🇵🇱 Ośrodek Badań, Atestacji i Certyfikacji „OBAC” Sp. z o.o. PL
ConstructionMaterials & polymersEnvironment
Ośrodek Badań, Atestacji i Certyfikacji „OBAC” Sp. z o.o. is a laboratory accredited by PCA under number AB 1340 (Gliwice, Poland). Its accreditation scope covers 223 test methods in the following areas: Construction, Materials & polymers, Environment. Test objects include: Permanently installed outdoor fitness equipment, Playground equipment, Playground equipment – rocking equipment, Playground equipment – cableways.
At a glance
- Accreditation number: PCA AB 1340
- Methods in scope: 223
- Types of test objects: 48
- City: Gliwice, Poland
- Accreditation number
- AB 1340
- Accreditation body
- PCA
- Address
- ul. Łabędzka 21, 44-121 Gliwice, Laboratorium LABOREx, ul. Aronii 4
- City
- Gliwice, Poland
What this laboratory tests (48)
- Permanently installed outdoor fitness equipment — 16 methods
- Playground equipment — 14 methods
- Playground equipment – rocking equipment — 14 methods
- Playground equipment – cableways — 12 methods
- Stationary training equipment — 12 methods
- Sports and recreational equipment – Parkour equipment — 10 methods
- Stationary training equipment – Stationary exercise bicycles and upper body crank training equipment — 9 methods
- Rubber and plastics hoses and hose assemblies — 8 methods
- Electrical apparatus for potentially explosive atmospheres. Intrinsic safety „i” — 7 methods
- Electrical apparatus for use in potentially explosive atmospheres — 7 methods
- Stationary training equipment – Elliptical trainers — 7 methods
- Stationary training equipment – Strength training equipment — 7 methods
- Electrical apparatus for potentially explosive atmospheres – Equipment protected by encapsulation „m” — 6 methods
- Electrical apparatus for potentially explosive atmospheres – Intrinsically safe systems — 6 methods
- Electrical apparatus for potentially explosive atmospheres – Flameproof enclosures „d” – Components joined and sealed with a bonding agent — 5 methods
- and 33 more
Accreditation scope — test methods (223)
| No. | Test object | Methodology / Parameters | Technique | Reference document | |
|---|---|---|---|---|---|
| Test methods | |||||
| 1 | Electrical apparatus for use in potentially explosive atmospheres | Linear geometric dimensions Method: direct | PN-EN IEC 60079-0:2018- 09+A11:2024-12 IEC 60079-0:2017+IEC 60079- 0:2017/COR1:2020 EN IEC 60079-0:2018 GB3836.1-2010 | ||
| 2 | Electrical apparatus for use in potentially explosive atmospheres | Impact resistance Range: Impact energy up to 20 J | PN-EN IEC 60079-0:2018- 09+A11:2024-12 IEC 60079-0:2017+IEC 60079- 0:2017/COR1:2020 EN IEC 60079-0:2018 GB3836.1-2010 | ||
| 3 | Electrical apparatus for use in potentially explosive atmospheres | Free-fall drop resistance | PN-EN IEC 60079-0:2018- 09+A11:2024-12 IEC 60079-0:2017+IEC 60079- 0:2017/COR1:2020 EN IEC 60079-0:2018 GB3836.1-2010 | ||
| 4 | Electrical apparatus for use in potentially explosive atmospheres | Thermal testing, temperatures and temperature rises in the range: up to +450˚C | PN-EN IEC 60079-0:2018- 09+A11:2024-12 IEC 60079-0:2017+IEC 60079- 0:2017/COR1:2020 EN IEC 60079-0:2018 GB3836.1-2010 | ||
| 5 | Electrical apparatus for use in potentially explosive atmospheres | Resistance to heat Range: up to 180˚C | PN-EN IEC 60079-0:2018- 09+A11:2024-12 IEC 60079-0:2017+IEC 60079- 0:2017/COR1:2020 EN IEC 60079-0:2018 GB3836.1-2010 | ||
| 6 | Electrical apparatus for use in potentially explosive atmospheres | Thermal resistance to cold Range: down to -75˚C | PN-EN IEC 60079-0:2018- 09+A11:2024-12 IEC 60079-0:2017+IEC 60079- 0:2017/COR1:2020 EN IEC 60079-0:2018 GB3836.1-2010 | ||
| 7 | Electrical apparatus for use in potentially explosive atmospheres | Testing of cable glands | PN-EN IEC 60079-0:2018- 09+A11:2024-12 IEC 60079-0:2017+IEC 60079- 0:2017/COR1:2020 EN IEC 60079-0:2018 GB3836.1-2010 PN-G-50003:2003 | ||
| 8 | Electrical apparatus for potentially explosive atmospheres – Flameproof enclosures „d” – Components joined and sealed with a bonding agent | Linear geometric dimensions Method: direct | PN-EN 60079-1:2014-12+A11:2024- 12 IEC 60079-1:2014+IEC 60079- 1:2014/COR1:2018 EN 60079-1:2014 GB3836.2-2010 | ||
| 9 | Electrical apparatus for potentially explosive atmospheres – Flameproof enclosures „d” – Components joined and sealed with a bonding agent | Explosion pressure, reference (baseline) pressure Range: up to 3 MPa Method: measurement of max. explosion pressure | PN-EN 60079-1:2014-12+A11:2024- 12 IEC 60079-1:2014+IEC 60079- 1:2014/COR1:2018 EN 60079-1:2014 GB3836.2-2010 | ||
| 10 | Electrical apparatus for potentially explosive atmospheres – Flameproof enclosures „d” – Components joined and sealed with a bonding agent | Resistance of the guard to pressure Range: up to 3 MPa Method: static pressure loading | PN-EN 60079-1:2014-12+A11:2024- 12 IEC 60079-1:2014+IEC 60079- 1:2014/COR1:2018 EN 60079-1:2014 GB3836.2-2010 | ||
| 11 | Electrical apparatus for potentially explosive atmospheres – Flameproof enclosures „d” – Components joined and sealed with a bonding agent | Protection against explosion transmission | PN-EN 60079-1:2014-12+A11:2024- 12 IEC 60079-1:2014+IEC 60079- 1:2014/COR1:2018 EN 60079-1:2014 GB3836.2-2010 | ||
| 12 | Electrical apparatus for potentially explosive atmospheres – Flameproof enclosures „d” – Components joined and sealed with a bonding agent | Testing of flameproof cable entries Range: up to 3 MPa, Torque up to 150 Nm | PN-EN 60079-1:2014-12+A11:2024- 12 IEC 60079-1:2014+IEC 60079- 1:2014/COR1:2018 EN 60079-1:2014 GB3836.2-2010 | ||
| 13 | Electrical apparatus for explosive atmospheres – Pressurized enclosures „p” | Linear geometric dimensions Method: direct | PN-EN 60079-2:2015-02 IEC 60079-2:2014 EN 60079-2:2014 | ||
| 14 | Electrical apparatus for explosive atmospheres – Pressurized enclosures „p” | Enclosure resistance to pressure Range: up to 3 MPa Method: static pressure loading | PN-EN 60079-2:2015-02 IEC 60079-2:2014 EN 60079-2:2014 | ||
