AEG TR849P4B

User Manual - Page 30

For TR849P4B.

PDF File Manual, 32 pages, Read Online | Download pdf file

TR849P4B photo
Loading ...
Loading ...
Loading ...
14. PRODUCT INFORMATION SHEET
ACCORDING TO UK ECODESIGN FOR ENERGY-RELATED PRODUCTS AND EN‐
ERGY INFORMATION REGULATIONS AND EU Ecodesign Regulation and the EU
Energy Label Regulation 1369/2017.
Product Information Sheet
Trade Mark AEG
Model TR849P4B PNC916099602
Rated capacity in kg 9,0
Air vented or condenser tumble dryer Condenser
Energy efficiency class A++
Energy consumption in kWh per year, based on 160 drying cycles of the standard
cotton programme at full and partial load, and the consumption of the low-power
modes. Actual energy consumption per cycle will depend on how the appliance is
used.
226,10
Automatic tumble drier or non-automatic tumble drier Automatic
Energy consumption of the standard cotton programme at full load in kWh 1,98
Energy consumption of the standard cotton programme at partial load in kWh 0,98
Power consumption of the off-mode in W 0,05
Power consumption in left-on mode in W 0,05
Duration of the left on mode in minutes 10
The 'standard cotton programme' used at full and partial load is the standard dry‐
ing programme to which the information in the label and the fiche relates, this
programme is suitable for drying normal wet cotton laundry and it is the most effi‐
cient programme in terms of energy consumption for cotton.
Weighted programme time of the 'standard cotton programme at full and partial
load' in minutes
177
Programme time of the 'standard cotton programme at full load' in minutes 239
Programme time of the 'standard cotton programme at partial load' in minutes 130
Condensation efficiency class on a scale from G (least efficient) to A (most effi‐
cient)
B
Average condensation efficiency of the standard cotton programme at full load as
a percentage
85
Average condensation efficiency of the standard cotton programme at partial load
as a percentage
85
Weighted condensation efficiency for the 'standard cotton programme at full and
partial load'
85
30 ENGLISH
Loading ...
Loading ...