🇵🇱 ZAKŁADY BADAŃ I ATESTACJI „ZETOM” PL
Petrochemistry & fuelsMaterials & polymersWater & wastewaterConstructionElectronics & EMCEnvironment
ZAKŁADY BADAŃ I ATESTACJI „ZETOM” is a laboratory accredited by PCA under number AB 024 (Katowice, Poland). Its accreditation scope covers 249 test methods in the following areas: Petrochemistry & fuels, Materials & polymers, Water & wastewater, Construction. Test objects include: Pellet-fired local space heaters, Solid fuel local space heaters, Fireplace inserts together with fireplaces fired by solid fuels, Solid fuel cookers.
At a glance
- Accreditation number: PCA AB 024
- Methods in scope: 249
- Types of test objects: 29
- City: Katowice, Poland
- Accreditation number
- AB 024
- Accreditation body
- PCA
- Address
- im. PROF. F. STAUBA W KATOWICACH Sp. z o.o., LABORATORIUM BADAWCZE I WZORCUJĄCE - ZESPÓŁ ds. BADAŃ, ul. Ks. Bpa H. Bednorza 17, 40-384 Katowice
- City
- Katowice, Poland
What this laboratory tests (29)
- Pellet-fired local space heaters — 41 methods
- Solid fuel local space heaters — 40 methods
- Fireplace inserts together with fireplaces fired by solid fuels — 38 methods
- Solid fuel cookers — 34 methods
- Boilers and heating appliances — 28 methods
- Luminaires — 12 methods
- Metal products: - wires - pipes - plates - strips - butt welded joints - open and closed sections — 10 methods
- Electrotechnical and electronic products — 8 methods
- Child care articles - Wheeled child conveyances intended for the transport of one or more children with a mass of up to 15 kg each, not motor-driven, not intended for disabled children — 7 methods
- Metal products - steel for the reinforcement of concrete - welded reinforcing mesh - steel for the prestressing of concrete — 4 methods
- Heating boilers with automatic fuel feeding — 3 methods
- Heating boilers with manual fuel feeding — 3 methods
- Industrial machines — 3 methods
- Solid electrical insulating materials — 3 methods
- Boilers and space heaters — 1 method
- and 14 more
Accreditation scope — test methods (249)
| No. | Test object | Methodology / Parameters | Technique | Reference document | |
|---|---|---|---|---|---|
| Test methods | |||||
| 1 | Solid electrical insulating materials | Dielectric strength Range: (0 – 30) kV | PN-EN 60243-1:2013-12 | ||
| 2 | Solid electrical insulating materials | Tests based on the use of the glow-wire / hot wire Ball pressure test | PN-EN 60695-2-10:2013-12 PN-EN 60695-2-11:2005 PN-EN 60695-2-11:2015-02 PN-EN 60695-2-12:2011+A1:2014-10 PN-EN 60695-2-13:2011+A1:2014-10 PN-EN IEC 60695-2-11:2022-07 PN-EN IEC 60695-2-13:2022-05 PN-EN 60695-10-2 :2014-10 | ||
| 3 | Solid electrical insulating materials | Resistance to tracking currents | PN-EN 60112:2003+A1:2010 | ||
| 4 | Electrical insulating materials Industrial rigid laminated sheets based on thermosetting resins for electrical purposes | Geometric dimensions Range: up to 500 mm Mechanical strength Flexural strength Electric strength Range: (0 – 30) kV Water absorption Range: up to 900 mg | PN-EN 60893-2:2005 p. 4 p. 5 p. 6.1 | ||
| 5 | Cable trunking systems and cable ducting systems for electrical installations | Mechanical strength Range: Loading of the installation trunking Impact resistance External load test Retention by the system components of the protection against access Electric strength Range: Electrical insulation Thermal endurance Range: Heat resistance External influences Degrees of protection provided by enclosures (not less than IP20) | PN-EN 50085-1:2010 p. 10 p. 11.2 p. 12 p. 14 | ||
| 6 | Heated trays | Characteristics and properties for the assessment of safety in use: Abrasion resistance and durability of marking Protection against access to live parts Starting of the motor-operated appliance Power and current consumption power: up to 18 kW current: up to 80 A Temperature rise by the heating method up to 1000C Electric strength and leakage current at operating temperature leakage current: up to 50 mA test voltage up to 5 kV Resistance to humidity Degree of protection – IP code from 00 to 67 Electric strength and leakage current leakage current: up to 50 mA test voltage up to 5 kV Protection against overload of transformers and circuits supplied from transformers Resistance to wear Operation under abnormal conditions Stability and protection against mechanical injury Mechanical strength Hammer energy 0,2 J; 0,35 J; 0,5 J; 0,7 J Electric strength Creepage distances and clearances distance from 0,0 mm to 10,0 mm Resistance to high temperature, glow up to 1000C Resistance to rusting | PN-EN 60335-1:2012 +A11:2014-10+AC:2014-03 PN-EN 60335-1:2012/A1:2019-10 PN-EN 60335-1:2012/A2:2019-11 PN-EN 60335-1:2012/A13:2017-11 PN-EN 60335-1:2012/A14:2020-05 PN-EN 60335-1:2012/A15:2022-01 PN-EN 60335-1:2012/A16:2024-04 PN-EN 60335-2-12:2004+A1:2008 PN-EN 60335-2-12:2004/A2:2019-11 PN-EN 60335-2-12:2004/A11:2019-11 | ||
| 7 | Deep fat fryers, frying pans and similar appliances | Characteristics and properties for the assessment of safety in use: Abrasion resistance and durability of marking Protection against access to live parts Starting of the motor-operated appliance Power and current consumption power: up to 18 kW current: up to 80 A Temperature rise by the heating method up to 1000C Electric strength and leakage current at operating temperature leakage current: up to 50 mA test voltage up to 5 kV Resistance to humidity Degree of protection – IP code from 00 to 67 Electric strength and leakage current leakage current: up to 50 mA test voltage up to 5 kV Protection against overload of transformers and circuits supplied from transformers Resistance to wear Operation under abnormal conditions Stability and protection against mechanical injury Mechanical strength Hammer energy 0,2 J; 0,35 J; 0,5 J; 0,7 J Electric strength Creepage distances and clearances distance from 0,0 mm to 10,0 mm Resistance to high temperature, glow up to 1000C Resistance to rusting | PN-EN 60335-1:2012 +A11:2014-10+AC:2014-03 PN-EN 60335-1:2012/A1:2019-10 PN-EN 60335-1:2012/A2:2019-11 PN-EN 60335-1:2012/A13:2017-11 PN-EN 60335-1:2012/A14:2020-05 PN-EN 60335-1:2012/A15:2022-01 PN-EN 60335-1:2012/A16:2024-04 PN-EN 60335-2-13:2010 PN-EN 60335-2-13:2010/A11:2012 PN-EN 60335-2-13:2010/A1:2019-11 | ||
| 8 | Kitchen machines | Characteristics and properties for the assessment of safety in use: Abrasion resistance and durability of marking Protection against access to live parts Starting of the motor-operated appliance Power and current consumption power: up to 18 kW current: up to 80 A Temperature rise by the heating method up to 1000C Electric strength and leakage current at operating temperature leakage current: up to 50 mA test voltage up to 5 kV Resistance to humidity Degree of protection – IP code from 00 to 67 Electric strength and leakage current leakage current: up to 50 mA test voltage up to 5 kV Protection against overload of transformers and circuits supplied from transformers Resistance to wear Operation under abnormal conditions Stability and protection against mechanical injury Mechanical strength Hammer energy 0,2 J; 0,35 J; 0,5 J; 0,7 J Electric strength Creepage distances and clearances distance from 0,0 mm to 10,0 mm Resistance to high temperature, glow up to 1000C Resistance to rusting | PN-EN 60335-1:2012 +A11:2014-10+AC:2014-03 PN-EN 60335-1:2012/A1:2019-10 PN-EN 60335-1:2012/A2:2019-11 PN-EN 60335-1:2012/A13:2017-11 PN-EN 60335-1:2012/A14:2020-05 PN-EN 60335-1:2012/A15:2022-01 PN-EN 60335-1:2012/A16:2024-04 PN-EN 60335-2-14:2009+A1:2009+ A11:2012 PN-EN 60335-2-14:2009/A12:2016-03 | ||
| 9 | Room heaters | Characteristics and properties for the assessment of safety in use: Abrasion and durability of marking Protection against electric shock Starting of motor-operated appliances Power and current input power: up to 18 kW current: up to 80 A Temperature rise by the heating method up to 1000C Dielectric strength and leakage current at operating temperature leakage current: up to 50 mA test voltage up to 5 kV Resistance to moisture Degree of protection – IP code from 00 to 67 Dielectric strength and leakage current leakage current : up to 50 mA test voltage up to 5 kV Overload protection of transformers and of circuits supplied from transformers Resistance to wear Operation under abnormal conditions Stability and protection against mechanical injury Mechanical strength Hammer energy 0,2 J; 0,35 J; 0,5 J; 0,7 J Dielectric strength Creepage distances and clearances distance from 0,0 mm to 10,0 mm Resistance to high temperature, glow heat up to 1000C Resistance to rusting | PN-EN 60335-1:2012 +A11:2014-10+AC:2014-03 PN-EN 60335-1:2012/A1:2019-10 PN-EN 60335-1:2012/A2:2019-11 PN-EN 60335-1:2012/A13:2017-11 PN-EN 60335-1:2012/A14:2020-05 PN-EN 60335-1:2012/A15:2022-01 PN-EN 60335-1:2012/A16:2024-04 PN-EN 60335-2-30:2010+AC:2010 +A11:2012+AC1:2015-02 PN-EN 60335-2-30:2010/A1:2020-09 PN-EN 60335-2-30:2010/A12:2021-02 PN-EN 60335-2-30:2010/A2:2023-03 PN-EN 60335-2-30:2010/A13:2023-04 | ||
| 10 | Skin or hair care appliances | Features and properties for the purposes of assessing the safety of use: Abrasion resistance and durability of marking Protection against electric shock Starting of motor-operated appliances Power input and current power: up to 18 kW current: up to 80 A Temperature rise by the heating method up to 1000C Electric strength and leakage current at operating temperature leakage current: up to 50 mA test voltage up to 5 kV Moisture resistance Degree of protection – IP code from 00 to 67 Electric strength and leakage current leakage current : up to 50 mA test voltage up to 5 kV Overload protection of transformers and circuits supplied from transformers Resistance to wear Operation under abnormal conditions Stability and protection against mechanical injury Mechanical strength Hammer energy 0,2 J; 0,35 J; 0,5 J; 0,7 J Electric strength Creepage distances and clearances distance from 0,0 mm to 10,0 mm Resistance to high temperature, glow up to 1000C | PN-EN 60335-1:2012 +A11:2014-10+AC:2014-03 PN-EN 60335-1:2012/A1:2019-10 PN-EN 60335-1:2012/A2:2019-11 PN-EN 60335-1:2012/A13:2017-11 PN-EN 60335-1:2012/A14:2020-05 PN-EN 60335-1:2012/A15:2022-01 PN-EN 60335-1:2012/A16:2024-04 PN-EN 60335-2-23:2006+Ap1:2007 +A1:2008+A11:2010+A2:2015-03+AC 2012 PN-EN IEC 60335-2-23:2023-10 PN-EN IEC 60335-2-23:2023- 10/A1:2023-12 | ||
