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Journal articles on the topic '3D ReRAM'

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1

Hudec, Boris, I.-Ting Wang, Wei-Li Lai, et al. "Interface engineered HfO2-based 3D vertical ReRAM." Journal of Physics D: Applied Physics 49, no. 21 (2016): 215102. http://dx.doi.org/10.1088/0022-3727/49/21/215102.

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2

Lee, Edward, Daehyun Kim, Jinwoo Kim, Sung Kyu Lim, and Saibal Mukhopadhyay. "A ReRAM Memory Compiler for Monolithic 3D Integrated Circuits in a Carbon Nanotube Process." ACM Journal on Emerging Technologies in Computing Systems 18, no. 1 (2022): 1–20. http://dx.doi.org/10.1145/3466681.

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We present a ReRAM memory compiler for monolithic 3D (M3D) integrated circuits (IC). We develop ReRAM architectures for M3D ICs using 1T-1R bit cells and single and multiple tiers of transistors for access and peripheral circuits. The compiler includes an automated flow for generation of subarrays of different dimensions and larger arrays of a target capacity by integrating multiple subarrays. The compiler is demonstrated using an M3D process design kit (PDK) based on a Carbon Nanotube Transistor technology. The PDK includes multiple layers of transistors and back-end-of-the-line integrated Re
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Walden, Candace, Devesh Singh, Meenatchi Jagasivamani, et al. "Monolithically Integrating Non-Volatile Main Memory over the Last-Level Cache." ACM Transactions on Architecture and Code Optimization 18, no. 4 (2021): 1–26. http://dx.doi.org/10.1145/3462632.

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Many emerging non-volatile memories are compatible with CMOS logic, potentially enabling their integration into a CPU’s die. This article investigates such monolithically integrated CPU–main memory chips. We exploit non-volatile memories employing 3D crosspoint subarrays, such as resistive RAM (ReRAM), and integrate them over the CPU’s last-level cache (LLC). The regular structure of cache arrays enables co-design of the LLC and ReRAM main memory for area efficiency. We also develop a streamlined LLC/main memory interface that employs a single shared internal interconnect for both the cache an
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4

Kim, Bokyung, Edward Hanson, and Hai Li. "An Efficient 3D ReRAM Convolution Processor Design for Binarized Weight Networks." IEEE Transactions on Circuits and Systems II: Express Briefs 68, no. 5 (2021): 1600–1604. http://dx.doi.org/10.1109/tcsii.2021.3067840.

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5

Fernanda Hernández, Leonardo Sánchez, Gabriela González, and Andrés Ramírez. "Revolutionizing CMOS VLSI with Innovative Memory Design Techniques." Fusion of Multidisciplinary Research, An International Journal 3, no. 2 (2022): 366–79. https://doi.org/10.63995/bduh3010.

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The revolution in CMOS VLSI (Complementary Metal-Oxide-Semiconductor Very-Large-Scale Integration) technology is being driven by innovative memory design techniques that address the ever-growing demand for faster, smaller, and more power-efficient devices. Traditional memory architectures are being reimagined to overcome limitations in speed, density, and energy consumption. Techniques such as multi-level cell (MLC) storage, resistive RAM (ReRAM), and spin-transfer torque magnetic RAM (STT-MRAM) are at the forefront of this transformation, offering significant improvements over conventional SR
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Sun, Chao, Kousuke Miyaji, Koh Johguchi, and Ken Takeuchi. "A High Performance and Energy-Efficient Cold Data Eviction Algorithm for 3D-TSV Hybrid ReRAM/MLC NAND SSD." IEEE Transactions on Circuits and Systems I: Regular Papers 61, no. 2 (2014): 382–92. http://dx.doi.org/10.1109/tcsi.2013.2268111.

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7

Hassanpour, Mehdi, Marc Riera, and Antonio González. "A Survey of Near-Data Processing Architectures for Neural Networks." Machine Learning and Knowledge Extraction 4, no. 1 (2022): 66–102. http://dx.doi.org/10.3390/make4010004.

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Data-intensive workloads and applications, such as machine learning (ML), are fundamentally limited by traditional computing systems based on the von-Neumann architecture. As data movement operations and energy consumption become key bottlenecks in the design of computing systems, the interest in unconventional approaches such as Near-Data Processing (NDP), machine learning, and especially neural network (NN)-based accelerators has grown significantly. Emerging memory technologies, such as ReRAM and 3D-stacked, are promising for efficiently architecting NDP-based accelerators for NN due to the
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Gugnani, Shashank, Arjun Kashyap, and Xiaoyi Lu. "Understanding the idiosyncrasies of real persistent memory." Proceedings of the VLDB Endowment 14, no. 4 (2020): 626–39. http://dx.doi.org/10.14778/3436905.3436921.

