Academic literature on the topic 'Diagrama circuital'

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Journal articles on the topic "Diagrama circuital"

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Ismelda, C. Guerra R., E. Ramos G. Luis, and C. Pérez L. Julio. "Máquina a tres ejes para la fabricación de circuitos impresos (pcb o printed circuit boards)." Observador del Conocimiento Vol. 3 Nº 3 agosto 2016, no. 2343-6212 (2022): 101–11. https://doi.org/10.5281/zenodo.6326158.

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Es un hecho reconocido, el alto nivel de dependencia tecnológica de nuestro país y se considera que una de las variables fundamentales que conllevan a esta dependencia es la baja capacidad para el desarrollo y fabricación de máquinas y prototipos de máquinas para procesos de producción industrial. Siendo el desarrollo del sistema de control electrónico una actividad crucial en el proceso de diseño de una máquina, hemos decidido desarrollar una maquinaria para la fabricación de circuitos impresos. En esta primera parte del pr
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Ismelda, C. Guerra R. ;. Luis E. Ramos G. ;. Julio C. Pérez L. "Máquina a tres ejes para la fabricación de circuitos impresos (pcb o printed circuit boards)." Observador del Conocimiento men 3 número 3 agosto 2016, ISSN: 2343-6212 (2020): 101–11. https://doi.org/10.5281/zenodo.4274118.

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Es un hecho reconocido, el alto nivel de dependencia tecnológica de nuestro país y se considera que una de las variables fundamentales que conllevan a esta dependencia es la baja capacidad para el desarrollo y fabricación de máquinas y prototipos de máquinas para procesos de producción industrial. Siendo el desarrollo del sistema de control electrónico una actividad crucial en el proceso de diseño de una máquina, hemos decidido desarrollar una maquinaria para la fabricación de circuitos impresos. En esta primera parte del pr
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Rueda Panchano, Carlos Iván, Karen Yanela Simisterra Quiñonez, Gorki Iván Rueda Salazar, Luis Fernando Palacios García, and Nayzer Frank Mina González. "Modelación de un convertidor DC-DC reductor en modo de conducción continua." Sapienza: International Journal of Interdisciplinary Studies 3, no. 4 (2022): 250–60. http://dx.doi.org/10.51798/sijis.v3i4.466.

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El convertidor DC-DC reductor (Buck Converter), es un circuito básico de la electrónica de potencia muy utilizado en aplicaciones de reducción de voltajes de corriente continua. En este artículo, se describe la modelación con diagramas de bloques de un convertidor de este tipo. El desarrollo de este trabajo, requirió la interpretación de las ecuaciones matemáticas que representan el comportamiento dinámico en lazo abierto y en lazo cerrado del circuito del convertidor, adaptando estas ecuaciones a la correspondiente representación en diagrama de bloques de Simulink. El diagrama de bloques obte
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Duncan, Ross, Aleks Kissinger, Simon Perdrix, and John van de Wetering. "Graph-theoretic Simplification of Quantum Circuits with the ZX-calculus." Quantum 4 (June 4, 2020): 279. http://dx.doi.org/10.22331/q-2020-06-04-279.

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We present a completely new approach to quantum circuit optimisation, based on the ZX-calculus. We first interpret quantum circuits as ZX-diagrams, which provide a flexible, lower-level language for describing quantum computations graphically. Then, using the rules of the ZX-calculus, we give a simplification strategy for ZX-diagrams based on the two graph transformations of local complementation and pivoting and show that the resulting reduced diagram can be transformed back into a quantum circuit. While little is known about extracting circuits from arbitrary ZX-diagrams, we show that the un
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Stojković, Suzana, Radomir Stanković, Claudio Moraga, and Milena Stanković. "Reversible Circuits Synthesis from Functional Decision Diagrams by using Node Dependency Matrices." Journal of Circuits, Systems and Computers 29, no. 05 (2019): 2050079. http://dx.doi.org/10.1142/s0218126620500796.

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Decision diagrams are a data structure suitable for reversible circuit synthesis. Functional decision diagrams (FDDs) are particularly convenient in synthesis with Toffoli gates, since the functional expressions for decomposition rules used in them are similar to the functional expressions of Toffoli gates. The main drawback of reversible circuit synthesis based on decision diagrams is the usually large number of ancilla lines. This paper presents two methods for the reduction of the number of ancilla lines in reversible circuits derived from FDDs by selecting the order of implementation of no
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Onishchenko, Yevhenii, Dmytro Dosyn, and Andrii Khudyi. "Intelligent System of Constructing Vector Diagrams of Electrical Circuits." Vìsnik Nacìonalʹnogo unìversitetu "Lʹvìvsʹka polìtehnìka". Serìâ Ìnformacìjnì sistemi ta merežì 15 (July 15, 2024): 43–53. http://dx.doi.org/10.23939/sisn2024.15.043.

