Detail publikačního výsledku

Noise spectroscopy of thick film electroluminescent lamp

GRMELA, L., TOMÁNEK, P., KOKTAVÝ, P., PAVELKA, J., ŠIKULA, J.

Originální název

Noise spectroscopy of thick film electroluminescent lamp

Anglický název

Noise spectroscopy of thick film electroluminescent lamp

Druh

Stať ve sborníku v databázi WoS či Scopus

Originální abstrakt

Fluctuation of current and light emission in electroluminiscent lamps based of zinc sulfide phosphor powder embedded in a dielectric layer are presented. Noise sources are emission of electron from localised levels in the gap, impact excitation and impact ionozation of luminiscence centers and radiative transition by hot carriers. Due to higt electric field, partial discharges are also sources of current fluctuations.

Anglický abstrakt

Fluctuation of current and light emission in electroluminiscent lamps based of zinc sulfide phosphor powder embedded in a dielectric layer are presented. Noise sources are emission of electron from localised levels in the gap, impact excitation and impact ionozation of luminiscence centers and radiative transition by hot carriers. Due to higt electric field, partial discharges are also sources of current fluctuations.

Klíčová slova

noise spectroscopy, electroluminescence, thick film, noise density, dielectric powder

Klíčová slova v angličtině

noise spectroscopy, electroluminescence, thick film, noise density, dielectric powder

Autoři

GRMELA, L., TOMÁNEK, P., KOKTAVÝ, P., PAVELKA, J., ŠIKULA, J.

Vydáno

13.09.2001

Nakladatel

Vysoké učení technické v Brně

Místo

Brno

ISBN

80-214-1960-1

Kniha

Electronics Devices and System

Strany od

44

Strany počet

1

BibTex

@inproceedings{BUT3849,
  author="Lubomír {Grmela} and Pavel {Tománek} and Pavel {Koktavý} and Jan {Pavelka} and Josef {Šikula}",
  title="Noise spectroscopy of thick film electroluminescent lamp",
  booktitle="Electronics Devices and System",
  year="2001",
  pages="1",
  publisher="Vysoké učení technické v Brně",
  address="Brno",
  isbn="80-214-1960-1"
}