🇵🇱 ProBa Sp. z o.o. PL
EnvironmentMaterials & polymers
ProBa Sp. z o.o. is a laboratory accredited by PCA under number AB 1764 (Łódź, Poland). Its accreditation scope covers 160 test methods in the following areas: Environment, Materials & polymers. Test objects include: Powered filtering devices incorporating full face masks, half masks…, Self-contained closed-circuit breathing apparatus with compressed o…, Filtering devices with hood for self-rescue from fire, Masks. Most frequently used techniques: Flame method at (800 ± 50) °C, Flame method at (800 ± 50)°C, Flame method at a temperature of (800 ± 50) °C; Flame method at a t….
At a glance
- Accreditation number: PCA AB 1764
- Methods in scope: 160
- Types of test objects: 13
- Techniques used: 3
- City: Łódź, Poland
- Accreditation number
- AB 1764
- Accreditation body
- PCA
- Address
- LABORATORIUM SPRZĘTU OCHRONY UKŁADU ODDECHOWEGO, Al. 1 Maja 31/33 lok. 1, 90-739 Łódź
- City
- Łódź, Poland
What this laboratory tests (13)
- Powered filtering devices incorporating full face masks, half masks or quarter masks — 28 methods
- Self-contained closed-circuit breathing apparatus with compressed oxygen or a mixture of compressed oxygen and nitrogen — 25 methods
- Filtering devices with hood for self-rescue from fire — 19 methods
- Masks — 17 methods
- Combined filters — 16 methods
- Self-contained open-circuit compressed air breathing apparatus with half mask, designed to be used with positive pressure only — 14 methods
- Half masks and quarter masks — 10 methods
- Constant flow compressed air line breathing apparatus — 7 methods
- Self-contained compressed air escape breathing apparatus with demand valve fitted with a full face mask or mouthpiece assembly — 7 methods
- Compressed air line breathing apparatus with demand valve - Apparatus fitted with a full face mask — 6 methods
- Filters, filter materials — 6 methods
- Gas filters — 4 methods
- Lab — 1 method
Analytical techniques used (3)
- Flame method at (800 ± 50) °C — 13 methods
- Flame method at (800 ± 50)°C — 2 methods
- Flame method at a temperature of (800 ± 50) °C; Flame method at a temperature of (950 ± 50) °C — 1 method
Accreditation scope — test methods (160)
| No. | Test object | Methodology / Parameters | Technique | Reference document | |
|---|---|---|---|---|---|
| Test methods | |||||
| 1 | Lab | oratorium Sprzętu Ochrony Układu Oddech, Al. 1 Maja 31/33 lok. 1; 90-739 Łódź | owego | ||
| 2 | Filters, filter materials | Mass Range (0,005 - 60) kg |
PN-EN 143:2021-07 p. 7.3 | ||
| 3 | Filters, filter materials | Mechanical strength | PN-EN 143:2021-07 p. 7.4.2 | ||
| 4 | Filters, filter materials | Thermal resistance Range (-30 - +70) oC |
PN-EN 143:2021-07 p. 7.4.1 | PN-EN 13274-5:2004 | ||
| 5 | Filters, filter materials | Breathing resistance Range (-1050 - +1050) Pa |
PN-EN 143:2021-07 p. 7.5 | PN-EN 13274-3:2005 | ||
| 6 | Filters, filter materials | Sodium chloride penetration Range (0,0001 - 100)% |
PN-EN 143:2021-07 | PN-EN 13274-7:2019-07 | ||
| 7 | Filters, filter materials | Paraffin oil mist penetration Range (0,0001-100)% |
PN-EN 143:2021-07 | PN-EN 13274-7:2019-07 | ||
| 8 | Gas filters | Mass Range (0,005 - 60) kg |
PN-EN 14387:2021-07 p. 6.3 | ||
| 9 | Gas filters | Mechanical strength | PN-EN 14387:2021-07 p. 6.4.2 | ||
| 10 | Gas filters | Thermal resistance Range (-30 - +70) oC |
PN-EN 14387:2021-07 p. 6.4.1 | PN-EN 13274-5:2004 | ||
| 11 | Gas filters | Breathing resistance Range (-1050 - +1050) Pa |
PN-EN 14387:2021-07 p. 6.5 | PN-EN 13274-3:2005 | ||
| 12 | Combined filters | Mass Range (0,005 - 60) kg |
PN-EN 14387:2021-07 p. 6.3 | ||
| 13 | Combined filters | Mechanical strength | PN-EN 14387:2021-07 p. 6.4.2 | ||
| 14 | Combined filters | Thermal resistance Range (-30 - +70) oC |
PN-EN 14387:2021-07 p. 6.4.1 | PN-EN 13274-5:2004 | ||
| 15 | Combined filters | Breathing resistance Range (-1050 - +1050) Pa |
PN-EN 14387:2021-07 p. 6.5 | PN-EN 13274-3:2005 | ||
| 16 | Combined filters | Sodium chloride penetration Range (0,0001 - 100)% |
PN-EN 14387:2021-07 | PN-EN 13274-7:2019-07 | ||
