e-hm TM Series HM..P - HM..S - HM..N 60 Hz

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1 6 Hz e-hm TM Series HM..P - HM..S - HM..N THREADED HORIZONTAL MULTISTAGE CENTRIFUGAL ELECTRIC PUMPS EQUIPPED WITH IE3 MOTORS COMPLYING WITH IEC Cod Rev. B Ed.3/214

2 e-hm SERIES HYDRAULIC PERFORMANCE AT 6 Hz Q [Imp gpm] Q [US gpm] H [m] 7 6 HM..S-N 2 H [ft] 5 4 HM..P ,7, Q [m 3 /h] Q [l/min] _A_CH Lowara is a trademark of Lowara srl Unipersonale, subsidiary of Xylem Inc. HYDROVAR is a trademark of Fluid Handling LLC, subsidiary of Xylem Inc. Victaulic is a trademark of Victaulic Company Ltd. Noryl is a trademark of SABIC Innovative Plastics Company. Kalrez is a trademark of E.I. Du Pont Nemours & Co. Xylect is a trademark of Xylem Water Solutions AB, subsidiary of Xylem Inc. 2

3 CONTENTS General introduction...5 Applications, benefits - Building services...6 Applications, benefits - Industry...7 General characteristics...8 Specifications...9 Identification code...1 Electric pump rating plate...11 Electric pump cross section and main components 1, 3, 5 HM..P series , 3, 5 HM..S - HM..N series (compact design) , 3, 5, 1, 15, 22 HM..S - HM..N series (sleeve design)...14 Mechanical seals...15 Motors...17 HM..P series Hydraulic performance range at 6 Hz, 2 poles...2 Dimensions and weights, operating characteristics at 6 Hz, 2 poles...22 HM..S - HM..N series Hydraulic performance range at 6 Hz, 2 poles...28 Dimensions and weights, operating characteristics at 6 Hz, 2 poles...32 Accessories...51 Reports and declarations...55 Technical appendix

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5 e-hm SERIES GENERAL INTRODUCTION Our customers are central to our business. Many years of collaboration with them across the different markets and all over the world has taught us that the Building Services market requires specific pump design to meet the challenge of the energy saving and the industrial segments need customized and reliable compact pumps to ensure top performance of the systems and continuous quality of the production. Therefore we have developed a wide range of horizontal multistage pumps, the e-hm TM, to give an appropriate and dedicated solution to special applications and installations in the industry and in the building services market. Pump design The e-hm is a non-self-priming, end-suction horizontal multistage, high pressure centrifugal pump, with axial threaded inlet and radial threaded outlet. The pumps are close-coupled design and are equipped with non-standard Lowara motors. The e-hm is equipped with mechanical seal. The e-hm are highly modular pumps that are fitted with an innovative hydraulic design that secures high efficiency performances and an increased Mean Time Between Failure. The e-hm is available in two different configurations: - Compact design for sizes 1HM, 3HM and 5HM up to 6 stages - Sleeve design for sizes 1HM, 3HM and 5HM from 7 stages and above; any models of 1HM, 15HM and 22HM. The Compact design is made of one single piece fabricated stainless steel pump body directly connected to the motor flange. The Compact has only one O-ring for the sealing of the casing that clearly reduces the leakages possibilities. The Sleeve design is made of an external stainless steel TIG welded sleeve and of separate suction casing kept together with the mean of an aluminum casted pump bracket and of stainless steel tie rods screwed in the motor flange. The e-hm is available in three different material execution: - HM..P: Stainless steel pump body (EN 1.431/ AISI 34) with Noryl impeller for sizes 1HM, 3HM, 5HM up to 6 stages. - HM..S: full stainless steel (EN 1.431/ AISI 34) any models. - HM..N: full stainless steel (EN 1.441/ AISI 316) any models. Motor The e-hm are equipped with surface motors designed and manufactured in accordance with EN standards. The e-hm series can be equipped as well with variable speed drivers such as the Teknospeed and the Hydrovar. Range declination The e-hm are available as: - Fix speed Electric pump. - Variable speed system with Teknospeed driver embedded (on request). 5

