Melamine faced MDf Boards in Dubai UAE
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Actual Robots working in U.A.E. United Arab Emirates in a Factory of Ajman
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Salam Alaykum
Dear Readers,
اگر آپ فیکٹریوں میں ملازمتیں تلاش کرنا چاہتے ہیں اور اگر آپ خلیج عرب کے ممالک میں کام کرنا چاہتے ہیں یا اگر آپ یورپ اور امریکہ میں کام کرنا چاہتے ہیں تو آپ کو
PLC Programming, HMI & VFD programming
پروگرامنگ ضرور سیکھنی چاہیے کیونکہ یہ ہنر آپ کو آسانی سے نوکری حاصل کرنے کا ایک اچھا موقع فراہم کرے گا۔
یا کم از کم
آپ اپنی مرضی کے مطابق اپنی مشین کو بنا سکتے ہیں اور پھر آپ اس مشین کو اس کے پروڈیوسر کے طور پر بیچ سکتے ہیں۔
https://youtu.be/mpGOAvbN4pY?si=gDzqn-zFaMCSxnZJ
Should You Learn PLC or why should You Learn PLC programming.
kya Industrial Automation ya IIoT sekhni chaiye_ Should you learn Industrial Automation & IIoT
Or See this Link Below ......
please click the following link .......
please click the following link .......
If you want to find jobs in factories and if you want to work in Arabian Gulf countries or if you want to work in Europe and America then you must learn PLC programming as this skill will offer you a good chance to get a job easily .
Or at least
You can design and make your own machine as you like and then you can sell this machines as its producer.
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Please See this Link youtube Videos
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Background and Functions of PLC
What is a PLC. programmable Logical Controller. PLC.
Delta, Mitsubishi, Siemens , Allen Bradley, Wecon , Fatek, ABB , Schneider , Omron, Honeywell, Fanuc, Panasonic, Hitachi, Wago, Fugi, Phoenix, Bosch, Emerson, Eaton, PLCs.
PLC (Programmable Logic Controller) is an electronic device, previously called “sequence controller”. In 1978, NEMA
(National Electrical Manufacture Association) in the United States officially named it as “programmable logic
controller”. PLC reads the status of the external input devices, e.g. keypad, sensor, switch and pulses, and execute by
the microprocessor logic, sequential, timing, counting and arithmetic operations according the status of the input
signals as well as the pre-written program stored in the PLC. The generated output signals are sent to output devices
as the switch of a relay, electromagnetic valve, motor drive, control of a machine or operation of a procedure for the
purpose of machine automation or processing procedure. The peripheral devices (e.g. personal computer/handheld
programming panel) can easily edit or modify the program and monitor the device and conduct on-site program
maintenance and adjustment. The widely used language in designing a PLC program is the ladder diagram.
With the development of the electronic technology and wider applications of PLC in the industry, for example in
position control and the network function of PLC, the input/output signals of PLC include DI (digital input), AI (analog
input), PI (pulse input), NI (numeric input), DO (digital output), AO (analog output), and PO (pulse output). Therefore,
PLC will still stand important in the industrial automation field in the future.
The Working Principles of Ladder Diagram
The ladder diagram was a diagram language for automation developed in the WWII period, which is the oldest and
most widely adopted language in automation. In the initial stage, there were only A (normally open) contact, B
(normally closed) contact, output coil, timer and counter…the sort of basic devices on the ladder diagram (see the
power panel that is still used today). After the invention of programmable logic controllers (PLC), the devices
displayable on the ladder diagram are added with differential contact, latched coil and the application commands
which were not in a traditional power panel, for example the addition, subtraction, multiplication and division
operations.
The working principles of the traditional ladder diagram and PLC ladder diagram are basically the same. The only
difference is that the symbols on the traditional ladder diagram are more similar to its original form, and PLC ladder
diagram adopts the symbols that are easy to recognize and shown on computer or data sheets. In terms of the logic
of the ladder diagram, there are combination logic and sequential logic.
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