Best results in : Research Potential Pokaż wszystkie wyniki (3)
Search results for: GFET
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Katedra Metrologii i Systemów Informacyjnych
Research Potential* Diagnostyka silników elektrycznych i magnesów nadprzewodzących * Metody pomiaru impedancji zwarciowej * Zastosowania modulowanych częstotliwościowo sygnałów impulsowych * Pomiary dla diagnostyki medycznej * Ocena niepewności pomiaru * Zastosowanie grafenu do wykrywania elektronicznego
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Katedra Energoelektroniki i Maszyn Elektrycznych
Research Potential* Modelowania, projektowania i symulacji przekształtników energoelektronicznych * Sterowania i diagnostyki przekształtników energoelektronicznych * Kompatybilności elektromagnetycznej przekształtników i regulowanych napędów elektrycznych * Jakości energii elektrycznej * Modelowania, projektowania i diagnostyki maszyn elektrycznych i transformatorów * Projektowania czujników i silników piezoelektrycznych * Technik CAD i CAE dla...
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Zespół Metrologii i Optoelektroniki
Research Potential* komputerowo wspomagana metrologia i diagnostyka * projektowanie systemów * mikrosystemów i makrosystemów elektronicznych * testowanie i diagnostyka elektroniczna * pomiary właściwości szumowych i zakłóceń * spektroskopia impedancyjna * telemetria i telediagnostyka internetowa * katedra redaguje Metrology and Measurement Systems * kwartalnik PAN znajdujący się na liście JCR
Other results Pokaż wszystkie wyniki (9)
Search results for: GFET
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Electrical characteristics simulation of top-gated graphene field-effect transistor (GFET) with 10 μm x 10 μm graphene channel
Open Research DataThe presented data set is part of the research on graphene field-effect transistor (GFET) modelling. The calculations were performed with the use of GFET Tool program (https://nanohub.org/resources/gfettool DOI: 10.4231/D3QF8JK5T), which enabled simulation of the drain current (Id) vs. drain voltage (Vd) characteristics for different gate voltages (Vg)...
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Electrical characteristics simulation of top-gated graphene field-effect transistor (GFET) with 10 μm x 3 μm graphene channel
Open Research DataThe presented data set is part of the research on graphene field-effect transistor (GFET) modelling. The calculations were performed with the use of GFET Tool program (https://nanohub.org/resources/gfettool DOI: 10.4231/D3QF8JK5T), which enabled simulation of the drain current (Id) vs. drain voltage (Vd) characteristics for different gate voltages (Vg)...
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RECENT ADVANCES IN GRAPHENE APPLICATION FOR ELECTRONIC SENSING
PublicationThe great interest in graphene is caused by its potential for constructing various sensors exhibiting excellent parameters. The high carrier mobility and the unique band structure of graphene makes it promising especially in the field-effect transistors (GFET) applications. In this article, recent advances of the selected graphene-based sensor applications were presented and the possible directions for further investigations were...
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The behavioural model of graphene field-effect transistor
PublicationThe behavioural model of a graphene field-effect transistor (GFET) is proposed. In this approach the GFET element is treated as a “black box” with only external terminals available and without considering the physical phenomena directly. The presented circuit model was constructed to reflect steady-states characteristics taking also into account GFET capacitances. The authors’ model is defined by a relatively small number of equations...
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Modelling of Graphene Field-Effect Transistor for lectronic sensing applications
PublicationA top-gated Graphene Field-Effect Transistor (GFET) suitable for electronic sensing applications was modelled. The applied simulation method reproduces correctly the output transfer GFET characteristics and allows to investigate doping effect caused by different physical, chemical or biological factors. The appearance of additional charge in the system results in the shift of the current-voltage characteristic. This feature could...