e-mp Series MPA, MPR, MPD, MPV Lenntech 50 Hz Tel Fax

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1 Hz e-mp Series MPA, MPR, MPD, MPV HIGH PRESSURE MULTISTAGE PUMPS ACCORDING TO ISO 199 Lenntech Tel Fax Cod Rev. A Ed.3/17

2 Xylect TM Xylect TM is pump solution software with an extensive online database of product information across the entire range of pumps and related products, with multiple search options and helpful project management facilities. The system holds up-to-date product information on thousands of products and accessories. Xylect TM can be available: For more information, please, see page Lowara, HYDROVAR, Xylect are trademarks or registered trademarks of Xylem Inc. or one of its subsidiaries. All other trademarks or registered trademarks are property of their respective owners

3 CONTENTS General introduction... Design version... General characteristics...7 Identification code...9 Identification code and design overview...1 Rating plate...11 Pump cross-section and main components...1 Table of materials...1 Mechanical seals... Pressure/temperature limit... Motors (ErP 9/1/EC)... Pumps (ErP 9/1/EC)...3 Hydraulic performance range at Hz...33 Operating characteristics at Hz, poles...3 Operating characteristics at Hz, poles... Dimensions and weights...7 e-mp with Hydrovar...9 Accessories...11 Report and declarations...1 Technical appendix

4 e-mp SERIES HYDRAULIC PERFORMANCE RANGE AT Hz, POLES e-mp ~ 9 [rpm] ISO 99: Q [Imp gpm] Q [US gpm] H [m] e-mp,, 1, 1, 1 (~9 rpm) Q [m 3 /h] Q [l/s] 3 1 A_A_CH HYDRAULIC PERFORMANCE RANGE AT Hz, POLES e-mp ~ 1 [rpm] ISO 99: Q [Imp gpm] Q [US gpm] H [m] 1 e-mp,, 1, 1, 1 (~1 rpm) 3 1 1,,,,,3, Q [m 3 /h] 3,1,, Q [l/s] 3 1 A_A_CH

5 e-mp SERIES High pressure multistage ring section pumps Markets and applications: General industry All productive industries, i.e. steel, sugar, timber, tire and rubber, pulp and paper, car, food and beverage. Applications: Cooling and heating circuits for industrial processes, sprinkler systems, washing/cleaning systems, firefighting systems, filter systems, water transport, booster systems, water treatment systems. tre- Oil and gas on-shore platform, off-shore platforms, refineries, fracking. Applications: Transport of crude oil, sea water/water injection, firefighting systems, water transport, water atment. Power plants Renewable energy, hydropower, biomass, geothermal, fossil power. Applications: Boiler feed, condensate pumping, deaerator, water injection, water transport, auxiliary systems, firefighting systems, cooling and heating circuits, district cooling and heating system. Mining Applications: Dewatering (filtered water), water transport, firefighting systems. Agriculture Applications: water transport, irrigation. Leisure industry i.e. skiing resorts, leisure parks, spas. Applications: snow making (feeding the snow canons), water transport, water boosting. Public utilities i.e. water works, desalination plants, drainage and flood protection, tunnels. Applications: District cooling and heating systems, water transport, water treatment systems, desalinization, reverse osmosis, nanofiltration, firefighting systems, booster systems. Commercial building service Applications: Water transport, booster systems, firefighting systems, HVAC systems. Others i.e. Auxiliary applications in chemical Industry, all water boosting applications. Applications: Boiler feed, condensate pumping, deaerator, water injection, water transport, auxiliary systems, firefighting systems, cooling and heating circuits, district cooling and heating system. Pumpable fluids: Water Grey/used water Ground water Potable water Thermal water Sea water in all regions Brackish water Feed water Hot water Condensate Cooling/heating water Solvents Lubricants Crude oil Oil emulsions Fuels Pumpable fluids: The e-mp series is a highly efficient and flexible multistage ring section pump. mechanical models build the basic platform for various horizontal and vertical configurations to meet requirements for the defined markets, applications and liquids.

6 e-mp SERIES DESIGN VERSIONS Model MPA CONFIGURATION DESCRIPTION Closed radial Impeller and U-turn diffuser design Horizontal shaft design Axial suction nozzle Radial discharge nozzle (left, top, right) Drive on discharge side Radial/Axial roller bearing on drive side Plain bearing on suction side Axial thrust balancing by drum design Shaft sealing on discharge side only Bare shaft or pump unit Driver: electric motor - IEC or NEMA standard IC-engine, turbine Temperature range: (-) -1 C to 1 C (1 C) Inlet pressure: up to 1 bar Model MPR Model MPD Model MPV Closed radial Impeller and U-turn diffuser design Horizontal shaft design Axial suction nozzle Radial suction nozzle (left, top, right) Radial discharge nozzle (left, top, right) Drive on discharge side Radial/Axial roller bearing on drive side Plain bearing on suction side Axial thrust balancing by drum design Shaft sealing on discharge side only Bare shaft or pump unit Driver: electric motor - IEC or NEMA standard IC-engine, turbine Temperature range: (-) -1 C to 1 C (1 C) Inlet pressure: up to 1 bar Closed radial Impeller and U-turn diffuser design Horizontal shaft design Axial suction nozzle Radial suction nozzle (left, top, right) Radial discharge nozzle (left, top, right) Drive on discharge side (optional suction side) Radial/Axial roller bearing on drive side Radial roller bearing on suction side Axial thrust balancing by drum design Shaft sealing on suction and discharge side Bare shaft or pump unit Driver: electric motor - IEC or NEMA standard IC-engine, turbine Temperature range: (-) -1 C to 1 C (1 C) Inlet pressure: up to bar Closed radial Impeller and U-turn diffuser design Vertical shaft design Radial suction nozzle ( ) Radial discharge nozzle ( ) Drive on discharge side Radial/Axial roller bearing on drive side Plain bearing on suction side Axial thrust balancing by drum design Shaft sealing on discharge side only Bare shaft or pump unit Driver: electric motor - IEC or NEMA standard up to 3kW (kw) Temperature range: (-) -1 C to 1 C Inlet pressure: up to 1 bar En-Rev_A

7 e-mp SERIES GENERAL CHARACTERISTICS MP_models--en_a_sc Operating data Data Mechanical sizes Power Heads Flows Value DN to DN1 -pole operation: 7,kW to 1.kW (-pole) / 1hp to 1.7hp -pole operation:,kw to kw (-pole) / 3hp to hp up to 9m / 3.1ft up to m³/h / 3.7USg.p.m Temperature - C to + 1 C, optional 1 C / -13 F to + F, optional 3 F Operating pressures up to 1 bar / 1.psi En-Rev_A 7

8 e-mp SERIES GENERAL CHARACTERISTICS Operating range by size and design 1 bar 1 psi size DN DN DN1 DN1 DN1 1 bar 1 psi 3 bar 91 psi 3 bar 91 psi nominal pressure bar psi bar psi bar 33 psi bar 33 psi DN DN DN1 DN1 DN1 size

9 e-mp SERIES IDENTIFICATION CODE M P A 1 B / A / B D / W V C C C Pump Type [ digits] [MP] = Highly efficient and flexible multistage ring section pump, the new member of Xylem s e-product range Configuration [1 digit] [A] = Horizontal design Axial suction, radial discharge 1 Roller bearing discharge side 1 Slide bearing suction side [R] = Horizontal design Radial suction and discharge 1 Roller bearing discharge side 1 Slide bearing suction side [V] = Vertical design Radial suction and discharge 1 Roller bearing discharge side 1 Slide bearing suction side [D] = Horizontal design Radial suction and discharge Roller bearings, Double bearing Optional configuration/design [1 digit] [ ] = Standard [H] = Equipped with Hydrovar [X] = Other Drives [M] = Multioutlet Pump Diameter of discharge nozzle and hydraulic identifier [3 to digits], e.g. 1B: Discharge diameter = 1 mm Hydraulic B for the size 1 Note: Each size has hydraulics (A and B) to cover a wider range of flow at high efficencies. Number of stages/impellers [ digits], e.g.: [] = stages [1] = 1 stages Pressure rate suction nozzle, standard [1 digit] [A] = 1 bar, EN [B] = 1 bar, EN [C] = bar, EN [D] = bar, EN [E] = 3 bar, EN [R] = CL1, ASME [S] = CL3, ASME Pressure rate discharge nozzle, standard [1 digit] [A] = 1 bar, EN [B] = 1 bar, EN [C] = bar, EN [D] = bar, EN [E] = 3 bar, EN [F] = 1 bar, EN [R] = CL1, ASME [S] = CL3, ASME [T] = CL, ASME Motor power [ to digits] kw x 1, e.g.: [] = kw Motor type [ digits] [P] = PLM [W] = WEG [X] = Other [-] = Motor not part of scope or supplied by customer N of poles [1 digit] [] = poles [] = poles Type of seal [1 digit] [ ] = Mechanical seal, standard [C] = Cartridge seal [P] = Soft packing Materials mech seal + O-ring [1 digit] [] = Carbon/SiC/EPDM [] = Carbon/SiC/FKM* [Z] = SiC/SiC/EPDM [W] = SiC/SiC/FPM [N] = Tungsten carbide/ SiC/FKM* [X] = Others [-] = Soft packing * FPM (old ISO), FKM (ASTM & new ISO) Material diffuser [1 digit] [C] = Cast iron [N] = Stainless steel [R] = Duplex [T] = Super duplex [X] = Others Material impeller [1 digit] [C] = Cast iron [B] = Bronze [N] = Stainless steel [R] = Duplex [T] = Super duplex [X] = Others Material pumphousing: Suction, discharge and stage casing [1 digit] [C] = Cast iron [D] = Ductile iron [F] = Cast steel [N] = Stainless steel [R] = Duplex [T] = Super duplex [X] = Others Combination of full and trimmed impellers [1 digit]: [A] = all impeller full diameter [B] = trimmed/full impellers combination 1 [C] = trimmed/full impellers combination [D] = trimmed/full impellers combination 3 [E] = trimmed/full impellers combination [X] = duty point trimmed EXAMPLES: Pump mounted on frame coupled with motor MPA1B/A/BD/WVCCC Frequency and power supply [ digits] Hz [R]= 3x-/3-1V [V]= 3x3-1/-9V [P]= 3x-/3-3V [S]= 3x-/-V [T]= 3x9-3/-V [W]= 3x-/- [X]= Other Voltage [-] = Motor not part of scope or supplied by customer Hz [P]= 3x-3/3- [R]= 3x-77/-V [V]= 3x-/- [U]= 3x3-/-9V [N]= 3x-/3-3V [T]= 3x33-3/7-V [X]= Other voltage [-] = Motor not part of scope or supplied by customer Series e-mp, horizontal configuration, axial suction inlet, radial discharge nozzle, size DN1, hydraulic B, stages/impellers, all impellers with full diameter, 1 bar suction nozzle, bar discharge nozzle, coupled with a kw motor from WEG with poles for Hz 3x3-1/-9V supply, frame mounted, suction and discharge casing material made of cast iron, impellers and diffusers made of cast iron, mechanical seal Carbon/SiC, o-rings made of EPDM, mechanical seal. Pump mounted on frame, with coupling, motor not part of scope or supplied by customer MPA1B/A/BD/--CCC Series e-mp, horizontal configuration, axial suction inlet, radial discharge nozzle, size DN1, hydraulic B, stages/impellers, all impellers with full diameter, 1 bar suction nozzle, bar discharge nozzle, frame mounted, coupling and coupling guard included, prepared to assemble a kw, pole motor, Hz, suction and discharge casing material made of cast iron, impellers and diffusers made of cast iron, mechanical seal Carbon/SiC, o-rings made of EPDM, mechanical seal. Bareshaft pump MPA1B/A/BD/--CCC Series e-mp, horizontal configuration, axial suction inlet, radial discharge nozzle, size DN1, hydraulic B, stages/impellers, all impellers with full diameter, 1 bar suction nozzle, bar discharge nozzle, pole motor, Hz, suction and discharge casing material made of cast iron, impellers and diffusers made of cast iron, mechanical seal Carbon/SiC, o-rings made of EPDM, mechanical seal. 9

