VIESMANN VITOCELL 300-V Vertical DHW cylinder 130 to 500 l capacity

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VIESMANN VITOCELL 300-V Vertical DHW cylinder 130 to 0 l capacity Datasheet Part no. and prices: see pricelist VITOCELL 300-V Type EVA and EVI Vertical DHW cylinder made from stainless steel 5/2012

Product information Hygienic, convenient and economic DHW heating with DHW cylinders made from stainless steel vertical version. Benefits at a glance Long service life through corrosion-resistant DHW cylinder made from high grade stainless steel. Hygienic and made to food hygiene standards with high surface quality. No protective anode required for additional corrosion protection, therefore no additional running costs. Indirect coils that are drawn right down to the cylinder floor heat up the entire water content. High DHW convenience through rapid, even heat-up via generously sized indirect coils. Low heat losses through highly effective, all-round thermal insulation. Easy handling because of low weight and compact design. Universal application higher DHW demands can be accommodated by combining several Vitocell 300-V DHW cylinders into cylinder banks using headers. The Vitocell 300-V (0 l) is fitted with removable thermal insulation for easier handling. Vitocell 300-V, type EVI, internal indirect coil A Inspection and cleaning aperture B Highly effective all-round thermal insulation C Stainless steel indirect coil drawn right down to the cylinder floor this heats the DHW cylinder fully and hygienically D Flanged aperture as additional cleaning aperture or for the installation of an immersion heater Vitocell 300-V, type EVA, peripheral indirect coil A Inspection and cleaning aperture B Highly effective all-round thermal insulation C External stainless steel indirect coil drawn right down to the cylinder floor this heats the DHW cylinder fully and hygienically 2 VIESMANN VITOCELL 300-V

Specification Vitocell 300-V (type EVA) For DHW heating in conjunction with boilers, peripheral indirect coils Suitable for systems with Heating water flow temperature up to 110 C Operating pressure on the heating water side up to 3 bar Operating pressure on the DHW side up to 10 bar Cylinder capacity l 130 1 200 DIN register number 0166/09 10MC Continuous output 90 C kw 37 40 62 For DHW heating from 10 to C and a heating l/h 909 982 1523 water flow temperature of at the heating 80 C kw 30 32 49 water throughput stated below l/h 737 786 1024 70 C kw 22 24 38 l/h 540 589 933 C kw 13 15 25 l/h 319 368 614 C kw 9 10 12 l/h 221 2 294 Continuous output 90 C kw 32 36 57 For DHW heating from 10 to C and a heating l/h 5 619 980 water flow temperature of at the heating 80 C kw 25 28 43 water throughput stated below l/h 430 481 739 70 C kw 16 19 25 l/h 275 326 430 Heating water throughput m 3 /h 3.0 3.0 3.0 for the stated continuous outputs Standby heat loss q BS at K temperature differential kwh/24 h 1.30 1.40 1. (actual values to DIN 4753-8) Dimensions Length (7) a mm 633 633 633 Width b mm 667 667 667 Height c mm 1111 1203 1423 Height when tilted mm 1217 1297 1493 Weight kg 77 84 98 DHW cylinder with thermal insulation Heating water content l 25 28 35 Heating surface m 2 1.1 1.3 1.6 Connections Heating water flow and return R 1 1 1 Cold water, DHW R ¾ ¾ ¾ DHW circulation R ½ ½ ½ Information regarding continuous output When designing the system for the continuous output as stated or calculated, allow for the corresponding circulation pump. The stated continuous output is only achieved when the rated boiler heating output continuous output. VITOCELL 300-V VIESMANN 3