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High capacity persistent memory (PMEM) is finally commercially available in the form of Intel's Optane DC Persistent Memory Module (DCPMM). Researchers have raced to evaluate and understand the performance of DCPMM itself as well as systems and applications designed to leverage PMEM resulting from over a decade of research. Early evaluations of DCPMM show that its behavior is more nuanced and idiosyncratic than previously thought. Several assumptions made about its performance that guided the design of PMEM-enabled systems have been shown to be incorrect. Unfortunately, several peculiar perfor
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Husni, M. Afif Rijal, and Aedil Yusuf Afandi. "Perancangan Tata Letak Ruang Unit Rekam Medis Guna Kelancaran Pelayanan Rekam Medis Elektronik di RSU Anna Medika Madura." NURSING UPDATE : Jurnal Ilmiah Ilmu Keperawatan P-ISSN : 2085-5931 e-ISSN : 2623-2871 15, no. 2 (2024): 542–51. http://dx.doi.org/10.36089/nu.v15i2.2250.

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Tata letak ruang adalah penataan sarana dan prasarana kerja petugas yang memadai dengan jarak ideal sehingga menimbulkan kenyamanan bagi para pegawai dalam melakukan pekerjaanya. Di RSU Anna Medika Madura berada pada tahap persiapan menuju Rekam Medis Elektronik. Di RSU Anna Medika Madura diketahui bahwa penyimpanan rekam medis masih menggunakan Roll O Pack dan rak terbuka, ruang pengelolaan rekam medis yang sempit dikarenakan meja kerja petugas saling berdempetan, peneliti bertujuan untuk merancang tata letak ruang di ruang rekam medis berdasarkan metode Mark Karlen. Metode yang digunakan ada
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10

Qolbi, M. Mahbub Jauhar, and Mochammad Choirur Roziqin. "Desain Ruang Unit Kerja Rekam Medis Berdasarkan Aspek Ergonomi Di Puskesmas Senduro." J-REMI : Jurnal Rekam Medik dan Informasi Kesehatan 4, no. 1 (2022): 24–31. http://dx.doi.org/10.25047/j-remi.v4i1.3347.

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Kenyamanan lingkungan kerja dapat membantu dalam meningkatkan produktivitas kerja parapetugas dalam memberi pelayanan di Puskesmas, sehingga pasien mendapatkan pelayananmaksimal. Ruang kerja unit rekam medis di Puskesmas Senduro belum memenuhi aspekkenyamanan dikarenakan keadaan ruangan yang sempit hanya berukuran 9 m2sehinggaberdampak terhadap pelayanan dan ruang filing yang berukuran 7,5 m2tidak sesuai denganstandar minimal yaitu sebesar 20 m2. Meja, kursi dan rak filing memiliki ukuran yang tidaksesuai dengan antropometri petugas serta sarana dan prasana lain yang masih belum sesuaidengan k
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11

Amaral, Creusa Sayuri Tahara, Oreonnilda De Souza, Leiraud Hilkner de Souza, Gilson José da Silva, and Lucas Noboru Fatori Trevizan. "Novos caminhos da biotecnologia: As inovações da indústria 4.0 na saúde humana." Revista Brasileira Multidisciplinar 23, no. 3 (2020): 203–31. http://dx.doi.org/10.25061/2527-2675/rebram/2020.v23i3.889.

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As aplicações da Biotecnologia na área da saúde humana são amplas e têm despertado o interesse de cientistas, da indústria e de investidores em todo o mundo. A Biotecnologia é uma das áreas que mais vem sendo impactada pelas novas tecnologias da indústria 4.0. Este trabalho tem como objetivo explorar as tendências registradas em patentes, incluindo bioimpressão 3D e genética humana, além de analisar os impactos que a indústria 4.0 tem repercutido na Biotecnologia, especificamente, na área da saúde humana e os impactos provocados na formação dos profissionais. Dentre os resultados foi possível
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12

Gomes Cardoso Gastaldi, Gabriela, Juliana Paula de Oliveira, Jorge Vicente Lopes da Silva, Rodrigo Alvarenga Rezende, and André Capaldo Amaral. "PHOTOBIOMODULATORY EFFECT OF LOW-INTENSITY LASER RADIATION ON MULTICELLULAR SPHEROIDS." Revista Brasileira Multidisciplinar 24, no. 2 (2021): 156–67. http://dx.doi.org/10.25061/2527-2675/rebram/2021.v24i2.1136.