10 e-mp SERIES IDENTIFICATION CODE and design overview Example: MPA1B/A/BD/WVCCC Digits Description MP Highly efficient and flexible multistage ring section pump Various design features for optimized efficiency values over the complete performance range offering configuration flexibility for a wide range of applications in different markets. A Mechanical model Total models to meeting different installation requirements 3 horizontal models: MPA, MPR, MPD 1 vertical model: MPV Pumphousing: Suction casings are available with radial and axial arranged nozzles Discharge casings are available with radial arranged nozzels Radial casing nozzles (suction and discharge) can be turned in 9 C steps Sealing: by O-rings Bearings: Depending on mechanical model: Drive end: Roller bearing (grease or oil lubricated) Non drive end: Roller bearing (grease or oil lubricated) or plain bearing (lubricated by pumped liquid) Coupling and Coupling Guard: Horizontal models: Flexible coupling with and without spacer Vertical model: Close coupled with flexible coupling. 1 Mechanical size (nominal discharge nozzle diameter in mm) Total mechanical sizes: DN, DN, DN1, DN1, DN1 to cover best efficiencies points (BEP) over the flow performance range. B Hydraulic identifier Total 1 hydraulics: hydraulics (A,B) by mechanical size to increase the coverage of best efficiency points (BEP) over the flow performance range. A Number of stages and impeller trimming identification Up to 1 stages (mechanical size ) standard impeller trimmings and optional trim of impellers exactly to the required duty point for an optimized efficiency. Impeller design: closed radial with curved vanes. BD Nominal pressure identification for suction and discharge pumphousing Housing for nominal pressures, flanges are available for EN and ASME standard: EN: 1, 1,,, 3, 1bar ASME: CL1, CL3, CL. Motor power kw x 1 W Motor type and number of poles standard IEC and NEMA motors with and poles engineered to order drive options: diesel engine, turbine. V Frequency and power supply identification Hz and Hz 3 phase power supply for various voltages, up to high voltage. CCC Material identification for pumphousing (suction, discharge and stage casing), impeller and diffuser Pumphousing: cast iron, ductile iron, steel, stainless steel (AISI 31), duplex stainless steel, super duplex stainless steel Impeller: cast iron, bronze, stainless steel (AISI 31), duplex stainless steel, super duplex stainless steel diffusor: cast iron, stainless steel (AISI 31), duplex stainless steel, super duplex stainless steel. ( ) Material identification for mechanical seal and O-ring and type of seal Elastomers: EPM, FKM Shaft sealing: mechanical seal (EN 17), cartridge seal (single, single quench, double) packing. En-Rev_A 1

11 e-mp SERIES RATING PLATE ELECTRIC PUMP PUMP ONLY No/Date REGULATION (EU) No 7/1 Code PN kpa t max C t min C kg ØF mm ØT mm Q m3/h H m n 1/min Pmax kw ØF MEI ØT np% REGULATION (EU) No 7/ LEGEND 1 - Electric pump unit type - Electric pump unit code 3 - Flow range - Head range - Nominal or maximum pump power - Speed 7 - Serial number, or order number + order position number 9 - Full impeller diameter (only filled in for trimmed impellers) 1 - Trimmed impeller diameter (only filled in for trimmed impellers) 11 - Minimum operating liquid temperature 1 - Maximum operating liquid temperature 13 - Maximum operating pressure 1 - Hydraulic efficiency in best efficiency point ( Hz) 1 - Minimum efficiency index MEI, as per Regulation (EU) No 7/1 ( Hz) 19 - Weight LEGEND 1 - Pump type - Pump code 3 - Flow range - Head range - Maximum absorbed pump power - Speed 7 - Serial number, or order number + order position number 9 - Full impeller diameter (only filled in for trimmed impellers) 1 - Trimmed impeller diameter (only filled in for trimmed impellers) 11 - Minimum operating liquid temperature 1 - Maximum operating liquid temperature 13 - Maximum operating pressure 1 - Hydraulic efficiency in best efficiency point ( Hz) 1 - Minimum efficiency index MEI, as per Regulation (EU) No 7/1 ( Hz) 19 - Weight Note for electric pump unit: refer to motor data plate for electrical data. 11

12 MPA SERIES ELECTRIC PUMP CROSS-SECTION AND MAIN COMPONENTS 1

13 MPR SERIES ELECTRIC PUMP CROSS-SECTION AND MAIN COMPONENTS 13

14 MPD SERIES ELECTRIC PUMP CROSS-SECTION AND MAIN COMPONENTS 1

15 MPV SERIES ELECTRIC PUMP CROSS-SECTION AND MAIN COMPONENTS 1

16 e-mp SERIES TABLE OF MATERIAL REFERENCE STANDARDS EUROPE USA *) MP_materials--en_a_tc e-mp SERIES TABLE OF MATERIAL CODE MP_material-en_a_tc 1

17 e-mp SERIES TABLE OF MATERIALS CAST IRON VERSION MP-cast_iron-en_a_tm 17

18 e-mp SERIES TABLE OF MATERIALS DUCTILE IRON VERSION MP-ductile_iron-en_a_tm 1

19 e-mp SERIES TABLE OF MATERIALS STAINLESS STEEL VERSION MP-stainless_steel-en_a_tm 19

20 e-mp SERIES MECHANICAL SEALS (Mechanical seal with mounting dimensions according to EN 17 and ISO 39 WITH L 1K ) LIST OF MATERIALS MP_Mech_Seal-en_a_tm TYPE OF SEAL TABLE OF DIMENSIONS MP_Mech_Seal-en_a_tc MP_MS_dim-en_a_td

21 e-mp SERIES MECHANICAL SEAL SELECTION DIAGRAM P IN...Pump inlet pressure at suction flange [bar] MP_Mech_Seal-en_a_td LIMIT CURVES DEPENDING ON PUMP HYDRAULICS AND MOTOR SPEED MP_Limit_Mech_Seal-en_a_td GENERAL CONSIDERATIONS This diagram and selection table is valid for clean water (solids < 1 mg/l) or water for feeding boilers, partially or totally demineralized. If the water temperature exceeds C, minimum inlet pressure must be guaranteed. 1

22 e-mp SERIES PRESSURE / TEMPERATURE LIMITS FOR PUMP FLANGES ACCORDING TO EN 19 AND CASING MATERIAL Material: Cast Iron - EN-GJL- 7 Material: Ductile Iron - EN-GJS--1 PN 3 - EN19 PN - EN19 3 p [bar] PN - EN19 PN 1 - EN19 p [bar] 3 PN - EN19 PN - EN19 PN 1 - EN19 PN 1 - EN PN 1 - EN T [ C] T [ C] 7 Material: Cast steel (1.19) Material: Austenitic Stainless steel (1.) PN 3 - EN19 PN - EN19 p [bar] 3 PN - EN19 PN - EN19 3 p [bar] PN - EN19 PN 1 - EN19 PN 1 - EN19 PN 1 - EN19 1 PN 1 - EN T [ C] T [ C]

23 e-mp SERIES PRESSURE / TEMPERATURE LIMITS FOR PUMP FLANGES ACCORDING TO ASME B1. AND CASING MATERIAL Material: Cast Iron - EN-GJL- 7 Material: Ductile iron - EN-GJS--1 CLASS 3 - ASME B1. Flange drilled according CLASS 3 CLASS 3 - ASME B1. p [bar] CLASS 1 - ASME B1. p [bar] 3 1 CLASS 1 - ASME B T [ C] T [ C] Material: Austenitic Stainless steel (1.) 7 Material: Austenitic Stainless steel (1.17) & Super Duplex (1.9) CLASS - ASME B1. CLASS 3 - ASME B1. CLASS 3 - ASME B1. 3 p [bar] CLASS 1 - ASME B1. p [bar] 3 CLASS 1 - ASME B T [ C] T [ C] 3

24 ErP 9/1/EC e-mp SERIES MOTORS With the Energy using Products (EuP /3/EC) and Energy related Products (ErP 9/1/EC) directives, the European Commission has established requirements for promoting the use of products with low power consumption. The various products considered include three-phase Hz surface motors with power outputs ranging from,7 to 37 kw, also when integrated with other products, with characteristics as defined by the specific Regulations (EC) No /9 and (EU) No /1 implementing the requirements of the EuP and ErP Directives. In accordance with regulations, the three-phase Hz surface motors with power outputs ranging from,7 to 37 kw have IE3 as minimum level of efficiency or IE fitted with variable speed drive. IE motor can be supplied without frequency converter as the obligation to have that device is related to when the motor is working and not when placed on the market. Short-circuit squirrel-cage motor, enclosed construction with external ventilation (TEFC). Rated power from to 1 kw for -pole range and from 1,1 to 3 kw for -pole range. IP protection degree. Insulation class 1 (F). Standard three-phase surface motors,7 kw and < 37 kw supplied as IE3. IE efficiency level according to EN 3-3:9 and EN 3-3-1:1 (,7 kw and < 3 kw). Electrical performances according to EN 3-1. Metric cable gland according to EN. Standard voltage Three-phase version: -/3-1 V Hz for power up to 3 kw. 3-1/-9 V Hz for power above 3 kw. Overload protection to be provided by the user. PTC included as standard only for WEG motors (one per phase, 1 C). Maximum ambient temperature: C.

25 e-mp SERIES THREE-PHASE MOTORS AT Hz, POLES (from, to 1, kw) η ϕ V

26 e-mp SERIES THREE-PHASE MOTORS AT Hz, POLES (from to kw) η ϕ V

27 e-mp SERIES THREE-PHASE MOTORS AT Hz, POLES (from to 3 kw) η ϕ ϕ (/) V 7

28 e-mp SERIES THREE-PHASE MOTORS AT Hz, POLES (from 71 to 1 kw) η ϕ ϕ (/) V

29 e-mp SERIES THREE-PHASE MOTORS AT Hz, POLES (from, to 1 kw) η ϕ V 9

30 e-mp SERIES THREE-PHASE MOTORS AT Hz, POLES (from 1, to kw) η ϕ V 3

31 NOISE LEVEL The tables below show the mean sound pressure levels (Lp) measured at 1 meter s distance in a free field according to the A curve (ISO 1 standard). The noise values are indicated with a tolerance of 3 db (A). NOISE LEVEL OF PUMP WITH STANDARD MOTOR NOISE LEVEL OF PUMP WITHOUT MOTOR 31

32 ErP 9/1/EC e-mp SERIES PUMPS With the Energy using Products (EuP /3/EC) and Energy related Products (ErP 9/1/EC) directives, the European Commission has established requirements for promoting the use of products with low power consumption. The Commission Regulation (EU) No 7/1 has implemented two directives with regard to ecodesign requirements for some types of clean water pumps placed on the market and put into service inside EU zone as stand-alone units or integrated in other products. For multistage vertical water pumps (MS-V for the Regulation) the efficiency assessment refers to: just the pump and not the pump and motor assembly (electric or combustion); pumps with more than one impeller; pumps with impellers mounted on a vertical shaft; pumps with a nominal pressure PN not higher than bar ( kpa); pumps with a maximum nominal flow not greater than 1 m3/h (7,7*1-3 m3/s); pumps designed to operate at a speed of 9 rpm (for electric pumps this means Hz -pole electric motors); use with clean water at a temperature ranging from -1 C to 1 C (the test is performed with cold water at a temperature not higher than C). According to the definitions established in the Regulation MPV versions correspond to the multistage vertical pump while designs MPA, MPD and MPR as well as all MPV with nominal head higher than bar do not fall under this regulation. This regulation states that water pumps shall have a minimum index MEI coming from a dedicated formula which considers hydraulic efficiency values at best efficiency point (BEP), 7 % of the flow at BEP (Part load PL) and 11 % of the flow at BEP (Over load OL). The Regulation also establishes the following deadlines. from minimum efficiency index (MEI) 1 st January 1 MEI, Regulation (EU) n. 7/1 Annex II point (Product information requirements) 1. Minimum efficiency index: see MEI values in specific table below.. The benchmark for most efficient water pumps is MEI,7. 3. Year of manufacture: 17.. Manufacturer: Xylem Service Italia Srl - Reg. No Montecchio Maggiore, Vicenza, Italy.. Product type: see the PUMP TYPE column in the tables in the Hydraulic performance section.. Hydraulic pump efficiency with trimmed impeller: see hp and ØT columns in the tables in the Hydraulic performance section. 7. Pump performance curves, including the performance curve: see the Operating Characteristics graphs in the following pages.. The efficiency of a pump with a trimmed impeller is usually lower than that of a pump with the full impeller diameter. The trimming of the impeller will adapt the pump to a fixed duty point, leading to reduced energy consumption. The minimum efficiency index (MEI) is based on the full impeller diameter of a single stage. 9. The operation of this water pump with variable duty points may be more efficient and economic when controlled, for example, by the use of a variable speed drive that matches the pump duty to the system. 1. Information relevant for disassembly, recycling or disposal at end-of-life: observe the current laws and by-laws governing sorted waste disposal. Consult the product operating manual. 11. Designed for use below 1 C only : note not applicable to these products. 1. Designed for use above 1 C only : note not applicable to these products. 13. Specific instructions for pumps as per points 11 and 1: not applicable to these products. 1. Information on benchmark efficiency is available at : (Ecodesign section). 1. The benchmark efficiency graphs with MEI =.7 and MEI =. are available at Ecodesign, Efficiency charts (refer to MS-V ). MINIMUM EFFICIENCY INDEX (MEI) PUMP SIZE Minimum efficiency index (MEI) MPVA,7 MPVB,7 MPVA,7 MPVB,7 3

