🇵🇱 CENTRALNY INSTYTUT OCHRONY PRACY PL
EnvironmentMetrology & calibrationElectronics & EMC
CENTRALNY INSTYTUT OCHRONY PRACY is a laboratory accredited by PCA under number AB 038 (Warszawa, Poland). Its accreditation scope covers 43 test methods in the following areas: Environment, Metrology & calibration, Electronics & EMC. Test objects include: Working environment Non-laser optical radiation, Compressed air line breathing apparatus with demand valve Apparatus…, Compressed air line breathing devices with demand valve Devices wit…, Self-contained open-circuit compressed air breathing apparatus with….
At a glance
- Accreditation number: PCA AB 038
- Methods in scope: 43
- Types of test objects: 12
- City: Warszawa, Poland
- Accreditation number
- AB 038
- Accreditation body
- PCA
- Address
- - PAŃSTWOWY INSTYTUT BADAWCZY, ul. Czerniakowska 16, 00-701 Warszawa
- City
- Warszawa, Poland
What this laboratory tests (12)
- Working environment Non-laser optical radiation — 9 methods
- Compressed air line breathing apparatus with demand valve Apparatus with a half mask at positive pressure — 7 methods
- Compressed air line breathing devices with demand valve Devices with a full face mask — 7 methods
- Self-contained open-circuit compressed air breathing apparatus with half mask designed to be used with positive pressure only — 6 methods
- Environment- electromagnetic field in the vicinty of radiocommunication installations: broadband measurements — 3 methods
- Environment- electromagnetic field in the vicinty of radiocommunication installations: selective measurements — 2 methods
- Work station – noise — 2 methods
- Work station Indoor electrical lighting — 2 methods
- Working environment Energy expenditure — 2 methods
- Work station – ultrasonic noise — 1 method
- Work station Laser radiation — 1 method
- Working environment- - air samples collected on filters — 1 method
Accreditation scope — test methods (43)
| No. | Test object | Methodology / Parameters | Technique | Reference document | |
|---|---|---|---|---|---|
| Test methods | |||||
| 1 | Work station – noise | A-weighted equivalent sound pressure level Range: (40 -136) dB A-weighted maximum sound pressure level Range: (40 - 136) dB C-weighted peak sound pressure level Range: (40 -138) dB Direct measurement method | PN-N-01307:1994 PN-EN ISO 9612:2011 z wyłączeniem metody obejmującej Strategię 3 – punkt 11 with the exception of the method including Strategy 3-Clause 11 | ||
| 2 | Work station – noise | Noise exposure level normalized to: – an 8 h working day – an average weekly working time (from calculations) | |||
| 3 | Work station – ultrasonic noise | Equivalent sound pressure levels in one-third octave bands with the center frequencies from 10 kHz to 40 kHz Range: (50-136) dB Maximum sound pressure level in third octave bands with the center frequencies from 10 kHz to 40 kHz Range: (50-136) dB Direct measurement method | PN-Z-01339:2020 | ||
| 4 | Environment- electromagnetic field in the vicinty of radiocommunication installations: broadband measurements | Electric field strength: - in the frequency range from 100 kHz to 18 GHz Range: (0,6-100) V/m Direct measurement method Electric field strength in the frequency range from 100 kHz to 18 GHz Range: (0.6-100) V/m Direct measurement method | enia Ministra Klimatu z 17.02.2020 (Dz.U. 2022 poz. 2630) Annex to the Regulation of the Minister of Climate of February 17 | ||
| 5 | Environment- electromagnetic field in the vicinty of radiocommunication installations: broadband measurements | Magnetic field strength: - in the frequency range from 100 kHz to 1 GHz Range: (0,01-10) A/m Direct measurement method Magnetic field strength in the frequency range from 100 kHz to 1 GHz Range: (0.01-10) A/m Direct measurement method | |||