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Photobiomodulatory effects of low-intensity laser radiation (LILR) in cells cultured in standard, two-dimensional conditions are well established. Conversely, the characteristics of this effect in three-dimensional (3D) cultures, which are currently recommended due to the greater similarity with cellular behavior in vivo, have not yet been widely investigated. The objective of this work was to analyze the biomodulator effect of LILR, on the wavelength (λ) of 685 nm, on the constitution process and on the viability of cells cultured as multicellular spheroid (MSs). For this, agarose molds conta
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13

Musu, Hardianto, Eko Prasetyo, Maximilian C. Oley, and Fredrik G. Langi. "Hubungan Pola Patah Tulang dengan Gejala Klinis pada Patah Tulang Dasar Kepala (PTDK) Anterior." Medical Scope Journal 6, no. 1 (2023): 86–93. http://dx.doi.org/10.35790/msj.v6i1.48479.

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Abstract: Traumatic brain injury can occur due to skull base fracture at the anterior, middle, and posterior parts with life-threatening complications. This study aimed to obtain the relationship between anterior skull base fracture pattern and its clinical signs and symptoms. This was a retrospective chart review with a cross-sectional design. Subjects were 50 patients with anterior skull base fracture based on 3D CT scan, and then their clinical signs and symptoms were evaluated. Data were analyzed bivariately using the Pearson Chi-Square test and the Fisher Exact alternative. The results sh
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14

Mutia, Yesi Nurul, Syaiful Bachri Mustamin, Wa Ode Saktilawati, Sahriani, Nurhikmah Fajar, and Sri Kurniyan Sari. "Potensi Transformasi Deep Learning dalam Berbagai Domain: Studi Literatur pada Manufaktur dan Layanan Kesehatan." Jurnal Teknologi dan Sains Modern 2, no. 2 (2025): 97–106. https://doi.org/10.69930/jtsm.v2i2.349.

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Penerapan deep learning di sektor manufaktur dan layanan kesehatan untuk meningkatkan efisiensi, akurasi, dan otomatisasi. Di sektor manufaktur, kolaborasi manusia-robot menghadapi tantangan dalam merencanakan tugas dan mengendalikan gerakan robot di lingkungan tak terstruktur, sementara deteksi cacat geometris pada produk menggunakan data awan titik 3D membutuhkan teknologi yang mampu menangani data kompleks. Di sektor layanan kesehatan, deep learning memainkan peran penting dalam segmentasi citra medis dan triage departemen gawat darurat untuk meningkatkan kecepatan dan akurasi pengambilan k
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15

Navath, Suryakiran. "Revisit: The Synthesis of 3-amino pyrazoles promoted by p-toluenesulfonic acid as an efficient catalyst under solvent and solvent-free conditions." International Journal of Bioorganic and Medicinal Chemistry 1, no. 1 (2021): 20–24. http://dx.doi.org/10.55124/bmc.v1i1.112.

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An efficient and facile synthesis of 3-amino pyrazoles has been described. The reaction of b-keto nitriles with hydrazines using p-toluenesulfonic acid as an efficient catalyst under solvent and solvent-free conditions afford corresponding 3-amino pyrazoles in excellent yields
 Introduction
 Pyrazoles, in particular 3-amino pyrazoles are an important class of compounds in medicinal chemistry and it has been well documented to posses antihypertensive,1 antibacterial,2 anti-inflammatory muscle relaxant3,4 and inhibitors of cyclin dependent kinases (CDK) such as CDK2/cycling A-E.5 They
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16

Choudhury, Dwaipayan, Lizhi Xiang, Aravind Sukumaran Rajam, Ananth Kalyanaraman, and Partha Pratim Pande. "Accelerating Graph Computations on 3D NoC-enabled PIM Architectures." ACM Transactions on Design Automation of Electronic Systems, October 7, 2022. http://dx.doi.org/10.1145/3564290.

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Graph application workloads are dominated by random memory accesses with poor locality. To tackle the irregular and sparse nature of computation, ReRAM-based Processing-in-Memory (PIM) architectures have been proposed recently. Most of these ReRAM architecture designs have focused on mapping graph computations into a set of multiply-and-accumulate (MAC) operations. ReRAMs also offer a key advantage in reducing memory latency between cores and memory by allowing for processing-in-memory (PIM). However, when implemented on a ReRAM-based manycore architecture, graph applications still pose two ke
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17

Kihara, Fuyuki, Chihiro Matsui, and Ken Takeuchi. "3D Parallel ReRAM Computation-in-Memory for Hyperdimensional Computing." IEICE Transactions on Electronics, 2024. http://dx.doi.org/10.1587/transele.2023cts0001.

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18

Kopperberg, N., D. Genua Noguera, and S. Menzel. "3D kinetic Monte Carlo-based investigation of the influence of dopants on the reliability of VCM ReRAM." Journal of Applied Physics 137, no. 17 (2025). https://doi.org/10.1063/5.0262843.