| 17 | Combined filters | Paraffin oil mist penetration Range (0,0001-100)% |
PN-EN 14387:2021-07 | PN-EN 13274-7:2019-07 | ||
| 18 | Combined filters | Thermal resistance Range (-30 - +70) oC |
PN-EN 149+A1:2010 p. 8.3.2 | PN-EN 13274-5:2004 | ||
| 19 | Combined filters | Mechanical strength | PN-EN 149+A1:2010 p. 8.3.3 | PN-EN 143:2021-07 p. 7.4.2 | ||
| 20 | Combined filters | Valve operation | PN-EN 149+A1:2010 p. 8.3.4 | ||
| 21 | Combined filters | Performance tests | PN-EN 149+A1:2010 p. 8.4 | PN-EN 13274-2:2019-12 | ||
| 22 | Combined filters | Total inward leakage | PN-EN 149+A1:2010 p. 8.5 | PN-EN 13274-1:2004 | ||
| 23 | Combined filters | Flammability | Flame method at (800 ± 50) °C | PN-EN 149+A1:2010 p. 8.6 | PN-EN 13274-4:2021-03 | |
| 24 | Combined filters | Strength of the exhalation valve attachment | PN-EN 149+A1:2010 p. 8.8 | ||
| 25 | Combined filters | Breathing resistance Range (-1050 - +1050) Pa |
PN-EN 149+A1:2010 p. 8.9 | PN-EN 13274-3:2005 | ||
| 26 | Combined filters | Sodium chloride penetration Range (0,0001 - 100)% |
PN-EN 149+A1:2010 p. 8.11 | PN-EN 13274-7:2019-07 | ||
| 27 | Combined filters | Determination of the carbon dioxide content in the inhaled air Range (0 - 6)% obj. CO2 |
PN-EN 149+A1:2010 p. 8.7 | PN-EN 13274-6:2005 | ||
| 28 | Half masks and quarter masks | Thermal resistance Range (-30 - +70) oC |
PN-EN 140:2001 p. 7.2, 7.4 | PN-EN 13274-5:2004 | ||
| 29 | Half masks and quarter masks | Flammability | Flame method at (800 ± 50) °C | PN-EN 140:2001 p. 7.5 | PN-EN 13274-4:2021-03 | |
| 30 | Half masks and quarter masks | Strength of the headharness straps | PN-EN 140:2001 p. 7.7 | ||
| 31 | Half masks and quarter masks | Strength of the connection between the facepiece body and the connector | PN-EN 140:2001 p. 7.8 | ||
| 32 | Half masks and quarter masks | Exhalation valve (flow test) | PN-EN 140:2001 p. 7.9 | ||
| 33 | Half masks and quarter masks | Strength of the exhalation valve attachment | PN-EN 140:2001 p. 7.10 | ||
| 34 | Half masks and quarter masks | Breathing resistance Range (-1050 - +1050) Pa |
PN-EN 140:2001 p. 7.12 | PN-EN 13274-3:2005 | ||
| 35 | Half masks and quarter masks | Inward leakage using sodium chloride | PN-EN 140:2001 p. 7.13.3 | PN-EN 13274-1:2004 | ||
| 36 | Half masks and quarter masks | Performance tests | PN-EN 140:2001 p. 7.14 | PN-EN 13274-2:2019-12 | ||
| 37 | Half masks and quarter masks | Determination of the carbon dioxide content in the inhaled air Range (0 - 6)% obj. CO2 |
PN-EN 140:2001 p. 7.11 | PN-EN 13274-6:2005 | ||
| 38 | Masks | Thermal resistance Range (-30 - +70) oC |
PN-EN 136:2001 p. 8.2, p. 8.4 | PN-EN 13274-5:2004 | ||
| 39 | Masks | Flammability | Flame method at a temperature of (800 ± 50) °C; Flame method at a temperature of (950 ± 50) °C | PN-EN 136:2001 p. 8.5 | PN-EN 13274-4:2021-03 | |
| 40 | Masks | Strength of the headharness straps | PN-EN 136:2001 p. 8.8 | ||
| 41 | Masks | Strength of the connection between the facepiece body and the connector | PN-EN 136:2001 p. 8.9 | ||
| 42 | Masks | Leak tightness | PN-EN 136:2001 p. 8.13 | ||
| 43 | Masks | Strength of the attachment of the exhalation valve housing | PN-EN 136:2001 p. 7.15.4 | ||
| 44 | Masks | Breathing resistance Range (-1050 - +1050) Pa |
PN-EN 136:2001 p. 8.15 | PN-EN 13274-3:2005 | ||
| 45 | Masks | Inward leakage using sodium chloride | PN-EN 136:2001 p. 8.16, 8.16.3 | PN-EN 13274-1:2004 | ||
| 46 | Masks | Performance tests | PN-EN 136:2001 p. 8.18 | PN-EN 13274-2:2019-12 | ||
| 47 | Masks | Determination of the carbon dioxide content in the inhaled air Range (0-6)% obj. CO2 |
PN-EN 136:2001 p. 8.14 | PN-EN 13274-6:2005 | ||
| 48 | Masks | Exhalation valve (flow test) | PN-EN 136:2001 p. 7.15.3.5 | ||
| 49 | Masks | Mechanical strength of the viewer | PN-EN 136:2001 p. 8.11 | ||
| 50 | Masks | Mass Range (0,005 - 60) kg |
PN-EN 137:2008 p. 6.6 | ||
| 51 | Masks | Thermal resistance Range (-30 - +70) oC |
PN-EN 137:2008 p. 7.4.1.1, p. 7.4.1.2 | PN-EN 13274-3:2005 | ||
| 52 | Masks | Flammability | Flame method at (800 ± 50) °C | PN-EN 137:2008 p.7.4.1.4 | PN-EN 13274-4:2021-03 | |
