Tesla Technology WF71231M Front-loading washing machines

User manual - Page 20

For WF71231M.

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20
ENG
WF71490M
Cycle
Nominal capacity in
kg
Cycle duration in
h:min
Energy consumption
in KWh/cycle
Water consumption in
liter / opertating cycie
Highest washing
temperature °C
Residual moisture in %
/ Spin speed in rpm
Cotton 60ºC 7.0 3:44 1.392 65 60 55%/800
Mix 7.0 1:20 0.710 60 40 65%/1000
20ºC 3.5 1:01 0.100 45 20 65%/1000
Intensive 7.0 3:48 1.000 68 40 70%/800
Quick 15’ 2.0 0:15 0.030 40 Cold 75%/800
ECO 40-60
7.0 3:28 0.775 55 36 53%/1400
3.5 2:42 0.470 45 34 53%/1400
2.0 2:42 0.200 36 21 53%/1400
If there is any break in the power supply while the machine is operating, a special memory stores the selected
programme. The machine will continue the programme when the power supply is re-established.
CAUTION!
The above data is for reference only, and the data may change due to different actual use conditions.
The values given for programmes other than the ECO 40-60 programme are indicative only.
Concerning to Regulation(EU) No 1061/2010,
The EU energy efficiency class is: A+++
Energy test program: Intensive 60/40ºC; Speed:The highest speed;
Other as the default.
Half load for 7.0Kg machine:3.5Kg.
Concerning to Regulation(EU) 2019/2023,
The EU energy efficiency class is: B
Energy test program: ECO 40-60. Other as the default.
Half load for 7.0Kg machine:3.5Kg.
Quarter load for 7.0Kg machine:2.0/Kg.
1. The highest temperature reached by the laundry in the wash cycle for at least 5 minutes.
2. Residual moisture after the wash cycle in water content percent and the spin speed at which this was
achieved.
3. The ECO 40-60 programme is able to clean normally soiled cotton laundry declared to be washable at
40°C or 60°C, together in the same cycle. This programme is used to assess the compliance with the
regulation (EU) 2019/2023.
The most efficient programmes in terms of energy consumption are generally those that perform at lower
temperatures and longer duration.
Loading the household washing machine up to the capacity indicated for the respective programmes will
contribute to energy and water savings.
Noise and remaining moisture content are influenced by the spinning speed: the higher the spinning speed
in the spinning phase, the higher the noise and the lower the remaining moisture content.
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