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1

Bohrer, Robert A. "A Festo Feast." Biotechnology Law Report 21, no. 6 (December 2002): 511. http://dx.doi.org/10.1089/073003102761697882.

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2

Temmyo, Ichiro, Michio SHIKANO, and Toshiyuki Nishimura. "FESTO PNEUMATIC SERVO SYSTEM." Proceedings of the JFPS International Symposium on Fluid Power 1996, no. 3 (1996): 657–60. http://dx.doi.org/10.5739/isfp.1996.657.

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3

Carey, Christopher. "Book Review: Festo Kivengere." Theology 94, no. 762 (November 1991): 469–70. http://dx.doi.org/10.1177/0040571x9109400625.

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4

Familant, S. B. "Festo: The plague continues." Journal of Commercial Biotechnology 9, no. 2 (January 1, 2003): 143–46. http://dx.doi.org/10.1057/palgrave.jcb.3040020.

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5

Wilson, Mike. "Festo drives automation forwards." Assembly Automation 31, no. 1 (February 22, 2011): 12–16. http://dx.doi.org/10.1108/01445151111104128.

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6

Prigodich, Raymond P. "Book Review: Festo Kivengere: A Biography." Missiology: An International Review 22, no. 2 (April 1994): 231. http://dx.doi.org/10.1177/009182969402200208.

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7

Rooks, Brian W. "Festo opens new UK automation centre." Assembly Automation 17, no. 1 (March 1997): 42–43. http://dx.doi.org/10.1108/01445159710163445.

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8

Podržaj, Primož. "PID Controller Implemented in Festo CDPX." MATEC Web of Conferences 260 (2019): 02008. http://dx.doi.org/10.1051/matecconf/201926002008.

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In this paper, we describe the procedure for the implementation of the PID controller in the Festo CDPX operator unit. These units enable the execution of the control algorithm and human machine interface in a single unit. In our laboratory the unit is used to teach the students about the basics of control systems. For this purpose, one of the most common closed loop control systems for the education purposes was selected. It is a water level control system. In this paper the design of the whole system is presented. The need for a PI control algorithm is also explained. The programming of the operator unit CDPX, both in Festo CoDeSys and Designer Studio is explained. Such a simple system has turned out to be a great educational tool for Control Theory and Programmable Logic Controller related subjects.
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9

Fox, Jeffrey L. "“Festo” manifesto heard before US Supreme Court." Nature Biotechnology 20, no. 2 (February 2002): 103. http://dx.doi.org/10.1038/nbt0202-103a.

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10

Murashige, Kate H. "Festo, Johnson & Johnston, and Written Description." Biotechnology Law Report 21, no. 6 (December 2002): 536–39. http://dx.doi.org/10.1089/073003102761697918.

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11

Walker, Ulrich, and Péter Horváth. "Organisation des Controllings bei der FESTO AG." Controlling 19, no. 8-9 (2007): 501–4. http://dx.doi.org/10.15358/0935-0381-2007-8-9-501.

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12

Lanciotti, Settimio. "Due note al 'de verborum significatu' di Festo." Materiali e discussioni per l’analisi dei testi classici, no. 27 (1991): 131. http://dx.doi.org/10.2307/40235991.

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13

Wegner, Harold C. "Doctrine of Equivalents in a Post-Festo World." Biotechnology Law Report 21, no. 6 (December 2002): 512–24. http://dx.doi.org/10.1089/073003102761697891.

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14

Sárosi, József, Zoltán Fabulya, János Gyeviki, Gábor Keszthelyi-Szabó, and Péter Szendró. "Investigation of accuracy of the newest function approximation for the force generated by pneumatic artifial muscle." Analecta Technica Szegedinensia 7, no. 1-2 (January 24, 2013): 39–49. http://dx.doi.org/10.14232/analecta.2013.1-2.39-49.

