Abstract Biological neural networks outperform current computer technology in terms of power consumption and computing speed while performing associative tasks, such as pattern recognition. The analogue and massive parallel in-memory computing in biology differs strongly from conventional transistor electronics that rely on the von Neumann architecture. Therefore, novel bio-inspired computing architectures have been attracting a lot of attention in the field of neuromorphic computing. Here, memristive devices, which serve as non-volatile resistive memory, are employed to emulate the plastic behaviour of biological synapses. In particular, CMOS integrated resistive random access memory (RRAM) devices are promising candidates to extend conven...
Hardware processors for neuromorphic computing are gaining significant interest as they offer the po...
Hardware processors for neuromorphic computing are gaining significant interest as they offer the po...
CMOS integrated 4kbit 1T-1R memristive devices were examined in terms of device-to-device and pulse ...
Biological neural networks outperform current computer technology in terms of power consumption and ...
Biological neural networks outperform current computer technology in terms of power consumption and ...
Biological neural networks outperform current computer technology in terms of power consumption and ...
Biological neural networks outperform current computer technology in terms of power consumption and ...
Memristive devices represent a promising technology for building neuromorphic electronic systems. In...
Memristive devices represent a promising technology for building neuromorphic electronic systems. In...
Brain-inspired architectures in neuromorphic hardware are currently subject to intensive research as...
Brain-inspired architectures in neuromorphic hardware are currently subject to intensive research as...
—In this paper, we present an alternative approach to neuromorphic systems based on multi-level resi...
Hardware implementation of neuromorphic computing is attractive as a computing paradigm beyond the c...
Hardware processors for neuromorphic computing are gaining significant interest as they offer the po...
Hardware processors for neuromorphic computing are gaining significant interest as they offer the po...
Hardware processors for neuromorphic computing are gaining significant interest as they offer the po...
Hardware processors for neuromorphic computing are gaining significant interest as they offer the po...
CMOS integrated 4kbit 1T-1R memristive devices were examined in terms of device-to-device and pulse ...
Biological neural networks outperform current computer technology in terms of power consumption and ...
Biological neural networks outperform current computer technology in terms of power consumption and ...
Biological neural networks outperform current computer technology in terms of power consumption and ...
Biological neural networks outperform current computer technology in terms of power consumption and ...
Memristive devices represent a promising technology for building neuromorphic electronic systems. In...
Memristive devices represent a promising technology for building neuromorphic electronic systems. In...
Brain-inspired architectures in neuromorphic hardware are currently subject to intensive research as...
Brain-inspired architectures in neuromorphic hardware are currently subject to intensive research as...
—In this paper, we present an alternative approach to neuromorphic systems based on multi-level resi...
Hardware implementation of neuromorphic computing is attractive as a computing paradigm beyond the c...
Hardware processors for neuromorphic computing are gaining significant interest as they offer the po...
Hardware processors for neuromorphic computing are gaining significant interest as they offer the po...
Hardware processors for neuromorphic computing are gaining significant interest as they offer the po...
Hardware processors for neuromorphic computing are gaining significant interest as they offer the po...
CMOS integrated 4kbit 1T-1R memristive devices were examined in terms of device-to-device and pulse ...