a h Specification Vitocell 300-V (type EVA) (cont.) SPR BÖ Z WW HR f e d c HV g b KW/E BÖ E HR HV KW Inspection and cleaning aperture Drain Heating water return Heating water flow Cold water SPR Sensor well for cylinder temperature sensor or control thermostat WW DHW Z DHW circulation Dimensions Cylinder capacity l 130 1 200 a mm 633 633 633 b mm 667 667 667 c mm 1111 1203 1423 d mm 975 1067 1287 e mm 892 984 1204 f mm 785 877 1097 g mm 155 155 155 h mm 77 77 77 Performance factor N L to DIN 4708 Cylinder storage temperature T cyl = cold water inlet temperature + K +5 K/-0 K Cylinder capacity l 130 1 200 Performance factor N L at heating water flow temperature 90 C 2.4 3.3 6.8 80 C 1.9 2.9 5.2 70 C 1.4 2.0 3.2 Performance factor N L The performance factor N L varies according to the cylinder storage temperature T cyl. Standard values T cyl = C 1.0 N L T cyl = 55 C 0.75 N L T cyl = C 0.55 N L T cyl = C 0.3 N L 4 VIESMANN VITOCELL 300-V

Specification Vitocell 300-V (type EVA) (cont.) Peak output (over 10 minutes) Based on performance factor N L DHW heating from 10 to C Cylinder capacity l 130 1 200 Peak output (l/10 min) at heating water flow temperature 90 C 207 240 340 80 C 186 226 298 70 C 164 190 236 Max. draw-off rate (over 10 minutes) Based on performance factor N L With reheating DHW heating from 10 to C Cylinder capacity l 130 1 200 Max. draw-off rate (l/min) at heating water flow temperature 90 C 21 24 34 80 C 19 23 30 70 C 16 19 24 Drawable water volume Cylinder volume heated to C Without reheating Cylinder capacity l 130 1 200 Draw-off rate l/min 10 10 10 Drawable water volume Water with t = C (constant) l 103 120 1 Heat-up time The heat-up times specified will be achieved subject to the maximum continuous output of the DHW cylinder being made available at the relevant flow temperature and when DHW is heated from 10 to C. Cylinder capacity l 130 1 200 Heat-up time (min) at heating water flow temperature 90 C 15 15 12 80 C 19 19 16 70 C 29 29 24 VITOCELL 300-V VIESMANN 5

Specification Vitocell 300-V (type EVA) (cont.) Pressure drop 100 90 80 70 120 100 90 80 70 40 40 30 Pressure drop in mbar 30 20 10 1000 2000 3000 4000 00 20 10 98 7 6 5 4 Heating water volume in l/h of one cylinder cell. Pressure drop on the heating water side Pressure drop in mbar 3 2 1 0.9 0.8 200 400 0 800 1000 2000 4000 300 0 700 900 3000 DHW throughput in l/h Pressure drop on the DHW side 6 VIESMANN VITOCELL 300-V

Specification Vitocell 300-V (type EVA) (cont.) Continuous output Vitocell 300-V (type EVA) with 130 litre capacity Vitocell 300-V (type EVA) with 1 litre capacity Continuous output in kw 55 40 35 30 25 20 15 10 5 Heating water flow temperature... C 70 80 90 3.0 m³/h mbar 2.5 m³/h 35 mbar DHW heating from 10 to... C 2.0 m³/h 22 mbar 1.0 m³/h Heating water volume... m³/h Pressure drop (heating water side)... mbar 5 mbar 0 0 5 10 15 20 25 30 35 Heating water temperature differential (ΔT) in K Continuous output in kw 55 40 35 30 25 20 15 10 5 Heating water flow temperature... C 70 80 90 3.0 m³/h DHW heating from 10 to... C mbar 2.5 m³/h 35 mbar 2.0 m³/h 22 mbar 1.0 m³/h Heating water volume... m³/h Pressure drop (heating water side)... mbar 5 mbar 0 0 5 10 15 20 25 30 35 Heating water temperature differential (ΔT) in K VITOCELL 300-V VIESMANN 7