| 53 | Masks | Strength of the connections of the full face mask, lung governed demand valve and breathing hose | PN-EN 137:2008 p. 7.9 | ||
| 54 | Masks | Performance tests | PN-EN 137:2008 p. 7.11 | PN-EN 13274-2:2019-12 | ||
| 55 | Self-contained closed-circuit breathing apparatus with compressed oxygen or a mixture of compressed oxygen and nitrogen | Mass Range (0,005 - 60) kg |
PN-EN 145:2000 p. 6.4 | ||
| 56 | Self-contained closed-circuit breathing apparatus with compressed oxygen or a mixture of compressed oxygen and nitrogen | Operational testing | PN-EN 145:2000 p. 7.3 | ||
| 57 | Self-contained closed-circuit breathing apparatus with compressed oxygen or a mixture of compressed oxygen and nitrogen | Thermal resistance Range (-30 - +70) oC |
PN-EN 145:2000 p.7.4.1, p. 7.14 | PN-EN 13274-2:2019-12 | ||
| 58 | Self-contained closed-circuit breathing apparatus with compressed oxygen or a mixture of compressed oxygen and nitrogen | Operation of the warning device | PN-EN 145:2000 p. 7.5 | ||
| 59 | Self-contained closed-circuit breathing apparatus with compressed oxygen or a mixture of compressed oxygen and nitrogen | Flexible hoses - linear deformation | PN-EN 145:2000 p. 7.6 | ||
| 60 | Self-contained closed-circuit breathing apparatus with compressed oxygen or a mixture of compressed oxygen and nitrogen | Gas supply | PN-EN 145:2000 p. 7.7 | ||
| 61 | Self-contained closed-circuit breathing apparatus with compressed oxygen or a mixture of compressed oxygen and nitrogen | Physiological parameters CO2 Range (0 - 10)% obj. O2 Range (0 - 100)% obj. Temperature Range (0 - 100) oC Breathing resistance Range (-2000 - + 2000) Pa |
PN-EN 145:2000 p. 7.8 | ||
| 62 | Self-contained closed-circuit breathing apparatus with compressed oxygen or a mixture of compressed oxygen and nitrogen | Surface resistance of exposed parts | PN-EN 145:2000 p. 7.9 | ||
| 63 | Self-contained closed-circuit breathing apparatus with compressed oxygen or a mixture of compressed oxygen and nitrogen | Strength of the breathing hose connectors | PN-EN 145:2000 p. 7.10 | ||
| 64 | Self-contained closed-circuit breathing apparatus with compressed oxygen or a mixture of compressed oxygen and nitrogen | Flammability | Flame method at (800 ± 50) °C | PN-EN 145:2000 p. 7.11, p.7.15 | PN-EN 136:2001 | PN-EN 13274-4:2021-03 | |
| 65 | Self-contained closed-circuit breathing apparatus with compressed oxygen or a mixture of compressed oxygen and nitrogen | Valve opening pressure | PN-EN 145:2000 p. 7.12 | ||
| 66 | Self-contained closed-circuit breathing apparatus with compressed oxygen or a mixture of compressed oxygen and nitrogen | Breathing bag volume | PN-EN 145:2000 p. 7.13 | ||
| 67 | Self-contained closed-circuit breathing apparatus with compressed oxygen or a mixture of compressed oxygen and nitrogen | Pressure regulator | PN-EN 145:2000 p. 7.16 | ||
| 68 | Self-contained closed-circuit breathing apparatus with compressed oxygen or a mixture of compressed oxygen and nitrogen | Relief valve tightness | PN-EN 145:2000 p. 7.17 | ||
| 69 | Self-contained closed-circuit breathing apparatus with compressed oxygen or a mixture of compressed oxygen and nitrogen | Mass Range (0,005 - 60) kg |
PN-EN 13794:2005 p. 6.5 | ||
| 70 | Self-contained closed-circuit breathing apparatus with compressed oxygen or a mixture of compressed oxygen and nitrogen | Insulation resistance of non-metallic handling containers | PN-EN 13794:2005 p. 7.4 | ||
| 71 | Self-contained closed-circuit breathing apparatus with compressed oxygen or a mixture of compressed oxygen and nitrogen | Leak tightness | PN-EN 13794:2005 p. 7.5 | ||
| 72 | Self-contained closed-circuit breathing apparatus with compressed oxygen or a mixture of compressed oxygen and nitrogen | Mechanical strength | PN-EN 13794:2005 p. 7.6 | ||
| 73 | Self-contained closed-circuit breathing apparatus with compressed oxygen or a mixture of compressed oxygen and nitrogen | Relief valve opening pressure | PN-EN 13794:2005 p. 7.7 | ||
