We have compiled a list of manufacturers, distributors, product information, reference prices, and rankings for Laser Processing Service.
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Laser Processing Service Product List and Ranking from 42 Manufacturers, Suppliers and Companies

Last Updated: Aggregation Period:Sep 24, 2025~Oct 21, 2025
This ranking is based on the number of page views on our site.

Laser Processing Service Manufacturer, Suppliers and Company Rankings

Last Updated: Aggregation Period:Sep 24, 2025~Oct 21, 2025
This ranking is based on the number of page views on our site.

  1. null/null
  2. トロテック・レーザー・ジャパン 本社 Tokyo//Industrial Machinery
  3. サンダーレーザージャパン 日本本社 Osaka//Industrial Machinery
  4. 4 null/null
  5. 5 メカニー Shiga//Trading company/Wholesale

Laser Processing Service Product ranking

Last Updated: Aggregation Period:Sep 24, 2025~Oct 21, 2025
This ranking is based on the number of page views on our site.

  1. CO₂ laser processing machine "Thunder BOLT series" サンダーレーザージャパン 日本本社
  2. Laser processing machine for film and resin substrates <Sample processing currently accepting> AOCジャパン
  3. Compact Size CO2 Laser Engraving Machine 'Speedy50' トロテック・レーザー・ジャパン 本社
  4. 4 Amada's domestic exhibition facility アマダ(アマダグループ)
  5. 5 Highly operable medium-sized CO2 laser processing machine 'Speedy 300' トロテック・レーザー・ジャパン 本社

Laser Processing Service Product List

346~360 item / All 659 items

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Optical Doppler Velocity Measurement (PDV)

Photonic Doppler velocimetry (PDV) provides a established technology for measuring high-speed events up to several tens of km/s.

Optical Doppler velocimetry (PDV) is an established technology used for measuring high-speed events up to several tens of km/s. It is also referred to as a heterodyne velocimeter and can be used as an auxiliary or alternative tool to the VISAR (Velocity Interferometer System for Any Reflector). ■ Optical Doppler Velocimetry Doppler 1000 Series The Doppler 1000 Series consolidates the main optical components of photonic Doppler velocimetry (PDV) into a very compact device, enabling efficient high-channel-count PDV test setups. ■ For the operating principles of optical Doppler velocity measurement, configuration examples, and development cases, please refer to the following URL: https://www.japanlaser.co.jp/technology/quantifiphotonics_appli-photonic-doppler-vielocimetry/ *You can download the PDF catalog. For more details, please contact us.

  • Optical Measuring Instruments

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OPTOTUNE Electronic Focus Tunable Lens

Continuous focus adjustment is possible; to replace the functions of the completed lens kit; the focal length range is +50 to +120mm.

The electronic Optotune focus-tunable lens provides a single lens solution for focusing and zooming purposes. By applying a control current, a small plano-convex lens changes its curvature. The electronically controllable focal length range is +50 to +120 mm, making it suitable for various applications. This eliminates the need for a system composed of multiple lenses. There are two models available: the VIS coat model with an anti-reflective coating for the visible range and the NIR coat model with an anti-reflective coating for the near-infrared range. For the product lineup, specifications, and sales prices of standard products, please visit the relevant product page on the official website of Edmund Optics Japan Co., Ltd. (accessible via the product homepage link above). *You can download the catalog from Edmund Optics Japan that includes this product from the link below.

  • lens

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OPTOTUNE C-mount focus tunable lens

Continuous focus adjustment is possible; equipped with C-mount screw-in and lens offset functions to facilitate system integration.

The Optotune C-Mount Focus Tunable Lens facilitates mechanical integration in imaging systems by combining Optotune's electronic focus tunable lens with a C-mount compatible housing. By applying a control voltage to the lens via a Hirose connector, the Optotune C-Mount Focus Tunable Lens can adjust the focal length range from +80 to +200mm. Its ability to adjust the focal length makes it ideal for replacing focus adjustments and zoom systems that use multiple lenses. When shifting the focal length range, please use a plano-convex or plano-concave lens with a diameter of 12mm (with a thickness of less than 4.7mm) as an offset lens. For the product lineup of standard specifications, their specifications, and sales prices, please refer to the relevant product page on the official website of Edmund Optics Japan Co., Ltd. (accessible from the product homepage linked above). *You can download the catalog from Edmund Optics Japan that includes this product from the link below.

  • lens

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Air-cooled argon laser

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

This is an air-cooled argon (Ar) laser that features a user-friendly built-in power supply and a compact all-in-one body. Compared to other manufacturers' air-cooled Ar laser products at similar prices, it offers more than twice the relative output, providing sufficient power for most applications using Ar lasers. Additionally, it is lightweight compared to traditional Ar lasers, making it ideal for OEM applications. The adoption of an internal mirror-type laser tube eliminates the need to worry about mirror maintenance or alignment. With two forced air cooling fans and a unique dual-channel airflow design, it enables efficient heat dissipation of the laser tube while maintaining quiet operation. It also prevents contaminants in the air from entering the laser's power supply unit. The built-in beam shutter can be controlled with a spring-type switch. Remote operation of the laser can be achieved through the built-in interface port. *You can download the catalog from Edmund Optics Japan below.*

  • Laser Components

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Case study of micro-hole processing in LCP (liquid crystal polymer) using short pulse laser.

This is an introduction to examples of through-hole processing for LCP (liquid crystal polymer).

