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Goeduhub Technologies

Today, PLC is being used in every process and manufacturing industries, apart from knowing the wires and connections, anyone should know the way to do PLC programs.

PLC-Programmable logic controller is an industrial solid-state computer that monitors input and output, and makes logic-based decisions for automated processes or machines.

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Today, PLC is being used in every process and manufacturing industries, apart from knowing the wires and connections, anyone should know the way to do PLC programs.

PLC-Programmable logic controller is an industrial solid-state computer that monitors input and output, and makes logic-based decisions for automated processes or machines.

Fuji Electric has supported industry with innovative solutions and advanced technologies. Fuji Programmable Logic Controllers (PLC) designed with high processing speeds and full transparency. Fuji PLC's provide users with numerous functions and controls from small scale equipment to entire production lines.

WProlad for WSZSoft, programming software for all Fuji’s PLC series. WProlad for WSZSoft includes various types of features to accelerate the development of your PLC program.And this course is covering complete programming of PLC Model WSZ-24MA of Fuji PLC.

After doing this course, you can easily program the other PLC series.This software is used for all the PLC series. And the instructions remain the same.

This course will teach you step by step How to make a Ladder Logics & Programming to any industrial process Control.

We have made explanation by Real Time LIVE Camera & Designing Software to understand the concept clearly.

Following is the brief information about the course:

Introduction of PLC.

Functions and Features of PLC.

What is Sink and Source concept?

Working Principle of PLC (Scan Time and Scan Cycle of PLC).

Wiring Connection and Communication of PLC.

Bit Logic with Interlocking and Holding Concept.

Timer, Counter, Compareinstruction, Math instructions, Move instructions, Program Control instructions andData Control Instruction etc.

And many more instructions are covering in course.

Problems with Solution (Industrial Level).

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What's inside

Learning objectives

  • Basics of fuji plc.
  • Basics of ladder diagram.
  • Latching and unlatching.
  • Interlocking, timer and counter.
  • Data transfer instruction.
  • Output terminal compare instruction (unsigned).
  • Input terminal compare instruction (signed).
  • Increase/decrease instruction.
  • Calculation instruction.
  • Program or sequence control instruction and subroutine.
  • Master control/master control end.
  • You will be enriched with the latest technical knowledge related with fuji plc programming.
  • Students can establish their career in various manufacturing industries like oil and gas, water/waste water treatment, food & beverages, power plants, manufacturing process, chemicals and pharmaceutical industries, power generation, automotive, fabricated metals, packaging process, metals and mining’s aerospace, etc.
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Syllabus

Overview of PLC
Introduction to PLC
Block Diagram of PLC
Working Principle of PLC (Scan Time and Scan Cycle of PLC)
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Traffic lights

Read about what's good
what should give you pause
and possible dealbreakers
Covers PLC programming from the ground up, starting with basic concepts and gradually progressing to more advanced topics like timers, counters, and data transfer instructions
Uses a real-time live camera and designing software to explain concepts, which can help learners visualize and understand the material more effectively
Focuses on the Fuji PLC WSZ-24MA model, but the course claims that the programming concepts and instructions are applicable to other Fuji PLC series as well
Includes industrial-level problems with solutions, which can help learners apply their knowledge to real-world scenarios and develop practical skills
Requires the WinProladder software, which may require a license or specific system requirements that learners need to consider before enrolling
Teaches the WinProladder software, so learners should verify that this software is still supported and widely used in their target industry or application