Specification Vitocell 300-V (type EVA) (cont.) Vitocell 300-V (type EVA) with 200 litre capacity Continuous output in kw 70 65 55 40 35 30 25 20 15 10 5 Heating water flow temperature... C 70 80 90 3.0 m³/h DHW heating from 10 to... C 35 mbar mbar 2.5 m³/h 2.0 m³/h 22 mbar 1.0 m³/h Heating water volume... m³/h Pressure drop (heating water side)... mbar 0 0 5 10 15 20 25 30 35 40 Heating water temperature differential (ΔT) in K 5 mbar Delivered condition Vitocell 300-V, type EVA, peripheral indirect coil 130 to 200 litre capacity DHW cylinder, on the DHW side made from high-alloy stainless steel with fitted thermal insulation. Integral welded sensor well for cylinder temperature sensor or control thermostat Integral thermometer Threaded adjustable feet Colour of the epoxy-coated sheet steel casing: Vitosilver. DHW cylinders with 1 and 200 litre capacity are also available in white. Specification Vitocell 300-V (type EVI) For DHW heating in conjunction with boilers and district heating, optionally with immersion heater as accessory. Suitable for the following systems: DHW temperature up to 95 C Heating water flow temperature up to 200 C Operating pressure on the heating water side up to 25 bar Operating pressure on the DHW side up to 10 bar 8 VIESMANN VITOCELL 300-V

Specification Vitocell 300-V (type EVI) (cont.) Cylinder capacity l 200 300 0 DIN register number 9W71-10 MC/E Continuous output 90 C kw 71 93 96 for DHW heating from 10 to C and a l/h 17 2285 2358 heating water flow temperature of... at the 80 C kw 56 72 73 heating water throughput stated below l/h 1376 1769 1793 70 C kw 44 52 56 l/h 1081 1277 1376 C kw 24 30 37 l/h 590 737 909 C kw 13 15 18 l/h 319 368 442 Continuous output for DHW heating from 10 to C and a heating water flow temperature of... at the heating water throughput stated below Heating water throughput for the stated continuous outputs Standby heat loss q BS at a temp. differential of K (actual values acc. to DIN 4753-8) 90 C kw 63 82 81 l/h 1084 1410 1393 80 C kw 48 59 62 l/h 826 1014 1066 70 C kw 29 41 43 l/h 499 705 739 m 3 /h 5.0 5.0 6.5 kwh/24 h 1.70 2.10 2.40 Dimensions Length (Ø) a with thermal insulation mm 581 633 925 excl. thermal insulation mm 715 Width b with thermal insulation mm 649 704 975 excl. thermal insulation mm 914 Height d with thermal insulation mm 1420 1779 1738 excl. thermal insulation mm 1667 Height when tilted with thermal insulation mm 1471 1821 excl. thermal insulation mm 1690 Weight incl. thermal insulation kg 76 100 111 Heating water content l 10 11 15 Heat transfer area m 2 1.3 1.5 1.9 Connections Heating water flow and return R 1 1 1¼ Cold water, DHW R 1 1 1¼ DHW circulation R 1 1 1¼ Information regarding continuous output When designing the system for the continuous output as stated or calculated, allow for the corresponding circulation pump. The stated continuous heating output is only achieved when the rated boiler heating output continuous heating output. VITOCELL 300-V VIESMANN 9

i l Specification Vitocell 300-V (type EVI) (cont.) 200 and 300 litre capacity BÖ WW Z HV/SPR R e d SPR HR g f a Ø 100 k h KW/E c b BÖ E HR HV KW R Inspection and cleaning aperture Drain Heating water return Heating water flow Cold water Additional cleaning aperture or for immersion heater SPR Cylinder temperature sensor of the cylinder temperature controller or control thermostat (Connector R 1 with fem. reducer to R ½ for sensor well) WW DHW Z DHW circulation Cylinder capacity l 200 300 a mm 581 633 b mm 649 704 c mm 614 665 d mm 1420 1779 e mm 1286 1640 f mm 897 951 g mm 697 751 h mm 297 301 i mm 87 87 k mm 317 343 l mm 353 357 10 VIESMANN VITOCELL 300-V