6 e-hm SERIES Applications, benefits Building Services The e-hm series and the different available configurations have been designed to cover a wide range of applications in the residential and small commercial building services from the water supply to pressure boosting as well as heating and cooling applications. Applications The e-hm series could be installed both in single privateown house and in small/medium residential buildings. The e-hm series will be as well your preferred choice for water supply and pressure boosting in small block offices and shops. The e-hm series could be finally installed as well for small/medium irrigation installation. Benefits Payback: Installing the e-hm series guarantee a very short payback period as the premium efficiency makes the e-hm the lowest energy consuming fixed speed pump on the market. Combined with Teknospeed makes the pump paying for itself in very quickly. (43% of reduced operating cost per year). Reliability: The e-hm series secures as well reliable operations over time thanks to its robust and innovative design. This could be increased with the installation of the Teknospeed: variable speed operation reduces mechanical stress on the pump components and water hammering during stopping. Comfort: The e-hm series guarantee as well an increased user comfort thanks to very silent operation. The combination of the e-hm series with the Teknospeed will secure constant pressures at any points of water in your building and constant temperatures even when other taps are opened! For the installers, the e-hm series are easy to install and the best choice for the end user in term of energy savings. The combination of the e-hm with the Teknospeed is the guarantee of quick and easy installation as the system is supplier with cable, plug and pressure transmitter. Only small vessels are required. Features - Compact design with best-in class performances. - Wide range of performances with 6 sizes and flow up to 34 m 3 /h. - Nominal pressure up to 1 bar with Noryl impellers and 16 bar with stainless steel impellers. - Versatile design of the smaller sizes (up to 5HM). Compact version with Noryl impellers for restricted space installation. High efficiency version with stainless steel impellers when energy saving is a must. - Robust and silent design of the larger sizes (from 1HM to 22HM) due the sleeve configuration. - IE3 Lowara motors: high performances and silent operations. - Stainless steel material for pump body and main components in contact with the pumped liquid. - Essential O-ring design that highly reduces the sealing weaknesses (1 O-Ring for Compact, 2 for Sleeve). 6

7 e-hm SERIES Applications, benefits Industry The e-hm series and the different available configurations and standard options have been designed to cover a wide range of applications in industry from washing and cleaning machines, to cooling and heating applications, thru water treatment and filtration processes, food and beverage and pharmaceutical applications. Applications The e-hm series could be installed either in machines where compactness and high performances are a must or within industrial processes where the user looks for a reliable modular design with a restricted vertical footprint. The e-hm series offers as well a wide range of standard options to fit every single requirement coming from the industry. The different material and configuration available allow e-hm series working with a wide range of liquid temperature starting -3 C to +12 C. Benefits Reliability: The e-hm series have been design to withstand heavy duty applications in Industry. For instance, e-hm balanced impeller helps decreasing the axial thrust withstand by the motor bearing extending its life time; pump body thickness has been increased by 2% to support heavy duty operation. Versatility: The e-hm series have been designed to be modular, offering two different mechanical configurations (Very compact or highly efficient design) and multiple material executions (from Noryl impeller and AISI 34 pump body to full AISI 316 execution) and surface treatment (electropolishing and passivation). Multiple standard options make e-hm fitting in many different applications. Performances: The e-hm series provide best-in class efficiency up to 72% that means 3% energy saving in average compare to similar pump design from the market. The e-hm series will be clearly your preferred choice to meet any efficiency requirements or simply to save money in your installation and processes. A global platform: the e-hm series are assembled in different factories across the world to make e-hm always closer to our customers. Beyond our commitment to reduce the carbon footprint of e-hm, this global platform secure that the same design is available everywhere with the same quality processes. Features - Wide range of performances with 6 sizes, flow up to 34 m 3 /h, pressure up to 157 meters. - Nominal pressure up to 1 bar with Noryl impellers and 16 bar with stainless steel impellers - More than 85% of the range has the same suction height (9mm) for easy installation or system upgrade. - Wide range of temperatures for pumped liquid: -3 C to +12 C. - Wide range of voltages for worldwide applications. - Availability of UL (curus) motor version for North American market (23/46V 6 Hz with 9 pins control box. - Essential O-ring design that highly reduces the sealing weaknesses (1 O-Ring for Compact, 2 for Sleeve). - IE3 Lowara motors: high performances and silent operations. 7

8 e-hm SERIES GENERAL CHARACTERISTICS HM..P SERIES Max efficiency flow (m 3 /h) 2,3 3,6 6,2 Flow range (m 3 /h),8 3 1,4 5,2 3 8,4 Maximum head ( m ) 1 87,6 71,1 Motor power ( kw ),4 1,1,5 1,5,75 1,5 Max ( % ) of pump Standard temperature ( C ) hmp_2p6_a_tg HM..S - HM..N SERIES Max efficiency flow (m 3 /h) 2,1 3,6 7, ,5 2,9 Flow range (m 3 /h),8 2,8 1,4 5,2 3 1, Maximum head ( m ) ,1 67 Motor power ( kw ),3 1,5,3 2,2,5 3 1,1 5,5 1,5 5,5 2,2 5,5 Max η ( % ) of pump Standard temperature ( C ) CONNECTIONS Rp thread (standard) NPT thread (on request) DN Victaulic (on request) ELECTRIC PUMP NOISE POWER kw,3,4,5,55,75,95 1,1 1,5 2, ,5 TYPE STORAGE AND TRANSPORT TEMPERATURE from -4 C to +6 C. NOISE LpA db hm_mot_2p6_a_tr HM..P - HM..S - HM..N SERIES 1-22hm_2p6_a_tg suction /4 1 1/2 2 2 delivery /4 1 1/2 1 1/2 suction 1" 1" 1" 1/4 1" 1/2 2" 2" delivery 1" 1" 1" 1" 1/4 1" 1/2 1" 1/2 suction delivery hm_2p5-en_b_tc The table show the mean sound pressure (Lp) measured as per Curve A (Standard ISO 168). Noise values were measured with the 6 Hz running with a tolerance of 3 db (A). 8

