We processed a QR code onto a thin aluminum foil 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】 Aluminum foil, thickness: 11μm 【Dimensions】 Processing size: 3mm x 3mm square range 【Processing】 Ultrashort pulse laser processing 【Features】 This product has a QR code laser-processed onto an aluminum foil film. Please try scanning it! Our fine laser processing minimizes thermal impact on thin materials with a thickness of 11μm, allowing for clean processing. Due to the significantly reduced physical damage and thermal effects, we achieved fine processing with minimal burrs.
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◆Precision machining of difficult-to-cut materials and complex shapes ◆Automotive parts, medical device parts, electronic components, semiconductor parts ◆Prototype and development projects Leave it to us. We handle everything from processing to equipment setup. We have launched our satellite site "Ultra Short Pulse Laser.com". ■ Hikari Machinery Manufacturing Co., Ltd. Address: 8-1 Ichishinda Nakano, Tsu City, Mie Prefecture 514-0112 Tel: 059-227-5511 Fax: 059-227-5514 E-mail: info@hikarikikai.co.jp Website: https://www.hikarikikai.co.jp/ Satellite site: https://tyotannpulselaser.com/ ■ HIKARI LASER LAB. Address: Room 511, Higashi-Kashiwa Techno Plaza, 5-4-6 Kashiwa-no-ha, Kashiwa City, Chiba Prefecture 277-0882 Tel: 0471-70-4866 Fax: 04-7170-4866 Related URL: https://tyotannpulselaser.com/
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Automotive-related industry Medical devices and medical components-related industry Precision stainless steel parts for medical devices
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At "HIKARI LASER LAB.", we offer services for precision processing using ultrashort pulse lasers, including "contract processing," "development agency," and "marking." Precision processing and surface modification/internal marking using picosecond and femtosecond lasers are utilized in various industrial equipment across sectors such as the medical industry, automotive industry, and semiconductor industry. Recently, surface modification has been required not only for shape processing like micro-hole drilling, cutting, trimming, and groove processing but also for functional enhancements such as water repellency, release properties, friction reduction, and improved sliding properties. Additionally, there is demand for marking inside glass from the medical industry. Laser processing is possible on transparent materials like glass and diamonds, difficult-to-cut materials like titanium, and various materials including resin, CFRP, ceramics, and polyimide. Regarding surface modification, we have received requests to improve the release properties of molds. We will continue to "challenge" ourselves in precision processing and surface modification using ultrashort pulse lasers to meet our customers' needs!