Specification Vitocell 300-V (type EVI) (cont.) 0 litre capacity BÖ WW Z R HV/SPR 11 1667 d a 715 SPR HR 1012 802 8 Ø 100 476 498 102 3 KW/E 914 b BÖ E HR HV KW R Inspection and cleaning aperture Drain Heating water return Heating water flow Cold water Additional cleaning aperture or for immersion heater SPR Cylinder temperature sensor of the cylinder temperature controller or control thermostat (Connector R 1 with fem. reducer to R ½ for sensor well) WW DHW Z DHW circulation Cylinder capacity l 0 a mm 925 b mm 975 d mm 1738 Performance factor N L To DIN 4708. Cylinder storage temperature T cyl = cold water inlet temperature + K +5 K/-0 K Cylinder capacity l 200 300 0 Performance factor N L at heating water flow temperature 90 C 6.8 13.0 21.5 80 C 6.0 10.0 21.5 70 C 3.1 8.3 18.0 Information on the performance factor N L The performance factor N L varies according to the cylinder storage temperature T cyl. Standard values T cyl = C 1.0 N L T cyl = 55 C 0.75 N L T cyl = C 0.55 N L T cyl = C 0.3 N L Peak output (over 10 minutes) Relative to the performance factor N L. DHW heating from 10 to C. Cylinder capacity l 200 300 0 Peak output (l/10 min) at heating water flow temperature 90 C 340 475 627 80 C 319 414 627 70 C 233 375 566 VITOCELL 300-V VIESMANN 11

Specification Vitocell 300-V (type EVI) (cont.) Max. draw-off rate (over 10 minutes) Relative to the performance factor N L. With booster. DHW heating from 10 to C. Cylinder capacity l 200 300 0 Max. draw-off rate (l/min) at heating water flow temperature 90 C 34 48 63 80 C 32 42 63 70 C 23 38 57 Drawable water volume Cylinder volume heated to C. Without booster. Cylinder capacity l 200 300 0 Draw-off rate l/min 10 15 15 Drawable water volume Water at t = C (constant) l 139 272 4 Heat-up time The specified heat-up times will be achieved subject to the maximum continuous output of the DHW cylinder being made available at the relevant heating water flow temperature and when DHW is heated from 10 to C. Cylinder capacity l 200 300 0 Heat-up time (min.) at heating water flow temperature 90 C 14.4 15.5 20.0 80 C 15.0 21.5 24.0 70 C 23.5 32.5 35.0 12 VIESMANN VITOCELL 300-V

Specification Vitocell 300-V (type EVI) (cont.) Pressure drop 0 400 300 200 A B 100 80 40 30 100 20 80 10 8 Pressure drop in mbar 40 30 20 10 8 6 5 4 0 0 800 1000 2000 3000 4000 00 00 7000 Pressure drop in mbar 6 5 4 3 2 1 0 0 800 1000 2000 DHW throughput in l/h Pressure drop on the DHW side 3000 4000 00 00 Heating water volume in l/h of one cylinder cell. Pressure drop on the heating water side A Cylinder capacity 300 and 0 l B Cylinder capacity 200 l VITOCELL 300-V VIESMANN 13

Specification Vitocell 300-V (type EVI) (cont.) Continuous output Vitocell 300-V (type EVI) with 200 litre capacity Vitocell 300-V (type EVI) with 300 litre capacity Continuous output in kw 80 75 70 65 55 40 35 30 25 20 15 10 5 70 80 90 Heating water flow temperature... C 5.0 m³/h 254 mbar 3.0 m³/h 99 mbar DHW heating from 10 to... C 48 mbar 2.0 m³/h 1.0 m³/h 14 mbar Heating water volume... m³/h Pressure drop (heating water side)... mbar 0 0 5 10 15 20 25 30 35 40 Heating water temperature differential (ΔT) in K Continuous output in kw 100 95 90 85 80 75 70 65 55 40 35 30 25 20 15 10 5 70 80 Heating water flow temperature... C 5.0 m³/h 90 280 mbar 3.0 m³/h 110 mbar DHW heating from 10 to... C 1.0 m³/h 15 mbar Heating water volume... m³/h Pressure drop on the heating water side... mbar 0 0 5 10 15 20 25 30 35 40 Heating water temperature differential (ΔT) in K 1, 2, 3 see calculation example in chapter "Sizing" 14 VIESMANN VITOCELL 300-V