9 e-hm SERIES High efficiency horizontal multistage pump MARKET SECTORS BUILDING SERVICES. INDUSTRY. APPLICATIONS Pressure boosting and water supply systems. Washing and cleaning industry including vehicles washing. Circulation of hot and cold liquids (like water, water and glycol) for heating, cooling and conditioning systems. Water treatment applications. Handling of moderately aggressive liquids. SPECIFICATIONS PUMP Flow rate: up to 34 m 3 /h. Head: up to 157 m. Ambient temperature: from -15 C to +5 C single-phase and three-phase versions. Temperature of the pumped liquid: minimum from -1 C to -3 C according to gasket material. maximum +9 C for three-phase version and uses according to EN C for three-phase version with stainless steel impellers (HM..S, HM..N) and uses other than EN C for single-phase version. Maximum operating pressure: 1 bar (PN 1) for pumps with Noryl impeller. 16 bar (PN 16) for pumps with stainless steel impeller. Connections: Rp threaded for both suction and discharge manifold. Hydraulic performances compliant with ISO 996:212 - Grade 3B (ex ISO 996: Annex A). MOTOR Electric short-circuit squirrel-cage motor (TEFC), enclosed construction, air-cooled. 2-pole. IP 55 protection grade as motor only (EN 634-5). IP X5 as electric pump (EN ). Insulation class 155 (F). Performances according to EN Standard voltage: Single-phase: V, 6 Hz, 2 poles. Three-phase: 22-23/38-4 V, 6 Hz, 2 poles. Three-phase from,75 to 5,5 kw efficiency class IE3. All pumps are certified for drinking water use (WRAS and ACS). 9

10 e-hm SERIES IDENTIFICATION CODE PUMP TYPE SIZE AND MATERIALS MOTOR DATA MECHANICAL SEAL SPECIAL CONFIGURATIONS 1 HM 8 N 55 T 6P V B E X X X /_ Material pump P = Stainless steel (AISI 34) with Noryl TM impellers S = Stainless steel (AISI 34) N = Stainless steel (AISI 316) Number of impellers Null or letter assigned by the manufacturer Connections Null = Threaded V = Victaulic Series name HM = Horizontal Multistage Flow rate in m 3 /h Null = None P = PTC in winding S = Motor heater H = 5 C ambient temperature D = w/o plug for drainage U = UL (curus) approved F = Internal fluxing of the mechanical seal Rated motor power (kw x 1) M = Single-phase T = Three-phase Operating voltage range 5 Hz 5H = 1x22-24 V 5D = 1x11-12 V 5R = 3x22-24/ V 5V = 3x38-415/66-69 V 5P = 3x2-28/ V 5S = 3x /44-46 V 5T = 3x29-3/5-525 V 5W = 3x44-46/- V *5Z = 3x5-525/- V 6 Hz 6F = 1x22-23 V 6B = 1x V 6C = V 6E = 1x2-21 V 6P = 3x22-23/38-4 V 6R = 3x /44-48 V 6V = 3x44-48/- V 6U = 3x38-4/66-69 V 6L = 3x11-115/19-2 V 6N = 3x2-28/ V 6T = 3x33-346/575-6 V *6Z = 3x575/- V Elastomers E = EPDM V = FPM K = FFPM (Kalrez ) Stationary part Q 1 = Silicon Carbide B = Carbon resin impregnated Rotating part Q 1 = Silicon Carbide V = Aluminium oxide (Ceramic) Null = None A = Schuko plug + 3 m cable B = British plug + 2 m cable C = Australian plug + 2 m cable D = Documents/certificates on specific request E = Electropolished & passivate F = Oversized motor (1 size) G =Oversized motor (2 size) L = Seal housing + lock pin V = Air relief valve Z = Altro EXAMPLE: 1HM8N55T6PQBE HM series electric pump, flow rate 1 m 3 /h, number of impellers 8, N version (AISI 316), rated motor power 5,5 kw, three-phase 6 Hz, voltage 22-23/38-4 V, Silicon/Carbide/EPDM mechanical seal. * For uses other than EN For special configurations please contact the sales network. 1

11 e-hm SERIES ELECTRIC PUMP RATING PLATE LEGEND 2 - Capacity range 3 - Head range 4 - Minimum head (EN ) 6 - Frequency 7 - Maximum operating pressure 8 - Electric pump unit absorbed power 9 - Pump / electric pump unit type 11 - Electric pump unit / pump part number 12 - Protection degree 13 - Maximum operating liquid temperature (uses as EN ) 15 - Rated voltage range 16 - Serial number (date + progressive number) 17 - Maximum operating liquid temperature (uses other than EN ) 19 - Maximum operating ambient temperature 2 - Electric pump weight 11

