Department of Electrical and Computer Engineering and Inter-University Semiconductor Research Center, Seoul National University, Seoul, Korea.
Nanotechnology. 2016 Dec 2;27(48):485201. doi: 10.1088/0957-4484/27/48/485201. Epub 2016 Oct 31.
This paper describes a novel readout scheme that enables the complete cancellation of sneak currents in resistive switching random-access memory (RRAM) crossbar array. The current-mode readout is employed in the proposed readout, and a few critical advantages of the current-mode readout for crossbar RRAM are elucidated in this paper. The proposed scheme is based on a floating readout scheme for low power consumption, and one more sensing port is introduced using an additional reference word line. From the additional port, information on the sneak current amount is collected, and simple current-mode arithmetic operations are implemented to cancel out the sneak current from the sensing current. In addition, a simple method of handling the overestimated-sneak-current issue is described. The proposed scheme is verified using HSPICE simulation. Moreover, an example of a current-mode sense amplifier realizing the proposed cancelling technique is presented. The proposed sense amplifier can be implemented with less hardware overhead compared to the previous works.
本文提出了一种新颖的读出方案,可完全消除阻变随机存取存储器 (RRAM) 交叉阵列中的 sneak 电流。所提出的方案基于浮置读出方案以实现低功耗,并且使用额外的参考字线引入了一个额外的感测端口。通过该额外端口,可收集 sneak 电流的信息,并通过简单的电流模式算术运算从感测电流中消除 sneak 电流。此外,还描述了一种处理高估 sneak 电流问题的简单方法。所提出的方案已通过 HSPICE 仿真进行了验证。此外,还提出了一个实现所提出的消除技术的电流模式感测放大器的示例。与之前的工作相比,所提出的感测放大器可以用更少的硬件开销来实现。