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MFS

Automation

DEPLOY COMPLEX AUTOMATION PROJECTS WITH MFS

NO CODING REQUIRED!

Automation

HOW IS IT POSSIBLE WITHOUT WRITING A SINGLE LINE OF CODE?

Of course, we have a highly advanced code library and a proven infrastructure that has been tested and refined over the years.

 

We sought answers to the first questions that come to mind regarding the key challenges the industry faces:

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  • Does the industry have enough skilled automation engineers to meet growing demands?

  • Is it feasible for companies to train new automation engineers quickly and effectively?

  • How can the need for frequent travel by automation engineers be reduced, given the challenges it presents?

  • Are solution designers' plans being implemented correctly in the field by automation engineers?

  • Are consistent coding practices being applied across the field, or are individual approaches causing discrepancies?

  • How can previous experiences be leveraged to deploy systems faster and with fewer issues?

  • What strategies can be implemented to standardize code versions and infrastructure across all facilities?​

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If even one of these questions poses a risk to your projects, it’s time to discover MFS.

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WE’RE FOCUSED ON AUTOMATING THE TASKS OF AUTOMATION ENGINEERING

While developing our MFS solution, we focused on automating the tasks performed by automation engineers and simplifying these processes. One of the most important issues we addressed was why we needed to develop new code or repeatedly enter parameters for Function Blocks (FB) for similar mechanical systems within projects. In the traditional approach, we can generate code by creating libraries for FBs or using code generators.

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Challenges of the Traditional Approach:

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  • Even adding a single point in the development environment requires retesting the code.

  • The insufficient number of developers who can write code according to standards such as unit tests, and the resulting increased costs when writing such detailed code for each project.

  • The inability to allocate sufficient time and resources for advanced virtual test environments like emulation in every project.

  • The difficulty in ensuring synchronized information flow among teams during design, simulation, and commissioning phases, leading to repetitive work.

  • The need to constantly recheck whether the parameters are correct during commissioning.

Step by Step Implementation

1

DESIGN

Create your designs quickly with drag-and-drop using predefined libraries for your customers.

2

ANIMATION

Accelerate your sales activities by quickly presenting your designs to the end user.

3

DESIGN FREEZE

The design freeze process is activated once an agreement is reached with the end user, preventing any further changes to the design. At this stage, only PLC parameters can be modified. During this phase, the necessary PLC parameter settings are configured, and the assignment of components such as sensors and motors is completed.

4

PLC CODE ACIVATION

After completing the necessary electrical connections and system configurations within the warehouse, the MFS PLC code is activated with the system configuration. All project parameters are downloaded to the PLC and activated through our B2B platform, where you can manage all your configurations, along with the license activation.

5

AUTO TEACH FOR COMMISSIONING

With the Automatic Teaching functions, all electrical connections of sensors, motors, and pistons are quickly deciphered and recorded in the system. Subsequently, during the commissioning steps, all positions that require calibration are taught to the system.

6

SYSTEM READY FOR WORKING

If all learning steps and components in the system have been correctly defined,

the system will start operating when it is activated.

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The No‑Code Digital Twin Platform

Design. Animate. Order. Commission.

Our Company

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Contact Info

MFS-Material Flow Studio GmbH
Halbergstraße 4 66121

Saarbrücken / Deutschland

© 2025 MFS All rights reserved

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