scholarly journals Mengganti Mikrokontroller Mesin Dust Collector pada PT. xxx dengan PLC OMRON CP1E-NA20CD-R

Author(s):  
Surawan Setiyadi ◽  
Edo Aulia Billy Fany

As a result of the production of powder processing causes a lot of dust around the production machine and factory. This of course can cause pollution. Dust needs to be collected using a Dust Collector (DC) machine. The controller on the DC machine at PT. xxx is often damaged in the control unit and requires repairs at a cost of around Rp. 5,000,000 per unit. In facts there are about 10 units of machines at PT.xxx that must work all. Because of DC machines are often damaged in their controllers, the maintenance department made a development to make replacement DC machine controllers. Namely using the Programmable Logic Controller (PLC). This PLC replaces the microcontroller unit on the DC machine, PLC uses ladder diagram programming language that is easily understood by some people working in the world of control. PLC parts that are easily found in the market and programming languages that are easy to understand and reliability make one of the reasons this PLC is used to replace the microcontroller unit.

2018 ◽  
Vol 4 (2) ◽  
pp. 15-25
Author(s):  
John Ohoiwutun ◽  
Alimuddin Mappa

PLC (programmable logic controller) pada dasarnya adalah sebuah komputer yang khusunya di rancang untuk mengantikan sistem berbasis relay. Dengan menggunakan PLC perancangan sistem masing-masing memiliki jumlah yang berbeda, umumnya perbandingan input dan output pada suatu PLC adalah 60 persen berbanding 40 ( 18 terminal input  dan 12 terminal output). Tujuan dari Penelitian ini adalah Pembuatan Modul praktek untuk mempelajari bagian prinsip kerja dari sistem control motor naik turun otomatis menggunakan PLC Omron CP1E. simulasi mengunakan Input dari PLC  untuk pengontrolan  sensor cahaya yang mendeteksi keberadaan box Lift. Pada output PLC  digunakan Motor Power window  dan indicator Lift yang menandakan box Lift secara otomatis sedang berjalan. Pengontrolan Motor Naik Turun melalui bahasa pemogramanserta ladder diagram. Menggunakan alat peraga yaitu PLC Omron CP1E.


2020 ◽  
Vol 6 ◽  
pp. 44-49
Author(s):  
Viliya Ivanova ◽  
Igor Ivanov ◽  
Igor Kiselev

This paper presents a novel HVAC automated control system built on a programmable logic controller. The system was designed using one of the IEC 61131 programming languages being used for programming PLCs. It means a significantly wider range of control options compared to conventional systems. Also we propose an upgrade option for an air supply unit with water heating, the key idea of which is implementing qualitative control instead of quantitative one. The mixing part including a three-way valve and recirculating pump provides control of heater water temperature lowering possibility of occurring frost under low temperatures.


2011 ◽  
Vol 5 (1) ◽  
pp. 39
Author(s):  
Sudiono Sudiono ◽  
Suroso Suroso ◽  
Roro Hety R

Aplikasi PLC dalam simulasi proses pencucian film radiografi. Telah dilakukan penelitian untuk menerapkan Programmable Logic Controller (PLC) dalam simulasi proses pencucian film radiografi. PLC yang digunakan adalah PLC merk OMROM Sysmac Series CPM1A dengan bahasa pemrograman Ladder diagram yang menggunakan program Syswin 3.4. Pada pengujian menggunakan simulasi lampu lcd dan dapat diketahui bahwa pencucian film pada larutan developer berhasil dilakukan yaitu dengan waktu 1020 bed (1,7 menit) dalam waktu sebenarnya, selanjutnya pencucian film pada larutan stopbath dengan waktu 510 bed (0,85 menit) dalam waktu sebenarnya, pencucian di larutan fixer dengan waktu 2040 bed atau selama 4 menit dalam waktu sebenenarnya. Penelitian yang bertujuan untuk menerapkan PLC dalam proses pencucian film radiografi berhasil dilakukan. Akan tetapi penelitian ini belum dapat diterapkan dalam proses pencucian filam radiografi sebenarnya dan dipakai sebagai prototype alat pencuci film radiografi.


