Commission Regulation (EU) 2019/1781 of 1 October 2019 laying down ecodesign requirements for electric motors and variable speed drives pursuant to Directive 2009/125/EC of the European Parliament and of the Council, amending Regulation (EC) No 641/2009 with regard to ecodesign requirements for glandless standalone circulators and glandless circulators integrated in products and repealing Commission Regulation (EC) No 640/2009 (Text with EEA relevance)
Modified by
  • Commission Regulation (EU) 2021/341of 23 February 2021amending Regulations (EU) 2019/424, (EU) 2019/1781, (EU) 2019/2019, (EU) 2019/2020, (EU) 2019/2021, (EU) 2019/2022, (EU) 2019/2023 and (EU) 2019/2024 with regard to ecodesign requirements for servers and data storage products, electric motors and variable speed drives, refrigerating appliances, light sources and separate control gears, electronic displays, household dishwashers, household washing machines and household washer-dryers and refrigerating appliances with a direct sales function(Text with EEA relevance), 32021R0341, February 26, 2021
  • Commission Regulation (EU) 2023/3of 3 January 2023correcting the German language version of Regulation (EU) 2019/1781 laying down ecodesign requirements for electric motors and variable speed drives pursuant to Directive 2009/125/EC of the European Parliament and of the Council, amending Regulation (EC) No 641/2009 with regard to ecodesign requirements for glandless standalone circulators and glandless circulators integrated in products(Text with EEA relevance), 32023R0003, January 4, 2023
Commission Regulation (EU) 2019/1781of 1 October 2019laying down ecodesign requirements for electric motors and variable speed drives pursuant to Directive 2009/125/EC of the European Parliament and of the Council, amending Regulation (EC) No 641/2009 with regard to ecodesign requirements for glandless standalone circulators and glandless circulators integrated in products and repealing Commission Regulation (EC) No 640/2009(Text with EEA relevance)
Article 1Subject matterThis Regulation establishes ecodesign requirements for the placing on the market or the putting into service of electric motors and variable speed drives, including where they are integrated in other products.
Article 2Scope(1)This Regulation applies to the following products:(a)induction electric motors without brushes, commutators, slip rings or electrical connections to the rotor, rated for operation on a 50 Hz, 60 Hz or 50/60 Hz sinusoidal voltage, that:(i)have two, four, six or eight poles;(ii)have a rated voltage UN above 50 V and up to and including 1000 V;(iii)have a rated power output PN from 0,12 kW up to and including 1000 kW;(iv)are rated on the basis of continuous duty operation; and(v)are rated for direct on-line operation;(b)variable speed drives with 3 phases input that:(i)are rated for operating with one motor refered to in point (a), within the 0,12 kW-1 000 kW motor rated output range;(ii)have a rated voltage above 100 V and up to and including 1000 V AC;(iii)have only one AC voltage output.(2)The requirements in section 1, and points (1), (2), (5) to (11), and (13) of section 2 of Annex I shall not apply to the following motors:(a)motors completely integrated into a product (for example into a gear, pump, fan or compressor) and whose energy performance cannot be tested independently from the product, even with the provision of a temporary end-shield and drive-end bearing; the motor must share common components (apart from connectors such as bolts) with the driven unit (for example, a shaft or housing) and shall not be designed in such a way that the motor can be separated in its entirety from the driven unit and operate independently. The process of separation shall have the consequence of rendering the motor inoperative;(b)motors with an integrated variable speed drive (compact drives) whose energy performance cannot be tested independently from the variable speed drive;(c)motors with an integrated brake which forms an integral part of the inner motor construction and can neither be removed nor powered by a separate power source during the testing of the motor efficiency;(d)motors specifically designed and specified to operate exclusively:(i)at altitudes exceeding 4000 metres above sea-level;(ii)where ambient air temperatures exceed 60 °C;(iii)in maximum operating temperature above 400 °C;(iv)where ambient air temperatures are less than – 30 °C; or(v)where the water coolant temperature at the inlet to a product is below 0 °C or above 32 °C;(e)motors specifically designed and specified to operate wholly immersed in a liquid;(f)motors specifically qualified for the safety of nuclear installations, as defined in Article 3 of Council Directive 2009/71/EuratomCouncil Directive 2009/71/Euratom of 25 June 2009 establishing a Community framework for the nuclear safety of nuclear installations (OJ L 172, 2.7.2009, p. 18).;(g)explosion-protected motors specifically designed and certified for mining, as defined in Annex I, point 1 of Directive 2014/34/EU of the European Parliament and of the CouncilDirective 2014/34/EU of the European Parliament and of the Council of 26 February 2014 on the harmonisation of the laws of the Member States relating to equipment and protective systems intended for use in potentially explosive atmospheres (OJ L 96, 29.3.2014, p. 309).;(h)motors in cordless or battery-operated equipment;(i)motors in hand-held equipment whose weight is supported by hand during operation;(j)motors in hand-guided mobile equipment moved while in operation;(k)motors with mechanical commutators;(l)Totally Enclosed Non-Ventilated (TENV) motors;(m)motors placed on the market before 1 July 2029 as substitutes for identical motors integrated in products placed on the market before 1 July 2021 for motors referred to in Annex I.1 (a), and before 1 July 2023 for motors referred to in Annex I.1 (b), and specifically marketed as such;(n)multi-speed motors, i.e. motors with multiple windings or with a switchable winding, providing a different number of poles and speeds;(o)motors designed specifically for the traction of electric vehicles.(3)The requirements in section 3, and points (1), (2), and (5) to (10) of section 4 of Annex I shall not apply to the following VSDs:(a)VSDs integrated into a product and whose energy performance cannot be tested independently from the product, that is to say that an attempt to do so would render the VSD or the product inoperative;(b)VSDs qualified specifically for the safety of nuclear installations, as defined Article 3 of Directive 2009/71/Euratom;(c)regenerative drives;(d)drives with sinusoidal input current;(e)VSDs consisting of a single cabinet, comprising VSDs which are all in conformity with this Regulation.