Specification Vitocell 300-V (type EVI) (cont.) Vitocell 300-V (type EVI) with 0 litre capacity Continuous output in kw 110 105 100 95 90 85 80 75 70 65 55 40 35 30 25 20 15 10 5 70 80 Heating water flow temperature... C 90 6.5 m³/h 430 mbar 5.0 m³/h 290 mbar 3.0 m³/h 108 mbar DHW heating from 10 to... C 1.0 m³/h 14 mbar Heating water volume... m³/h Pressure drop (heating water side)... mbar 0 0 5 10 15 20 25 30 35 40 Heating water temperature differential (ΔT) in K Delivered condition Vitocell 300-V, type EVI, internal indirect coil 200 and 300 litre capacity DHW cylinder made from high-alloy stainless steel with fitted thermal insulation. Connectors for cylinder temperature sensor or control thermostat Integral thermometer Threaded adjustable feet Packed separately and fitted to the crate: Female reducer R 1 ½ Sensor well Thermal insulation piece for the sensor well Colour of the epoxy-coated sheet steel casing: Vitosilver. Vitocell 300-V, type EVI, internal indirect coil 0 litre capacity DHW cylinder made from high-alloy stainless steel with separately packed thermal insulation. Connectors for cylinder temperature sensor or control thermostat Threaded adjustable feet Packed separately and fitted to the crate: Thermometer Female reducer R 1 ½ Sensor well Thermal insulation piece for the sensor well The colour of the plastic-coated thermal insulation is Vitosilver. VITOCELL 300-V VIESMANN 15

Specification cylinder bank (type EVI) The DHW cylinders Vitocell 300-V, type EVI with 300 and 0 l capacity can be combined into banks of up to 2 or 3 cylinders. The heating water and DHW headers are available from the factory. Order these headers separately. Cylinder banks consisting of more than 3 cylinders can be assembled from several cylinder banks of up to 3 cylinders each. The connection of these cylinder banks on the heating water and DHW side forms part of the installation work for which the customer is responsible. Specification For DHW heating in conjunction with boilers, district heating systems and low temperature heating systems; optionally with an immersion heater Suitable for systems with Heating water flow temperature/operating pressure on the heating water side up to 120 C/ 18 bar, 1 C/ 16 bar and 180 C/ 15 bar Operating pressure on the DHW side up to 10 bar Cylinder capacity l 300 0 Total cylinder bank capacity l 0 1000 10 Number of cylinders 2 2 3 Layout \\ \\ \\\ Continuous output *1 for DHW heating from 10 to C and a heating water flow temperature of... at the heating water throughput stated below Continuous output for DHW heating from 10 to C and a heating water flow temperature of... at the heating water throughput stated below 90 C kw 186 192 288 l/h 70 4716 7074 80 C kw 144 146 219 l/h 3538 3586 5379 70 C kw 104 112 168 l/h 2554 2752 4128 C kw 74 111 l/h 1474 1818 2727 C kw 30 36 54 l/h 736 884 1326 90 C kw 164 162 243 l/h 2820 2786 4179 80 C kw 118 124 186 l/h 2028 2132 3198 70 C kw 82 86 129 l/h 1410 1478 2217 Heating water throughput m 3 /h 10 13 19.5 for the stated continuous outputs Dimensions incl. thermal insulation Length (Ø) a mm 1461 1926 2914 Width b mm 1109 1278 1278 Height d mm 1779 1738 1738 Weight kg 2 270 410 DHW cylinders with thermal insulation and headers Heating water content l 30 37 58 incl. headers Heat transfer surface m 2 2.8 3.6 5.4 Connections Heating water flow and return DN Cold water, DHW R 1¼ 1¼ 1½ DHW circulation R 1¼ 1¼ 1¼ *1 When engineering systems with the specified or calculated continuous output, select a matching circulation pump. The stated continuous output is only achieved when the rated boiler heating output continuous output. 16 VIESMANN VITOCELL 300-V