12 1, 3, 5 HM..P SERIES ELECTRIC PUMP CROSS SECTION AND MAIN COMPONENTS TABLE OF MATERIALS REF. NAME MATERIAL REFERENCE STANDARDS N. EUROPE USA 1 Pump body Stainless steel EN X5CrNi18-1 (1.431) AISI 34 2 Impeller Technopolymer (Noryl ) 3 Diffuser Stainless steel EN X5CrNi18-1 (1.431) AISI 34 5 Shaft Stainless steel EN X5CrNi18-1 (1.431) AISI 34 5 Adapter Aluminium EN 176-AC-AlSi11Cu2 (Fe) (AC461) - 6 Seal housing Stainless steel EN X5CrNi18-1 (1.431) AISI 34 7 Mechanical seal Ceramic / Carbon / EPDM 8 Elastomers EPDM 9 Fill / drain plugs Nickel-plated brass EN CuZn39Pb3 (CW614N) - 1 Wear ring Technopolymer (PPS) 11 Bolts and screws Stainless steel EN X5CrNi18-1 (1.431) AISI hm-p-en_a_tm 12

13 1, 3, 5 HM..S - HM..N SERIES ELECTRIC PUMP CROSS SECTION AND MAIN COMPONENTS (COMPACT DESIGN) TABLE OF MATERIALS HM..S SERIES REF. NAME MATERIAL REFERENCE STANDARDS N. EUROPE USA 1 Pump body Stainless steel EN X5CrNi18-1 (1.431) AISI 34 2 Impeller Stainless steel EN X5CrNi18-1 (1.431) AISI 34 3 Diffuser Stainless steel EN X5CrNi18-1 (1.431) AISI 34 4 Shaft Stainless steel EN X5CrNiMo (1.441) AISI Adapter Aluminium EN 176-AC-AlSi11Cu2 (Fe) (AC461) - 6 Seal housing Stainless steel EN X5CrNi18-1 (1.431) AISI 34 7 Mechanical seal Ceramic / Carbon / EPDM 8 Elastomers EPDM 9 Fill / drain plugs Stainless steel EN X5CrNiMo (1.441) AISI Wear ring Technopolymer (PPS) 11 Bolts and screws Stainless steel EN X5CrNi18-1 (1.431) AISI hm-cp-s-en_a_tm TABLE OF MATERIALS HM..N SERIES REF. NAME MATERIAL REFERENCE STANDARDS N. EUROPE USA 1 Pump body Stainless steel EN X2CrNiMo (1.444) AISI 316L 2 Impeller Stainless steel EN X2CrNiMo (1.444) AISI 316L 3 Diffuser Stainless steel EN X2CrNiMo (1.444) AISI 316L 4 Shaft Stainless steel EN X5CrNiMo (1.441) AISI Adapter Aluminium EN 176-AC-AlSi11Cu2 (Fe) (AC461) - 6 Seal housing Stainless steel EN X2CrNiMo (1.444) AISI 316L 7 Mechanical seal Ceramic / Carbon / EPDM 8 Elastomers EPDM 9 Fill / drain plugs Stainless steel EN X5CrNiMo (1.441) AISI Wear ring Technopolymer (PPS) 11 Bolts and screws Stainless steel EN X5CrNi18-1 (1.431) AISI hm-cp-n-en_a_tm 13

14 1, 3, 5, 1, 15, 22 HM..S - HM..N SERIES ELECTRIC PUMP CROSS SECTION AND MAIN COMPONENTS (SLEEVE DESIGN) TABLE OF MATERIALS HM..S SERIES REF. NAME MATERIAL REFERENCE STANDARDS N. EUROPE USA 1 Head Stainless steel EN X5CrNi18-1 (1.431) AISI 34 2 Impeller Stainless steel EN X5CrNi18-1 (1.431) AISI 34 3 Diffuser Stainless steel EN X5CrNi18-1 (1.431) AISI 34 4 Outer sleeve Stainless steel EN X5CrNi18-1 (1.431) AISI 34 5 Shaft Stainless steel EN X5CrNiMo (1.441) AISI Adapter Aluminium EN 176-AC-AlSi11Cu2 (Fe) (AC461) - 7 Ring with foot Aluminium EN 176-AC-AlSi11Cu2 (Fe) (AC461) - 8 Seal housing Stainless steel EN X5CrNi18-1 (1.431) AISI 34 9 Mechanical seal Ceramic / Carbon / EPDM (PN1) - Silicon Carbide/Carbon/EPDM (PN16) 1 Elastomers EPDM 11 Shaft sleeve and bushing Tungsten carbide 12 Fill / drain plugs Stainless steel EN X5CrNiMo (1.441) AISI Tie rods Stainless steel EN X17CrNi16-2 (1.457) AISI Wear ring Technopolymer (PPS) TABLE OF MATERIALS HM..N SERIES 1-22hm-cm-s_a_tm REF. NAME MATERIAL REFERENCE STANDARDS N. EUROPE USA 1 Head Stainless steel EN X2CrNiMo (1.444) AISI 316L 2 Impeller Stainless steel EN X2CrNiMo (1.444) AISI 316L 3 Diffuser Stainless steel EN X2CrNiMo (1.444) AISI 316L 4 Outer sleeve Stainless steel EN X2CrNiMo (1.444) AISI 316L 5 Shaft Stainless steel EN X5CrNiMo (1.441) AISI Adapter Aluminium EN 176-AC-AlSi11Cu2 (Fe) (AC461) - 7 Ring with foot Aluminium EN 176-AC-AlSi11Cu2 (Fe) (AC461) - 8 Seal housing Stainless steel EN X2CrNiMo (1.444) AISI 316L 9 Mechanical seal Ceramic / Carbon / EPDM (PN1) - Silicon Carbide/Carbon/EPDM (PN16) 1 Elastomers EPDM 11 Shaft sleeve and bushing Tungsten carbide 12 Fill / drain plugs Stainless steel EN X5CrNiMo (1.441) AISI Tie rods Stainless steel EN X17CrNi16-2 (1.457) AISI Wear ring Technopolymer (PPS) 1-22hm-cam-n-en_a_tm 14

