Description
To protect the load of 900 Watts against input power failure during 5 years and provide a backup time of 10 minutes for a typical application in case of a power outage. Product dimensions is 88x440x405; HxWxD (mm); Multimode; redundancy N + 0; power factor ≧ 0.9, Mass without packaging : 19 kg Mass without energy storage system e.g. batteries without packaging : 12.7 kg; Input Dependency Characteristics according to IEC 62040-3 : VFI, VFD Multimode; Input Dependency Characteristics according to IEC 62040-3 : VI; UPS configuration (see Annex A of IEC 62040-3:2011) : A.2.3 Single UPS with bypass; UPS performance classification (see 5.3.4. of IEC 62040-3:2011) : VFI SS 111.
Extrapolation Rules
For products covered by the PEP other than the Reference product, the environmental impacts of each phase of the lifecycle are calculated with - Manufacturing phase is proportional to the mass of the batteries,- Installation, Distribution and End of Life phases are the same value,- Use phase is proportional to the output power.
Indicator | Unit | Total | Manufacturing | Distribution | Installation | Use | End of Life | Use B1 | Maintenance B2 | Repair B3 | Replacement B4 | Refurbishment B5 | Operational energy use B6 | Operational water use B7 |
Global warming | kg.eq.CO2 | 3.45E+3 | 1.64E+2 | 1.28E+0 | 1.95E-1 | 3.28E+3 | 1.99E+0 | 00E+0 | 00E+0 | 00E+0 | 00E+0 | 00E+0 | 00E+0 | 00E+0 |
Ozone depletion | kg.eq.CFC-11 | 8.28E-4 | 3.05E-5 | 9.1E-7 | 2.16E-9 | 7.97E-4 | 4.51E-8 | 00E+0 | 00E+0 | 00E+0 | 00E+0 | 00E+0 | 00E+0 | 00E+0 |
Acidification of soil and water | kg.eq.SO2 | 2.51E+1 | 2.71E-1 | 3.45E-3 | 8.82E-4 | 2.48E+1 | 7.7E-3 | 00E+0 | 00E+0 | 00E+0 | 00E+0 | 00E+0 | 00E+0 | 00E+0 |
Water eutrophication | kg.eq.P04 3- | 1.01E+0 | 6.5E-2 | 9.26E-4 | 8.21E-4 | 9.3E-1 | 9.45E-3 | 00E+0 | 00E+0 | 00E+0 | 00E+0 | 00E+0 | 00E+0 | 00E+0 |
Photochemical Ozone formation | kg.eq.C2H4 | 1.21E+0 | 3.5E-2 | 7.48E-5 | 6.38E-5 | 1.17E+0 | 5.97E-4 | 00E+0 | 00E+0 | 00E+0 | 00E+0 | 00E+0 | 00E+0 | 00E+0 |
Depletion of abiotic resources - elements | kg.eq.Sb | 3.92E-2 | 3.9E-2 | 2.35E-10 | 9.48E-9 | 1.49E-4 | 1.21E-7 | 00E+0 | 00E+0 | 00E+0 | 00E+0 | 00E+0 | 00E+0 | 00E+0 |
Depletion of abiotic resources - fossil fuels | MJ | 3.61E+4 | 2.23E+3 | 1.62E+1 | 2.74E+0 | 3.38E+4 | 2.81E+1 | 00E+0 | 00E+0 | 00E+0 | 00E+0 | 00E+0 | 00E+0 | 00E+0 |
Water pollution | m³ | 1.59E+5 | 2.08E+4 | 1.9E+2 | 2.83E+1 | 1.38E+5 | 2.34E+2 | 00E+0 | 00E+0 | 00E+0 | 00E+0 | 00E+0 | 00E+0 | 00E+0 |
Air pollution | m³ | 1.8E+5 | 3.88E+4 | 4.51E+1 | 2.1E+1 | 1.41E+5 | 2.17E+2 | 00E+0 | 00E+0 | 00E+0 | 00E+0 | 00E+0 | 00E+0 | 00E+0 |
Use of renewable primary energy, excluding renewable primary energy resources used as raw materials | MJ | 4.75E+3 | 00E+0 | 1.06E-4 | 3.18E-2 | 4.75E+3 | 4.83E-1 | 00E+0 | 00E+0 | 00E+0 | 00E+0 | 00E+0 | 00E+0 | 00E+0 |