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The newest and most promising type of pneumatic actuators is the pneumatic artificial muscle (PAM). Different designs have been developed, but the McKibben muscle is the most popular and is made commercially available by different companies (e. g. Fluidic Muscle manufactured by Festo Company). The most often mentioned characteristic of PAMs is the force as a function of pressure and contraction. In this paper our newest function approximation for the force generated by Fluidic Muscles is shown that can be generally used for different muscles made by Festo Company.
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15

Wagner, R. Polk. "Reconsidering Estoppel: Patent Administration and the Failure of Festo." University of Pennsylvania Law Review 151, no. 1 (November 2002): 159. http://dx.doi.org/10.2307/3313009.

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16

Frank, S. J. "Festo, schmesto! [patent law and the doctrine of equivalents]." IEEE Spectrum 39, no. 7 (July 2002): 38–39. http://dx.doi.org/10.1109/mspec.2002.1015437.

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17

Nikolov, E., N. Nikolova, and B. Grasiani. "Control System of Physical Laboratory Festo-Model Installation of Technology." Information Technologies and Control 14, no. 3 (September 1, 2016): 7–17. http://dx.doi.org/10.1515/itc-2017-0007.

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Abstract The work proposed analytical modeling the processes in laboratory pneumatic FESTO-model. The characteristics of the pro-posed analytical model are simulated and analyzed. Systems for control of laboratory installation are synthesized. Designing control systems are modeled and their performance is analyzed. Is confirmed and proven their efficiency.
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18

Velasco, Santiago, and José Gómez Galán. "El disco de Festo y otros sistemas de escritura perdidos." Fronteras de la Ciencia 6 (2019): 86–97. http://dx.doi.org/10.18562/fdlc0098.

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19

Kovács, István, and Dávid Balázs. "FESTO MPS állomás átalakítása és modernizálása kiberfizikai térbe történő kiterjesztéssel." International Journal of Engineering and Management Sciences 4, no. 3 (September 9, 2019): 10–14. http://dx.doi.org/10.21791/ijems.2019.3.2.

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A dolgozatunk során egy gyártócella megvalósításával foglalkoztunk. Ehhez a FESTO MPS moduljait használtuk fel. A gyártócella vezérlése PLC-vel történik. Nem csak az egyedi elrendezést és munkafolyamatot valósítottunk meg, hanem új funkciókkal is bővítettük a rendszert. Ez két vezérlő egység használatát jelenti, amelyből egy a folyamat irányításáért felel, míg a másik egy webes felületet kezel. A webes felületen láthatjuk az elkészült munkadarabokat tartalmazó raktárt, és különböző munkadarabokból összeállított palettákat rendelhetünk onnan, vagy a raktározásra kerülő munkadarabok típusát és mennyiségét is beállíthatjuk a raktárban.
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20

Nieminen, Marko, Toni Koskinen, and Lauri Repokari. "Multi-Disciplinary User Interface Construction: Case Festo Flexible Assembly Unit." IFAC Proceedings Volumes 33, no. 26 (September 2000): 1033–38. http://dx.doi.org/10.1016/s1474-6670(17)39282-0.

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21

Walker, Ulrich, and Péter Horváth. "Weiterentwicklung der Planung bei der Festo AG & Co. KG." Controlling 15, no. 9 (2003): 499–502. http://dx.doi.org/10.15358/0935-0381-2003-9-499.

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22

Wahyuni, Sri. "PENGGUNAAN FESTO FLUIDSIM SEBAGAI MEDIA PEMBELAJARAN UNTUK MENINGKATKAN HASIL BELAJAR SISWA KELAS X PELAJARAN DASAR LISTRIK DAN ELEKTRONIKA DI SMK NEGERI 2 BANDA ACEH." CIRCUIT: Jurnal Ilmiah Pendidikan Teknik Elektro 3, no. 2 (September 3, 2019): 123. http://dx.doi.org/10.22373/crc.v3i2.5160.

