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  • Sapphire
    Sapphire is a high purity and high density, single crystalline form of aluminum oxide, which may contain chromia, titania, yttria, or other dopants. Sapphire is usually transparent or translucent. Sapphire ceramics are used in lasers, substrates, jewel bearings, watch crystals, or other specialized
  • Computer Power User Article - The Sapphire Radeon X800 GTO2 Mod
    unused pipelines and wring more performance from some X800 GTs. They were right, and we will show you how it is done. You can easily unlock the unused pixel pipelines on some X800 GT-based cards from PowerColor, Connect3D, and Sapphire by flashing the BIOS on the card. There are some things to watch
  • Nanogenerators Powered by Body Movement
    the tip lost contact with the wire, the strain released and the researchers measured the electrical current. The nanowire arrays were grown using standard vapor-liquid-solid processes in small tubes furnaces. Gold nanoparticles were deposited onto a sapphire substrate and place in one end
  • Semiconductor Micromachining Using Diode-Pumped Solid-State Lasers
    ) industries for aplications including wafer dicing, scribing, direct via forming, and three-dimensional structuring. In the current study, two Qswitched and one mode-locked diode-pumped solid-state (DPSS) 355 nm lasers have been used to scribe grooves on silicon and sapphire wafer substrates
  • ProFlux (R) in LCD Projectors
    and the dye-stuff polarizer, even. conventional polarizers is the reflection which is characteristic of. when backed with sapphire is destroyed. all wire-grid type polarizers. Because the Microwire™ film is on the surface of the substrate,. How does the ProFlux™polarizer perform in a. thermal stress birefringence
  • Optical Ceramics and Semiconductor Ceramics
    Optical ceramics and semiconductor ceramics are specialized ceramic materials. Ceramic materials are used in fabricating and processing optical components such as lenses, windows, prisms, optical fiber and lasing materials. Single-crystal ceramics, transparent ceramics, sapphire and quartz
  • Rapid Scanning Applications Drive Mirror Design (.pdf)
    regions of the spectrum below about 532 nm. Thermal conductivity of the substrate is also central to the problem of laser-induced damage from today 's Q-switched, continuous-wave (CW), and ultrafast Ti:sapphire and fiber lasers. At the high end of the power spectrum, it is safe to say
  • Thin-Film Sputtering Deposition Strain Sensors
    any material can be used as a substrate for the sensor including stainless steel, Inconel, Hastaloy, aluminium, sapphire, and titanium. The process begins by preparing the surface of the substrate with a diamond slurry to remove all surface pinholes and cracks. A dielectric layer is first deposited

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