Národní úložiště šedé literatury Nalezeno 2 záznamů.  Hledání trvalo 0.02 vteřin. 
High-Voltage Structures for Galvanic Isolation in Integrated Circuits
Ptáček, Karel ; Husák, Miroslav (oponent) ; Zemánek, Miroslav (oponent) ; Boušek, Jaroslav (vedoucí práce)
This Thesis introduces a novel lateral resonant coupling technique and discusses the design of an 800 V galvanically isolated translator which is subsequently utilized in the 800 V half bridge driver for industrial applications. The fabrication cost of this design is lesser in comparison with the currently widespread galvanically isolated translators. For applications that require a higher level of galvanic isolation, a follow-up development of the galvanically isolated translator is presented. This design utilizes a single galvanic isolator for communication in both, low-to-high and high-to-low, directions, which greatly reduces the area consumed by the isolator. As a part of the subsequent design, a galvanic isolator transmitting an analog value is introduced. The analog isolator has been tested in a real AC-DC converter application as a replacement of the standard opto-coupler. This design enables full integration of primary and secondary side controllers in a single package, thereby reducing the complexity and cost of the AC-DC converters.
High-Voltage Structures for Galvanic Isolation in Integrated Circuits
Ptáček, Karel ; Husák, Miroslav (oponent) ; Zemánek, Miroslav (oponent) ; Boušek, Jaroslav (vedoucí práce)
This Thesis introduces a novel lateral resonant coupling technique and discusses the design of an 800 V galvanically isolated translator which is subsequently utilized in the 800 V half bridge driver for industrial applications. The fabrication cost of this design is lesser in comparison with the currently widespread galvanically isolated translators. For applications that require a higher level of galvanic isolation, a follow-up development of the galvanically isolated translator is presented. This design utilizes a single galvanic isolator for communication in both, low-to-high and high-to-low, directions, which greatly reduces the area consumed by the isolator. As a part of the subsequent design, a galvanic isolator transmitting an analog value is introduced. The analog isolator has been tested in a real AC-DC converter application as a replacement of the standard opto-coupler. This design enables full integration of primary and secondary side controllers in a single package, thereby reducing the complexity and cost of the AC-DC converters.

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