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Differential Difference Current Conveyor Using Bulk-Driven Technique for Ultra-Low-Voltage Applications

机译:采用批量驱动技术的差压电流传送器,用于超低压应用

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摘要

Nowadays the necessity of having low-voltage operation and low-power consumption is essential for electronic devices, particularly for portable electronics. Therefore, this paper presents a new ultra-low-voltage CMOS topology for a differential difference current conveyor (DDCC) based on the bulk-driven (BD) principle. Due to the use of the BD technique, the proposed circuit is capable of working with a low supply voltage of ±0.3 V and consumes about 18.6 μW with a wide input common-mode range. The proposed BD-DDCC is suitable for ultra-low-voltage low-power applications. As application examples, a voltage-mode multifunction biquadratic filter based on two BD-DDCCs and four grounded passive elements, and a fourth-order band-pass filter are presented. All passive elements of both applications are grounded, which is advantageous for monolithic integration. Also, the input voltage signals are applied directly to the high input impedance terminals, which is a desirable feature for voltage-mode operation. The simulations were performed with PSPICE using the TSMC 0.18 μm n-well CMOS technology to prove the functionality and attractive results of the proposed circuit.
机译:如今,低压运行和低功耗的必要性对于电子设备,尤其是便携式电子设备至关重要。因此,本文基于体驱动(BD)原理提出了一种新的超低压CMOS拓扑,用于差分差分电流传输器(DDCC)。由于使用了BD技术,因此所提出的电路能够以±0.3 V的低电源电压工作,并在宽输入共模范围内消耗约18.6μW的功率。提议的BD-DDCC适用于超低压低功耗应用。作为应用示例,提出了一种基于两个BD-DDCC和四个接地无源元件的电压模式多功能双二次滤波器,以及一个四阶带通滤波器。两种应用的所有无源元件都接地,这有利于单片集成。同样,输入电压信号直接施加到高输入阻抗端子,这是电压模式操作的理想功能。使用TSMC 0.18μmn阱CMOS技术在PSPICE上进行了仿真,以证明所提出电路的功能和有吸引力的结果。

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