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Phasor diagrams are a powerful tool for visualizing and understanding the distribution of current, voltage, and power in electrical systems. During Russia's war against Ukraine, our energy industry has become very vulnerable to enemy attacks, and therefore needs a quick and effective recovery. Energy specialists lack software tools for working with the power system, and in the period of development of artificial intelligence, creating such tools is not so difficult. For example, familiar specialists often have to build vector diagrams - tools for visualizing and understanding the distribution
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Malimban, Thea Mayen, Kyle Reece Oropesa, Carlo Z. Geron, Jade Kristine Comia, Remedios G. Ado, and Orland Delfino Tubola. "Hybrid Approaches for Efficient Simulations of 3-Qubit Quantum Fourier Transform (QFT) Circuit Using Quick Quantum Circuit Simulation (QQCS)." ECTI Transactions on Computer and Information Technology (ECTI-CIT) 18, no. 2 (2024): 185–94. http://dx.doi.org/10.37936/ecti-cit.2024182.253574.

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The research devised efficient methods for simulating 3-qubit Quantum Fourier Transform (QFT) circuits using Quick Quantum Circuit Simulation (QQCS). The hybrid methodologies suggested as a solution for efficiently simulating the circuit involve the combination of decision diagrams and property exploitation techniques. This paper incorporated two methods based on decision diagrams: the reordering trick and decision diagram approximations, template-based optimization, and linear reversible circuit synthesis for property exploitation. The proposed approaches significantly improved and optimized
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Barrantes-Pacheco, Stephanie. "Diseño analógico de un estimador de parámetros dependientes de la temperatura de los generadores fotovoltaicos." Revista Tecnología en Marcha 27, no. 8 (2014): 14. http://dx.doi.org/10.18845/tm.v27i8.2226.

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<p class="p1">Este trabajo consiste en el diseño de un circuito analógico capaz de funcionar como un estimador gradiente para convertidores de energía fotovoltaica. Esto, con el fin de realizar una parte del proceso que se necesita para la conversión de energía fotovoltaica en energía eléctrica. El objetivo principal de este estimador es obtener dos parámetros desconocidos los cuales dependen de la temperatura y la manufactura del panel fotovoltaico que se pretende utilizar. Este diseño de estimador no funciona para todos los generadores fotovoltaicos, pero sí para la mayoría de ellos ya
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Chen, Ling, and Zhong Liang Pan. "Fault Detection of Bridging Faults in Digital Circuits by Shared Binary Decision Diagram." Key Engineering Materials 439-440 (June 2010): 1235–40. http://dx.doi.org/10.4028/www.scientific.net/kem.439-440.1235.

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A new test generation method for the bridging faults in digital circuits is proposed in this paper, the method is based on shared binary decision diagram. The shared binary decision diagram can represent many logic functions simultaneously by sharing isomorphic subgraphs, it is used to represent the digital circuits with multiple primary outputs. The binary decision diagram is constructed respectively for the normal circuit and faulty circuit having a bridging fault. The test vectors of the bridging fault can be produced by a XOR operation of the two binary decision diagrams. The experimental
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Ni, Ni San Hlaing, Thet Nwe Cho, and San Naing San. "FPGA Based Digital Logic Circuits Operation for Beginners." International Journal of Trend in Scientific Research and Development 3, no. 5 (2019): 495–501. https://doi.org/10.5281/zenodo.3589979.

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This paper presents the operations of digital circuits based on FPGA. The long term of FPGA is field programmable gate array. FPGA is an integrated circuit designed to be configured by a customer or a designer after manufacturing - hence field programmable . The operations of logic circuits such as logic gates, flip flop and 7 segment are tested using quartus II software and DE2 115 and DE1 FPGA development kits in this paper. Particularly, there are three main portions such as implementation of schematic diagram, designing of the vhdl program, the connection of the control panel and displayin
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Dissertations / Theses on the topic "Diagrama circuital"

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Mikkelson, Joanne M. (Joanne Marie). "Recognition of hand-drawn circuit diagrams." Thesis, Massachusetts Institute of Technology, 1997. http://hdl.handle.net/1721.1/42734.