| 6 | Environment- electromagnetic field in the vicinty of radiocommunication installations: broadband measurements | Magnetic field strength: - in the frequency range from 1 GHz to 18 GHz Range: (0,01-0,26) A/m Measurement and calculation method Magnetic field strength in the frequency range from 1 GHz to 18 GHz Range: (0.01-0.26) A/m Measurement and calculation method | |||
| 7 | Environment- electromagnetic field in the vicinty of radiocommunication installations: selective measurements | Electric field strength: - in the frequency range from 27 MHz to 6 GHz Range: (0,02-100) V/m Direct measurement method Electric field strength in the frequency range from 27 MHz to 6 GHz Range: (0.02-100) V/m Direct measurement method | enia Ministra Klimatu z 17.02.2020 (Dz.U. 2022 poz.2630) Annex to the Regulation of the Minister of Climate of February 17 | ||
| 8 | Environment- electromagnetic field in the vicinty of radiocommunication installations: selective measurements | Magnetic field strength: - in the frequency range from 9 kHz to 250 MHz Range: (0,001-0,5) A/m Direct measurement method Magnetic field strength in the frequency range from 9 kHz to 250 MHz Range: (0.001-0.5) A/m Direct measurement method | |||
| 9 | Work station Laser radiation | Laser radiation power in the spectral range from 0,19 µm to 11 µm Range: (500 ·10-6-10) W Direct measurement method Laser radiation energy in the spectral range from 0,15 µm to 12 µm Range: (0,1 ·10-6-1) J Direct measurement method | PN-EN 60825-1:2014-11 PN-EN 60825-1:2014/A11:2021-12 PN-EN ISO 11554:2018-01 | ||
| 10 | Work station Indoor electrical lighting | Illuminance in the range 20 lx-5000 lx Direct measurement method Illuminance in the range 20 lx-5000 lx Direct measurement method | Procedura badawcza NBO-1 wyd. 2 z dnia 01.06.2022 r. Test procedure NBO-1 2nd edition dated 01/06/2022 | ||
| 11 | Work station Indoor electrical lighting | Uniformity of illumination on work station | |||
| 12 | Working environment Non-laser optical radiation | Effective irradiance of visible radiation in the spectral range from 305 nm to 700 nm Range: (7,41 ∙ 10-6-7,41 ∙ 103) W/m2 Direct measurement method Effective radiance of visible radiation in the spectral range from 305 nm to 700 nm (from calculations) | PN-EN 14255-2:2010 Metoda O Method O | ||
| 13 | Working environment Non-laser optical radiation | Effective radiance of visible radiation in the spectral range from 305 nm to 700 nm Range: (5,56 ∙ 10-5-5,56 ∙ 104) W/m2 ∙ sr Direct measurement method | PN-EN 14255-2:2010 Metoda D Method D Metoda X Method X Metoda R Method R | ||
| 14 | Working environment Non-laser optical radiation | Irradiance of ultraviolet, visible and infrared radiation in the spectral range from 200 nm to 40 000 nm Range: (0,2-2,22 103) W/m2 Direct measurement method Radiant exposure to ultraviolet, visible and infrared radiation in the spectral range from 200 nm to 40000 nm (calculated) Irradiance of ultraviolet, visible and infrared radiation in the spectral range from 200 nm to 40 000 nm Range: (0,2-2,22 103) W/m2 Direct measurement method Irradiation of ultraviolet, visible and infrared radiation in the spectral range from 200 nm to 40 000 nm (from calculations) | |||
| 15 | Working environment Non-laser optical radiation | Irradiance of near- and mid-infrared radiation in the spectral range from 770 nm to 3 000 nm. Range: (0,857-9,52 ∙ 103)W/m2. Direct measurement method Irradiance of near- and mid-infrared radiation in the spectral range from 770 nm to 3 000 nm. Range: (0,857-9,52 ∙ 103)W/m2. Direct measurement method | |||