| 11 | Electric blankets and pads | Characteristics and properties for the assessment of safety in use: Abrasion and durability of marking Protection against electric shock Starting of motor-operated appliances Power and current input power: up to 18 kW current: up to 80 A Temperature rise by the heating method up to 1000C Dielectric strength and leakage current at operating temperature leakage current: up to 50 mA test voltage up to 5 kV Resistance to moisture Degree of protection – IP code from 00 to 67 Dielectric strength and leakage current leakage current : up to 50 mA test voltage up to 5 kV Overload protection of transformers and of circuits supplied from transformers Resistance to wear Operation under abnormal conditions Stability and protection against mechanical injury Mechanical strength Hammer energy 0,2 J; 0,35 J; 0,5 J; 0,7 J Dielectric strength Creepage distances and clearances distance from 0,0 mm to 10,0 mm Resistance to high temperature, glow heat up to 1000C Resistance to rusting | PN-EN 60335-1:2012 +A11:2014-10+AC:2014-03 PN-EN 60335-1:2012/A1:2019-10 PN-EN 60335-1:2012/A2:2019-11 PN-EN 60335-1:2012/A13:2017-11 PN-EN 60335-1:2012/A14:2020-05 PN-EN 60335-1:2012/A15:2022-01 PN-EN 60335-1:2012/A16:2024-04 PN-EN 60335-2-17:2013-06 PN-EN 60335-2-17:2013-06/A1:2020-09 PN-EN 60335-2-17:2013-06/A11:2019-11 PN-EN 60335-2-17:2013-06/A2:2022-01 | ||
| 12 | Luminaires | Durability of marking | PN-EN 60598-1:2015-04 p. 3 PN-EN 60598-1:2015-04/A1:2018-04 PN-EN IEC 60598-1:2021-07 PN-EN IEC 60598-1:2021-07/A11:2022-12 | ||
| 13 | Luminaires | Mechanical and electrical properties of the structure excluding: - vibration requirements - UV radiation | PN-EN 60598-1:2015-04 Dział 4 z wyłączeniem p. 4.20 | PN-EN 60598-1:2015-04/A1:2018-04 PN-EN IEC 60598-1:2021-07 PN-EN IEC 60598-1:2021-07/A11:2022-12 Dział 4 z wyłączeniem p. 4.20 | ||
| 14 | Luminaires | Correctness of the external and internal wiring | PN-EN 60598-1:2015-04 p. 5 PN-EN 60598-1:2015-04/A1:2018-04 PN-EN IEC 60598-1:2021-07 PN-EN IEC 60598-1:2021-07/A11:2022-12 | ||
| 15 | Luminaires | Provision for earthing | PN-EN 60598-1:2015-04 p. 7 PN-EN 60598-1:2015-04/A :2018-04 PN-EN IEC 60598-1:2021-07 PN-EN IEC 60598-1:2021-07/A11:2022-12 | ||
| 16 | Luminaires | Protection against electric shock testing according to clause 4 of the standard | PN-EN 60598-1:2015-04 p. 8 PN-EN 60598-1:2015-04/A1:2018-04 PN-EN IEC 60598-1:2021-07 PN-EN IEC 60598-1:2021-07/A11:2022-12 | ||
| 17 | Luminaires | Resistance to ingress of dust, solid objects and water from 00 to 67 Chamber dimensions 1m x 1m x 1m IP2X – IP6X IPX1 – IPX7 | PN-EN 60598-1:2015-04 p. 9 PN-EN 60598-1:2015-04/A1:2018-04 PN-EN IEC 60598-1:2021-07 PN-EN IEC 60598-1:2021-07/A11:2022-12 | ||
| 18 | Luminaires | Insulation resistance and dielectric strength, touch current, protective conductor current | PN-EN 60598-1:2015-04 p. 10 PN-EN 60598-1:2015-04/A1:2018-04 PN-EN IEC 60598-1:2021-07 PN-EN IEC 60598-1:2021-07/A11:2022-12 | ||
| 19 | Luminaires | Creepage distances and clearances | PN-EN 60598-1:2015-04 p. 11 PN-EN 60598-1:2015-04/A1:2018-04 PN-EN IEC 60598-1:2021-07 PN-EN IEC 60598-1:2021-07/A11:2022-12 | ||
| 20 | Luminaires | Durability test and thermal test | PN-EN 60598-1:2015-04 p. 12 PN-EN 60598-1:2015-04/A1:2018-04 PN-EN IEC 60598-1:2021-07 PN-EN IEC 60598-1:2021-07/A11:2022-12 | ||
| 21 | Luminaires | Resistance to heat, fire and tracking | PN-EN 60598-1:2015-04 p. 13 PN-EN 60598-1:2015-04/A1:2018-04 PN-EN IEC 60598-1:2021-07 PN-EN IEC 60598-1:2021-07/A11:2022-12 | ||
| 22 | Luminaires | Correctness of the construction of screw terminals | PN-EN 60598-1:2015-04 p. 14 PN-EN 60598-1:2015-04/A1:2018-04 PN-EN IEC 60598-1:2021-07 PN-EN IEC 60598-1:2021-07/A11:2022-12 | ||
| 23 | Luminaires | Correctness of the construction of screwless terminals and electrical connectors | PN-EN 60598-1:2015-04 Dział 15 PN-EN 60598-1:2015-04/A1:2018-04 PN-EN IEC 60598-1:2021-07 PN-EN IEC 60598-1:2021-07/A11:2022-12 | ||
| 24 | Portable general purpose luminaires | Features and properties according to the product standard for luminaires PN-EN 60598-1:2015-04 PN-EN 60598-1:2015-04/A1 :2018-04 PN-EN IEC 60598-1:2021-07 PN-EN IEC 60598-1:2021-07/A11:2022- 11 | PN-EN 60598-2-4:2002 PN-EN 60598-2-4:2018-06 | ||
| 25 | Lighting chains | Characteristics and properties according to the product standard for luminaires PN-EN 60598-1:2015-04 PN-EN 60598-1:2015-04/A1:2018-04 PN-EN IEC 60598-1:2021-07 PN-EN IEC 60598-1:2021-07/A11:2022- 11 | PN-EN 60598-2-20:2015-07 | ||
| 26 | Electrical busbar trunking systems for luminaires Mixed class I and III supply systems | Characteristics and properties according to the product standard for luminaires PN-EN 60598-1:2015-04 PN-EN 60598-1:2015-04/A1:2018-04 PN-EN IEC 60598-1:2021-07 PN-EN IEC 60598-1:2021-07/A11:2022- 11 | PN-EN 60570:2007 PN-EN 60570:2007/A1:2018-07 PN-EN 60570:2007/A2:2020-09 | ||
| 27 | Industrial machines | Correctness of the electrical equipment | PN-EN 60204-1:2010+AC:2011 za wyjątkiem p. 20.6 | ||
| 28 | Industrial machines | Gaps and distances of machine control elements - Safety distances | Instrukcja Badań QL - 0103 iB wyd. 02 z dnia 17.04.2000 r. | ||
| 29 | Industrial machines | Mechanical strength of the actuators of control devices - Correctness of design | Instrukcja Badań QL - 1101 iB wyd. 01 z dnia 17.01.2000 r. | ||
| 30 | Electrotechnical and electronic products | Fire hazard Heat resistance test - ball pressure test | PN-EN 60695-10-2:2014-10 | ||
| 31 | Electrotechnical and electronic products | Fire hazard Heat resistance test - test method based on the use of a glowing/hot wire | PN-EN 60695-2-10:2013-12 | ||
| 32 | Electrotechnical and electronic products | Fire hazard Heat resistance test - test method based on the use of a glowing /hot wire – end products | PN-EN 60695-2-11:2015-02 PN-EN IEC 60695-2-11:2022-07 | ||
| 33 | Electrotechnical and electronic products | Fire hazard Heat resistance test - test method based on the use of a glowing / hot wire – materials | PN-EN 60695-2-12:2011+A1:2014-10 | ||
| 34 | Electrotechnical and electronic products | Fire hazard Heat resistance test - glow-wire test method for the flammability of materials | PN-EN 60695-2-13:2011+A1:2014-10 PN-EN IEC 60695-2-13:2022-05 | ||
| 35 | Electrotechnical and electronic products | Fire hazard Fire hazard test - needle-flame test method | PN-EN 60695-11-5:2007 PN-EN 60695-11-5:2017-08 | ||
| 36 | Electrotechnical and electronic products | Degrees of protection provided by enclosures (IP code) Chamber dimensions 1m x 1m x 1m IP2X – IP5X IPX1 – IPX7 | PN-EN 60529:2003+A2:2014-07 | ||
| 37 | Electrotechnical and electronic products | Impact resistance testing (IK Code) | PN-EN 60068-2-75:2000 PN-EN 60068-2-75:2015-01 PN-EN 62262:2003 PN-EN 62262:2003/A1:2022-06 PN-EN 62262:2003/Ap1:2022-01 | ||
| 38 | Boilers and space heaters | Features and properties for the purposes of assessing the safety of use: - Electric strength and leakage current at room temperature - Earthing connections. Earth continuity | PN-EN 60335-2-102:2016 PN-EN IEC 60335-2-102:2025-01 PN-EN IEC 60335-2-102:2025- 01/A11:2025-04 | ||
| 39 | Heating boilers with manual fuel feeding | Thermal tests: Heat output Range: (0 – 500) kW Flow water temperature Return water temperature Cold water temperature Range: (0 – 100 ) °C Thermoelectric method Ambient temperature Range: (0 – 110 ) °C Resistance method Flue gas outlet temperature Range: (0 – 300 ) °C Thermoelectric method Flue gas pressure: Range: (800 – 1300 ) hPa Piezoresistive method | PN-EN 303-5:2012 p. 5.2 PN-EN 303-5:2021-09 p. 5.2 PN-EN 303-5+A1:2023-05 p. 5.2 EN 303-5:2021+A1:2022 p. 5.2 PN-EN 303-5:2012 p. 5.7 PN-EN 303-5:2021-09 p. 5.6 PN-EN 303-5+A1:2023-05 p. 5.6 EN 303-5:2021+A1:2022 p. 5.6 PN-EN 303-5:2012 p. 5.8 PN-EN 303-5:2021-09 p. 5.7 PN-EN 303-5+A1:2023-05 p. 5.7 EN 303-5:2021+A1:2022 p. 5.7 PN-EN 303-5:2012 p. 5.9 PN-EN 303-5:2021-09 p. 5.8 PN-EN 303-5+A1:2023-05 p. 5.8 EN 303-5:2021+A1:2022 p. 5.8 | ||
| 40 | Heating boilers with manual fuel feeding | Concentration of oxygen, carbon dioxide, carbon monoxide, nitrogen monoxide, nitrogen oxides, volatile organic compounds, Range: - O (0,38 – 21) % 2 Paramagnetic method, - CO (0,3 – 18) % 2 - CO (12,5 – 750) mg/m3 NDIR method - NO (10,25 – 500) mg/m3 - NOx (16,0 – 780) mg/m3 CLD method - OGC (3,5 – 960) mg/m3 FID method Dust concentration in flue gases Range: (1,0 – 200) mg/m3 Gravimetric method | |||
| 41 | Heating boilers with manual fuel feeding | Emission of oxygen, carbon dioxide, carbon monoxide, nitrogen monoxide, nitrogen oxides, volatile organic compounds, dust Range: - O (0,38 – 21) % 2 Paramagnetic method - CO (0,3 – 18) % 2 - CO (12,5 – 750) mg/m3 NDIR method - NO (10,25 – 500) mg/m3 - NOx (16,0 – 780) mg/m3 CLD method - OGC (3,5 – 960) mg/m FID method Dust concentration in flue gases Range: (1,0 – 200) mg/m3 Gravimetric method | PN-EN 303-5:2012 p. 5.2 PN-EN 303-5:2021-09 p. 5.2 PN-EN 303-5+A1:2023-05 p. 5.2 EN 303-5:2021+A1:2022 p. 5.2 PN-EN 303-5:2012 p. 5.9.1 PN-EN 303-5:2012 p. 5.9.3 PN-EN 303-5:2021-09 p. 5.8.1 PN-EN 303-5+A1:2023-05 p. 5.8.1 EN 303-5:2021+A1:2022 p. 5.8.1 PN-EN 303-5:2012 p. 5.10.4 PN-EN 303-5:2021-09 p. 5.9.4 PN-EN 303-5+A1:2023-05 p. 5.9.4 EN 303-5:2021+A1:2022 p. 5.9.4 | ||
| 42 | Heating boilers with automatic fuel feeding | Thermal tests: Heat output Range: (0 – 500) kW Flow water temperature Return water temperature Cold water temperature Range: (0 – 100 ) °C Thermoelectric method Ambient temperature Range: (0 – 110 ) °C Resistance method Flue gas outlet temperature Range: (0 – 300 ) °C Thermoelectric method Flue gas pressure: Range: (800 – 1300 ) hPa Piezoresistive method | PN-EN 303-5:2012 p. 5.2 PN-EN 303-5:2021-09 p. 5.2 PN-EN 303-5+A1:2023-05 p. 5.2 EN 303-5:2021+A1:2022 p. 5.2 PN-EN 303-5:2012 p. 5.7 PN-EN 303-5:2021-09 p. 5.6 PN-EN 303-5+A1:2023-05 p. 5.6 EN 303-5:2021+A1:2022 p. 5.6 PN-EN 303-5:2012 p. 5.8 PN-EN 303-5:2021-09 p. 5.7 PN-EN 303-5+A1:2023-05 p. 5.7 EN 303-5:2021+A1:2022 p. 5.7 PN-EN 303-5:2012 p. 5.9 PN-EN 303-5:2021-09 p. 5.8 PN-EN 303-5+A1:2023-05 p. 5.8 EN 303-5:2021+A1:2022 p. 5.8 | ||
| 43 | Heating boilers with automatic fuel feeding | Concentration of oxygen, carbon dioxide, carbon monoxide, nitrogen monoxide, nitrogen oxides, volatile organic compounds, Range: - O (0,38 – 21) % 2 Paramagnetic method - CO (0,3 – 18) % 2 - CO (12,5 – 750) mg/m3 NDIR method - NO (10,25 – 500) mg/m3 - NOx (16,0 – 780) mg/m3 CLD method - OGC (3,5 – 960) mg/m3 FID method Dust concentration in flue gases Range: (1,0 – 200) mg/m3 Gravimetric method | |||
