…lasers, especially for those operating above 20 mW. Always ensure that any support on which the laser is mounted is not made of insulating material, and that the heat of the laser can be properly transferred. M-75 M-75R M-75P 6 PTL with Line Pattern: Follow Steps 1 to 3. Focusable PTL with Dot Pattern:…
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…lasers can micromachine on objects as small and delicate as a human hair. Medical Device & Diagnostic Industry R focused spot or project the image of a mask with very high spatial resolution. A mask is a transparent optic that has part of its aperture blocked with a pattern of opaque material. The laser…
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…laser pulse energy must be carefully controlled to avoid glass substrate damage due to the strong material removal capability. Nanosecond excimer lasers can provide even higher throughput if the line pattern density line is high enough to capitalize on mask imaging which ablates large area patterns…
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…the laser to ensure its proper functioning, and, more importantly, to ensure the safety of its users. Lasiris Green PowerLine lasers feature high quality glass optics, a rugged housing, and a thermoelectric cooler to maximize the laser's reliability. For insured longer lifetime, all diode lasers have…
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…did utilize lasers for the thin-film patterning process (the socalled P1, P2, and P3 steps) -- lasers being the de facto tooling immediately after the early R&D conducted within the United States and Japan during the 1980s and early 1990s. Figure 1 illustrates these three legacy laser applications.…
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…near field of the fiber tip, one can produce patterns with widths that are not limited by optical IN THIS ISSUE: Microspheres that form a regular lattice by self-organization on a transparent support can be used as microlens array for laser-induced patterning of material surfaces. By this technique, thousands…
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…Laser doping research began during the 1960s, with application to solar cells gaining prominence in the late `70s and early `80s, generating "spatially localized doping patterns" in "efficient Si solar cells by laser photochemical doping" demonstrated by Deutsch et al [9]. The broader use of lasers…
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…Laser doping research began during the 1960s, with application to solar cells gaining prominence in the late `70s and early `80s, generating "spatially localized doping patterns" in "efficient Si solar cells by laser photochemical doping" demonstrated by Deutsch et al [9]. The broader use of lasers…
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…UVmicrostructuring behavior, grating formation by excimer laser photoablation, as well as the behavior of the photonic band gap of periodically patterned waveguide structures are studied in detail. . see article on page 10 Creating Crystals Excimer Lasers Transform Amorphous Silicon Films into Crystal Silicon…
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