Specification cylinder bank (type EVI) (cont.) Example: 0 l capacity WW WW l Z EL ehv E HR KW/E k i h g f d a c WW HR E a EL chv KW b b c c HR E EL HV KW Side view and plan view E Drain on the heating water side (female thread R ½) EL Air vent valve (female thread R ½) HR Heating water return HV Heating water flow KW/E Cold water and drain on the DHW side WW DHW Z DHW circulation Dimensions Cylinder capacity l 300 0 Total cylinder bank capacity l 0 1000 10 Number of cylinders 2 2 3 a mm 1461 1936 2924 b mm 1109 1278 1278 c mm 206 364 364 d mm 1779 1738 1738 e mm 1640 11 11 f mm 751 802 802 g mm 301 3 3 h mm 87 102 102 i mm 237 217 217 k mm 127 130 135 l mm 343 498 498 Performance factor N L to DIN 4708 Cylinder storage temperature = cold water inlet temperature + K +5 K/ 0 K Cylinder capacity l 300 0 Total cylinder bank capacity l 0 1000 10 Number of cylinders 2 2 3 Performance factor N L at heating water flow temperature 90 C 40 63 105 80 C 38 63 105 70 C 26 52 89 VITOCELL 300-V VIESMANN 17

Specification cylinder bank (type EVI) (cont.) Peak output (over 10 minutes) relative to performance factor N L DHW heating from 10 to C Cylinder capacity l 300 0 Total cylinder bank capacity l 0 1000 10 Number of cylinders 2 2 3 Peak output (l/10 min) at heating water flow temperature 90 C 898 1190 10 80 C 870 1190 10 70 C 698 10 1470 Max. draw-off rate (over 10 minutes) relative to performance factor N L With reheating DHW heating from 10 to C Cylinder capacity l 300 0 Total cylinder bank capacity l 0 1000 10 Number of cylinders 2 2 3 Max. draw-off rate (l/min) at heating water flow temperature 90 C 90 120 1 80 C 87 120 1 70 C 70 101 148 Drawable water volume Cylinder content heated to C Without reheating Cylinder capacity l 300 0 Total cylinder bank capacity l 0 1000 10 Number of cylinders 2 2 3 Draw-off rate l/min 30 30 Drawable water volume Water at t = C (constant) l 544 920 1380 Design information Connection on the DHW side Connection to DIN 1988 A DHW B DHW circulation pipe C DHW circulation pump D Spring-loaded check valve 18 VIESMANN VITOCELL 300-V

Design information (cont.) E Visible discharge pipe outlet F Safety valve G Shut-off valve H Flow regulating valve (We recommend installation and adjustment of the max. water flow rate in accordance with the 10 minute output of the DHW cylinder) K Pressure gauge connection L Non-return valve M Drain N Cold water O Drinking water filter *2 P Pressure reducer to DIN 1988-2, issue Dec. 1988 R Non-return valve/pipe separator S Diaphragm expansion vessel, suitable for drinking water The safety valve must be installed. Recommendation: Install the safety valve higher than the top edge of the cylinder. This protects the valve against contamination, scaling and high temperatures. The DHW cylinder will also not need to be drained when working on the safety valve. Sensor well Vitocell 300-V, type EVA, peripheral indirect coil, 130 to 200 l capacity a Ø 9 Ø 7 The sensor well is welded into the DHW cylinder. Cylinder capacity l 130 1 200 a mm 5 6 6 Vitocell 300-V, type EVI, internal indirect coil, 200 to 0 l capacity a Ø 19 Ø 17 For maximum operational reliability, the stainless steel sensor well provided should be used for the sensor or probe of the control equipment. If the sensor to be used is too large or small for this sensor well, use a different stainless steel sensor well (1.71 or 1.4435). R ½" b SW 24 Cylinder capacity l 200 300 0 a mm 220 220 330 b mm 200 200 310 Heating water flow temperatures in excess of 110 C For these operating conditions, DIN 4753 recommends the installation of a type-tested high limit safety cut-out in the cylinder, which limits the temperature to 95 C. Warranty Our warranty for DHW cylinders requires that the water to be heated meets the potable water quality in accordance with current Drinking Water Ordinance [Germany], and that existing water treatment systems work correctly. Heat transfer surface The corrosion-resistant, protected heat transfer surface (DHW/heat transfer medium) corresponds to type C to DIN 1988-2. Immersion heater When using third party products, the threaded immersion heater must have an unheated length of at least 100 mm. *2 According to DIN 1988-2, a drinking water filter should be installed in systems with metal pipework. In line with DIN 1988, Viessmann also recommend the installation of a drinking water filter when using plastic pipes to prevent contaminants entering the DHW system. VITOCELL 300-V VIESMANN 19