| 74 | Self-contained closed-circuit breathing apparatus with compressed oxygen or a mixture of compressed oxygen and nitrogen | Breathing bag volume | PN-EN 13794:2005 p. 7.8 | ||
| 75 | Self-contained closed-circuit breathing apparatus with compressed oxygen or a mixture of compressed oxygen and nitrogen | Thermal resistance Range (-30 - +70) oC |
PN-EN 13794:2005 p. 7.9.1, p. 7.9.2 | ||
| 76 | Self-contained closed-circuit breathing apparatus with compressed oxygen or a mixture of compressed oxygen and nitrogen | CO2 operating efficiency Range (0 - 10)% obj. O2 Range (0 - 100)% obj. Temperature Range (0 - 100) oC Breathing resistance Range (-2000 - + 2000) Pa |
PN-EN 13794:2005 p. 7.10 | ||
| 77 | Self-contained closed-circuit breathing apparatus with compressed oxygen or a mixture of compressed oxygen and nitrogen | Flammability | Flame method at (800 ± 50) °C | PN-EN 13794:2005 p. 6.18 | PN-EN 13274-4:2021-03 | |
| 78 | Self-contained closed-circuit breathing apparatus with compressed oxygen or a mixture of compressed oxygen and nitrogen | Breathing resistance Range (-2000 - +2000) Pa |
PN-EN 13794:2005 p. 7.12 | PN-EN 13274-3:2005 | ||
| 79 | Self-contained closed-circuit breathing apparatus with compressed oxygen or a mixture of compressed oxygen and nitrogen | Tensile force | PN-EN 13794:2005 p. 7.13 | ||
| 80 | Compressed air line breathing apparatus with demand valve - Apparatus fitted with a full face mask | Performance tests | PN-EN 14593-1:2018-06 p. 5.3.4. | PN-EN 13274-2:2019-12 | ||
| 81 | Compressed air line breathing apparatus with demand valve - Apparatus fitted with a full face mask | Strength of the connections of the facepiece, lung governed demand valve, medium-pressure hoses and breathing hose | PN-EN 14593-1:2018-06 p. 5.4 | ||
| 82 | Compressed air line breathing apparatus with demand valve - Apparatus fitted with a full face mask | Thermal resistance Range (-30 - +70) oC | PN-EN 14593-1:2018-06 p. 5.7 | ||
| 83 | Compressed air line breathing apparatus with demand valve - Apparatus fitted with a full face mask | Flammability | Flame method at (800 ± 50) °C | PN-EN 14593-1:2018-06 p. 5.8 | PN-EN 13274-4:2021-03 | |
| 84 | Compressed air line breathing apparatus with demand valve - Apparatus fitted with a full face mask | Determination of the carbon dioxide content in the inhaled air Range (0 - 6)% obj. CO2 |
PN-EN 14593-1:2018-06 p. 5.14 | PN-EN 13274-6:2005 | ||
| 85 | Compressed air line breathing apparatus with demand valve - Apparatus fitted with a full face mask | Total inward leakage using sodium chloride | PN-EN 14593-1:2018-06 p. 4.19 | PN-EN 13274-1:2004 | ||
| 86 | Constant flow compressed air line breathing apparatus | Performance tests | PN-EN 14594:2018-06 p. 6.3.4 | PN-EN 13274-2:2019-12 | ||
| 87 | Constant flow compressed air line breathing apparatus | Strength of the connections of the breathing hose and of the exhalation valve attachment | PN-EN 14594:2018-06 p. 6.4, p. 6.19 | ||
| 88 | Constant flow compressed air line breathing apparatus | Thermal resistance Range (-30 - +70) oC |
PN-EN 14594:2018-06 p. 6.7.1 | ||
| 89 | Constant flow compressed air line breathing apparatus | Flammability | Flame method at (800 ± 50) °C | PN-EN 14594:2018-06 p. 6.8 | PN-EN 13274-4:2021-03 | |
| 90 | Constant flow compressed air line breathing apparatus | Breathing resistance Range (-1050 - +1050) Pa |
PN-EN 14594:2018-06 p. 6.17 | PN-EN 13274-3:2005 | ||
| 91 | Constant flow compressed air line breathing apparatus | Determination of the carbon dioxide content in the inhaled air Range (0 - 6) % obj. CO2 |
PN-EN 14594:2018-06 p. 6.13 | PN-EN 13274-6:2005 | ||
| 92 | Constant flow compressed air line breathing apparatus | Internal leakage using sodium chloride aerosol | PN-EN 14594:2018-06 p. 6.14 | PN-EN 13274-1:2004 | ||
| 93 | Self-contained open-circuit compressed air breathing apparatus with half mask, designed to be used with positive pressure only | Mass Range Mass Range (0,005 - 60) kg |
PN-EN 14435:2007 p. 5.6 | ||
