It looked maddeningly similar to the response a memristor would produce.
他看起来跟记忆电阻器产生的反应令人发狂的相似。
The circuit consists of an inductor, capacitor and a memory-resistor, or memristor.
感应 器、电容器、记忆电阻器(或叫记忆器)。
Researchers say that no real barrier prevents implementing the memristor in circuitry immediately.
研究员说“没有真正的障碍阻止立刻进入电路”。
The memristor, a microscopic component that can "remember" electrical states even when turned off.
忆阻——是一种可以在无电时可以记忆电状态的微观结构。
The memristor is just one of the incredible technological advances sending shock waves through the world of computing.
忆阻仅仅是难以置信技术进步对计算机领域产生的冲击波之一。
A flexible memristor has been developed by the U.S. National Institute of Standards and Technology, opening the door to new memory technologies.
美国标准技术研究所(NIST)最近宣称他们发明了一种新的内存技术:柔性记忆电阻技术。这是一种新型的记忆电阻技术。
Memristor-based devices could one day, for example, act like synapses inside computer circuits, mimicking the behavior of neurons in the human brain.
比如说,有一天,基于忆阻器的设备将在计算机电路中模仿人脑中的神经元,如同神经突起般运作。
Electrical charge flowing through a memristor changes the resistance state of the device, but actually observing the corresponding material changes has been a challenge.
通过忆阻器的电流可以改变它的电阻状态,但是在实际环境中观察随之而来的材料改变是一个挑战。
By working with a dynamic range of data states in an analog mode, memristor-based computers could be capable of far more complex tasks than just shuttling ones and zeroes around.
通过在模拟数据动态范围下工作,基于忆阻的计算机较仅仅围绕1和0工作的计算机适合更复杂的工作。
But in 1971, UC Berkeley researcher Leon Chua theorized the possibility of a fourth type of component, one that would be able to measure the flow of electric current: the memristor.
伯克利市加利福尼亚大学的研究员LeonChua于1971年提出可能存在可以测量电流的第四种电子元件——忆阻的理论。
But in 1971, UC Berkeley researcher Leon Chua theorized the possibility of a fourth type of component, one that would be able to measure the flow of electric current: the memristor.
伯克利市加利福尼亚大学的研究员LeonChua于1971年提出可能存在可以测量电流的第四种电子元件——忆阻的理论。
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