Design information (cont.) Technical guide For further information on design and sizing, see the technical guide "Central DHW heating with Vitocell DHW cylinders". Accessories Safety assembly to DIN 1988 Components: Shut-off valve Non-return valve and test nipple Pressure gauge connector Diaphragm safety valve From 300 litres cylinder capacity 10 bar: Part no. 7180 662 a 6 bar: Part no. 7179 666 DN 20/R 1 Max. heat input: 1 kw To 200 litre cylinder capacity 10 bar: Part no. 7219 722 a 6 bar: Part no. 7265 023 DN 15/R ¾ Max. heat input: 75 kw Temperature controller Vitocell 300: Type EVA: Part no. 7151 989 Type EVI: Part no. 7151 988 72 130 With a thermostatically controlled system. With selector on the outside of the casing. Without sensor well The sensor well is part of the standard delivery of Viessmann DHW cylinders. With top-hat rail to be fitted to the DHW cylinder or the wall. For installation in the DHW cylinder. 95 200-400 Part no. 7151989 With top-hat rail to be fitted to the DHW cylinder or the wall. 72 130 95 1400 Specification Connection 3-core cable with a cross-section of 1.5 mm 2 Protection IP 41 acc. to EN 529 Setting range 30 to C, adjustable to 110 C Switching differential max. 11 K Breaking capacity 6(1.5) A 2 V~ Switching function with rising temperature from 2 to 3 3 2 Part no. 7151988 For installation in the DHW cylinder. DIN reg. no. DIN TR 116807 or DIN TR 96808 1 20 VIESMANN VITOCELL 300-V

Accessories (cont.) Circulation pump for cylinder heating Part no. 7339 467 7339 468 7339 469 Pump type UP 25-40 VIRS 30/6-1 VI TOP-S 40/4 Voltage V~ 230 230 230 Power consumption W 55-65 110-140 155-195 Connection R 1 1¼ DN 40 Connection line m 4.7 4.7 4.7 for boilers up to 40 kw from 40 to 70 kw from 70 kw 6 5 180 237 4 3 B A Part no. 7339 467 and 7339 468 2 Head in m C 1 0 0 2 4 6 8 10 Pump rate in m³/h 220 258 A Part no. 7339 469 B Part no. 7339 468 C Part no. 7339 467 Part no. 7339 469 Immersion heater EHE for integration into the Vitocell 300-V (type EVI) Only use with soft to medium hard water up to 14 dh (hardness level 2, 2.5 mol/m 3 ) Current type and rated voltage 3/N/PE 400 V/ Hz IP rating: IP 54 Rated consumption in standard operation/during quick heat-up kw 2 4 6 Rated current A 8.7 8.7 8.7 Heat-up time for heating from 10 to C 200 l h 4.9 2.4 1.6 300 l h 7.3 3.6 2.4 0 l h 11.4 5.7 3.8 DHW cylinder with an EHE immersion heater Cylinder capacity l 200 300 0 Content that can be heated with an immersion heater l 162 256 390 Dimensions Width b (with immersion heater) mm 841 887 1137 Minimum wall clearance for the installation of an EHE mm 730 730 670 immersion heater Weight Vitocell 300-V kg 76 100 111 EHE immersion heater kg 2 2 2 Example: 300 l capacity VITOCELL 300-V VIESMANN 21

Accessories (cont.) b Vitocell 300-V with immersion heater b Total width incl. immersion heater EHE Subject to technical modifications. Viessmann Werke GmbH&Co KG D-35107 Allendorf Telephone: +49 62 70-0 Fax: +49 62 70-2780 www.viessmann.com Viessmann Limited Hortonwood 30, Telford Shropshire, TF1 7YP, GB Telephone: +44 1952 6700 Fax: +44 1952 6740 E-mail: info-uk@viessmann.com 22 VIESMANN VITOCELL 300-V