| 44 | Heating boilers with automatic fuel feeding | Emission of oxygen, carbon dioxide, carbon monoxide, nitrogen monoxide, nitrogen oxides, volatile organic compounds, dust Range: - O (0,38 – 21) % 2 Paramagnetic method - CO (0,3 – 18) % 2 - CO (12,5 – 750) mg/m3 NDIR method - NO (10,25 – 500) mg/m3 - NOx (16,0 – 780) mg/m3 CLD method - OGC (3,5 – 960) mg/m FID method Dust concentration in flue gases Range: (1,0 – 200) mg/m3 Gravimetric method | PN-EN 303-5:2012 p. 5.2 PN-EN 303-5:2021-09 p. 5.2 PN-EN 303-5+A1:2023-05 p. 5.2 EN 303-5:2021+A1:2022 p. 5.2 PN-EN 303-5:2012 p. 5.9.2 PN-EN 303-5:2012 p. 5.9.3 PN-EN 303-5:2021-09 p. 5.8.2 PN-EN 303-5+A1:2023-05 p. 5.8.2 EN 303-5:2021+A1:2022 p. 5.8.2 PN-EN 303-5:2012 p. 5.10.4 PN-EN 303-5:2021-09 p. 5.9.4 PN-EN 303-5+A1:2023-05 p. 5.9.4 EN 303-5:2021+A1:2022 p. 5.9.4 | ||
| 45 | Boilers and heating appliances | Heat load on the boiler Range: (0 – 500) kW Direct method | PN-EN 303-5:2012 p. 5.8.1 PN-EN 303-5:2021-09 p. 5.7.1 PN-EN 303-5+A1:2023-05 p. 5.7.1 EN 303-5:2021+A1:2022 p. 5.7.1 | ||
| 46 | Boilers and heating appliances | Heat output (calculated) | PN-EN 303-5:2012 p. 5.10.1 PN-EN 303-5:2021-09 p. 5.9.1 PN-EN 303-5+A1:2023-05 p. 5.9.1 EN 303-5:2021+A1:2022 p. 5.9.1 PN-EN 303-5:2012 p. 5.10.2 PN-EN 303-5:2021-09 p. 5.9.2 PN-EN 303-5+A1:2023-05 p. 5.9.2 EN 303-5:2021+A1:2022 p. 5.9.2 | ||
| 47 | Boilers and heating appliances | Nominal heat output Range: (0 – 500) kW Direct method | PN-EN 303-5:2012 p. 5.8.2 PN-EN 303-5:2021-09 p. 5.7.2 PN-EN 303-5+A1:2023-05 p. 5.7.2 EN 303-5:2021+A1:2022 p. 5.7.2 | ||
| 48 | Boilers and heating appliances | Minimum heat output Range: (0 – 500) kW Direct method | PN-EN 303-5:2012 p. 5.8.3 PN-EN 303-5:2021-09 p. 5.7.3 PN-EN 303-5+A1:2023-05 p. 5.7.3 EN 303-5:2021+A1:2022 p. 5.7.3 | ||
| 49 | Boilers and heating appliances | Verification of the nominal heat output in condensing mode | PN-EN 303-5:2021-09 p 5.7.4 PN-EN 303-5+A1:2023-05 p. 5.7.4 EN 303-5:2021+A1:2022 p. 5.7.4 | ||
| 50 | Boilers and heating appliances | Verification of the minimum heat output in condensing mode | PN-EN 303-5:2021-09 p 5.7.5 PN-EN 303-5+A1:2023-05 p. 5.7.5 EN 303-5:2021+A1:2022 p. 5.7.5 | ||
| 51 | Boilers and heating appliances | Thermal efficiency Direct method (calculated) | PN-EN 303-5:2012 p. 5.8.4 PN-EN 303-5:2021-09 p. 5.7.6 PN-EN 303-5+A1:2023-05 p. 5.7.6 EN 303-5:2021+A1:2022 p. 5.7.6 PN-EN 303-5:2012 p. 5.10.3.1 PN-EN 303-5:2021-09 p. 5.9.3.2 PN-EN 303-5+A1:2023-05 p. 5.9.3.2 EN 303-5:2021+A1:2022 p. 5.9.3.2 | ||
| 52 | Boilers and heating appliances | Auxiliary electrical energy consumption Range: 0 – 2 kW Method: Power transducer with current transformer | PN-EN 303-5:2012 p. 5.8.5 PN-EN 303-5:2021-09 p. 5.7.7 PN-EN 303-5+A1:2023-05 p. 5.7.7 EN 303-5:2021+A1:2022 p. 5.7.7 | ||
| 53 | Boilers and heating appliances | Thermal efficiency Indirect method (calculated) | PN-EN 303-5:2012 p. 5.10.3.2 PN-EN 303-5:2021-09 p. 5.9.3.3 PN-EN 303-5+A1:2023-05 p. 5.9.3.3 EN 303-5:2021+A1:2022 p. 5.9.3.3 | ||
| 54 | Boilers and heating appliances | Useful efficiency nGCV (calculated) | PN-EN 303-5:2021-09 p. 5.9.3.4 PN-EN 303-5+A1:2023-05 p. 5.9.3.4 EN 303-5:2021+A1:2022 p. 5.9.3.4 | ||
| 55 | Boilers and heating appliances | Seasonal space heating energy efficiency (calculated) | PN-EN 303-5:2021-09 p. 5.9.3.5 PN-EN 303-5+A1:2023-05 p. 5.9.3.5 EN 303-5:2021+A1:2022 p. 5.9.3.5 | ||
| 56 | Boilers and heating appliances | Energy efficiency index EEI (calculated) | PN-EN 303-5:2021-09 p. 5.9.3.6 PN-EN 303-5+A1:2023-05 p. 5.9.3.6 EN 303-5:2021+A1:2022 p. 5.9.3.6 | ||
| 57 | Boilers and heating appliances | Seasonal space heating emissions Es (calculated) | PN-EN 303-5:2021-09 p. 5.9.4.4 PN-EN 303-5+A1:2023-05 p. 5.9.4.4 EN 303-5:2021+A1:2022 p. 5.9.4.4 | ||
| 58 | Boilers and heating appliances | Water flow resistance Water pressure Range: (0 – 100) mBar Piezoresistive method | PN-EN 303-5:2012 p. 5.11 PN-EN 303-5:2021-09 p. 5.10 PN-EN 303-5+A1:2023-05 p. 5.10 EN 303-5:2021+A1:2022 p. 5.10 | ||
| 59 | Boilers and heating appliances | Temperature of external surfaces Surface temperature Range: (-50 – 250) °C Method: IR Temperature of handles Range: (-40 – 250) °C Thermoelectric method | PN-EN 303-5:2012 p. 5.12 PN-EN 303-5:2021-09 p. 5.11 PN-EN 303-5+A1:2023-05 p. 5.11 EN 303-5:2021+A1:2022 p. 5.11 | ||
| 60 | Boilers and heating appliances | Verification of the condensate composition | PN-EN 303-5:2021-09 p. 5.12 PN-EN 303-5+A1:2023-05 p. 5.12 EN 303-5:2021+A1:2022 p. 5.12 | ||
| 61 | Boilers and heating appliances | Operation of the temperature controller and the safety temperature limiter Range: (0 – 110) °C Thermoelectric method | PN-EN 303-5:2012 p. 5.13 PN-EN 303-5:2021-09 p. 5.13 PN-EN 303-5+A1:2023-05 p. 5.13 EN 303-5:2021+A1:2022 p. 5.13 | ||
| 62 | Boilers and heating appliances | Operation of rapid shut-down systems | PN-EN 303-5:2012 p. 5.14 PN-EN 303-5:2021-09 p. 5.14 PN-EN 303-5+A1:2023-05 p. 5.14 EN 303-5:2021+A1:2022 p. 5.14 | ||
| 63 | Boilers and heating appliances | Operation of the excess heat discharge device | PN-EN 303-5:2012 p. 5.15 PN-EN 303-5:2021-09 p. 5.15 PN-EN 303-5+A1:2023-05 p. 5.15 EN 303-5:2021+A1:2022 p. 5.15 | ||
| 64 | Boilers and heating appliances | Safety of automatic boilers under fuel overfeeding conditions and under fuel supply blockage | PN-EN 303-5:2012 p. 5.16.2 PN-EN 303-5:2021-09 p. 5.16.2 PN-EN 303-5+A1:2023-05 p. 5.16.2 EN 303-5:2021+A1:2022 p. 5.16.2 | ||
| 65 | Boilers and heating appliances | Boiler safety in the event of air supply failure | PN-EN 303-5:2012 p. 5.16.3 PN-EN 303-5:2021-09 p. 5.16.3 PN-EN 303-5+A1:2023-05 p. 5.16.3 EN 303-5:2021+A1:2022 p. 5.16.3 | ||
| 66 | Boilers and heating appliances | Boiler safety with respect to heat conduction | PN-EN 303-5:2012 p. 5.16.4 PN-EN 303-5:2021-09 p. 5.16.4 PN-EN 303-5+A1:2023-05 p. 5.16.4 EN 303-5:2021+A1:2022 p. 5.16.4 | ||
| 67 | Boilers and heating appliances | Boiler safety – additional tests to demonstrate compliance with safety requirements | PN-EN 303-5:2012 p. 5.16.5 PN-EN 303-5:2021-09 p. 5.16.5 PN-EN 303-5+A1:2023-05 p. 5.16.5 EN 303-5:2021+A1:2022 p. 5.16.5 | ||
| 68 | Boilers and heating appliances | Safety of the condensation process | PN-EN 303-5:2021-09 p. 5.17 PN-EN 303-5+A1:2023-05 p. 5.17 EN 303-5:2021+A1:2022 p. 5.17 | ||
| 69 | Boilers and heating appliances | Additional safety testing of boilers with external air supply to the combustion chamber | PN-EN 303-5:2021-09 p. 5.18 PN-EN 303-5+A1:2023-05 p. 5.18 EN 303-5:2021+A1:2022 p. 5.18 | ||
| 70 | Boilers and heating appliances | Leakage index | PN-EN 303-5:2021-09 p. 5.18.1 PN-EN 303-5+A1:2023-05 p. 5.18.1 EN 303-5:2021+A1:2022 p. 5.18.1 | ||
| 71 | Boilers and heating appliances | Temperature of the combustion air supply connection Range: (0 – 200 ) °C Thermoelectric method | PN-EN 303-5:2021-09 p. 5.18.2 PN-EN 303-5+A1:2023-05 p. 5.18.2 EN 303-5:2021+A1:2022 p. 5.18.2 | ||
| 72 | Boilers and heating appliances | Functional safety and design constraints caused by recirculation of flue gases with the combustion air stream Range: - O (0,38 – 21) % 2 Paramagnetic method - CO (0,3 – 18) % 2 - CO (12,5 – 750) mg/m3 NDIR method - NO (10,25 – 500) mg/m3 - NOx (16,0 – 780) mg/m3 CLD method - OGC (3,5 – 960) mg/m FID method Flue gas pressure: Range: (800 – 1300) hPa Piezoresistive method Ambient pressure: Range: (950 – 1050) hPa Piezoresistive method | PN-EN 303-5:2021-09 p. 5.18.3 PN-EN 303-5+A1:2023-05 p. 5.18.3 EN 303-5:2021+A1:2022 p. 5.18.3 | ||
| 73 | Boilers with pressurised combustion chamber | Tightness of flue gas ducts Flue gas pressure: Range: (800 – 1300) hPa Method: piezoresistive | PN-EN 303-5:2012 p. 5.6 PN-EN 303-5:2021-09 p. 5.16.6 PN-EN 303-5+A1:2023-05 p. 5.16.6 EN 303-5:2021+A1:2022 p. 5.16.6 | ||
| 74 | Solid fuel local space heaters | Fuel parameters: | |||
| 75 | Solid fuel local space heaters | Mass of fuel Range: (0,01 – 30) kg Strain gauge method | PN-EN 13240:2008 p. A.4.2 PN-EN 16510-1:2023-06 p. A.4.2 PN-EN 16510-2-1:2023-06 p. A.4 „N” | ||
| 76 | Solid fuel local space heaters | Flue gas parameters: | |||
| 77 | Solid fuel local space heaters | Flue gas temperature Range: (0 – 300) °C Thermoelectric method | PN-EN 13240:2008 p. A.4.4.3 PN-EN 16510-1:2023-06 p. 6.2 | PN-EN 16510-2-1:2023-06 p. A.4 „N” | ||
| 78 | Solid fuel local space heaters | Flue gas pressure: Range: (800 – 1300) hPa Piezoresistive method | PN-EN 13240:2008 p. A.2.3.4 | PN-EN 16510-1:2023-06 p. A.2.3.4 | PN-EN 16510-2-1:2023-06 p. A.2 | ||
| 79 | Solid fuel local space heaters | Concentrations of oxygen, carbon dioxide, carbon monoxide: Range: - O (0,38 – 21) % 2 Paramagnetic method, - CO (0,3 – 18) % 2 - CO (12,5 – 2000) mg/m3 NDIR method Emission of CO (calculated) | PN-EN 13240:2008 p. A.3 | PN-EN 16510-1:2023-06 p. 6.3 | PN-EN 16510-2-1:2023-06 p. A.3 | ||
| 80 | Solid fuel local space heaters | Concentrations of nitrogen monoxide, nitrogen oxides (NO, NO), OGC: x Range: - NO (10,25 – 500) mg/m3 - NO (16,0 – 780) mg/m3 x CLD method, - OGC (3,5 – 960) mg/m3 FID method, Emission of CO ; NO, NO, OGC 2 x (calculated) | PN-EN 16510-1:2023-06 p. 6.3, A.2, A.3, A.6; Załącznik D.2.2, D.3, D.4, D.5; Załącznik E PN-EN 16510-2-1:2023-06 p. A.2, A.3, A.4, A.6 „N” | ||
| 81 | Solid fuel local space heaters | Air parameters: | |||
| 82 | Solid fuel local space heaters | Ambient temperature Range: (0 – 110) °C Resistance method Ambient pressure: Range: (800 – 1300 ) hPa Piezoresistive method | PN-EN 13240:2008 p. A.1.1 | PN-EN 16510-1:2023-06 p. A.1.1 | PN-EN 16510-2-1:2023-06 p. A.3 | ||
| 83 | Solid fuel local space heaters | Water parameters: | |||
| 84 | Solid fuel local space heaters | Temperature: Range: (0 – 100 ) °C Thermoelectric method | PN-EN 13240:2008 p. A.2.5 | PN-EN 16510-1:2023-06 p. A.3 | PN-EN 16510-2-1:2023-06 p. A.3 | ||
| 85 | Solid fuel local space heaters | Water volume flow rate: Range (0,1 – 25) m3/h Electromagnetic method | PN-EN 13240:2008 p. A.2.5 | PN-EN 16510-1:2023-06 p. A.2.5 | PN-EN 16510-2-1:2023-06 p. A.3 | ||
| 86 | Solid fuel local space heaters | Water flow resistance Water pressure Range: (0 – 100) mBar Piezoresistive method | PN-EN 16510-1:2023-06 p. A.2.5 PN-EN 16510-2-1:2023-06 p. A.2 „N” | ||
| 87 | Solid fuel local space heaters | Heat balance (calculated): | |||
| 88 | Solid fuel local space heaters | Heat input from fuel (1 – 85) kW | PN-EN 13240:2008 p. 6.6 | PN-EN 16510-1:2023-06 p. A.6.2.2 PN-EN 16510-2-1:2023-06 p. A.2 | ||
| 89 | Solid fuel local space heaters | Flue gas loss (5 – 40) % | PN-EN 13240:2008 p. A.6.2.1.1 PN-EN 16510-1:2023-06 p. A.6.2.1.2 PN-EN 16510-2-1:2023-06 p. A.6 „N” | ||