33 e-mp SERIES HYDRAULIC PERFORMANCE RANGE AT Hz, POLES e-mp ~ 9 [rpm] ISO 99: Q [Imp gpm] Q [US gpm] A B 1A 1B 1A 1B 1A H [m] A B A B 1A 1B 1A 1B 1A 1B Q [m 3 /h] Q [l/s] 3 1 A3_A_CH HYDRAULIC PERFORMANCE RANGE AT Hz, POLES e-mp ~ 1 [rpm] ISO 99: Q [Imp gpm] Q [US gpm] H [m] A B A B 1A 1B 1A 1B 1A 1B 1,,,,,3,, Q [m 3 /h] 3,, Q [l/s] 3 1 A_A_CH 33

34 SERIES OPERATING CHARACTERISTICS AT Hz, POLES /1 ~ 9 [rpm] ISO 99:1 - Grade B / ~ 9 [rpm] ISO 99:1 - Grade B 1 1 Q [Imp gpm] 1 1 Q [Imp gpm] 1 1 Q [US gpm] Ø19 Ø17 7, Ø1, 7 3,3 1A 1B 1C Q [US gpm] xø 7 xø17 33 xø1,, 13 3,3 133 A 3 B 3 1 C 1 1 1A 1B 3 1C Q [m /h] Q [l/s] -1_Hz A A 1 B 1 C 1 3 Q [m 3 /h] Q [l/s] 1 -_Hz A /3 ~ 9 [rpm] ISO 99:1 - Grade B / ~ 9 [rpm] ISO 99:1 - Grade B 1 1 Q [Imp gpm] 1 1 Q [Imp gpm] 1 1 Q [US gpm] 1 3xØ xØ19/xØ17 1xØ19/xØ1 1, 9 7, 3 31, 7 1 3A 1 3B 3C Q [US gpm] 1 xø19 1 xø19/xø17 1 xø17 1, 1 7,7 1 A C B , C A 1 1 3B 1 3C Q [m 3 /h] Q [l/s] -3_Hz A A 1 B C Q [m 3 /h] Q [l/s] -_Hz A These performances are valid for cold water with density ρ = 1. Kg/dm 3 and viscosity ν = 1 mm /sec. 3

35 SERIES OPERATING CHARACTERISTICS AT Hz, POLES / ~ 9 [rpm] ISO 99:1 - Grade B / ~ 9 [rpm] ISO 99:1 - Grade B 1 1 Q [Imp gpm] 1 1 Q [Imp gpm] 1 1 Q [US gpm] xø xØ19/xØ17 1 1xØ19/xØ ,9 7,1 31, C B A Q [US gpm] xø19 3 xø19/xø17 xø19/xø , 7, 7, 3 C B A A B 7 C Q [m 3 /h] Q [l/s] -_Hz A 3 A 37 C B Q [m 3 /h] Q [l/s] -_Hz A /7 ~ 9 [rpm] ISO 99:1 - Grade B / ~ 9 [rpm] ISO 99:1 - Grade B 1 1 Q [Imp gpm] 1 1 Q [Imp gpm] 1 1 Q [US gpm] 7xØ xø19/xø17 3xØ19/xØ17,,1 7, Q [US gpm] xø19 11 xø19/xø17 xø19/xø17,,1 7, C 7B 7A 1 1 C B A A 3 7B 7C Q [m /h] Q [l/s] -7_Hz B 3 A 7 B 3 C Q [m 3 /h] Q [l/s] -_Hz A These performances are valid for cold water with density ρ = 1. Kg/dm 3 and viscosity ν = 1 mm /sec. 3

36 SERIES OPERATING CHARACTERISTICS AT Hz, POLES /9 ~ 9 [rpm] ISO 99:1 - Grade B /1 ~ 9 [rpm] ISO 99:1 - Grade B 1 1 Q [Imp gpm] 1 1 Q [Imp gpm] 1 1 Q [US gpm] 3 9xØ19 7xØ19/xØ17 xø19/xø ,, 7 9 7, C 17 9B 9A A 3 9B 3 9C Q [m 3 /h] Q [l/s] 1-9_Hz A 1 1 Q [US gpm] 19 1xØ19 xø19/xø xø19/xø17 7,9 1C 1B 3 1A 1B 1C Q [m /h] Q [l/s],, 1A _Hz A /11-1 ~ 9 [rpm] ISO 99:1 - Grade B 1 1 Q [Imp gpm] 1 1 Q [US gpm] 1xØ19 1xØ19 13xØ19 1xØ19,, 11xØ19,, , A 1A 13A 1A 11A A 1A 13A 1A 11A Q [m 3 /h] Q [l/s] _Hz A These performances are valid for cold water with density ρ = 1. Kg/dm 3 and viscosity ν = 1 mm /sec. 3

37 e-mpb SERIES OPERATING CHARACTERISTICS AT Hz, POLES e-mpb/1 ~ 9 [rpm] ISO 99:1 - Grade B e-mpb/ ~ 9 [rpm] ISO 99:1 - Grade B 1 1 Q [Imp gpm] 1 1 Q [Imp gpm] Q [US 3 gpm] Ø Ø , Ø19 7, ,7 7 1A 1 1B 3 1 1C A 7 1B 1C Q [m /h] 1 1 Q [l/s] e-mpb-1_hz A Q [US 3 gpm] 9 xø xø11 7 7, xø19 1 7,1,7 1 A 11 3 B C A 1 B 13 C Q [m 3 /h] 1 1 Q [l/s] e-mpb-_hz A e-mpb/3 ~ 9 [rpm] ISO 99:1 - Grade B e-mpb/ ~ 9 [rpm] ISO 99:1 - Grade B 1 1 Q [Imp gpm] 1 1 Q [Imp gpm] Q [US 3 gpm] 13 3xØ xØ173/xØ xØ173/xØ19 7,9 9 7, , A 3B 1 3C Q [US gpm] 3 1 xø173 1 xø173/xø11 xø11 1 7, 1 73, 7,1 3 1 A B C 1 3 e-mpr, e-mpd, e- 9 e-mpr, e-mpd, e A 1 3B 3C Q [m 3 /h] 1 1 Q [l/s] e-mpb-3_hz A A 3 B C Q [m 3 /h] 1 1 Q [l/s] e-mpb-_hz A These performances are valid for cold water with density ρ = 1. Kg/dm 3 and viscosity ν = 1 mm /sec. 37

38 e-mpb SERIES OPERATING CHARACTERISTICS AT Hz, POLES e-mpb/ ~ 9 [rpm] ISO 99:1 - Grade B e-mpb/ ~ 9 [rpm] ISO 99:1 - Grade B 1 1 Q [Imp gpm] 1 1 Q [Imp gpm] Q [US gpm] 3 xø173 3xØ173/xØ11 1xØ173/xØ , 73, , Q [US gpm] 3 xø173 1 xø173/xø xø173/xø , 73, 19 73, C B A C B e-mpr, e-mpd, e- A A B 3 C Q [m /h] 1 1 Q [l/s] e-mpb-_hz A 3 3 A B 3 C Q [m 3 /h] 1 1 Q [l/s] e-mpb-_hz A e-mpb/7 ~ 9 [rpm] ISO 99:1 - Grade B e-mpb/ ~ 9 [rpm] ISO 99:1 - Grade B 1 1 Q [Imp gpm] 1 1 Q [Imp gpm] Q [US gpm] 3 3 7xØ xø173/xø11 3xØ173/xØ11 7, 73,9 73, 9 7 7C 7B 7A 3 7A 7B 7C Q [m /h] 1 1 Q [l/s] 1 e-mpb-7_hz A Q [US 3 gpm] xø xø173/xø11 xø173/xø , 7, 73, C 1 B A 1 e-mpr, e-mpd, e- A B C Q [m 3 /h] 1 1 Q [l/s] 1 e-mpb-_hz A These performances are valid for cold water with density ρ = 1. Kg/dm 3 and viscosity ν = 1 mm /sec. 3

39 e-mpb SERIES OPERATING CHARACTERISTICS AT Hz, POLES e-mpb/9 ~ 9 [rpm] ISO 99:1 - Grade B e-mpb/1 ~ 9 [rpm] ISO 99:1 - Grade B 1 1 Q [Imp gpm] 1 1 Q [Imp gpm] Q [US gpm] xØ xØ173/xØ xø173/xø , 7, , Q [US gpm] 3 1xØ xø173/xø11 xø173/xø , 7, , C 9B e-mpr, e-mpd, e- 9A C 1B 1A A 9C 9B Q [m 3 /h] 1 1 Q [l/s] e-mpb-9_hz A 7 7 1A 1B 77 1C Q [m /h] 1 1 Q [l/s] e-mpb-1_hz A e-mpb/11-1 ~ 9 [rpm] ISO 99:1 - Grade B 1 1 Q [Imp gpm] Q [US 3 gpm] 1xØ xØ173 13xØ173 1xØ173 11xØ173 7, 7, 7, , 7, A 1A 13A 1A 11A e-mpr, e-mpd, e A 1A 13A 1A 11A Q [m 3 /h] Q [l/s] e-mpb-11-1_hz A These performances are valid for cold water with density ρ = 1. Kg/dm 3 and viscosity ν = 1 mm /sec. 39

40 SERIES OPERATING CHARACTERISTICS AT Hz, POLES /1 ~ 9 [rpm] ISO 99:1 - Grade B 1 3 Q [Imp gpm] 1 3 Q [US gpm] 3 1 Ø Ø19 Ø , , A B C Q 1 [m 3 /h] 7, 7 1C 7 1B 1A Q [l/s] _Hz A / ~ 9 [rpm] ISO 99:1 - Grade B 1 3 Q [Imp gpm] 1 3 Q [US gpm] 1 xø xØ/1xØ , 9 xø17 73,3 7 9,7 1 1 A B C A B C Q [m1 3 /h] Q [l/s] _Hz A /3 ~ 9 [rpm] ISO 99:1 - Grade B 1 3 Q [Imp gpm] 1 3 Q [US gpm] 1 3xØ 1 / ~ 9 [rpm] ISO 99:1 - Grade B 1 3 Q [Imp gpm] 1 3 Q [US gpm] xø xø/1xø17 1xØ/xØ17 7, 7, 7, xØ/1xØ17 xø/xø17 7, 7,9 73, C 3B 3A C B A A 3B 3 3 3C Q [m1 3 /h] Q [l/s] -3_Hz A A 3 B C Q [m 3 1 /h] Q [l/s] -_Hz A These performances are valid for cold water with density ρ = 1. Kg/dm 3 and viscosity ν = 1 mm /sec.

41 SERIES OPERATING CHARACTERISTICS AT Hz, POLES / ~ 9 [rpm] ISO 99:1 - Grade B e-mpb/ ~ 9 [rpm] ISO 99:1 - Grade B 1 3 Q [Imp gpm] 1 1 Q [Imp gpm] 1 3 Q [US gpm] 3 xø 9 xø/1xø17 3xØ/xØ17 7, 7, 7, Q [US gpm] 3 xø173 1 xø173/xø xø173/xø , 73, 19 73, C B 3 1 A A B C Q 1 [m 3 /h] Q [l/s] 1 -_Hz A C B A 31 e-mpr, e-mpd, e- 3 3 A B 3 C Q [m 3 /h] 1 1 Q [l/s] 1 e-mpb-_hz A /7 ~ 9 [rpm] ISO 99:1 - Grade B / ~ 9 [rpm] ISO 99:1 - Grade B 1 1 Q [Imp gpm] 1 1 Q [Imp gpm] 1 1 Q [US gpm] 7xØ xø19/xø17 3xØ19/xØ17,,1 7, Q [US gpm] xø19 11 xø19/xø17 xø19/xø17,,1 7, C 7B 7A 1 1 C B A A 3 7B 7C Q [m /h] Q [l/s] -7_Hz B 3 A 7 B 3 C Q [m 3 /h] Q [l/s] -_Hz A These performances are valid for cold water with density ρ = 1. Kg/dm 3 and viscosity ν = 1 mm /sec. 1

42 SERIES OPERATING CHARACTERISTICS AT Hz, POLES /9 ~ 9 [rpm] ISO 99:1 - Grade B 1 3 Q [Imp gpm] 1 3 Q [US gpm] 9xØ xø/1xø xØ/xØ17 /1 ~ 9 [rpm] ISO 99:1 - Grade B 1 3 Q [Imp gpm] 1 3 Q [US gpm] 1xØ 9xØ/1xØ17 xø/xø17 1 7, 7, , 7, ,1 19 7, C 9 9B 9A A 9C 9B Q [m1 3 /h] Q [l/s] -9_Hz A 1C 1B 1A A B 1C Q 1 [m 3 /h] Q [l/s] -1_Hz A These performances are valid for cold water with density ρ = 1. Kg/dm 3 and viscosity ν = 1 mm /sec.

