
AWZ 135
AWZ 135
Wiring Diagram

Technical Data
Dimensions
Height | 85.0 | cm |
Width | 59.5 | cm |
Depth | 56.0 | cm |
Weight
Gross Weight | 33 | kg |
Net weight | 31 | kg |
Surroundings temperature
Max.room temperature | 35 | ËšC |
Min. room temperature | 5 | ËšC |
Humidity
Max. relative humidity | 95 | % |
Power connection
Voltage | 230 | V |
Frequency | 50 | Hz |
Connected load | 2,3 | kW |
Fuse | 10 | A |
Drum data
Volume | 104 | l |
Drum speed (empty) | 56 ± 3 | rpm |
Airflow | 120 - 160 | m3 /h |
Maximum loading capacity
Cotton | 5 | kg |
Easy care | 2,5 | kg |
Exhaust hose
Inner diameter | 10 | cm |
Maximum allowable | ||
length (with 2 bows) | 4 | m |
Electrical components
Heating
Type | Aluminium mass heating | |
Nominal voltage | 230 | V |
Nominal power | 2050 ± 5% | W |
Resistor R 20 | 23,5-28 | Ω |
Thermostats
Safety thermostat (in heater) TL
Switching point off | 270 ± 10 | ˚C |
Fluff thermostat (in heater) TH 1.2
Switching point on | 195 ± 7,5 | ˚C |
Switching point off | 220 ± 7,5 | ˚C |
Exhausting thermostat (in bottom) TH 1.1
Switching point on | 45 ± 5 | ˚C |
Switching point off | 60 ± 4 | ˚C |
Timer
Type | Electronic Timer Eaton SL49WR2 3203 | |
Nominal voltage | 230 | V |
Frequency | 50 / 60 | Hz |
Rated current for: Main motor | ≤ 6 | A |
Heater | ≤ 16 | A |
Drumlight | ≤ 0.1 | A |
Ambient temperature | up to 50 | ËšC |
Storage temperature | -25 to 85 | ËšC |
Main- and blower motor
Type | 1-phase asynchronous | |
Nominal voltage | 230 | V |
Frequency | 50 | Hz |
Power consumption | 295 ± 7% | W |
Resistances of coils: | ||
Main coil (2-3) | 24,7 ± 7% | Ω |
Auxiliary coil (2-1) | 25,6 ± 7% | Ω |
Rated speed with 5kg laundry and 100 % rest humidity | 2730 | rpm |
Capacitor | 10 | µF |
Display
WH display module Low
Type | EATON MV19WR1 2910 | |
No. of LEDs | 6 | |
Buttons | START | |
GENTLE | ||
RAPID | ||
BUZZER | ||
Program selector | 12 positions | |
integrated ON / OFF contact 24 V AC |
Radio interference filter
Type | ISKRA KPB 7325 | |
Nominal voltage max | 275 | V |
Nominal capacity | 0,1 µFX1 + 2x 0,022 µF Y2 + 1 M | Ω |