| 15 | Electrical apparatus for explosive atmospheres – Pressurized enclosures „p” | Enclosure tightness Range: up to 3 MPa Method: static pressure loading | PN-EN 60079-2:2015-02 IEC 60079-2:2014 EN 60079-2:2014 | ||
| 16 | Electrical apparatus for explosive atmospheres – Pressurized enclosures „p” | Integrity of the internal ventilation system Range: up to 3 MPa Method: static pressure loading | PN-EN 60079-2:2015-02 IEC 60079-2:2014 EN 60079-2:2014 | ||
| 17 | Electrical apparatus for explosive atmospheres – Powder filling „q” | Linear geometric dimensions Method: direct | PN-EN 60079-5:2015-08 IEC 60079-5:2015+IEC 60079- 5:2015/AMD1:2022 EN 60079-5:2015 | ||
| 18 | Electrical apparatus for explosive atmospheres – Powder filling „q” | Enclosure resistance to pressure Range: up to 3 MPa Method: static pressure loading | PN-EN 60079-5:2015-08 IEC 60079-5:2015+IEC 60079- 5:2015/AMD1:2022 EN 60079-5:2015 | ||
| 19 | Electrical apparatus for explosive atmospheres – Powder filling „q” | IP degree of protection IP range: 1X, 2X, 5X, 6X, X4, X5, X6, X7, X8 | PN-EN 60079-5:2015-08 IEC 60079-5:2015+IEC 60079- 5:2015/AMD1:2022 EN 60079-5:2015 | ||
| 20 | Electrical apparatus for explosive atmospheres – Powder filling „q” | Thermal tests, temperatures and temperature rises in the range up to 450˚C | PN-EN 60079-5:2015-08 IEC 60079-5:2015+IEC 60079- 5:2015/AMD1:2022 EN 60079-5:2015 | ||
| 21 | Electrical equipment for explosive atmospheres – Liquid immersion “o” | Type tests: - Overpressure test of sealed enclosures - Reduced pressure test of sealed enclosures - Overpressure test of unsealed enclosures - Maximum temperature - Switching tests Routine tests: - Sealed enclosures - Unsealed enclosures | PN-EN 60079-6:2016-02 IEC 60079-6:2015+IEC 60079- 6:2015/AMD1:2020 EN 60079-6:2015 | ||
| 22 | Electrical apparatus for explosive atmospheres – Increased safety „e” | Linear geometric dimensions Method: direct | PN-EN 60079-7:2016-02+A1:2018- 03+A11:2024-12 IEC 60079-7:2015+IEC 60079- 7:2015/AMD1:2017 EN 60079-7:2015+EN IEC 60079- 7:2015/A1:2018 GB3836.3-2010 | ||
| 23 | Electrical apparatus for explosive atmospheres – Increased safety „e” | Electric strength of the insulation Range: alternating voltage up to 20 kV | PN-EN 60079-7:2016-02+A1:2018- 03+A11:2024-12 IEC 60079-7:2015+IEC 60079- 7:2015/AMD1:2017 EN 60079-7:2015+EN IEC 60079- 7:2015/A1:2018 GB3836.3-2010 | ||
| 24 | Electrical apparatus for potentially explosive atmospheres. Intrinsic safety „i” | Linear geometric dimensions Method: direct | PN-EN 60079-11:2012 IEC 60079-11:2023+IEC 60079- 11:2023/COR1:2023 EN 60079-11:2012 GB3836.4-2010 | ||
| 25 | Electrical apparatus for potentially explosive atmospheres. Intrinsic safety „i” | Insulation distances Direct measurement | PN-EN 60079-11:2012 IEC 60079-11:2023+IEC 60079- 11:2023/COR1:2023 EN 60079-11:2012 GB3836.4-2010 | ||
| 26 | Electrical apparatus for potentially explosive atmospheres. Intrinsic safety „i” | Dielectric strength of insulation Range: AC voltage up to 20 kV | PN-EN 60079-11:2012 IEC 60079-11:2023+IEC 60079- 11:2023/COR1:2023 EN 60079-11:2012 GB3836.4-2010 | ||
| 27 | Electrical apparatus for potentially explosive atmospheres. Intrinsic safety „i” | Capacity of cells and batteries Short-circuit resistance of cells and batteries | PN-EN 60079-11:2012 IEC 60079-11:2023+IEC 60079- 11:2023/COR1:2023 EN 60079-11:2012 GB3836.4-2010 | ||
| 28 | Electrical apparatus for potentially explosive atmospheres. Intrinsic safety „i” | Mechanical resistance of the filling compound | PN-EN 60079-11:2012 IEC 60079-11:2023+IEC 60079- 11:2023/COR1:2023 EN 60079-11:2012 GB3836.4-2010 | ||
| 29 | Electrical apparatus for potentially explosive atmospheres. Intrinsic safety „i” | Electric strength of transformer insulation | PN-EN 60079-11:2012 IEC 60079-11:2023+IEC 60079- 11:2023/COR1:2023 EN 60079-11:2012 GB3836.4-2010 | ||
| 30 | Electrical apparatus for potentially explosive atmospheres. Intrinsic safety „i” | Spark-initiated ignition test | PN-EN 60079-11:2012 IEC 60079-11:2023+IEC 60079- 11:2023/COR1:2023 EN 60079-11:2012 GB3836.4-2010 | ||
| 31 | Electrical apparatus for explosive atmospheres – Type of protection „n” | Linear geometric dimensions Method: direct | PN-EN IEC 60079-15:2019-06 IEC 60079-15:2017 EN IEC 60079-15:2019 | ||
| 32 | Electrical apparatus for explosive atmospheres – Type of protection „n” | Resistance to heat Range: up to 180˚C | PN-EN IEC 60079-15:2019-06 IEC 60079-15:2017 EN IEC 60079-15:2019 | ||
| 33 | Electrical apparatus for explosive atmospheres – Type of protection „n” | Free-fall drop resistance | PN-EN IEC 60079-15:2019-06 IEC 60079-15:2017 EN IEC 60079-15:2019 | ||
| 34 | Electrical apparatus for explosive atmospheres – Type of protection „n” | Dielectric strength of insulation Range: AC voltage up to 20 kV | PN-EN IEC 60079-15:2019-06 IEC 60079-15:2017 EN IEC 60079-15:2019 | ||
| 35 | Electrical apparatus for potentially explosive atmospheres – Equipment protected by encapsulation „m” | Thermal tests, temperatures and temperature rises in the range up to 450˚C | PN-EN 60079-18:2015- 06+A1:2018-02 IEC 60079-18:2014+IEC 60079- 18:2014/AMD1:2017 EN 60079-18:2015+EN 60079- 18:2015/A1:2017 | ||
| 36 | Electrical apparatus for potentially explosive atmospheres – Equipment protected by encapsulation „m” | Resistance to heat Range: up to 180˚C | PN-EN 60079-18:2015- 06+A1:2018-02 IEC 60079-18:2014+IEC 60079- 18:2014/AMD1:2017 EN 60079-18:2015+EN 60079- 18:2015/A1:2017 | ||
| 37 | Electrical apparatus for potentially explosive atmospheres – Equipment protected by encapsulation „m” | Thermal resistance to cold Range: down to -75˚C | PN-EN 60079-18:2015- 06+A1:2018-02 IEC 60079-18:2014+IEC 60079- 18:2014/AMD1:2017 EN 60079-18:2015+EN 60079- 18:2015/A1:2017 | ||
| 38 | Electrical apparatus for potentially explosive atmospheres – Equipment protected by encapsulation „m” | Dielectric strength of insulation Range: AC voltage up to 20 kV | PN-EN 60079-18:2015- 06+A1:2018-02 IEC 60079-18:2014+IEC 60079- 18:2014/AMD1:2017 EN 60079-18:2015+EN 60079- 18:2015/A1:2017 | ||