43 e-mpb SERIES OPERATING CHARACTERISTICS AT Hz, POLES e-mpb/1 ~ 9 [rpm] ISO 99:1 - Grade B e-mpb/ ~ 9 [rpm] ISO 99:1 - Grade B 1 3 Q [Imp gpm] 1 3 Q [Imp gpm] 1 3 Q [US 7 gpm] Ø Ø 19, Ø , , A 9 1B 1C A 1 1B 13 1C Q 1 [m 3 /h] Q [l/s] e-mpb-1_hz A 1 3 Q [US 7 gpm] 13 xø xØ1/1xØ1 3 1, xø , 7, A B 1 C A 3 3 B C Q [m1 3 /h] Q [l/s] e-mpb-_hz A e-mpb/3 ~ 9 [rpm] ISO 99:1 - Grade B e-mpb/ ~ 9 [rpm] ISO 99:1 - Grade B 1 3 Q [Imp gpm] 1 3 Q [Imp gpm] 1 3 Q [US 7 gpm] 31 3xØ1 1 xø1/1xø xØ1/xØ1 1 7, A 3B 3C , 7, 3A 7 3B 3C Q [m1 3 /h] Q [l/s] 1 e-mpb-3_hz A 1 3 Q [US gpm] 7 xø xØ1/1xØ xø1/xø A B C A B C Q [m 3 1 /h] 77, 7,, Q [l/s] e-mpb-_hz A These performances are valid for cold water with density ρ = 1. Kg/dm 3 and viscosity ν = 1 mm /sec. 3

44 e-mpb SERIES OPERATING CHARACTERISTICS AT Hz, POLES e-mpb/ ~ 9 [rpm] ISO 99:1 - Grade B e-mpb/ ~ 9 [rpm] ISO 99:1 - Grade B 1 3 Q [Imp gpm] 1 3 Q [Imp gpm] 1 3 Q [US gpm] 7 3 xø1 1 xø1/1xø1 3xØ1/xØ1 9 7, 7, 79, Q [US gpm] 7 xø1 1 xø1/1xø1 3 xø1/xø1 11, 3 79, 7, A B C 3 1 A B C A B 11 7 C Q 1 [m 3 /h] Q [l/s] 1 e-mpb-_hz A A B C Q [m1 3 /h] Q [l/s] e-mpb-_hz A e-mpb/7 ~ 9 [rpm] ISO 99:1 - Grade B e-mpb/ ~ 9 [rpm] ISO 99:1 - Grade B 1 3 Q [Imp gpm] 1 3 Q [Imp gpm] 1 3 Q [US 7 gpm] 7xØ xø1/1xø1 xø1/xø A 7B 7C 7A 7B 7C Q 1 [m 3 /h] 7,, 79,3 Q [l/s] e-mpb-7_hz A 1 3 Q [US 7 gpm] xø1 7xØ1/1xØ1 xø1/xø A B C A B C Q [m 3 1 /h] 7,, 79, Q [l/s] e-mpb-_hz A These performances are valid for cold water with density ρ = 1. Kg/dm 3 and viscosity ν = 1 mm /sec.

45 e-mpb SERIES OPERATING CHARACTERISTICS AT Hz, POLES e-mpb/9 ~ 9 [rpm] ISO 99:1 - Grade B e-mpb/1 ~ 9 [rpm] ISO 99:1 - Grade B 1 3 Q [Imp gpm] 1 3 Q [Imp gpm] 1 3 Q [US gpm] xØ1 xø1/1xø1 7xØ1/xØ1 17 1, 79, 7, A 9B 9C 9A 9B 9C Q [m1 3 /h] Q [l/s] e-mpb-9_hz A 1 3 Q [US gpm] 7 1xØ1 9xØ1/1xØ1 xø1/xø A 1C 1B A 1B C Q 1 [m 3 /h] ,, 79, Q [l/s] e-mpb-1_hz A These performances are valid for cold water with density ρ = 1. Kg/dm 3 and viscosity ν = 1 mm /sec.

46 e-mp1a SERIES OPERATING CHARACTERISTICS AT Hz, POLES e-mp1a/1 ~ 9 [rpm] ISO 99:1 - Grade B Q 9 [Imp gpm] e-mp1a/ ~ 9 [rpm] ISO 99:1 - Grade B Q 9 [Imp gpm] Ø 7 73 Ø 7 7,1 Ø 73, Ø1 73 7, 7,3 Q [US gpm] Q [US gpm] 1 xø 1 1 1xØ/1xØ xø 1xØ/1xØ 7,1 xø 7, 1 73,7 3 71,9 1 9, D 1C 1B 1A 1 C D E A B A 3 1B 1C 1D Q [m 3 /h] 1 3 Q [l/s] 1 3 e-mp1a-1_hz A 1 A B C D E 1 1 Q [m 3 /h] 1 3 Q [l/s] e-mp1a-_hz A 1 1 e-mp1a/3 ~ 9 [rpm] ISO 99:1 - Grade B Q 9 [Imp gpm] 1 Q [US gpm] 3A 3B 3C A 3B 17 3C 17 3D Q [m 3 /h] 3xØ xø/1xø 1xØ/xØ 1xØ/xØ 7, 1 3 7, 7,1 7, 3D Q [l/s] 7 3 e-mp1a-3_hz A e-mp1a/ ~ 9 [rpm] ISO 99:1 - Grade B Q 9 [Imp gpm] 1 Q [US gpm] 3 xø 11 xø/xø 3 xø 7, 73,7 7 1 A B C ,1 A B C 1 3 Q [l/s] Q [m 3 /h] e-mp1a-_hz A These performances are valid for cold water with density ρ = 1. Kg/dm 3 and viscosity ν = 1 mm /sec.

47 e-mp1a SERIES OPERATING CHARACTERISTICS AT Hz, POLES e-mp1a/ ~ 9 [rpm] ISO 99:1 - Grade B Q 9 [Imp gpm] 1 Q [US gpm] xø 3xØ/xØ 13 1xØ/xØ ,1 7, 3 7,3 9 7 A 1 B 1 C A B C Q [m 3 /h] 1 3 Q [l/s] e-mp1a-_hz A e-mp1a/ ~ 9 [rpm] ISO 99:1 - Grade B Q 9 [Imp gpm] 1 Q [US gpm] 3 3 xø xø/xø xø/xø 9 A B C A 1 B 3 1 C Q [m 3 /h] 1 3 7, 7,1 7, Q [l/s] e-mp1a-_hz A e-mp1a/7 ~ 9 [rpm] ISO 99:1 - Grade B Q 9 [Imp gpm] 1 Q [US gpm] 9 7xØ xø/xø 3xØ/xØ 19 7,1 7, , A 7B 7C 7A 7B 7C Q [m 3 /h] 1 3 Q [l/s] e-mp1a-7_hz A These performances are valid for cold water with density ρ = 1. Kg/dm 3 and viscosity ν = 1 mm /sec. 7

48 e-mp1b SERIES OPERATING CHARACTERISTICS AT Hz, POLES e-mp1b/1 ~ 9 [rpm] ISO 99:1 - Grade B 1 Q 1 [Imp gpm] Q [US gpm] 9 Ø Ø 7,7 Ø7 77, Ø1 71,7 7 1, B 1A 1C 1D A 3 3 1B 3 3 1C 33 1D Q [m 3 /h] Q [l/s] e-mp1b-1_hz A e-mp1b/ ~ 9 [rpm] ISO 99:1 - Grade B 1 1Q [Imp gpm] 1 1 1Q [US gpm] 1 xø xØ/1xØ7 xø 1xØ/1xØ xø7 71,7 7, 1 A B C D E A 17 7 B C 7 D E Q [m3 3 /h ,3 7,9,7 Q [l/s] 3 e-mp1b-_hz A e-mp1b/3 ~ 9 [rpm] ISO 99:1 - Grade B 1 1 Q [Imp gpm] e-mp1b/ ~ 9 [rpm] ISO 99:1 - Grade B 1 1 Q [Imp gpm] Q [US gpm] 7 3xØ Q [US gpm] 1xØ/xØ 7 7, 17 7, A 3B 1 3C A B 13 3C Q [m3 3 /h 1xØ/xØ7, Q [l/s] e-mp1b-3_hz A xø xø/xø xø,7 7,9 77,3 A B C A B C Q [m 3 3 /h Q [l/s] e-mp1b-_hz A These performances are valid for cold water with density ρ = 1. Kg/dm 3 and viscosity ν = 1 mm /sec.

49 e-mp1b SERIES OPERATING CHARACTERISTICS AT Hz, POLES e-mp1b/ ~ 9 [rpm] ISO 99:1 - Grade B 1 1 Q [Imp gpm] Q [US gpm] xø 3xØ/xØ 1xØ/xØ,7 79, A B C A B C Q 3 [m 3 /h ,9 Q [l/s] e-mp1b-_hz A e-mp1b/ ~ 9 [rpm] ISO 99:1 - Grade B 1 1 Q [Imp gpm] Q [US gpm] xø 17 xø/xø xø/xø , 79, A B C A B C Q [m3 3 /h ,7 Q [l/s] e-mp1b-_hz A e-mp1b/7 ~ 9 [rpm] ISO 99:1 - Grade B 1 1 Q [Imp gpm] Q [US gpm] 7 1 7xØ xø/xø 19 3xØ/xØ 79,7, , A 7B 7C A 3 7B 7C Q 3 [m 3 /h Q [l/s] e-mp1b-7_hz A These performances are valid for cold water with density ρ = 1. Kg/dm 3 and viscosity ν = 1 mm /sec. 9

50 e-mp1a SERIES OPERATING CHARACTERISTICS AT Hz, POLES e-mp1a/1 ~ 9 [rpm] ISO 99:1 - Grade B Q [Imp 1 gpm] e-mp1a/ ~ 9 [rpm] ISO 99:1 - Grade B Q [Imp gpm] Ø3 11 Ø 1 Ø 9 Ø , 79, 7, 7 7, 7 Q [US gpm] Q [US gpm] 3 xø xø 1xØ3/1xØ 3, 17 xø3 79,1 1 7, B 1C Q [m 3 /h] 1 1 Q [l/s] 1D 1D 1C 1B 7 1A 1A e-mp1a-1_hz A 7, A 33 B 9 C D A 17 1 B 13 C D Q [m 3 /h] 1 1 Q [l/s] e-mp1a-_hz A e-mp1a/3 ~ 9 [rpm] ISO 99:1 - Grade B Q 1 [Imp gpm] e-mp1a/ ~ 9 [rpm] ISO 99:1 - Grade B Q 1 [Imp gpm] Q [US gpm] xØ Q [US gpm] 3 xø3/1xø 1xØ3/xØ 3xØ, 79, 7,9 7, xø3 3xØ3/1xØ xø3/xø 1xØ3/3xØ 7,7, 79, 79, D 3C 3B 3A A B C D A 3B 3C 3D Q [m 3 /h] 1 1 Q [l/s] e-mp1a-3_hz A A B C D Q [m 3 /h] 1 1 Q [l/s] e-mp1a-_hz A These performances are valid for cold water with density ρ = 1. Kg/dm 3 and viscosity ν = 1 mm /sec.

51 e-mp1a SERIES OPERATING CHARACTERISTICS AT Hz, POLES e-mp1a/ ~ 9 [rpm] ISO 99:1 - Grade B Q [Imp 1 gpm] Q [US gpm] xø3 xø3/1xø 1 3xØ3/xØ xø3/3xø 1, 79, 1 79, 79, A B C D A B C D Q [m 3 /h] 1 1 Q [l/s] e-mp1a-_hz A These performances are valid for cold water with density ρ = 1. Kg/dm 3 and viscosity ν = 1 mm /sec. 1

52 e-mp1b SERIES OPERATING CHARACTERISTICS AT Hz, POLES e-mp1b/1 ~ 9 [rpm] ISO 99:1 - Grade B e-mp1b/ ~ 9 [rpm] ISO 99:1 - Grade B 1 1 Q [Imp gpm] 1 1 Q [Imp gpm] 1 1 Q [US gpm] 13 Ø Ø 1 11 Ø Ø 7, 1B 1C 1 3 Q [m 3 /h] Q [l/s] 79,,7,9 1 1D 1D 7 1C 1B 7 1A 1A e-mp1b-1_hz A 1 1 Q [US gpm] xø9 xø7 7 1xØ9/1xØ7, xø 1,1 1 79, 1 7, 1 A 1 B 3 1 C D A B 9 C 17 D Q [m 3 /h] Q [l/s] 1 e-mp1b-_hz A e-mp1b/3 ~ 9 [rpm] ISO 99:1 - Grade B e-mp1b/ ~ 9 [rpm] ISO 99:1 - Grade B 1 1 Q [Imp gpm] 1 1 Q [Imp gpm] 1 1 Q [US gpm] 19 3xØ9 119 xø9/1xø7 3 1xØ9/xØ xØ7, 1,7, 79, A 3B 9 3D 3C 9 3A 3B 3C 3D Q [m 3 /h] Q [l/s] e-mp1b-3_hz A 1 1 Q [US gpm] xø9 3xØ9/1xØ7 xø9/xø7 1xØ9/3xØ7,3 A B C D A B C D Q [m 3 /h] Q [l/s] 1,1,, e-mp1b-_hz A These performances are valid for cold water with density ρ = 1. Kg/dm 3 and viscosity ν = 1 mm /sec.

