首页> 外文期刊>Circuits, systems and signal processing >± 0.5 V, 254 μW Second-Order Tunable Biquad Low-Pass Filter with 7.3 fJ FOM Using a Novel Low-Voltage Fully Balanced Current-Mode Circuit
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± 0.5 V, 254 μW Second-Order Tunable Biquad Low-Pass Filter with 7.3 fJ FOM Using a Novel Low-Voltage Fully Balanced Current-Mode Circuit

机译:±0.5 V,254μW二阶可调双辐射电滤波器,具有7.3 FJ FOM,使用新颖的低压全平衡电流模式电路

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摘要

A high-performance CMOS, fully balanced second-generation current conveyor (FBCCII) is proposed to exclusively use CCII circuits in integrated circuit applications. In the proposed circuit, a current folding technique is applied to a fully balanced version of transconductance amplifier. The proposed FBCCII consumes 84 mu W of power and has an open-loop gain of 47.83 dB with 62.9 degrees of phase margin. The simulated input referred noise is 155 nV/root Hz @ 1 KHz and has a unity gain bandwidth of 39.8 MHz. A common mode feedback (CMFB) circuit is also proposed to improve the dynamic range of the proposed FBCCII circuit by 50 % as compared to the circuit with-out CMFB. The CMFB consumes 170 mu W of power and has a bandwidth of 60 MHz. The proposed circuit is simulated using standard 180 nm CMOS process operating at +/- 0.5 V supply voltage. To verify the effectiveness of the approach, a fully differential variable gain amplifier with tunable gain from 0 to 30 dB is designed. Also, a bandpass filter with quality factor = 4 and bandwidth of 10 MHz is designed using the proposed FBCCII. A novel low-pass filter (LPF) using the proposed FBCCII is designed for bio-medical applications. The proposed LPF is a second-order filter with the cut-off frequency of 55 Hz and 121 nV/root Hz of input-referred noise. The LPF is designed at a supply voltage of +/- 0.5 V, and the spurious free dynamic range of proposed LPF is 85 dB. The figure of merit of the LPF is 7.3 fJ. The layout area of the proposed FBCCII design is 6889 mu m(2) (83 mu m x 83 mu m).
机译:高性能CMOS,充分平衡的第二代电流传送器(FBCCII)提出了只使用CCII电路在集成电路应用中。在所提出的电路,电流折叠技术被施加到跨导放大器的完全平衡的版本。所提出的FBCCII消耗84亩W的功率,并且具有47.83分贝与62.9度的相位裕度的开环增益。模拟的输入参考噪声是155纳伏/赫兹根@ 1kHz和具有39.8 MHz的单位增益带宽。共模反馈(CMFB)电路,还提出了50%相比,电路与出CMFB改善提出FBCCII电路的动态范围。所述CMFB消耗170亩瓦的功率,并且具有60MHz的带宽。所提出的电路是使用标准的180nm的CMOS仿真过程以+/- 0.5伏电源电压操作。为了验证这种方法的有效性,用从0到30dB的设计可调增益的全差分可变增益放大器。此外,对于品质因数= 4和10兆赫的带宽的带通滤波器被使用所提出的设计FBCCII。使用所提出的FBCCII一种新颖的低通滤波器(LPF)被设计用于生物医学应用。所提出的LPF是与切断55赫兹和121纳伏/根赫兹的频率的输入参考噪声的第二级滤波器。的LPF被设计为在+/- 0.5伏的电源电压,并提出了LPF的无寄生动态范围为85分贝。低通滤波器的性能指数是7.3 FJ。所提出的设计FBCCII的布局面积为6889微米(2)(83微米X 83微米)。

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