Academic literature on the topic 'Arduino PLC'

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Journal articles on the topic "Arduino PLC"

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Candra Azhari Valdy, Rio, and Zaenal Abidin. "Prototipe Papan Trainer PLC Sederhana Berbasis Arduino Uno Dengan Menggunakan Software Outsel Studio." Jurnal JEETech 4, no. 2 (2023): 127–38. http://dx.doi.org/10.32492/jeetech.v4i2.4207.

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PLC practicum is needed to support electrical engineering graduate students as a provision of experience operating PLC. To support the needs of PLC trainers in the electrical engineering laboratory at Universitas Islam Lamongan (Unisla), it is necessary to conduct a study that exploit the Arduino Uno as a control controller by making a prototype of a simple PLC trainer board based on the Arduino Uno using out seal Studio software. On the testing tool, the author uses an example of a logic gate ladder which then the ladder diagram will be created in the studio out seal software then will be upl
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Hidayati, Qory, Fathur Zaini Rachman, Nur Yanti, Nurwahidah Jamal, and Suhaedi Suhaedi. "Desain Model dan Simulasi PLC-Mikrokontroler sebagai Modul Pembelajaran Berbasis PLC." Jurnal Teknologi Rekayasa 2, no. 2 (2017): 73. http://dx.doi.org/10.31544/jtera.v2.i2.2017.73-82.

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Programmable Logic Controller (PLC) merupakan suatu piranti yang dibuat sebagai pengganti kumpulan relai-relai mekanik yang digunakan dalam sistem kontrol. PLC berkerja dengan cara membaca instruksi-instruksi dari masukannya. Karena PLC pada umumnya memiliki harga yang cukup mahal dan hanya beberapa orang yang dapat mempelajarinya, maka dibuatlah PLC trainer. PLC trainer dirancang menggunakan mikrokontroler Arduino Uno, modul input (berupa: toggle switch, push button, dan limit switch), dan modul output (berupa: LED, seven segment, motor DC, dan buzzer). PLC trainer juga dilengkapi prototype l
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Kuriti, Jogi Naidu. "PLC Development with Arduino Uno." International Journal for Research in Applied Science and Engineering Technology 13, no. 3 (2025): 2569–74. https://doi.org/10.22214/ijraset.2025.66974.

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This paper explores the use of the Arduino Uno microcontroller as a cost-effective and flexible alternative to traditional Programmable Logic Controllers (PLCs) for small-scale industrial automation. It outlines the core concepts of PLCs and examines the Arduino Uno's suitability, emphasizing its digital and analog I/O capabilities, communication interfaces, and interrupt handling. The study demonstrates programming the Arduino Uno with PLC-like functions using the Arduino IDE and custom libraries. Practical examples, such as motor control and sensor integration, are provided. Performance and
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Wardhana, Firza, Sunu Pradana, and Khairuddin Karim. "Pemrograman Sistem Arduino Nano dan Arduino Mega Menggunakan Ladder Logic." PoliGrid 2, no. 2 (2021): 35. http://dx.doi.org/10.46964/poligrid.v2i2.704.

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PLC merupakan salah satu alat kendali yang dirancang untuk mengendalikan dan mengatur jalannya suatu proses industri secara otomatis. Salah satu bahasa yang umum dipakai untuk memrogram PLC adalah ladder logic. Untuk dapat melakukan pemrograman dengan baik, diperlukan waktu yang cukup untuk mempelajari dengan cara mencoba langsung di sistem alat. Tetapi harga perangkat PLC industrial cukup mahal, sehingga menyulitkan mahasiswa untuk dapat dengan leluasa mempelajarinya. Dengan demikian diperlukan suatu cara agar mahasiswa dapat berlatih secara intensif tanpa terkendala faktor biaya yang mahal.
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Topan, Paris Ali, and Indra Darmawan Indra. "Desain perangkat praktikum Programmable Logic Controller (PLC) Berbasis Arduino Nano." DIELEKTRIKA 10, no. 2 (2023): 155–61. http://dx.doi.org/10.29303/dielektrika.v10i2.334.

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Programmable Logic Controller (PLC) merupakan perangkat pengendali yang umum digunakan pada industri, sehingga sudah menjadi suatu keharusan bagi pelajar SMK dan mahasiswa teknik elektro untuk mengetahui prinsip kerja dan cara pemrogramannya. Untuk mempelajari sistem PLC diperlukan perangkat PLC itu sendiri dan beberapa komponen pendukung yang memiliki harga yang cukup mahal. Penelitian ini mencoba untuk mendesain suatu perangkat simulator PLC yang terjangkau dengan hanya memanfaatkan Arduino Nano sebagai microprocessor dan Outseal PLC sebagai editor untuk pemrograman PLC berbasis Ladder Diagr
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Palanisamy, Aravindh. "Home Automation Using PLC and Arduino." Acta Mechanica Slovaca 24, no. 1 (2020): 56–68. http://dx.doi.org/10.21496/ams.2020.021.