| 94 | Self-contained open-circuit compressed air breathing apparatus with half mask, designed to be used with positive pressure only | Performance tests | PN-EN 14435:2007 p. 6.11 | PN-EN 13274-2:2019-12 | ||
| 95 | Self-contained open-circuit compressed air breathing apparatus with half mask, designed to be used with positive pressure only | Thermal resistance Range (-30 - +70) oC |
PN-EN 14435:2007 p.6.4.1.1, p. 6.4.1.2, p. 6.4.1.3 | PN-EN 13274-5:2004 | ||
| 96 | Self-contained open-circuit compressed air breathing apparatus with half mask, designed to be used with positive pressure only | Flammability | Flame method at (800 ± 50) °C | PN-EN 14435:2007 p. 6.4.1.4 | PN-EN 13274-4:2021-03 | |
| 97 | Self-contained open-circuit compressed air breathing apparatus with half mask, designed to be used with positive pressure only | Strength of the connections of the half mask, lung governed demand valve and breathing hose | PN-EN 14435-1:2007 p. 6.9 | ||
| 98 | Self-contained open-circuit compressed air breathing apparatus with half mask, designed to be used with positive pressure only | Breathing resistance | PN-EN 14435:2007 p. 6.12 | PN-EN 13274-3:2005 | ||
| 99 | Self-contained open-circuit compressed air breathing apparatus with half mask, designed to be used with positive pressure only | Mass Range Mass Range (0,005 - 60) kg |
PN-EN 1146:2007 p. 6.6 | ||
| 100 | Self-contained open-circuit compressed air breathing apparatus with half mask, designed to be used with positive pressure only | Mechanical strength | PN-EN 1146:2007 p. 7.4.1 | ||
| 101 | Self-contained open-circuit compressed air breathing apparatus with half mask, designed to be used with positive pressure only | Tensile force | PN-EN 1146:2007 p. 7.4.2 | ||
| 102 | Self-contained open-circuit compressed air breathing apparatus with half mask, designed to be used with positive pressure only | Internal leakage | PN-EN 1146:2007 p. 7.14 | PN-EN 13274-1:2004 | ||
| 103 | Self-contained open-circuit compressed air breathing apparatus with half mask, designed to be used with positive pressure only | Thermal resistance Range (-30 - +70) oC |
PN-EN 1146:2007 p. 7.5 | ||
| 104 | Self-contained open-circuit compressed air breathing apparatus with half mask, designed to be used with positive pressure only | Flammability | Flame method at (800 ± 50) °C | PN-EN 1146:2007 p. 7.10 | PN-EN 13274-4:2021-03 | |
| 105 | Self-contained open-circuit compressed air breathing apparatus with half mask, designed to be used with positive pressure only | Nominal operating time | PN-EN 1146:2007 p. 7.7 | ||
| 106 | Self-contained open-circuit compressed air breathing apparatus with half mask, designed to be used with positive pressure only | Insulation resistance of non-metallic handling containers | PN-EN 1146:2007 p. 7.8 | ||
| 107 | Self-contained compressed air escape breathing apparatus with demand valve fitted with a full face mask or mouthpiece assembly | Mass Range (0,005 - 60) kg |
PN-EN 402:2005 p. 6.6 | ||
| 108 | Self-contained compressed air escape breathing apparatus with demand valve fitted with a full face mask or mouthpiece assembly | Mechanical strength | PN-EN 402:2005 p. 7.4.1 | ||
| 109 | Self-contained compressed air escape breathing apparatus with demand valve fitted with a full face mask or mouthpiece assembly | Tensile force | PN-EN 402:2005 p. 7.4.2 | ||
| 110 | Self-contained compressed air escape breathing apparatus with demand valve fitted with a full face mask or mouthpiece assembly | Thermal resistance Range (-30 - +70) oC |
PN-EN 402:2005 p. 7.5.1, p. 7.5.2, p.7.5.3 | PN-EN 13274-3:2005 | ||
| 111 | Self-contained compressed air escape breathing apparatus with demand valve fitted with a full face mask or mouthpiece assembly | Flammability | Flame method at (800 ± 50) °C | PN-EN 402:2005 p. 7.5.9 | PN-EN 13274-4:2021-03 | |
| 112 | Self-contained compressed air escape breathing apparatus with demand valve fitted with a full face mask or mouthpiece assembly | Breathing resistance Range (-2000 - +2000) Pa |
PN-EN 402:2005 p. 7.9 | PN-EN 13274-3:2005 | ||
