20/118
Siemens Building Technologies
Basic Documentation RVL471
CE1P2524E
HVAC Products
3 Fundamentals
23.10.2002
3.2.11
D.h.w. plant type 3 – storage tank with diverting valve
25
24
S
0
9
Y3
B31
B32
M4
K6
Charging of the d.h.w. storage tank through control of the diverting valve. Acquisition of
the d.h.w. temperature with one or 2 sensors or thermostats. Circulating pump and
electric immersion heater are optional.
3.2.12
D.h.w. plant type 4 – instantaneous d.h.w. heating via
heat exchanger
M4
25
2
4
S
1
0
B3
Y7
N1
D.h.w. heating via heat exchanger (instantaneous d.h.w. heating) through control of the
2-port valve in the heat exchanger’s primary return. Acquisition of the d.h.w. tempera-
ture in the heat exchanger’s secondary flow. Circulating pump is optional, but strongly
recommended.
3.2.13
D.h.w. plant type 5 – only electric immersion heater
M4
25
2
4
S
1
1
K6
Charging of d.h.w. storage tank only through release of the electric immersion heater.
No control of d.h.w. heating by the controller. Circulating pump is optional.
A6
Room unit QAW50 or QAW70
E2
Consumer (space)
B1
Flow / boiler sensor
LPB
Data bus
B3
D.h.w. flow sensor
K6
Electric immersion heater
B31
Storage tank sensor / thermostat 1
M1
Heating circuit pump / circulating pump
B32
Storage tank sensor / thermostat 2
M3
Charging pump
B5
Room sensor
M4
Circulating pump
B7
Return sensor (primary circuit)
N1
Controller RVL471
B71
Return sensor (secondary circuit)
Y1
Heating circuit mixing valve
B9
Outside sensor
Y3
Diverting valve
E1
Heat source (boiler / heat converter)
Y7
D.h.w. mixing valve