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Edbert, Bill, and Faisal Wahab. "Analisis perbandingan nilai ukur sensor load cell antara PLC Delta dengan Arduino Uno." JITEL (Jurnal Ilmiah Telekomunikasi, Elektronika, dan Listrik Tenaga) 2, no. 1 (2022): 75–84. http://dx.doi.org/10.35313/jitel.v2.i1.2022.75-84.

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Pembacaan nilai ukur dari sensor load cell dapat dilakukan secara digital menggunakan perangkat pengendali seperti Programmable Logic Controller (PLC), Arduino, Raspberry, dan lainnya. Hasil nilai ukur antara sensor load cell pada timbangan digital dan nilai ukur pada timbangan konvensional atau manual terkadang memiliki perbedaan yang sangat signifikan diantara keduanya. Oleh karena itu, pada penelitian ini akan dilakukan pengukuran sensor load cell menggunakan dua macam perangkat pengendali sebagai pembaca nilai sensor dan mengkonversinya menjadi satuan massa gram. Pengujian dilakukan dengan
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Safitri, Anggi Mega, Endryansyah ., Puput Wanarti Rusimamto, and I. Gusti Putu Asto Buditjahjanto. "Rancang Bangun Trainer Dan Modul Variasi Input PLC Berbasis Arduino Menggunakan PLC Omron CP1E E30DR-A." JURNAL TEKNIK ELEKTRO 10, no. 2 (2021): 413–23. https://doi.org/10.26740/jte.v10n2.p413-423.

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Abstrak Programmable Logic Controller (PLC) adalah suatu rangkaian yang terdiri dari processor dan input/output, PLC ini digunakan sebagai alat pengontrol otomatis. Penelitian tugas akhir ini bertujuan untuk menghasilkan media pembelajaran dalam bentuk Trainer PLC dan Modul Variasi Input PLC. Pada Modul Input PLC ini terdapat 8 sensor, yang umumnya digunakan pada dunia industri yaitu: (1) sensor Ultrasonic; (2) sensor Touch; (3) sensor LDR; (4) Limit Swich; (5) sensor Hall Effect; (6) sensor Vibration; (7) sensor Flame, dan (8) sensor Sound. Penelitian ini dilatarbelakangi oleh kurangnya efekt
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Artono, Tri, Efrizon -, Dedi Erawadi, and Firdaus -. "Programmable Logic Controller (PLC) Berbiaya Rendah Berbasis Papan Arduino." Jurnal Abdimas: Pengabdian dan Pengembangan Masyarakat 4, no. 1 (2022): 25–30. http://dx.doi.org/10.30630/jppm.v4i1.681.

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SMK Dhuafa merupakan sekolah swasta di kota Padang milik Yayasan Bakti Nusantara Isafat. Sekolahinimemilikitujuanmuliayakni membantu pendidikan kaum Dhuafa secara gratis. Sekolah ini pun menjadi satu-satunya sekolah kejuruan teknologi gratis yang ada di Sumatera Barat. Bidang keahlian yang dimiliki SMK ini antara lain Teknik Bangunan, Teknik Listrik dan TeknikMesin. Saatini SMK Dhuafa belum memiliki sarana untuk praktikum PLC baik perangkat keras maupun perangkat lunaknya karena harga peralatan tersebut cukup mahal padahal khususnya siswa Teknik Listrik harus memiliki skill di bidang tersebut
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Hidayatullah, Syarif, Asep Andang, and Firmansyah Maulana. "Penerangan jalan umum pintar dengan kendali power line carrier berbasis Internet of Things." JITEL (Jurnal Ilmiah Telekomunikasi, Elektronika, dan Listrik Tenaga) 2, no. 1 (2022): 47–56. http://dx.doi.org/10.35313/jitel.v2.i1.2022.47-56.