| 90 | Solid fuel local space heaters | Losses due to incomplete combustion | PN-EN 13240:2008 p. A.6.2.1.2 PN-EN 16510-1:2023-06 p. A.6.2.1.3 PN-EN 16510-2-1:2023-06 p. A.6 „N” | ||
| 91 | Solid fuel local space heaters | Loss due to incomplete combustion | PN-EN 13240:2008 p. A. 6.2.1.3 PN-EN 16510-1:2023-06 p. A.6.2.1.4 PN-EN 16510-2-1:2023-06 p. A.6 „N” | ||
| 92 | Solid fuel local space heaters | Thermal efficiency (20 – 95) % | PN-EN 13240:2008 p. A.6.2.1 PN-EN 16510-1:2023-06 p. A.6.2.1.1 PN-EN 16510-2-1:2023-06 p. A.6 „N” | ||
| 93 | Solid fuel local space heaters | Total heat output (1 – 100) kW | PN-EN 13240:2008 p. A.6.2.2 PN-EN 16510-1:2023-06 p. A.6.2.2 PN-EN 16510-2-1:2023-06 p. A.6 „N” | ||
| 94 | Solid fuel local space heaters | Heat output of the water circuit (1 – 100) kW | PN-EN 13240:2008 p. A.6.2.3 PN-EN 16510-1:2023-06 p. A.6.2.3 PN-EN 16510-2-1:2023-06 p. A.6 „N” | ||
| 95 | Solid fuel local space heaters | Heat output to the room (1 – 100) kW | PN-EN 13240:2008 p. A.6.2.4 PN-EN 16510-1:2023-06 p. A.6.2.4 PN-EN 16510-2-1:2023-06 p. A.6 „N” | ||
| 96 | Solid fuel local space heaters | Flue gas mass flow rate (0,1 – 100) g/s | PN-EN 13240:2008 p. A.6.2.5 PN-EN 16510-1:2023-06 p. A.6.2.5 PN-EN 16510-2-1:2023-06 p. A.6 „N” | ||
| 97 | Solid fuel local space heaters | CO content (O2=13%) (0,001 – 0,16)% | PN-EN 13240:2008 p. A.6.2.6 PN-EN 16510-1:2023-06 p. A.6.2.6 PN-EN 16510-2-1:2023-06 p. A.6 „N” | ||
| 98 | Solid fuel local space heaters | Technical and operational parameters: | |||
| 99 | Solid fuel local space heaters | Temperature of the measuring corner and of the substrate Range: thermoelectric m. (30 – 200) °C IR m. (35 – 500) °C Thermoelectric method, IR | PN-EN 13240:2008 p. A.4.7 | PN-EN 16510-1:2023-06 p. 5.4 | PN-EN 16510-2-1:2023-06 p. A.4 „N” | ||
| 100 | Solid fuel local space heaters | Fuel hopper temperature Range: ( 25 – 180 ) °C Method: IR | |||
| 101 | Solid fuel local space heaters | Temperature of handles Range: (-40 – 500 ) °C Thermoelectric method | |||
| 102 | Solid fuel local space heaters | Tightness of the water space (0,1 – 0,8) MPa | PN-EN 13240:2008 p. A.4.9.4 PN-EN 16510-1:2023-06 p. A.4.10.6 PN-EN 16510-2-1:2023-06 p. A.4 „N” | ||
| 103 | Solid fuel local space heaters | Thermal discharge safety device Water temperature (0 – 120) °C Water pressure (0,1 – 0,3) MPa | PN-EN 13240:2008 p. A.4.9.5 PN-EN 16510-1:2023-06 p. A.4.10.7 PN-EN 16510-2-1:2023-06 p. A.4 „N” | ||
| 104 | Solid fuel local space heaters | Tightness of flue ducts (0,025 – 4) m3/h | PN-EN 16510-1:2023-06 p. A.4.11.2 PN-EN 16510-2-1:2023-06 p. A.4 „N” | ||
| 105 | Solid fuel local space heaters | Tightness related to CO emission (calculated) | PN-EN 16510-1:2023-06 p. 5.9.1 | ||
| 106 | Solid fuel local space heaters | Auxiliary electricity consumption Range: (0 – 2) kW Method: Power transducer with current transformer | PN-EN 16510-1:2023-06 p. 6.11 | ||
| 107 | Solid fuel local space heaters | Temperature safety test | PN-EN 16510-1:2023-06 p. A.4.10.4 | ||
| 108 | Solid fuel local space heaters | Safety test under natural draught | PN-EN 16510-1:2023-06 p. A.4.10.5 | ||
| 109 | Solid fuel local space heaters | Operation of the safety temperature limiter (0 – 110) °C | PN-EN 16510-1:2023-06 p. A.4.10.7 | ||
| 110 | Solid fuel local space heaters | Loss of electrical power supply (0 – 110) °C | PN-EN 16510-1:2023-06 p. A.4.10.7 | ||
| 111 | Solid fuel local space heaters | Loss of heat dissipation (0 – 110) °C, (0 – 5) % CO | PN-EN 16510-1:2023-06 p. A.4.10.7 | ||
| 112 | Solid fuel local space heaters | Efficiency (calculated) | PN-EN 16510-1:2023-06 p. A.6.2.1.5 | ||
| 113 | Solid fuel local space heaters | Dust concentration in flue gases Range: (1 – 200) mg/m3 Method: gravimetric | PN-EN 16510-1:2023-06 p. 6.3.1 | PN-EN 16510-2-1:2023-06 p. 4.6 „N“ | ||
| 114 | Fireplace inserts together with fireplaces fired by solid fuels | Fuel parameters: | |||
| 115 | Fireplace inserts together with fireplaces fired by solid fuels | Fuel mass Range: (0,1 – 1500) kg Strain gauge method | PN-EN 13229:2002 p. A.4.2 PN-EN 16510-1:2023-06 p. A.4.2 PN-EN 16510-2-2:2023-06 p. A.4 „N” | ||
| 116 | Fireplace inserts together with fireplaces fired by solid fuels | Flue gas parameters: | |||
| 117 | Fireplace inserts together with fireplaces fired by solid fuels | Flue gas temperature Range: (0 – 300 ) °C Thermoelectric method | PN-EN 13229:2002 p. A.4.4.3 PN-EN 16510-1:2023-06 p. 6.2 | PN-EN 16510-2-2:2023-06 p. A.4 „N” | ||
| 118 | Fireplace inserts together with fireplaces fired by solid fuels | Flue gas pressure: Range: (800 – 1300) hPa Piezoresistive method | PN-EN 13229:2002 p. A.2.3.4 | PN-EN 16510-1:2023-06 p. A.2.3.4 | PN-EN 16510-2-2:2023-06 p. A.2 | ||
| 119 | Fireplace inserts together with fireplaces fired by solid fuels | Concentrations of oxygen, carbon dioxide, carbon monoxide: Range: - O (0,38 – 21) % 2 Paramagnetic method, - CO (0,3 – 18) % 2 - CO (12,5 – 2000) mg/m3 NDIR method, CO emission (calculated) | PN-EN 13229:2002 p. A.4.4.2 PN-EN 16510-1:2023-06 p. 6.3 | PN-EN 16510-2-2:2023-06 p. A.3 | ||
| 120 | Fireplace inserts together with fireplaces fired by solid fuels | Concentrations of nitrogen monoxide, nitrogen oxides (NO, NO), OGC: x Range: - NO (10,25 – 500) mg/m3 - NO (16,0 – 780) mg/m3 x CLD method, - OGC (3,5 – 960) mg/m3 FID method, Emission of CO ; NO, NO, OGC 2 x (calculated) | PN-EN 16510-1:2023-06 p. 6.3, A.2, A.3, A.6, Załącznik D.2.2, D.3, D.4, D.5, Załącznik E PN-EN 16510-2-2:2023-06 p. A.2, A.3, A.6 „N” | ||
| 121 | Fireplace inserts together with fireplaces fired by solid fuels | Air parameters: | |||
| 122 | Fireplace inserts together with fireplaces fired by solid fuels | Ambient temperature Range: (0 – 110 ) °C Resistance method Ambient pressure: Range: (800 – 1300 ) hPa Piezoresistive method | PN-EN 13229:2002 p. A.1.1 | PN-EN 16510-1:2023-06 p. A.3 | PN-EN 16510-2-2:2023-06 p. A.3 | ||
| 123 | Fireplace inserts together with fireplaces fired by solid fuels | Water parameters: | |||
| 124 | Fireplace inserts together with fireplaces fired by solid fuels | Temperature: Range: (0 – 100 ) °C Thermoelectric method | PN-EN 13229:2002 p. A.2.5 | PN-EN 16510-1:2023-06 p. A.4.5.2 PN-EN 16510-2-2:2023-06 p. A.4 „N” | ||
| 125 | Fireplace inserts together with fireplaces fired by solid fuels | Water volume flow rate: Range (0,1-25) m3/h Electromagnetic method | PN-EN 13229:2002 p. A.2.5 | PN-EN 16510-1:2023-06 p. A.4.5.2 PN-EN 16510-2-2:2023-06 p. A.4 „N” | ||
| 126 | Fireplace inserts together with fireplaces fired by solid fuels | Water flow resistance Water pressure Range: (0 – 100) mBar Piezoresistive method | PN-EN 16510-1:2023-06 p. A.2.5 PN-EN 16510-2-2:2023-06 p. A.2 „N” | ||
| 127 | Fireplace inserts together with fireplaces fired by solid fuels | Heat balance (calculated): | |||
| 128 | Fireplace inserts together with fireplaces fired by solid fuels | Heat input with fuel (1 – 100) kW | PN-EN 13229:2002 p. A.6.2.2 PN-EN 16510-1:2023-06 p. A.6.2.2 PN-EN 16510-2-2:2023-06 p. A.6 „N” | ||
| 129 | Fireplace inserts together with fireplaces fired by solid fuels | Flue gas loss (5 – 40) % | PN-EN 13229:2002 p. A.6.2.1.1 PN-EN 16510-1:2023-06 p. A.6.2.1.2 PN-EN 16510-2-2:2023-06 p. A.6 „N” | ||
| 130 | Fireplace inserts together with fireplaces fired by solid fuels | Losses due to incomplete combustion | PN-EN 13229:2002 p. A.6.2.1.2 PN-EN 16510-1:2023-06 p. A.6.2.1.3 PN-EN 16510-2-2:2023-06 p. A.6 „N” | ||
| 131 | Fireplace inserts together with fireplaces fired by solid fuels | Loss due to incomplete combustion | PN-EN 13229:2002 p. A.6.2.1.3 PN-EN 16510-1:2023-06 p. A.6.2.1.4 PN-EN 16510-2-2:2023-06 p. A.6 „N” | ||
| 132 | Fireplace inserts together with fireplaces fired by solid fuels | Thermal efficiency (20 – 95) % | PN-EN 13229:2002 p. A.6.2.1 PN-EN 16510-1:2023-06 p. A.6.2.1.1 PN-EN 16510-2-2:2023-06 p. A.6 „N” | ||
| 133 | Fireplace inserts together with fireplaces fired by solid fuels | Total heat output (1 – 100) kW | PN-EN 13229:2002 p. A.6.2.2 PN-EN 16510-1:2023-06 p. A.6.2.2 PN-EN 16510-2-2:2023-06 p. A.6 „N” | ||
| 134 | Fireplace inserts together with fireplaces fired by solid fuels | Heat output of the water circuit (1 – 100) kW | PN-EN 13229:2002 p. A.6.2.3 PN-EN 16510-1:2023-06 p. A.6.2.3 PN-EN 16510-2-2:2023-06 p. A.6 „N” | ||
| 135 | Fireplace inserts together with fireplaces fired by solid fuels | Heat output to the room (1 – 100) kW | PN-EN 13229:2002 p. A.6.2.4 PN-EN 16510-1:2023-06 p. A.6.2.4 PN-EN 16510-2-2:2023-06 p. A.6 „N” | ||
| 136 | Fireplace inserts together with fireplaces fired by solid fuels | Flue gas mass flow rate (0,1 – 100) g/s | PN-EN 13229:2002 p. A.6.2.5 PN-EN 16510-1:2023-06 p. A.6.2.5 PN-EN 16510-2-2:2023-06 p. A.6 „N” | ||
| 137 | Fireplace inserts together with fireplaces fired by solid fuels | CO content (O2=13%) (0,001 – 0,16)% | PN-EN 13229:2002 p. A.6.2.6 PN-EN 16510-1:2023-06 p. A.6.2.6 PN-EN 16510-2-2:2023-06 p. A.6 „N” | ||
| 138 | Fireplace inserts together with fireplaces fired by solid fuels | Technical and operational parameters: | |||
| 139 | Fireplace inserts together with fireplaces fired by solid fuels | Temperature of the measuring corner and of the substrate Range: thermoelectric m. (30 – 200) °C IR m. (35 – 500) °C Thermoelectric method, IR | PN-EN 13229:2002 p. A.4.7; A.4.8; A.4.9 PN-EN 16510-1:2023-06 p. 5.4, 5.5, 5.6, A.2.2, A.4.7, A.4.8, A.4.9, A.4.10 PN-EN 16510-2-2:2023-06 p. 5.5, 5.6, A.4.7, A.4.8, A.4.9, A.4.10 „N” | ||
| 140 | Fireplace inserts together with fireplaces fired by solid fuels | Fuel hopper temperature Range: (25 – 180) °C IR method | |||
| 141 | Fireplace inserts together with fireplaces fired by solid fuels | Handle temperature Range: (-40 – 250 ) °C Thermoelectric method | |||
| 142 | Fireplace inserts together with fireplaces fired by solid fuels | Tightness of the water space (0,1 – 0,8) MPa | PN-EN 13229:2002 p. A.4.9.5 PN-EN 16510-1:2023-06 p. A.4.10.6 PN-EN 16510-2-2:2023-06 p. 5.3.3 | ||
| 143 | Fireplace inserts together with fireplaces fired by solid fuels | Thermal discharge safety device Water temperature (0÷120) °C Water pressure (0,1÷0,3) MPa | PN-EN 13229:2002 p. A.4.9.6 PN-EN 16510-1:2023-06 p. A.4.10.7 PN-EN 16510-2-2:2023-06 p. A.4 „N” | ||
| 144 | Fireplace inserts together with fireplaces fired by solid fuels | Tightness of flue ducts (0,025 – 4) m3/h | PN-EN 16510-1:2023-06 p. A.4.11.2 PN-EN 16510-2-2:2023-06 p. A.4 „N” | ||
| 145 | Fireplace inserts together with fireplaces fired by solid fuels | Tightness related to CO emission (calculated) | PN-EN 16510-1:2023-06 p. 5.9.1 | ||