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Dreijer, Janto F. "Interactive recognition of hand-drawn circuit diagrams." Thesis, Stellenbosch : University of Stellenbosch, 2006. http://hdl.handle.net/10019.1/2477.

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Thesis (MScEng (Electrical and Electronic Engineering))--University of Stellenbosch, 2006.<br>When designing electronic circuits, engineers frequently make hand-drawn sketches of circuits. These are then captured with a computerised design. This study aims to create an alternative to the common schematic capture process through the use of an interactive pen-based interface to the capturing software. Sketches are interpreted through a process of vectorising the user’s strokes into primitive shapes, extracting information on intersections between primitives and using a naive Bayesian clas
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Lindgren, Per. "Applications of decision diagrams in digital circuit design." Doctoral thesis, Luleå tekniska universitet, EISLAB, 1999. http://urn.kb.se/resolve?urn=urn:nbn:se:ltu:diva-16866.

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Design methodology of digital circuits is a rapidly changing field. In the last 20 years, the number of transistors on a single chip has increased from thousands to tens of millions. This sets new demands on the design tools involved, their ability to capture specifications on a high level, and finally synthesize them into hardware implementations. The introduction of Decision Diagrams (DDs) has brought new means towards solving many of the problems raised by the increasing complexity of todays designs. In this thesis, we study their use in VLSI CAD and develop a number of novel applications.
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Goodman, David. "A quantum circuit simulator based on decision diagrams." Ann Arbor, Mich. : ProQuest, 2007. http://gateway.proquest.com/openurl?url_ver=Z39.88-2004&rft_val_fmt=info:ofi/fmt:kev:mtx:dissertation&res_dat=xri:pqdiss&rft_dat=xri:pqdiss:1442482.

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Thesis (M.S. in Computer Engineering)--S.M.U., 2007.<br>Title from PDF title page (viewed Mar. 18, 2008). Source: Masters Abstracts International, Volume: 45-05, page: 2521. Adviser: Mitchell A. Thornton. Includes bibliographical references.
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Ayala, Gaspar Sindy Annetty, Orozco Paula Lisbeth Ramirez, and Gutierrez Luis Enrique Ulco. "Aplicación de herramientas de productividad y mejora en el proceso de ensamblaje de mangueras hidráulicas en la empresa Contix S.A." Bachelor's thesis, Universidad Ricardo Palma, 2015. http://cybertesis.urp.edu.pe/handle/urp/1293.

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La presente tesis buscó analizar y aplicar herramientas de productividad y mejora en el proceso de ensamblaje de mangueras hidráulicas en la empresa Contix S.A. La propuesta de mejora continua tuvo como objetivos: reducir los tiempos de entrega del producto final del proceso de ensamblaje; analizar, identificar y mejorar las demoras en los tiempos de operación, proponer una adecuada distribución de planta y minimizar las fallas de las máquinas. Además, se utilizó técnicas de ingeniería, como por ejemplo; diagrama de actividades, diagrama de flujo, diagrama de recorrido. También el estudio
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Raik, Jaan. "Hierarchical test generation for digital circuits represented by decision diagrams /." Tallinn : TTU Press, 2001. http://www.loc.gov/catdir/toc/fy0611/2006530982.html.

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Limaye, Chinmay Avinash. "Formal Verification Techniques for Reversible Circuits." Thesis, Virginia Tech, 2011. http://hdl.handle.net/10919/33406.

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As the number of transistors per unit chip area increases, the power dissipation of the chip becomes a bottleneck. New nano-technology materials have been proposed as viable alternatives to CMOS to tackle area and power issues. The power consumption can be minimized by the use of reversible logic instead of conventional combinational circuits. Theoretically, reversible circuits do not consume any power (or consume minimal power) when performing computations. This is achieved by avoiding information loss across the circuit. However, use of reversible circuits to implement digital logic requires
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LI, MING. "TEST FREQUENCY SELECTION FOR ANALOG CIRCUITS BASED ON BODE DIAGRAMS AND EQUIVALENT FAULT GROUPING." University of Cincinnati / OhioLINK, 2004. http://rave.ohiolink.edu/etdc/view?acc_num=ucin1085705679.

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Alladi, Phaninder. "Validated Monte Carlo Based Analysis on Circuit Netlist and Zero Suppressed Binary Decision Diagrams." OpenSIUC, 2010. https://opensiuc.lib.siu.edu/theses/171.