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Variability and retention are critical reliability challenges for redox-based resistive switching random access memory (ReRAM) devices operating via the valence change mechanism (VCM). Variability arises from stochastic oxygen vacancy dynamics at short timescales, while retention failure manifests itself by the long-term instability of the programmed states. Both challenges become more severe in large-scale memory arrays, requiring a better understanding of the mechanisms and effective optimization strategies. In this work, we employ an advanced 3D Kinetic Monte Carlo simulation model to syste
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19

Joardar, Biresh Kumar, Janardhan Rao Doppa, Partha Pratim Pande, Hai Li, and Krishnendu Chakrabarty. "AccuReD: High Accuracy Training of CNNs on ReRAM/GPU Heterogeneous 3D Architecture." IEEE Transactions on Computer-Aided Design of Integrated Circuits and Systems, 2020, 1. http://dx.doi.org/10.1109/tcad.2020.3013194.

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20

Kopperberg, N., D. J. Wouters, R. Waser, S. Menzel, and S. Wiefels. "Accurate evaluation method for HRS retention of VCM ReRAM." APL Materials 12, no. 3 (2024). http://dx.doi.org/10.1063/5.0188573.

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Long-term retention is one of the major challenges concerning the reliability of redox-based resistive switching random access memories based on the valence change mechanism (VCM). The stability of the programmed state has to be ensured over several years, leaving a sufficient read window between the states, which is even more challenging at large statistics. Thus, the underlying physical mechanisms have to be understood and experimental data have to be evaluated accurately. Here, it shows that the retention behavior of the high resistive state (HRS) is more complex than that of the low resist
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21

Narang, Gaurav, Chukwufumnanya Ogbogu, Jana Doppa, and Partha Pande. "TEFLON: Thermally Efficient Dataflow-Aware 3D NoC for Accelerating CNN Inferencing on Manycore PIM Architectures." ACM Transactions on Embedded Computing Systems, May 16, 2024. http://dx.doi.org/10.1145/3665279.

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Resistive random-access memory (ReRAM) based processing-in-memory (PIM) architectures are used extensively to accelerate inferencing/training with convolutional neural networks (CNNs). Three-dimensional (3D) integration is an enabling technology to integrate many PIM cores on a single chip. In this work, we propose the design of a thermally efficient dataflow-aware monolithic 3D (M3D) NoC architecture referred to as TEFLON to accelerate CNN inferencing without creating any thermal bottlenecks. TEFLON reduces the Energy-Delay-Product (EDP) by 4 2\% , 46\% , and 45 \% on an average compared to a
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Parmar, Swati, Suresh Panchal, Suwarna Datar, and Satishchandra Ogale. "Semiconductor–Semimetal 2D/3D MoS2/SrRuO3(111) TMD/TMO Heterojunction-Based ReRAM Devices." ACS Applied Electronic Materials, September 21, 2023. http://dx.doi.org/10.1021/acsaelm.3c00907.

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23

Barud, Hernane Silva, Lorenzo Gouvêa Machado, Mayté Paredes Zaldivar, et al. "Polylactic acid scaffolds obtained by 3D printing and modified by oxygen plasma." Revista Brasileira Multidisciplinar 23, no. 1 (2020). http://dx.doi.org/10.25061/2527-2675/rebram/2020.v23i1.813.

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The purpose of tissue engineering is to repair, replace, and regenerate tissues and organs. For this aim, materials supports, as polylactic acid (PLA) are used. PLA is a thermoplastic polymer that presents biodegradability, biocompatibility and good processability. PLA scaffolds can accurately constructed by 3D printing. Then, the objectives of this work were to modify the hydrophobic surface of PLA scaffolds using oxygen plasma and to study the cell viability and proliferation. The characterization was done by AFM, contact angle, FTIR and studies of proliferation and cell viability. Results s
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Trung, Hieu Pham, Nang Vo Sy Quyen, Nam Vu Tu, Dung Tran Trung, and Toan Duong Dinh. "Early outcomes of total hip arthroplasty using point-of-care manufactured patient-specific instruments: a single university hospital’s initial experience." BMC Surgery 23, no. 1 (2023). http://dx.doi.org/10.1186/s12893-023-02281-3.

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Abstract Background The use of 3D-printed Patient-Specific Instruments (PSI) has been investigated to enhance the postoperative functional results in total hip arthroplasty (THA) and has been recognized as an innovative approach for the optimal alignment of hip implant components. Point-of-care production is gradually becoming the norm for PSI manufacturing. The purpose of this article is to assess the accuracy and safety of PSI for total hip arthroplasty performed at the point-of-care in Vietnam. Methods 34 THA cases were assessed in this prospective study. A template for the size and orienta
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