| 113 | Self-contained compressed air escape breathing apparatus with demand valve fitted with a full face mask or mouthpiece assembly | Insulation resistance of non-metallic handling containers | PN-EN 402:2005 p. 7.5.7 | ||
| 114 | Filtering devices with hood for self-rescue from fire | Mass Range (0,005 - 60) kg |
PN-EN 403:2007 p. 6.5 | ||
| 115 | Filtering devices with hood for self-rescue from fire | Mechanical strength | PN-EN 403:2007 p. 7.4.2 | ||
| 116 | Filtering devices with hood for self-rescue from fire | Impact strength | PN-EN 403:2007 p. 7.4.3 | ||
| 117 | Filtering devices with hood for self-rescue from fire | Resistance to temperature Range (-30 - +70) oC |
PN-EN 403:2007 p. 7.4.5 | PN-EN 13274-5:2004 | ||
| 118 | Filtering devices with hood for self-rescue from fire | Performance tests | PN-EN 403:2007 p. 7.5 | ||
| 119 | Filtering devices with hood for self-rescue from fire | Leakage in the visor lens area | PN-EN 403:2007 p. 7.6.2 | PN-EN 12941:2002 | ||
| 120 | Filtering devices with hood for self-rescue from fire | Penetration through the filtering element Range (0,0001 - 100)% |
PN-EN 403:2007 p. 7.8 | PN-EN 143:2021-07 | PN-EN 13274-7:2019-07 | ||
| 121 | Filtering devices with hood for self-rescue from fire | Breathing resistance Range (-1050 - +1050) Pa |
PN-EN 403:2007 p. 7.9 | ||
| 122 | Filtering devices with hood for self-rescue from fire | Flammability | Flame method at (800 ± 50) °C | PN-EN 403:2007 p. 7.10 | PN-EN 13274-4:2021-03 | |
| 123 | Filtering devices with hood for self-rescue from fire | Strength of the joints | PN-EN 403:2007 p. 7.12 | ||
| 124 | Filtering devices with hood for self-rescue from fire | Mass Range (0,005 - 60) kg |
PN-EN 12941:2024-06 p. 5.20 | ||
| 125 | Filtering devices with hood for self-rescue from fire | Thermal resistance Range (-30 - +70)oC |
PN-EN 12941:2024-06 p. 6.2.2 | ||
| 126 | Filtering devices with hood for self-rescue from fire | Inward leakage and total inward leakage using sodium chloride aerosol | PN-EN 12941:2024-06 p. 6.4 | PN-EN 13274-1:2004 | ||
| 127 | Filtering devices with hood for self-rescue from fire | Strength of the hose and connectors and of the connections between the hood and the breathing hose | PN-EN 12941:2024-06 p. 6.9 | ||
| 128 | Filtering devices with hood for self-rescue from fire | Mechanical strength | PN-EN 12941:2024-06 p. 6.2.1, 6.10 | ||
| 129 | Filtering devices with hood for self-rescue from fire | Sodium chloride penetration Range (0,0001 - 100)% |
PN-EN 12941:2024-06 p. 6.11.1, 6.11.2 | PN-EN 13274-7:2019-07 | ||
| 130 | Filtering devices with hood for self-rescue from fire | Flammability | Flame method at (800 ± 50)°C | PN-EN 12941:2024-06 p. 5.18 | PN-EN 13274-4:2021-03 | |
| 131 | Filtering devices with hood for self-rescue from fire | Operational testing (excluding tests at low temperature) | PN-EN 12941:2024-06 p. 5.21 | PN-EN 12374-2:2019-12 | ||
| 132 | Filtering devices with hood for self-rescue from fire | Determination of the carbon dioxide content in the inhaled air Range (0 - 6 )% obj. CO2 |
PN-EN 12941:2024-06 p. 5.17 | PN-EN 13274-6:2005 | ||
| 133 | Powered filtering devices incorporating full face masks, half masks or quarter masks | Mass Range (0,005 – 60) kg |
PN-EN 12942:2024-06 p. 5.19, 6.13 | ||
| 134 | Powered filtering devices incorporating full face masks, half masks or quarter masks | Thermal resistance Range (-30 - +70) oC |
PN-EN 12942:2024-06 p. 6.2.2 | PN-EN 13274-5:2004 | ||
| 135 | Powered filtering devices incorporating full face masks, half masks or quarter masks | Inward leakage and total inward leakage using sodium chloride aerosol | PN-EN 12942:2024-06 p. 5.9, p. 6.4 | PN-EN 13274-1:2004 | ||
| 136 | Powered filtering devices incorporating full face masks, half masks or quarter masks | Performance tests | PN-EN 12942:2024-06 p. 5.20 | PN-EN 12374-2:2019-12 | ||
| 137 | Powered filtering devices incorporating full face masks, half masks or quarter masks | Breathing resistance Range (-1050 - +1050) Pa |
PN-EN 12942:2024-06 p. 6.5 | PN-EN 13274-3:2005 | ||
| 138 | Powered filtering devices incorporating full face masks, half masks or quarter masks | Strength of the connections of the hose and connectors | PN-EN 12942:2024-06 p. 5.14.2, 6.9 | ||
