Global ETD Search
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Showing 1 to 9 of 9 for “"CNFET"”.
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Functionalization of CNFET arrays for chemical sensing
… 2048 carbon nanotube field-effect transistors (CNFETs), functionalized with conductive metal-organic frameworks (cMOFs) and metal nanoparticles. Our functionalization approach enhances sensor responses by up to two orders of magnitude and enables on-chip pattern generation. Furthermore, the …
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Imperfection-Aware Design of CNFET Digital VLSI Circuits
<p>Carbon nanotube field-effect transistor (CNFET) is one of the promising candidates as extensions to silicon CMOS devices. The CNFET, which is a 1-D structure with a near-ballistic transport capability, can potentially offer excellent device characteristics and order-of-magnitude better …
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Overcoming nanoscale variations through statistical error compensation
… with carbon nanotube field-effect transistors (CNFETs). With the aid of a well developed CNFET delay distribution modeling method, circuit simulations show up to 90× improvement of the SSNOC-based design in the circuit yield over the conventional design. The results verify the robustness of an …
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Lab-to-Fab Monolithic 3D Integrated Carbon Nanotube Transistors: Scaling and Reliability
… back-end-of-line (BEOL) carbon nanotube FET (CNFET) + Resistive RAM (RRAM) stack over silicon CMOS that achieves comparable memory performance (read power, write energy/latency, endurance, retention, multiple bits-per-cell capability) in the same footprint as a conventional RRAM stack using …
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SHARC : self-healing analog with RRAM and CNFETs
… carbon nanotube (CNT) field-effect transistors (CNFETs) for logic and Resistive Random-Access Memory (RRAM) for memory are two promising emerging nanotechnologies for energy-efficient electronics. However, CNFETs suffer from inherent imperfections (such as of metallic CNTs, m-CNTs), which have …
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Progress in Nanosystems for Computing and Health
… transistors fabricated with carbon nanotubes (CNFETs), these benefits lead to the concept of monolithic 3D integration – the ability to integrate previously heterogeneous technologies within a single chip, achieving functionalities that exceed the sum of their parts. Moving from theoretical …
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A Manufacturing Methodology for Carbon Nanotube-based Digital Systems: from Devices, to Doping, to System Demonstrations
… carbon nanotube field-effect transistor (CNFET)-based digital circuits promise substantial energy-efficiency benefits, but the inability to perfectly control intrinsic nanoscale defects and variability in carbon nanotubes has precluded the realization of very-large-scale integrated …
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Energy efficient computing : from nanotubes to negative capacitance
… naturally realize CNT field-effect transistors (CNFETs) that both take advantage of new device physics (specifically, negative capacitance), as well as new device geometries (specifically, back-gate geometries). Yet despite this potential, there is a major challenge: while new nanomaterials …
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Hardware security design from circuits to systems
… Carbon nanotube field-effect transistors (CNFETs) have been shown to have excellent electrical and unique physical characteristics. They are a promising candidate to replace silicon transistors in future very large scale integration (VLSI) designs. We present the Carbon Nanotube PUF …