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ICASCD 2027 : 2027 International Conference on Advanced Semiconductor and Chip Design | |||||||||||
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Call For Papers | |||||||||||
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2027 International Conference on Advanced Semiconductor and Chip Design (ICASCD 2027)
★CONTACT US Website: www.icascd.org Date: December 10–12, 2027 Venue: China Full Paper Submission: June 26, 2027 Email: Tel:+86-28-85586839 (International) Monday-Friday, 9:00am-12:00pm and 1:30pm-6:00pm ★Welcome to ICASCD 2027 Welcome to the 2027 International Conference on Advanced Semiconductor and Chip Design (ICASCD 2027)! We are delighted to have you join us from December 10–12, 2027. As the semiconductor industry continues to push the boundaries of Moore's Law, advanced materials, novel device architectures, and intelligent chip design methodologies are redefining the future of electronics. ICASCD 2027 brings together leading researchers, engineers, and industry professionals from around the globe to explore cutting-edge advancements in wide-bandgap semiconductors, emerging device technologies, chip design automation, heterogeneous integration, and next-generation manufacturing processes. ★Publication Information Registered and presented full papers will be included in the ICASCD 2027 digital conference proceedings and submitted to major citation databases (including, but not limited to Ei Compendex and Scopus) for review and indexing. ★Call for papers Topics of Interest include but not limited to: 1. Advanced Semiconductor Materials and Manufacturing Wide-Bandgap and Ultra-Wide-Bandgap Semiconductors (SiC, GaN, Ga₂O₃, Diamond, etc.) 2D Materials and Emerging Semiconductors (Graphene, MoS₂, etc.) Advanced CMOS, FinFET, GAA-FET, Nanosheet/Nanowire Transistors Beyond-CMOS and Emerging Device Architectures (TFET, Negative Capacitance FET, etc.) Quantum Materials and Topological Materials Semiconductor Manufacturing Processes and Process Integration Extreme Ultraviolet (EUV) Lithography and Next-Generation Patterning Technologies 2. Chip Design, EDA, and System Integration High-Performance and Low-Power Processor Design System-on-Chip (SoC) and Network-on-Chip (NoC) 3D-IC and Chiplet-Based Heterogeneous Integration AI-Driven Chip Architecture and Hardware Acceleration Memory-Centric, In-Memory, and Near-Memory Computing Architectures Domain-Specific Accelerators for AI, Edge, IoT, and Automotive Analog, Mixed-Signal, and RF IC Design |
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