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Due to the impact of process variations, timing characteristics of chip is uncertain due to uncertainty in delay of many gates. Gate delays are modeled as Probability Density Functions at discrete time points. Therefore Validated Monte Carlo based analysis is conducted on Circuit Netlist to Calculate Probability Density Function at Circuit output with varying Probability Density Function at internal gates. This Monte Carlo analysis is extended to Zero Suppressed Binary Decision Diagrams for the purpose of calculating Probability Density Function accurately at circuit output. In Monte Carlo ana
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Paaz, Roberto. "Caracterização de intermitência modulacional em dois circuitos de Rössler acoplados." reponame:Biblioteca Digital de Teses e Dissertações da UFRGS, 2004. http://hdl.handle.net/10183/8775.

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Neste trabalho utiliza-se como sistema dinâmico o circuito eletrônico que simula o conjunto de equações acopladas do sistema de Rössler modificado. Este sistema possui uma nâo-linearidade dada por uma função linear por partes e apresenta comportamento caótico para certos valores dos seus parâmetros. A caracterização experimental da dinâmica do sistema de Rössler modificado é realizada através do diagrama de bifurcações. Apresenta-se uma fundamentação teórica de sistemas dinâmicos introduzindo conceitos importantes tais como atratores estranhos, variedades invariantes e também uma análise da es
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Books on the topic "Diagrama circuital"

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Johnson, J. Richard. Schematic diagrams: The basics of interpretation and use. PROMPT Publications, 1994.

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Mark, Smith, ed. Video servicing.: Circuit diagrams. U-View, 2000.

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Services, Technical Information, ed. Circuit diagram manual series. Technical Information Services, 1987.

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(Firm), U.-View, ed. Circuit diagram index guide. U-View, 1994.

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Services, Technical Information, ed. Circuit diagram manual series. Technical InformationServices, 1988.

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Johnson, Gary. Understanding electrical ladder diagrams. Performance Training Associates, 1994.

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1934-, Lawrence Paul, and Whitson James A, eds. How to read electronic circuit diagrams. 2nd ed. TAB Books, 1988.

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IEEE Standards Coordinating Committee 11. Graphic Symbols and Designations. and American National Standards Institution, eds. IEEE standard for logic circuit diagrams. Institute of Electrical and Electronics Engineers, 1986.

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Institute, American National Standards. Logic symbols and diagrams. The Institute of Electrical and Electronics Engineers, 1987.

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Grurl, Thomas, Jürgen Fuß, and Robert Wille. Noise-Aware Quantum Circuit Simulation with Decision Diagrams. Springer Nature Switzerland, 2025. http://dx.doi.org/10.1007/978-3-031-71036-0.

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Book chapters on the topic "Diagrama circuital"

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Robinson, Kevin. "Circuit Diagrams." In Practical Audio Electronics. Focal Press, 2020. http://dx.doi.org/10.4324/9780429343056-7.

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Mei, Jingyi, Marcello Bonsangue, and Alfons Laarman. "Simulating Quantum Circuits by Model Counting." In Computer Aided Verification. Springer Nature Switzerland, 2024. http://dx.doi.org/10.1007/978-3-031-65633-0_25.

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AbstractQuantum circuit compilation comprises many computationally hard reasoning tasks that lie inside #$${\textsf{P}}$$ P and its decision counterpart in $${\textsf{PP}}$$ PP . The classical simulation of universal quantum circuits is a core example. We show for the first time that a strong simulation of universal quantum circuits can be efficiently tackled through weighted model counting by providing a linear-length encoding of Clifford+T circuits. To achieve this, we exploit the stabilizer formalism by Knill, Gottesmann, and Aaronson by reinterpreting quantum states as a linear combination
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Drechsler, Rolf. "Decision Diagrams." In Formal Verification of Circuits. Springer US, 2000. http://dx.doi.org/10.1007/978-1-4757-3184-2_3.

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Mei, Jingyi, Tim Coopmans, Marcello Bonsangue, and Alfons Laarman. "Equivalence Checking of Quantum Circuits by Model Counting." In Automated Reasoning. Springer Nature Switzerland, 2024. http://dx.doi.org/10.1007/978-3-031-63501-4_21.

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AbstractVerifying equivalence between two quantum circuits is a hard problem, that is nonetheless crucial in compiling and optimizing quantum algorithms for real-world devices. This paper gives a Turing reduction of the (universal) quantum circuits equivalence problem to weighted model counting (WMC). Our starting point is a folklore theorem showing that equivalence checking of quantum circuits can be done in the so-called Pauli-basis. We combine this insight with a WMC encoding of quantum circuit simulation, which we extend with support for the Toffoli gate. Finally, we prove that the weights
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Wang, Ziyuan, Bin Cheng, Longxiang Yuan, and Zhengfeng Ji. "FeynmanDD: Quantum Circuit Analysis with Classical Decision Diagrams." In Lecture Notes in Computer Science. Springer Nature Switzerland, 2025. https://doi.org/10.1007/978-3-031-98685-7_2.

