COMMISSION REGULATION (EU) 2024/1103
of 18 April 2024
implementing Directive 2009/125/EC of the European Parliament and of the Council as regards ecodesign requirements for local space heaters and separate related controls and repealing Commission Regulation (EU) 2015/1188
(Text with EEA relevance)
Article 1
Subject matter and scope
Article 2
Definitions
Article 3
Ecodesign requirements
Article 4
Conformity assessment
Article 5
Verification procedure for market surveillance purposes
Article 6
Circumvention
Article 7
Software updates
Article 8
Indicative benchmarks
Article 9
Review
Article 10
Repeal
Article 11
Entry into force and application
ANNEX I
Definitions for the purpose of Annexes II to VI
ANNEX II
Ecodesign requirements referred to in Article 3
1.
REQUIREMENTS FOR SEASONAL SPACE HEATING ENERGY EFFICIENCY
2.
REQUIREMENTS FOR EMISSIONS
3.
REQUIREMENTS FOR LOW POWER MODES
4.
PRODUCT INFORMATION REQUIREMENTS
5.
RESOURCE EFFICIENCY REQUIREMENTS
6.
TECHNICAL DOCUMENTATION
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Code of temperature control (TC) |
Control functions |
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f1 |
f2 |
f3 |
f4 |
f5 |
f6 |
f7 |
f8 |
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Type of temperature control |
Single stage, no temperature control |
NC |
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Two or more manual stages, no temperature control |
TX |
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Mechanic thermostat room temperature control |
TM |
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Electronic room temperature control |
TE |
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Electronic room temperature control plus day timer |
TD |
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Electronic room temperature control plus week timer |
TW |
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Control functions |
Presence detection |
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1 |
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Open window detection |
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2 |
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Distance control option |
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3 |
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Adaptative start control |
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4 |
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Working time limitation |
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5 |
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Black bulb sensor |
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6 |
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Self-learning functionality |
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7 |
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Control accuracy with CA < 2 Kelvin and CSD < 2 Kelvin |
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8 |
ANNEX III
Measurement methods and calculations referred to in Article 3
1. GENERAL CONDITIONS FOR MEASUREMENTS AND CALCULATIONS
2. GENERAL CONDITIONS FOR SEASONAL SPACE HEATING ENERGY EFFICIENCY
3. GENERAL CONDITIONS FOR EMISSIONS
4. SPECIFIC CONDITIONS FOR SEASONAL SPACE HEATING ENERGY EFFICIENCY
Thermal transmittance of envelope (U) |
Fenv |
U ≤ 0,5 |
2,2 % |
0,5 < U ≤ 1,0 |
2,4 % |
1,0 < U ≤ 1,4 |
3,2 % |
1,4 < U ≤ 2,0 |
3,6 % |
U>2,0 |
6,0 % |
If the heat output control type of the products is: |
F(1) [%] |
With the following limits |
Single stage |
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Two stage |
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2,5% ≤ F(1) ≤ 5,0% |
Modulating |
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0% ≤ F(1) ≤ 5,0% |
If the product is placed on the market with (only one option may apply) |
F(2) |
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for electric local space heaters |