Use of renewable primary energy resources used as raw materials | MJ | 4.41E+1 | 4.41E+1 | 00E+0 | 00E+0 | 00E+0 | 00E+0 | 00E+0 | 00E+0 | 00E+0 | 00E+0 | 00E+0 | 00E+0 | 00E+0 |
Total use of renewable primary energy resources (primary energy and primary energy resources used as raw materials) | MJ | 4.8E+3 | 4.18E+1 | 1.06E-4 | 3.18E-2 | 4.75E+3 | 4.83E-1 | 00E+0 | 00E+0 | 00E+0 | 00E+0 | 00E+0 | 00E+0 | 00E+0 |
Use of non-renewable primary energy, excluding non-renewable primary energy resources used as raw materials | MJ | 5.52E+4 | 3.31E+3 | 1.59E+1 | 2.41E+0 | 5.18E+4 | 2.1E+1 | 00E+0 | 00E+0 | 00E+0 | 00E+0 | 00E+0 | 00E+0 | 00E+0 |
Use of non-renewable primary energy resources used as raw materials | MJ | 1.12E+2 | 1.12E+2 | 00E+0 | 00E+0 | 00E+0 | 00E+0 | 00E+0 | 00E+0 | 00E+0 | 00E+0 | 00E+0 | 00E+0 | 00E+0 |
Total use of non-renewable primary energy resources (primary energy and primary energy resources used as raw materials) | MJ | 5.53E+4 | 3.42E+3 | 1.59E+1 | 2.41E+0 | 5.18E+4 | 2.1E+1 | 00E+0 | 00E+0 | 00E+0 | 00E+0 | 00E+0 | 00E+0 | 00E+0 |
Use of secondary materials | kg | 2.15E+0 | 2.15E+0 | 00E+0 | 00E+0 | 00E+0 | 00E+0 | 00E+0 | 00E+0 | 00E+0 | 00E+0 | 00E+0 | 00E+0 | 00E+0 |
Use of renewable secondary fuels | MJ | 00E+0 | 00E+0 | 00E+0 | 00E+0 | 00E+0 | 00E+0 | 00E+0 | 00E+0 | 00E+0 | 00E+0 | 00E+0 | 00E+0 | 00E+0 |
Use of non-renewable secondary fuels | MJ | 00E+0 | 00E+0 | 00E+0 | 00E+0 | 00E+0 | 00E+0 | 00E+0 | 00E+0 | 00E+0 | 00E+0 | 00E+0 | 00E+0 | 00E+0 |
Net use of fresh water | m³ | 9.94E+0 | 1.39E+0 | 1.54E-3 | 8.33E-5 | 8.55E+0 | 1.57E-3 | 00E+0 | 00E+0 | 00E+0 | 00E+0 | 00E+0 | 00E+0 | 00E+0 |
Hazardous waste disposed of | kg | 2.76E+1 | 2.76E+1 | 1.08E-3 | 6.18E-4 | 00E+0 | 7.74E-3 | 00E+0 | 00E+0 | 00E+0 | 00E+0 | 00E+0 | 00E+0 | 00E+0 |
Non-hazardous waste disposed of | kg | 1.24E+4 | 6.35E+1 | 1.33E-3 | 2.22E+0 | 1.23E+4 | 2.05E+1 | 00E+0 | 00E+0 | 00E+0 | 00E+0 | 00E+0 | 00E+0 | 00E+0 |
Radioactive waste disposed of | kg | 1.01E+1 | 8.26E-2 | 2.6E-4 | 2.7E-5 | 10E+0 | 5.63E-4 | 00E+0 | 00E+0 | 00E+0 | 00E+0 | 00E+0 | 00E+0 | 00E+0 |
Components for re-use | kg | 00E+0 | 00E+0 | 00E+0 | 00E+0 | 00E+0 | 00E+0 | 00E+0 | 00E+0 | 00E+0 | 00E+0 | 00E+0 | 00E+0 | 00E+0 |
Materials for recycling | kg | 00E+0 | 00E+0 | 00E+0 | 00E+0 | 00E+0 | 00E+0 | 00E+0 | 00E+0 | 00E+0 | 00E+0 | 00E+0 | 00E+0 | 00E+0 |
Materials for energy recovery | kg | 00E+0 | 00E+0 | 00E+0 | 00E+0 | 00E+0 | 00E+0 | 00E+0 | 00E+0 | 00E+0 | 00E+0 | 00E+0 | 00E+0 | 00E+0 |
Exported energy | MJ by energy vector | 00E+0 | 00E+0 | 00E+0 | 00E+0 | 00E+0 | 00E+0 | 00E+0 | 00E+0 | 00E+0 | 00E+0 | 00E+0 | 00E+0 | 00E+0 |
Total use of primary energy during the life cycle | MJ | 6.01E+4 | 3.46E+3 | 1.59E+1 | 2.44E+0 | 5.66E+4 | 2.15E+1 | 00E+0 | 00E+0 | 00E+0 | 00E+0 | 00E+0 | 00E+0 | 00E+0 |