Essays about: "MOS devices"

Showing result 1 - 5 of 16 essays containing the words MOS devices.

  1. 1. Investigating Users' Quality of Experience in Mobile Cloud Games

    University essay from Luleå tekniska universitet/Institutionen för system- och rymdteknik

    Author : Markus Blomqvist; [2023]
    Keywords : Quality of Experience; Mobile Cloud Games; RTT; Delays; Packet Loss; Random Jitter; Bursty Jitter; Data Packets; Experiment;

    Abstract : Mobile cloud gaming (MCG) is an emerging concept which aims to deliver video games on-demand to users with the use of cloud technologies. Cloud technology allows the offloading of computation from a less powerful user device or thin client to more robust cloud servers to minimize power consumption and provide additional cloud services such as storage. READ MORE

  2. 2. Laminated HZO on InAs: A study of as-deposited ferroelectricity

    University essay from Lunds universitet/Institutionen för elektro- och informationsteknik

    Author : André Andersen; [2022]
    Keywords : Ferroelectricity; HZO; InAs; III V; As-deposited ferroelectricity; BEOL; Nanoelectronics; Nanoprocessing; Nanotechnology; ALD; MOSCAP; Memory Technology; Technology and Engineering;

    Abstract : As the limits of transistor feature size scaling is reaching its saturation, new innovations are needed to prevent performance loss. High performance transistors on the III/V semiconductor platform implemented with ferroelectric oxides might in the future satisfy this demand. READ MORE

  3. 3. Gate oxide characterization of 4H-SiC MOS capacitors : A study of the effects of electrical stress on the flat-band voltage of n-type substrate 4H-SiC MOS capacitors

    University essay from KTH/Skolan för elektroteknik och datavetenskap (EECS)

    Author : Sotirios Maslougkas; [2021]
    Keywords : Silicon carbide; Gate oxide; Oxide characterization; MOS devices; Semiconductor- insulator interface; Kiselkarbid; Gate-oxid; Oxidkarakterisering; MOS-teknologi; halvledar-isolatorgränssnitt;

    Abstract : Silicon is the main material used in electronics. The evolution of power electronics and the need for more power efficient semiconductor devices led silicon to its limits. Silicon carbide is a promising material for electronic applications with a wide band-gap, high critical electric field, high thermal conductivity and saturation velocity. READ MORE

  4. 4. Fabrication and Characterization of 4H-SiC MOS Capacitors with Different Dielectric Layer Treatments

    University essay from Linköpings universitet/Halvledarmaterial

    Author : Otkur Wutikuer; [2018]
    Keywords : 4H-SiC; MOS capacitor; Dielectric layer; PECVD; C-V measurement; Interface states.;

    Abstract : 4H-SiC based Metal-Oxide Semiconductor(MOS) capacitors are promising key components for next generation power devices. For high frequency power applications, however, there is a major drawback of this type of devices, i.e. READ MORE

  5. 5. Surface energy modification of metal oxide to enhance electron injection in light-emitting devices : charge balance in hybrid OLEDs and OLETs

    University essay from Högskolan i Gävle/Avdelningen för elektronik, matematik och naturvetenskap

    Author : Sergio Apicella Fernandez; [2017]
    Keywords : organic; inorganic; semiconductors; OLEDs; OLETs; TFT; stack; thin-film; deposition; spin-coating; thermal; evaporation; process; reactive; sputtering; luminescence; EQE; PEIE; metal-oxide; ZnO; ZnO:N; MoO3; F8BT; Alq3; NPB;

    Abstract : Organic semiconductors (OSCs) present an electron mobility lower by several orders of magnitude than the hole mobility, giving rise to an electron-hole charge imbalance in organic devices such as organic light-emitting diodes (OLEDs) and organic light-emitting transistors (OLETs). In this thesis project, I tried to achieve an efficient electron transport and injection properties in opto-electronic devices, using inorganic n-type metal oxides (MOs) instead of organic n-type materials and a polyethyleneimine ethoxylated (PEIE) thin layer as electron transport (ETLs) and injection layers (EILs), respectively. READ MORE