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Renesas Announces World’s First Fin-Shaped MONOS Flash Memory Cells for MCUs in 16/14nm

瀏覽次數:1831

Renesas Electronics Corporation today announced its successful development of the world’s first split-gate metal-oxide nitride oxide silicon (SG-MONOS) flash memory cells employing transistors with fin-shape for use in microcontrollers (MCUs) with on-chip flash memory having a circuit linewidth of 16 to 14 nanometer (nm) or finer.

SG-MONOS technology is reliable for use in automotive applications and Renesas currently mass produces 40nm MCUs using this technology, and 28nm MCUs are under development. The successful development shows promising scalability of the SG-MONOS technology to 16/14nm process nodes and beyond.

Advances in automotive automation, such as advanced driver assistance systems (ADAS), and the smart society connected via the Internet of Things (IoT) have created demand for more advanced MCUs fabricated using finer process technology.

To address this demand, Renesas has developed embedded flash memories based on the 16/14nm technology, which succeeds the latest 40/28nm. At the 16/14nm logic process, Fin Field Effect Transistors (FinFETs), transistors with a finned structure, are commonly employed to realize improved performance and reduced power consumption to overcome the scaling limit of conventional planar transistors.

However, employing a fin structure for embedded flash memory can become a big challenge depending on the structure of the flash memory. Two types of embedded flash memories have been proposed and implemented: the floating-gate and charge trap. Compared with floating-gate memory, the charge trap flash memory which Renesas has been utilizing in recent years has superior charge retention characteristics and a proven track record in automotive MCUs requiring a high level of reliability.

Also, since the memory functional material is formed on the surface of the silicon substrate, they are comparatively easy to be extended into a three-dimensional fin structure. In contrast, floating-gate flash memory cells have a complex structure, and therefore it is difficult to integrate it into a fin structure.

Another advantage of SG-MONOS over the floating-gate structure is that the memory cell structure is maintained after replacing the dummy polysilicon gate electrode with the metal gate electrode, which is the process used to manufacture advanced logic CMOS devices with high dielectric gate insulators and metal gate electrodes.

Renesas is the world’s first to successfully develop a fin-structure SG-MONOS flash memory with high scalability, for use in high-performance and highly reliable MCUs of 16/14nm process nodes and beyond.

稀土棋局下的台灣解方:從供應鏈韌性看關鍵礦物合作新契機
特別企劃半導體

稀土棋局下的台灣解方:從供應鏈韌性看關鍵礦物合作新契機

稀土與關鍵礦物已成全球科技競爭與經濟安全的重要戰略資源。面對供應鏈高度集中與地緣風險升高,台灣如何透過國際合作、技術替代、戰略儲備與城市採礦,建立自主且具韌性的關鍵礦物供應體系?

稀土與關鍵礦物已成全球科技競爭與經濟安全的重要戰略資源。面對供應鏈高度集中與地緣風險升高,台灣如何透過國際合作、技術替代、戰略儲備與城市採礦,建立自主且具韌性的關鍵礦物供應體系?

關鍵字:semiconductor