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Abstract Applications of decision diagrams in quantum circuit analysis have been an active research area. Our work introduces FeynmanDD, a new method utilizing standard and multi-terminal decision diagrams for quantum circuit simulation and equivalence checking. Unlike previous approaches that exploit patterns in quantum states and operators, our method explores useful structures in the path integral formulation, essentially transforming the analysis into a counting problem. The method then employs efficient counting algorithms using decision diagrams as its underlying computational engine. Th
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Jiménez-Pastor, A., K. G. Larsen, M. Tribastone, and M. Tschaikowski. "Forward and Backward Constrained Bisimulations for Quantum Circuits." In Tools and Algorithms for the Construction and Analysis of Systems. Springer Nature Switzerland, 2024. http://dx.doi.org/10.1007/978-3-031-57249-4_17.

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AbstractEfficient methods for the simulation of quantum circuits on classic computers are crucial for their analysis due to the exponential growth of the problem size with the number of qubits. Here we study lumping methods based on bisimulation, an established class of techniques that has been proven successful for (classic) stochastic and deterministic systems such as Markov chains and ordinary differential equations. Forward constrained bisimulation yields a lower-dimensional model which exactly preserves quantum measurements projected on a linear subspace of interest. Backward constrained
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Glisson, Tildon H. "Circuit Elements, Circuit Diagrams, and Kirchhoff’s Laws." In Introduction to Circuit Analysis and Design. Springer Netherlands, 2010. http://dx.doi.org/10.1007/978-90-481-9443-8_3.

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Sistla, Meghana, Swarat Chaudhuri, and Thomas Reps. "Symbolic Quantum Simulation with Quasimodo." In Computer Aided Verification. Springer Nature Switzerland, 2023. http://dx.doi.org/10.1007/978-3-031-37709-9_11.

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AbstractThe simulation of quantum circuits on classical computers is an important problem in quantum computing. Such simulation requires representations of distributions over very large sets of basis vectors, and recent work has used symbolic data-structures such as Binary Decision Diagrams (BDDs) for this purpose. In this tool paper, we present Quasimodo, an extensible, open-source Python library for symbolic simulation of quantum circuits. Quasimodo is specifically designed for easy extensibility to other backends. Quasimodo allows simulations of quantum circuits, checking properties of the
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Drechsler, Rolf, and Wolfgang Günther. "Circuits Derived from Decision Diagrams." In Towards One-Pass Synthesis. Springer Netherlands, 2002. http://dx.doi.org/10.1007/978-94-010-9898-4_6.

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Drechsler, Rolf, and Wolfgang Günther. "Circuits Derived from Decision Diagrams." In Towards One-Pass Synthesis. Springer US, 2002. http://dx.doi.org/10.1007/978-1-4757-3596-3_6.

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Conference papers on the topic "Diagrama circuital"

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Gao, Ming, Hongcai Chen, Kanjian Zhang, and Haikun Wei. "Efficient Circuit Diagram Retrieval via Graph Representation." In 2024 China Automation Congress (CAC). IEEE, 2024. https://doi.org/10.1109/cac63892.2024.10865733.

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Komoot, Naruenat, and Saprangsit Mruetusatorn. "An Analysis of Electronic Circuits Diagram Using Computer Vision Techniques." In 2024 9th International Conference on Business and Industrial Research (ICBIR). IEEE, 2024. https://doi.org/10.1109/icbir61386.2024.10875940.

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KP, Aswathi, Sunita Yadwad, D. Nirmal Raj, and Shailesh Rastogi. "Enhancing Image Search Engine Accuracy Using Psychological Intention Diagrams." In 2025 3rd International Conference on Integrated Circuits and Communication Systems (ICICACS). IEEE, 2025. https://doi.org/10.1109/icicacs65178.2025.10967745.

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Manepalli, Shreya, Ashutosh Karanam, and Hemanth Bysani. "Automated Extraction from Aerospace Engineering Diagrams Using Computer Vision Techniques." In 2024 5th International Conference on Circuits, Control, Communication and Computing (I4C). IEEE, 2024. http://dx.doi.org/10.1109/i4c62240.2024.10748426.