ELECTRICES ◽  
2019 ◽  
Vol 1 (1) ◽  
pp. 22-29
Author(s):  
Natasya Vinalda ◽  
B.S Rahayu Purwanti

Artikel ini membahas tentang modul praktik di Politeknik Negeri Jakarta khususnya Program Studi Elektronika Industri. Mata kuliah praktik dilengkapi simulasi dan modul sebagai sarana pembelajarannya. Namun sebagian modulnya belum lengkap khususnya pneumatik dan Programmable Logic Controller (PLC). Permasalahan tersebut menyebabkan mahasiswa kurang wawasan tentang pengaplikasian pneumatik dan PLC. Aplikasi pneumatik dan PLC pada produksi dapat dibuat modulnya, khususnya pengemasan barang. Pembuatan modul latih model pengemasan barang dengan pneumatik dan PLC diharapkan dapat meningkatkan kompetensi dan wawasan mahasiswa. Hardware dan software dibutuhkan agar pemodelan pengemasan sesuai dengan cara kerjanya. Pemodelan dibuat menjadi mode manual dan otomatis dengan PLC. Instruksi PLC mengaktifkan solenoid valve satu dan dua melalui kontak relay. Kontak coil relay terkoneksi dengan pin output PLC. Pemrograman PLC dalam bentuk ladder diagram telah dibuat di CX. Programmer 9.0. Normally closed relay terhubung dengan salah satu kabel solenoid valve. Katup pada solenoid valve menyalurkan tekanan udara ke silinder double acting satu dan dua. Gerakan maju/mundur silinder double acting satu mendorong barang menuju konveyor dan silinder dua mendorong benda ke tempat penyimpanan barang.


2021 ◽  
Author(s):  
H. Pratama ◽  
◽  
M.N.A. Azman ◽  
N.A. Zakaria ◽  
M. Khairudin ◽  
...  

Programmable Logic Controller (PLC) is a competency that must be mastered by third-level vocational school students in an electrical motor installation course. PLCs can be operated using programming languages such as sequence function charts, block diagrams, instruction lists, ladder diagrams, and others. This competency is important because it is often used in the industrial world. To create better and more effective conditions in the teaching and learning process, the development of teaching aids is needed to improve and enhance students' skills. This research, to design and development a useful teaching and learning tool teaching medium to help teachers teach concepts PLC-based electrical control systems, both theoretically and practically. The ADDIE model was used in developing the aids. The verification stage is carried out to ensure that the teaching aids that have been developed are suitable for use. In addition, this kit is relatively small with dimensions of 45x34x20 mm and is easy to move and can be used in various places. Confirmation involves lecturers and teachers who teach the field of electrical engineering. The results of the study found that the respondents strongly agreed that the PLC teaching aids was suitable for use in the learning process. Respondents also stated that using the tool because did not waste time and was easy to use. However, it is suggested that further research be conducted to identify the effectiveness of this teaching aid on students.


Author(s):  
Siyu Shi

This chapter introduces the history of Python and its IDEs (integrated development environment) and code editors as developing environment. The history tells how Python started from ABC programming language in the Netherlands to a community with developers from different areas, and later became one of the most popular programming languages in the world. Popular IDEs and Code Editor for professional developers and beginners are also introduced with their advantages and disadvantages. Later in this chapter, the authors introduce Python libraries, which could be used in statistical analysis, and give out a simple case on how these methods can be applied.


Author(s):  
Cengiz Tepe ◽  
Abidin Sefa Aslan ◽  
İlyas Eminoğlu

Programmable logic controllers (PLC) have been one of the most widely used controllers in industry. They have a graphical programming language interface resambling the relay panels which they are intended to replace so that the transition from relay panels might be swift and smooth. Although learning this programming language is easy, real life experiments are essential for students to gain greater understanding of the logic behind the language. However, it is generally too expensive to provide an experimental set-up for students to test their theoretical knowledge. For this reason, a conveyor and feeder system was developed as a low cost 3D printable design using a CAD program and implemented for use in a control laboratory. Using this conveyor set-up, students can experience how to program a practical example of a PLC devices used in industry together with an introduction to actuators and sensors. Reading actual sensors and using actuators via the inputs and outputs of a PLC to control a real life system will be far more effective than simulator alternatives.


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