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首页> 外文期刊>IEEE transactions on device and materials reliability >Reliability and Processing Effects of Bandgap-Engineered SONOS (BE-SONOS) Flash Memory and Study of the Gate-Stack Scaling Capability
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Reliability and Processing Effects of Bandgap-Engineered SONOS (BE-SONOS) Flash Memory and Study of the Gate-Stack Scaling Capability

机译:带隙工程SONOS(BE-SONOS)闪存的可靠性和处理效果以及门堆叠扩展能力的研究

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In this paper, the reliability properties of bandgap-engineered SONOS (BE-SONOS) devices with various processing methods are extensively studied. BE-SONOS employs a multilayer O1/N1/O2/N2/O3 stack, where O1/N1/O2 serves as a bandgap-engineered tunneling barrier that provides an efficient hole-tunneling erase but eliminates the direct-tunneling leakage. BE-SONOS can overcome the fundamental limitation of the conventional SONOS, for which fast erase speed and good data retention cannot be simultaneously achieved. In this paper, a comprehensive understanding of BE-SONOS reliability is reported, including the processing effects of the critical ONO barrier (O1/N1/O2), the trapping layer (N2), and the top blocking oxide (O3). Moreover, the capability of dielectric scaling is also evaluated. Lower P/E voltages, good P/E cycling endurance, and data retention are maintained when N2 and O3 are further scaled to 60 $hbox{rm{AA}}$. The results in this paper provide design and processing guidelines for optimizing the performance and reliability of BE-SONOS Flash memory devices.
机译:本文对带隙工程的SONOS(BE-SONOS)器件采用各种处理方法的可靠性特性进行了广泛的研究。 BE-SONOS采用多层O1 / N1 / O2 / N2 / O3叠层,其中O1 / N1 / O2用作带隙设计的隧穿势垒,可提供有效的空穴隧穿擦除能力,但消除了直接隧穿泄漏。 BE-SONOS可以克服传统SONOS的根本限制,即无法同时实现快速擦除速度和良好的数据保留。本文报道了对BE-SONOS可靠性的全面理解,包括关键ONO势垒(O1 / N1 / O2),陷阱层(N2)和顶部阻挡氧化物(O3)的处理效果。此外,还评估了介电缩放的能力。当N2和O3进一步扩展到60 $ hbox {rm {AA}} $时,可以保持较低的P / E电压,良好的P / E循环耐久性和数据保留能力。本文的结果为优化BE-SONOS闪存设备的性能和可靠性提供了设计和处理指南。

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