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Festo Fluidsim is a computer-based learning media that can be used to facilitate students inunderstanding learning methods. Festo Fluidsim is an application for making basic electronic circuits,then followed by pneumatic and electro-pneumatic circuits that can be directly simulated. The mediais suitable for use as a learning medium to help improve the learning outcomes of students majoringin industrial electronics engineering who are studying the basic subjects of electricity and electronicsat SMK Negeri 2 Banda Aceh. The type of this research is a quantitative study using the experimentalmethod, forming 2 study groups, control and subsequent experiments conducted data collection withthe test method. The results obtained indicate an increase in the value of learning outcomes from anaverage pretest 46.19 to an average at 88.21 posttest. Similarly, based on the results of statistical testsconducted, obtained an average value of N-Gain 0.79 <0.7 which can be categorized as high, the resultsof the criteria of pretest significance value 0.13> 0.05 and posttest significance value 0.59> 0 , 05which is normally distributed, and subsequently gets a Sig. (2-tailed) score is 0,000 which is smallerthan 0.05, so it can be concluded that the use of Festo Fluidsim as a learning medium can effectivelyimprove student X learning outcomes of Elementary subjects Electricity and Electronics SMK Negeri2 Banda Aceh
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23

ROMUSZEWSKI, Pawe�. "Modelowanie i identyfikacja stanowiska dydaktycznego Festo MPS® PA Compact Workstation." PRZEGL�D ELEKTROTECHNICZNY 1, no. 3 (March 5, 2015): 154–58. http://dx.doi.org/10.15199/48.2015.03.36.

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24

Kulakov, B., and D. Kulakov. "Hardware-in-the-loop modeling applied to FESTO hydraulic learning system." IOP Conference Series: Materials Science and Engineering 963 (November 13, 2020): 012024. http://dx.doi.org/10.1088/1757-899x/963/1/012024.

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25

Israelsen, Ned A., Donna Perdue, and John G. Rickenbrode. "Festo and Biotechnology Patent Prosecution: Consequences for the Practical Patent Practitioner." Biotechnology Law Report 21, no. 6 (December 2002): 540–50. http://dx.doi.org/10.1089/073003102761697927.

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26

Petre, I. M. "An approach regarding some performances of a FESTO pneumatic muscle actuator." IOP Conference Series: Materials Science and Engineering 1009 (January 16, 2021): 012047. http://dx.doi.org/10.1088/1757-899x/1009/1/012047.

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27

Schädeli, Ursula. "Kugelgewindetrieb mit neuartiger Kugelrückführung." Konstruktion 69, no. 10 (2017): 48–49. http://dx.doi.org/10.37544/0720-5953-2017-10-48.

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Die Eichenberger Gewinde AG hat einen neuen kaltgerollten Kugelgewindetrieb (KGT) entwickelt. Das schweizerische Unternehmen, das mittlerweile zur Festo-Gruppe gehört, ist bekannt für qualitativ hochwertige Gewindetriebe, die auf hoher konstruktiver Kompetenz und fertigungstechnischem Know-how basieren. Dank ihres ausgeklügelten Kugelrückführungs-Systems setzen die neuen Kugelgewindetriebe Maßstäbe.
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28

Visan, Alexandra Liana, Nicolae Alexandrescu, and Ionel Nita. "An Application of Finite Element Modeling to Pneumatic Artificial Muscle from FESTO." Advanced Materials Research 463-464 (February 2012): 818–21. http://dx.doi.org/10.4028/www.scientific.net/amr.463-464.818.