A through hole with a diameter of 0.15 mm was processed in LCP (liquid crystal polymer) with a thickness of 0.05 mm. Compared to conventional laser processing, we achieved fine processing with less thermal impact.

  • Other electronic parts

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High-Precision Micro-Multi-Hole Processing Case for PI (Polyimide)

We performed multi-hole processing in a staggered grid pattern on a 50μm thick PI (polyimide) with an entrance diameter of Φ17μm, an exit diameter of Φ6μm, and a pitch of 25μm.

Holes were processed in a staggered lattice pattern on a 50μm thick PI (polyimide) with an inlet diameter of Φ17μm, an outlet diameter of Φ6μm, and a pitch of 25μm.

  • Other electronic parts

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Micro fine trench!?

We performed groove processing on carbon steel with a groove width of 23μm and a depth of 130μm using a picosecond laser.

A deep groove machining with an aspect ratio of 5.6 times was performed on carbon steel using a ultrashort pulse laser.

  • Processing Contract

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Nano-periodic structure (LIPSS) processing on various materials

We have compiled a list of examples of nano-periodic structure (LIPSS) processing conducted with femtosecond lasers.

Using a femtosecond laser, we have created fine periodic structures at the nanometer scale. Please confirm that fine grooves have been formed on various metal surfaces such as SUS, Ni, and Ti.

  • Processing Contract
  • Other metal materials

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Realization of a lattice-like nano-periodic structure!?

A dot shape was processed on SUS430J1L with a size of approximately 300nm.

During the experiment on nano-periodic structure (LIPSS) processing using femtosecond lasers, a lattice-shaped LIPSS structure appeared instead of the previously introduced linear LIPSS shape!

  • stainless
  • Processing Contract

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3μm recess on the surface of borosilicate glass

We performed shallow engraving on the surface of a 150μm thick ultra-thin cover glass using a femtosecond laser.

On the WEB page, you can see that the edges of the recessed areas and the unprocessed areas, which were processed in circular and cross shapes, are cleanly finished without cracks or melting. Unlike conventional lasers, where light can pass through and processing cannot be achieved, or contact processing, where the workpiece may crack, this method avoids those issues.

  • Processing Contract
  • Glass
  • Surface treatment contract service

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Molecular Interactions Analysis Device (QCM) Single Queue - Q0500・Q5000

Measurable from a small amount of sample, injection-type QCM that does not require a pipette.

A compact QCM device with a new concept of a single-channel type. 【Features】 High-sensitivity measurement of interactions such as proteins, antibodies, and glycans. The Single Q0500 type (left) can measure even small amounts with high sensitivity, allowing for both automatic injection instructions via dedicated software and manual injection by pressing a switch on the device. The Single Q5000 type (right) is a conventional specification optimized for pipetting injections with a macro feel found in traditional QCM devices. Both models can be selected according to the intended use, including improvements to the reaction chamber for smaller volumes. Additionally, the dedicated software includes a "stability notification function" that alerts users with a pop-up and chime sound when the sensor stabilizes. 【Specifications】 - Measurement method: Quartz crystal oscillator - Oscillation frequency: 27MHz - Detectable weight range: 100pg/sensor - Sensitivity: 30pg/Hz - Set temperature range: 0.1 to 50℃ - Temperature error: ±0.5℃ (at room temperature 25℃) - Accessories: Quartz sensor chip, dedicated software ● For inquiries about materials and product details, please contact our sales department.

  • Weight related measuring instruments
  • Analytical Equipment and Devices

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Ultra-compact laser variable attenuator optimal for continuous variable laser output.

High damage threshold, newly introduced for broadband YAG lasers.

This is an ultra-compact laser variable attenuator that is optimal for continuously variable laser output. Additionally, there are types available for excimer lasers and electric (PC-controlled) types.

  • Optical Measuring Instruments

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Laser processing machine VLS series desktop type

An easy-to-use entry model that can be operated like a printer.

The VLS Desktop Laser Series is a laser processing machine designed for use in various situations. With an affordable initial price and low running costs, it is an ideal system for those using a laser processing machine for the first time. All models are equipped with a common driver, "Laser Interface+." Improvements in operability and additional features have been implemented. For more details, please contact us or refer to the catalog.

  • Resin processing machine
  • Rubber Processing Machine
  • Other processing machines

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Laser Processing Machine Industrial Series (ILS)

Universal flagship model designed for industrial applications.

The Industrial Series is designed for specialized applications such as industrial use. The expansive work area and removable panels accommodate long materials, while the interface with external systems allows for integration into production lines. The newly designed mechanism offers excellent usability and maintainability, ensuring smooth operation from installation to operation. All models are equipped with a common driver, "Laser Interface+," which delivers outstanding performance in terms of operability and functionality. For more details, please contact us or refer to the catalog.

  • Resin processing machine
  • Rubber Processing Machine
  • Other processing machines

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Low metalization service for organic materials

We will streamline research and development with low metalization process development services!

Nerd Research Institute offers low metalization services for customers who wish to explore low metalization options. When it comes to low metalization of organic materials, it is necessary to consider synthetic methods using metal-free containers and equipment, purification methods for the removal of metal elements, and analytical methods regarding the stability and reproducibility of analyses. Our company streamlines research and development with our low metalization process development services. 【Features of Our Contract Synthesis】 ■ No need for synthesis data; we can propose synthesis methods even for new compounds. ■ Researchers engage in direct dialogue to smoothly reflect your requests in planning and results. ■ We work together with customers to think of solutions for research challenges. *For more details, please download the PDF or feel free to contact us.

  • Processing Contract

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