Vitocell 300-B, Type Evb - Viessmann VITOSOL 100-F SV Technical Manual

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DHW cylinders
(cont.)

11.5 Vitocell 300-B, type EVB

For DHW heating in conjunction with boilers and solar collectors for dual mode operation.
Suitable for the following systems:
■ DHW temperature up to 95 °C
■ Heating water flow temperature up to 200 °C
■ Solar flow temperature up to 200 °C
■ Operating pressure on the heating water side up to 25 bar (2.5 MPa)
■ Operating pressure on the solar side up to 25 bar (2.5 MPa)
■ Operating pressure on the DHW side up to 10 bar (1.0 MPa)
Cylinder capacity
Indirect coil
DIN registration number
Continuous output
For DHW heating from 10 to 45 °C and a heating water
flow temperature of ... at the heating water flow rate stated
below
Continuous output
For DHW heating from 10 to 60 °C and a heating water
flow temperature of ... at the heating water flow rate stated
below
Heating water flow rate for the stated continuous flow rates
Max. connectable heat pump output
At a heating water flow temperature of 55 °C and a DHW temperature
of 45 °C
For the specified heating water flow rate (both indirect coils connec-
ted in series)
Standby heat loss q
BS
(standard parameter)
Standby capacity V
aux
Solar capacity V
sol
Dimensions
Length a (Ø)
– Incl. thermal insulation
– Excl. thermal insulation
Width b
– Incl. thermal insulation
– Excl. thermal insulation
Height c
– Incl. thermal insulation
– Excl. thermal insulation
Height when
– Incl. thermal insulation
tilted
– Excl. thermal insulation
Weight incl. thermal insulation
Heating water content
Heating surface
Connections (male thread)
Indirect coils
Cold water, DHW
DHW circulation
Information regarding the upper indirect coil
The upper indirect coil is intended to be connected to a heat genera-
tor.
Information regarding the lower indirect coil
The lower indirect coil is designed for connection to solar collectors.
To install the cylinder temperature sensor, use the threaded elbow with
sensor well provided in the standard delivery.
VITOSOL
l
upper
kW
90 °C
l/h
kW
80 °C
l/h
kW
70 °C
l/h
kW
60 °C
l/h
kW
50 °C
l/h
kW
90 °C
l/h
kW
80 °C
l/h
kW
70 °C
l/h
m
3
/h
kW
kWh/24 h
l
l
mm
mm
mm
mm
mm
mm
mm
mm
kg
l
m
2
R
R
R
Information regarding continuous output
When engineering systems with the specified or calculated continuous
output, select a matching circulation pump. The stated continuous out-
put is only achieved when the rated boiler heating output ≥ continuous
output.
300
lower
upper
0100/08-10MC
80
93
1965
2285
1965
64
72
1572
1769
1572
45
52
1106
1277
1106
28
30
688
737
688
15
15
368
368
368
74
82
1273
1410
1273
54
59
929
1014
929
35
41
602
705
602
5.0
5.0
12
1.17
149
151
633
704
1779
1821
114
11
11
1.50
1.50
1.45
1
1
1
VIESMANN
500
lower
80
96
2358
64
73
1793
45
56
1376
28
37
909
15
18
442
74
81
1393
54
62
11
1066
35
43
739
5.0
5.0
15
1.37
245
255
925
715
975
914
1738
1667
1690
125
11
15
1.90
75

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