首页> 外文期刊>Optik: Zeitschrift fur Licht- und Elektronenoptik: = Journal for Light-and Electronoptic >Performance enhancement of current differencing transconductance amplifier (CDTA) by using a new approach of gm boosting and its application
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Performance enhancement of current differencing transconductance amplifier (CDTA) by using a new approach of gm boosting and its application

机译:利用GM升压的新方法提高电流差动跨导放大器(CDTA)的性能及其应用

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The transconductance of current differencing transconductance amplifier (CDTA) has been enhanced by combining the two methods. The first method is reported recently in Rai and Gupta (2015) while the second method is a novel one. These methods can also be merged together to enhance the transconductance of other analog building blocks (ABBs). In the first method, MOSFETs used in the differential pair of transconductance amplifier (TA) has been replaced by the networks N1 and N2 which contains the 'n' symmetrical MOSFETs in parallel; where n is the number of MOSFETs. Thus, the voltage which was applied earlier to the differential pairs has now been applied to these networks (NI and N2) which inject equal currents in all the MOSFETs used. The total current (IT) coming out of the networks (N1 and N2) will be the sum of currents drawn by all the MOSFETs used in these networks. In the second method, the total current (IT) copied by various current mirrors are added at the output node (X+ and X-) of CDTA in order to enhance the transconductance effectively. The advantage of this method is that the transconductance has been boosted while the power dissipation of CDTA remains unaffected for a particular biasing current. (C) 2016 Elsevier GmbH. All rights reserved.
机译:通过结合两种方法,电流差动跨导放大器(CDTA)的跨导得到了增强。 Rai和Gupta(2015)最近报道了第一种方法,而第二种方法是一种新颖的方法。这些方法也可以合并在一起以增强其他模拟构件(ABB)的跨导。在第一种方法中,用于跨导放大器(TA)的差分对中的MOSFET已由网络N1和N2取代,其中包含并联的“ n”个对称MOSFET;其中n是MOSFET的数量。因此,先前施加到差分对的电压现在已经施加到这些网络(N1和N2),这些网络在所有所用的MOSFET中注入相等的电流。来自网络(N1和N2)的总电流(IT)将是这些网络中使用的所有MOSFET汲取的电流之和。在第二种方法中,将各种电流镜复制的总电流(IT)添加到CDTA的输出节点(X +和X-)处,以有效地增强跨导。这种方法的优点是跨导已经提高,而CDTA的功耗对于特定的偏置电流却不受影响。 (C)2016 Elsevier GmbH。版权所有。

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