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The purpose of this article is to introduce and to present the Pneumatic Artificial Muscle (PAMs) the most used in robotics and automated applications in Europe and Asia. Many treatises discussed the mathematical and numerical modeling, especially for McKibben muscle type. Also, I am going to explain the working principles of PAMs to understand their behavior, how generate forces and translations. Modeling theoretical application made by the others will be discussed and a Finite Element Method Analyze (FEM) of a muscle designee by FESTO will be shown and also will underline the importance of computer design phase applied in robotics and automation. After that we can create a test stand for pneumatic muscle to confirm the catalog sheet and to implement them in a prostheses device power by PAMs.
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29

Otto, Boris. "Managing the business benefits of product data management: the case of Festo." Journal of Enterprise Information Management 25, no. 3 (April 13, 2012): 272–97. http://dx.doi.org/10.1108/17410391211224426.

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30

Gogoris, Adda C., and Sandra S. Lee. "Festo and the US Supreme Court: Be careful what you wish for." Nature Biotechnology 20, no. 8 (August 2002): 845–46. http://dx.doi.org/10.1038/nbt0802-745.

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31

Bučányová, Marcela, and Eva Riečičiarová. "Specification of the Component Base for CNC Processing Centre EMCO Concept MILL 105." Applied Mechanics and Materials 693 (December 2014): 9–15. http://dx.doi.org/10.4028/www.scientific.net/amm.693.9.

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Given contribution deals with a group technology and methods of classification of the components. Author proposed a component base for CNC processing centre EMCO Concept MILL 105, which is a part of manufacturing system iCIM 3000 by FESTO. Designed manufacturability components are coded and classified based on shape similarity.
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32

Bučányová, Marcela. "Component Base for CNC Processing Center EMCO Concept TURN 105." Applied Mechanics and Materials 474 (January 2014): 242–48. http://dx.doi.org/10.4028/www.scientific.net/amm.474.242.

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Given contribution deals with a group technology and methods of classification of the components. Author proposed a component base for CNC processing center EMCO Concept TURN 105, which is a part of manfucturing system iCIM 3000 by FESTO. Designed manufacturable components are coded and classified based on shape similarity.
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33

Ungar, Đorđe. "UDALJENO PRIKUPLJANJE PODATAKA O POTROŠNJI VAZDUHA POD PRITISKOM AUTOMATIZOVANIH SISTEMA." Zbornik radova Fakulteta tehničkih nauka u Novom Sadu 34, no. 02 (December 17, 2018): 295–98. http://dx.doi.org/10.24867/01gi00ungar.

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Osnovni zadatak ovog rada jeste projektovanje aplikacije za udaljeno prikupljanje poda­taka o potrošnji vazduha pod pritiskom automatizovanih sistema koja nosi ime ShareBOX. Svrha aplikacije je da skladišti rezultate merenja dobijenih pomoću Festo Air Box portabilne laboratorije i da se ti rezultati merenja podele sa ostalim kolegama ili saradnicima radi zajed­ničke analize.
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34

Bondrea, Ioan, and Radu Emanuil Petruse. "Augmented Reality - An Improvement for Computer Integrated Manufacturing." Advanced Materials Research 628 (December 2012): 330–36. http://dx.doi.org/10.4028/www.scientific.net/amr.628.330.

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In order to be competitive companies evolved towards a Computer-Integrated Manufacturing system. We present in this paper an overview of potential applications of Augmented Reality that can provide positive results to the CIM approach. Also the paper comprises the results regarding how Augmented Reality is successfully tested and implemented on a FESTO assembly line.
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35

Onot, Patrick, and Uche M.Dimkpagu. "Deployment of the Festo PA Workstation for Undergraduate Training on Industrial Process Automation." International Journal of Engineering and Science 5, no. 11 (November 2016): 58–67. http://dx.doi.org/10.9790/1813-05011058067.

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36

Xie, Jia Lin. "Festo (China) Ltd.'s Qiu Hualai on success of foreign enterprises in China." Thunderbird International Business Review 43, no. 5 (2001): 617–24. http://dx.doi.org/10.1002/tie.1018.

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37

Krzysztofek, Konrad, and Dariusz Podsiadły. "Sensors usage in electro-pneumatic systems." AUTOBUSY – Technika, Eksploatacja, Systemy Transportowe 19, no. 6 (June 30, 2018): 528–31. http://dx.doi.org/10.24136/atest.2018.126.