15 e-hm SERIES MECHANICAL SEALS LIST OF MATERIALS ACCORDING TO EN TYPE OF SEAL POSITION 1-2 POSITION 3 POSITION 4-5 V : Aluminium oxide (Ceramic) E : EPDM G : AISI 316 Q 1 : Silicon Carbide V : FPM B : Carbon, resin-impregnated K : FFPM (Kalrez ) 1-22hm_ten-mec-en_a_tm POSITION *TEMPERATURE **OPERATING TYPE PRESSURE ( C ) ROTATING PART STATIONARY PART ELASTOMERS SPRINGS OTHER COMPONENTS STANDARD MECHANICAL SEAL VBEGG V B E G G PN1 OTHER TYPES OF AVAILABLE MECHANICAL SEAL VBVGG V B V G G PN1 Q 1 Q 1 VGG Q 1 Q 1 V G G PN1 Q 1 Q 1 KGG Q 1 Q 1 K G G PN1 Q 1 Q 1 EGG Q 1 Q 1 E G G PN1 STANDARD MECHANICAL SEAL Q 1 BEGG Q 1 B E G G PN16 OTHER TYPES OF AVAILABLE MECHANICAL SEAL Q 1 Q 1 VGG Q 1 Q 1 V G G PN16 Q 1 BVGG Q 1 B V G G PN16 Q 1 Q 1 KGG Q 1 Q 1 K G G PN16 Q 1 BKGG Q 1 B K G G PN16 Q 1 Q 1 EGG Q 1 Q 1 E G G PN16 * For all single-phase versions limit the temperature to +6 C. 1-22hm_tipi-ten-mec-en_b_tc For three-phase HM..P limit the temperature to +9 C. ** Refer to the PN column of the DIMENSIONS AND WEIGHTS tables. PRESSURE/TEMPERATURE APPLICATION LIMITS FOR COMPLETE PUMP Single-phase version (all models) Three-phase version (HM..P) Three-phase version (HM..S, HM..N) 15

16 COMPATIBILITY CHART FOR MATERIALS IN CONTACT WITH MOST COMMONLY USED LIQUIDS LIQUID CONCENTRATION TEMPERATURE SPECIF. VERSIONS RECOMMEND. ELASTOM. MIN/MAX WEIGHT SEAL (%) ( C) (Kg/dm 3 ) HM..P HM..S HM..N Acetic acid ,5 Q1BEGG E Alkaline degreaser 5 8 Q1Q1VGG V Aluminium sulfate ,71 Q1Q1EGG E Ammonia in water ,99 Q1BEGG E Ammonium sulfate ,77 Q1Q1EGG E Benzoic acid ,31 Q1BVGG V Boric acid saturated ,43 Q1Q1VGG V Butyl alcohol ,81 Q1BEGG E Caustic soda ,13 Q1Q1EGG E Chloroform ,48 Q1BVGG V Citric acid ,54 Q1BEGG E Cleaning products Q1Q1VGG V Copper sulfate ,28 Q1Q1VGG V Cutting fluid ,9 Q1BVGG V Deionised, demineralised Q1BEGG water E Denatured alcohol ,81 Q1BEGG E Diathermic oil ,9 Q1BVGG V Emulsion oil and water any Q1BVGG V Ethyl alcohol ,81 Q1BEGG E Ethylene glycol Q1BEGG E Formaldehyde ,13 Q1Q1KGG K Formic acid ,22 Q1BKGG K Glycerine ,26 Q1BEGG E Hydraulic oil Q1BVGG V Hydrochloric acid ,2 Q1Q1VGG V Hydroxide sodium Q1Q1EGG E Iron sulfate ,9 Q1Q1EGG E Methyl alcohol ,79 Q1BEGG E Mineral oil ,94 Q1BVGG V Nitric acid ,48 Q1Q1KGG K Perchloroethylene ,6 Q1BKGG K Phosphates-polyphosphates Q1Q1VGG V Phosphoric acid ,33 Q1BVGG V Propyl alcohol (Propanol) ,8 Q1BEGG E Propylene glycol Q1BVGG V Sodium bicarbonate saturated Q1BEGG (Baking soda) E Sodium hypochlorite Q1Q1VGG V Sodium nitrate saturated ,25 Q1BEGG E Sodium sulfate ,6 Q1Q1EGG E Sulphuric acid ,84 Q1BVGG V Tannic acid 2 +5 Q1BEGG E Tartaric acid ,76 Q1Q1VGG V Trichloroethylene ,46 Q1BKGG K Uric acid ,89 Q1BEGG E Vegetable oil ,95 Q1BVGG V Water Q1BEGG E Water condensate Q1BEGG E Water detergents, mineral Q1Q1VGG oils mixture V The above table indicates the compatibility of materials depending on the pumped liquid. Check the specific weight of the liquid or the viscosity as this could affect the power input of the motor and hydraulic performance. For further details, please contact the sales network. tab-comp-hm-en_b_tm 16

