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[Laser Trivia] The Beginning of Lasers - Types of Lasers

The origin of the laser was invented by that "great inventor."

**The Beginning of Lasers** The research paper titled "Study of Induced Emission," conducted by Nobel Prize-winning physicist Einstein in the mid-1920s, is the origin of all lasers, including modern laser processing machines. In 1954, he invented and developed the "hydrogen maser," a device that emits microwaves, a type of radio wave, in a linear and powerful manner (a microwave amplification device using induced emission). In 1960, ruby crystals (the medium) were developed, leading to the successful development of a laser oscillator that emits light powerfully. The name "laser" is said to derive from "Light Amplification by Stimulated Emission of Radiation." *For more details, please refer to external links or feel free to contact us. You can also view our company brochure through the PDF download.*

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Microfabrication Company Logo Ultra-short Pulse Laser Thin Film Material

Marking on aluminum thin films using ultra-short pulse lasers.

【Microfabrication Company Logo Mark Ultra-Short Pulse Laser Thin Film Material】 【Material】 Aluminum foil Thickness: 11μm 【Industry and Applications】 Automotive industry Medical devices and medical parts industry Semiconductors and electronic components 【Material Dimensions】 Processing size: 3mm x 3mm square range 【Processing】 Ultra-short pulse laser processing 【Features】 This product features a company logo mark laser-processed onto aluminum thin film material. Due to its thickness of 11μm, it is less susceptible to thermal effects, allowing for clean processing.

  • Nursing care products

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We processed holes in SUS pipes using fine laser machining!

Fine holes were processed into SUS304 pipes using fine laser machining.

【Industry and Application】 Automotive-related industry Medical devices and medical parts-related industry Precision stainless steel parts for medical devices 【Material】 SUS304 (sus304) 【Dimensions】 Pipe outer diameter Φ1.5mm / Single wall through hole diameter Φ0.5mm 【Processing】 Ultrashort pulse laser processing 【Features】 This product has undergone hole processing on a pipe shape made of SUS304 (sus304) material. Our fine laser processing allows for machining not only on flat plates but also on cylindrical shapes like pipes. Since this product uses ultrashort pulse laser technology, physical damage and thermal effects are minimized, enabling fine processing with minimal burrs.

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Attention customers using flat cutting machines such as lasers, plasma, and gas!

Easily print product labels from SheetPartner! Print the information registered for parts along with the part drawings on dedicated labels!

"SheetPartner" reflects the opinions of our users. If you are a customer struggling with time and effort while using your CAD/CAM, and you think, "It would be great if there was a feature like this...", please feel free to consult us. [Requests] - After cutting parts with a processing machine, I write the part names by hand. I want to print labels with necessary information such as part drawings, client names, materials, and thicknesses as product tickets from the CAD/CAM that holds the part information. - I am having trouble because regular stickers are difficult to remove. ⇒ Solved with 2D CAD/CAM "SheetPartner"! [Response] - Easily print part information registered in SheetPartner onto product labels! - You can freely select the necessary part information along with the part drawings. - We offer multiple formats to match the size of the labels. [Results] - Print easily on your desk without taking up space! Achieve time savings. - Using specialized labels with weak adhesion, they are easy to remove and do not remain on the product. *For more details, please download the PDF or feel free to contact us.

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  • Steel construction

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Laser microfabrication, glass marking, application in the medical industry.

Laser microfabrication: Marking processing on glass surfaces

【Laser Microprocessing Glass Marking Applied to the Medical Industry】 【Material】 Glass 【Industry and Applications】 Medical device and medical component-related industries 【Processing】 Ultrafast pulse laser processing 【Features】 This product performs fine marking on the glass surface with a Φ0.1mm spot using an ultrafast pulse laser. (Compliant with SEMI format) Since this product uses an ultrafast pulse laser, physical damage and thermal effects are significantly minimized, allowing for fine processing with minimal burrs. ◆ Fine processing of difficult-to-cut materials and complex shapes ◆ Automotive parts, medical device components, electronic components, semiconductor parts ◆ Prototype and development projects We take care of everything from processing to equipment setup. Hikari Machinery Manufacturing Co., Ltd. ■ HIKARI LASER LAB. 511 Room, Higashikashi Techno Plaza, 5-4-6 Kashiwanoha, Kashiwa City, Chiba Prefecture, 277-0882 Tel. 0471-70-4866 Fax. 0471-70-4866 E-mail: info@hikarikikai.co.jp HP: https://www.hikarikikai.co.jp/

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【微細切り抜き加工 SUS304 受託加工 ステンレス微細加工】

微細な切り抜き加工が実現

【材質・加工】 SUS304 厚み:0.05mm 切幅:0.1mm 切り抜き加工 【特徴】 こちらの製品は、超短パルスレーザーにて薄膜材の微細形状加工をおこないました。部品の小型化・積層型への搭載製品へ加工する事が期待されています。

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