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- [1] Low-power high-performance 32-bit RISC-V microcontroller on 65-nm silicon-on-thin-BOX (SOTB) IEICE Electron. Express, 2020, 20 (1-6): : 1 - 6
- [4] An Implementation of Ultra-Low-Standby Power SRAMs using 65 nm Silicon-on-Thin-Box (SOTB) for Smart IoT PROCEEDINGS OF 2017 7TH INTERNATIONAL CONFERENCE ON INTEGRATED CIRCUITS, DESIGN, AND VERIFICATION (ICDV), 2017, : 9 - 9
- [5] A 1.2-V 90-MHz Bitmap Index Creation Accelerator with 0.27-nW Standby Power on 65-nm Silicon-On-Thin-Box (SOTB) CMOS 2019 IEEE INTERNATIONAL SYMPOSIUM ON CIRCUITS AND SYSTEMS (ISCAS), 2019,
- [6] A static low-power, high-performance 32-bit carry skip adder PROCEEDINGS OF THE EUROMICRO SYSTEMS ON DIGITAL SYSTEM DESIGN, 2004, : 615 - 619
- [7] A 65 nm 1.0 v 1.84 ns Silicon-on-Thin-Box (SOTB) embedded SRAM with 13.72 nW/Mbit standby power for smart IoT 1600, Institute of Electrical and Electronics Engineers Inc., United States (00):
- [8] A 65 nm 1.0 V 1.84 ns Silicon-on-Thin-Box (SOTB) Embedded SRAM with 13.72 nW/Mbit Standby Power for Smart IoT 2017 SYMPOSIUM ON VLSI TECHNOLOGY, 2017, : C220 - C221
- [9] A 65 nm 1.0 V 1.84 ns Silicon-on-Thin-Box (SOTB) Embedded SRAM with 13.72 nW/Mbit Standby Power for Smart IoT 2017 SYMPOSIUM ON VLSI CIRCUITS, 2017, : C220 - C221
- [10] A RISC-V in-network accelerator for flexible high-performance low-power packet processing 2021 ACM/IEEE 48TH ANNUAL INTERNATIONAL SYMPOSIUM ON COMPUTER ARCHITECTURE (ISCA 2021), 2021, : 958 - 971