| 139 | Powered filtering devices incorporating full face masks, half masks or quarter masks | Mechanical strength | PN-EN 12942:2024-06 p. 6.2.1, 6.11 | ||
| 140 | Powered filtering devices incorporating full face masks, half masks or quarter masks | Flammability | Flame method at (800 ± 50) °C | PN-EN 12942:2024-06 p. 5.18 | PN-EN 13274-4:2021-03 | |
| 141 | Powered filtering devices incorporating full face masks, half masks or quarter masks | Sodium chloride penetration Range (0,0001 - 100)% |
PN-EN 12942:2024-06 p. 6.12.2 | PN-EN 13274-7:2019-07 | ||
| 142 | Powered filtering devices incorporating full face masks, half masks or quarter masks | Determination of the carbon dioxide content in the inhaled air Range (0 - 6)% obj. CO2 |
PN-EN 12942:2024-06 p. 6.2 | PN-EN 13274-6:2005 | ||
| 143 | Powered filtering devices incorporating full face masks, half masks or quarter masks | Paraffin oil mist penetration Range (0,0001-100)% |
PN-EN 12942:2024-06 p. 6.12.2 | PN-EN 13274-7:2019-07 | ||
| 144 | Powered filtering devices incorporating full face masks, half masks or quarter masks | Mass Range (0,005 - 60) kg |
PN-EN 12083:2000 p. 7.1 | ||
| 145 | Powered filtering devices incorporating full face masks, half masks or quarter masks | Mechanical strength | PN-EN 12083:2000 p. 7.3 | ||
| 146 | Powered filtering devices incorporating full face masks, half masks or quarter masks | Breathing resistance Range (-1050 - +1050) Pa |
PN-EN 12083:2000 p. 8.3 | ||
| 147 | Powered filtering devices incorporating full face masks, half masks or quarter masks | Sodium chloride penetration Range (0,0001 - 100)% |
PN-EN 12083:2000 p. 8.4 | ||
| 148 | Powered filtering devices incorporating full face masks, half masks or quarter masks | Strength of the breathing hose and connectors | PN-EN 12083:2000 p. 8.5 | ||
| 149 | Powered filtering devices incorporating full face masks, half masks or quarter masks | Flammability | Flame method at (800 ± 50)°C | PN-EN 12083:2000 p. 8.6 | |
| 150 | Powered filtering devices incorporating full face masks, half masks or quarter masks | Performance tests | PN-EN 12083:2000 p. 8.8 | ||
| 151 | Powered filtering devices incorporating full face masks, half masks or quarter masks | Thermal resistance Range (-30 - +70) oC |
PN-EN 12083:2000 | ||
| 152 | Powered filtering devices incorporating full face masks, half masks or quarter masks | Mechanical strength | ISO 23269-1:2008 p. 5.5 | ||
| 153 | Powered filtering devices incorporating full face masks, half masks or quarter masks | Thermal resistance Range (-30 - + 70) °C |
ISO 23269-1:2008 p. 5.2, 5.3 | ||
| 154 | Powered filtering devices incorporating full face masks, half masks or quarter masks | CO2 operating efficiency Range (0 - 10)% obj. O2 Range (0 - 100)% obj. Temperature Range (0 - 100)oC Breathing resistance Range (-2000 - +2000) Pa |
ISO 23269-1:2008 p. 6 (6.1, 6.2, 6.3, 6.4, 6.5) | ||
| 155 | Powered filtering devices incorporating full face masks, half masks or quarter masks | Oxygen supply | ISO 23269-1:2008 p. 6.6 | ||
| 156 | Powered filtering devices incorporating full face masks, half masks or quarter masks | Leak tightness | ISO 23269-1:2008 p. 6.7 | ||
| 157 | Powered filtering devices incorporating full face masks, half masks or quarter masks | Total inward leakage | ISO 23269-1:2008 p. 6.8 | PN-EN 1146:2007 p. 7.14 | PN-EN 13274-1:2004 | ||
| 158 | Powered filtering devices incorporating full face masks, half masks or quarter masks | Flammability | Flame method at (800 ± 50) °C | ISO 23269-1:2008 p. 6.10 | |
| 159 | Powered filtering devices incorporating full face masks, half masks or quarter masks | Relief valve opening pressure | ISO 23269-1:2008 p. 6.11 | ||
| 160 | Powered filtering devices incorporating full face masks, half masks or quarter masks | Breathing bag volume | ISO 23269-1:2008 p. 6.12 | ||
Reference standards (163)
ISO 23269-1:2008 p. 5.2, 5.3
ISO 23269-1:2008 p. 5.5
ISO 23269-1:2008 p. 6 (6.1, 6.2, 6.3, 6.4, 6.5)
ISO 23269-1:2008 p. 6.10