| 146 | Fireplace inserts together with fireplaces fired by solid fuels | Auxiliary electricity consumption Range: (0 – 2) kW Method: Power transducer with current transformer | PN-EN 16510-1:2023-06 p. 6.11 PN-EN 16510-2-2:2023-06 p. 4.7.9 | ||
| 147 | Fireplace inserts together with fireplaces fired by solid fuels | Temperature safety test | PN-EN 16510-1:2023-06 p. A.4.10.4 | ||
| 148 | Fireplace inserts together with fireplaces fired by solid fuels | Safety test under natural draught | PN-EN 16510-1:2023-06 p. A.4.10.5 | ||
| 149 | Fireplace inserts together with fireplaces fired by solid fuels | Operation of the safety temperature limiter (0 – 110) °C | PN-EN 16510-1:2023-06 p. A.4.10.7 | ||
| 150 | Fireplace inserts together with fireplaces fired by solid fuels | Efficiency (calculated) Seasonal space heating efficiency (calculated) EEI (calculated) | PN-EN 16510-1:2023-06 p. A.6.2.1.5 | PN-EN 16510-2-2:2023-06 p. 4.7.7 | ||
| 151 | Fireplace inserts together with fireplaces fired by solid fuels | Dust concentration in flue gases Range: (1 – 200) mg/m3 Gravimetric method | PN-EN 16510-1:2023-06 p. 6.3.1 | PN-EN 16510-2-2:2023-06 p. 4.5 „N” | ||
| 152 | Solid fuel cookers | Fuel parameters: | |||
| 153 | Solid fuel cookers | Fuel mass Range: (0,1 – 1500) kg Strain gauge method | PN-EN 12815:2004 p. A.4.2 PN-EN 16510-1:2023-06 p. A.3 | PN-EN 16510-2-3:2023-06 p. A.3 | ||
| 154 | Solid fuel cookers | Flue gas parameters: | |||
| 155 | Solid fuel cookers | Flue gas temperature Range: (0 – 300 ) °C Thermoelectric method | PN-EN 12815:2004 p. A.2.3.2 | PN-EN 16510-1:2023-06 p. A.2.3.2 | PN-EN 16510-2-3:2023-06 p. A.4 „N” | ||
| 156 | Solid fuel cookers | Flue gas pressure: Range: (800 – 1300 ) hPa Piezoresistive method | PN-EN 12815:2004 p. A.2.3.2 | PN-EN 16510-1:2023-06 p. A.2.3.2 | PN-EN 16510-2-3:2023-06 p.A.2 | ||
| 157 | Solid fuel cookers | Concentrations of oxygen, carbon dioxide, carbon monoxide: Range: - O (0,38 – 21) % 2 Paramagnetic method, - CO (0,3 – 18) % 2 - CO (12,5 – 2000) mg/m3 NDIR method, CO emission (calculated) | PN-EN 12815:2004 p. A.2.3 | PN-EN 16510-1:2023-06 p. A.2.3 | PN-EN 16510-2-3:2023-06 p. A.3 | ||
| 158 | Solid fuel cookers | Concentrations of nitrogen monoxide, nitrogen oxides (NO, NO), OGC: x Range: - NO (10,25 – 500) mg/m3 - NO (16,0 – 780) mg/m3 x CLD method, - OGC (3,5 – 960) mg/m3 FID method, Emission of CO ; NO, NO, OGC 2 x (calculated) | PN-EN 16510-1:2023-06 p. 6.3, A.2, A.3, A.6, Załącznik D.2.2, D.3, D.4, D.5; Załącznik E PN-EN 16510-2-3:2023-06 p. A.2, A.3, A.4, A.6 „N” | ||
| 159 | Solid fuel cookers | Air parameters: | |||
| 160 | Solid fuel cookers | Ambient temperature Range: (0 – 110 ) °C Resistance method Ambient pressure: Range: (800 – 1300 ) hPa Piezoresistive method | PN-EN 12815:2004 p. A.1.1 | PN-EN 16510-1:2023-06 p. A.1 | PN-EN 16510-2-3:2023-06 p. A.1 „N” | ||
| 161 | Solid fuel cookers | Water parameters: | |||
| 162 | Solid fuel cookers | Temperature: Range: (0 – 100 ) °C Thermoelectric method | PN-EN 12815:2004 p. A.2.5 | PN-EN 16510-1:2023-06 p. A.2.5 | PN-EN 16510-2-3:2023-06 p. A.2 | ||
| 163 | Solid fuel cookers | Water volume flow rate: Range (0,1-25) m3/h Electromagnetic method | PN-EN 12815:2004 p. A.2.5 | PN-EN 16510-1:2023-06 p. A.2.5 | PN-EN 16510-2-3:2023-06 p. A.2 | ||
| 164 | Solid fuel cookers | Water flow resistance Water pressure Range: (0 – 100) mBar Piezoresistive method | PN-EN 16510-1:2023-06 p. A.2.5 PN-EN 16510-2-3:2023-06 p. A.2 „N” | ||
| 165 | Solid fuel cookers | Heat balance (calculated): | |||
| 166 | Solid fuel cookers | Heat input with fuel (1 – 100) kW | PN-EN 12815:2004 p. A.4.2 | PN-EN 16510-1:2023-06 p. A.4.5 | PN-EN 16510-2-3:2023-06 p. A.6 „N” | ||
| 167 | Solid fuel cookers | Flue gas loss (5 – 40) % | PN-EN 12815:2004 p. A.4.4 | PN-EN 16510-1:2023-06 p. A.6.2.1.2 PN-EN 16510-2-3:2023-06 p. A.6 „N” | ||
| 168 | Solid fuel cookers | Losses due to incomplete combustion | PN-EN 12815:2004 p. A.4.4 | PN-EN 16510-1:2023-06 p. A.4.4 | PN-EN 16510-2-3:2023-06 p. A.6 „N” | ||
| 169 | Solid fuel cookers | Loss due to incomplete combustion | PN-EN 12815:2004 p. A.4.6 | PN-EN 16510-1:2023-06 p. A.4.4 | PN-EN 16510-2-3:2023-06 p. A.6 „N” | ||
| 170 | Solid fuel cookers | Thermal efficiency (20 – 95) % | PN-EN 12815:2004 p. A.6.2.1 PN-EN 16510-1:2023-06 p. A.6.2.1.1 PN-EN 16510-2-3:2023-06 p. A.6 „N” | ||
| 171 | Solid fuel cookers | Total heat output (1 – 100) kW | PN-EN 12815:2004 p. A.6.2.2 PN-EN 16510-1:2023-06 p. A.6.2.2 PN-EN 16510-2-3:2023-06 p. A.6 „N” | ||
| 172 | Solid fuel cookers | Heat output of the water circuit (1 – 100) kW | PN-EN 12815:2004 p. A.6.2.3 PN-EN 16510-1:2023-06 p. A.6.2.3 PN-EN 16510-2-3:2023-06 p. A.6 „N” | ||
| 173 | Solid fuel cookers | Heat output to the room (1 – 100) kW | PN-EN 12815:2004 p. A.6.2.4 PN-EN 16510-1:2023-06 p. A.6.2.4 PN-EN 16510-2-3:2023-06 p. A.6 „N” | ||
| 174 | Solid fuel cookers | Flue gas mass flow rate (0,1 – 100) g/s | PN-EN 12815:2004 p. A.6.2.5 PN-EN 16510-1:2023-06 p. A.6.2.5 PN-EN 16510-2-3:2023-06 p. A.6 „N” | ||
| 175 | Solid fuel cookers | CO content (O =13%) 2 (0,001 – 0,16) % | PN-EN 12815:2004 p. A.6.2.6 PN-EN 16510-1:2023-06 p. A.6.2.6 PN-EN 16510-2-3:2023-06 p. A.6 „N” | ||
| 176 | Solid fuel cookers | Technical and operational parameters: | |||
| 177 | Solid fuel cookers | Temperature of the measurement corner and the substrate Range: thermoelectric m. (30 – 200)ºC IR m. (35 – 500) ºC Thermoelectric method, IR | PN-EN 12815:2004 p. A.4.8, A.4.9, A.4.10, A.4.12, A.4.16 PN-EN 16510-1:2023-06 p. 5.4, 5.5, 5.6, A.2.2, A.4.7, A.4.8, A.4.9 PN-EN 16510-2-3:2023-06 p. A.4, A.4.301.1, A.4.301.2, A.4.301.3 „N” | ||
| 178 | Solid fuel cookers | Fuel hopper temperature Range: (25 – 180) °C IR method | |||
| 179 | Solid fuel cookers | Temperature of handles Range: (-40 – 1000 ) °C Method: Thermoelectric | |||
| 180 | Solid fuel cookers | Tightness of the water space (0,1 – 0,8) MPa | PN-EN 12815:2004 p. A.4.17 PN-EN 16510-1:2023-06 p. A.4.10.6 PN-EN 16510-2-3:2023-06 p. A.4 „N” | ||
| 181 | Solid fuel cookers | Thermal discharge safety device Water temperature (0 – 120) °C Water pressure (0,1 – 0,3) MPa | PN-EN 12815:2004 p. A.4.18 PN-EN 16510:2018-08 p. A.4.10.7 PN-EN 16510-2-3:2023-06 p. A.4 „N” | ||
| 182 | Solid fuel cookers | Boiling Water temperature (0 – 100) °C | PN-EN 12815:2004 p. A.4.10 PN-EN 16510-2-3:2023-06 p. A.4.301.2 | ||
| 183 | Solid fuel cookers | Baking Air temperature (0 – 300) ºC Load mass: (0,1 – 10) kg | PN-EN 12815:2004 p. A.4.11 PN-EN 16510-2-3:2023-06 p.A.4.301.3 | ||
| 184 | Solid fuel cookers | Tightness of flue ducts (0,025 – 4) m3/h | PN-EN 16510-1:2023-06 p. 5.3 | PN-EN 16510-2-3:2023-06 p. 5.9 „N” | ||
| 185 | Solid fuel cookers | Dust concentration in flue gases Range: (1 – 200) mg/m3 Method: gravimetric | PN-EN 16510-1:2023-06 p. 6.3.1 | PN-EN 16510-2-3:2023-06 p. 4.5 „N” | ||
| 186 | Pellet-fired local space heaters | Fuel parameters: | |||
| 187 | Pellet-fired local space heaters | Fuel mass Range: (0,1 – 1500) kg Strain gauge method | PN-EN 14785:2009 p. A3 | PN-EN 16510-1:2023-06 p. A.3 | PN-EN 16510-2-6:2023-06 p. A.3 | ||
| 188 | Pellet-fired local space heaters | Flue gas parameters: | |||
| 189 | Pellet-fired local space heaters | Flue gas temperature Range: (0 ÷ 300) °C Thermoelectric method | PN-EN 14785:2009 p. A.2.3.2 | PN-EN 16510-1:2023-06 p. A.4.4.3 PN-EN 16510-2-6:2023-06 p. 4.7.2 | ||
| 190 | Pellet-fired local space heaters | Flue gas pressure Range: (800 – 1300 ) hPa Piezoresistive method | PN-EN 14785:2009 p. A.2.3.4 | PN-EN 16510-1:2023-06 p. A.2.3.4 | PN-EN 16510-2-6:2023-06 p. 4.7.4 | ||
| 191 | Pellet-fired local space heaters | Concentrations of oxygen, carbon dioxide, carbon monoxide: Range: - O2 (0,38 – 21) % Paramagnetic method, - CO2 (0,3 – 18) % - CO (12,5 – 2000) mg/m3 NDIR method Emission of CO (calculated) | PN-EN 14785:2009 p. A.2.3.3 | PN-EN 16510-1:2023-06 p. 6.3 | PN-EN 16510-2-6:2023-06 p. 4.3 | ||
| 192 | Pellet-fired local space heaters | Concentrations of nitrogen monoxide, nitrogen oxides (NO, NOx), OGC: Range: - NO (10,25 – 500) mg/m3 - NO (16,0 – 780) mg/m3 x CLD method, - OGC (3,5 – 960) mg/m3 FID method, Emission of CO ; NO, NO, OGC 2 x (calculated) | PN-EN 16510-1:2023-06 p. 6.3; A.2; A.3; A.6; Załącznik D.2.2; D.3, D.4, D.5; Załącznik E PN-EN 16510-2-6:2023-06 p. 4.4, 4.5, A2, A.3, A.4, A.6 „N” | ||
| 193 | Pellet-fired local space heaters | Air parameters: | |||
| 194 | Pellet-fired local space heaters | Ambient temperature Range: (0 – 110) °C Resistance method Ambient pressure: Range: (800 – 1300 ) hPa Piezoresistive method | PN-EN 14785:2009 p. A.1.1 | PN-EN 16510-1:2023-06 p. A.3 | PN-EN 16510-2-6:2023-06 p. A.1 | ||
| 195 | Pellet-fired local space heaters | Water parameters: | |||
| 196 | Pellet-fired local space heaters | Temperature: Range: (0 – 100 ) °C Thermoelectric method | PN-EN 14785:2009 p. A.2.5 | PN-EN 16510-1:2023-06 p. A.4.5.2 PN-EN 16510-2-6:2023-06 p. A.4 „N” | ||
| 197 | Pellet-fired local space heaters | Water volume flow rate: Range (0,1 – 25) m3/h Electromagnetic method | PN-EN 14785:2009 p. A.2.5 | PN-EN 16510-1:2023-06 A.4.5.2 PN-EN 16510-2-6:2023-06 p. A.4 „N” | ||
| 198 | Pellet-fired local space heaters | Water flow resistance Water pressure Range: (0 – 100) mBar Piezoresistive method | PN-EN 16510-1:2023-06 A.2.5 PN-EN 16510-2-6:2023-06 p. A.2 „N” | ||
| 199 | Pellet-fired local space heaters | Heat balance (calculated): | |||
| 200 | Pellet-fired local space heaters | Heat input from fuel (1 – 50) kW | PN-EN 14785:2009 p. A.6.2.2 PN-EN 16510-1:2023-06 p. A.6.2.2 PN-EN 16510-2-6:2023-06 p. A.6 „N” | ||
| 201 | Pellet-fired local space heaters | Flue gas loss (5 – 40) % | PN-EN 14785:2009 p. A.6.2.1.1 PN-EN 16510-1:2023-06 p. A.6.2.1.2 PN-EN 16510-2-6:2023-06 p. A.6 „N” | ||
| 202 | Pellet-fired local space heaters | Losses due to incomplete combustion | PN-EN 14785:2009 p. A.6.2.1.2 PN-EN 16510-1:2023-06 p. A.6.2.1.3 PN-EN 16510-2-6:2023-06 p. A.6 „N” | ||
| 203 | Pellet-fired local space heaters | Loss due to incomplete combustion | PN-EN 14785:2009 p. A.6.2.1.3 PN-EN 16510-1:2023-06 p. A.6.2.1.4 PN-EN 16510-2-6:2023-06 p. A.6 „N” | ||
| 204 | Pellet-fired local space heaters | Thermal efficiency (20 – 95) % | PN-EN 14785:2009 p. A.6.2.1 PN-EN 16510-1:2023-06 p. A.6.2.1.1 PN-EN 16510-2-6:2023-06 p. 4.8.3 | ||
| 205 | Pellet-fired local space heaters | Total heat output (1 – 50) kW | PN-EN 14785:2009 p. A.6.2.2 PN-EN 16510-1:2023-06 p. A.6.2.2 PN-EN 16510-2-6:2023-06 p. 4.8.1 | ||