| 16 | Working environment Non-laser optical radiation | Effective radiance of a source of visible and near-infrared radiation in the spectral range from 305 to 1400 nm Measurement and calculation method | PN-EN 14255-2:2010 Metoda D Method D PN-T 05687:2002 p. 2.5.5. Instrukcji nr 1/NF3 wydanie z dnia 11.10.2023 r. | ||
| 17 | Working environment Non-laser optical radiation | Effective irradiance of near-infrared radiation in the spectral range from 770 nm to 1400 nm Range: (3,57 ∙ 10-5-1,25 ∙ 102 ) W/m2 Direct measurement method | PN-T 05687:2002 | ||
| 18 | Working environment Non-laser optical radiation | Effective radiance in the spectral range from 770 nm to 1400 nm (from calculations) | |||
| 19 | Working environment Non-laser optical radiation | Effective irradiance of ultraviolet radiation in the spectral range from 235 nm to 307 nm. Range: (5 ∙ 10-5-25) W/m2 Direct measurement method Effective irradiation of ultraviolet radiation in the spectral range from 235 nm to 307 nm (from calculations) | PN-EN 14255-1:2010 Metoda A Method A | ||
| 20 | Working environment Non-laser optical radiation | Irradiance of ultraviolet radiation in the spectral range from 315 nm to 390 nm. Range: (2,67 ∙ 10-6-2,67 ∙ 103 )W/m2 Direct measurement method Radiant exposure to ultraviolet radiation in the spectral range from 315 nm to 390 nm (calculated) Irradiance of ultraviolet radiation in the spectral range from 315 nm to 390 nm. Range: (2,67 ∙ 10-6-2,67 ∙ 103 )W/m2 Direct measurement method Irradiation of ultraviolet radiation in the spectral range from 315 nm to 390 nm (from calculations) | PN-EN 14255-1:2010 Metoda M Method M | ||
| 21 | Working environment- - air samples collected on filters | Content of exhaust emissions from diesel engines measured as elemental carbon (EC) Range: (0.46-73.6) μg/cm2 Thermal-optical method with TOA- FID detection | Podstawy i Metody Oceny Środowiska Pracy 2023, nr 1(115) s.5-25 | ||
| 22 | Working environment Energy expenditure | Air temperature Range: (5-35) °C Air flow rate Range: (10-60) dm3/min Direct measurement method | NEF-02 wydanie 4. z dnia 19.01.2023 r. NEF-02 4th edition dated 19/01/2023 | ||
| 23 | Working environment Energy expenditure | Energy expenditure (from calculation) | |||
| 24 | Compressed air line breathing devices with demand valve Devices with a full face mask | Practical performance testing Practical performance | EN 14593-1:2018 EN 13274-2:2019 | ||
| 25 | Compressed air line breathing devices with demand valve Devices with a full face mask | Strength of connections | EN 14593-1:2018 | ||
| 26 | Compressed air line breathing devices with demand valve Devices with a full face mask | Flammability | EN 14593-1:2018 EN 13274-4:2020 | ||
| 27 | Compressed air line breathing devices with demand valve Devices with a full face mask | Inward leakage Inward leakage | EN 14593-1:2018 EN 13274-1:2001 | ||
| 28 | Compressed air line breathing devices with demand valve Devices with a full face mask | Breathing resistance | EN 14593-1:2018 EN 13274-3:2001 | ||
| 29 | Compressed air line breathing devices with demand valve Devices with a full face mask | Carbon dioxide content of the inhalation air Carbon dioxide content of the inhalation air | EN 14593-1:2018 EN 13274-6:2001 | ||
| 30 | Compressed air line breathing devices with demand valve Devices with a full face mask | Resistance to temperature | EN 14593-2:2005 | ||
| 31 | Compressed air line breathing apparatus with demand valve Apparatus with a half mask at positive pressure | Practical performance testing Practical performance | EN 14593-2:2005 EN 13274-2:2019 | ||
