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UPCOMING COURSES

Open and Parallel Applications

Open and Parallel Applications
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Welcome to the Training Course - Open and Parallel Applications!

In this exciting educational program, you will immerse yourself in the dynamic world of open and closed transfers, exploring the applications, controllers, and parallelism strategies that are fundamental in efficiently managing electrical systems.

During this course, we will focus on both open and closed transfer applications, addressing specific challenges and innovative solutions for each type of system. We will explore controllers designed for open transfer, understanding their operation, configuration, and practical applications in industrial and commercial environments.

Additionally, we will delve into closed transfer controllers, analyzing the hardware and installation necessary for their effective implementation. You will learn how to configure protections, inputs, and outputs, as well as establish smooth communication with electronic motors to ensure optimal system performance.

Our focus will also be on parallelism, a crucial aspect in managing complex electrical systems. You will study the synchronization process and explore strategies to optimize parallelism with the electrical grid, acquiring skills that will allow you to improve the efficiency and reliability of your systems.

With the guidance of our expert instructors and access to advanced tools such as the Human-Machine Interface (HMI), you will prepare to face real-world challenges with confidence and skill.

Join us on this exciting learning journey and take your skills to the next level in electrical system management.

Information  
  • Location: São Paulo
  • Duration: 3 days
  • Methodology: In-person
  • Price: R$ 900
Course Topics  
  • Open transfer applications
  • Open transfer controllers
  • Hardware and installation of controllers
  • Closed transition applications
  • Closed transfer controllers
  • Hardware of the controllers
  • Basic configurations
  • Protection configuration
  • Input and output configuration
  • Communication with electronic engine
  • Use of the HMI
  • Communication with electronic engines
  • Speed control and voltage control
  • The synchronization process
  • Study of paralleling with the grid

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