| 206 | Pellet-fired local space heaters | Heat output to the water circuit (1 – 50) kW | PN-EN 14785:2009 p. A.6.2.3 PN-EN 16510-1:2023-06 p. A.6.2.3 PN-EN 16510-2-6:2023-06 p. 4.8.2 | ||
| 207 | Pellet-fired local space heaters | Heat output to the room (1 – 50) kW | PN-EN 14785:2009 p. A.6.2.4 PN-EN 16510-1:2023-06 p. A.6.2.4 PN-EN 16510-2-6:2023-06 p. A.6 „N” | ||
| 208 | Pellet-fired local space heaters | Flue gas mass flow rate (0,1 – 100) g/s | PN-EN 14785:2009 p. A.6.2.5 PN-EN 16510-1:2023-06 p. 6.12 | PN-EN 16510-2-6:2023-06 p. 4.7.6 | ||
| 209 | Pellet-fired local space heaters | CO content (O2=13%) (0,001 – 0,16) % | PN-EN 14785:2009 p. A.6.2.6 PN-EN 16510-1:2023-06 p. A.6.2.6 PN-EN 16510-2-6:2023-06 p. A.6 „N” | ||
| 210 | Pellet-fired local space heaters | Technical and operational parameters: | |||
| 211 | Pellet-fired local space heaters | Temperature of the measurement corner and the substrate Range: thermoelectric m. (30 – 200) °C IR m. (35 – 500) ºC Thermoelectric method, IR | PN-EN 14785:2009 p. A.2.2; A.4.7; A.4.8; A.4.9 PN-EN 16510-1:2023-06 p. 5.4, 5.5, 5.6, A.2, A.4.7, A.4.8, A.4.9, A.4.10 PN-EN 16510-2-6:2023-06 p. 5.5.1, 5.5.2, 5.6, A.4.7, A.4.8, A.4.9, A.4.10, A.6 „N” | ||
| 212 | Pellet-fired local space heaters | Fuel hopper temperature Range: (25 – 180) °C IR method | |||
| 213 | Pellet-fired local space heaters | Handle temperature Range: (-40 – 250 ) °C Thermoelectric method | |||
| 214 | Pellet-fired local space heaters | Tightness of the water space (0,1 – 0,8) MPa | PN-EN 14785:2009 p. A.4.9.2 PN-EN 16510-1:2023-06 p. A.4.10.6 PN-EN 16510-2-6:2023-06 p. 5.3.3 „N” | ||
| 215 | Pellet-fired local space heaters | Tightness of flue ducts (0,025 – 4) m3/h | PN-EN 16510-1:2023-06 p. A.4.11.2 PN-EN 16510-2-6:2023-06 p. 5.1.2 | ||
| 216 | Pellet-fired local space heaters | Thermal discharge safety device Water temperature (0 – 120) °C Water pressure (0,1 – 0,3) MPa | PN-EN 14785:2009 p. A.4.9.3 ” PN-EN 16510-1:2023-06 p. A.4.10.7 PN-EN 16510-2-6:2023-06 p. A.4 „N” | ||
| 217 | Pellet-fired local space heaters | Safety: Air temperature (0 – 300) °C | PN-EN 16510-2-6:2023-06 p. A.4.601 A.4.602 „N” | ||
| 218 | Pellet-fired local space heaters | Tightness related to CO emission (calculated) | PN-EN 16510-1:2023-06 p. 5.9.1 | ||
| 219 | Pellet-fired local space heaters | Auxiliary electricity consumption Range: (0 – 2) kW Method: Power transducer with current transformer | PN-EN 16510-1:2023-06 p. 6.11 PN-EN 16510-2-6:2023-06 p. 4.8.9 | ||
| 220 | Pellet-fired local space heaters | Temperature safety test | PN-EN 16510-1:2023-06 p. A.4.10.4 | ||
| 221 | Pellet-fired local space heaters | Safety test under natural draught | PN-EN 16510-1:2023-06 p. A.4.10.5 PN-EN 16510-2-6:2023-06 p. A.4.10.5 „N” | ||
| 222 | Pellet-fired local space heaters | Operation of the safety temperature limiter (0 – 110) °C | PN-EN 16510-1:2023-06 p. A.4.10.7 PN-EN 16510-2-6:2023-06 p. A.4.10.601.1 „N” | ||
| 223 | Pellet-fired local space heaters | Loss of electrical power supply (0 – 110) °C | PN-EN 16510-1:2023-06 p. A.4.10.7 PN-EN 16510-2-6:2023-06 p. A.4.10.601.2 „N” | ||
| 224 | Pellet-fired local space heaters | Loss of heat dissipation (0 – 110) °C, (0 – 5) % CO | PN-EN 16510-1:2023-06 p. A.4.10.7 PN-EN 16510-2-6:2023-06 p. A.4.10.601.3 „N” | ||
| 225 | Pellet-fired local space heaters | Efficiency (calculated), Seasonal space heating efficiency (calculated) EEI (calculated) | PN-EN 16510-1:2023-06 p. A.6.2.1.5 | PN-EN 16510-2-6:2023-06 p. 4.8.7 | ||
| 226 | Pellet-fired local space heaters | Dust concentration in flue gases Range: (1 – 200) mg/m3 Method: gravimetric | PN-EN 16510-1:2023-06 p. 6.3.1 | PN-EN 16510-2-6:2023-06 p. 4.6 „N” | ||
| 227 | Metal products - steel for the reinforcement of concrete - welded reinforcing mesh - steel for the prestressing of concrete | Susceptibility to plastic deformation – bending Range: bend angle up to 180 Method: Bend test | PN-EN ISO 7438:2021-04 PN-EN ISO 15630-1:2019 p. 6 PN-EN ISO 15630-2:2019 p. 6 | ||
| 228 | Metal products - steel for the reinforcement of concrete - welded reinforcing mesh - steel for the prestressing of concrete | Susceptibility to plastic deformation – back-bending Method: Back-bending test | PN-EN ISO 15630-1:2019 p.7 | ||
| 229 | Metal products - steel for the reinforcement of concrete - welded reinforcing mesh - steel for the prestressing of concrete | Shear of the resistance-welded joint Shear force of the resistance-welded joint – F s Range: up to 1000 kN | PN-EN ISO 15630-2:2019 p. 7 | ||
| 230 | Metal products - steel for the reinforcement of concrete - welded reinforcing mesh - steel for the prestressing of concrete | Mechanical properties: - proof strength R p - distinct yield strength R e - tensile strength R m - elongation A, A gt - reduction of area Z Range: force up to 1000 kN Method: Tensile test at room temp. | PN-EN ISO 6892-1:2020-05 Metoda B PN-EN ISO 15630-1:2019 p. 5 PN-EN ISO 15630-2:2019 p. 5 PN-EN ISO 15630-3:2019 p. 5 | ||
| 231 | Metal products: - wires - pipes - plates - strips - butt welded joints - open and closed sections | HBW hardness Range: - up to 650 HBW - ball dia. 2,5; 5,0; 10,0 mm Brinell method | PN-EN ISO 6506-1:2014 | ||
| 232 | Metal products: - wires - pipes - plates - strips - butt welded joints - open and closed sections | HV hardness Range: HV 0,2; HV 1; HV 5; HV 10; HV 30 Vickers method | PN-EN ISO 6507-1:2024-04 | ||
| 233 | Metal products: - wires - pipes - plates - strips - butt welded joints - open and closed sections | HR hardness Range: scale A, B, C Rockwell method | PN-EN ISO 6508-1:2024-06 | ||
| 234 | Metal products: - wires - pipes - plates - strips - butt welded joints - open and closed sections | Mechanical properties: - proof strength R p - distinct yield strength R e - tensile strength R m - elongation A - reduction of area Z Range: force up to 1000 kN Method: Tensile test at room temp. | PN-EN ISO 6892-1:2020-05 Metoda B PN-88/M-69710 PN-EN ISO 4136:2022-12 PN-EN ISO 5178:2019-04 | ||
| 235 | Metal products: - wires - pipes - plates - strips - butt welded joints - open and closed sections | Absorbed energy Range: - KV ; KU 2 2 - Initial hammer energy : 300 J - at temp. 23C ± 5C - at temp. reduced to -40C Charpy impact test | PN-EN ISO 148-1:2017 PN-EN ISO 9016:2022-09 | ||
| 236 | Metal products: - wires - pipes - plates - strips - butt welded joints - open and closed sections | Susceptibility to plastic deformation - bending and/or bending of butt welded or resistance-welded joints Range: bend angle up to 180 Method: Bend test | PN-EN ISO 7438:2021-04 PN-EN ISO 5173:2023-06 | ||
| 237 | Metal products: - wires - pipes - plates - strips - butt welded joints - open and closed sections | Susceptibility to plastic deformation - reverse bend test of wire Range: - wire diameter: below 6,0 mm | PN-ISO 7801:1996 PN-EN ISO 15630-3:2019 p. 7 | ||
| 238 | Metal products: - wires - pipes - plates - strips - butt welded joints - open and closed sections | Susceptibility to plastic deformation - bend test on strips cut from pipes | PN-EN ISO 8491:2005 | ||
| 239 | Metal products: - wires - pipes - plates - strips - butt welded joints - open and closed sections | Susceptibility to plastic deformation - flattening test | PN-EN ISO 8492:2014 | ||
| 240 | Metal products: - wires - pipes - plates - strips - butt welded joints - open and closed sections | Susceptibility to plastic deformation - drift expanding test Range: diameter below 100 mm | PN-EN ISO 8493:2005 | ||
| 241 | Metal products and plastics | Static compression test Compressive strength: R c Range: up to 1000 kN | Instrukcja Badań QL -1310 iB wydanie 02 z dnia 15.04.2019 r. | ||
| 242 | Child care articles - Wheeled child conveyances intended for the transport of one or more children with a mass of up to 15 kg each, not motor-driven, not intended for disabled children | Angular and linear measurements of the shape of structural members and of the geometric properties of the object Ranges: (0 – 268)º , (0 – 2000) mm | PN-EN 1888-1+A1:2022-09, punkty: 8.1.1.2.1 8.1.2.2 8.4.2.1 8.6.1 8.6.2 8.8.2.5 8.9.2 | ||
| 243 | Child care articles - Wheeled child conveyances intended for the transport of one or more children with a mass of up to 15 kg each, not motor-driven, not intended for disabled children | Measurements of forces and displacements in the strength and durability testing of the fastening system Ranges: (0 –1000) N, (0 – 2000) mm | PN-EN 1888-1+A1:2022-09, punkty: 8.1.3.2.2 8.1.3.2.3 8.1.3.2.4 8.1.3.2.5 | ||
| 244 | Child care articles - Wheeled child conveyances intended for the transport of one or more children with a mass of up to 15 kg each, not motor-driven, not intended for disabled children | Measurements of forces and torque in the strength and durability testing of locking systems Ranges: (0 – 1000) N, (0 – 20) Nm | PN-EN 1888-1+A1:2022-09, punkty: 8.3.5.1.2.2 8.3.5.1.2.3 8.3.5.1.2.4 | ||
| 245 | Child care articles - Wheeled child conveyances intended for the transport of one or more children with a mass of up to 15 kg each, not motor-driven, not intended for disabled children | Force loading and linear dimension measurements for strength and durability of parking devices and brakes Ranges: (0 – 2000) mm, (0 – 1000) N, (0 – 20) Nm Method limitations: max. pushchair wheelbase up to 1100 mm | PN-EN 1888-1+A1:2022-09, punkty: 8.8.2 z wył. 8.8.2.6 | ||
| 246 | Child care articles - Wheeled child conveyances intended for the transport of one or more children with a mass of up to 15 kg each, not motor-driven, not intended for disabled children | Stability of the pushchair on a 12º inclined platform and longitudinal stability of the carrycot Method limitations: max. wheelbase of the pushchair up to 1100 mm | PN-EN 1888-1+A1:2022-09, punkty: 8.9.1.2 8.9.2.2 | ||
| 247 | Child care articles - Wheeled child conveyances intended for the transport of one or more children with a mass of up to 15 kg each, not motor-driven, not intended for disabled children | Functional testing by exposure to force/weight, moment of force in the range: - Retention of the ball in seats intended from birth - Hazards related to choking and swallowing - Testing of the carrying handles of the carrycot - Testing on an uneven surface - Dynamic strength - Wheel strength - Durability of handles Ranges: (0 – 2000) mm, (0–1000) N, (0 – 50) kg, (0 – 20) Nm | PN-EN 1888-1+A1:2022-09, punkty: 8.1.1.2.2 8.2.1.2 8.2.2.2 8.3.2.2 8.3.3 8.3.4 8.4.2.2 8.5.2.1 8.5.2.2 8.5.2.3 8.10.1.2 8.10.3.2 8.10.4.2 8.10.5.2 8.10.6.2.2 8.10.6.2.3 8.10.6.2.4 8.10.2.2 | ||
