New mixed-mode second-generation voltage conveyor based first-order all-pass filter

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Inst Engineering Technology-Iet

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info:eu-repo/semantics/closedAccess

Özet

A new plus-type second-generation voltage conveyor (VCII+) based first-order mixed-mode (MM) all-pass (AP) filter is proposed in this study. The proposed MM AP filter employs two VCII+s, three resistors and one grounded capacitor. It has low input and high output impedances for the current-mode selection while it has low input and low output impedances for the transimpedance-mode selection. The AP filter gain is unity for the current output while it is adjustable for the voltage output via a grounded resistor. However, a single passive component matching condition is needed for the proposed MM AP filter. Complete non-ideal analysis by taking into account all the parasitic resistors and non-ideal gains of the VCII+ is performed. The presented theory is verified through SPICE simulations by using supply voltage of +/- 0.9 V and 0.18 mu m Taiwan Semiconductor Manufacturing Company complementary metal oxide semiconductor technology parameters.

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capacitors, all-pass filters, resistors, CMOS integrated circuits, current conveyors, current-mode circuits, single passive component matching condition, MM AP filter, parasitic resistors, VCII plus, plus-type second-generation voltage conveyor, first-order mixed-mode all-pass filter, grounded capacitor, high output impedances, current-mode selection, low output impedances, transimpedance-mode selection, AP filter gain, grounded resistor, mixed-mode second-generation voltage conveyor, Taiwan Semiconductor Manufacturing Company complementary metal oxide semiconductor technology parameters, SPICE simulations, size 0, 18 mum

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Iet Circuits Devices & Systems

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14

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6

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Onay

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