CURRENT MODE LOGIC CIRCUIT

A current mode logic circuit according to one embodiment may comprise: a first trim resistor and a second trim resistor connected to a supply voltage; a first transistor connected to an input voltage; a second transistor connected to an inverted input voltage; and a third transistor and a fourth tra...

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Bibliographische Detailangaben
1. Verfasser: HAN, Jae Duk
Format: Patent
Sprache:eng ; fre ; kor
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Zusammenfassung:A current mode logic circuit according to one embodiment may comprise: a first trim resistor and a second trim resistor connected to a supply voltage; a first transistor connected to an input voltage; a second transistor connected to an inverted input voltage; and a third transistor and a fourth transistor respectively cascode-connected to the first transistor and the second transistor in order to control the magnitudes of the output voltage and the inverted output voltage of the current mode logic circuit. Un circuit logique en mode courant selon un mode de réalisation peut comprendre : une première résistance d'ajustement et une seconde résistance d'ajustement connectées à une tension d'alimentation; un premier transistor connecté à une tension d'entrée; un deuxième transistor connecté à une tension d'entrée inversée; et un troisième transistor et un quatrième transistor respectivement en montage cascode sur le premier et le deuxième transistor afin de commander les amplitudes de la tension de sortie et de la tension de sortie inversée du circuit logique en mode courant. 일 실시예에 따른 전류 모드 로직 회로는 공급 전압과 연결되는 제1트림 저항 및 제2트림 저항, 입력 전압과 연결되는 제1트랜지스터, 반전 입력 전압과 연결되는 제2트랜지스터 및 상기 전류 모드 로직 회로의 출력 전압과 반전 출력 전압의 크기를 제어하기 위해 상기 제1트랜지스터 및 제2트랜지스터와 각각 캐스코드(Cascode) 방식으로 접속된 제3트랜지스터 및 제4트랜지스터를 포함할 수 있다.