Abstract

The design of transconductance-mode multifunction biquad filter containing three input voltage nodes and single-output current node is proposed. Its circuit principle is emphasized on employing Voltage Differencing Current Conveyor (VDCC) to be an active building block. The proposed filter description uses three VDCCs co-working with two grounded capacitors and three grounded resistors. The synthesis of the proposed multifunction filter is based on avoidance of using multiple-output active elements to achieve commercially available integrated circuits for practical implementation. Additionally, without multiple-output active element, it can alleviate current tracking error from the current mirrors used in output ports. It also decreases the amounts of the transistors inside the active elements. The proposed multifunction filter offers all 5 filter functions, which are non-inverting Low-Pass (LP), non-inverting High-Pass (HP), non-inverting Band-Pass (BP), non-inverting Band-Reject (BR) and also non-inverting All-Pass (AP) functions from same circuit topology under different circuit condition for input signals. Furthermore, the natural frequency for all filtering responses is independently achieved from the bandwidth or the quality factor of the proposed filter. For cascade-able connectivity, the output current port indeed provides a high impedance. In addition, the magnitude of the output current for all filtering functions can be resistively adjusted. The consideration for non-ideal case of the presented multifunction filter is also analyzed. The simulation and experimental results of the presented transconductance multifunction biquad filter based on VDCC practically implemented by the commercially available ICs, LM13700 and AD844 can validate the theoretical anticipation.

Highlights

  • Analog active filters are essential parts for analog signal processing systems, they are widely employed in many applications, such as communications, audio systems, instrumentation and measurement system, control systems, mobile telecommunication systems [1]

  • To evaluate and prove several functionalities of the presented transconductance-mode versatile filter with electronic controllability, we provide both program simulation and experimental procedures

  • The transconductance-mode multifunction second order filter with high input voltage nodes and high output current node has been introduced in this contribution

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Summary

Introduction

Analog active filters are essential parts for analog signal processing systems, they are widely employed in many applications, such as communications, audio systems, instrumentation and measurement system, control systems, mobile telecommunication systems [1]. A 1 input 4 output voltage-mode filter proposed in [28] consisting of 1 VDCC, 2 resistors and 2 capacitors, its natural frequency and the quality factor of are tuned with electronic method, where the quality factor is adjusted without disturbing the natural frequency. This voltage-mode filter, does not provide low impedance architecture. The 3 input 1 output current-mode filters composed of 1 VDCC, 1 grounded resistor and 2 grounded capacitors were introduced in [30] and [31] They offer 5 filter responses while the natural frequency and quality factor are electronically adjustable.

Active Building Block Used in This Design
Simulation and Experimental Results
Conclusion
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