Benefit from system efficiency and reduce energy

In the past, standards and laws regarding the efficiency classes of motors and systems only covered the electromechanical components and their role in energy efficiency. As a result, great potential for energy savings – that of the overall drive system – was not taken into account.

We are ready for the new system efficiency class

SEW‑EURODRIVE recognised this potential, which can only be achieved with a comprehensive approach, early on, and has been offering energy-optimised drive systems and expert support with the effiDRIVE® energy-saving solutions for several years now. The products from the effiDRIVE® modular energy-saving system were developed with optimal efficiency for this purpose, and offer functions in an intelligent combination that significantly increases the energy efficiency of the drive system. In addition, the energy report in the SEW-Workbench provides a comprehensive energy consumption analysis.

With the IEC 61800-9 international series of standards, a standard tool has been published in 2017 to achieve goals such as objective evaluation of the energy efficiency of our drive systems, as well as the extended product range.

The focus of the standard is the combination of a motor with a frequency inverter for implementing applications where the drive components are loaded below their rated data, continuous duty is present or only low dynamics are required. Good examples are pumps and fans.

The German version of this international standard has been published on January 1, 2018 with DIN EN 61800-9-2 and now replaces the previous DIN EN 50598-2.

Advantages

  • SEW‑EURODRIVE as a system supplier

    Offers optimised drive systems from a single source – worldwide.
  • MOVIMOT® a nd MOVIGEAR® in accordance with IEC 61800-9-2

    So you can already start using a drive system in IES2 in your decentralised installations.

The IEC 61800-9 series of standards sets new benchmarks for evaluating environmentally friendly designs of drive systems and driven equipment.

Part 1 defines general requirements for the procedure and creation of standards for analysing the energy efficiency of adjustable-speed electrical drives and their drive components. This part of IEC 61800-9 also serves as the basis for product-specific standards and describes the extended product range approach..

Part 2 of IEC 61800-9 is the most important for us as a system supplier of drive and automation technology. This part puts the guidelines defined in Part 1 into practice. Methods for determining the losses of an entire drive system (PDS: Power Drive System) and of frequency inverters (CDM: Complete Drive Module) are supplemented with the definition of efficiency classes for PDS and CDM in a power range from 0.12 to 1,000 kW.

Another new feature is that now, not only the motor's energy properties, but also those of the frequency inverters and the system composed of both elements, are analysed and classified. The standard also accounts for the fact that drives are often operated outside of their nominal operating point. Every application is characterised by a load profile, meaning that it directly affects the capacity utilisation of the drive system. EIEC 61800-9 partly covers this aspect. It defines eight load points at different speed and torque loads to allow the energy efficiency to be evaluated even in the partial load range.

However, operating conditions above the rated data of the components are not considered. If a drive system is frequently operated with overload, which is the case for frequent startups in materials handling technology for example, evaluating the energy losses is not possible with this standard.

Specification of the power losses at the eight points allows system manufacturers and operators to use the losses at the load points relevant for them to calculate the energy consumption of their applications. This allows them to compare alternative systems and choose the most energy-efficient drive system.

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