Article 3DefinitionsFor the purposes of this Regulation, the following definitions shall apply:(1)"electric motor" or "motor" means a device that converts electrical input power into mechanical output power in the form of a rotation with a rotational speed and torque that depends on factors including the frequency of the supply voltage and number of poles of the motor;(2)"variable speed drive" ("VSD") means an electronic power converter that continuously adapts the electrical power supplied to a single motor to control the motor’s mechanical power output according to the torque-speed characteristic of the load driven by the motor, by adjusting the power supply to a variable frequency and voltage supplied to the motor. It includes all protection devices and auxiliaries which are integrated in the VSD.(3)"energy efficiency" of a motor means the ratio of its mechanical output power to the electrical active input power;(4)"pole" means a north or a south pole produced by the rotating magnetic field of the motor, whose total number of poles determines its base speed;(5)"continuous duty operation" means capable of continuous operation at rated power with a temperature rise within the specified insulation temperature class, specified as specific duty types S1, S3 >=80 % or S6 >=80 % as defined in standards;(6)"phase" means the type of configuration of the mains;(7)"mains" or "electric mains" means the electricity supply from the grid;(8)"motor with mechanical commutators" means a motor in which a mechanical device reverses the direction of the current;(9)"cordless or battery operated equipment" means an appliance deriving its energy from batteries enabling the appliance to perform its intended function without a supply connection;(10)"hand-held equipment" means a portable appliance intended to be held in the hand during normal use;(11)"hand-guided equipment" means a non-road mobile appliance that is moved and guided by the user during normal use;(12)"totally enclosed non-ventilated (TENV) motor" means a motor designed and specified to operate without a fan, and which dissipates heat predominantly through natural ventilation or radiation on the totally enclosed motor surface;(13)"regenerative drive" means a VSD that is able to regenerate energy from the load to the mains, i.e. that induces a 180° +/- 20° phase shift of the input current to the input voltage when the load motor is braking;(14)"drive with sinusoidal input current" means a VSD with a sinusoidal waveform of the input current, characterised by a Total Harmonic Content below 10 %;(15)"brake motor" means a motor equipped with an electromechanical brake unit operating directly on the motor shaft without couplings;(16)"Ex eb increased safety motor" means a motor intended for use in explosive atmospheres and certified "Ex eb", as defined in standards;(17)"other explosion-protected motor" means a motor intended for use in explosive atmospheres and certified "Ex ec", "Ex tb", "Ex tc", "Ex db", or "Ex dc" as defined in standards;(18)"test load" of a VSD means the electrical device used for testing purposes that determines the output current and the output displacement factor cos phi;(19)"equivalent model" means a model which has the same technical characteristics relevant for the technical information to be provided, but which is placed on the market or put into service by the same manufacturer, importer or authorised representative as another model with a different model identifier;(20)"model identifier" means the code, usually alphanumeric, which distinguishes a specific product model from other models with the same trade mark or the same manufacturer’s, importer’s or authorised representative’s name;(21)"witnessed testing" means actively observing the physical testing of the product under investigation by another party, to draw conclusions on the validity of the test and the test results. This may include conclusions on the compliance of testing and calculations methods used with applicable standards and legislation;(22)"factory acceptance test" means a test on an ordered product where the customer uses witnessed testing to verify the product’s full accordance with contractual requirements, before they are accepted or put into service;(23)"declared values" means the values provided by the manufacturer, importer or authorised representative for the stated, calculated or measured technical parameters in accordance with Article 5, for the verification of compliance by the Member State authorities.
Article 4Ecodesign requirementsThe ecodesign requirements set out in Annex I shall apply from the dates indicated therein.
