National Repository of Grey Literature 4 records found  Search took 0.00 seconds. 
Band Gap - accurate voltage reference
Bubla, Jiří ; Petržela, Jiří (referee) ; Kolka, Zdeněk (advisor)
This diploma thesis is specialized on a design of a high accuracy voltage reference Bandgap. A very low temperature coefficient and output voltage approx. 1,205V are the main features of this circuit. The paper contains a derivation of the Bandgap principle, examples of realizations of the circuits and methods of compensation temperature dependence and manufacture process, design of Brokaw and Gilbert reference, design of a testchip and measurement results.
Design of voltage reference circuit in ONSemi I3T technology
Pěček, Lukáš ; Prokop, Roman (referee) ; Kledrowetz, Vilém (advisor)
Voltage references form an essential part of most integrated circuits. The aim of this thesis is to describe their principle and design complete circuit including layout in ONSemi I3T technology. Bandgap voltage reference with 1,25 V out-put and with preregulator was designed. Five-bit trimming circuit was used to increase accuracy.
Design of voltage reference circuit in ONSemi I3T technology
Pěček, Lukáš ; Prokop, Roman (referee) ; Kledrowetz, Vilém (advisor)
Voltage references form an essential part of most integrated circuits. The aim of this thesis is to describe their principle and design complete circuit including layout in ONSemi I3T technology. Bandgap voltage reference with 1,25 V out-put and with preregulator was designed. Five-bit trimming circuit was used to increase accuracy.
Band Gap - accurate voltage reference
Bubla, Jiří ; Petržela, Jiří (referee) ; Kolka, Zdeněk (advisor)
This diploma thesis is specialized on a design of a high accuracy voltage reference Bandgap. A very low temperature coefficient and output voltage approx. 1,205V are the main features of this circuit. The paper contains a derivation of the Bandgap principle, examples of realizations of the circuits and methods of compensation temperature dependence and manufacture process, design of Brokaw and Gilbert reference, design of a testchip and measurement results.

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