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The article presents a description of the FESTO DI-DACTIC laboratory stand, consisting of a assembly table, a set of actuators, electro-pneumatic valves, proximity compo-nents and FluidSim-P software. In pneumatic and electro-pneumatic control systems, ef-fective operation depends on the possibility of using sensors and their correct operation. Sensors that work without con-tact have been widely used.
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38

Vagas, Marek, Alena Galajdová, and Martin Džongov. "PROPOSAL OF A VISION SYSTEM FOR AUTOMATED LINE MPS 500." TECHNICAL SCIENCES AND TECHNOLOGIES, no. 4(18) (2019): 108–13. http://dx.doi.org/10.25140/2411-5363-2019-4(18)-108-113.

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Urgency of the research. Research needs from this area are based on designing of effective and affordable vision system solution with aim of automation level increasing in content industry 4.0 and should be an advantageous solution mainly for SMEs. In overall, development direction in vision system area pointed to the necessity for innovative technologies implementation that starts from supply chains up to customers. Target setting. Main aim of article is to propose a solution for image processing of selected assembly parts at specified automated line from FESTO company to automate monitoring and evaluating of obtained data together with supporting of educational activities for field: „automation and control of machines and processes“ of our students, at other hand. Actual scientific researches and issues analysis. Currently, vision systems have enjoyed a great popularity, their implementation into the automated lines grown up and application range more and wider. Supporting from manufacturers is strong, so far, we consider that useful and well-priced solution will be benefit in research area. Uninvestigated parts of general matters defining. Existing realized and implemented solutions are based on solid whole concept from suppliers, starting from connectivity through image processing up to evaluation of situations (pictures, state etc...). The research objective. Purpose of an article is to provide an alternative proposal for implementation of affordable and alternative vision system solution into the selected automated line from FESTO company. The statement of basic materials. Most of realized projects are based on complex vision system solution. Customized and well – priced proposal are rarely, so, we consider, that should be useful to contribute into research community in form of an article from this area. Conclusions. Presented article offer fundamental deployment of vision system into the automated line from company FESTO with aim of intelligence level increasing of this line. Last, but not least, purpose of automated line will be educational training with focus to experimental verification of students knowledges, primarily from pneumatics, compact PLC and vision system, of course.
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39

Drechsel, Theo. "Mit kompetentem Partner auf Erfolgskurs." VDI-Z 161, Special-I (2019): 36–37. http://dx.doi.org/10.37544/0042-1766-2019-special-i-36.

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Der Werkzeugbau von Festo Polymer in St. Ingbert zählt zu den modernsten in ganz Deutschland und wurde 2017 als „Werkzeugbau des Jahres“ ausgezeichnet. Bei EDM (Electrical Discharge Machining), Elektrodenfräsen und Hartbearbeitung setzen die Saarländer konsequent auf Automatisierung. Um den 24/7-Betrieb weiter zu verbessern, wurden gemeinsam mit MMC Hitachi Tool die Fräsprozesse analysiert und optimiert – mit dem Ergebnis von weniger Werkzeugtypen und mehr Prozesssicherheit.
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40

Longère, Jean. "Jacques Vitry († 1240). Deux sermons In festo sancti Martini du recueil inédit De Sanctis." Sacris Erudiri 38 (January 1998): 443–83. http://dx.doi.org/10.1484/j.se.2.303844.

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41

Šarga, Patrik, and Tomáš Záboly. "MODERNIZATION OF THE TRANSPORT SYSTEM CONTROL OF THE PRODUCTION SYSTEM." TECHNICAL SCIENCES AND TECHNOLOGIES, no. 4(18) (2019): 141–47. http://dx.doi.org/10.25140/2411-5363-2019-4(18)-141-147.