Article 5Conformity assessment1.The conformity assessment procedure referred to in Article 8 of Directive 2009/125/EC shall be the internal design control system set out in Annex IV of that Directive or the management system set out in Annex V of that Directive.2.For the purposes of the conformity assessment pursuant to Article 8 of Directive 2009/125/EC, the technical documentation of motors shall contain a copy of the product information provided in accordance with point 2 of Annex I to this Regulation, and the details and results of calculations set out in Annex II to this Regulation, and where applicable Annex I.1.3.For the purposes of the conformity assessment pursuant to Article 8 of Directive 2009/125/EC, the technical documentation of VSDs shall contain a copy of the product information provided in accordance with point 4 of Annex I to this Regulation, and the details and results of calculations set out in Annex II to this Regulation, and where applicable Annex I.3.4.Where the information included in the technical documentation for a particular model has been obtained:(a)from a model that has the same technical characteristics relevant for the technical information to be provided but is produced by a different manufacturer; or(b)by calculation on the basis of design or extrapolation from another model of the same or a different manufacturer, or both,the technical documentation shall include the details of such calculation, the assessment undertaken by the manufacturer to verify the accuracy of the calculation and, where appropriate, the declaration of identity between the models of different manufacturers.The technical documentation shall include a list of all equivalent models, including the model identifiers.
Article 6Verification procedure for market surveillance purposesMember States shall apply the verification procedure laid down in Annex III when performing the market surveillance checks referred to in point 2 of Article 3 of Directive 2009/125/EC.
Article 7Circumvention and software updatesThe manufacturer, importer or authorised representative shall not place on the market products designed to be able to detect they are being tested (e.g. by recognising the test conditions or test cycle), and to react specifically by automatically altering their performance during the test with the aim of reaching a more favourable level for any of the parameters specified in this Regulation or declared by the manufacturer, importer or authorised representative in the technical documentation or included in any of the documentation provided.The energy consumption of the product and any of the other declared parameters shall not deteriorate after a software or firmware update when measured with the same test standard originally used for the declaration of conformity, except with explicit consent of the end-user prior to the update. No deterioration of performance shall occur as result of rejecting the update.A software update shall never have the effect of changing the product’s performance in a way that makes it non-compliant with the ecodesign requirements applicable for the declaration of conformity.
Article 8BenchmarksThe benchmarks for the best-performing motors and variable speed drives available at the time of adopting this Regulation are set out in Annex IV.
Article 9ReviewThe Commission shall review this Regulation in the light of technological progress and shall present the results of this assessment, including, if appropriate, a draft revision proposal, to the Consultation Forum no later than 14 November 2023.This review shall in particular address the appropriateness of:(1)setting additional resource efficiency requirements for products in accordance with the objectives of the circular economy, including identification and reuse of rare earth in permanent magnet motors;(2)the level of verification tolerances;(3)setting stricter requirements for motors and variable speed drives;(4)setting minimum energy efficiency requirements for motors with a rated voltage above 1000 V;(5)setting requirements for combinations of motors and VSDs placed on the market together, as well as integrated variable speed drives (compact drives);(6)the exemptions set out in Articles 2(2) and (3);(7)adding other types of motors to the scope, including permanent magnet motors.
Article 10RepealRegulation (EC) No 640/2009 is repealed as from 1 July 2021.
Article 11Amendment to Regulation (EC) No 641/2009(1)Article 1, point 2(b) is replaced by:"(b) circulators to be integrated in products and placed on the market no later than 1 January 2022 as replacement for identical circulators integrated in products placed on the market no later than 1 August 2015 and specifically marketed as such, except as regards the product information requirements of Annex I, point 2(1)(e)."(2)Annex I, point 2(1)(e) is replaced by:"(e) for circulators to be integrated in products and placed on the market no later than 1 January 2022 as replacement for identical circulators integrated in products placed on the market no later than 1 August 2015, the replacement circulator or its packaging shall clearly indicate the product(s) for which it is intended."
Article 12Entry into force and applicationThis Regulation shall enter into force on the twentieth day following that of its publication in the Official Journal of the European Union.It shall apply from 1 July 2021. However, the first paragraph of Article 7 and Article 11, shall apply from 14 November 2019.
