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首页> 外文期刊>Nature Electronics >Reconfigurable logic and neuromorphic circuits based on electrically tunable two-dimensional homojunctions
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Reconfigurable logic and neuromorphic circuits based on electrically tunable two-dimensional homojunctions

机译:基于电可调谐二维同性恋的可重构逻辑和神经形态电路

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Reconfigurable logic and neuromorphic devices are crucial for the development of high-performance computing. However, creating reconfigurable devices based on conventional complementary metal–oxide–semiconductor technology is challenging due to the limited field-effect characteristics of the fundamental silicon devices. Here we show that a homojunction device made from two-dimensional tungsten diselenide can exhibit diverse field-effect characteristics controlled by polarity combinations of the gate and drain voltage inputs. These electrically tunable devices can achieve reconfigurable multifunctional logic and neuromorphic capabilities. With the same logic circuit, we demonstrate a 2:1 multiplexer, D-latch and 1-bit full adder and subtractor. These functions exhibit a full-swing output voltage and the same supply and signal voltage, which suggests that the devices could be cascaded to create complex circuits. We also show that synaptic circuits based on only three homojunction devices can achieve reconfigurable spiking-timing-dependent plasticity and pulse-tunable synaptic potentiation or depression characteristics; the same function using complementary metal–oxide–semiconductor devices would require more than ten transistors.
机译:可重新配置的逻辑和神经形态器件对于高性能计算的发展至关重要。然而,由于基本硅装置的场效应特性有限,基于传统的互补金属氧化物半导体技术创建基于传统的互补金属氧化物半导体技术的可重新配置设备。在这里,我们表明,由二维钨烯酮制成的同质结装置可以表现出通过栅极和漏极电压输入的极性组合控制的不同场效应特性。这些电动可电动设备可以实现可重新配置的多功能逻辑和神经形态能力。使用相同的逻辑电路,我们演示了2:1多路复用器,D-Latch和1位全加法器和减法器。这些功能表现出全摇摆输出电压和相同的电源和信号电压,这表明设备可以级联以创建复杂电路。我们还表明,基于仅三种同性全调装置的突触电路可以实现可重新配置的尖刺 - 时序依赖性可塑性和脉冲可调突触潜力或抑郁特征;使用互补金属氧化物半导体器件的相同功能需要超过十个晶体管。

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