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Urgency of the research. Nowadays, it is crucial to keep up with modern technologies. Therefore, this work aims to modernize the production system Festo MPS 500. Thanks to this, it will be possible to apply to the system technologies meeting the latest trends in Industry 4.0. The MPS 500 system prepared in this way can be used to research new trends in accordance with Industry 4.0. The modernized MPS 500 system will also find use in the education of students in the field of automation and mechatronics so that they are sufficiently prepared for practice. Target setting. The goal of the research was to modernize the transport system of the modular production system Festo MPS 500 according to Industry 4.0 platform. Actual scientific researches and issues analysis. When upgrading the system MPS 500 and preparing this paper, we took into account both current sources – publications and papers dealing with the current state of Industry 4.0 and modular production systems as well as existing modular production systems based on Industry 4.0 platform. Uninvestigated parts of general matters defining. At this stage of the research, data acquisition from the system MPS 500 and interconnection with the cloud was not realized. The research objective. The purpose of this article is to modernize the MPS 500, which will allow focusing on Industry 4.0 research specifically for the deployment of Cyber-physical systems, Internet of Things, Big Data, Cloud Computing. The statement of basic materials. Effective research of the new technologies in the industry requires to use modern systems which meet the criteria of Industry 4.0 platform. So the original system Festo MTS 500 was upgraded by systems from Siemens. Conclusions. The main aim of this work was to modernize the transport system of the production system MPS 500. Elements of the system management were changed, and a new control program was created in the TIA Portal environment. The functionality of the MPS 500 was subsequently verified, where the full functionality of the system was confirmed. It makes the MPS 500 ready for further expansion in accordance with Industry 4.0.
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Rad, Ciprian Radu, Olimpiu Hancu, Vistrian Maties, and Ciprian Lapusan. "Parameter Identification and Modeling of a Pneumatic Proportional Valve with Applicability in Control Design of Servo-Pneumatic Systems." Applied Mechanics and Materials 658 (October 2014): 700–705. http://dx.doi.org/10.4028/www.scientific.net/amm.658.700.

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The key element in a servo-pneumatic actuation system is the control valve. This paper presents a method for parameter identification and modeling the flow characteristic of a FESTO MPYE-5-1/8-HF-101B proportional valve. An experimental setup and a procedure for parameter identification is presented in the paper. Simulation and experimental results are in agreement and the model of the valve could be used in high-accuracy positioning control design of pneumatic servo-systems.
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43

Deaconescu, Tudor, and Andrea Deaconescu. "Study Concerning the Hysteresis of Pneumatic Muscles." Applied Mechanics and Materials 841 (June 2016): 209–14. http://dx.doi.org/10.4028/www.scientific.net/amm.841.209.

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A known phenomenon during the contraction/expansion cycles of pneumatic muscles is the occurrence of hysteresis, caused by the elasticity of their component materials. The inherent hysteresis manifest in pneumatic muscles increases the non-linearity of the systems they are included in and consequently the complexity of the related control systems. The paper discusses a number of experimental results obtained for the hysteresis related behaviour of a small size Festo pneumatic muscle, where the specific hysteresis loops were highlighted via isotonic testing.
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44

Niu, Hai Long, Qin He Gao, and Xin Jiang Liu. "Design of the Experimental System of Electromechanical Control Based on Soft PLC." Applied Mechanics and Materials 644-650 (September 2014): 618–21. http://dx.doi.org/10.4028/www.scientific.net/amm.644-650.618.

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Aimed at the disadvantage of the experiment of electromechanical control, such as the high cost of the hardware and the unchangeable experiment, an experimental system based on soft PLC was designed which consists of a personal computer with a CP5611 communication card, CPX terminal, FESTO hydraulic platform and software of soft PLC; it also had human-computer interface programmed by LabVIEW to monitor the system and implement control. This system has advantages of strong universality, good flexibility, low cost and simple development process.
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45

Khokhlovskiy, V. N., V. V. Potekhin, and E. M. Razinkina. "Role of the SPbPU-FESTO «Synergy» Centre in the Development of Engineering Competences and Skills." EAI Endorsed Transactions on Energy Web 5, no. 19 (July 10, 2018): 155045. http://dx.doi.org/10.4108/eai.10-7-2018.155045.