This Regulation shall be binding in its entirety and directly applicable in all Member States.ANNEX IECODESIGN REQUIREMENTS FOR MOTORS AND VARIABLE SPEED DRIVES1.ENERGY EFFICIENCY REQUIREMENTS FOR MOTORSEnergy efficiency requirements for motors shall apply according to the following timetable:(a)from 1 July 2021:(i)the energy efficiency of three-phase motors with a rated output equal to or above 0,75 kW and equal to or below 1000 kW, with 2, 4, 6 or 8 poles, which are not Ex eb increased safety motors, shall correspond to at least the IE3 efficiency level set out in Table 2 or in Table 3b as appropriate;(ii)the energy efficiency of three-phase motors with a rated output equal to or above 0,12 kW and below 0,75 kW, with 2, 4, 6 or 8 poles, which are not Ex eb increased safety motors, shall correspond to at least the IE2 efficiency level set out in Table 1 or in Table 3a as appropriate;(b)from 1 July 2023:(i)the energy efficiency of Ex eb increased safety motors with a rated output equal to or above 0,12 kW and equal to or below 1000 kW, with 2, 4, 6 or 8 poles, and single-phase motors with a rated output equal to or above 0,12 kW shall correspond to at least the IE2 efficiency level set out in Table 1 or in Table 3a as appropriate;(ii)the energy efficiency of three-phase motors which are not brake motors, Ex eb increased safety motors, or other explosion-protected motors, with a rated output equal to or above 75 kW and equal to or below 200 kW, with 2, 4, or 6 poles, shall correspond to at least the IE4 efficiency level set out in Table 3 or in Table 3c as appropriate.Energy efficiency of motors, expressed in International Energy efficiency classes (IE), is set out in Tables 1 to 3c for different values of the motor rated output power PN, at 50 Hz or 60 Hz. IE classes are determined at rated output power (PN), rated voltage (UN), and based on 25 °C ambient reference temperature.For 50/60 Hz motors, the requirements above shall be met at both 50 Hz and 60 Hz at the rated output power specified for 50 Hz.For 50Hz or 60Hz motors the requirements above shall be met at respectively 50Hz or 60Hz at the rated output power specified respectively for 50 Hz or 60 Hz.
Table 1Minimum efficiencies ηn for IE2 efficiency level at 50 Hz (%)
Rated output power PN [kW]Number of poles
2468
0,1253,659,150,639,8
0,1860,464,756,645,9
0,2061,965,958,247,4
0,2564,868,561,650,6
0,3769,572,767,656,1
0,4070,473,568,857,2
0,5574,177,173,161,7
0,7577,479,675,966,2
1,179,681,478,170,8
1,581,382,879,874,1
2,283,284,381,877,6
384,685,583,380,0
485,886,684,681,9
5,587,087,786,083,8
7,588,188,787,285,3
1189,489,888,786,9
1590,390,689,788,0
18,590,991,290,488,6
2291,391,690,989,1
3092,092,391,789,8
3792,592,792,290,3
4592,993,192,790,7
5593,293,593,191,0
7593,894,093,791,6
9094,194,294,091,9
11094,394,594,392,3
13294,694,794,692,6
16094,894,994,893,0
200 up to 100095,095,195,093,5
Table 2Minimum efficiencies ηn for IE3 efficiency level at 50 Hz (%)
Rated output power PN [kW]Number of poles
2468
0,1260,864,857,750,7
0,1865,969,963,958,7
0,2067,271,165,460,6
0,2569,773,568,664,1
0,3773,877,373,569,3
0,4074,678,074,470,1
0,5577,880,877,273,0
0,7580,782,578,975,0
1,182,784,181,077,7
1,584,285,382,579,7
2,285,986,784,381,9
387,187,785,683,5
488,188,686,884,8
5,589,289,688,086,2
7,590,190,489,187,3
1191,291,490,388,6
1591,992,191,289,6
18,592,492,691,790,1
2292,793,092,290,6
3093,393,692,991,3
3793,793,993,391,8
4594,094,293,792,2
5594,394,694,192,5
7594,795,094,693,1
9095,095,294,993,4
11095,295,495,193,7
13295,495,695,494,0
16095,695,895,694,3
200 up to 100095,896,095,894,6
Table 3Minimum efficiencies ηn for IE4 efficiency level 50 Hz (%)
Rated output power PN [kW]Number of poles
2468
0,1266,569,864,962,3
0,1870,874,770,167,2
0,2071,975,871,468,4
0,2574,377,974,170,8
0,3778,181,178,074,3
0,4078,981,778,774,9
0,5581,583,980,977,0
0,7583,585,782,778,4
1,185,287,284,580,8
1,586,588,285,982,6
2,288,089,587,484,5
389,190,488,685,9
490,091,189,587,1
5,590,991,990,588,3
7,591,792,691,389,3
1192,693,392,390,4
1593,393,992,991,2
18,593,794,293,491,7
2294,094,593,792,1
3094,594,994,292,7
3794,895,294,593,1
4595,095,494,893,4
5595,395,795,193,7
7595,696,095,494,2
9095,896,195,694,4
11096,096,395,894,7
13296,296,496,094,9
16096,396,696,295,1
200 up to 24996,596,796,395,4
250 up to 31496,596,796,595,4
315 up to 100096,596,796,695,4
To determine the minimum efficiency of 50 Hz motors with rated power outputs PN of between 0,12 and 200 kW not provided in Tables 1, 2 and 3, the following formula shall be used:02019R1781-20230124_en_img_1A, B, C and D are interpolation coefficients to be determined according to Tables 4 and 5.