for gaseous and liquid fuel local space heaters |
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Portable |
Fixed |
Storage |
Underfloor |
Visibly glowing radiant |
Towel rails |
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single stage heat output, no room temperature control |
0 |
0 |
0 |
0 |
0 |
0 |
0 |
two or more manual stages, no temperature control |
0,025 |
0 |
0 |
0 |
0,050 |
0,030 |
0,025 |
with mechanic thermostat room temperature control |
0,100 |
0,025 |
0,025 |
0,025 |
0,025 |
0,030 |
0,050 |
with electronic room temperature control |
0,160 |
0,050 |
0,050 |
0,050 |
0,080 |
0,030 |
0,100 |
with electronic room temperature control plus day timer |
0,170 |
0,095 |
0,095 |
0,095 |
0,100 |
0,095 |
0,125 |
with electronic room temperature control plus week timer |
0,190 |
0,150 |
0,150 |
0,150 |
0,120 |
0,150 |
0,150 |
If the product is placed on the market with (multiple options may apply): |
F(3) |
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for electric local space heaters |
for gaseous and liquid fuel local space heaters |
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Portable |
Fixed |
Storage |
Underfloor |
Visibly glowing radiant |
Towel rails |
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room temperature control with presence detection |
0, 005 |
0 |
0 |
0 |
0,040 |
0 |
0,025 |
room temperature control with open window detection |
0,005 |
0,020 |
0,020 |
0,020 |
0,020 |
0,020 |
0,025 |
with distance control option |
0 |
0,020 |
0,020 |
0,020 |
0 |
0 |
0,025 |
with adaptive start control |
0,005 |
0,020 |
0,020 |
0,020 |
0 |
0,020 |
0 |
with working time limitation |
0,005 |
0 |
0 |
0 |
0,020 |
0,020 |
0 |
with black bulb sensor |
0 |
0 |
0 |
0 |
0,040 |
0 |
0 |
with self-learning functionality |
0 |
0,020 |
0,020 |
0,020 |
0,010 |
0,020 |
0,0125 |
Control accuracy with CA < 2 Kelvin and CSD < 2 Kelvin |
0,020 |
0,020 |
0,020 |
0,020 |
0 |
0,020 |
0,0125 |
5. LOW POWER MODES
6. CONTROL ACCURACY AND CONTROL TO SETPOINT DEVIATION
ANNEX IV
Transitional methods referred to in Article 3
Parameter |
ESO |
Reference/ Title |
Notes |
Direct heat output |
CEN |
EN 613:2021 § 7.11 EN 1266:2002 § 7.12. EN 13278:2013 Open fronted gas-fired independent space heaters § 6.3.1 & § 6.12 & § 7.12 & § 7.3.1 EN 449:2002+A1:2007 |
This is the heat output to the space the product is installed in. It shall be calculated with the equation Direct heat output = Qn * η, where Qn is the nominal heat input and η is the nominal efficiency. Direct heat output shall be calculated as gross calorific value. |
Indirect heat output |
CEN |
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The indirect heat output of gaseous fuel local space heaters is not described in EN standards. For the purpose of declaration and verification the principles as applied in EN 16510-1 may be used |
Useful efficiency at nominal and minimum heat output: ηth,nom , ηth,min |
CEN |
EN 613:2021 § 7.11.2 EN 1266:2002 § 6.12 & § 7.12.2 EN 13278:2013 § 6.12 & § 7.12.2 |
In EN 613, ηth,nom and ηth,min shall be calculated as η in conditions applicable to the nominal and minimum heat output, if relevant. In EN 1266 and EN 13278 ηth,nom corresponds to η if determined with nominal heat input. ηth,min corresponds to η if determined with minimum heat input. All values shall be based on net calorific value. |
Nominal heat output, minimum heat output: Pnom , Pmin |
CEN |
EN 613:2021 EN 1266:2002 § 6.3.1 & § 6.3.3 & § 7.3.1 & § 7.3.5 § 6.12 & § 7.12 EN 13278:2013 § 6.3.1 & § 6.3.3 & § 7.3.1 & § 7.3.5 & § 6.12 & § 7.12.2 EN 449:2002+A1:2007 § 5.15.1 & § 5.15.2 & § 6.15.1 & § 6.15.2 |
In EN 613 Pnom shall be determined as Pnom = Qn*η applicable to nominal output conditions. For Qn see § 7.3.1. Pmin shall be determined as Pmin = minimum heat output*η. For minimum heat output see § 7.3.5. In EN 1266, EN 13278:2013 and EN 449, Pnom shall be determined with Pnom = Qn*ηth,nom and Pmin shall be determined with Pmin = Qm*ηth,min. All values shall be based on net calorific value. |