ISO 23269-1:2008 p. 6.11
ISO 23269-1:2008 p. 6.12
ISO 23269-1:2008 p. 6.6
ISO 23269-1:2008 p. 6.7
ISO 23269-1:2008 p. 6.8
PN-EN 1146:2007 p. 6.6
PN-EN 1146:2007 p. 7.10
PN-EN 1146:2007 p. 7.14
PN-EN 1146:2007 p. 7.4.1
PN-EN 1146:2007 p. 7.4.2
PN-EN 1146:2007 p. 7.5
PN-EN 1146:2007 p. 7.7
PN-EN 1146:2007 p. 7.8
PN-EN 12083:2000
PN-EN 12083:2000 p. 7.1
PN-EN 12083:2000 p. 7.3
PN-EN 12083:2000 p. 8.3
PN-EN 12083:2000 p. 8.4
PN-EN 12083:2000 p. 8.5
PN-EN 12083:2000 p. 8.6
PN-EN 12083:2000 p. 8.8
PN-EN 12374-2:2019-12
PN-EN 12941:2002
PN-EN 12941:2024-06 p. 5.17
PN-EN 12941:2024-06 p. 5.18
PN-EN 12941:2024-06 p. 5.20
PN-EN 12941:2024-06 p. 5.21
PN-EN 12941:2024-06 p. 6.11.1, 6.11.2
PN-EN 12941:2024-06 p. 6.2.1, 6.10
PN-EN 12941:2024-06 p. 6.2.2
PN-EN 12941:2024-06 p. 6.4
PN-EN 12941:2024-06 p. 6.9
PN-EN 12942:2024-06 p. 5.14.2, 6.9
PN-EN 12942:2024-06 p. 5.18
PN-EN 12942:2024-06 p. 5.19, 6.13
PN-EN 12942:2024-06 p. 5.20
PN-EN 12942:2024-06 p. 5.9, p. 6.4
PN-EN 12942:2024-06 p. 6.12.2
PN-EN 12942:2024-06 p. 6.2
PN-EN 12942:2024-06 p. 6.2.1, 6.11
PN-EN 12942:2024-06 p. 6.2.2
PN-EN 12942:2024-06 p. 6.5
PN-EN 13274-1:2004
PN-EN 13274-2:2019-12
PN-EN 13274-3:2005
PN-EN 13274-4:2021-03
PN-EN 13274-5:2004
PN-EN 13274-6:2005
PN-EN 13274-7:2019-07
PN-EN 136:2001
PN-EN 136:2001 p. 7.15.3.5
PN-EN 136:2001 p. 7.15.4
PN-EN 136:2001 p. 8.11
PN-EN 136:2001 p. 8.13
PN-EN 136:2001 p. 8.14
PN-EN 136:2001 p. 8.15
PN-EN 136:2001 p. 8.16, 8.16.3
PN-EN 136:2001 p. 8.18
PN-EN 136:2001 p. 8.2, p. 8.4
PN-EN 136:2001 p. 8.5
PN-EN 136:2001 p. 8.8
PN-EN 136:2001 p. 8.9
PN-EN 13794:2005 p. 6.18
PN-EN 13794:2005 p. 6.5
PN-EN 13794:2005 p. 7.10
PN-EN 13794:2005 p. 7.12
PN-EN 13794:2005 p. 7.13
PN-EN 13794:2005 p. 7.4
PN-EN 13794:2005 p. 7.5
PN-EN 13794:2005 p. 7.6
PN-EN 13794:2005 p. 7.7
PN-EN 13794:2005 p. 7.8
PN-EN 13794:2005 p. 7.9.1, p. 7.9.2
PN-EN 137:2008 p. 6.6
PN-EN 137:2008 p. 7.11
PN-EN 137:2008 p. 7.4.1.1, p. 7.4.1.2
PN-EN 137:2008 p. 7.9
PN-EN 137:2008 p.7.4.1.4
PN-EN 140:2001 p. 7.10
PN-EN 140:2001 p. 7.11
PN-EN 140:2001 p. 7.12
PN-EN 140:2001 p. 7.13.3
PN-EN 140:2001 p. 7.14
PN-EN 140:2001 p. 7.2, 7.4
PN-EN 140:2001 p. 7.5
PN-EN 140:2001 p. 7.7
PN-EN 140:2001 p. 7.8
PN-EN 140:2001 p. 7.9
PN-EN 14387:2021-07
PN-EN 14387:2021-07 p. 6.3
PN-EN 14387:2021-07 p. 6.4.1
PN-EN 14387:2021-07 p. 6.4.2
PN-EN 14387:2021-07 p. 6.5
PN-EN 143:2021-07
PN-EN 143:2021-07 p. 7.3
PN-EN 143:2021-07 p. 7.4.1
PN-EN 143:2021-07 p. 7.4.2
PN-EN 143:2021-07 p. 7.5
PN-EN 14435-1:2007 p. 6.9
PN-EN 14435:2007 p. 5.6
PN-EN 14435:2007 p. 6.11
PN-EN 14435:2007 p. 6.12
PN-EN 14435:2007 p. 6.4.1.4
PN-EN 14435:2007 p.6.4.1.1, p. 6.4.1.2, p. 6.4.1.3
PN-EN 14593-1:2018-06 p. 4.19
PN-EN 14593-1:2018-06 p. 5.14
PN-EN 14593-1:2018-06 p. 5.3.4.
PN-EN 14593-1:2018-06 p. 5.4
PN-EN 14593-1:2018-06 p. 5.7
PN-EN 14593-1:2018-06 p. 5.8
PN-EN 14594:2018-06 p. 6.13
PN-EN 14594:2018-06 p. 6.14
PN-EN 14594:2018-06 p. 6.17
PN-EN 14594:2018-06 p. 6.3.4
PN-EN 14594:2018-06 p. 6.4, p. 6.19
PN-EN 14594:2018-06 p. 6.7.1
PN-EN 14594:2018-06 p. 6.8
PN-EN 145:2000 p. 6.4
PN-EN 145:2000 p. 7.10
PN-EN 145:2000 p. 7.11, p.7.15
PN-EN 145:2000 p. 7.12
PN-EN 145:2000 p. 7.13
PN-EN 145:2000 p. 7.16
PN-EN 145:2000 p. 7.17
PN-EN 145:2000 p. 7.3
PN-EN 145:2000 p. 7.5
PN-EN 145:2000 p. 7.6
PN-EN 145:2000 p. 7.7
PN-EN 145:2000 p. 7.8
PN-EN 145:2000 p. 7.9
PN-EN 145:2000 p.7.4.1, p. 7.14
PN-EN 149+A1:2010 p. 8.11
PN-EN 149+A1:2010 p. 8.3.2
PN-EN 149+A1:2010 p. 8.3.3
PN-EN 149+A1:2010 p. 8.3.4
PN-EN 149+A1:2010 p. 8.4
PN-EN 149+A1:2010 p. 8.5
PN-EN 149+A1:2010 p. 8.6
PN-EN 149+A1:2010 p. 8.7
PN-EN 149+A1:2010 p. 8.8
PN-EN 149+A1:2010 p. 8.9
PN-EN 402:2005 p. 6.6
PN-EN 402:2005 p. 7.4.1
PN-EN 402:2005 p. 7.4.2
PN-EN 402:2005 p. 7.5.1, p. 7.5.2, p.7.5.3
PN-EN 402:2005 p. 7.5.7
PN-EN 402:2005 p. 7.5.9
PN-EN 402:2005 p. 7.9
PN-EN 403:2007 p. 6.5
PN-EN 403:2007 p. 7.10
PN-EN 403:2007 p. 7.12
PN-EN 403:2007 p. 7.4.2
PN-EN 403:2007 p. 7.4.3
PN-EN 403:2007 p. 7.4.5
PN-EN 403:2007 p. 7.5
PN-EN 403:2007 p. 7.6.2
PN-EN 403:2007 p. 7.8
PN-EN 403:2007 p. 7.9
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