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Reviews summary

Fuji plc programming fundamentals

According to learners, this course offers a solid foundation in Fuji PLC programming, especially for those starting from scratch. Students found the approach step-by-step and the explanations enhanced by real-time demos and software interface views. The inclusion of practical problems with solutions is seen as highly valuable for applying concepts. While the course provides detailed coverage of ladder logic basics and essential instructions like timers and counters using WinProladder software for the WSZ-24MA model, some learners noted that the title mentioning SCADA might set expectations not fully met by the PLC-focused syllabus content.
Specific training on Fuji PLC hardware and WinProladder software.
"This course dives deep into the specifics of Fuji PLCs like the WSZ-24MA model."
"I appreciate the dedicated focus on Fuji hardware and the WinProladder software interface."
"It covers the unique addressing formats and data types specific to Fuji PLCs."
"Learning on WinProladder is useful if you plan to use Fuji PLCs in your work."
Features industrial-level programming problems with solutions.
"Working through the industrial problems helps solidify my understanding of applying the concepts."
"The included solutions for the problems are very helpful for checking my logic and learning."
"I liked that they provide real-world examples of programming challenges."
"The problem-solving section adds practical value to the theoretical concepts."
Covers essential PLC programming instructions thoroughly.
"The course covers all the essential instructions like Timers, Counters, Compare, and Math functions."
"Understanding the different types of timers and counters in WinProladder was very helpful."
"The data transfer and calculation instructions were explained well."
"It provides a good overview of the standard PLC programming instruction set."
Provides a strong base in fundamental ladder diagram concepts.
"The step-by-step approach to understanding ladder logic diagrams is very clear."
"I feel like I got a solid grasp of the fundamentals needed for PLC programming."
"It patiently walks you through bit logic, interlocking, and basic programming rules."
"The course explains how to build basic circuits in the ladder diagram editor."
Course title includes SCADA but syllabus is PLC-focused.
"The title mentions SCADA, but the content seems purely focused on PLC programming principles."
"I was expecting some SCADA integration or communication examples based on the title."
"Prospective students should note the course content listed focuses heavily on the PLC side."
"It feels like the SCADA part of the title might be slightly misleading regarding course depth."

Activities

Be better prepared before your course. Deepen your understanding during and after it. Supplement your coursework and achieve mastery of the topics covered in Fuji PLC Programming from scratch (PLC-SCADA-6) with these activities:
Review Ladder Logic Basics
Reinforce your understanding of ladder logic fundamentals to prepare for more advanced Fuji PLC programming concepts.
Browse courses on Ladder Logic
Show steps
  • Review basic logic gate implementations in ladder logic.
  • Practice converting Boolean expressions to ladder diagrams.
  • Solve simple control problems using ladder logic.
Read 'Programmable Logic Controllers' by Frank Petruzella
Gain a broader understanding of PLC principles and programming techniques beyond the specific Fuji PLC covered in the course.
Show steps
  • Read the chapters on PLC hardware and architecture.
  • Study the examples of ladder logic programs.
  • Complete the review questions at the end of each chapter.
PLC Programming Challenges
Sharpen your PLC programming skills by tackling a series of increasingly complex challenges.
Show steps
  • Find online PLC programming challenge resources.
  • Attempt challenges involving timers, counters, and data manipulation.
  • Test your solutions using a PLC simulator or emulator.
Four other activities
Expand to see all activities and additional details
Show all seven activities
Create a Fuji PLC Programming Tutorial
Solidify your understanding of Fuji PLC programming by creating a tutorial for other learners.
Show steps
  • Choose a specific Fuji PLC programming topic.
  • Write a clear and concise explanation of the topic.
  • Include code examples and screenshots.
  • Share your tutorial on a relevant online forum or platform.
Design a Small-Scale Automation System
Apply your Fuji PLC programming knowledge to design and implement a small-scale automation system for a real-world application.
Show steps
  • Choose a simple automation task, such as controlling a conveyor belt or a filling machine.
  • Design the ladder logic program for the chosen task.
  • Simulate the program using WinProladder.
  • Document your design and implementation process.
Read 'Industrial Automated Systems: Instrumentation and Motion Control' by Terry L.M. Bartelt
Expand your knowledge of industrial automation systems and how Fuji PLCs integrate with other components.
Show steps
  • Read the sections on sensors, actuators, and motion control.
  • Study the examples of PLC applications in automated systems.
  • Consider how the concepts apply to your own projects.
Contribute to an Open Source PLC Project
Gain practical experience and contribute to the PLC community by participating in an open-source project.
Show steps
  • Find an open-source PLC project on platforms like GitHub.
  • Review the project's documentation and code.
  • Identify areas where you can contribute, such as bug fixes or new features.
  • Submit your contributions according to the project's guidelines.

