Area of Hysteresis Loop of a Generic Memristor Emulator
Nune Pratyusha, Santanu Mandal, Rohit Bhargav Peesa, M. Suhail
Abstract
Nune Pratyusha, Santanu Mandal, Rohit Bhargav Peesa, M. Suhail
Abstract
Extensive research demonstrated that a memristor can be used as a memory storage system. Subsequent studies have been carried out to facilitate the use of memristor as an electronic synapse. However, the price of the memristor is very high due to the high cost of fabricating a memristor. In order to continue research in this field, it is necessary to design memristor models and emulators. One of three significant fingerprints of the memristor is Hysteresis Loop. This loop area is useful to measure the memory effect of a memristor. In this paper, the area of hysteresis loop for a current-controlled generic memristor emulator is derived. An current controlled memristor emulator circuit design is developed using Multisim software with available low-cost electronic components. All three fingerprints of the memristor are realized through simulations and mathematical analysis. The obtained results are verified by modified memristor emulator system.
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Extensive research demonstrated that a memristor can be used as a memory storage system. Subsequent studies have been carried out to facilitate the use of memristor as an electronic synapse. However, the price of the memristor is very high due to the high cost of fabricating a memristor. In order to continue research in this field, it is necessary to design memristor models and emulators. One of three significant fingerprints of the memristor is Hysteresis Loop. This loop area is useful to measure the memory effect of a memristor. In this paper, the area of hysteresis loop for a current-controlled generic memristor emulator is derived. An current controlled memristor emulator circuit design is developed using Multisim software with available low-cost electronic components. All three fingerprints of the memristor are realized through simulations and mathematical analysis. The obtained results are verified by modified memristor emulator system.
Key concepts: Memristor, Memistor, Computer science, Hysteresis, Electronic engineering, Resistive random-access memory, Electrical engineering, Voltage