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Penerangan jalan umum (PJU) merupakan aspek penting dalam penataan suatu daerah/kota. PJU berbasis Internet of Things (IoT) sebenarnya sudah banyak, baik menggunakan kabel atau nirkabel. Namun, masih banyak PJU yang menggunakan sistem manual untuk mengaktifkan dan mematikannya. Pada lokasi tertentu PJU dengan basis IoT tidak dapat bekerja karena terletak pada daerah pedalaman yang tidak terjangkau oleh internet. Maka, pada penelitian ini digunakan metode power line carrier (PLC) KQ330 sebagai penghantar komunikasi data. Pada tiap PJU dilengkapi Arduino Uno, PLC, dan relai. Arduino Uno akan mem
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Dissertations / Theses on the topic "Arduino PLC"

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Klintrot, Oskar, and Daniel Forsström. "Lastfördelning och effektmätning med Arduino och PLC." Thesis, Linnéuniversitetet, Sjöfartshögskolan (SJÖ), 2014. http://urn.kb.se/resolve?urn=urn:nbn:se:lnu:diva-34236.

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Detta arbete var beställt av Sjöfartshögskolan i Kalmar. Skolan ville ha en enhet som kunde mäta aktiv-, reaktiv- och skenbar effekt, ström, spänning, frekvens och cosϕ på en generator och som kommunicerade vidare dessa värden till en PLC. Detta för att kunna lastfördela lasten mellan ett antal generatorer i kursen Tillämpad elteknik 15 hp där studenterna bygger en generatorinstallation med tre generatorer. Ett funktionsblock för lastfördelning skulle också programmeras. Prototypen som konstruerades baserades på en Arduino Ethernet och kommunikationen löstes med Modbus TCP/IP över Ethernet. Et
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Gran, Erik, and Erik Hård. "Utveckling av koncept för att reglera reaktiv effekt vid generatordrift via PLC : Framtagande och provning av prototyp." Thesis, Linnéuniversitetet, Sjöfartshögskolan (SJÖ), 2019. http://urn.kb.se/resolve?urn=urn:nbn:se:lnu:diva-83408.

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I projektet utreds möjligheterna kring att kunna kontrollera en generators reaktiva effektproduktion genom att styra magnetiseringsströmmen från en PLC. Som metod för styrning från PLC beslutades att en signal på 0-5V skulle användas. För att reglera magnetiseringen, och därmed i förlängningen den reaktiva effekten, beslutades att den befintliga manuella potentiometern skulle ersättas med två parallellkopplade digitala potentiometrar av typen MCP4261 som kontrollerades av en mikrokontroller. Att de digitala potentiometrarna skulle parallellkopplas beslutades efter en förstudie som visade på at
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Kopecký, Jan. "Řídicí obvody kolejového výtahu." Master's thesis, Vysoké učení technické v Brně. Fakulta elektrotechniky a komunikačních technologií, 2020. http://www.nusl.cz/ntk/nusl-413058.

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This master thesis deals with the mechanical and electrical design of the drive of the inclined construction lift. Individual components are selected in the design. Furthermore, a theoretical research is carried out regarding wireless modules and logic controllers. The selection of sensors is made and the method of retrieving signals from sensors and converting them into iputs the control circuits is also outlined. A program is written in Arduino IDE that wirelessly controls the motion of a motor via variable frequency drive.
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Guo, Yijie, and Yaowen Shen. "Design of Automatic System in Ice-cream Shop." Thesis, Blekinge Tekniska Högskola, Institutionen för maskinteknik, 2018. http://urn.kb.se/resolve?urn=urn:nbn:se:bth-16279.

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The focus of this work was to design, develop and implement an automatic scoop system for an ice-cream shop. The main contribution covers programming of PLC and Arduino, LabVIEW, mechanical structure design of scoop, assembly line, timing belt and robotics arm and stress analysis of the structures in the system. This work solved the problem that the scooping ice-cream shop employees need to be supported by technology in their hard work and to improve the efficiency of the ice-cream disposal. The scoop is designed as a new type solving the stress issue. The control system was programmed to use
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Dias, Francisco Almeida Nunes Brito. "Desenvolvimento de ferramenta para interligação de dispositivos utilizando protocolos industriais." Master's thesis, 2015. http://hdl.handle.net/10400.26/16571.

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Devido ao crescimento da aplicação de automação no meio industrial, a competitividade dos vários setores industriais tem vindo a aumentar muito os seus níveis de oferta aos clientes. A gestão de todos os processos dentro de uma indústria é um trabalho de elevada complexidade. Como tal, recorre-se à utilização de ferramentas e tecnologias para o auxílio na execução dos diversos processos, tais como aplicações lógicas, que permitem uma interface gráfica ao utilizador para acesso à informação relevante sobre o estado das entradas e saídas de controlo do processo. Neste aspeto, o controlo, a supe
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Books on the topic "Arduino PLC"

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Seneviratne, Pradeeka. Building Arduino PLCs. Apress, 2017. http://dx.doi.org/10.1007/978-1-4842-2632-2.

