Handbook of VLSI Microlithography, 2nd Edition

Download or Read eBook Handbook of VLSI Microlithography, 2nd Edition PDF written by John N. Helbert and published by Cambridge University Press. This book was released on 2001-04 with total page 1026 pages. Available in PDF, EPUB and Kindle.
Handbook of VLSI Microlithography, 2nd Edition
Author :
Publisher : Cambridge University Press
Total Pages : 1026
Release :
ISBN-10 : 9780080946801
ISBN-13 : 0080946801
Rating : 4/5 (01 Downloads)

Book Synopsis Handbook of VLSI Microlithography, 2nd Edition by : John N. Helbert

Book excerpt: This handbook gives readers a close look at the entire technology of printing very high resolution and high density integrated circuit (IC) patterns into thin resist process transfer coatingsùincluding optical lithography, electron beam, ion beam, and x-ray lithography. The book's main theme is the special printing process needed to achieve volume high density IC chip production, especially in the Dynamic Random Access Memory (DRAM) industry. The book leads off with a comparison of various lithography methods, covering the three major patterning parameters of line/space, resolution, line edge and pattern feature dimension control. The book's explanation of resist and resist process equipment technology may well be the first practical description of the relationship between the resist process and equipment parameters. The basics of resist technology are completely coveredùincluding an entire chapter on resist process defectivity and the potential yield limiting effect on device production. Each alternative lithographic technique and testing method is considered and evaluated: basic metrology including optical, scanning-electron-microscope (SEM) techniques and electrical test devices, along with explanations of actual printing tools and their design, construction and performance. The editor devotes an entire chapter to today's sophisticated, complex electron-beam printers, and to the emerging x-ray printing technology now used in high-density CMOS devices. Energetic ion particle printing is a controllable, steerable technology that does not rely on resist, and occupies a final section of the handbook.


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