Table 3aMinimum efficiencies ηn for IE2 efficiency level at 60 Hz (%)
Rated output power PN [kW]Number of poles
2468
0,1259,564,050,540,0
0,1864,068,055,046,0
0,2568,070,059,552,0
0,3772,072,064,058,0
0,5574,075,568,062,0
0,7575,578,073,066,0
1,182,584,085,575,5
1,584,084,086,582,5
2,285,587,587,584,0
3,787,587,587,585,5
5,588,589,589,585,5
7,589,589,589,588,5
1190,291,090,288,5
1590,291,090,289,5
18,591,092,491,789,5
2291,092,491,791,0
3091,793,093,091,0
3792,493,093,091,7
4593,093,693,691,7
5593,094,193,693,0
7593,694,594,193,0
9094,594,594,193,6
11094,595,095,093,6
15095,095,095,093,6
18595,495,095,093,6
22095,495,495,093,6
25095,495,495,093,6
30095,495,495,093,6
33595,495,495,093,6
375 up to 100095,495,895,094,1
Table 3bMinimum efficiencies ηn for IE3 efficiency level at 60 Hz (%)
Rated output power PN [kW]Number of poles
2468
0,1262,066,064,059,5
0,1865,669,567,564,0
0,2569,573,471,468,0
0,3773,478,275,372,0
0,5576,881,181,774,0
0,7577,083,582,575,5
1,184,086,587,578,5
1,585,586,588,584,0
2,286,589,589,585,5
3,788,589,589,586,5
5,589,591,791,086,5
7,590,291,791,089,5
1191,092,491,789,5
1591,093,091,790,2
18,591,793,693,090,2
2291,793,693,091,7
3092,494,194,191,7
3793,094,594,192,4
4593,695,094,592,4
5593,695,494,593,6
7594,195,495,093,6
9095,095,495,094,1
11095,095,895,894,1
15095,496,295,894,5
18595,896,295,895,0
22095,896,295,895,0
25095,896,295,895,0
30095,896,295,895,0
33595,896,295,895,0
375 up to 100095,896,295,895,0
Table 3cMinimum efficiencies ηn for IE4 efficiency level at 60 Hz (%)
Rated output power PN [kW]Number of poles
2468
0,1266,070,068,064,0
0,1870,074,072,068,0
0,2574,077,075,572,0
0,3777,081,578,575,5
0,5580,084,082,577,0
0,7582,585,584,078,5
1,185,587,588,581,5
1,586,588,589,585,5
2,288,591,090,287,5
3,789,591,090,288,5
5,590,292,491,788,5
7,591,792,492,491,0
1192,493,693,091,0
1592,494,193,091,7
18,593,094,594,191,7
2293,094,594,193,0
3093,695,095,093,0
3794,195,495,093,6
4594,595,495,493,6
5594,595,895,494,5
7595,096,295,894,5
9095,496,295,895,0
11095,496,296,295,0
15095,896,596,295,4
18596,296,596,295,4
22096,296,896,595,4
25096,296,896,595,8
30096,296,896,595,8
33596,296,896,595,8
375 up to 100096,296,896,595,8
Table 4Interpolation coefficients for motors with rated power output P from 0,12 kW up to 0,55 kW
IE codeCoefficients2 poles4 poles6 poles8 poles
IE2A22,486417,2751-15,92186,4855
B27,760323,978-30,2589,4748
C37,809135,582216,686136,852
D82,45884,993579,183870,762
IE3A6,85327,6356-17,361-0,5896
B6,20064,8236-44,538-25,526
C25,131721,0903-3,05544,2884
D84,039286,099879,131875,831
IE4A-8,85388,432-13,0355-4,9735
B-20,33522,6888-36,9497-21,453
C8,900214,6236-4,36212,6653
D85,064187,615382,000979,055
Between 0,55 kW and 0,75 kW, a linear interpolation shall be performed on the obtained minimum efficiencies for 0,55 kW and 0,75 kW.
Table 5Interpolation coefficients for motors with rated power output P from 0,75 kW up to 200 kW
IE codeCoefficients2 poles4 poles6 poles8 poles
IE2A0,29720,02780,01482,1311
B-3,3454-1,9247-2,4978-12,029
C13,065110,439513,24726,719
D79,07780,976177,560369,735
IE3A0,35690,07730,12520,7189
B-3,3076-1,8951-2,613-5,1678
C11,61089,298411,996315,705
D82,250383,702580,476977,074
IE4A0,340,24120,35980,6556
B-3,0479-2,3608-3,2107-4,7229
C10,2938,44610,793313,977
D84,820886,832184,10780,247
To determine the minimum efficiency of 60 Hz motors at a rated power not provided in Tables 3a, 3b and 3c, the following rule shall be used:The efficiency of a rated power at or above the midpoint between 2 consecutive values from the tables shall be the highest of the two efficiencies.The efficiency of a rated power below the midpoint between 2 consecutive values from the tables shall be the lowest of the two efficiencies.Losses are determined in accordance with Annex II.