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Ward, Hubert Henry. Programming Arduino Projects with the PIC Microcontroller. Apress, 2022. http://dx.doi.org/10.1007/978-1-4842-7230-5.

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Electronica y Arduino: Electronica, Arduino y Arduino Como PLC. Independently Published, 2021.

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Building Arduino PLCs: The essential techniques you need to develop Arduino-based PLCs. Apress, 2017.

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Granados, Misael. Super Libro de Electrónica: Electrónica, Arduino y Microcontroladores PIC. Independently Published, 2021.

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Wireless Radio Frequency Module Using PIC Microcontroller.: The Basics of Wireless Radio Frequency Communications With Using Latest & An Advanced MCU Named PIC. Public Domain, 2012.

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Ward, Hubert Henry. Programming Arduino Projects with the PIC Microcontroller: A Line-By-Line Code Analysis and Complete Reference Guide for Embedded Programming in C. Apress L. P., 2021.

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Ward, Hubert Henry. Programming Arduino Projects with the PIC Microcontroller: A Line-By Line Code Analysis and Complete Reference Guide for Embedded Programming in C. Apress, 2021.

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Book chapters on the topic "Arduino PLC"

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Seneviratne, Pradeeka. "Your First Arduino PLC." In Building Arduino PLCs. Apress, 2017. http://dx.doi.org/10.1007/978-1-4842-2632-2_4.

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Seneviratne, Pradeeka. "Building a Better PLC." In Building Arduino PLCs. Apress, 2017. http://dx.doi.org/10.1007/978-1-4842-2632-2_9.

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Seneviratne, Pradeeka. "Writing PLC-Style Applications with plcLib." In Building Arduino PLCs. Apress, 2017. http://dx.doi.org/10.1007/978-1-4842-2632-2_6.

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Barrett, Steven F. "Arduino PLC IDE and Ladder Logic." In Synthesis Lectures on Digital Circuits & Systems. Springer Nature Switzerland, 2025. https://doi.org/10.1007/978-3-031-68609-2_3.

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Barrett, Steven F. "Arduino PLC IDE and Ladder Logic." In Synthesis Lectures on Digital Circuits & Systems. Springer Nature Switzerland, 2025. https://doi.org/10.1007/978-3-031-85944-1_5.

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Aussawarangkul, Thitisak, S. A. Che Ghani, Pakanun Wattanasinbumrung, and Worapong Sawangsri. "Comparative Study on the Automated Warehouse with Cartesian Robot Using PLC and Arduino." In Lecture Notes in Mechanical Engineering. Springer Nature Singapore, 2023. http://dx.doi.org/10.1007/978-981-99-1245-2_58.

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Seneviratne, Pradeeka. "Arduino at Heart." In Building Arduino PLCs. Apress, 2017. http://dx.doi.org/10.1007/978-1-4842-2632-2_3.

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Seneviratne, Pradeeka. "Getting Ready for the Development Environment." In Building Arduino PLCs. Apress, 2017. http://dx.doi.org/10.1007/978-1-4842-2632-2_1.

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Seneviratne, Pradeeka. "Arduino, Ethernet, and WiFi." In Building Arduino PLCs. Apress, 2017. http://dx.doi.org/10.1007/978-1-4842-2632-2_2.

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Seneviratne, Pradeeka. "Building with an ArduiBox." In Building Arduino PLCs. Apress, 2017. http://dx.doi.org/10.1007/978-1-4842-2632-2_5.

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Conference papers on the topic "Arduino PLC"

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Darsin, Mahros, Irwan Ramadana, Mochamad Edoward Ramadhan, et al. "Arduino Based Dual Cooling System Design for PLA-Titanium Filament Production in 3D Printing." In 2024 IEEE International Conference on Smart Mechatronics (ICSMech). IEEE, 2024. https://doi.org/10.1109/icsmech62936.2024.10812321.

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Suryadarma, Engelbert Harsandi Erik, Pringgo Widyo Laksono, Ilham Priadythama, and Lobes Sudirman. "Accuracy Test of an Open-Loop Control System for Arduino-Based Robotic Arms with a PLA+ 3D-Printed Body for Repetitive Tasks." In INTERNATIONAL CONFERENCE ON APPLIED TECHNOLOGY 2024. Trans Tech Publications Ltd, 2025. https://doi.org/10.4028/p-nhcix2.