| 248 | Child care articles - Wheeled child conveyances intended for the transport of one or more children with a mass of up to 15 kg each, not motor-driven, not intended for disabled children | Durability of marking Method: rubbing with a moistened cloth | PN-EN 1888-1+A1:2022-09 Punkt: 9 | ||
| 249 | Products with dimensions up to 1000 mm: Metal products: Steel for the prestressing and reinforcement of concrete: - bars, wires, welded reinforcing meshes with a profiled/ribbed surface - bars, wires, welded reinforcing meshes with a smooth surface - strands/ropes with a profiled/ribbed and smooth surface Profiled products: - open and hollow sections | Geometry measurement: dimensions, shape, direction, position. Mass per unit length. Range: (0 – 3000) mm: rib geometry, factor f , rib inclination angle. R Mass per unit length. diameter, out-of-roundness deviation (ovality). Mass per unit length. strand/rope diameter, wire diameter, lay length. Mass per unit length. dimensions, shape, direction, position, diameter, wall thickness. Mass per unit length. | Instrukcja Badań QL -0301 iB wydanie 06 z dnia 15.04.2019 r. PN-EN ISO 15630-1:2019 p.10 | PN-EN ISO 15630-3:2019 p.13 | Instrukcja Badań QL -0301 iB wydanie 06 z dnia 15.04.2019 r. PN-EN ISO 15630-3:2019 p.13 | Instrukcja Badań QL -0301 iB wydanie 06 z dnia 15.04.2019 r. | ||
Reference standards (239)
Instrukcja Badań QL - 0103 iB wyd. 02 z dnia 17.04.2000 r.
Instrukcja Badań QL - 1101 iB wyd. 01 z dnia 17.01.2000 r.
Instrukcja Badań QL -0301 iB wydanie 06 z dnia 15.04.2019 r.
Instrukcja Badań QL -0301 iB wydanie 06 z dnia 15.04.2019 r. PN-EN ISO 15630-1:2019 p.10
Instrukcja Badań QL -0301 iB wydanie 06 z dnia 15.04.2019 r. PN-EN ISO 15630-3:2019 p.13
Instrukcja Badań QL -1310 iB wydanie 02 z dnia 15.04.2019 r.
PN-EN 12815:2004 p. A.1.1
PN-EN 12815:2004 p. A.2.3
PN-EN 12815:2004 p. A.2.3.2
PN-EN 12815:2004 p. A.2.5
PN-EN 12815:2004 p. A.4.10 PN-EN 16510-2-3:2023-06 p. A.4.301.2
PN-EN 12815:2004 p. A.4.11 PN-EN 16510-2-3:2023-06 p.A.4.301.3
PN-EN 12815:2004 p. A.4.17 PN-EN 16510-1:2023-06 p. A.4.10.6 PN-EN 16510-2-3:2023-06 p. A.4 „N”
PN-EN 12815:2004 p. A.4.18 PN-EN 16510:2018-08 p. A.4.10.7 PN-EN 16510-2-3:2023-06 p. A.4 „N”
PN-EN 12815:2004 p. A.4.2
PN-EN 12815:2004 p. A.4.2 PN-EN 16510-1:2023-06 p. A.3
PN-EN 12815:2004 p. A.4.4
PN-EN 12815:2004 p. A.4.6
PN-EN 12815:2004 p. A.4.8, A.4.9, A.4.10, A.4.12, A.4.16 PN-EN 16510-1:2023-06 p. 5.4, 5.5, 5.6, A.2.2, A.4.7, A.4.8, A.4.9 PN-EN 16510-2-3:2023-06 p. A.4, A.4.301.1, A.4.301.2, A.4.301.3 „N”
PN-EN 12815:2004 p. A.6.2.1 PN-EN 16510-1:2023-06 p. A.6.2.1.1 PN-EN 16510-2-3:2023-06 p. A.6 „N”
PN-EN 12815:2004 p. A.6.2.2 PN-EN 16510-1:2023-06 p. A.6.2.2 PN-EN 16510-2-3:2023-06 p. A.6 „N”
PN-EN 12815:2004 p. A.6.2.3 PN-EN 16510-1:2023-06 p. A.6.2.3 PN-EN 16510-2-3:2023-06 p. A.6 „N”
PN-EN 12815:2004 p. A.6.2.4 PN-EN 16510-1:2023-06 p. A.6.2.4 PN-EN 16510-2-3:2023-06 p. A.6 „N”
PN-EN 12815:2004 p. A.6.2.5 PN-EN 16510-1:2023-06 p. A.6.2.5 PN-EN 16510-2-3:2023-06 p. A.6 „N”
PN-EN 12815:2004 p. A.6.2.6 PN-EN 16510-1:2023-06 p. A.6.2.6 PN-EN 16510-2-3:2023-06 p. A.6 „N”
PN-EN 13229:2002 p. A.1.1
PN-EN 13229:2002 p. A.2.3.4
PN-EN 13229:2002 p. A.2.5
PN-EN 13229:2002 p. A.4.2 PN-EN 16510-1:2023-06 p. A.4.2 PN-EN 16510-2-2:2023-06 p. A.4 „N”
PN-EN 13229:2002 p. A.4.4.2 PN-EN 16510-1:2023-06 p. 6.3
PN-EN 13229:2002 p. A.4.4.3 PN-EN 16510-1:2023-06 p. 6.2
PN-EN 13229:2002 p. A.4.7; A.4.8; A.4.9 PN-EN 16510-1:2023-06 p. 5.4, 5.5, 5.6, A.2.2, A.4.7, A.4.8, A.4.9, A.4.10 PN-EN 16510-2-2:2023-06 p. 5.5, 5.6, A.4.7, A.4.8, A.4.9, A.4.10 „N”
PN-EN 13229:2002 p. A.4.9.5 PN-EN 16510-1:2023-06 p. A.4.10.6 PN-EN 16510-2-2:2023-06 p. 5.3.3
PN-EN 13229:2002 p. A.4.9.6 PN-EN 16510-1:2023-06 p. A.4.10.7 PN-EN 16510-2-2:2023-06 p. A.4 „N”
PN-EN 13229:2002 p. A.6.2.1 PN-EN 16510-1:2023-06 p. A.6.2.1.1 PN-EN 16510-2-2:2023-06 p. A.6 „N”
PN-EN 13229:2002 p. A.6.2.1.1 PN-EN 16510-1:2023-06 p. A.6.2.1.2 PN-EN 16510-2-2:2023-06 p. A.6 „N”
PN-EN 13229:2002 p. A.6.2.1.2 PN-EN 16510-1:2023-06 p. A.6.2.1.3 PN-EN 16510-2-2:2023-06 p. A.6 „N”
PN-EN 13229:2002 p. A.6.2.1.3 PN-EN 16510-1:2023-06 p. A.6.2.1.4 PN-EN 16510-2-2:2023-06 p. A.6 „N”
PN-EN 13229:2002 p. A.6.2.2 PN-EN 16510-1:2023-06 p. A.6.2.2 PN-EN 16510-2-2:2023-06 p. A.6 „N”
PN-EN 13229:2002 p. A.6.2.3 PN-EN 16510-1:2023-06 p. A.6.2.3 PN-EN 16510-2-2:2023-06 p. A.6 „N”
PN-EN 13229:2002 p. A.6.2.4 PN-EN 16510-1:2023-06 p. A.6.2.4 PN-EN 16510-2-2:2023-06 p. A.6 „N”
PN-EN 13229:2002 p. A.6.2.5 PN-EN 16510-1:2023-06 p. A.6.2.5 PN-EN 16510-2-2:2023-06 p. A.6 „N”
PN-EN 13229:2002 p. A.6.2.6 PN-EN 16510-1:2023-06 p. A.6.2.6 PN-EN 16510-2-2:2023-06 p. A.6 „N”
PN-EN 13240:2008 p. 6.6
PN-EN 13240:2008 p. A. 6.2.1.3 PN-EN 16510-1:2023-06 p. A.6.2.1.4 PN-EN 16510-2-1:2023-06 p. A.6 „N”
PN-EN 13240:2008 p. A.1.1
PN-EN 13240:2008 p. A.2.3.4
PN-EN 13240:2008 p. A.2.5
PN-EN 13240:2008 p. A.3
PN-EN 13240:2008 p. A.4.2 PN-EN 16510-1:2023-06 p. A.4.2 PN-EN 16510-2-1:2023-06 p. A.4 „N”
PN-EN 13240:2008 p. A.4.4.3 PN-EN 16510-1:2023-06 p. 6.2
PN-EN 13240:2008 p. A.4.7
PN-EN 13240:2008 p. A.4.9.4 PN-EN 16510-1:2023-06 p. A.4.10.6 PN-EN 16510-2-1:2023-06 p. A.4 „N”
PN-EN 13240:2008 p. A.4.9.5 PN-EN 16510-1:2023-06 p. A.4.10.7 PN-EN 16510-2-1:2023-06 p. A.4 „N”
PN-EN 13240:2008 p. A.6.2.1 PN-EN 16510-1:2023-06 p. A.6.2.1.1 PN-EN 16510-2-1:2023-06 p. A.6 „N”
PN-EN 13240:2008 p. A.6.2.1.1 PN-EN 16510-1:2023-06 p. A.6.2.1.2 PN-EN 16510-2-1:2023-06 p. A.6 „N”
PN-EN 13240:2008 p. A.6.2.1.2 PN-EN 16510-1:2023-06 p. A.6.2.1.3 PN-EN 16510-2-1:2023-06 p. A.6 „N”
PN-EN 13240:2008 p. A.6.2.2 PN-EN 16510-1:2023-06 p. A.6.2.2 PN-EN 16510-2-1:2023-06 p. A.6 „N”
PN-EN 13240:2008 p. A.6.2.3 PN-EN 16510-1:2023-06 p. A.6.2.3 PN-EN 16510-2-1:2023-06 p. A.6 „N”
PN-EN 13240:2008 p. A.6.2.4 PN-EN 16510-1:2023-06 p. A.6.2.4 PN-EN 16510-2-1:2023-06 p. A.6 „N”
PN-EN 13240:2008 p. A.6.2.5 PN-EN 16510-1:2023-06 p. A.6.2.5 PN-EN 16510-2-1:2023-06 p. A.6 „N”
PN-EN 13240:2008 p. A.6.2.6 PN-EN 16510-1:2023-06 p. A.6.2.6 PN-EN 16510-2-1:2023-06 p. A.6 „N”
PN-EN 14785:2009 p. A.1.1
PN-EN 14785:2009 p. A.2.2; A.4.7; A.4.8; A.4.9 PN-EN 16510-1:2023-06 p. 5.4, 5.5, 5.6, A.2, A.4.7, A.4.8, A.4.9, A.4.10 PN-EN 16510-2-6:2023-06 p. 5.5.1, 5.5.2, 5.6, A.4.7, A.4.8, A.4.9, A.4.10, A.6 „N”
PN-EN 14785:2009 p. A.2.3.2
PN-EN 14785:2009 p. A.2.3.3
PN-EN 14785:2009 p. A.2.3.4
PN-EN 14785:2009 p. A.2.5
PN-EN 14785:2009 p. A.4.9.2 PN-EN 16510-1:2023-06 p. A.4.10.6 PN-EN 16510-2-6:2023-06 p. 5.3.3 „N”
PN-EN 14785:2009 p. A.4.9.3 ” PN-EN 16510-1:2023-06 p. A.4.10.7 PN-EN 16510-2-6:2023-06 p. A.4 „N”
PN-EN 14785:2009 p. A.6.2.1 PN-EN 16510-1:2023-06 p. A.6.2.1.1 PN-EN 16510-2-6:2023-06 p. 4.8.3
PN-EN 14785:2009 p. A.6.2.1.1 PN-EN 16510-1:2023-06 p. A.6.2.1.2 PN-EN 16510-2-6:2023-06 p. A.6 „N”
PN-EN 14785:2009 p. A.6.2.1.2 PN-EN 16510-1:2023-06 p. A.6.2.1.3 PN-EN 16510-2-6:2023-06 p. A.6 „N”
PN-EN 14785:2009 p. A.6.2.1.3 PN-EN 16510-1:2023-06 p. A.6.2.1.4 PN-EN 16510-2-6:2023-06 p. A.6 „N”
PN-EN 14785:2009 p. A.6.2.2 PN-EN 16510-1:2023-06 p. A.6.2.2 PN-EN 16510-2-6:2023-06 p. 4.8.1
PN-EN 14785:2009 p. A.6.2.2 PN-EN 16510-1:2023-06 p. A.6.2.2 PN-EN 16510-2-6:2023-06 p. A.6 „N”
PN-EN 14785:2009 p. A.6.2.3 PN-EN 16510-1:2023-06 p. A.6.2.3 PN-EN 16510-2-6:2023-06 p. 4.8.2
PN-EN 14785:2009 p. A.6.2.4 PN-EN 16510-1:2023-06 p. A.6.2.4 PN-EN 16510-2-6:2023-06 p. A.6 „N”
PN-EN 14785:2009 p. A.6.2.5 PN-EN 16510-1:2023-06 p. 6.12
PN-EN 14785:2009 p. A.6.2.6 PN-EN 16510-1:2023-06 p. A.6.2.6 PN-EN 16510-2-6:2023-06 p. A.6 „N”
PN-EN 14785:2009 p. A3
PN-EN 16510-1:2023-06 A.2.5 PN-EN 16510-2-6:2023-06 p. A.2 „N”
PN-EN 16510-1:2023-06 A.4.5.2 PN-EN 16510-2-6:2023-06 p. A.4 „N”
PN-EN 16510-1:2023-06 p. 5.3
PN-EN 16510-1:2023-06 p. 5.4
PN-EN 16510-1:2023-06 p. 5.9.1
PN-EN 16510-1:2023-06 p. 6.11
PN-EN 16510-1:2023-06 p. 6.11 PN-EN 16510-2-2:2023-06 p. 4.7.9
PN-EN 16510-1:2023-06 p. 6.11 PN-EN 16510-2-6:2023-06 p. 4.8.9
PN-EN 16510-1:2023-06 p. 6.3
PN-EN 16510-1:2023-06 p. 6.3, A.2, A.3, A.6, Załącznik D.2.2, D.3, D.4, D.5, Załącznik E PN-EN 16510-2-2:2023-06 p. A.2, A.3, A.6 „N”
PN-EN 16510-1:2023-06 p. 6.3, A.2, A.3, A.6, Załącznik D.2.2, D.3, D.4, D.5; Załącznik E PN-EN 16510-2-3:2023-06 p. A.2, A.3, A.4, A.6 „N”
PN-EN 16510-1:2023-06 p. 6.3, A.2, A.3, A.6; Załącznik D.2.2, D.3, D.4, D.5; Załącznik E PN-EN 16510-2-1:2023-06 p. A.2, A.3, A.4, A.6 „N”
PN-EN 16510-1:2023-06 p. 6.3.1
PN-EN 16510-1:2023-06 p. 6.3; A.2; A.3; A.6; Załącznik D.2.2; D.3, D.4, D.5; Załącznik E PN-EN 16510-2-6:2023-06 p. 4.4, 4.5, A2, A.3, A.4, A.6 „N”
PN-EN 16510-1:2023-06 p. A.1
PN-EN 16510-1:2023-06 p. A.1.1
PN-EN 16510-1:2023-06 p. A.2.3
PN-EN 16510-1:2023-06 p. A.2.3.2
PN-EN 16510-1:2023-06 p. A.2.3.4
PN-EN 16510-1:2023-06 p. A.2.5
PN-EN 16510-1:2023-06 p. A.2.5 PN-EN 16510-2-1:2023-06 p. A.2 „N”
PN-EN 16510-1:2023-06 p. A.2.5 PN-EN 16510-2-2:2023-06 p. A.2 „N”
PN-EN 16510-1:2023-06 p. A.2.5 PN-EN 16510-2-3:2023-06 p. A.2 „N”
PN-EN 16510-1:2023-06 p. A.3
PN-EN 16510-1:2023-06 p. A.4.10.4
PN-EN 16510-1:2023-06 p. A.4.10.5
PN-EN 16510-1:2023-06 p. A.4.10.5 PN-EN 16510-2-6:2023-06 p. A.4.10.5 „N”
PN-EN 16510-1:2023-06 p. A.4.10.7
PN-EN 16510-1:2023-06 p. A.4.10.7 PN-EN 16510-2-6:2023-06 p. A.4.10.601.1 „N”
PN-EN 16510-1:2023-06 p. A.4.10.7 PN-EN 16510-2-6:2023-06 p. A.4.10.601.2 „N”
PN-EN 16510-1:2023-06 p. A.4.10.7 PN-EN 16510-2-6:2023-06 p. A.4.10.601.3 „N”
PN-EN 16510-1:2023-06 p. A.4.11.2 PN-EN 16510-2-1:2023-06 p. A.4 „N”
PN-EN 16510-1:2023-06 p. A.4.11.2 PN-EN 16510-2-2:2023-06 p. A.4 „N”
PN-EN 16510-1:2023-06 p. A.4.11.2 PN-EN 16510-2-6:2023-06 p. 5.1.2
PN-EN 16510-1:2023-06 p. A.4.4
PN-EN 16510-1:2023-06 p. A.4.4.3 PN-EN 16510-2-6:2023-06 p. 4.7.2
PN-EN 16510-1:2023-06 p. A.4.5
PN-EN 16510-1:2023-06 p. A.4.5.2 PN-EN 16510-2-2:2023-06 p. A.4 „N”
PN-EN 16510-1:2023-06 p. A.4.5.2 PN-EN 16510-2-6:2023-06 p. A.4 „N”
PN-EN 16510-1:2023-06 p. A.6.2.1.2 PN-EN 16510-2-3:2023-06 p. A.6 „N”
PN-EN 16510-1:2023-06 p. A.6.2.1.5
PN-EN 16510-1:2023-06 p. A.6.2.2 PN-EN 16510-2-1:2023-06 p. A.2
PN-EN 16510-2-1:2023-06 p. 4.6 „N“
PN-EN 16510-2-1:2023-06 p. A.2
PN-EN 16510-2-1:2023-06 p. A.3
PN-EN 16510-2-1:2023-06 p. A.4 „N”
PN-EN 16510-2-2:2023-06 p. 4.5 „N”
PN-EN 16510-2-2:2023-06 p. 4.7.7
PN-EN 16510-2-2:2023-06 p. A.2
PN-EN 16510-2-2:2023-06 p. A.3
PN-EN 16510-2-2:2023-06 p. A.4 „N”
PN-EN 16510-2-3:2023-06 p. 4.5 „N”
PN-EN 16510-2-3:2023-06 p. 5.9 „N”
PN-EN 16510-2-3:2023-06 p. A.1 „N”
PN-EN 16510-2-3:2023-06 p. A.2
PN-EN 16510-2-3:2023-06 p. A.3
PN-EN 16510-2-3:2023-06 p. A.4 „N”
PN-EN 16510-2-3:2023-06 p. A.6 „N”
PN-EN 16510-2-3:2023-06 p.A.2
PN-EN 16510-2-6:2023-06 p. 4.3
PN-EN 16510-2-6:2023-06 p. 4.6 „N”
PN-EN 16510-2-6:2023-06 p. 4.7.4
