首页> 外文期刊>Optik: Zeitschrift fur Licht- und Elektronenoptik: = Journal for Light-and Electronoptic >Current differencing transconductance amplifier (CDTA) with high transconductance and its application in filter and oscillator
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Current differencing transconductance amplifier (CDTA) with high transconductance and its application in filter and oscillator

机译:高跨导电流差动跨导放大器(CDTA)及其在滤波器和振荡器中的应用

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摘要

A new design of current differencing transconductance amplifier (CDTA) has been proposed. In the proposed design of CDTA, two techniques have been combined in order to achieve a high transconductance (gm) while the power dissipation and bandwidth of the proposed CDTA remains in the same range as in the existing CDTA. The first technique is positive feedback which has been used in the conventional PMOS active load of transconductance amplifier (TA) of CDTA. The second technique uses the 'N' MOSFETs in parallel in place of conventional differential pair of CDTA where 'N' is the number of MOSFET5. The proposed design has been simulated by using Mentor Graphics Eldo simulation tool with 0.1811m technology parameters. A resistorless sinusoidal oscillator has been proposed by using the new design of CDTA. The performance of proposed CDTA has also been verified by an existing KHN filter. (C) 2015 Elsevier GmbH. All rights reserved.
机译:提出了一种电流差跨导放大器(CDTA)的新设计。在建议的CDTA设计中,两种技术已经组合在一起,以实现高跨导(gm),而建议的CDTA的功耗和带宽却保持在与现有CDTA相同的范围内。第一种技术是正反馈,已在CDTA的跨导放大器(TA)的常规PMOS有源负载中使用。第二种技术是并联使用“ N”个MOSFET代替传统的CDTA差分对,其中“ N”是MOSFET5的数量。使用具有0.1811m技术参数的Mentor Graphics Eldo仿真工具对提出的设计进行了仿真。通过使用CDTA的新设计,已提出了无电阻正弦振荡器。建议的CDTA的性能也已通过现有的KHN滤波器进行了验证。 (C)2015 Elsevier GmbH。版权所有。

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