| 39 | Electrical apparatus for potentially explosive atmospheres – Equipment protected by encapsulation „m” | Enclosure resistance to pressure Range: up to 3 MPa Method: static pressure loading | PN-EN 60079-18:2015- 06+A1:2018-02 IEC 60079-18:2014+IEC 60079- 18:2014/AMD1:2017 EN 60079-18:2015+EN 60079- 18:2015/A1:2017 | ||
| 40 | Electrical apparatus for potentially explosive atmospheres – Equipment protected by encapsulation „m” | Testing of the encapsulation compound, water absorption test | PN-EN 60079-18:2015- 06+A1:2018-02 IEC 60079-18:2014+IEC 60079- 18:2014/AMD1:2017 EN 60079-18:2015+EN 60079- 18:2015/A1:2017 | ||
| 41 | Electrical apparatus for potentially explosive atmospheres – Intrinsically safe systems | Linear geometric dimensions Method: direct | PN-EN IEC 60079-25:2023-02 IEC 60079-25:2020+IEC 60079- 25:2020/COR1:2020+IEC 60079- 25:2020/COR2:2022 EN IEC 60079-25:2022 | ||
| 42 | Electrical apparatus for potentially explosive atmospheres – Intrinsically safe systems | Insulation distances Direct measurement | PN-EN IEC 60079-25:2023-02 IEC 60079-25:2020+IEC 60079- 25:2020/COR1:2020+IEC 60079- 25:2020/COR2:2022 EN IEC 60079-25:2022 | ||
| 43 | Electrical apparatus for potentially explosive atmospheres – Intrinsically safe systems | Electric strength of the insulation Range: Alternating voltage up to 20kV | PN-EN IEC 60079-25:2023-02 IEC 60079-25:2020+IEC 60079- 25:2020/COR1:2020+IEC 60079- 25:2020/COR2:2022 EN IEC 60079-25:2022 | ||
| 44 | Electrical apparatus for potentially explosive atmospheres – Intrinsically safe systems | Capacity of cells and batteries Short-circuit resistance of cells and batteries | PN-EN IEC 60079-25:2023-02 IEC 60079-25:2020+IEC 60079- 25:2020/COR1:2020+IEC 60079- 25:2020/COR2:2022 EN IEC 60079-25:2022 | ||
| 45 | Electrical apparatus for potentially explosive atmospheres – Intrinsically safe systems | Mechanical resistance of the filling compound | PN-EN IEC 60079-25:2023-02 IEC 60079-25:2020+IEC 60079- 25:2020/COR1:2020+IEC 60079- 25:2020/COR2:2022 EN IEC 60079-25:2022 | ||
| 46 | Electrical apparatus for potentially explosive atmospheres – Intrinsically safe systems | Insulation resistance of transformers | PN-EN IEC 60079-25:2023-02 IEC 60079-25:2020+IEC 60079- 25:2020/COR1:2020+IEC 60079- 25:2020/COR2:2022 EN IEC 60079-25:2022 | ||
| 47 | Electrical apparatus for explosive atmospheres – Equipment with equipment protection level (EPL) Ga | Impact resistance Range: impact energy up to 20 J | PN-EN IEC 60079-26:2024-09 IEC 60079-26:2021 EN 60079-26:2015 | ||
| 48 | Electrical apparatus for explosive atmospheres – Equipment with equipment protection level (EPL) Ga | Thermal testing, temperatures and temperature rises in the range up to 450°C | PN-EN IEC 60079-26:2024-09 IEC 60079-26:2021 EN 60079-26:2015 | ||
| 49 | Electrical apparatus for explosive atmospheres – Protection of equipment against dust ignition by enclosure „t” | IP degree of protection Range: IP 1X, 2X, 5X, 6X, X4, X5, X6, X7, X8 | PN-EN IEC 60079-31:2024-08 IEC 60079-31:2022+IEC 60079- 31:2022/COR1:2023 EN 60079-31:2014 | ||
| 50 | Electrical apparatus for explosive atmospheres – Protection of equipment against dust ignition by enclosure „t” | Impact resistance Range: impact energy up to 20 J | PN-EN IEC 60079-31:2024-08 IEC 60079-31:2022+IEC 60079- 31:2022/COR1:2023 EN 60079-31:2014 | ||
| 51 | Electrical apparatus for explosive atmospheres – Protection of equipment against dust ignition by enclosure „t” | Enclosure resistance to pressure Range: up to 3 MPa Method: static pressure loading | PN-EN IEC 60079-31:2024-08 IEC 60079-31:2022+IEC 60079- 31:2022/COR1:2023 EN 60079-31:2014 | ||
| 52 | Electrical apparatus for explosive atmospheres – Protection of equipment against dust ignition by enclosure „t” | Thermal testing, temperatures and temperature rises Range: up to +450˚C | PN-EN IEC 60079-31:2024-08 IEC 60079-31:2022+IEC 60079- 31:2022/COR1:2023 EN 60079-31:2014 | ||
| 53 | Solid materials used to prevent electrostatic charge accumulation | Surface resistance of non-metallic materials Range: up to R=1x1012Ω | PN-EN 60079-32-2:2015-08 IEC 60079-32-2:2015 EN 60079-32-2:2015 | ||
| 54 | Solid materials used to prevent electrostatic charge accumulation | Volume resistance of non-metallic materials Range: up to R=1x1012Ω | PN-EN 60079-32-2:2015-08 IEC 60079-32-2:2015 EN 60079-32-2:2015 | ||
| 55 | Machinery and equipment. Degrees of protection provided by enclosures (IP code) | IP degree of protection Range: IP 1X, 2X, 3X, 4X, 5X, 6X, X4, X5, X6, X7, X8, X9 | PN-EN 60529:2003+A2:2014-07 PN-G-50003:2003 PN-EN IEC 60034-5:2021-01 | ||
| 56 | Vehicles – machines and equipment used in vehicles Degrees of protection provided by enclosures (IP code) | IP degree of protection Range: IP 1X, 2X, 3X, 4X, X4, X5, X6, X6K, X7, X8, X9K | ISO 20653:2013 | ||
| 57 | Machinery and equipment. Degrees of protection provided by enclosures (IK code) | IK degree of protection Range: IK 01, 02, 03, 04, 05, 06, 07, 08, 09, 10 Method: Ehc test, vertical hammer | PN-EN 62262:2003+A1:2022-06 PN-EN 60068-2-75:2015-01 | ||
| 58 | Non-electrical equipment for use in potentially explosive atmospheres | Linear geometric dimensions Method: direct | PN-EN ISO 80079-36:2016-07 wg Załącznika ZC EN ISO 80079-36:2016 ISO 80079-36:2016 | ||
| 59 | Non-electrical equipment for use in potentially explosive atmospheres | Impact resistance Range: impact energy up to 20 J | |||
| 60 | Non-electrical equipment for use in potentially explosive atmospheres | Free-fall drop resistance | |||
| 61 | Non-electrical equipment for use in potentially explosive atmospheres | Maximum surface temperature Range: up to +450ºC | |||
| 62 | Non-electrical equipment for explosive atmospheres. Protection by liquid immersion “k” | Enclosure resistance to pressure Range: up to 3 MPa Method: static pressure loading | PN-EN ISO 80079-37:2016-07 wg Załącznika ZB EN ISO 80079-37:2016 ISO 80079-37:2016 | ||