53 e-mp1b SERIES OPERATING CHARACTERISTICS AT Hz, POLES e-mp1b/ ~ 9 [rpm] ISO 99:1 - Grade B 1 1 Q [Imp gpm] 1 1 Q [US gpm] xø9 xø9/1xø7 3xØ9/xØ7 19 xø9/3xø7,, 17 1, 1, D C B A A B C D Q [m 3 /h] Q [l/s] e-mp1b-_hz A These performances are valid for cold water with density ρ = 1. Kg/dm 3 and viscosity ν = 1 mm /sec. 3

54 SERIES OPERATING CHARACTERISTICS AT Hz, POLES /1 ~ 1 [rpm] ISO 99:1 - Grade B 1 1 Q [Imp gpm] Ø19 9 Ø17 Ø1,7 7,, 3 1A 1 1B 1C 3 1,, 1A, 1B 1C,3 Q [US gpm] 3,,3,,1,1, Q [m 3 /h] Q [l/s] ,,7,,, -1_Hz A /- ~ 1 [rpm] ISO 99:1 - Grade B 1 1 Q [Imp gpm] Q [US gpm] xø xø19 xø19 3xØ19,9 xø19,9 A 1 A A 3A A , 1, 3 A 1 A,, A, 1, 3A 1, A,, Q [m 3 3 /h ,9,9,9 Q [l/s] _Hz A /7-1 ~ 1 [rpm] ISO 99:1 - Grade B 1 1 Q [Imp gpm] Q [US gpm] 1 1xØ19 9 9xØ19 3 xø19,9 7 33,9 7xØ19,9 13,9 /11-1 ~ 1 [rpm] ISO 99:1 - Grade B 1 1 Q [Imp gpm] Q [US gpm] 1xØ xØ19 1xØ xØ19,9, ,9 3, A 9A A 7A A 9A A 7A Q [m 3 /h Q [l/s] -7-1_Hz A 3 1A 13A 3 1A 11A A 7 13A 9,3 1A 11A 7,3,3 3 3,3 1 1, Q [m 3 3 /h Q [l/s] _Hz A These performances are valid for cold water with density ρ = 1. Kg/dm 3 and viscosity ν = 1 mm /sec.

55 SERIES OPERATING CHARACTERISTICS AT Hz, POLES /1-1 ~ 1 [rpm] ISO 99:1 - Grade B 1 1 Q [Imp gpm] Q [US gpm] 1 1xØ xØ19 1 1xØ19 1xØ19,9 1,9,9, A 17A 1A 1A A 17A 1 1A 1A Q [m 3 /h Q [l/s] -1-1_Hz A These performances are valid for cold water with density ρ = 1. Kg/dm 3 and viscosity ν = 1 mm /sec.

56 e-mpb SERIES OPERATING CHARACTERISTICS AT Hz, POLES e-mpb/1 ~ 1 [rpm] ISO 99:1 - Grade B e-mpb/- ~ 1 [rpm] ISO 99:1 - Grade B Q [Imp 1 gpm] Q [Imp gpm] Q [US gpm] Q [US gpm] 7 3 Ø Ø11 3 7, Ø19 7, 7, A 1B 1C 3 1 1, 1,1,7 1A 1,,9, 1B,, 1C,7,,,,3,,, Q [m /h] 1 1 Q [l/s] e-mpb-1_hz A xø173 xø173 7, 1 7, xø173 7, 3xØ , xø173 A 7, A A 1 3A A , A 1 A, 3 A, 3A, A 1, Q [m 3 /h] 1 Q [l/s] e-mpb--_hz A e-mpb/7-1 ~ 1 [rpm] ISO 99:1 - Grade B Q [Imp gpm] Q [US gpm] 11 e-mpb/11-1 ~ 1 [rpm] ISO 99:1 - Grade B Q [Imp gpm] Q [US gpm] xØ173 9xØ173 xø173 7xØ173 7, 7, 7, 7, xØ173 13xØ173 1xØ173 11xØ173 7, 7, 7, 7, Q [l/s] 1A 9A A 7A 1A 9A A 7A, Q [m 3 /h] ,7,7,7,7 e-mpb-7-1_hz A A 1, A 1A 11A 1, 1,,, 3, Q [m 3 /h] 1A 13A 1A 11A 1 1 Q [l/s] e-mpb-11-1_hz A These performances are valid for cold water with density ρ = 1. Kg/dm 3 and viscosity ν = 1 mm /sec.

57 e-mpb SERIES OPERATING CHARACTERISTICS AT Hz, POLES e-mpb/1-1 ~ 1 [rpm] ISO 99:1 - Grade B Q [Imp gpm] Q [US gpm] 31 1xØ xØ xØ173 1xØ173 7, 7, 7, 7, A 17A 1A 1A A 17A 17, 1A 1, 1 1A 13, 11, 9, 7,, Q [m 3 /h] 1 1 Q [l/s] e-mpb-1-1_hz A These performances are valid for cold water with density ρ = 1. Kg/dm 3 and viscosity ν = 1 mm /sec. 7

58 SERIES OPERATING CHARACTERISTICS AT Hz, POLES /1 ~ 1 [rpm] ISO 99:1 - Grade B 1 1 Q [Imp gpm] Q [US gpm] , 1 Ø 7 7 Ø19 7,7 Ø17 71, 7, 7 1A 1B 1C 1A 1B 1C,,, 1 3 Q [m 7 3 /h] Q [l/s] 3 1 1,, 1, 1, -1_Hz A /- ~ 1 [rpm] ISO 99:1 - Grade B 1 1 Q [Imp gpm] 1 1 Q 3 [US gpm] 9 xø 7 xø 7,7 xø 7,7 1 7,7 3xØ 7,7 3 xø A A 1 7,7 A 3A 1 A 1 1 A 1 A 1 A 3A A 1 3 Q [m 3 7 /h Q [l/s] --_Hz A /7-11 ~ 1 [rpm] ISO 99:1 - Grade B 1 1 Q [Imp gpm] 1 1 Q 3 [US gpm] xØ 1 1xØ 9xØ 1 1 7,7 xø 7,7 1 7xØ 7,7 7,7 7, /1-1 ~ 1 [rpm] ISO 99:1 - Grade B 1 1 Q [Imp gpm] 1 1 Q 3 [US gpm] 1xØ 1xØ 13xØ 1 1 1xØ 31 7,7 31 7,7 7,7 1 7, A 1A 9A A 7A A 1A 13A 1A , 1 3 Q [m 3 7 /h Q [l/s] 11A 1A 9A A 7A, 1, 1, -7-11_Hz A 1 1 1A 1A 13A 1A,7 1 3 Q [m 3 7 /h Q [l/s] 31,7,7 1,7 1,7 11,7-1-1_Hz A These performances are valid for cold water with density ρ = 1. Kg/dm 3 and viscosity ν = 1 mm /sec.

59 e-mpb SERIES OPERATING CHARACTERISTICS AT Hz, POLES e-mpb/1 ~ 1 [rpm] ISO 99:1 - Grade B e-mpb/- ~ 1 [rpm] ISO 99:1 - Grade B 1 1 Q [Imp gpm] Q [Imp gpm] Q [US gpm] , 1, Ø Ø 7, Ø1 7, 7 73, A 1B 1C 1A 1B 1C 1, 1 1,,,, Q [m 9 3 /h] 1 1 Q [l/s] ,,, e-mpb-1_hz A Q [US gpm] 1 9 xø1 3 xø1 7, 7 7, xø1 7, 3xØ1 1 A 7, 3 xø1 A 1 7, A 3A 1 A A 1 1 A 1 A 1 3A A Q [m 3 9 /h 1 1 Q [l/s] e-mpb--_hz A e-mpb/7-11 ~ 1 [rpm] ISO 99:1 - Grade B e-mpb/1-1 ~ 1 [rpm] ISO 99:1 - Grade B Q [Imp gpm] Q [Imp gpm] xØ1 1xØ1 9xØ1 xø1 7xØ1 11A 1A 1 1 Q [l/s] 9A A 7A 11A 1A 9A A 7A Q [US gpm], Q [m 3 9 /h 7, 7, 7, 7, 7, ,7,7 1,7 1,7 11,7 e-mpb-7-11_hz A xØ xØ1 13xØ1 1xØ1 1A 1A 13A 1A 1A 1A 13A 1A Q [US gpm] 1 13, Q [m 3 9 /h 1 1 Q [l/s] 7, 7, 7, 7, , 3, 33,, 3, 1, e-mpb-1-1_hz A These performances are valid for cold water with density ρ = 1. Kg/dm 3 and viscosity ν = 1 mm /sec. 9

60 e-mp1a SERIES OPERATING CHARACTERISTICS AT Hz, POLES e-mp1a/1 ~ 1 [rpm] ISO 99:1 - Grade B e-mp1a/ ~ 1 [rpm] ISO 99:1 - Grade B Q [Imp gpm] Q [Imp gpm] 1 3 Q [US gpm] 7 Ø 7 Ø 73 7, Ø , Ø1 7 7,3 1 1,7 3 1A 1B 1C 1D A 3 1B 1C 1D Q [m 3 /h] Q [l/s] e-mp1a-1_hz A 1 3 Q [US gpm] xø 13 xø , xø ,7 7, 7 1 A B 3 1 C A 1 B C 1 Q [m1 3 /h Q [l/s] e-mp1a-_hz A e-mp1a/3 ~ 1 [rpm] ISO 99:1 - Grade B e-mp1a/ ~ 1 [rpm] ISO 99:1 - Grade B Q [Imp gpm] Q [Imp gpm] 1 3 Q [US gpm] 1 3 Q [US gpm] 9 3xØ 3xØ 71,7 7, xø 1xØ/3xØ 7, 7, B 3A 3 B A A 1 1 3B 1 1 Q [m1 3 /h Q [l/s] 1 e-mp1a-3_hz A A B Q [m 3 1 /h Q [l/s] 1 e-mp1a-_hz A These performances are valid for cold water with density ρ = 1. Kg/dm 3 and viscosity ν = 1 mm /sec.

61 e-mp1a SERIES OPERATING CHARACTERISTICS AT Hz, POLES e-mp1a/ ~ 1 [rpm] ISO 99:1 - Grade B e-mp1a/ ~ 1 [rpm] ISO 99:1 - Grade B Q [Imp gpm] Q [Imp gpm] 1 3 Q [US gpm] Q [US gpm] xø xø/3xø 7, xø 3xØ/3xØ 73,1 7, ,9 B A B A A 3 A 7 B 7 1 B Q 1 [m 3 /h Q [l/s] e-mp1a-_hz A Q [m1 3 /h Q [l/s] e-mp1a-_hz A These performances are valid for cold water with density ρ = 1. Kg/dm 3 and viscosity ν = 1 mm /sec. 1

62 e-mp1b SERIES OPERATING CHARACTERISTICS AT Hz, POLES e-mp1b/1 ~ 1 [rpm] ISO 99:1 - Grade B e-mp1b/ ~ 1 [rpm] ISO 99:1 - Grade B 1 3 Q [Imp gpm] 1 3 Q [Imp gpm] 1 3 Q 7 [US gpm] Ø Ø 79,1 1 Ø7 77 7,9 7 Ø1 7, , 3 1A 1B 1C 1D A 7 1B 3 1C 1D Q [m 3 /h] Q [l/s] e-mp1b-1_hz A 1 3 Q [US 7 gpm] xø 13 3 xø 11 79,1 3 xø7 9 7, 7 7, 1 A 1 B 3 C A 13 B 11 C Q [m1 3 /h] Q [l/s] e-mp1b-_hz A e-mp1b/3 ~ 1 [rpm] ISO 99:1 - Grade B e-mp1b/ ~ 1 [rpm] ISO 99:1 - Grade B 1 3 Q [Imp gpm] 1 3 Q [Imp gpm] 1 3 Q [US 7gpm] 9 3xØ 19 3xØ 7, 19 79, Q 7 [US gpm] 9 3 xø 1xØ/3xØ ,1 7, A 3 3A 9 B B A 17 3B Q [m1 3 /h] Q [l/s] e-mp1b-3_hz A A 7 1 B Q [m 3 1 /h] Q [l/s] e-mp1b-_hz A These performances are valid for cold water with density ρ = 1. Kg/dm 3 and viscosity ν = 1 mm /sec.

