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Read-Out Modulation Scheme for the Display Driving Circuits Composed of Nonvolatile Ferroelectric Memory and Oxide–Semiconductor Thin-Film Transistors for Low-Power Consumption

机译:用于低功耗的非易失性铁电存储器和氧化物半导体薄膜晶体管组成的显示驱动电路的读出调制方案

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摘要

New circuit architecture composed of nonvolatile memory thin-film transistors (M-TFTs) and oxide–semiconductor TFTs (Ox-TFTs) has been proposed to realize low-power consumption and compact size for dynamic driving circuit applications. In order to compensate the slow operation speed of the nonvolatile M-TFTs in the dynamic driving circuits, we proposed the read-out modulation (ROM) scheme. The device operation characteristics of the M-TFTs were confirmed under various specified conditions to effectively apply the ROM, in which a top-gate structure was fabricated to be ferroelectric poly(vinylidene fluoride-trifluoroethylene) gate insulator/AlO/In–Ga–ZnO active layers. Full fabrication processes for the M-TFTs were optimized, so that they can be integrated with Ox-TFTs on the same glass substrate. The memory device characteristics, including the current ratios between ON- and OFF-programmed drain current () values ( before and after the ROM, drain-bias dependence of the , and the program scalability, were confirmed for the fabricated M-TFT. These results suggest the feasibility of a low-power display driver circuit embedded with the nonvolatile M-TFTs.
机译:已经提出了一种由非易失性存储薄膜晶体管(M-TFT)和氧化物半导体TFT(Ox-TFT)组成的新电路架构,以实现动态驱动电路应用中的低功耗和紧凑尺寸。为了补偿动态驱动电路中非易失性M-TFT的慢速运行,我们提出了一种读出调制(ROM)方案。在各种指定条件下,M-TFT的器件工作特性得到了确认,以有效地应用ROM,在该ROM中,顶栅结构被制造为铁电聚偏二氟乙烯-三氟乙烯栅绝缘体/ AlO / In-Ga-ZnO活动层。对M-TFT的完整制造工艺进行了优化,因此它们可以与Ox-TFT集成在同一玻璃基板上。对于制造的M-TFT,确认了存储器件的特性,包括在ROM之前和之后的ON和OFF编程的漏极电流()值之间的电流比,漏极偏置的相关性以及程序的可扩展性。结果表明,嵌入非易失性M-TFT的低功耗显示驱动器电路的可行性。

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