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Geh, Renato, Denis Mauá, and Alessandro Antonucci. "Learning Probabilistic Sentential Decision Diagrams by Sampling." In Symposium on Knowledge Discovery, Mining and Learning. Sociedade Brasileira de Computação, 2020. http://dx.doi.org/10.5753/kdmile.2020.11968.

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Probabilistic circuits are deep probabilistic models with neural-network-like semantics capable of accurately and efficiently answering probabilistic queries without sacrificing expressiveness. Probabilistic Sentential Decision Diagrams (PSDDs) are a subclass of probabilistic circuits able to embed logical constraints to the circuit’s structure. In doing so, they obtain extra expressiveness with empirical optimal performance. Despite achieving competitive performance compared to other state-of-the-art competitors, there have been very few attempts at learning PSDDs from a combination of both d
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Shelest, V. А., N. I. Ncygulev, and А. P. Sinegubow. "INTELLIGENT MNEMONIC EDITOR IN ELECTRIFICATION." In STATE AND DEVELOPMENT PROSPECTS OF AGRIBUSINESS Volume 2. DSTU-Print, 2020. http://dx.doi.org/10.23947/interagro.2020.2.272-274.

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The article deals with the issues of improving the editors of mnemonic diagrams embedded in the programs of automated control systems for electric power facilities. It is proposed to extend the functions of mnemonic circuit editors from the usual modification of the mnemonic circuit in accordance with the reconstruction of the object of control and management to the formation of modified circuit diagrams and wiring diagrams of secondary circuits. In addition, a preliminary assessment was made of the possibility of analyzing the current state of the electric power facility and making recommenda
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Pender, Emma C., and John J. Healy. "Accessible Circuit Diagrams." In 2022 33rd Irish Signals and Systems Conference (ISSC). IEEE, 2022. http://dx.doi.org/10.1109/issc55427.2022.9826152.

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Kovalev, I. V., and V. V. Losev. "On the issue of researching power electronics elements as the basis for constructing analog regulators." In III All-Russian (national) scientific conference with international participation “Russian science, innovation, education”. Krasoyarsk Science & Technology City Hall, 2024. http://dx.doi.org/10.47813/rosnio-iii.2024.2008.

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The article discusses the issues of studying power electronics elements as the basis for the formation of analogue automatic control systems. Operational amplifiers are characterized as high-performance elements on the basis of which the basic circuits of analogue regulators (P-, I-, PI-, PD-, PID-regulators) can be built. Let us give an example of a functional diagram of a second-order linear system and its equivalent - a circuit implementation using analog elements. A diagram of the simplest version of an operational amplifier using three transistors is presented, and the concept of an ampli
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DesPortes, Kayla, Aditya Anupam, Neeti Pathak, and Betsy DiSalvo. "Circuit diagrams vs. physical circuits: The effect of representational forms during assessment." In 2016 IEEE Frontiers in Education Conference (FIE). IEEE, 2016. http://dx.doi.org/10.1109/fie.2016.7757381.

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Miyazawa, Iko. "A Method for Creating Ladder Diagrams from Timing Diagrams as Sequential Circuits." In 2020 59th Annual Conference of the Society of Instrument and Control Engineers of Japan (SICE). IEEE, 2020. http://dx.doi.org/10.23919/sice48898.2020.9240400.

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Reports on the topic "Diagrama circuital"

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Sarin, N. K. Spray ignition test for mine hydraulic fluids operating procedure. Natural Resources Canada/CMSS/Information Management, 1988. http://dx.doi.org/10.4095/331776.

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This report describes one of the several tests performed on mine hydraulic fluids in accordance with CSA standard M423 187. Emphasis is placed on the sequence of operations and safety procedures necessary while carrying out the spray ignition test. The test is intended to determine the fire-resistance of several types of hydraulic fluids used in mining machinery. Schematic diagrams of the test facility, equipment, and a circuit diagram of the related instrumentation are presented at the conclusion, along with samples of test recording sheets.
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Cao, Zhengjun, Lihua Liu, and Andreas Christoforides. A Note on One Realization of a Scalable Shor Algorithm. Web of Open Science, 2020. http://dx.doi.org/10.37686/qrl.v1i2.81.

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Very recently, Monz, et al. have reported the demonstration of factoring 15 using a scalable Shor algorithm with an ion-trap quantum computer. In this note, we remark that the report is somewhat misleading because there are three flaws in the proposed circuit diagram of Shor algorithm. We also remark that the principles behind the demonstration have not been explained properly, including its correctness and complexity.
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