Electrical power consumption at nominal heat output, elmax |
CEN |
EN 15456:2008: § 5.1.3.1. |
elmax corresponds to Paux 100, measured at nominal load operation. |
Electrical power consumption at minimum heat output: elmin |
CEN |
EN 15456:2008: § 5.1.3.2. |
elmin corresponds to Paux 30, measured at an applicable part load operation. |
Standby mode power consumption: elsm |
CEN |
EN 15456:2008: § 5.1.3.3 or EN 50564:2011 § 5.3 |
elsm corresponds to either Paux sb in EN15456 or to the power consumption in standby mode in EN 50564. |
Emissions of nitrogen oxides (NOx) |
CEN |
EN 613:2021 § 7.7.4 EN 1266:2002 § 7.7.4 & Annex G EN 13278:2013 § 7.7.4 & Annex H Flueless heaters: EN 14829:2007 § 7.9.4 |
EN613, EN1266 and EN13278 establish NOx emissions as weighted values over full-modulating-minimum load conditions. EN 14829:2007 NOx test method to be considered for flueless gas heater. |
Permanent pilot flame power: Ppilot |
CEN |
EN 1266:2002 § 7.3.4 |
EN613 and EN13278 do not have a clause that describes how to calculate the heat input of the ignition burner. |
Control accuracy and Control to Setpoint Deviation: CA and CSD |
CEN |
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The control accuracy for gaseous fuel local space heaters is not described in EN standards. For the purpose of declaration and verification the principles as applied in EN 15500-1 shall be used. |
Parameter |
ESO |
Reference/ Title |
Notes |
Direct heat output |
CEN |
EN 1:1998 § 6.6.2 EN 13842:2004: § 6.3. |
The direct heat output is the heat capacity according to EN 1 § 6.6.2. In EN 13842 the direct heat output can be calculated as Q0* (1-qA). All values shall be based on net calorific value. |
Indirect heat output |
CEN |
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The indirect heat output of liquid fuel local space heaters is not described in EN standards. For the purpose of declaration and verification the principles as applied in EN 16510-1 shall be used |
Useful efficiency at nominal and minimum heat output: ηth,nom, ηth,min |
CEN |
EN 1:1998 § 6.6.1.2 EN 13842:2004 § 6.5.6 |
Following EN 1, ηth,nom corresponds to η at maximum oil flow rate, ηth,min shall be determined as η at minimum oil flow rate. Following EN 13842 ηth,nom shall be calculated as ηth,nom = 1-qA, with qA measured at nominal heat input or at minimum heat input (where applicable). All values shall be based on net calorific value. |
Nominal heat output, minimum heat output: Pnom , Pmin |
CEN |
EN 1:1998/A1:2007 § 6.5.2.1 EN 13842:2004: § 6.3. |
Following EN 1, Pnom corresponds to P at maximum (is nominal) and minimum oil flow rate. Following EN 13842 the nominal heat output can be calculated as: Q0*(1-qA) for nominal and minimum heat output conditions. |
Electrical power consumption at nominal heat output, elmax |
CEN |
EN 15456:2008 § 5.1.3.1. |
elmax corresponds to Paux 100 in EN15456. |
Electrical power consumption at minimum heat output: elmin |
CEN |
EN 15456:2008, § 5.1.3.2. |
Corresponds to auxiliary power requirement Paux 30 in EN15456 |
Standby mode power consumption: Psm |
CEN |
EN 15456:2008, § 5.1.3.3. or EN 50564:2011§ 5.3. |
Corresponds to Paux sb in EN15456 or to the power consumption in standby mode in EN 50564. |
Emissions of nitrogen oxides (NOx) |
CEN |
EN 1:1998/A1:2007 § 6.6.4 EN 13842 Annex C7 |
For declaration and verification the method according to EN 1 shall be used. |
Permanent pilot flame power: Ppilot |
CEN |
EN 1266:2002, § 7.3.4 |
For declaration and verification of such a power requirement the method as in EN1266:2002, § 7.3.4 shall be used. |
Control accuracy and Control to Setpoint Deviation: CA and CSD |
CEN |
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The control accuracy of liquid fuel local space heaters is not described in EN standards. For the purpose of declaration and verification the principles as applied in EN 15500-1 shall be used |