63 e-mp1b SERIES OPERATING CHARACTERISTICS AT Hz, POLES e-mp1b/ ~ 1 [rpm] ISO 99:1 - Grade B e-mp1b/ ~ 1 [rpm] ISO 99:1 - Grade B 1 3 Q [Imp gpm] 1 3 Q [Imp gpm] 1 3 Q [US gpm] Q [US gpm] xø xø/3xø 79,1 77, xø 3xØ/3xØ 77, 79, B A 11 B A A 33 B Q 1 [m 3 /h] Q [l/s] e-mp1b-_hz A A 3 B Q [m1 3 /h] Q [l/s] e-mp1b-_hz A e-mp1b/7 ~ 1 [rpm] ISO 99:1 - Grade B 1 3 Q [Imp gpm] 1 3 Q [US gpm] xØ xø/3xø 77,7 79, A 1 7B A 3 7B Q 1 [m 3 /h] Q [l/s] e-mp1b-7_hz A These performances are valid for cold water with density ρ = 1. Kg/dm 3 and viscosity ν = 1 mm /sec. 3

64 e-mp1a SERIES OPERATING CHARACTERISTICS AT Hz, POLES e-mp1a/1 ~ 1 [rpm] ISO 99:1 - Grade B Q [Imp 9 gpm] 1 Q [US gpm] 3 9 Ø3 7 Ø , Ø3 7, 7 7, A 1B 1C A B 1 7 1C Q [m 3 /h] 1 3 Q [l/s] ~ e-mp1a-1_hz A e-mp1a/ ~ 1 [rpm] ISO 99:1 - Grade B Q 9 [Imp gpm] 1 Q [US gpm] 193 xø3 173 xø , xø , , A 1 B 3 C A 7 1 B C Q [m /h] 1 3 Q [l/s] e-mp1a-_hz A e-mp1a/3 ~ 1 [rpm] ISO 99:1 - Grade B Q [Imp gpm] e-mp1a/ ~ 1 [rpm] ISO 99:1 - Grade B Q 9 [Imp gpm] Q 1 [US gpm] Q [US gpm] 7 3xØ3 1xØ3/xØ3 1xØ3/xØ3 7,7 79, xø3 xø3/xø3 xø3/xø3 77, 79, 7, , C 3B 3A 11 3 C B A A B 3C Q [m 3 /h] 1 3 Q [l/s] 1 e-mp1a-3_hz A 1 3 A B 3 C Q [m 3 /h] 1 3 Q [l/s] 1 e-mp1a-_hz A These performances are valid for cold water with density ρ = 1. Kg/dm 3 and viscosity ν = 1 mm /sec.

65 e-mp1b SERIES OPERATING CHARACTERISTICS AT Hz, POLES e-mp1b/1 ~ 1 [rpm] ISO 99:1 - Grade B e-mp1b/ ~ 1 [rpm] ISO 99:1 - Grade B 1 Q [Imp gpm] 1 Q [Imp gpm] Q [US gpm] 1 1 Q [US gpm] 7 Ø Ø7 7,1 Ø 7, 7 7 7, A 1B 1C A B C Q [m 3 /h] Q [l/s] e-mp1b-1_hz A 13 xø9 193 xø7 173,1 xø 13 7, 133 7, A 73 3 B C A 37 B 7 C Q [m 3 /h] Q [l/s] e-mp1b-_hz A e-mp1b/3 ~ 1 [rpm] ISO 99:1 - Grade B e-mp1b/ ~ 1 [rpm] ISO 99:1 - Grade B 1 Q [Imp gpm] 1 Q [Imp gpm] 1 Q 1 [US gpm] Q [US gpm] 9 7 3xØ9 1xØ9/xØ7 1xØ9/xØ 77,,1 7, xø9 xø9/xø7 xø9/xø,1 79, 7, B 3A 11 A B C 11 3C 1 1 3A 3B 3 3C Q [m3 3 /h] Q [l/s] e-mp1b-3_hz A 3 A B C Q [m 3 3 /h] Q [l/s] 7 3 e-mp1b-_hz A These performances are valid for cold water with density ρ = 1. Kg/dm 3 and viscosity ν = 1 mm /sec.

66

67 DIMENSIONS AND WEIGHTS 7

68 MPA, MPD AND MPR SERIES NOZZLE POSITION for MPA: Code: AO Code: AL Code: AR for MPD and MPR: Code: LO Code: RO Code: OO Code: LR Code: OR Code: RR Code: RL Code: OL Code: LL Note: Nozzle position LL, OO, RR is not possible for pumps with 1 and stages e-mp-noz-en_a_dd To be selected in Xylect

69 MPA SERIES DIMENSIONS AND WEIGHTS AT Hz PM1 DNS a1 V DND m D m m1 f PM G L m3 m y l d u t s1 h v1 d1 n n1 h b h1 h Position Connection Size PM1 Vacuum gauge G 1 PM Pressure gauge G 1 D Drain G 1 G Grease nipple M L Leakage G 1 V Vent G 1 -EN_a_DD NOTE: Pumps supplied with flanges according to EN 19- as standard; available ASME B1. version on request. For flanges dimensions see drawing on pages en_a_td -stage-en_a_td 9

70 MPA SERIES DIMENSIONS AND WEIGHTS AT Hz L max. a1 f h h PM1 DNS V DND D PM G L H max. H h L EARTHING LIFTING HOLES B B1 Position Connection Size PM1 Vacuum gauge G 1 PM Pressure gauge G 1 L3 L L L1 s D Drain G 1 G Grease nipple M L Leakage G 1 V Vent G 1 -AS-EN_a_DD 7

71 MPA SERIES - Size DIMENSIONS AND WEIGHTS AT Hz NOTE. Pumps supplied with flanges according to EN 19- as standard; available ASME B1. version on request. -AS--en_a_td For flanges dimensions see drawing on pages

72 MPA SERIES - Size DIMENSIONS AND WEIGHTS AT Hz NOTE. Pumps supplied with flanges according to EN 19- as standard; available ASME B1. version on request. For flanges dimensions see drawing on pages AS--en_a_td 7

73 MPA SERIES - Size 1 DIMENSIONS AND WEIGHTS AT Hz NOTE. Pumps supplied with flanges according to EN 19- as standard; available ASME B1. version on request. For flanges dimensions see drawing on pages AS-1-en_a_td 73

74 MPA SERIES - Size 1 DIMENSIONS AND WEIGHTS AT Hz NOTE. Pumps supplied with flanges according to EN 19- as standard; available ASME B1. version on request. For flanges dimensions see drawing on pages AS-1-en_a_td 7

75 MPR SERIES DIMENSIONS AND WEIGHTS AT Hz a f DND V PM G u m m m D L m3 m y l d t s1 h v d1 n n1 h b PM1 DNS h1 h Position Connection Size PM1 Vacuum gauge G 1 PM Pressure gauge G 1 D Drain G 1 G Grease nipple M L Leakage G 1 V Vent G 1 e-mpr-en_a_dd NOTE. Pumps supplied with flanges according to EN 19- as standard; available ASME B1. version on request. e-mpr-en_a_td For flanges dimensions see drawing on pages e-mpr-stage-en_a_td 7

76 MPR SERIES DIMENSIONS AND WEIGHTS AT Hz L max. a f h V DND D PM G L H max. PM1 DNS H h L EARTHING LIFTING HOLES B B1 Position Connection Size PM1 Vacuum gauge G 1 PM Pressure gauge G 1 L3 L L L1 s D Drain G 1 G Grease nipple M L Leakage G 1 V Vent G 1 e-mpr-as-en_a_dd 7

77 MPR SERIES - Size DIMENSIONS AND WEIGHTS AT Hz NOTE. Pumps supplied with flanges according to EN 19- as standard; available ASME B1. version on request. e-mpr-as--en_a_td For flanges dimensions see drawing on pages

78 MPR SERIES - Size DIMENSIONS AND WEIGHTS AT Hz NOTE. Pumps supplied with flanges according to EN 19- as standard; available ASME B1. version on request. For flanges dimensions see drawing on pages e-mpr-as--en_a_td 7

79 MPR SERIES - Size 1 DIMENSIONS AND WEIGHTS AT Hz NOTE. Pumps supplied with flanges according to EN 19- as standard; available ASME B1. version on request. For flanges dimensions see drawing on pages e-mpr-as-1-en_a_td 79

80 MPR SERIES - Size 1 DIMENSIONS AND WEIGHTS AT Hz NOTE. Pumps supplied with flanges according to EN 19- as standard; available ASME B1. version on request. For flanges dimensions see drawing on pages e-mpr-as-1-en_a_td

81 MPD SERIES DIMENSIONS AND WEIGHTS AT Hz e a f DND V PM G G L m m m D L m3 m y l d u t s1 h v d1 n n1 h b PM1 DNS h1 h Position Connection Size PM1 Vacuum gauge G 1 PM Pressure gauge G 1 D Drain G 1 G Grease nipple M L Leakage G 1 V Vent G 1 e-mpd-en_a_dd NOTE. Pumps supplied with flanges according to EN 19- as standard; available ASME B1. version on request. For flanges dimensions see drawing on pages e-mpd-en_a_td e-mpd-stage-en_a_td 1

82 MPD SERIES DIMENSIONS AND WEIGHTS AT Hz e L max. a f h h G L V D L DND PM G L EARTHING LIFTING HOLES H max. B B1 PM1 DNS H h Position Connection Size PM1 Vacuum gauge G 1 PM Pressure gauge G 1 L3 L L L1 s D Drain G 1 G Grease nipple M L Leakage G 1 V Vent G 1 e-mpd-as-en_a_dd

83 MPD SERIES - Size DIMENSIONS AND WEIGHTS AT Hz NOTE. Pumps supplied with flanges according to EN 19- as standard; available ASME B1. version on request. e-mpd-as--en_a_td For flanges dimensions see drawing on pages

84 MPD SERIES - Size DIMENSIONS AND WEIGHTS AT Hz NOTE. Pumps supplied with flanges according to EN 19- as standard; available ASME B1. version on request. For flanges dimensions see drawing on pages e-mpd-as--en_a_td

85 MPD SERIES - Size 1 DIMENSIONS AND WEIGHTS AT Hz NOTE. Pumps supplied with flanges according to EN 19- as standard; available ASME B1. version on request. For flanges dimensions see drawing on pages e-mpd-as-1-en_a_td

86 MPD SERIES - Size 1 DIMENSIONS AND WEIGHTS AT Hz NOTE. Pumps supplied with flanges according to EN 19- as standard; available ASME B1. version on request. For flanges dimensions see drawing on pages e-mpd-as-1-en_a_td

87 MPV SERIES DIMENSIONS AND WEIGHTS AT Hz terminal box position code-k1 code-k code-k3 code-k h h - E l PM DND ØP ØD G Ød standard a h3 s DNS PM1 D nozzle position code-oo code-og code-ol code-or v t1 e1 g (optional) b11 h AD Ød DND design OG: standard for 1 and stages (OO not possible) design OO: standard for 3 or more stages pump shaft end u m m d t e-mpv-as_a_dd 7

88 MPV SERIES DIMENSIONS AND WEIGHTS AT Hz NOTE. Pumps supplied with flanges according to EN 19- as standard; available ASME B1. version on request. For flanges dimensions see drawing on pages e-mpv-en_a_td e-mpv-stage-en_a_td

89 MPV SERIES DIMENSIONS AND WEIGHTS AT Hz ± e-mpv-as-en_a_td 9

90 MPA SERIES FLANGE DIMENSIONS (EN19-1, EN19-) ØD ØK Ødf ØDND nxøl ØD1 ØK1 Ødf1 ØDNS C nxøl1 C1 -FL-EN_a_DD -FL-EN-en_a_td 9

91 MPA SERIES FLANGE DIMENSIONS (ASME B1.) ØD ØK Ødf ØDND nxøl ØD1 ØK1 Ødf1 ØDNS C nxøl1 C1 -FL-EN_a_DD -FL-ASME-en_a_td 91

92 MPD, MPR, MPV SERIES FLANGE DIMENSIONS (EN19-1, EN19-) nxøl1 ØD1 ØK1 Ødf1 ØDNS ØD ØK Ødf ØDND nxøl C1 C e-mp-fl-en_a_dd e-mp-fl-en-en_a_td 9

93 MPD, MPR, MPV SERIES FLANGE DIMENSIONS (ASME B1.) nxøl1 ØD1 ØK1 Ødf1 ØDNS ØD ØK Ødf ØDND nxøl C1 C e-mp-fl-en_a_dd e-mp-fl-asme-en_a_td 93

