required in the fields of semiconductors, electronic components, and precision instruments.

  • Other machine tools

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JDSU high-performance He-Ne laser

All products are sold individually as standard specification items. We offer quick delivery due to complete stock availability.

The He-Ne laser manufactured by JDSU in the United States adopts a patented closed-cathode design, improving thermal stability and output stability. Additionally, the patented field concentrator design allows for rapid beam oscillation. Furthermore, the use of precisely aligned cylindrical housing and an electrically connected interlocking system simplifies system integration. The robust design of the JDSU high-performance He-Ne laser is suitable for most applications in harsh operating environments. For the product lineup, specifications, and sales prices of standard products, please refer to the relevant product page on the official website of Edmund Optics Japan (accessible from the product homepage linked above). *You can download the catalog featuring this product from the link below, which is provided by Edmund Optics Japan.

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Examples of precision machining of alumina

Example of processing a Φ40μm through hole in alumina.

This is an example of through-hole processing in alumina using a Φ40μm laser.

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High-precision micro-multi-hole processing case for Ti (tantalum) foil

A multi-hole through processing with a diameter of 0.05 mm and a pitch of 0.5 mm was performed on a tantalum foil with a thickness of 0.05 mm.

In general, machining tantalum is difficult or time-consuming for fine processing, but our company has made it possible to achieve burr-free and highly round fine hole processing through laser machining.

  • Capacitor

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Examples of fine groove processing on PET

This is an example of gradient processing on PET with a minimum width of 20μm to 100μm. Depth control is possible up to 0.5μm.

In laser processing, controlling the depth is difficult, and issues such as dross and smear caused by thermal effects occur, leading to irregular shapes in fine processing. Our company has solved these drawbacks of laser technology.

  • Other electronic parts

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Case study of laser microprocessing on ultra-fine metal pipes.

This is an introduction to examples of processing techniques for ultra-fine metal pipes, including one-sided through-hole machining, porous machining, slitting, groove machining, spiral groove machining, and notch machining.

It has become possible to perform various fine processing on thin, ultra-fine metal pipes that were previously unable to be processed due to deformation from external forces with contact tools and thermal effects with conventional thermal processing lasers. By using a rotating mechanism, it is possible to carry out processing in all rotational directions.

  • Processing Contract

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Water-repellent phenomenon due to microtexture

This is an introduction to the emergence of biomimetic effects using ultra-short pulse lasers.

At Lips Works, we have discovered a structure that is closer to the surface structure of lotus leaves and suitable for laser processing, based on the concept of biomimetics. While the contact angle of general PTFE is said to be between 120° and 140°, the structure developed by Lips Works has established a contact angle of 170°. For more details, please visit our company website.

  • Processing Contract

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Laser microtexture and antibacterial properties

We would like to introduce the antibacterial function achieved through laser processing on the surface of SUS materials.

The flow of antibacterial processing has also been applied to metal products, where antibacterial functions are required to prevent microbiological corrosion caused by microorganisms and to ensure hygiene in places like food factories. As a new method in addition to the application of antibacterial coatings such as silver ions and copper ions, as well as the use of disinfectants, Lips Works proposes antibacterial processing using ultra-short pulse lasers. The emergence of antibacterial properties through ultra-short pulse laser processing does not require coatings on surfaces like traditional methods and does not involve the use of chemicals, eliminating concerns about resistant bacteria. We also provide data that has cleared JIS standards for antibacterial processing through laser processing on our website. How about considering a new method for imparting antibacterial properties to metal materials and manufacturing machines?

  • Processing Contract

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High aspect ratio straight holes in polycrystalline diamond

We performed high aspect ratio straight hole processing on polycrystalline diamonds!

Polycrystalline diamond is characterized by high hardness and excellent wear resistance, and it not only lacks cleavage and orientation dependence but also has outstanding heat resistance. Due to its hardness and performance exceeding that of single crystal diamond, it is used as a material for cutting tools employed in precision grinding and precision machining. Despite being considered difficult to machine due to its hardness, we successfully created straight holes with a maximum aspect ratio of 7.5 times in polycrystalline diamond with a thickness of 600μm using a non-contact processing method and ultra-short pulse laser that is not dependent on the material being processed!

  • Processing Contract
  • Diamond cutter

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