Career center

Learners who complete Fuji PLC Programming from scratch (PLC-SCADA-6) will develop knowledge and skills that may be useful to these careers:
PLC Programmer
A PLC Programmer specializes in creating and maintaining PLC programs for industrial automation systems. This course directly prepares individuals for this role by providing comprehensive training in Fuji PLC programming. The course's step-by-step instructions on ladder logic and real-time examples using design software are particularly valuable. Aspiring PLC Programmers would benefit from the course's coverage of PLC wiring, communication, and instruction sets such as timers, counters, and data transfer. The course's practical problems with solutions enable PLC Programmers to tackle real-world industrial challenges.
Automation Engineer
An Automation Engineer designs, develops, and implements automated systems to improve efficiency and reduce manual labor. This often involves PLCs, and this course directly relates to that. Learning how to program Fuji PLCs helps build a foundation for configuring and troubleshooting automated systems in various industries. The course's focus on ladder logic and PLC programming principles provides practical skills for designing and implementing control systems. The course's coverage of PLC wiring, communication, and instruction sets such as timers, counters, and data transfer, directly benefits an Automation Engineer.
Controls Engineer
A Controls Engineer designs and maintains control systems for industrial processes. This course is valuable as it provides hands-on experience with PLC programming, a critical skill for this role. The course's emphasis on ladder logic and PLC programming principles helps build a practical understanding of how to implement control strategies. Moreover, the course's specific focus on Fuji PLCs and their programming software gives aspiring Controls Engineers familiarity with industry-standard equipment. The course's coverage of PLC wiring, communication, and instruction sets such as timers, counters, and data transfer, directly benefits a Controls Engineer.
Process Control Engineer
A Process Control Engineer designs and implements control strategies for chemical, oil and gas, and other process industries; PLCs are at the heart of such systems. This course directly provides practical skills in PLC programming, which is essential for designing and optimizing process control systems. The course's focus on ladder logic and PLC programming principles helps build a foundation for implementing advanced control algorithms. Furthermore, the course's specific focus on Fuji PLCs builds familiarity with a common industrial platform. The course's coverage of PLC wiring, communication, and instruction sets such as timers, counters, and data transfer, directly benefits a Process Control Engineer.
Mechatronics Engineer
A Mechatronics Engineer designs and develops automated systems that integrate mechanical, electrical, and computer engineering principles. PLCs are often a central component of these systems. This course can be useful for Mechatronics Engineers as it builds PLC programming skills. The course's focus on ladder logic and PLC programming principles provides a base for designing and implementing control systems. Furthermore, understanding Fuji PLCs and their programming software builds a strong understanding of industrial automation. The course's coverage of PLC wiring, communication, and instruction sets such as timers, counters, and data transfer, directly benefits a Mechatronics Engineer.
Manufacturing Engineer
A Manufacturing Engineer optimizes manufacturing processes, often involving automated systems controlled by PLCs. This course is valuable for Manufacturing Engineers as it provides insight into how PLCs are programmed and integrated into manufacturing equipment. The course's explanation of ladder logic and real-time examples using design software provides a practical understanding of PLC programming. The course's coverage of PLC wiring, communication, and instruction sets such as timers, counters, and data transfer can help Manufacturing Engineers communicate effectively with controls engineers and PLC programmers. A Manufacturing Engineer can apply this course to improve manufacturing processes.
System Integrator
A System Integrator designs and implements integrated automation solutions for various industries. This course may be helpful for System Integrators as it provides hands-on experience with PLC programming, which is often a key component of integrated systems. The course's explanation of ladder logic and the real-time examples using design software is highly valuable. The course's lessons about Fuji PLCs may prove to improve system integration. The course's coverage of PLC wiring, communication, and instruction sets such as timers, counters, and data transfer may benefit System Integrators.
SCADA Engineer
A Supervisory Control and Data Acquisition (SCADA) Engineer designs and maintains SCADA systems that monitor and control industrial processes. While SCADA systems often interface with PLCs, understanding PLC programming is an asset. This course may be helpful for SCADA Engineers as it provides experience with PLC programming. The course's lessons on ladder logic and the course's coverage of PLC wiring, communication, and instruction sets such as timers, counters, and data transfer, may be useful for SCADA Engineers. Specifically, knowledge of data transfer instructions can be beneficial for configuring communication between PLCs and SCADA systems.
