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Lecture
Sputtering in CMi
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Related lectures (32)
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Sputtering: Film Growth and Control Parameters
Covers the sputtering process, parameters influencing film quality, and advantages over thermal evaporation.
Thin Film Growth: Atoms Arrival and Adhesion
Delves into thin film growth, adhesion, crystal structure, and stresses.
Thin-Film Processing: Deposition Techniques
Explores thin-film processing techniques, focusing on chemical vapor deposition advantages, growth modes, ALD, plasma role, and discharge initiation.
Lithography: Microfabrication Technologies
Explores lithography in microfabrication technologies, covering thin film deposition, print resolution, process flow, and limitations imposed by diffraction.
Chemical Vapor Deposition: Oxide Formation and ALD
Explores CVD processes for oxide formation and ALD in micro and nanofabrication.
Thin Film Growth: Mechanisms and Applications
Explores thin film growth mechanisms, organic thin film considerations, deposition techniques, and patterning for electronic devices.
Stress in Thin Films: Film Growth and Microfabrication
Examines stress in thin films, including uniform distribution and intrinsic factors, within the context of microfabrication.
Thin-Film Processing: Removal and Deposition
Explores thin-film removal and deposition techniques in CMOS technology, covering wet etching, dry etching, chemical mechanical polishing, and thin-film deposition methods.
Sputtering: Ion Target Interactions
Examines ion-target interactions in PVD sputtering processes, covering compound deposition, surface damage, and factors influencing target ejection rates.
Transparent Conductive Oxide: Sputtering
Explores sputtering principles for transparent conductive oxide in solar cells and the use of piezoelectric materials for sensors and filters.