17 e-hm SERIEs MOTORS Standard three-phase surface motors,75 kw supplied as IE3. Short-circuit squirrel-cage motor, enclosed construction with external ventilation (TEFC). IP 55 protection degree. Insulation class 155 (F). Electrical performances according to EN IE efficiency according to EN (,75 kw). Cable gland with metric according to EN Single-phase version: V, 6 Hz, 2 poles. Built-in automatic reset overload protection up to 2,2 kw. Three-phase version: 22-23/38-4 V, 6 Hz, 2 poles. Overload protection to be provided by the user. SINGLE-PHASE MOTORS AT 6 Hz, 2-POLE INPUT CURRENT CAPACITOR DATA FOR 22 V 6 Hz VOLTAGE P N MOTOR TYPE In (A) Tn kw V μf V min -1 ls / ln % cos Nm Ts/Tn Tm/Tn IEC SIZE Construction Design,3 SM63HM../ ,31-2, ,41 62,,95,85,68 1,88,4 SM63HM../ ,86-2, ,8 67,5,94 1,13,73 2,4,5 SM63HM../ ,57-3, ,73 66,8,95 1,42,69 2,7,55 SM71HM../ ,68-3, ,28 7,2,97 1,54,66 2,11,75 SM71HM../ ,98-4, ,9 69,8,98 2,12,64 1,91,95 SM71HM../ ,4-5, ,8 72,9,98 2,69,58 1,86 1,1 SM8HM../ ,94-6, ,54 74,2,97 3,6,62 2,3 1,5 SM8HM../ ,28-9, ,91 76,3,96 4,14,49 2,19 2,2 PLM9HM../ ,3-11, ,99 83,4,98 6,8,54 2,6 SPECIAL 1-22hm-motm-2p6-en_a_te 17

18 e-hm SERIES THREE-PHASE MOTORS AT 6 Hz, 2-POLE Efficiency η N % 22 V 23 V 38 V 4 V P N Y 38 V Y 4 V Y 66 V Y 69 V IE kw 4/4 3/4 2/4 4/4 3/4 2/4 4/4 3/4 2/4 4/4 3/4 2/4,3 69,5 69,4 65,5 71, 69,6 64, ,4 74,1 74,4 71,2 74,7 74,1 7, ,5 74,3 75,9 74,3 75,7 76,1 73, ,55 78,6 78,7 76, 78,9 78,5 75, ,75 83,4 82,4 79, 83,4 82,4 79, 83,4 82,4 79, 83,4 82,4 79, 1,1 85,6 85, 82,1 85,6 85, 82,1 85,6 85, 82,1 85,6 85, 82,1 1,5 87,2 87, 84,6 87,2 87, 84,6 87,2 87, 84,6 87,2 87, 84,6 2,2 87,7 87,2 84,7 87,7 87,2 84,7 87,7 87,2 84,7 87,7 87,2 84, ,1 88,8 86,9 89,1 88,8 86,9 89,1 88,8 86,9 89,1 88,8 86,9 4 91, 91, 89,6 91, 91, 89,6 91, 91, 89,6 91, 91, 89,6 5,5 91, 9,5 88,6 91, 9,5 88,6 91, 9,5 88,6 91, 9,5 88,6 IEC SIZE Construction Design P N N. of f N T N kw Model Poles Hz cosϕ ls / l N Nm Ts/T N Tm/Tn,3 SM63HM../33 63,79 4,81,87 3,44 3,5,4 SM63HM../34 63,79 5,3 1,16 3,42 3,44,5 SM63HM../35 63,83 4,94 1,48 3,31 3,33,55 SM71HM../35 71,81 6,15 1,54 3,23 3,3,75 SM8HM../37 E3 8,79 8,25 2,5 3,8 4,2 1,1 SM8HM../311 E ,8 9,11 3,1 4,15 4,29 1,5 SM8HM../315 E3 8,82 9,79 4,1 4,36 4,37 2,2 PLM9HM../322 E3 9,82 9,8 6,1 3,8 4,1 3 PLM9HM../33 E3 9,82 9,35 8,21 4,26 4,1 4 PLM1HM../34 E3 1,87 1, 1,9 2,43 4,53 5,5 PLM112HM../355 E3 112,88 12, 15, 4,7 5,55 SPECIAL Data for 38 V / 6 Hz Voltage Voltage U N V Operating conditions ** Y Y Altitude T. amb P N 22 V 23 V 38 V 4 V 38 V 4 V 66 V 69 V n N Above Sea min/max kw I N (A) min -1 Level (m) C,3 1,42 1,42,82, ,4 1,75 1,75 1,1 1, ,5 2,15 2,1 1,24 1, ,55 2,27 2,22 1,31 1, ,75 3,3 3,1 1,75 1,74 1,75 1,74 1,1 1, ,1 4,24 4,24 2,45 2,45 2,44 2,43 1,41 1, ,5 5,58 5,53 3,22 3,19 3,23 3,22 1,86 1, ,2 7,97 7,93 4,6 4,58 4,59 4,57 2,65 2, ,9 1,8 6,3 6,23 6,32 6,29 3,65 3, ,4 13,2 7,76 7,62 7,78 7,63 4,49 4, ,5 18,2 18, 1,5 1,4 1,5 1,5 6,8 6, ** Operating conditions to be referred to motor only. About electric pump, refer to limits in user s manual. 1-22hm-ie3-mott-2p6-en_a_te 1-15 / 4 18