| 63 | Hand-held electrically powered tools / Electrically powered hand-held, transportable tools, lawn and other garden machinery | - Verification of marking - Verification of protection against access to live parts - Verification of starting - Verification of power input and current - Verification of heating - Verification of leakage current - Verification of resistance to moisture - Verification of electric strength - Verification of protection against overload of the transformer and of circuits supplied from the transformer - Verification of endurance operation - Verification of the operation of the appliance under abnormal conditions - Verification of protection against mechanical injury - Verification of construction - Verification of internal wiring - Verification of components - Verification of supply connection and external flexible cords - Verification of external conductors - Verification of the earthing connection - Verification of screws and connections - Verification of creepage distances, clearances and distances through solid insulation - Verification of durability - Verification of resistance to rusting - Verification of resistance to heat and fire | PN-EN 60745-1:2009+A11:2011 PN-EN 62841-1:2015-11+A11:2023- 02 IEC 62841-1:2014+IEC 62841- 1:2014/COR1:2014+IEC 62841- 1:2014/COR2:2015 EN 62841-1:2015+EN 62841- 1:2015/A11:2022 | ||
| 64 | Safety requirements for electrical equipment for measurement, control and laboratory use | - Marking and documentation - Protection against electric shock - Protection against mechanical hazards - Temperature limits of the equipment and resistance to heat - Protection against hazards caused by fluids - Protection by interlocks | PN-EN 61010-1:2011+A1:2019-04 IEC 61010-1:2010+IEC 61010- 1:2010/COR1:2011+IEC 61010- 1:2010/AMD1:2016 EN 61010-1:2010+EN 61010- 1:2010/A1:2019 | ||
| 65 | Medical electrical equipment and medical systems and equipment used in the home healthcare environment | Durability of marking Legibility of marking Measurement of voltage and stored charge Impedance of the protective earth connection Leakage current: - earth leakage current - touch current - patient leakage current - patient auxiliary current - total patient leakage current Clearances Dielectric strength of insulation Clearances and creepage distances Heat resistance Range: up to 180 °C Humidity preconditioning Humidity range in climatic mode up to 98% Protection against mechanical hazards excluding cl. 9.5 and 9.6 Temperature during normal use Temperature of applied parts Degree of protection against: - spillage in medical equipment, - pouring over medical equipment, - ingress of water or particulate matter into medical equipment Fault conditions excluding cl. 13.2.11 Construction, mechanical strength | PN-EN 60601-1:2011+A1:2014- 02+A12:2014-12+A2:2022- 03+A13:2025-01 IEC 60601-1:2005+IEC 60601- 1:2005/AMD1:2012+IEC 60601- 1:2005/AMD2:2020 EN 60601-1:2006+EN 60601- 1:2006/corrigendum Mar.2010+EN 60601-1:2006/A1:2013+EN 60601- 1:2006/A12:2014+EN 60601- 1:2006/A2:2021 PN-EN 60601-1-11:2015- 09+A1:2021-12 | ||
| 66 | Medical electrical equipment – operating tables | Durability of marking Legibility of marking Measurement of voltage and stored charge Impedance of the protective earth connection Leakage current: - earth leakage current - touch current - patient leakage current - patient auxiliary current - total patient leakage current Clearances Dielectric strength of insulation Clearances and creepage distances Heat resistance Range: up to 180 °C Humidity preconditioning Humidity range in climatic mode up to 98% Protection against mechanical hazards excluding cl. 9.5 and 9.6 Temperature during normal use Temperature of applied parts Degree of protection against: - spillage in medical equipment, - pouring over medical equipment, - ingress of water or particulate matter into medical equipment Fault conditions excluding cl. 13.2.11 | PN-EN IEC 60601-2-46:2025-03 | ||
| 67 | Electrically powered wheelchairs, scooters and their chargers – Requirements and test methods | Static stability Electrical systems: - Current consumption in the switched-off state, - Protection against excessive discharge, - Testing of the overvoltage protection of the controller, - Leakage current for the positive pole, - Leakage current for the negative pole Lighting: - linear measurements of the mounting height of the lighting | PN-EN 12184 :2023-02 ISO 7176-1 :2014 ISO 7176-14 :2008 | ||
| 68 | Cells and batteries | - Altitude simulation test, - Thermal test, - Short-circuit test, - Crush test, - Forced discharge test - Drop test (packaging test) - Overcharge - Impact test - Free fall - Continuous charging | PN-EN 62133-2:2017-08+A1:2022-04 IEC 62133-2:2017+IEC 62133- 2:2017/AMD1:2021 EN 62133-2:2017+EN 62133- 2:2017/A1:2021 PN-EN IEC 62619:2023-02 IEC 62619:2022 EN IEC 62619:2022 | ||
| 69 | Plastics | Flexural strength Load range: up to 1000 kN Bending test | PN-EN ISO 178:2011+A1:2013-06 PN-EN ISO 178:2019-06 | ||
| 70 | Plastics | Compressive strength Load range: up to 1000 kN Compression test | PN-C-89071:1993 | ||
| 71 | Binders | Flexural strength Compressive strength Load range: up to 1000 kN Bending test Compression test | PN-EN 196-1:2016-07 | ||
| 72 | Binders | Compressive strength Load range: up to 1000 kN Compression test | PN-EN 12390-3:2019-07 | ||
| 73 | Rubber and plastics hoses and hose assemblies | Linear geometric dimensions Range: up to 150 mm Method: direct | PN-EN ISO 4671:2022-09 | ||
| 74 | Rubber and plastics hoses and hose assemblies | Resistance to test pressure Range: up to 2500 bar Method: static pressure loading | PN-EN ISO 1402:2021-10 PN-EN ISO 3949:2021-02 | ||
| 75 | Rubber and plastics hoses and hose assemblies | Resistance to burst pressure Range: up to 2500 bar Method: static pressure loading | PN-EN ISO 1402:2021-10 PN-EN ISO 3949:2021-02 | ||
| 76 | Rubber and plastics hoses and hose assemblies | Leakage Range: up to 2500 bar Method: static pressure loading | PN-EN ISO 1402:2021-10 PN-EN ISO 3949:2021-02 | ||
| 77 | Rubber and plastics hoses and hose assemblies | Test under pulsating hydraulic pressure without bending | PN-EN ISO 6803:2017-04 | ||
| 78 | Rubber and plastics hoses and hose assemblies | Abrasion resistance of the outer layer Range: 5 to 51 mm | PN-EN ISO 6945:2002 PN-EN 853:2015-05 PN-EN 856:2015-05 PN-EN 856+AC:2019-04 PN-EN 854:2015-05 PN-EN 857:2015-05 PN-G-32010:2012 | ||