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46

Kulakov, B., D. Kulakov, and Long Qi. "Gradient identification method of the model parameters for electrohydraulic servo drive of FESTO learning system." IOP Conference Series: Materials Science and Engineering 963 (November 13, 2020): 012025. http://dx.doi.org/10.1088/1757-899x/963/1/012025.

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47

Duffy, John F. "The Festo Decision and the Return of the Supreme Court to the Bar of Patents." Supreme Court Review 2002 (January 2002): 273–342. http://dx.doi.org/10.1086/scr.2002.3109720.

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48

Serignolli, Lya. "A metonímia em fontes antigas." Classica - Revista Brasileira de Estudos Clássicos 31, no. 1 (August 1, 2018): 89–110. http://dx.doi.org/10.24277/classica.v31i1.590.

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Este artigo tem por fim discutir os principais aspectos da metonímia de acordo com os gramáticos e rétores latinos. Primeiramente, serão elencadas definições desse tropo (ou figura) segundo rétores e gramáticos latinos, tais como o anônimo da Retórica a Herênio, Cícero, Quintiliano, Donato, Festo e Isidoro de Sevilha. Em segundo lugar, serão observadas as diversas espécies de metonímia encontradas em textos antigos. Por fim, serão investigadas as relações entre a metonímia e outras figuras e tropos, especialmente a metáfora, a sinédoque e a catacrese.
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49

Breido, I. V., S. M. Stazhkov, A. V. Bobryakov, V. G. Khomchenko, A. A. Kabanov, and B. Katalinic. "International University Network Internet Project of Integrated Engineering Education." Higher Education in Russia 28, no. 1 (March 7, 2019): 9–20. http://dx.doi.org/10.31992/0869-3617-2019-28-1-9-20.

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The transfer of educational technologies of the OECD countries for higher technical education in the CIS requires significant financial and material resources. It is advisable to unite pedagogical teams and the laboratory base of universities that train specialists in related specialties using the Internet. The international scientific and educational network Internet project “Synergy” has been implemented with the support of the concern “Festo” (Germany). The universities directly involved in the regular educational activities of the project are NIU Moscow Power Engineering Institute, Peter the Great St. Petersburg Polytechnic University, the Baltic State Technical University “VOENMECH” named after D.F. Ustinova, Omsk State Technical University and Karaganda State Technical University. The laboratories of the project participants are equipped with modern training stands and multimedia tools for conducting on-line courses and laboratory work in the remote access mode produced by the leading domestic and foreign companies including world leaders in the field of automation and robotics Festo, Siemens, Mitsubishi Auto Electrician.Regular online training has been organized with the use of exchange, composite and embedded module courses. The experience gained in the process of project implementation became the basis for the development of a new interdisciplinary program for the specialized magistracy as “Robotics. Control systems” for the Kazakhstan industry. The international university network project “Synergy” can become the basis for the practical implementation of the principles of the Bologna process, taking into account the specifics of the CIS countries.
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Liu, Jian, and Yuan Jun Lv. "Control of Testing Device Based on FluidSIM-P." Applied Mechanics and Materials 44-47 (December 2010): 3702–5. http://dx.doi.org/10.4028/www.scientific.net/amm.44-47.3702.

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Pneumatic control technology of Test Equipment has been introduced which is used to Test product‘s hardness. The structure and working principle of detector is introduced, its pneumatic loop and PLC control loop have been designed and optimized by way of the software of FluidSIM-P which belongs to FESTO in Germany. Now, the detector has gained good effect on detecting a kind of vehicle parts, the simulation result is similar to Actual Use result in factory, The research and application in this method are help for developing new electromechanical equipment.
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