Komura, YusukeYusukeKomuraMiyata, ShokiShokiMiyataOkamoto, YukiYukiOkamotoTamatsukuri, YukiYukiTamatsukuriInoue, HirokiHirokiInoueSaito, ToshihikoToshihikoSaitoKozuma, MunehiroMunehiroKozumaKobayashi, HidetomoHidetomoKobayashiOnuki, TatsuyaTatsuyaOnukiYanagisawa, YuichiYuichiYanagisawaTakeuchi, ToshihikoToshihikoTakeuchiOkazaki, YutakaYutakaOkazakiKunitake, HitoshiHitoshiKunitakeNakamura, DaikiDaikiNakamuraNagata, TakaakiTakaakiNagataYamane, YasumasaYasumasaYamaneIkeda, MakotoMakotoIkedaYen, Shih CiShih CiYenChang, Chuan HuaChuan HuaChangHsieh, Wen HsiangWen HsiangHsiehYoshida, HiroshiHiroshiYoshidaChen, Min ChengMin ChengChenMING-HAN LIAOChang, Shou ZenShou ZenChangYamazaki, ShunpeiShunpeiYamazaki2023-08-282023-08-282023-01-01978486348806907431562https://scholars.lib.ntu.edu.tw/handle/123456789/634795We developed silicon (Si) display drivers that can be arranged two-dimensionally by monolithically stacking c-axis-aligned crystalline oxide semiconductor FETs over Si CMOS. The drivers can independently control resolutions and frame rates of corresponding display areas. Our display drivers will achieve a high frame rate, which is difficult to achieve with conventional display drivers.CAAC OS | driver | high frame rate and foveated rendering | microdisplay | Si[SDGs]SDG7Two-Dimensionally Arranged Display Drivers Achieved by OS/Si Structureconference paper10.23919/VLSITechnologyandCir57934.2023.101853582-s2.0-85167574931https://api.elsevier.com/content/abstract/scopus_id/85167574931