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Siemens Building Technologies
Basic Documentation RVA63.242, RVA53.242
CE1P2373E
Landis & Staefa Division
Contents
26.03.2001
4.43
Maximum forward shift of optimum start control..................................... 104
4.44
Maximum forward shift of optimum stop control..................................... 106
4.45
Type of building construction .............................................................. 107
4.46
Adaption of heating curve ................................................................... 108
4.47
Locking signal gain ........................................................................... 109
4.48
Floor curing HK1............................................................................... 110
D.h.w. ............................................................................................. 112
4.49
Reduced setpoint of d.h.w. temperature (TBWR)................................... 112
4.50
D.h.w. heating program ..................................................................... 113
4.51
Switching program selection circulating pump....................................... 115
4.52
Assignment of d.h.w. heating.............................................................. 116
4.53
D.h.w. charging ................................................................................ 117
4.54
Type of d.h.w. demand ...................................................................... 118
4.55
Boost of the flow temperature setpoint for d.h.w. heating (UEBW) ........... 119
4.56
D.h.w. priority ................................................................................... 120
4.57
Controlling element for d.h.w. ............................................................. 123
4.58
Separate d.h.w. circuit ....................................................................... 124
Cascade.......................................................................................... 125
4.59
Changeover of boiler sequence in a cascade 2 x single-stage................ 125
4.60
Release integral for boiler sequence.................................................... 126
4.61
Reset integral of boiler sequence....................................................... 127
LPB / system.................................................................................... 128
4.62
LPB device address .......................................................................... 128
4.63
LPB segment address ....................................................................... 129
4.64
LPB power supply ............................................................................. 129
4.65
Display of LPB power supply .............................................................. 130
4.66
Range of action of central changeover ................................................. 130
4.67
Automatic summer / winter changeover................................................ 131
4.68
Central stand-by switch ..................................................................... 132
4.69
Clock mode...................................................................................... 133
4.70
Winter- / summertime changeover ....................................................... 134
4.71
Summer- / wintertime changeover ....................................................... 134
4.72
Display of PPS communication (A6) .................................................... 135
Solar / Puffer .................................................................................... 136
4.73
Temperature differential solar ON (TSdEin) .......................................... 136
4.74
Temperature differential solar OFF (TSdAus)........................................ 136
4.75
Charging temperature level solar charging strategy ............................... 137
4.76
Maximum solar charging temperature.................................................. 138
4.77
Demand for heat with reduced d.h.w. setpoint....................................... 139
Multi-functional inputs........................................................................ 140
4.78
Input H1........................................................................................... 140
4.79
Minimum flow temperature setpoint contact H (TVHw) ........................... 144