94 9

95 e-mp with HYDROVAR (HVL series) 9

96 MP..H SERIES (e-mp WITH HYDROVAR) Background and context For all pumping needs in commercial or residential building and in industry applications, the demand for intelligent pumping systems is constantly growing. Controlled systems offer many advantages: reduced operating costs for the lifetime of the pump, lower environmental impact, longer lifetime of piping systems and networks. For this reason, Lowara has developed the MP..H: an intelligent pumping system which assures high level performance with energy consumption tailored to the system s demand. Benefits of e-mp with HYDROVAR Saving: MP..H transforms the e-mp pumps into variable speed intelligent pumping systems. Thanks to the HYDROVAR, the speed of each pump varies so as to maintain a constant flow, a constant pressure, or a differential pressure. In doing so, at any point in time, the pump only receives the energy required. This in turns allows for considerable savings, especially for systems that have varying loads throughout the day. Easy installation and space-saving: MP..H saves time and space during installation. The Hydrovar is delivered already mounted on the motor (for models up to kw). The hydrovar is kept cool by the motor fan and does not require a control panel. In order to function, only fuses on the supply line are needed (Check your local electrical installation regulations). Key Features of the Hydrovar No need for additional pressure sensors: The MP..H is fitted as standard with two pressure transmitters, normally fitted on the flanges. No need for special pumps or motors. MP..H is already pre-wired. No need for IN LINE filters. Hydrovar already includes the THDi filter embedded as standard. No need for bypass or safety systems: The MP..H will immediately switch off when demand drops to zero or when it exceeds maximum pump capacity; thus making installation of additional safety devices unnecessary. Anti-condensation device: The HYDROVAR is fitted with anti-condensation devices which switch on when the pump is in standby in order to prevent condensation forming in the unit. HYDROVAR HVL: 1,kW to kw, can be mounted to motor or wall HYDROVAR SMART: Over kw, combines all HYDROVAR intelligence with any frequency drive, and can be installed anywhere due to its slim design (e.g. inside of the control panel) Features HYDROVAR HVL HYDROVAR SMART Fits onto any standard asynchronous motor - Advanced motor control THDi filter embedded on request Extended communication capabilities Easy to commission and operate Multi-pump capability up to up to 9

97 MP..H SERIES (e-mp WITH HYDROVAR) The basic function of the HYDROVAR device is to control the pump to meet the system demands. HYDROVAR performs these functions by: 1) Measuring the system pressure or flow via a transmitter mounted on the pump s delivery side. ) Calculating the motor speed to maintain the correct flow or pressure. 3) Sending out a signal to the pump to start the motor, increase speed, decrease speed or stop. ) In the case of multiple pump installations, HYDROVAR will automatically provide for the cyclic changeover of the pumps starting sequence. Control for constant pressure In addition to these basic functions, HYDROVAR can perform controls only manageable by the most advanced computerized control systems. Some examples are: Stop the pump(s) at zero demand. Stop the pump(s) in case of water failure on the suction side (protection against dry running). Stop the pump if the required delivery exceeds the pump s capacity (protection against cavitation caused by excessive demand), or automatically switch on the next pump in a multiple series. Protect the pump and motor from over-voltage, undervoltage, overload, and earth fault. Vary the pump speed: acceleration and deceleration time. Compensate for increased flow resistance at high flow rates. Conduct automatic tests at set intervals. Monitor the converter and motor operating hours. Display the energy consumption (kwh). Display all functions on an LCD in different languages (Italian, English, French, German, Spanish, Portuguese, Dutch, etc...). Send a signal to a remote control system which is proportional to the pressure and frequency. Communicate with external control system via Modbus (RS interface) and Bacnet as standard. Control to match a system curve Control for constant flow Control according to an external signal 97

98 HYDROVAR HVL IDENTIFICATION CODE H V L. 7 - A 1 Other options [1 digit] [] = reserved for future use Rated output power [3 digits] kw x 1 Power supply [ digits] [.] = 1~ - V (/ Hz) [3.] = 3~ - V (/ Hz) [.] = 3~ 3- V (/ Hz) Name [3 digits] [HVL] = HYDROVAR generation L EXAMPLE: HVL.7-A1 HVL=HYDROVAR generation L,.=3~ 3- V power supply, 7=7,kW rated output power, A=IP (Type1) enclosure class, =Standard Bus communication, =no optional card, 1=internal display installed, =no other options installed. NOTE: HYDROVAR output voltage is three phase. Display [1 digit] [] = reserved for future use [1] = Internal display installed as standard Optional cards [1 digit] [] = no optional cards (as standard) [1] = Premium Card (option supplied loose) Bus communication [1 digit] = Standard Communication (Modbus, Bacnet) 1 = reserved for future use = reserved for future use 3 = reserved for future use = reserved for future use = reserved for future use = reserved for future use 7 = Wifi Card (option supplied loose) Enclosure class (IP class) [1 digit] [A] = IP (Type1) [B] = reserved for future use DIMENSIONS AND WEIGHTS X L B H HVL_dim-en_b_td 9

99 HYDROVAR HVL EMC COMPATIBILITY EMC requirements HYDROVAR fulfills the product standard EN1-3: + A1:1, which defines categories (C1 to C) for device application areas. Depending on the motor cable length, a classification of HYDROVAR by category (based on EN1-3) is reported in the following tables: HVL HYDROVAR classification by categories based on EN C1 (*) C (*).1. C (*) (*),7 motor cable length; contact Xylem for further information En-Rev_A Card Premium Card HYDROVAR (optional) For the e-mph series, the Premium Card comes fitted as option on the standalone HYDROVAR. This allows to control up to five fix speed pumps via an external panel. The Premium Card will allow additional features listed below: additional Analog Inputs Analog Outputs 1 additional digital input relays. Wi-Fi Card HYDROVAR (optional) With the WiFi card fitted in the Hydrovar, the unit can will allow you to be connected to a wireless network. Optional Components Sensors The following sensors are available for HYDROVAR: a. Pressure-transducer b. Differential pressure-transducer c. Temperature-sensor d. Flow indicator (orifice plate, inductive flow meter) e. Level-sensor. 99

100 HYDROVAR HVL (WALL MOUNTING KIT) DIMENSIONS AND WEIGHTS As an option a Hydrovar wall mounting kit is also available. This is used where mounting on the pump unit is impossible or where you would like the controls in another location. These are available for the new generation Hydrovar HVL.1-. ( kw). The speed of the cooling fan modulates with the Hydrovar usage which optimizes energy consumption and also reduces noise. A H P L WM-KIT_HVL_models_a_sc WM KIT WM KIT HVL DIMENSIONS (mm) WEIGHT (kg) kw TIPE POWER SUPPLY SIZE A H L P HVL WM KIT WM KIT HVL.1 1, 17 3,, A WM KIT HVL., 17 3,, 1~ 3V WM KIT HVL ,, B WM KIT HVL ,, WM KIT HVL 3.1 1, 17 3,, A WM KIT HVL 3., 17 3,, WM KIT HVL ,, WM KIT HVL 3. 3~ 3V B ,, WM KIT HVL 3., ,, WM KIT HVL 3.7 7, 3 3 1, 11, C WM KIT HVL , 11, WM KIT HVL.1 1, 17 9,, WM KIT HVL., 17 9,, A WM KIT HVL ,, WM KIT HVL. 17 9,, WM KIT HVL., ,, 3~ V WM KIT HVL.7 7, B ,, WM KIT HVL ,, WM KIT HVL , 11, WM KIT HVL.1 1, C 3 3 1, 11, WM KIT HVL , 11, WM-KIT_HVL_models-EN_b_td 1

101 ACCESSORIES 11

102 SPACER COUPLING DIMENSIONS t +. part 1 part t1 +. u d1 Js9 u1 Js9 H H7 d da MATERIAL: GREY CAST IRON WITH FLEXIBLE ELEMENTS MADE OF SYNTHETIC RUBBER ShA l1 s l COUP-B_EN_A_DD 1 Coup-B_en_a_td

103 FLEXIBLE COUPLING DIMENSIONS t +. part 1 part t1 +. H7 d1 H7 u Js9 u1 Js d da MATERIAL: RWN: GREY CAST IRON RWS: CAST STEEL WITH FLEXIBLE ELEMENTS MADE OF SYNTHETIC RUBBER ShA l1 s l COUP-RUPEX_EN_A_DD Coup-RUPEX_en_a_td 13

104 SENSOR CONNECTOR AND SENSORS FOR PUMP-MONITORING AND DIAGNOSTIC SYSTEMS Detail X Detail Y vertical horizontal MP-sensor_a_td 1

105 REPORTS AND DECLARATIONS 1

106 REPORTS AND DECLARATIONS i) Test reports a) Factory Test Report (not available for all pump types; contact Customer Service in advance) - Test report compiled at the end of the assembly line, including flow-head performance test (ISO 99:1) and tightness test. b) Audit Test Report - Test report for electric pumps compiled in the test room, comprising flow-head-pump input-pump efficiency performance test (ISO 99:1) c) NPSH Test Report - Test report for electric pumps compiled in the test room, comprising flow-npsh performance test (ISO 99:1) d) Noise Test Report - Report indicating sound pressure and power measurements (EN ISO 31, EN ISO 113, EN ISO 71) e) Vibration Test Report - Report indicating vibration measurements (ISO 11-1) ii) Declaration of product conformity with the technical requirements indicated in the order a) EN 1: - type.1 - does not include test results on supplied or similar products. b) EN 1: - type. - includes test results (materials certificates) on similar products. iii) Issue of a further EC Declaration of Conformity, - in addition to the one accompanying the product, it comprises references to European law and the main technical standards (e.g.: MD //EC, EMCD /1/EC, ErP 9/1/EC). N.B.: if the request is made after receipt of the product, communicate the code (name) and serial number (date + progressive number). iv) Manufacturer s declaration of conformity - relative to one of more types of products without indicating specific codes and serial numbers. v) Other certificates and/or documentation on request - subject to availability or feasibility. vi) Duplication of certificates and/or documentation on request - subject to availability or feasibility. 1

107 TECHNICAL APPENDIX 17

108 e-mp SERIES FORCES AND MOMENTS AT PUMP FLANGES TECHNICAL APPENDIX 1

109 e-mp SERIES FORCES AND MOMENTS AT PUMP FLANGES 19 TECHNICAL APPENDIX

110 NPSH The minimum operating values that can be reached at the pump suction end are limited by the onset of cavitation. Cavitation is the formation of vapour-filled cavities within liquids where the pressure is locally reduced to a critical value, or where the local pressure is equal to, or just below the vapour pressure of the liquid. The vapour-filled cavities flow with the current and when they reach a higher pressure area the vapour contained in the cavities condenses. The cavities collide, generating pressure waves that are transmitted to the walls. These, being subjected to stress cycles, gradually become deformed and yield due to fatigue. This phenomenon, characterized by a metallic noise produced by the hammering on the pipe walls, is called incipient cavitation. The damage caused by cavitation may be magnified by electrochemical corrosion and a local rise in temperature due to the plastic deformation of the walls. The materials that offer the highest resistance to heat and corrosion are alloy steels, especially austenitic steel. The conditions that trigger cavitation may be assessed by calculating the total net suction head, referred to in technical literature with the acronym NPSH (Net Positive Suction Head). The NPSH represents the total energy (expressed in m.) of the liquid measured at suction under conditions of incipient cavitation, excluding the vapour pressure (expressed in m.) that the liquid has at the pump inlet. To find the static height hz at which to install the machine under safe conditions, the following formula must be verified: hp + hz (NPSHr +.) + hf + hpv where: hp is the absolute pressure applied to the free liquid surface in the suction tank, expressed in m. of liquid; hp is the quotient between the barometric pressure and the specific weight of the liquid. hz is the suction lift between the pump axis and the free liquid surface in the suction tank, expressed in m.; hz is negative when the liquid level is lower than the pump axis. hf is the flow resistance in the suction line and its accessories, such as: fittings, foot valve, gate valve, elbows, etc. hpv is the vapour pressure of the liquid at the operating temperature, expressed in m. of liquid. hpv is the quotient between the Pv vapour pressure and the liquid s specific weight., is the safety factor. 1 The maximum possible suction head for installation depends on the value of the atmospheric pressure (i.e. the elevation above sea level at which the pump is installed) and the temperature of the liquid. To help the user, with reference to water temperature ( C) and to the elevation above sea level, the following tables show the drop in hydraulic pressure head in relation to the elevation above sea level, and the suction loss in relation to temperature. Water temperature ( C) Suction loss (m),,7,, 7, 1, 1, Elevation above sea level (m) Suction loss (m), 1,1 1,,,7 3,3 Friction loss is shown in the tables Flow Resistance of this catalogue. To reduce it to a minimum, especially in cases of high suction head (over - m.) or within the operating limits with high flow rates, we recommend using a suction line having a larger diameter than that of the pump s suction port. It is always a good idea to position the pump as close as possible to the liquid to be pumped. Make the following calculation: Liquid: water at ~1 C γ = 1 kg/dm 3 Flow rate required: m 3 /h Head for required delivery: 7 m. Suction lift: 3, m. The selection is an 33SV3G7T pump whose NPSH required value is, at m 3 /h, of m. For water at 1 C hp = Pa / γ = 1,33m, hpv = Pv / γ =,17m (,171 bar) The Hf flow resistance in the suction line with foot valves is ~ 1, m. By substituting the parameters in formula 1 with the numeric values above, we have: 1,33 + (-3,) ( +,) + 1, +,17 from which we have:, > 3,9 The relation is therefore verified. TECHNICAL APPENDIX 11

