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  2. Depth of focus - Wikipedia

    en.wikipedia.org/wiki/Depth_of_focus

    The phrase depth of focus is sometimes erroneously used to refer to depth of field (DOF), which is the distance from the lens in acceptable focus, whereas the true meaning of depth of focus refers to the zone behind the lens wherein the film plane or sensor is placed to produce an in-focus image. Depth of field depends on the focus distance ...

  3. Immersion lithography - Wikipedia

    en.wikipedia.org/wiki/Immersion_lithography

    However, [clarification needed] the depth of focus, or tolerance in wafer topography flatness, is improved compared to the corresponding "dry" tool at the same resolution. [ 4 ] The idea for immersion lithography was patented in 1984 by Takanashi et al. [ 5 ] It was also proposed by Taiwanese engineer Burn J. Lin and realized in the 1980s. [ 6 ]

  4. Optical proximity correction - Wikipedia

    en.wikipedia.org/wiki/Optical_proximity_correction

    Good depth of focus requires diffracted light traveling at comparable angles with the optical axis, and this requires the appropriate illumination angle. [4] Assuming the correct illumination angle, OPC can direct more diffracted light along the right angles for a given pitch, but without the correct illumination angle, such angles will not ...

  5. Rudolph Enters Back-End Lithography Market with Breakthrough ...

    www.aol.com/news/2012-12-12-rudolph-enters-back...

    In addition to a comprehensive suite of inspection, metrology and software solutions, Rudolph now offers a complete lithography solution-with unique features no other lithography provider can offer.

  6. Photolithography - Wikipedia

    en.wikipedia.org/wiki/Photolithography

    Photolithography (also known as optical lithography) is a process used in the manufacturing of integrated circuits. It involves using light to transfer a pattern onto a substrate, typically a silicon wafer .

  7. Computational lithography - Wikipedia

    en.wikipedia.org/wiki/Computational_lithography

    Computational lithography came to the forefront of photolithography technologies in 2008 when the semiconductor industry faced challenges associated with the transition to a 22 nanometer CMOS microfabrication process and has become instrumental in further shrinking the design nodes and topology of semiconductor transistor manufacturing.

  8. PROLITH - Wikipedia

    en.wikipedia.org/wiki/PROLITH

    The first commercial version of the software, named PROLITH/2, was released in June of that year. PROLITH was made easier to use and it grew to include many more aspects of lithography simulation. FINLE Technologies was purchased in February 2000 by KLA-Tencor , which now markets PROLITH.

  9. Resolution enhancement technologies - Wikipedia

    en.wikipedia.org/wiki/Resolution_enhancement...

    Sub resolution assist features that improves the depth of focus of isolated features. Phase-shift Mask: Etching quartz from certain areas of the mask (alt-PSM) or replacing Chrome with phase shifting Molybdenum Silicide layer (attenuated embedded PSM) to improve CD control and increase resolution Double or Multiple Patterning