19 e-hm SERIES AVAILABLE VOLTAGES FOR SM and PLM MOTORS, 2-POLE SINGLE-PHASE 5 Hz 6 Hz THREE-PHASE 5 Hz 6 Hz 5/6 Hz P N kw 1 x x 1 1 x x x 1 1x x x 2-21 P N kw 3 x / x / x 2-28/ x / x 29-3/ x 44-46/- 3 x 5-525/- 3 x 22-23/ x / x 38-4/ x /- 3 x / x 2-28/ x / x 575/- 3 x 23/4 5 Hz 3 x 265/46 6 Hz,5 s - - s - o - -,3 s o o o o o o s o o o o o o o o o,55 s o o s o o o o,4 s o o o o o o s o o o o o o o o o,75 s o o s o o o o,5 s o o o o o o s o o o o o o o o o,95 s o o s o o o o,55 s o o o o o o s o o o o o o o o o 1,1 s - o s - o - o,75 s o o o o o o s o o o o o o o o o 1,5 s - - s - o - o 1,1 s o o o o o o s o o o o o o o o o 2,2 s - - s ,5 s o o o o o o s o o o o o o o o o 2,2 s o o o o o o s o o o o o o o o o 3 s o o o o o o s o o o o o o o o o 4 o s o o o o o s o o o o o o o o o 5,5 o s o o o o o s o o o o o o o o o 3 x 4/69 5 Hz 3 x 46/- 6 Hz s = Standard voltage o = voltage upon request - = Not available hm-volt-lowa-en_b_te 19

20 HM..P SERIES HYDRAULIC PERFORMANCE RANGE AT 6 Hz, 2 POLES HM..P 35 [rpm] ISO 996:212 - Grade 3B Q [Imp gpm] Q [US gpm] H [m] 1HM..P H [ft] 4 3HM..P HM..P ,7,8 1 Q [m 3 /h] Q [l/min] _A_CH 2