Parameter |
ESO |
Reference/ Title |
Notes |
Nominal heat output: Pnom |
CENELEC |
For electric portable, fixed heaters and underfloor heaters: EN/IEC 60675:1995/A11:2019 Clause 16C For electric storage heaters: EN 60531:2000/A11:2019 § 9.3 |
Following EN 60675:1995/A11:2019 if there is no indirect heat output the maximum continuous heat output (clause 16A) will be equal to the nominal heat output. Pnom corresponds to the following applicable standards: IEC/EN 60335-1: Household and similar electrical appliances — safety— rated voltage: 250 V for single-phase appliances, up to 480 V for others, not intended for appliances for domestic use as usual. IEC/EN 60335-2-30: Household and similar electrical appliances — safety — particular requirements for room heaters. IEC/EN 60335-2-43: Household and similar electrical appliances - Safety - Part 2-43: Particular requirements for clothes dryers and towel rails. IEC/EN 60335-2-61: Household and similar electrical appliances — safety — particular requirements for thermal storage room heaters. IEC/EN 60335-2-96: Household and similar electrical appliances — safety — particular requirements for flexible sheet heating elements for room heating. IEC/EN 60335-2-106: Household and similar electrical appliances — safety — particular requirements for heated carpets and for heating units for room heating. IEC/EN 60531:1991. Household electric thermal storage room heaters — methods for measuring performance |
Maximum continuous heat output: Pmax,c |
CENELEC |
For electric portable, fixed heaters and underfloor heaters: EN/IEC 60675:1995/A11:2019 Clause 16 A |
Pmax,c corresponds to the usable power in IEC 60675 |
Standby mode power consumption: Psm |
CENELEC |
EN 50564:2011 § 5.3 |
Corresponds to power consumption in standby mode in EN 50564. |
F(2) and F(3) |
CENELEC |
For electric portable, fixed heaters and underfloor heaters: EN 60675:1995/A11:2019 § 17 |
EN 60675 provides test methods for all control functions corresponding to F(2) and F(3), except for control accuracy and self-learning functionality |
Control accuracy and Control to Setpoint Deviation: CA and CSD |
CEN |
EN 15500-1:2017 § 5.4 & § 6.3 |
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Parameter |
ESO |
Reference/ Title |
Notes |
Useful efficiency at nominal and minimum heat output: ηth,nom , ηth,min |
CEN |
Tube local space heaters with tube segments other than strips: EN 416:2019 § 7.6.5. Tube local space heaters which tube segments are strips: EN 17175:2019 |
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Nominal heat output, minimum heat output: Pnom , Pmin |
CEN |
Luminous local space heaters: EN 419:2019 Tube local space heaters with tube segments other than strips: EN 416:2019 Tube local space heaters which tube segments are strips: EN 17175:2019 |
For luminous and tube local space heaters, the heat output is calculated as: heat output = heat input Qn * useful efficiency, at nominal or minimum heat output. All values shall be based on gross calorific value of fuel. |
Envelope loss factor: Fenv |
CEN |
EN 1886:2007 § 8.2.1 |
Fenv depends on class T1 to T5 as established by EN 1886. |
Radiant factor (RF for nominal and minimum): RFnom and RFmin |
CEN |
Luminous local space heaters: EN 419:2019: § 7.6.3 Tube local space heaters: EN 416:2019 § 7.5.3 Tube local space heaters which tube segments are strips: EN 17175:2019 |
RF at nominal heat output corresponds to Rf in the standard. RF at minimum heat output corresponds to Rf, but measured at minimum heat output. Rf shall be based on net calorific value. |
Electrical power consumption at nominal heat output: elmax |
CEN |
EN 416:2019 § 6.4.2 EN 419:2019 § 6.8.2 EN 17175:2019 |
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Electrical power consumption at minimum heat output: elmin |
CEN |
EN 416:2019 § 6.4.3 EN 419:2019 § 6.8.3 EN 17175:2019 |