| 79 | Rubber and plastics hoses and hose assemblies | Flammability testing | PN-EN ISO 8030:2014-09 PN-G-32010:2012 | ||
| 80 | Rubber and plastics hoses and hose assemblies | Surface resistance | PN-EN ISO 8031:2021-01 | ||
| 81 | Mining hydraulic drives and controls – plug-in couplings | Minimum burst pressure Range: up to 2500 bar Method: static pressure loading Linear geometric dimensions Range: up to 150 mm Method: direct | PN-G-32000:2011 DIN 20043:2003 | ||
| 82 | Plastics and other non-metallic materials | Flammability- exposure time 10s | PN-EN ISO 340:2022-12 pkt.5.7 z wyłączeniem pkt.5.7.5 i pkt.5.7.6 | ||
| 83 | Plastics and other non-metallic materials | Flammability | PN-EN ISO 9773:2025-03 | ||
| 84 | Plastics and other non-metallic materials | Flammability – method B | PN-EN 60695-11-10:2014-02 | ||
| 85 | Plastics and other non-metallic materials | Glow-wire test | PN-EN IEC 60695-2-10:2022-07 PN-EN IEC 60695-2-11:2022-07 | ||
| 86 | Plastics and other non-metallic materials | Ball pressure test | PN-EN 60695-10-2:2014-10 | ||
| 87 | Welded mesh linings for mine working supports | Surface condition Visual method | PN-G-15050:2018-01 | ||
| 88 | Welded mesh linings for mine working supports | Geometric dimensions Range: up to 2000 mm | |||
| 89 | Welded mesh linings for mine working supports | Flexural strength of the mesh Load range: up to 1000 kN | |||
| 90 | Welded mesh linings for mine working supports | Strength of the rod material Load range: up to 1000 kN | |||
| 91 | Welded mesh linings for mine working supports | Shear force of the weld Load range: up to 1000 kN | |||
| 92 | Base plate of roadway support | Dimensions and area of the support foot | PN-G-15023:2019-03 | ||
| 93 | Base plate of roadway support | Workmanship | |||
| 94 | Base plate of roadway support | Functionality | |||
| 95 | Base plate of roadway support | Strength Load range up to 1000 kN | |||
| 96 | Impact attenuating playground surfacing | Critical fall height Range: height (0÷3,7)m (HIC factor) | PN-EN 1177+A1:2024-05 | ||
| 97 | Playground equipment | Structural strength Method: strength test of structural components | PN-EN 1176-1+A1:2024-03 | ||
| 98 | Playground equipment | Accessibility for adults Measurement of geometrical quantities Range: (0 – 3000) mm | PN-EN 1176-1+A1:2024-03 | ||
| 99 | Playground equipment | Protection against falling Measurement of geometric quantities Range: (0 – 3000) mm | PN-EN 1176-1+A1:2024-03 | ||
| 100 | Playground equipment | Finishing of the equipment Measurement of geometric quantities Range: (0 – 160) mm | PN-EN 1176-1+A1:2024-03 | ||
| 101 | Playground equipment | Moving parts Measurement of geometrical quantities Range: (0 – 3000) mm | PN-EN 1176-1+A1:2024-03 | ||
| 102 | Playground equipment | Protection against entrapment Testing by means of test probes, Measurement of geometric quantities Range: (0 – 3000) mm (0 – 220)˚ | PN-EN 1176-1+A1:2024-03 | ||
| 103 | Playground equipment | Protection against injuries during movement and falling Measurement of geometric quantities calculations Range: (0 – 20000) mm | PN-EN 1176-1+A1:2024-03 | ||
| 104 | Playground equipment | Means of access Measurement of geometric quantities Range: (0 – 3000) mm (0 – 220)˚ | PN-EN 1176-1+A1:2024-03 | ||
| 105 | Playground equipment | Joints Method: sensory method | PN-EN 1176-1+A1:2024-03 | ||
| 106 | Playground equipment | Wear parts Method: sensory method | PN-EN 1176-1+A1:2024-03 | ||
| 107 | Playground equipment | Ropes Measurement of geometrical dimensions Range: (0 – 3000) mm | PN-EN 1176-1+A1:2024-03 | ||
| 108 | Playground equipment | Chains: Measurement of geometric quantities Range: (0 – 160) mm | PN-EN 1176-1+A1:2024-03 | ||
| 109 | Playground equipment | Suspended heavy beams Testing with probes, Measurement of geometric dimensions force measurement Range: (0 – 3000) mm (0 – 1000) N | PN-EN 1176-1+A1:2024-03 | ||
| 110 | Playground equipment | Marking Method: sensory method | PN-EN 1176-1+A1:2024-03 | ||
| 111 | Playground equipment – swings | Geometric dimensions Measurement of geometric quantities calculations Range: (0 – 20000) mm | PN-EN 1176-2+AC:2020-01 | ||
| 112 | Playground equipment – swings | Methods of suspension Measurement of geometric quantities Range: (0 – 3000) mm (0 – 220)˚ | PN-EN 1176-2+AC:2020-01 | ||
| 113 | Playground equipment – swings | Fall height and impact area Measurement of geometric quantities calculations Range: (0 – 3000) mm (0 – 220)˚ | PN-EN 1176-2+AC:2020-01 | ||
| 114 | Playground equipment – swings | Marking Method: sensory method | PN-EN 1176-2+AC:2020-01 | ||
| 115 | Playground equipment – slides | Geometric dimensions Measurement of geometric quantities Range: (0 – 3000) mm (0 – 220)˚ | PN-EN 1176-3:2017-12 | ||
| 116 | Playground equipment – slides | Slide surface Method: testing with probes | PN-EN 1176-3:2017-12 | ||
| 117 | Playground equipment – slides | Free space Measurement of geometric quantities Range: (0 – 3000) mm | PN-EN 1176-3:2017-12 | ||
| 118 | Playground equipment – slides | Impact area Measurement of geometric quantities calculations Range: (0 – 20000) mm | PN-EN 1176-3:2017-12 | ||
| 119 | Playground equipment – slides | Marking Method: sensory method | PN-EN 1176-3:2017-12 | ||
| 120 | Playground equipment – cableways | Design and attachment points of the carrying rope Method: sensory method | PN-EN 1176-4+AC:2019-03 | ||
| 121 | Playground equipment – cableways | Buffer stops Assessment of the deflection angle of the suspension element at the 45 ˚ point | PN-EN 1176-4+AC:2019-03 | ||
| 122 | Playground equipment – cableways | Overhead crane Method: sensory method | PN-EN 1176-4+AC:2019-03 | ||
| 123 | Playground equipment – cableways | Suspension assembly Method: sensory method | PN-EN 1176-4+AC:2019-03 | ||
| 124 | Playground equipment – cableways | Cableways installed in parallel Measurement of geometric quantities Range: (0 – 3000) mm | PN-EN 1176-4+AC:2019-03 | ||
| 125 | Playground equipment – cableways | Handles Testing with probes Measurement of geometric dimensions Range: (0 – 160) mm | PN-EN 1176-4+AC:2019-03 | ||