Robotics Technician
A Robotics Technician installs, maintains, and repairs robotic systems, often relying on PLCs for control. This course may be helpful for Robotics Technicians as it equips them with the ability to troubleshoot and modify PLC programs. The course's coverage of ladder logic and PLC programming principles helps build a solid understanding of how robots are controlled. The course's focus on Fuji PLCs may be useful, especially if the technician works with robotic systems that utilize Fuji PLCs. The course's coverage of PLC wiring, communication, and instruction sets such as timers, counters, and data transfer, may be useful for a Robotics Technician.
Electrical Engineer
An Electrical Engineer designs, develops, and tests electrical equipment and systems. In many industrial settings, this includes working with PLCs. This course may be useful for Electrical Engineers as it provides a practical introduction to PLC programming. The course's descriptions of PLC wiring and communication are directly relevant to electrical engineering principles. The course's coverage of ladder logic and PLC programming principles helps build a solid understanding of process automation. The course's coverage of PLC instruction sets may benefit Electrical Engineers working with industrial control systems.
Industrial Electrician
An Industrial Electrician installs and maintains electrical systems in industrial facilities. This often includes working with PLCs and understanding their wiring and basic functionality. This course may be useful for Industrial Electricians as it provides a deeper understanding of PLC programming and troubleshooting. The course's coverage of PLC wiring and communication is directly relevant to this role. The course's descriptions of ladder logic and basic PLC functions helps build a working knowledge of PLC-controlled systems. An Industrial Electrician can become more valuable by understanding the inner workings of a PLC.
Instrumentation Technician
An Instrumentation Technician installs, calibrates, and maintains instruments used to measure and control industrial processes. While not always directly programming PLCs, understanding PLC logic can greatly improve their ability to troubleshoot and integrate instrumentation systems. This course may be helpful for Instrumentation Technicians as it provides them with a foundational knowledge of PLC programming. The course's exploration of PLC wiring and communication may be useful. The course's introduction to ladder logic and instruction sets may be useful for understanding how instrumentation interacts with PLC-controlled systems.
Service Technician
A Service Technician installs, maintains and repairs equipment and machinery, often in industrial settings. This course can be useful for Service Technicians as it can give them a valuable understanding of PLC programming. The course's descriptions of PLC wiring and communication may be applicable to the Service Technician role. The course's coverage of ladder logic and basic PLC functions helps build a working knowledge of PLC-controlled systems. The course's practical problems with solutions can enable them to diagnose and repair automation systems. The Service Technician can apply this understanding to improve maintenance procedures
Project Engineer
A Project Engineer manages engineering projects from conception to completion. The course can be useful for Project Engineers as it can give them a valuable understanding of PLC programming. The course's descriptions of PLC wiring and communication may be applicable to the Project Engineer role. The course's coverage of ladder logic and basic PLC functions helps build a working knowledge of PLC-controlled systems. The course's practical problems with solutions can enable them to manage automation projects effectively. The Project Engineer can apply this understanding to improve project outcomes
Maintenance Manager
A Maintenance Manager oversees the maintenance and repair of equipment and machinery. This course may be helpful for Maintenance Managers as it provides a foundation in PLC programming. The course's topics on PLC wiring and communication may be valuable to Maintenance Managers. The course's coverage of ladder logic and instruction sets may be useful for understanding how automated systems are controlled. The course's practical industrial problems may inform maintenance schedules. A better understanding helps Maintenance Managers optimize maintenance schedules, improve efficiency, and reduce downtime.

Reading list

We've selected two books that we think will supplement your learning. Use these to develop background knowledge, enrich your coursework, and gain a deeper understanding of the topics covered in Fuji PLC Programming from scratch (PLC-SCADA-6).
Provides a broader context for PLC programming by covering instrumentation and motion control systems. It helps you understand how PLCs fit into larger industrial automation systems. This book is more valuable as additional reading to expand your knowledge of industrial automation. It is not necessary to complete the course, but it will provide a more complete picture of the field.

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