In this work, we present a novel single differential difference current conveyor (DDCC) and single voltage differencing inverting buffer amplifier (VDIBA) block-based dual-mode high-frequency memristor emulator circuit (MREC). Along with DDCC and VDIBA blocks, the designed MREC also uses one grounded capacitor and one resistor. It works in both decremental and incremental modes. The proposed memristor is analog multiplier less. The Cadence Virtuoso software with a 180 nm CMOS library was used to validate and test the performance of the proposed MREC. The proposed design requires ±0.9 V DC power supply, with a power consumption of 754 µW. The proposed MREC works in the MHz range and the maximum working frequency is 25 MHz. To assess the flexibility of the proposed MREC during circuit employment, two memristors were connected in parallel and performance was compared with a single memristor.

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A Dual-Mode High-Frequency Grounded Memristor Emulator Circuit

  • Pankaj Kumar Sharma,
  • Rajeev Kumar Ranjan

摘要

In this work, we present a novel single differential difference current conveyor (DDCC) and single voltage differencing inverting buffer amplifier (VDIBA) block-based dual-mode high-frequency memristor emulator circuit (MREC). Along with DDCC and VDIBA blocks, the designed MREC also uses one grounded capacitor and one resistor. It works in both decremental and incremental modes. The proposed memristor is analog multiplier less. The Cadence Virtuoso software with a 180 nm CMOS library was used to validate and test the performance of the proposed MREC. The proposed design requires ±0.9 V DC power supply, with a power consumption of 754 µW. The proposed MREC works in the MHz range and the maximum working frequency is 25 MHz. To assess the flexibility of the proposed MREC during circuit employment, two memristors were connected in parallel and performance was compared with a single memristor.