| 126 | Playground equipment – cableways | Speed Measurement of time and geometric quantities, calculations | PN-EN 1176-4+AC:2019-03 | ||
| 127 | Playground equipment – cableways | Free fall height Measurement of geometrical dimensions Range: (0 – 3000) mm | PN-EN 1176-4+AC:2019-03 | ||
| 128 | Playground equipment – cableways | Ground clearance Measurement of force and geometric quantities Range: (0 – 1000) N (0 – 3000) mm | PN-EN 1176-4+AC:2019-03 | ||
| 129 | Playground equipment – cableways | Height of the carrying rope Measurement of geometric quantities Range: (0 – 20000) mm | PN-EN 1176-4+AC:2019-03 | ||
| 130 | Playground equipment – cableways | Falling space and impact area Measurement of geometric quantities Range: (0 – 20000) mm | PN-EN 1176-4+AC:2019-03 | ||
| 131 | Playground equipment – cableways | Marking Method: sensory method | PN-EN 1176-4+AC:2019-03 | ||
| 132 | Playground equipment – rocking equipment | Free fall height Measurement of geometrical dimensions Range: (0 – 3000) mm | PN-EN 1176-6+AC:2019-03 | ||
| 133 | Playground equipment – rocking equipment | Deflection of the seat/standing place Measurement of force and geometric dimensions Range: (0 – 1000) N (0 – 3000) mm (0 – 220)˚ | PN-EN 1176-6+AC:2019-03 | ||
| 134 | Playground equipment – rocking equipment | Entrapment, crushing Testing with test probes | PN-EN 1176-6+AC:2019-03 | ||
| 135 | Playground equipment – rocking equipment | Inhibition of movement Method: sensory method | PN-EN 1176-6+AC:2019-03 | ||
| 136 | Playground equipment – rocking equipment | Footrests Testing with test probes | PN-EN 1176-6+AC:2019-03 | ||
| 137 | Playground equipment – rocking equipment | Handholds Testing with test probes Measurement of geometric quantities Range: (0 – 3000) mm | PN-EN 1176-6+AC:2019-03 | ||
| 138 | Playground equipment – rocking equipment | Profiles in side view Testing with gauges | PN-EN 1176-6+AC:2019-03 | ||
| 139 | Playground equipment – rocking equipment | Entrapment Testing by means of test probes Measurement of geometric quantities Range: (0 – 3000) mm (0 – 220)˚ | PN-EN 1176-6+AC:2019-03 | ||
| 140 | Playground equipment – rocking equipment | Falling space Measurement of geometric quantities Range: (0 – 3000) mm | PN-EN 1176-6+AC:2019-03 | ||
| 141 | Playground equipment – rocking equipment | Lateral deflection (type 1) Measurement of force and geometric quantities Range: (0 – 1000) N (0 – 3000) mm | PN-EN 1176-6+AC:2019-03 | ||
| 142 | Playground equipment – rocking equipment | Rotation about the vertical axis (type 3A) Measurement of force and geometric quantities Range: (0 – 1000) N (0 – 3000) mm (0 – 220)˚ | PN-EN 1176-6+AC:2019-03 | ||
| 143 | Playground equipment – rocking equipment | Total range of movement (type 4) Measurement of geometrical quantities Range: (0 – 3000) mm | PN-EN 1176-6+AC:2019-03 | ||
| 144 | Playground equipment – rocking equipment | Free fall height (type 6) Measurement of geometric quantities Range: (0 – 3000) mm (0 – 220)˚ | PN-EN 1176-6+AC:2019-03 | ||
| 145 | Playground equipment – rocking equipment | Marking Method: sensory method | PN-EN 1176-6+AC:2019-03 | ||
| 146 | Playground equipment – spatial networks | Falling space Measurement of geometric quantities Range: (0 – 3000) mm | PN-EN 1176-11:2014-11 | ||
| 147 | Playground equipment – spatial networks | Mesh dimensions in three-dimensional flat nets Measurement of geometric quantities calculations Range: (0 – 3000) mm | PN-EN 1176-11:2014-11 | ||
| 148 | Playground equipment – spatial networks | Protection against injuries in the falling space Measurement of geometric quantities calculations Range: (0 – 3000) mm | PN-EN 1176-11:2014-11 | ||
| 149 | Playground equipment – spatial networks | Converging parts Test with test probes, force measurement Range: (0 – 3000) mm (0 – 1000) N | PN-EN 1176-11:2014-11 | ||
| 150 | Permanently installed outdoor fitness equipment | Structural strength Method: strength test of structural components | PN-EN 16630:2015-06 PN-EN 1176-1:2017-12 | ||
| 151 | Permanently installed outdoor fitness equipment | Finishing of the equipment Testing by means of test probes Measurement of geometric quantities Range: (0 – 160) mm | PN-EN 16630:2015-06 | ||
| 152 | Permanently installed outdoor fitness equipment | Walkable surfaces Measurement of geometric quantities Range: (0 – 3000) mm | PN-EN 16630:2015-06 | ||
| 153 | Permanently installed outdoor fitness equipment | Moving parts Testing with test probes Measurement of geometrical quantities Range: (0 – 160) mm (0 – 220)˚ | PN-EN 16630:2015-06 | ||
| 154 | Permanently installed outdoor fitness equipment | Protection against entrapment Testing with probes Measurement of geometric quantities Range: (0 – 3000) mm | PN-EN 16630:2015-06 | ||
| 155 | Permanently installed outdoor fitness equipment | Loads and resistors Method: sensory method | PN-EN 16630:2015-06 | ||
| 156 | Permanently installed outdoor fitness equipment | Adjusting and locking mechanisms Method: sensory method | PN-EN 16630:2015-06 | ||
| 157 | Permanently installed outdoor fitness equipment | Accessibility of the entrance/exit Method: sensory method | PN-EN 16630:2015-06 | ||
| 158 | Permanently installed outdoor fitness equipment | Joints Method: sensory method | PN-EN 16630:2015-06 | ||
| 159 | Permanently installed outdoor fitness equipment | Wear parts Method: sensory method | PN-EN 16630:2015-06 | ||
| 160 | Permanently installed outdoor fitness equipment | Grip/handle Measurement of geometrical quantities Range: (0 – 160) mm | PN-EN 16630:2015-06 | ||
| 161 | Permanently installed outdoor fitness equipment | Ropes Measurement of geometrical dimensions Range: (0 – 3000) mm | PN-EN 16630:2015-06 | ||
| 162 | Permanently installed outdoor fitness equipment | Chains Testing with test probes | PN-EN 16630:2015-06 | ||
| 163 | Permanently installed outdoor fitness equipment | Surfaces and spaces Measurement of geometric quantities Range: (0 – 20000) mm | PN-EN 16630:2015-06 | ||
| 164 | Permanently installed outdoor fitness equipment | Free fall height Measurement of geometric quantities Range: (0 – 20000) mm | PN-EN 16630:2015-06 | ||
