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Vertically Stackable Novel One-Time Programmable Nonvolatile Memory Devices Based on Dielectric Breakdown Mechanism

机译:基于介电击穿机构的垂直堆叠新颖的一次性可编程非易失性存储器件

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In this paper, a novel one-time programmable (OTP) nonvolatile memory (NVM) device and its array structures based on silicon technology are proposed. There have been many features of OTP NVM devices utilizing various combinations of channel, breakdown region, barrier, and contact materials. However, this invention can be realized by simple materials and fabrication methods: it is silicon-based materials and fully compatible with the conventional CMOS process. An individual memory cell is a silicon diode vertically integrated. Historically, OTP memories were widely used for read-only-memory (ROM) in the central processing unit (CPU) of the computer systems. By implanting the nanoscale fabrication technology into the concept of OTP memory, innovative high-density NVM appliances for massive storage media becomes very promising. The program operation is performed by breaking down the thin oxide layer between pn doped structure and wordline (WL) and its state can be sensed by the leakage current through the broken oxide. Since this invention is based on neither transistor structure nor charge-based mechanism, it is highly reliable and functional for the ultra-large scale integration. The feasibility of its stacked array will be also checked.
机译:本文提出了一种新的一次性可编程(OTP)非易失性存储器(NVM)器件及其基于硅技术的阵列结构。 OTP NVM设备的特点是利用通道,击穿区域,屏障和接触材料的各种组合。然而,本发明可以通过简单的材料和制造方法实现:它是基于硅基材料,并与传统的CMOS工艺完全兼容。单个存储器单元是垂直集成的硅二极管。从历史上看,OTP存储器广泛用于计算机系统的中央处理单元(CPU)中的只读存储器(ROM)。通过将纳米级制造技术植入OTP内存的概念,用于大规模存储介质的创新高密度NVM设备变得非常有前景。通过在PN掺杂结构之间的薄氧化物层断开薄氧化物层来执行程序操作,并且其状态可以通过破碎的氧化物通过漏电流来感测。由于本发明既不是晶体管结构也不是基于电荷的机构,因此对于超大型集成,它是高度可靠和功能的。还将检查其堆叠阵列的可行性。

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