2.PRODUCT INFORMATION REQUIREMENTS FOR MOTORSThe product information requirements set out in points (1) to (13) below shall be visibly displayed on:(a)the technical data sheet or user manual supplied with the motor, unless an internet link to that information is supplied with the product. A QR code may in addition be supplied with a link to the information;(b)the technical documentation for the purposes of conformity assessment pursuant to Article 5;(c)free access websites of the manufacturer of the motor, its authorised representative or the importer, and;(d)the technical data sheet supplied with products in which the motor is incorporated.As regards to the technical documentation, the information shall be provided in the order as set out in points (1) to (13). The exact wording used in the list does not need to be repeated. The information may be displayed using clearly understandable graphs figures or symbols rather than text.From 1 July 2021 for motors referred to in Annex I.1 (a), and from 1 July 2023 for motors referred to in Annex I.1 (b) (i):(1)rated efficiency (ηN) at the full, 75 % and 50 % rated load, and rated voltage(s) (UN), determined based on 25 °C ambient reference temperature, rounded to one decimal place;(2)efficiency level: "IE2" "IE3" or "IE4", as determined in the first section of this Annex;(3)manufacturer’s name or trade mark, commercial registration number and address;(4)product’s model identifier;(5)number of poles of the motor;(6)the rated power output(s) PN or range of rated power output (kW);(7)the rated input frequency(s) of the motor (Hz);(8)the rated voltage(s) or range of rated voltage (V);(9)the rated speed(s) or range of rated speed (rpm);(10)whether single-phase or three-phase;(11)information on the range of operating conditions for which the motor is designed:(a)altitudes above sea-level;(b)minimum and maximum ambient air temperatures including for motors with air cooling;(c)water coolant temperature at the inlet to the product, where applicable;(d)maximum operating temperature;(e)potentially explosive atmospheres;(12)if the motor is considered exempt from efficiency requirement in accordance with Article 2(2) of this Regulation, the specific reason why it is considered exempt.From 1 July 2022:(13)The power losses expressed in percentage (%) of the rated output power at the following different operating points for speed versus torque: (25;25) (25;100) (50;25) (50;50) (50;100) (90;50) (90;100) determined based on 25 °C ambient reference temperature, rounded to one decimal place; if the motor is not suited for operation at any of the operating points for speed versus torque above, then "N.A." or "Not Applicable" should be indicated for such points.The information referred to in points (1) and (2) as well as the year of manufacture shall be durably marked on or near the rating plate of the motor. Where the size of the rating plate makes it impossible to mark all the information referred to in point (1) only the rated efficiency at full rated load and voltage shall be marked.The information listed in points (1) to (13) does not need to be published on free access websites for tailor-made motors with a special mechanical and electrical design manufactured on the basis of a specific client request if this information is included in the commercial offers provided to the clients.Manufacturers shall provide information in the technical data sheet or user manual supplied with the motor on any specific precautions that must be taken when motors are assembled, installed, maintained or used with variable speed drives.For motors exempt from the efficiency requirements in accordance with point 2(m) of Article 2 of this Regulation, the motor or its packaging and the documentation must clearly indicate "Motor to be used exclusively as spare part for" and the unique model identification of the product(s) for which it is intended.For 50 Hz and 60 Hz motors, the data set out above is provided at the applicable frequency, while for 50/60 Hz motors it is sufficient to provide the data at 50 Hz, except for the rated efficiency at full load, which shall be specified at both 50Hz and 60Hz.Losses are determined in accordance with Annex II.3.EFFICIENCY REQUIREMENTS FOR VARIABLE SPEED DRIVESEfficiency requirements for variable speed drives shall apply as follows:From 1 July 2021, the power losses of variable speed drives rated for operating with motors with a rated output power equal to or above 0,12 kW and equal to or below 1000 kW shall not exceed the maximum power losses corresponding to the IE2 efficiency level.Energy efficiency for VSDs, expressed in International Energy efficiency classes (IE), is determined based on the power losses as follows:The maximum power losses of the IE2 class are 25 % lower than the reference value referred to in Table 6.
