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System on Chip (SoC) and System in Package (SiP) are two electronic technologies that involve integrating multiple functionalities onto a single platform. When the platform is a single wafer, as in SOC, it requires the ability to deposit various materials that enable the different functions on to an underlying substrate that can host the electronic circuitry. Transition metal oxides which have a wide range of properties are ideal candidates for the functional material. These oxides need to be deposited on Si in certain crystallographic orientations. Thus, during growth of the functional oxide,…mehr

Produktbeschreibung
System on Chip (SoC) and System in Package (SiP) are two electronic technologies that involve integrating multiple functionalities onto a single platform. When the platform is a single wafer, as in SOC, it requires the ability to deposit various materials that enable the different functions on to an underlying substrate that can host the electronic circuitry. Transition metal oxides which have a wide range of properties are ideal candidates for the functional material. These oxides need to be deposited on Si in certain crystallographic orientations. Thus, during growth of the functional oxide, an ambience in which the Si itself will not oxidize needs to be provided. In addition, during thin film growth on either Si or SiOx surface stresses are generated from various sources. Stress and its relaxation are also associated with the formation and evolution of defects. Both, stress and defects need to be managed in order to harness their beneficial effects and prevent detrimental ones.
Autorenporträt
Dr. K. V. L. V. Narayanachari obtained his PhD from India's prestigious Indian Institute of Science. He is currently working as a post-doctoral fellow at Purdue university, USA. His research interest includes functional oxides on silicon for system-on-chip applications, high-k dielectrics and stress in metal-oxide thin films.