111 VAPOUR PRESSURE VAPOUR PRESSURE ps AND ρ DENSITY OF WATER TABLE t T ps ρ t T ps ρ t T ps ρ C K bar kg/dm 3 C K bar kg/dm 3 C K bar kg/dm 3 73,1,11,999 3,1,171, ,1 1,9,99 1 7,1,7, ,1,111,9 1 39,1,11,91 7,1,7, ,1,17313, ,1,, ,1,7, ,1,117, ,1,3933, ,1,13 1, 9 33,1,191, ,1,3,93 7,1,7 1, 333,1,199, ,1,713,93 79,1,93 1, 1 33,1,,9 13,1,7,93 7,1,11, ,1,1, ,1 3,1,9311 1,1,17, ,1,, ,1 3,3,99 9,1,117, ,1,391, ,1 3,1,97 1 3,1,17, ,1,1,9 1 13,1 3,1,9 11,1,131, ,1,1, ,1,1,91 1,1,11, ,1,733,9793 1,1,33,911 13,1,197,999 31,1,, ,1,11, ,1,197, ,1,9,97 1 3,1 7,,9 1,1,17, ,1,311, ,1 7,9, ,1,117, ,1,33,977 17,1,9, ,1,193,99 7 3,1,339,97 1 3,1 1,7,9 1 91,1,, ,1,33,97 1,1 11,33,1 19 9,1,19, ,1,39, ,1 1,1,7 93,1,337, ,1,3,97 19,1 13,97,7 1 9,1,, ,1,19,971 73,1 1,,7 9,1,, ,1,19,973 7,1 17,3, 3 9,1,, ,1,3, ,1 19,77, 97,1,9, ,1,7,973 1,1 1,,7 9,1,31, ,1,73,971 93,1 3,19,3 99,1,33,99 1 3,1,931,971 9,1,1, ,1,3,99 3,1,133,97 3 3,1 7,97,73 31,1,377, ,1,3,997 3,1 3,3, 9 3,1,,99 37,1,7,991 13,1 33,7, ,1,1,997 3,1,7,9 1,1 3,3, 31 3,1,91,99 39,1,11,97 3,1 39,77, ,1,73, ,1,9,971,1 3,, ,1,9,997 31,1,9,9 33,1,93, ,1,31,99 9 3,1,79,9 3,1,77, ,1,, ,1,711,9 7 3,1,, ,1,9, ,1,71,9 7,1 9,9, ,1,7, ,1,71,93 3,1,, ,1,, ,1,79,93,1 9,1, ,1,991, ,1,1,9 9 3,1 7,1, ,1,737, ,1,3,91 9,1,37, ,1,7777, ,1,79, ,1,97,71 31,1,19, ,1,99,9 3 7,1 9,1, ,1,939, ,1,93, ,1 9,7,9 317,1,91, ,1,977,9 31,1 1,1,791 31,1,9, ,1 1,133, ,1 11,9,9 319,1,1, ,1 1,7,97 3 9,1 1,,1 7 3,1,11, ,1 1,1,9 33 3,1 1,3, 31,1,111, ,1 1,, ,1 1,,1 9 3,1,1173,9 1 31,1 1,339,9 3 3,1 1,3,73 33,1,133, ,1 1,37, ,1 1,7,7 1 3,1,191, ,1 1,31, ,1 1,,1 3,1,1313, ,1 1,3,97 37,1 7,3 1,,31 3 3,1,193, ,1 1,7,9 37,1,1, ,1 1,,9 G-at_npsh_b_sc 111 TECHNICAL APPENDIX

112 TABLE OF FLOW RESISTANCE IN 1 m OF STRAIGHT CAST IRON PIPELINE (HAZEN-WILLIAMS FORMULA C=1) FLOW RATE NOMINAL DIAMETER in mm and inches m 3 /h l/min /" 3/" 1" 1 1/" 1 1/" 1/" 3" " " " 7" " 1" 1" 1" 1", 1 v,9,3,3,1,13 hr 1 3,9 1,33,,13 The hr values must be multiplied by:,9 1 v 1,,,1,31,,71 for galvanized or painted steel pipes hr 33,9,3,,,9, for stainless steel or copper pipes 1, v 1,9 1,,,1,7,17,7 for PVC or PE pipes hr 7,7 1,1,79 1,,9,1 1, v,3 1,33,,,33,1 hr 7, 1, 7,,1,73, 1, 3 v,3 1,9 1,,,, hr 1 3,1 1,1 3, 1,3,3,1 3 v 3,3 1, 1,19,73,,3 hr 1, 13,, 1,37,, v,1 1,3,3,3,3, hr 1, 17,3,19 1,7,9,1 3 v, 1,7 1,,,, hr 77,,1 7,,,9, 3, v 3,1, 1,,,1,3 hr 1 3, 11, 3,71 1,,3, 7 v 3,7,3 1,,93,9,3 hr 1,7 1,,93 1,,, v,,7 1, 1,,, hr 1,3 1,7,3,13,9, 9 1 v v 3, 3, 1,7,7 1,19 1,33,7,,,,3,33 hr hr 77, 9,1 3,3,3 7, 9,, 3,,7,9,7,33 7, 1 v,,9 1, 1,,3,1 hr 1, 1,, 1,3,9 9 1 v 3,11 1,99 1,7,7,,3 hr 9,9,, 1,9,9,3 1, 17 v 3,3,3 1,9,,,37 hr 79,7,9 9,7,3,9,31 1 v,1, 1,7 1,1,, hr 1 3, 11, 3,3 1,1, v v,1 3,9 3,3,,1 1,1 1, 1,,3,,3,1,3 hr hr 1 7,,, 17,,,9,9 1,7,,,, 3 3 v v v,31,3,1 3,, 3,,1,1 1,99 1,33 1, 1,7, 1,,,,,7,3,7, hr hr hr 1 17, 1, 3,,7 11, 17,,9,,1 3,3 1,3,1 1,,,73,,,3, 7 v,9 3,,3 1,9,9,,9 hr 11 3, 11,9,3 1,3,, 9 v v,79 7,,,,,99 1,7 1,91 1,9 1,,7,,, hr hr 11 1,,3 1,3 19,,1,1 1,7,1,7,9,3, 1 v,3 3,3,1 1,3,9,9,3 hr 3, 3,1 7,79,3 1,,1,7 7 1 v,,1, 1,7 1,1,7, hr 9, 3,9 11, 3,97 1,3,77, 9 1 v 7,,9 3,1, 1, 1,, hr 13,9 1,,7,9 1,, 1 17 v,79,1 3,7,3 1, 1,1,93 hr 179,1 1,9 7, 3, 1,,7 1 v,3,,7 1,9 1,39 1,, hr 3,3,1 9, 3,9 1,,9,3 1 v,9,31 3,,3 1,73 1,33, hr 1, 1,3,9,7 1,,9 1 3 v,37,,3, 1,9 1,,71 hr 9,,1, 3,9,3,9, 1 3 v 7,3,7 3,3,3 1, 1,19,3 hr 79,1,7 11,,1,71,91,3 v,9, 3,77,77,1 1,3,9 hr 11 3, 1,1, 3, 1,17, 3 v,79,7 3,7, 1,7 1,1 hr 1, 1, 1,,3 1,77,73 3 v,1,,1 3,1, 1, hr 7,3 9, 1,1 7,33,7 1, 7 v,1, 3,7,3 1, 1,1 hr 39, 1,7 9,7 3,9 1,3, 9 v v 7,,9,,,,7,7 3, 1,9,1 1,39 1, 1,19 hr hr,7 3, 3,9 9, 1,9 1,,1, 1,73,1, 1,,3 1 G-at-pct-en_a_th v,93,31 3,,3 1,73 1,33 hr 3, 1,9,3, 1,, hr = flow resistance for 1 m of straight pipeline (m) V = water speed (m/s) TECHNICAL APPENDIX 11

113 FLOW RESISTANCE TABLE OF FLOW RESISTANCE IN BENDS, VALVES AND GATES The flow resistance is calculated using the equivalent pipeline length method according to the table below: ACCESSORY TYPE Equivalent pipeline length (m) bend,,,,,,,9 1,1 1, 1,9,, 9 bend,,,9 1,1 1,3 1,,1, 3, 3,9,7, 9 smooth bend,,,,,9 1,1 1,3 1,7 1,9, 3, 3,9 Union tee or cross 1,1 1,3 1,7,1, 3,,3,3, 7, 1,7 1, Gate - - -,,,,,,,9 1,1 1,3 Non return valve 1,1 1, 1,9, 3, 3,,7,9 7, 9, 11, 13,9 DN G-a-pcv-en_a_th The table is valid for the Hazen Williams coefficient C=1 (cast iron pipework); for steel pipework, multiply the values by 1,1; for stainless steel, copper and coated cast iron pipework, multiply the values by 1,; When the equivalent pipeline length has been determined, the flow resistance is obtained from the table of flow resistance. The values given are guideline values which are bound to vary slightly according to the model, especially for gate valves and non-return valves, for which it is a good idea to check the values supplied by manufacturers. 113 TECHNICAL APPENDIX

114 VOLUMETRIC CAPACITY Litres Cubic metres Cubic feet Cubic feet Imperial gallon U.S. gallon per minute per hour per hour per minute per minute per minute l/min m 3 /h ft 3 /h ft 3 /min Imp. gal/min US gal/min 1,,,119,33,, 1,7 1, 3,317, 3,,9,719,3 1,,17,13,17,31 1,99, 1,, 7,,1,7 9,3,1 1, 1,9 3,7,71,,1337,37 1, PRESSURE AND HEAD Newton per kilo Pascal bar Pound force per Metre Millimetre of square metre square inch of water mercury N/m kpa bar psi m H O mm Hg 1,,1 1 x 1-1, x 1-1, x 1 -,7 1, 1,,1,1,1 7, 1 x 1 1, 1, 1,3 1,197 7,3 9,77,9,9 1,,731 1,711 9, 9,7,91 1,3 1, 73,1 133,3,1333,13,193,13 1, LENGTH Millimetre Centimetre Metre Inch Foot Yard VOLUME mm cm m in ft yd 1,,1,1,39,33,11 1, 1,,1,3937,3,19 1, 1, 1, 39,371 3, 1,93,,, 1,,33,7 3, 3,,3 1, 1,, , 91,,91 3, 3, 1, Cubic metre Litre Millilitre Imperial gallon U.S. gallon Cubic foot m 3 L ml imp. gal. US gal. ft 3 1, 1, 1 x 1 19,99,17 3,317,1 1, 1,,,,33 1 x 1 -,1 1,, x 1 -, x 1-3,3 x 1 -,,1,7 1, 1,9,1,3 3,7 3 7,1,37 1,,1337,3,31 31,, 7, 1, TEMPERATURE Water Kelvin Celsius Fahrenheit K C F icing 73,1, 3, boiling 373,1 1, 1, F = C C = ( F 3) 9 G-at_pp-en_b_sc TECHNICAL APPENDIX 11

115 FURTHER PRODUCT SELECTION AND DOCUMENTATION Xylect TM Xylect TM is pump solution selection software with an extensive online database of product information across the entire Lowara range of pumps and related products, with multiple search options and helpful project management facilities. The system holds up-to-date product information on thousands of products and accessories. The possibility to search by applications and the detailed information output given makes it easy to make the optimal selection without having detailed knowledge about the Lowara products. The search can be made by: Application Product type Duty point Xylect TM gives a detailed output: List with search results Performance curves (flow, head, power, efficiency, NPSH) Motor data Dimensional drawings Options Data sheet printouts Document downloads incl dxf files The search by application guides users not familiar with the product range to the right choice. 11 TECHNICAL APPENDIX

116 FURTHER PRODUCT SELECTION AND DOCUMENTATION Xylect TM The detailed output makes it easy to select the optimal pump from the given alternatives. The best way to work with Xylect TM is to create a personal account. This makes it possible to: Set own standard units Create and save projects Share projects with other Xylect TM users Every user has a My Xylect space, where all projects are saved. Dimensional drawings appear on the screen and can be downloaded in dxf format. TECHNICAL APPENDIX 11

117 117

118 11

119

120 Xylem zīl m e 1) The tissue in plants that brings water upward from the roots; ) a leading global water technology company. We re a global team unified in a common purpose: creating advanced technology solutions to the world s water challenges. Developing new technologies that will improve the way water is used, conserved, and re-used in the future is central to our work. Our products and services move, treat, analyze, monitor and return water to the environment, in public utility, industrial, residential and commercial building services, and agricultural settings. With its October 1 acquisition of Sensus, Xylem added smart metering, network technologies and advanced data analytics for water, gas and electric utilities to its portfolio of solutions. In more than 1 countries, we have strong, long-standing relationships with customers who know us for our powerful combination of leading product brands and applications expertise with a strong focus on developing comprehensive, sustainable solutions. For more information on how Xylem can help you, go to For information and technical support Lenntech info@lenntech.com Tel Fax Xylem Water Solutions Italia Srl reserves the right to make modification without prior notice. Lowara, Xylem are trademarks of Xylem Inc. or one of its subsidiaries 17 Xylem, Inc.

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