Table 6Reference VSD losses and test load displacement factor for the IE class determination of VSDs
Apparent output power of VSD (kVA)Rated power of Motor (kW)(indicative)Reference power losses (kW), at 90 % rated motor stator frequency and 100 % rated torque-producing currentTest load displacement factor cos phi(+/- 0,08)
0,2780,120,1000,73
0,3810,180,1040,73
0,5000,250,1090,73
0,6970,370,1170,73
0,9770,550,1290,73
1,290,750,1420,79
1,711,10,1630,79
2,291,50,1880,79
3,32,20,2370,79
4,4430,2990,79
5,8540,3740,79
7,945,50,4770,85
9,957,50,5810,85
14,4110,7810,85
19,5151,010,85
23,918,51,210,85
28,3221,410,85
38,2301,860,85
47372,250,85
56,9452,700,86
68,4553,240,86
92,8754,350,86
111905,170,86
1351105,550,86
1621326,650,86
1961608,020,86
24520010,00,87
30225012,40,87
38131515,60,87
42935517,50,87
48340019,80,87
60450024,70,87
67756027,60,87
76163031,10,87
85871035,00,87
96780039,40,87
108890044,30,87
1209100049,30,87
If the apparent output power of a VSD is between two values in Table 6, the higher power loss value and the lower value of the test load displacement factor shall be used for the IE class determination.Losses are determined in accordance with Annex II.
4.PRODUCT INFORMATION REQUIREMENTS FOR VARIABLE SPEED DRIVESFrom 1 July 2021, the product information on variable speed drives set out in points (1) to (11) shall be visibly displayed on:(a)the technical data sheet or user manual supplied with the VSD, unless an internet link to that information is supplied with the product. A QR code may in addition be supplied with a link to the information;(b)the technical documentation for the purposes of conformity assessment pursuant to Article 5;(c)free access websites of the manufacturer, its authorised representative or the importer and;(d)the technical data sheet supplied with products in which the VSD is incorporated.As regards to the technical documentation, the information shall be provided in the order as listed in points (1) to (11). The exact wording used in the list does not need to be repeated. It may be displayed using clearly understandable graphs figures or symbols rather than text:(1)power losses in % of the rated apparent output power at the following different operating points for relative motor stator frequency versus relative torque-producing current (0;25) (0;50) (0;100) (50;25) (50;50) (50;100) (90;50) (90;100), as well as standby losses, generated when the VSD is powered up but is not providing current to the load, rounded to one decimal place;(2)efficiency level: "IE2" as determined in the third section of this annex;(3)manufacturer’s name or trade mark, commercial registration number and address;(4)product’s model identifier;(5)apparent output power or range of apparent output power (kVA);(6)indicative motor rated power output(s) PN or range of rated power output (kW);(7)rated output current (A);(8)maximum operating temperature (°C);(9)rated supply frequency(s) (Hz);(10)rated supply voltage(s) or range of rated supply voltage (V);(11)if the VSD is considered exempt from the efficiency requirements in accordance with Article 2(3) of this Regulation the specific reason why it is considered exempt.The information listed above in points (1) to (11) does not need to be published on free access websites for tailor-made VSDs with special electrical design manufactured on the basis of a specific client request if this information is included in the commercial offers provided to the clients.The information referred to in points (1) and (2) as well as the year of manufacture shall be durably marked on or near the rating plate of the VSD. Where the size of the rating plate makes it impossible to mark all the information referred to in point (1) only the power losses in % of the rated apparent output power at (90;100), rounded to one decimal place, shall be marked.Losses are determined in accordance with Annex II.
ANNEX IIMEASUREMENT METHODS AND CALCULATIONSFor the purposes of compliance and verification of compliance with the requirements of this Regulation, measurements and calculations shall be made using harmonised standards the reference numbers of which have been published for this purpose in the Official Journal of the European Union, or other reliable, accurate and reproducible methods, which take into account the generally recognised state-of-the-art, and in line with the following provisions:1.FOR MOTORSThe difference between the output mechanical power and the input electrical power is due to losses occurring in the motor. Total losses shall be determined using the following methods, based on a 25 °C reference ambient temperature:Single-phase motors: Direct measurement: Input-Output;Three-phase motors: Summation of losses: Residual losses.However, for the seven operating points according to Annex I.2 point (13), the losses shall be determined by either direct input-output measurement or by calculation.2.FOR VARIABLE SPEED DRIVESFor the determination of the IE class, the power losses of VSDs shall be determined at 100 % rated torque-producing current and 90 % rated motor stator frequency.The losses shall be determined according to one of the following methods:the input-output method; orthe calorimetric method.The test switching frequency shall be 4 kHz until 111 kVA (90 kW) and 2 kHz above, or at the default factory settings as defined by the manufacturer.It is acceptable to measure VSD losses at a frequency of up to 12 Hz instead of zero.Manufacturers or their authorised representatives can also use the single loss determination method. Calculations have to be performed with respect to component manufacturer’s data with typical values of power semiconductors at the actual VSD operating temperature or at the maximum operating temperature specified in the datasheet. When no component manufacturer data is available, losses shall be determined by measurement. Combination of calculated and measured losses are allowed. The different individual losses are calculated or measured separately and the total losses are determined as the sum of all individual losses.ANNEX IIIVERIFICATION PROCEDURE FOR MARKET SURVEILLANCE PURPOSESThe verification tolerances defined in this Annex relate only to the verification by Member State authorities of the declared values and shall not be used by the manufacturer, importer or authorised representative as an allowed tolerance to establish the values in the technical documentation or in interpreting these values with a view to achieving compliance or to communicate better performance by any means.Where a model has been designed to be able to detect it is being tested (e.g. by recognising the test conditions or test cycle), and to react specifically by automatically altering its performance during the test with the objective of reaching a more favourable level for any of the parameters specified in this Regulation or included in the technical documentation or included in any of the documentation provided, the model and all equivalent models shall be considered not compliant.As part of verifying that a product model complies with the requirements laid down in this Regulation pursuant to Article 3(2) of Directive 2009/125/EC the authorities of the Member States shall apply the following procedure for the requirements referred to in Annex I.