PN-EN 16510-2-6:2023-06 p. 4.7.6
PN-EN 16510-2-6:2023-06 p. 4.8.7
PN-EN 16510-2-6:2023-06 p. A.1
PN-EN 16510-2-6:2023-06 p. A.3
PN-EN 16510-2-6:2023-06 p. A.4.601 A.4.602 „N”
PN-EN 1888-1+A1:2022-09 Punkt: 9
PN-EN 1888-1+A1:2022-09, punkty: 8.1.1.2.1 8.1.2.2 8.4.2.1 8.6.1 8.6.2 8.8.2.5 8.9.2
PN-EN 1888-1+A1:2022-09, punkty: 8.1.1.2.2 8.2.1.2 8.2.2.2 8.3.2.2 8.3.3 8.3.4 8.4.2.2 8.5.2.1 8.5.2.2 8.5.2.3 8.10.1.2 8.10.3.2 8.10.4.2 8.10.5.2 8.10.6.2.2 8.10.6.2.3 8.10.6.2.4 8.10.2.2
PN-EN 1888-1+A1:2022-09, punkty: 8.1.3.2.2 8.1.3.2.3 8.1.3.2.4 8.1.3.2.5
PN-EN 1888-1+A1:2022-09, punkty: 8.3.5.1.2.2 8.3.5.1.2.3 8.3.5.1.2.4
PN-EN 1888-1+A1:2022-09, punkty: 8.8.2 z wył. 8.8.2.6
PN-EN 1888-1+A1:2022-09, punkty: 8.9.1.2 8.9.2.2
PN-EN 303-5:2012 p. 5.10.1 PN-EN 303-5:2021-09 p. 5.9.1 PN-EN 303-5+A1:2023-05 p. 5.9.1 EN 303-5:2021+A1:2022 p. 5.9.1 PN-EN 303-5:2012 p. 5.10.2 PN-EN 303-5:2021-09 p. 5.9.2 PN-EN 303-5+A1:2023-05 p. 5.9.2 EN 303-5:2021+A1:2022 p. 5.9.2
PN-EN 303-5:2012 p. 5.10.3.2 PN-EN 303-5:2021-09 p. 5.9.3.3 PN-EN 303-5+A1:2023-05 p. 5.9.3.3 EN 303-5:2021+A1:2022 p. 5.9.3.3
PN-EN 303-5:2012 p. 5.11 PN-EN 303-5:2021-09 p. 5.10 PN-EN 303-5+A1:2023-05 p. 5.10 EN 303-5:2021+A1:2022 p. 5.10
PN-EN 303-5:2012 p. 5.12 PN-EN 303-5:2021-09 p. 5.11 PN-EN 303-5+A1:2023-05 p. 5.11 EN 303-5:2021+A1:2022 p. 5.11
PN-EN 303-5:2012 p. 5.13 PN-EN 303-5:2021-09 p. 5.13 PN-EN 303-5+A1:2023-05 p. 5.13 EN 303-5:2021+A1:2022 p. 5.13
PN-EN 303-5:2012 p. 5.14 PN-EN 303-5:2021-09 p. 5.14 PN-EN 303-5+A1:2023-05 p. 5.14 EN 303-5:2021+A1:2022 p. 5.14
PN-EN 303-5:2012 p. 5.15 PN-EN 303-5:2021-09 p. 5.15 PN-EN 303-5+A1:2023-05 p. 5.15 EN 303-5:2021+A1:2022 p. 5.15
PN-EN 303-5:2012 p. 5.16.2 PN-EN 303-5:2021-09 p. 5.16.2 PN-EN 303-5+A1:2023-05 p. 5.16.2 EN 303-5:2021+A1:2022 p. 5.16.2
PN-EN 303-5:2012 p. 5.16.3 PN-EN 303-5:2021-09 p. 5.16.3 PN-EN 303-5+A1:2023-05 p. 5.16.3 EN 303-5:2021+A1:2022 p. 5.16.3
PN-EN 303-5:2012 p. 5.16.4 PN-EN 303-5:2021-09 p. 5.16.4 PN-EN 303-5+A1:2023-05 p. 5.16.4 EN 303-5:2021+A1:2022 p. 5.16.4
PN-EN 303-5:2012 p. 5.16.5 PN-EN 303-5:2021-09 p. 5.16.5 PN-EN 303-5+A1:2023-05 p. 5.16.5 EN 303-5:2021+A1:2022 p. 5.16.5
PN-EN 303-5:2012 p. 5.2 PN-EN 303-5:2021-09 p. 5.2 PN-EN 303-5+A1:2023-05 p. 5.2 EN 303-5:2021+A1:2022 p. 5.2 PN-EN 303-5:2012 p. 5.7 PN-EN 303-5:2021-09 p. 5.6 PN-EN 303-5+A1:2023-05 p. 5.6 EN 303-5:2021+A1:2022 p. 5.6 PN-EN 303-5:2012 p. 5.8 PN-EN 303-5:2021-09 p. 5.7 PN-EN 303-5+A1:2023-05 p. 5.7 EN 303-5:2021+A1:2022 p. 5.7 PN-EN 303-5:2012 p. 5.9 PN-EN 303-5:2021-09 p. 5.8 PN-EN 303-5+A1:2023-05 p. 5.8 EN 303-5:2021+A1:2022 p. 5.8
PN-EN 303-5:2012 p. 5.2 PN-EN 303-5:2021-09 p. 5.2 PN-EN 303-5+A1:2023-05 p. 5.2 EN 303-5:2021+A1:2022 p. 5.2 PN-EN 303-5:2012 p. 5.9.1 PN-EN 303-5:2012 p. 5.9.3 PN-EN 303-5:2021-09 p. 5.8.1 PN-EN 303-5+A1:2023-05 p. 5.8.1 EN 303-5:2021+A1:2022 p. 5.8.1 PN-EN 303-5:2012 p. 5.10.4 PN-EN 303-5:2021-09 p. 5.9.4 PN-EN 303-5+A1:2023-05 p. 5.9.4 EN 303-5:2021+A1:2022 p. 5.9.4
PN-EN 303-5:2012 p. 5.2 PN-EN 303-5:2021-09 p. 5.2 PN-EN 303-5+A1:2023-05 p. 5.2 EN 303-5:2021+A1:2022 p. 5.2 PN-EN 303-5:2012 p. 5.9.2 PN-EN 303-5:2012 p. 5.9.3 PN-EN 303-5:2021-09 p. 5.8.2 PN-EN 303-5+A1:2023-05 p. 5.8.2 EN 303-5:2021+A1:2022 p. 5.8.2 PN-EN 303-5:2012 p. 5.10.4 PN-EN 303-5:2021-09 p. 5.9.4 PN-EN 303-5+A1:2023-05 p. 5.9.4 EN 303-5:2021+A1:2022 p. 5.9.4
PN-EN 303-5:2012 p. 5.6 PN-EN 303-5:2021-09 p. 5.16.6 PN-EN 303-5+A1:2023-05 p. 5.16.6 EN 303-5:2021+A1:2022 p. 5.16.6
PN-EN 303-5:2012 p. 5.8.1 PN-EN 303-5:2021-09 p. 5.7.1 PN-EN 303-5+A1:2023-05 p. 5.7.1 EN 303-5:2021+A1:2022 p. 5.7.1
PN-EN 303-5:2012 p. 5.8.2 PN-EN 303-5:2021-09 p. 5.7.2 PN-EN 303-5+A1:2023-05 p. 5.7.2 EN 303-5:2021+A1:2022 p. 5.7.2
PN-EN 303-5:2012 p. 5.8.3 PN-EN 303-5:2021-09 p. 5.7.3 PN-EN 303-5+A1:2023-05 p. 5.7.3 EN 303-5:2021+A1:2022 p. 5.7.3
PN-EN 303-5:2012 p. 5.8.4 PN-EN 303-5:2021-09 p. 5.7.6 PN-EN 303-5+A1:2023-05 p. 5.7.6 EN 303-5:2021+A1:2022 p. 5.7.6 PN-EN 303-5:2012 p. 5.10.3.1 PN-EN 303-5:2021-09 p. 5.9.3.2 PN-EN 303-5+A1:2023-05 p. 5.9.3.2 EN 303-5:2021+A1:2022 p. 5.9.3.2
PN-EN 303-5:2012 p. 5.8.5 PN-EN 303-5:2021-09 p. 5.7.7 PN-EN 303-5+A1:2023-05 p. 5.7.7 EN 303-5:2021+A1:2022 p. 5.7.7
PN-EN 303-5:2021-09 p 5.7.4 PN-EN 303-5+A1:2023-05 p. 5.7.4 EN 303-5:2021+A1:2022 p. 5.7.4
PN-EN 303-5:2021-09 p 5.7.5 PN-EN 303-5+A1:2023-05 p. 5.7.5 EN 303-5:2021+A1:2022 p. 5.7.5
PN-EN 303-5:2021-09 p. 5.12 PN-EN 303-5+A1:2023-05 p. 5.12 EN 303-5:2021+A1:2022 p. 5.12
PN-EN 303-5:2021-09 p. 5.17 PN-EN 303-5+A1:2023-05 p. 5.17 EN 303-5:2021+A1:2022 p. 5.17
PN-EN 303-5:2021-09 p. 5.18 PN-EN 303-5+A1:2023-05 p. 5.18 EN 303-5:2021+A1:2022 p. 5.18
PN-EN 303-5:2021-09 p. 5.18.1 PN-EN 303-5+A1:2023-05 p. 5.18.1 EN 303-5:2021+A1:2022 p. 5.18.1
PN-EN 303-5:2021-09 p. 5.18.2 PN-EN 303-5+A1:2023-05 p. 5.18.2 EN 303-5:2021+A1:2022 p. 5.18.2
PN-EN 303-5:2021-09 p. 5.18.3 PN-EN 303-5+A1:2023-05 p. 5.18.3 EN 303-5:2021+A1:2022 p. 5.18.3
PN-EN 303-5:2021-09 p. 5.9.3.4 PN-EN 303-5+A1:2023-05 p. 5.9.3.4 EN 303-5:2021+A1:2022 p. 5.9.3.4
PN-EN 303-5:2021-09 p. 5.9.3.5 PN-EN 303-5+A1:2023-05 p. 5.9.3.5 EN 303-5:2021+A1:2022 p. 5.9.3.5
PN-EN 303-5:2021-09 p. 5.9.3.6 PN-EN 303-5+A1:2023-05 p. 5.9.3.6 EN 303-5:2021+A1:2022 p. 5.9.3.6
PN-EN 303-5:2021-09 p. 5.9.4.4 PN-EN 303-5+A1:2023-05 p. 5.9.4.4 EN 303-5:2021+A1:2022 p. 5.9.4.4
PN-EN 50085-1:2010 p. 10 p. 11.2 p. 12 p. 14
PN-EN 60068-2-75:2000 PN-EN 60068-2-75:2015-01 PN-EN 62262:2003 PN-EN 62262:2003/A1:2022-06 PN-EN 62262:2003/Ap1:2022-01
PN-EN 60112:2003+A1:2010
PN-EN 60204-1:2010+AC:2011 za wyjątkiem p. 20.6
PN-EN 60243-1:2013-12
PN-EN 60335-1:2012 +A11:2014-10+AC:2014-03 PN-EN 60335-1:2012/A1:2019-10 PN-EN 60335-1:2012/A2:2019-11 PN-EN 60335-1:2012/A13:2017-11 PN-EN 60335-1:2012/A14:2020-05 PN-EN 60335-1:2012/A15:2022-01 PN-EN 60335-1:2012/A16:2024-04 PN-EN 60335-2-12:2004+A1:2008 PN-EN 60335-2-12:2004/A2:2019-11 PN-EN 60335-2-12:2004/A11:2019-11
PN-EN 60335-1:2012 +A11:2014-10+AC:2014-03 PN-EN 60335-1:2012/A1:2019-10 PN-EN 60335-1:2012/A2:2019-11 PN-EN 60335-1:2012/A13:2017-11 PN-EN 60335-1:2012/A14:2020-05 PN-EN 60335-1:2012/A15:2022-01 PN-EN 60335-1:2012/A16:2024-04 PN-EN 60335-2-13:2010 PN-EN 60335-2-13:2010/A11:2012 PN-EN 60335-2-13:2010/A1:2019-11
PN-EN 60335-1:2012 +A11:2014-10+AC:2014-03 PN-EN 60335-1:2012/A1:2019-10 PN-EN 60335-1:2012/A2:2019-11 PN-EN 60335-1:2012/A13:2017-11 PN-EN 60335-1:2012/A14:2020-05 PN-EN 60335-1:2012/A15:2022-01 PN-EN 60335-1:2012/A16:2024-04 PN-EN 60335-2-14:2009+A1:2009+ A11:2012 PN-EN 60335-2-14:2009/A12:2016-03
PN-EN 60335-1:2012 +A11:2014-10+AC:2014-03 PN-EN 60335-1:2012/A1:2019-10 PN-EN 60335-1:2012/A2:2019-11 PN-EN 60335-1:2012/A13:2017-11 PN-EN 60335-1:2012/A14:2020-05 PN-EN 60335-1:2012/A15:2022-01 PN-EN 60335-1:2012/A16:2024-04 PN-EN 60335-2-17:2013-06 PN-EN 60335-2-17:2013-06/A1:2020-09 PN-EN 60335-2-17:2013-06/A11:2019-11 PN-EN 60335-2-17:2013-06/A2:2022-01
PN-EN 60335-1:2012 +A11:2014-10+AC:2014-03 PN-EN 60335-1:2012/A1:2019-10 PN-EN 60335-1:2012/A2:2019-11 PN-EN 60335-1:2012/A13:2017-11 PN-EN 60335-1:2012/A14:2020-05 PN-EN 60335-1:2012/A15:2022-01 PN-EN 60335-1:2012/A16:2024-04 PN-EN 60335-2-23:2006+Ap1:2007 +A1:2008+A11:2010+A2:2015-03+AC 2012 PN-EN IEC 60335-2-23:2023-10 PN-EN IEC 60335-2-23:2023- 10/A1:2023-12
PN-EN 60335-1:2012 +A11:2014-10+AC:2014-03 PN-EN 60335-1:2012/A1:2019-10 PN-EN 60335-1:2012/A2:2019-11 PN-EN 60335-1:2012/A13:2017-11 PN-EN 60335-1:2012/A14:2020-05 PN-EN 60335-1:2012/A15:2022-01 PN-EN 60335-1:2012/A16:2024-04 PN-EN 60335-2-30:2010+AC:2010 +A11:2012+AC1:2015-02 PN-EN 60335-2-30:2010/A1:2020-09 PN-EN 60335-2-30:2010/A12:2021-02 PN-EN 60335-2-30:2010/A2:2023-03 PN-EN 60335-2-30:2010/A13:2023-04
PN-EN 60335-2-102:2016 PN-EN IEC 60335-2-102:2025-01 PN-EN IEC 60335-2-102:2025- 01/A11:2025-04
PN-EN 60529:2003+A2:2014-07
PN-EN 60570:2007 PN-EN 60570:2007/A1:2018-07 PN-EN 60570:2007/A2:2020-09
PN-EN 60598-1:2015-04 Dział 15 PN-EN 60598-1:2015-04/A1:2018-04 PN-EN IEC 60598-1:2021-07 PN-EN IEC 60598-1:2021-07/A11:2022-12
PN-EN 60598-1:2015-04 Dział 4 z wyłączeniem p. 4.20
PN-EN 60598-1:2015-04 p. 10 PN-EN 60598-1:2015-04/A1:2018-04 PN-EN IEC 60598-1:2021-07 PN-EN IEC 60598-1:2021-07/A11:2022-12
PN-EN 60598-1:2015-04 p. 11 PN-EN 60598-1:2015-04/A1:2018-04 PN-EN IEC 60598-1:2021-07 PN-EN IEC 60598-1:2021-07/A11:2022-12
PN-EN 60598-1:2015-04 p. 12 PN-EN 60598-1:2015-04/A1:2018-04 PN-EN IEC 60598-1:2021-07 PN-EN IEC 60598-1:2021-07/A11:2022-12
PN-EN 60598-1:2015-04 p. 13 PN-EN 60598-1:2015-04/A1:2018-04 PN-EN IEC 60598-1:2021-07 PN-EN IEC 60598-1:2021-07/A11:2022-12
PN-EN 60598-1:2015-04 p. 14 PN-EN 60598-1:2015-04/A1:2018-04 PN-EN IEC 60598-1:2021-07 PN-EN IEC 60598-1:2021-07/A11:2022-12
PN-EN 60598-1:2015-04 p. 3 PN-EN 60598-1:2015-04/A1:2018-04 PN-EN IEC 60598-1:2021-07 PN-EN IEC 60598-1:2021-07/A11:2022-12
PN-EN 60598-1:2015-04 p. 5 PN-EN 60598-1:2015-04/A1:2018-04 PN-EN IEC 60598-1:2021-07 PN-EN IEC 60598-1:2021-07/A11:2022-12
PN-EN 60598-1:2015-04 p. 7 PN-EN 60598-1:2015-04/A :2018-04 PN-EN IEC 60598-1:2021-07 PN-EN IEC 60598-1:2021-07/A11:2022-12
PN-EN 60598-1:2015-04 p. 8 PN-EN 60598-1:2015-04/A1:2018-04 PN-EN IEC 60598-1:2021-07 PN-EN IEC 60598-1:2021-07/A11:2022-12
PN-EN 60598-1:2015-04 p. 9 PN-EN 60598-1:2015-04/A1:2018-04 PN-EN IEC 60598-1:2021-07 PN-EN IEC 60598-1:2021-07/A11:2022-12
PN-EN 60598-1:2015-04/A1:2018-04 PN-EN IEC 60598-1:2021-07 PN-EN IEC 60598-1:2021-07/A11:2022-12 Dział 4 z wyłączeniem p. 4.20
PN-EN 60598-2-20:2015-07
PN-EN 60598-2-4:2002 PN-EN 60598-2-4:2018-06
PN-EN 60695-10-2:2014-10
PN-EN 60695-11-5:2007 PN-EN 60695-11-5:2017-08
PN-EN 60695-2-10:2013-12
PN-EN 60695-2-10:2013-12 PN-EN 60695-2-11:2005 PN-EN 60695-2-11:2015-02 PN-EN 60695-2-12:2011+A1:2014-10 PN-EN 60695-2-13:2011+A1:2014-10 PN-EN IEC 60695-2-11:2022-07 PN-EN IEC 60695-2-13:2022-05 PN-EN 60695-10-2 :2014-10
PN-EN 60695-2-11:2015-02 PN-EN IEC 60695-2-11:2022-07
PN-EN 60695-2-12:2011+A1:2014-10
PN-EN 60695-2-13:2011+A1:2014-10 PN-EN IEC 60695-2-13:2022-05
PN-EN 60893-2:2005 p. 4 p. 5 p. 6.1
PN-EN ISO 148-1:2017 PN-EN ISO 9016:2022-09
PN-EN ISO 15630-1:2019 p.7
PN-EN ISO 15630-2:2019 p. 7
PN-EN ISO 15630-3:2019 p.13
PN-EN ISO 6506-1:2014
PN-EN ISO 6507-1:2024-04
PN-EN ISO 6508-1:2024-06
PN-EN ISO 6892-1:2020-05 Metoda B PN-88/M-69710 PN-EN ISO 4136:2022-12 PN-EN ISO 5178:2019-04
PN-EN ISO 6892-1:2020-05 Metoda B PN-EN ISO 15630-1:2019 p. 5 PN-EN ISO 15630-2:2019 p. 5 PN-EN ISO 15630-3:2019 p. 5
PN-EN ISO 7438:2021-04 PN-EN ISO 15630-1:2019 p. 6 PN-EN ISO 15630-2:2019 p. 6
PN-EN ISO 7438:2021-04 PN-EN ISO 5173:2023-06
PN-EN ISO 8491:2005
PN-EN ISO 8492:2014
PN-EN ISO 8493:2005
PN-ISO 7801:1996 PN-EN ISO 15630-3:2019 p. 7