Analysis of Semiconductor Defects in SEM Images Using SEMI-PointRend for Increased Accuracy and Detail Source Cluster: Semiconductor / Web3 Source Node: 2016383Time Stamp: Mar 10, 2023
Analysis of Semiconductor Defects in SEM Images Using SEMI-PointRend: Improved Accuracy and Detail Source Cluster: Semiconductor / Web3 Source Node: 2018212Time Stamp: Mar 10, 2023
Analysis of Semiconductor Defects in SEM Images Using SEMI-PointRend: A More Accurate and Detailed Approach Source Cluster: Semiconductor / Web3 Source Node: 2019310Time Stamp: Mar 10, 2023
SEMI-PointRend: Achieving Increased Accuracy and Detail in Semiconductor Defect Analysis from SEM Images Source Cluster: Semiconductor / Web3 Source Node: 2011071Time Stamp: Mar 10, 2023
SEMI-PointRend: Achieving More Accurate and Detailed Analysis of Semiconductor Defects in SEM Images Source Cluster: Semiconductor / Web3 Source Node: 2005960Time Stamp: Mar 10, 2023
ererImproved Analysis of Semiconductor Defects in SEM Images Using SEMI-PointRenderer Source Cluster: Semiconductor / Web3 Source Node: 2006951Time Stamp: Mar 10, 2023
SEMI-PointRend: A More Accurate and Detailed Analysis of Semiconductor Defects in SEM Images Source Cluster: Semiconductor / Web3 Source Node: 2007275Time Stamp: Mar 10, 2023
SEMI-PointRend: Achieving Improved Accuracy and Precision in Semiconductor Defect Analysis from SEM Images Source Cluster: Semiconductor / Web3 Source Node: 2007654Time Stamp: Mar 10, 2023
SEMI-PointRend: Improved Accuracy and Detail in Semiconductor Defect Analysis of SEM Images Source Cluster: Semiconductor / Web3 Source Node: 2007784Time Stamp: Mar 10, 2023
SEMI-PointRend: Improved Analysis of Semiconductor Defects in SEM Images Source Cluster: Semiconductor / Web3 Source Node: 2005941Time Stamp: Mar 10, 2023
Exploring Approximate Accelerators Using Automated Frameworks on FPGAs Source Cluster: Semiconductor / Web3 Source Node: 2016377Time Stamp: Mar 10, 2023
Exploring Approximate Accelerators Using Automated FPGA Architecture-Space Exploration Framework Source Cluster: Semiconductor / Web3 Source Node: 2007933Time Stamp: Mar 10, 2023
Exploring Approximate Accelerators Using Automated Framework on Field Programmable Gate Arrays (FPGAs) Source Cluster: Semiconductor / Web3 Source Node: 2018682Time Stamp: Mar 10, 2023
Exploring Approximate Accelerators Using Automated FPGA Architectural Frameworks Source Cluster: Semiconductor / Web3 Source Node: 2009180Time Stamp: Mar 10, 2023
Exploring Approximate Accelerator Architectures Using Automated Frameworks on FPGAs Source Cluster: Semiconductor / Web3 Source Node: 2009561Time Stamp: Mar 10, 2023
Exploring Approximate Accelerators with Automated FPGA Architecture-Space Frameworks Source Cluster: Semiconductor / Web3 Source Node: 2015898Time Stamp: Mar 10, 2023
University of Michigan Develops Reconfigurable Ferroelectric HEMT Transistor Source Cluster: Semiconductor / Web3 Source Node: 2009622Time Stamp: Mar 10, 2023
Enhancing Transistor Performance Through Reduction of Contact Resistance Using 2D Materials Source Cluster: Semiconductor / Web3 Source Node: 2018488Time Stamp: Mar 10, 2023
Enhancing Transistor Performance Through Lowered Contact Resistance Using Two-Dimensional Materials Source Cluster: Semiconductor / Web3 Source Node: 2018669Time Stamp: Mar 10, 2023
Improving Contact Resistance in Transistors Using 2D Materials Source Cluster: Semiconductor / Web3 Source Node: 2018671Time Stamp: Mar 10, 2023