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This study presents the design and accuracy testing of an open-loop control system for an Arduino-based robotic arm, featuring a 3D-printed body made from PLA+ material. The robotic arm is engineered to perform repetitive tasks, which demand high precision and reliability. The use of PLA+ offers a lightweight yet durable structure, essential for maintaining the integrity of the robotic arm during extended operations. The open-loop control system, while simpler and more cost-effective than closed-loop alternatives, poses challenges in terms of accuracy due to the lack of feedback mechanisms. A
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Kuang, Yucong. "Communication between PLC and Arduino Based on Modbus Protocol." In 2014 Fourth International Conference on Instrumentation and Measurement, Computer, Communication and Control (IMCCC). IEEE, 2014. http://dx.doi.org/10.1109/imccc.2014.83.

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Kajan, Martin, Jan Sovcik, Frantisek Duchon, Leo Mrafko, Martin Florek, and Peter Beno. "Sensoric subsystem of automated guided vehicle: TCP communication between SIMATIC S7 PLC and Arduino." In 2014 23rd International Conference on Robotics in Alpe-Adria-Danube Region (RAAD). IEEE, 2014. http://dx.doi.org/10.1109/raad.2014.7002258.

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Benić, Juraj, Anđelko Vico, Luka Vučetić, and Željko Šitum. "IOT based Web application concept for monitoring and control of fluid power systems." In International conference Fluid Power 2021. University of Maribor Press, 2021. http://dx.doi.org/10.18690/978-961-286-513-9.26.

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This paper presents a novel concept of the WEB application for monitoring and control of fluid power systems. The proposed concept is based on the internet of things principles. WEB application is built on the Web2py framework which uses Python as the programming language. The client-side of the proposed application is based on the responsive open source AdminLTE dashboard. On the server-side Python is used for executing SQL queries sent to the database and for continuous data logging. The ModbusTCP protocol is used as the communication protocol between the server and systems. The application
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Portero, Alberto, Jesús Lozano, and Santiago Salamanca. "Control de robot cartesiano mediante PLC S7-1200 de Siemens y Arduino para impresión 3D." In XXXIX Jornadas de Automática. Universidade da Coruña. Servizo de Publicacións, 2020. http://dx.doi.org/10.17979/spudc.9788497497565.0322.

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Inzunza Villagomez, Hector Ivan, Beatrice Perez Arce, Ivan Sergio Hernandez Ruiz, and Jose Alejandro Lopez Corella. "Design and implementation of a development environment on ladder diagram (HT-PLC) for Arduino with Ethernet connection." In 2018 IEEE International Conference on Automation/XXIII Congress of the Chilean Association of Automatic Control (ICA-ACCA). IEEE, 2018. http://dx.doi.org/10.1109/ica-acca.2018.8609850.

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Cann, Megan, Robert Speed, Abraham Moreno, and Salim Azzouz. "Design of a Clutching and Braking System to Automate a Chain-Coupled Dual Planetary Gearing Transmission." In ASME 2022 International Mechanical Engineering Congress and Exposition. American Society of Mechanical Engineers, 2022. http://dx.doi.org/10.1115/imece2022-95227.

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Abstract The engineering team at Midwestern State University is working on a double planetary gearing transmission coupled by driving chains and sprockets. The ultimate purpose of this project is to manufacture and automate a transmission apparatus for the Machine Element Design Laboratory. The current team is the fourth team to work on this project and is tasked to build a better entry and exit shaft, as well as a braking system, and automate the entire system. The Willis Gearing Theory was used to determine the system’s theoretical gear ratios. Next, the entry and exit shafts of the transmis
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Cochran, Bryan, Zulfiqar Zaidi, and Bert Bras. "“LEVER” - Low-Cost Electric Vehicle Charging Robot: Development and Testing." In ASME 2023 International Design Engineering Technical Conferences and Computers and Information in Engineering Conference. American Society of Mechanical Engineers, 2023. http://dx.doi.org/10.1115/detc2023-117008.

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Abstract This article describes the design and development of an autonomous Electric Vehicle (EV) charging system. An autonomous EV charger can extend the effective range of autonomous EVs by enabling them to recharge without human intervention. The motivation behind the development of the system was to reduce costs compared to other autonomous EV chargers. As such, the system was developed using consumer grade IoT hardware instead of commercial robotic systems and controllers. The system employs a decentralized control architecture with Robot Operation System (ROS) as its backbone. This contr
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Goranov, Goran, and Pavel Hubenov. "Arduino Nano Signal Processing Board for CoolRunner-2 PLD." In The 6th Virtual Multidisciplinary Conference. Publishing Society, 2018. http://dx.doi.org/10.18638/quaesti.2018.6.1.396.

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