(1)The Member State authorities shall verify one single unit of the model.(2)The model shall be considered to comply with the applicable requirements if:(a)the values given in the technical documentation pursuant to point 2 of Annex IV to Directive 2009/125/EC (declared values) and where applicable the values used to calculate these values are not more favourable for the manufacturer, importer or authorised representative than the results of the corresponding measurements carried out pursuant to point (g) thereof; and(b)the declared values meet any requirements laid down in this Regulation and any required product information published by the manufacturer, importer or authorised representative does not contain values that are more favourable for the manufacturer, importer or authorised representative than the declared values; and(c)when the Member State authorities test the unit of the model, the determined values (the values of the relevant parameters as measured in testing and the values calculated from these measurements) comply with the respective verification tolerances as set out in Table 7.(3)If the results referred to in points (2)(a) or (2)(b) are not achieved the model and all equivalent models shall be considered not to comply with this Regulation.(4)If the result referred to in point (2)(c) is not achieved;(a)for models that are produced in quantities of less than five per year including equivalent models, the model and all equivalent models shall be considered not to comply with this Regulation;(b)for models that are produced in quantities of five or more per year including equivalent models, the Member State authorities shall select three additional units of the same model for testing. As an alternative, the three additional units selected may be one or more of equivalent models.(5)The model shall be considered to comply with the applicable requirements if for these three units the arithmetical mean of the determined values complies with the respective verification tolerances given in Table 7.(6)If the result referred to in point (5) is not achieved the model and all equivalent models shall be considered not to comply with this Regulation.(7)The Member State authorities shall provide all relevant information to the authorities of the other Member States and to the Commission without delay after a decision being taken on the non-compliance of the model according to points 3, 6 or the second paragraph of this Annex.The Member State authorities shall use the measurement and calculation methods set out in Annex II.Given the weight and size limitations for the transportation of motors with a rated power output of 375 to 1000 kW Member States authorities may decide to undertake the verification procedure at the premises of manufacturers, authorised representatives or importers before the products are put into service. The Member State authority can do this verification using its own testing equipment.If factory acceptance tests are planned for such motors, which will test parameters laid down in Annex I of this Regulation, the Member State authorities may decide to use witnessed testing during these factory acceptance tests to gather test results which can be used to verify compliance of the motor under investigation. The authorities may request a manufacturer, authorised representative or importer to disclose information on any planned factory acceptance tests relevant for witnessed testing.In the cases mentioned in the two paragraphs above, the Member States authorities only need to verify one single unit of the model. If the result referred to in point 2(c) is not achieved, the model and all equivalent models shall be considered not to comply with this regulation.The Member State authorities shall only apply the tolerances set out in Table 7 and shall only use the procedure described in points (1) to (7) for the requirements referred to in this Annex. For the parameters in Table 7, no other tolerances such as those set out in harmonised standards or in any other measurement method shall be applied.
Table 7Verification tolerancesIn the case of three additional units tested as prescribed in point 4(b), the determined value means the arithmetical mean of the values determined for these three additional units.
ParametersVerification tolerances
Total losses (1-η) for motors with a rated output equal to or above 0,12 kW and equal to or below 150 kW.The determined value shall not exceed the value (1-η) calculated based on the declared η by more than 15 %.
Total losses (1-η) for motors with a rated output of above 150 kW and equal to or below 1000 kW.The determined value shall not exceed the value (1-η) calculated based on the declared η by more than 10 %.
Total losses for variable speed drives.The determined value shall not exceed the declared value by more than 10 %.
ANNEX IVBENCHMARKSAt the time of adoption of this Regulation the best available technology on the market for the environmental aspects that were considered significant and are quantifiable is indicated below.For motors the IE4 level was identified as the best available technology. Motors with losses that are 20 % lower exist but within limited availability and not in all power ranges covered by this Regulation and not in the form of induction motors.For variable speed drives, the best available technology on the market corresponds to 20 % of the reference power losses referred to in Table 6. By utilising silicon carbide technologies (SiC MOFSET), semiconductor losses could be further reduced by about 50 % compared to a conventional solution.
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