| 165 | Permanently installed outdoor fitness equipment | Marking Method: sensory method | PN-EN 16630:2015-06 | ||
| 166 | Sports and recreational equipment – Parkour equipment | Structural strength Method: strength test of structural components | PN-EN 16899:2017-02 | ||
| 167 | Sports and recreational equipment – Parkour equipment | Child-resistant access protection Measurement of geometric quantities Calculations Range: (0 – 3000) mm | PN-EN 16899:2017-02 | ||
| 168 | Sports and recreational equipment – Parkour equipment | Finishing of the equipment Testing with test probes Measurement of geometric quantities Range: (0 – 3000) mm | PN-EN 16899:2017-02 | ||
| 169 | Sports and recreational equipment – Parkour equipment | Parkour beams and rails Measurement of geometrical quantities Range: (0 – 3000) mm (0 – 220)˚ | PN-EN 16899:2017-02 | ||
| 170 | Sports and recreational equipment – Parkour equipment | Closed passages Measurement of geometric quantities Range: (0 – 3000) mm (0 – 220)˚ | PN-EN 16899:2017-02 | ||
| 171 | Sports and recreational equipment – Parkour equipment | Protection against injuries during movement and falling Measurement of geometric quantities Range: (0 – 3000) mm | PN-EN 16899:2017-02 | ||
| 172 | Sports and recreational equipment – Parkour equipment | Gaps Testing with test probes Measurement of geometric quantities Range: (0 – 3000) mm | PN-EN 16899:2017-02 | ||
| 173 | Sports and recreational equipment – Parkour equipment | Protection against entrapment Testing with probes Measurement of geometric quantities Range: (0 – 3000) mm | PN-EN 16899:2017-02 | ||
| 174 | Sports and recreational equipment – Parkour equipment | Free fall height Measurement of geometrical dimensions Range: (0 – 3000) mm | PN-EN 16899:2017-02 | ||
| 175 | Sports and recreational equipment – Parkour equipment | Marking Method: sensory method | PN-EN 16899:2017-02 | ||
| 176 | Stationary training equipment | Stability Functional tests at a 10˚ inclination | PN-EN ISO 20957-1:2014-02 | ||
| 177 | Stationary training equipment | External construction Testing with test probes, visual inspection, tactile testing | |||
| 178 | Stationary training equipment | Entrapment of the user Visual inspection and functional tests | |||
| 179 | Stationary training equipment | Adjustment and locking mechanisms Functional tests, visual inspection | |||
| 180 | Stationary training equipment | Strength of ropes, belts, chains and slings Tensile strength test | |||
| 181 | Stationary training equipment | Rope and belt guides Functional tests | |||
| 182 | Stationary training equipment | Flywheels Testing with test probes | |||
| 183 | Stationary training equipment | Handles Functional tests, security of fixing | |||
| 184 | Stationary training equipment | Loading equipment Force measurement | |||
| 185 | Stationary training equipment | Heart rate measurement system Functional check | |||
| 186 | Stationary training equipment | Internal and external load Load test | |||
| 187 | Stationary training equipment | Marking Visual inspection | |||
| 188 | Stationary training equipment – Strength training equipment | Stability | PN-EN ISO 20957-2:2025-03 | ||
| 189 | Stationary training equipment – Strength training equipment | Load | |||
| 190 | Stationary training equipment – Strength training equipment | Strength - working arm - latching mechanisms - fall arrester | |||
| 191 | Stationary training equipment – Strength training equipment | Access to crushing/shearing points | |||
| 192 | Stationary training equipment – Strength training equipment | Load attachment | |||
| 193 | Stationary training equipment – Strength training equipment | Entrapment of the body | |||
| 194 | Stationary training equipment – Strength training equipment | Drawing-in points | |||
| 195 | Stationary training equipment – strength training benches | Geometric dimensions Linear measurement | PN-EN ISO 20957-4:2017-03 | ||
| 196 | Stationary training equipment – strength training benches | Visual inspection | |||
| 197 | Stationary training equipment – strength training benches | Functional tests | |||
| 198 | Stationary training equipment – strength training benches | Rotational stability of the barbell | |||
| 199 | Stationary training equipment – strength training benches | Rotational and longitudinal stability of the bench | |||
| 200 | Stationary training equipment – Stationary exercise bicycles and upper body crank training equipment | Geometric dimensions | PN-EN ISO 20957-5:2017-03 | ||
| 201 | Stationary training equipment – Stationary exercise bicycles and upper body crank training equipment | Visual inspection | |||
| 202 | Stationary training equipment – Stationary exercise bicycles and upper body crank training equipment | Touch tests | |||
| 203 | Stationary training equipment – Stationary exercise bicycles and upper body crank training equipment | Functional tests | |||
| 204 | Stationary training equipment – Stationary exercise bicycles and upper body crank training equipment | Temperature rise | |||
| 205 | Stationary training equipment – Stationary exercise bicycles and upper body crank training equipment | Transmission components and rotating parts Test with test probes | |||
| 206 | Stationary training equipment – Stationary exercise bicycles and upper body crank training equipment | Internal load Loading test | |||
| 207 | Stationary training equipment – Stationary exercise bicycles and upper body crank training equipment | Tilting of the seat Load test | |||
| 208 | Stationary training equipment – Stationary exercise bicycles and upper body crank training equipment | Stability Functional tests at a 10˚ inclination | |||
| 209 | Stationary training equipment – Elliptical trainers | Geometric dimensions | PN-EN ISO 20957-9:2017- 03+A1:2019-07 | ||
| 210 | Stationary training equipment – Elliptical trainers | Visual inspection | |||
| 211 | Stationary training equipment – Elliptical trainers | Functional tests | |||
| 212 | Stationary training equipment – Elliptical trainers | Crushing and shearing points Testing with test probes | |||
