2016•Unpublished venueRequires access

Voltage mode first order all pass filter design using differential difference current conveyor

Rupam Das, Sajal K. Paul

Open publisher page 6 citations

Abstract

This paper presents a voltage mode first order all pass filter using one differential difference current conveyor (DDCC) as active element and resistor and capacitor one each as passive elements. The proposed circuit realizes first-order all-pass functions without any component matching constraints. Hence phase shifted signal over whole range of 180° to -180° may be obtained simultaneously. A new sinusoidal oscillator circuit is designed with the DDCC based all pass filter. The proposed circuit performance is tested using PSPICE software simulation with the 0.5 μm MIETEC CMOS model parameters. Non-ideal analysis is also performed.

About this research paper

What this paper is about

This paper presents a voltage mode first order all pass filter using one differential difference current conveyor (DDCC) as active element and resistor and capacitor one each as passive elements. The proposed circuit realizes first-order all-pass functions without any component matching constraints. Hence phase shifted signal over whole range of 180° to -180° may be obtained simultaneously. A new sinusoidal oscillator circuit is designed with the DDCC based all pass filter. The proposed circuit performance is tested using PSPICE software simulation with the 0.5 μm MIETEC CMOS model parameters. Non-ideal analysis is also performed.

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OpenAlex reports 6 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

This paper presents a voltage mode first order all pass filter using one differential difference current conveyor (DDCC) as active element and resistor and capacitor one each as passive elements. The proposed circuit realizes first-order all-pass functions without any component matching constraints. Hence phase shifted signal over whole range of 180° to -180° may be obtained simultaneously. A new sinusoidal oscillator circuit is designed with the DDCC based all pass filter. The proposed circuit performance is tested using PSPICE software simulation with the 0.5 μm MIETEC CMOS model parameters. Non-ideal analysis is also performed.

Key concepts: Current conveyor, Resistor, Low-pass filter, Filter (signal processing), Electronic engineering, All-pass filter, Active filter, Computer science

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