| 32 | Compressed air line breathing apparatus with demand valve Apparatus with a half mask at positive pressure | Strength of connections | EN 14593-2:2005 | ||
| 33 | Compressed air line breathing apparatus with demand valve Apparatus with a half mask at positive pressure | Flammability | EN 14593-2:2005 EN 13274-4:2020 | ||
| 34 | Compressed air line breathing apparatus with demand valve Apparatus with a half mask at positive pressure | Inward leakage Inward leakage | EN 14593-2:2005 EN 13274-1:2001 | ||
| 35 | Compressed air line breathing apparatus with demand valve Apparatus with a half mask at positive pressure | Breathing resistance | EN 14593-2:2005 EN 13274-3:2001 | ||
| 36 | Compressed air line breathing apparatus with demand valve Apparatus with a half mask at positive pressure | Carbon dioxide content of the inhalation air Carbon dioxide content of the inhalation air | EN 14593-2:2005 | ||
| 37 | Compressed air line breathing apparatus with demand valve Apparatus with a half mask at positive pressure | Resistance to temperature | EN 14593-2:2005 | ||
| 38 | Self-contained open-circuit compressed air breathing apparatus with half mask designed to be used with positive pressure only | Mass | EN 14435:2004 | ||
| 39 | Self-contained open-circuit compressed air breathing apparatus with half mask designed to be used with positive pressure only | Resistance to temperature | EN 14435:2004 EN 13274-5:2001 | ||
| 40 | Self-contained open-circuit compressed air breathing apparatus with half mask designed to be used with positive pressure only | Strength of connections | EN 14435:2004 | ||
| 41 | Self-contained open-circuit compressed air breathing apparatus with half mask designed to be used with positive pressure only | Practical performance testing Practical performance | EN 14435:2004 EN 13274-2:2019 | ||
| 42 | Self-contained open-circuit compressed air breathing apparatus with half mask designed to be used with positive pressure only | Flammability | EN 14435:2004 EN 13274-4:2020 | ||
| 43 | Self-contained open-circuit compressed air breathing apparatus with half mask designed to be used with positive pressure only | Breathing resistance | EN 14435:2004 EN 13274-3:2001 | ||
Reference standards (30)
EN 14435:2004
EN 14435:2004 EN 13274-2:2019
EN 14435:2004 EN 13274-3:2001
EN 14435:2004 EN 13274-4:2020
EN 14435:2004 EN 13274-5:2001
EN 14593-1:2018
EN 14593-1:2018 EN 13274-1:2001
EN 14593-1:2018 EN 13274-2:2019
EN 14593-1:2018 EN 13274-3:2001
EN 14593-1:2018 EN 13274-4:2020
EN 14593-1:2018 EN 13274-6:2001
EN 14593-2:2005
EN 14593-2:2005 EN 13274-1:2001
EN 14593-2:2005 EN 13274-2:2019
EN 14593-2:2005 EN 13274-3:2001
EN 14593-2:2005 EN 13274-4:2020
NEF-02 wydanie 4. z dnia 19.01.2023 r. NEF-02 4th edition dated 19/01/2023
PN-EN 14255-1:2010 Metoda A Method A
PN-EN 14255-1:2010 Metoda M Method M
PN-EN 14255-2:2010 Metoda D Method D Metoda X Method X Metoda R Method R
PN-EN 14255-2:2010 Metoda D Method D PN-T 05687:2002 p. 2.5.5. Instrukcji nr 1/NF3 wydanie z dnia 11.10.2023 r.
PN-EN 14255-2:2010 Metoda O Method O
PN-EN 60825-1:2014-11 PN-EN 60825-1:2014/A11:2021-12 PN-EN ISO 11554:2018-01
PN-N-01307:1994 PN-EN ISO 9612:2011 z wyłączeniem metody obejmującej Strategię 3 – punkt 11 with the exception of the method including Strategy 3-Clause 11
PN-T 05687:2002
PN-Z-01339:2020
Podstawy i Metody Oceny Środowiska Pracy 2023, nr 1(115) s.5-25
Procedura badawcza NBO-1 wyd. 2 z dnia 01.06.2022 r. Test procedure NBO-1 2nd edition dated 01/06/2022
enia Ministra Klimatu z 17.02.2020 (Dz.U. 2022 poz. 2630) Annex to the Regulation of the Minister of Climate of February 17
enia Ministra Klimatu z 17.02.2020 (Dz.U. 2022 poz.2630) Annex to the Regulation of the Minister of Climate of February 17