| 213 | Stationary training equipment – Elliptical trainers | Temperature rise | |||
| 214 | Stationary training equipment – Elliptical trainers | Internal load Loading test | |||
| 215 | Stationary training equipment – Elliptical trainers | Stability Functional tests at a 10˚ inclination | |||
| 216 | Machinery and equipment – noise | A-weighted equivalent sound level Range: (23 – 137) dB C-weighted peak sound level Range: (30 – 140) dB Direct measurement method | PN-EN ISO 11202:2012+A1:2021- 10 | ||
| 217 | Machinery and equipment – noise | Emission sound pressure level (calculated) | |||
| 218 | Machinery and equipment – noise | A-weighted equivalent sound level Range: (23 – 137) dB Direct measurement method | PN-EN ISO 3746:2011+Ap1:2017- 09 | ||
| 219 | Machinery and equipment – noise | Sound power level Sound energy level (calculated) | |||
| 220 | Workplace environment − whole-body vibration | Frequency-weighted effective vibration acceleration Range: (0,003–700) m/s² Direct measurement method | PN-EN 14253+A1:2011 | ||
| 221 | Workplace environment − whole-body vibration | Daily exposure, expressed as the energy-equivalent for 8 hours of the r.m.s., frequency-weighted vibration acceleration, dominant among the vibration accelerations, determined for the three directional components taking into account the appropriate factors (1.4awx, 1.4awy, awz) Exposure lasting 30 minutes and less, expressed as the r.m.s., frequency-weighted vibration acceleration, dominant among the vibration accelerations, determined for the three directional components taking into account the appropriate factors (1.4awx, 1.4awy, awz) (calculated) | |||
| 222 | Workplace environment − hand-arm vibration | Frequency-weighted effective vibration acceleration Range: (0,01–700) m/s² Direct measurement method | PN-EN ISO 5349-1:2004 PN-EN ISO 5349-2:2004+A1:2015- 11 | ||
| 223 | Workplace environment − hand-arm vibration | Daily exposure, expressed as the energy-equivalent for 8-hours of the vector sum of the r.m.s. frequency-weighted vibration accelerations determined for three directional components (ahwx, ahwy, ahwz) Exposure lasting 30 minutes and less, expressed as the vector sum of the r.m.s. frequency-weighted vibration accelerations determined for three directional components (ahwx, ahwy, ahwz) (calculated) | |||
Reference standards (62)
ISO 20653:2013
PN-C-89071:1993
PN-EN 1176-1+A1:2024-03
PN-EN 1176-11:2014-11
PN-EN 1176-2+AC:2020-01
PN-EN 1176-3:2017-12
PN-EN 1176-4+AC:2019-03
PN-EN 1176-6+AC:2019-03
PN-EN 1177+A1:2024-05
PN-EN 12184 :2023-02 ISO 7176-1 :2014 ISO 7176-14 :2008
PN-EN 12390-3:2019-07
PN-EN 14253+A1:2011
PN-EN 16630:2015-06
PN-EN 16630:2015-06 PN-EN 1176-1:2017-12
PN-EN 16899:2017-02
PN-EN 196-1:2016-07
PN-EN 60079-11:2012 IEC 60079-11:2023+IEC 60079- 11:2023/COR1:2023 EN 60079-11:2012 GB3836.4-2010
PN-EN 60079-18:2015- 06+A1:2018-02 IEC 60079-18:2014+IEC 60079- 18:2014/AMD1:2017 EN 60079-18:2015+EN 60079- 18:2015/A1:2017
PN-EN 60079-1:2014-12+A11:2024- 12 IEC 60079-1:2014+IEC 60079- 1:2014/COR1:2018 EN 60079-1:2014 GB3836.2-2010
PN-EN 60079-2:2015-02 IEC 60079-2:2014 EN 60079-2:2014
PN-EN 60079-32-2:2015-08 IEC 60079-32-2:2015 EN 60079-32-2:2015
PN-EN 60079-5:2015-08 IEC 60079-5:2015+IEC 60079- 5:2015/AMD1:2022 EN 60079-5:2015
PN-EN 60079-6:2016-02 IEC 60079-6:2015+IEC 60079- 6:2015/AMD1:2020 EN 60079-6:2015
PN-EN 60079-7:2016-02+A1:2018- 03+A11:2024-12 IEC 60079-7:2015+IEC 60079- 7:2015/AMD1:2017 EN 60079-7:2015+EN IEC 60079- 7:2015/A1:2018 GB3836.3-2010
PN-EN 60529:2003+A2:2014-07 PN-G-50003:2003 PN-EN IEC 60034-5:2021-01
PN-EN 60601-1:2011+A1:2014- 02+A12:2014-12+A2:2022- 03+A13:2025-01 IEC 60601-1:2005+IEC 60601- 1:2005/AMD1:2012+IEC 60601- 1:2005/AMD2:2020 EN 60601-1:2006+EN 60601- 1:2006/corrigendum Mar.2010+EN 60601-1:2006/A1:2013+EN 60601- 1:2006/A12:2014+EN 60601- 1:2006/A2:2021 PN-EN 60601-1-11:2015- 09+A1:2021-12
PN-EN 60695-10-2:2014-10
PN-EN 60695-11-10:2014-02
PN-EN 60745-1:2009+A11:2011 PN-EN 62841-1:2015-11+A11:2023- 02 IEC 62841-1:2014+IEC 62841- 1:2014/COR1:2014+IEC 62841- 1:2014/COR2:2015 EN 62841-1:2015+EN 62841- 1:2015/A11:2022
PN-EN 61010-1:2011+A1:2019-04 IEC 61010-1:2010+IEC 61010- 1:2010/COR1:2011+IEC 61010- 1:2010/AMD1:2016 EN 61010-1:2010+EN 61010- 1:2010/A1:2019
PN-EN 62133-2:2017-08+A1:2022-04 IEC 62133-2:2017+IEC 62133- 2:2017/AMD1:2021 EN 62133-2:2017+EN 62133- 2:2017/A1:2021 PN-EN IEC 62619:2023-02 IEC 62619:2022 EN IEC 62619:2022
PN-EN 62262:2003+A1:2022-06 PN-EN 60068-2-75:2015-01
PN-EN IEC 60079-0:2018- 09+A11:2024-12 IEC 60079-0:2017+IEC 60079- 0:2017/COR1:2020 EN IEC 60079-0:2018 GB3836.1-2010
PN-EN IEC 60079-0:2018- 09+A11:2024-12 IEC 60079-0:2017+IEC 60079- 0:2017/COR1:2020 EN IEC 60079-0:2018 GB3836.1-2010 PN-G-50003:2003
PN-EN IEC 60079-15:2019-06 IEC 60079-15:2017 EN IEC 60079-15:2019
PN-EN IEC 60079-25:2023-02 IEC 60079-25:2020+IEC 60079- 25:2020/COR1:2020+IEC 60079- 25:2020/COR2:2022 EN IEC 60079-25:2022
PN-EN IEC 60079-26:2024-09 IEC 60079-26:2021 EN 60079-26:2015
PN-EN IEC 60079-31:2024-08 IEC 60079-31:2022+IEC 60079- 31:2022/COR1:2023 EN 60079-31:2014
PN-EN IEC 60601-2-46:2025-03
PN-EN IEC 60695-2-10:2022-07 PN-EN IEC 60695-2-11:2022-07
PN-EN ISO 11202:2012+A1:2021- 10
PN-EN ISO 1402:2021-10 PN-EN ISO 3949:2021-02
PN-EN ISO 178:2011+A1:2013-06 PN-EN ISO 178:2019-06
PN-EN ISO 20957-1:2014-02
PN-EN ISO 20957-2:2025-03
PN-EN ISO 20957-4:2017-03
PN-EN ISO 20957-5:2017-03
PN-EN ISO 20957-9:2017- 03+A1:2019-07
PN-EN ISO 340:2022-12 pkt.5.7 z wyłączeniem pkt.5.7.5 i pkt.5.7.6
PN-EN ISO 3746:2011+Ap1:2017- 09
PN-EN ISO 4671:2022-09
PN-EN ISO 5349-1:2004 PN-EN ISO 5349-2:2004+A1:2015- 11
PN-EN ISO 6803:2017-04
PN-EN ISO 6945:2002 PN-EN 853:2015-05 PN-EN 856:2015-05 PN-EN 856+AC:2019-04 PN-EN 854:2015-05 PN-EN 857:2015-05 PN-G-32010:2012
PN-EN ISO 80079-36:2016-07 wg Załącznika ZC EN ISO 80079-36:2016 ISO 80079-36:2016
PN-EN ISO 80079-37:2016-07 wg Załącznika ZB EN ISO 80079-37:2016 ISO 80079-37:2016
PN-EN ISO 8030:2014-09 PN-G-32010:2012
PN-EN ISO 8031:2021-01
PN-EN ISO 9773:2025-03
PN-G-15023:2019-03
PN-G-15050:2018-01
PN-G-32000:2011 DIN 20043:2003