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Standby mode power consumption, Psm |
CEN |
EN 416:2019 § 6.4.4 EN 419:2019 § 6.8.4 EN 17175:2019 EN 50564:2011 |
Corresponds to power consumption in standby mode in EN 50564 |
Permanent pilot flame power: Ppilot |
CEN |
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Neither standard EN 416 nor EN 419, nor EN 17175 describes a method for determining a power requirement for a permanent pilot flame (ignition burner). For declaration and verification of such a power requirement the method as in EN1266:2002, § 7.3.4 shall be used. |
Parameter |
ESO |
Reference/ Title |
Notes |
Off mode: Po |
CEN |
EN 15500-1:2017 § 5.3.2 & § 6.1 EN 50564:2011 § 5.3 |
EN 15500-1 defines the basic layout for testing controls separately from the local space heater, although it does not set out a specific method for testing off mode. A specific method for low power modes of household electrical appliances is laid down in EN 50564:2011, where the corresponding adaptations must be made to check controls. |
Standby mode: Psm |
CEN |
EN 15500-1:2017 § 5.3.2 & § 6.1 EN 50564:2011 § 5.3 |
EN 15500-1 defines the basic layout for testing controls separately from the local space heater, although it does not set out a specific method for testing standby mode. A specific method for low power modes of household electrical appliances is laid down in EN 50564:2011, where the corresponding adaptations must be made to check controls. |
Idle mode: Pidle |
CEN |
EN 15500-1:2017 § 6.2.1 |
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Networked standby: Pnsm |
CEN |
EN 15500-1:2017 § 5.3.2 & § 6.1 EN 50564:2011 § 5.3 |
EN 15500-1 defines the basic layout for testing controls separately from the local space heater, although it does not set out a specific method for testing networked standby mode. A specific method for low power modes of household electrical appliances is laid down in EN 50564:2011, where the corresponding adaptations must be made to check controls. |
Standby mode with display of information or status |
CEN |
EN 15500-1:2017 § 5.3.2 & § 6.1 EN 50564:2011 § 5.3 |
EN 15500-1 defines the basic layout for testing controls separately from the local space heater, although it does not set out a specific method for testing standby mode with display of information or status. A specific method for low power modes of household electrical appliances is laid down in EN 50564:2011, where the corresponding adaptations must be made to check controls. |
Control Accuracy and Control to Setpoint Deviation: CA and CSD |
CEN |
EN 15500-1:2017 § 5.4 & § 6.3 |
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ANNEX V
Verification procedure for the purpose of market surveillance referred to in Article 5
Parameters |
Verification tolerances |
ηS for electric local space heaters |
The determined value (*1) of ηS is not worse than the declared value of ηs. |
ηS for liquid fuel local space heaters |
The determined value (*1) of ηS is not more than 8% lower than the declared value of ηs. |
ηS for gaseous fuel local space heaters |
The determined value (*1) of ηS is not more than 8% lower than the declared value of ηs. |
ηS for commercial local space heaters |
The determined value (*1) of ηS is not more than 10% lower than the declared value of ηs. |
Pnom |
The determined value (*1) of Pnom is not more than 10% lower than the declared value of Pnom . |
NOx emissions of gaseous fuel local space heaters, liquid fuel local space heaters and commercial local space heaters |
The determined value (*1) is not more than 10% higher than the declared value of emissions of NOx. |
Po |
The determined value (*1) shall not exceed the declared value of Po by more than 0,10 W. |
Psm, Pidle, Pnsm |
The determined value (*1) shall not exceed the declared value by more than 10% if the declared value of Psm, Pidle or Pnsm is higher than 1,00 W, or by more than 0,10 W if the declared value is lower than or equal to 1,00 W. |