21 HM..P SERIES HYDRAULIC PERFORMANCE TABLE AT 6 Hz, 2 POLES PUMP MOTOR ELECTRIC PUMP Q = DELIVERY TYPE * I l/min 13, 19, 25, 31, 37, 43, 5, HM..P P N TYPE * P V 38-4 V m 3 /h,8 1,1 1,5 1,9 2,2 2,6 3, kw kw A A H = TOTAL HEAD IN METRES OF COLUMN OF WATER 1HM2,4 SM63HM../146,58 2,83-32,4 29,5 27,8 25,9 23,5 2,9 18, 14,3 1HM3,5 SM63HM../156,81 3,8-47,8 43,2 4,6 37,5 33,9 29,9 25,5 2, 1HM4 1 ~,75 SM71HM../176 1,7 4,84-64,8 58,8 55,4 51,4 46,7 41,4 35,5 28,1 1HM5,95 SM71HM../196 1,29 5,81-8,7 73,1 68,9 63,9 58,1 51,4 44,1 34,9 1HM6 1,1 SM8HM../1116 1,55 7,8-98,1 89,5 84,6 78,8 71,9 63,9 55,1 44, 1HM2,4 SM63HM../34,47 1,64,95 31,8 28,6 26,9 24,8 22,5 19,8 16,9 13,2 1HM3,5 SM63HM../35,65 2,8 1,2 46,3 41, 38,3 35,1 31,4 27,4 23, 17,6 1HM4 3 ~,75 SM8HM../37 E3,96 3,14 1,81 66,8 61,4 58,3 54,5 5,1 44,8 39, 31,6 1HM5 1,1 SM8HM../311 E3 1,2 4,4 2,33 83,9 77,2 73,4 68,7 63,2 56,7 49,4 4,1 1HM6 1,1 SM8HM../311 E3 1,41 4,49 2, , 87,3 81,7 74,9 67,1 58,4 47,2 VERSION PUMP MOTOR ELECTRIC PUMP Q = DELIVERY TYPE * I l/min 23, 34, 45, 56, 67, 78, 87, HM..P P N TYPE * P V 38-4 V m 3 /h 1,4 2, 2,7 3,4 4, 4,7 5,2 kw kw A A H = TOTAL HEAD IN METRES OF COLUMN OF WATER 3HM2,5 SM63HM../156,76 3,57-33,7 3,7 28,7 26,1 23, 19,5 15,7 12,3 3HM3,75 SM71HM../176 1,7 4,84-51, 46,5 43,5 39,6 34,9 29,7 24, 18,9 1 ~ 3HM4 1,1 SM8HM../1116 1,43 6,53-68,8 63,2 59,6 54,6 48,6 41,7 34,1 27,3 3HM5 1,5 SM8HM../1156 1,8 8,5-86,6 79,9 75,5 69,4 61,9 53,3 43,8 35,3 3HM2,5 SM63HM../35,6 1,96 1,13 33, 29,5 27,2 24,5 21,3 17,9 14,1 1,7 3HM3 1,1 SM8HM../311 E3,99 3,6 2,8 52,7 48,9 46,4 43, 38,5 33,4 27,7 22,6 3 ~ 3HM4 1,1 SM8HM../311 E3 1,28 4,19 2,42 69,9 64,7 61,3 56,5 5,6 43,7 36,1 29,3 3HM5 1,5 SM8HM../315 E3 1,56 5,14 2,97 87,6 81,1 76,9 71, 63,6 55, 45,5 37, VERSION PUMP MOTOR ELECTRIC PUMP Q = DELIVERY TYPE * I l/min 5, 65, 8, 95, 11, HM..P P N TYPE * P V 38-4 V m 3 /h 3, 3,9 4,8 5,7 6,6 7,5 8,4 kw kw A A H = TOTAL HEAD IN METRES OF COLUMN OF WATER 5HM2,75 SM71HM../176 1, 4,54-34,7 29,5 27,6 25,6 23,2 2,3 16,7 12,3 5HM3 1 ~ 1,1 SM8HM../1116 1,45 6,65-52,6 44,8 42,1 39,1 35,6 31,3 25,9 19,4 5HM4 1,5 SM8HM../1156 1,92 9, - 7,3 6,3 56,8 52,9 48,2 42,5 35,4 26,6 5HM2,75 SM8HM../37 E3,88 2,97 1,71 35,5 3,7 29, 27,1 24,8 22, 18,5 14,1 5HM3 3 ~ 1,1 SM8HM../311 E3 1,3 4,25 2,45 53,3 46, 43,4 4,6 37,2 33, 27,7 21,1 5HM4 1,5 SM8HM../315 E3 1,69 5,44 3,14 71,1 61,5 58, 54,2 49,7 44,1 37, 28,3 Hydraulic performances in compliance with ISO 996:212 - Grade 3B (ex ISO 996: Annex A) 1-5hm-p-2p6_a_th * Maximum value in specified range: P1 = input power; I = input current. VERSION 21

22 1HM..P SERIES DIMENSIONS AND WEIGHTS AT 6 HZ, 2 POLES 1HM2, X 1HM3, THREE- 1HM4, PHASE 1HM5 Y 1, HM6 1, PUMP MOTOR DIMENSIONS (mm) PN WEIGHT VERSION Ref. TYPE kw SIZE A D H L bar kg 1HM2, HM3, SINGLE- X 1HM4, PHASE 1HM5, HM6 Y 1, hm-p-2p6_a_td 22

23 1HM..P SERIES OPERATING CHARACTERISTICS AT 6 Hz, 2 POLES 1HM..P 35 [rpm] ISO 996:212 - Grade 3B Q [Imp 12 gpm] H [m] Q [US 14gpm] 6 1~ 3~ 3 H [ft] ,4 4 P p [kw],2, NPSH [m] kw/stage,,5 1, 1,5 2, 2,5 3, Q [m 3 /h] Q [l/min] [%] NPSH [ft] 6457_A_CH These performances are valid for liquids with density ρ = 1. Kg/dm 3 and kinematic viscosity ν = 1 mm 2 /sec. 23

24 3HM..P SERIES DIMENSIONS AND WEIGHTS AT 6 HZ, 2 POLES PUMP MOTOR DIMENSIONS (mm) PN WEIGHT VERSION Ref. TYPE kw SIZE A D H L bar kg 3HM2, X 3HM3 SINGLE-, HM4 PHASE 1, Y 3HM5 1, HM2 X, HM3 THREE- 1, HM4 PHASE Y 1, HM5 1, hm-p-2p6_a_td 24

25 3HM..P SERIES OPERATING CHARACTERISTICS AT 6 Hz, 2 POLES 3HM..P 35 [rpm] ISO 996:212 - Grade 3B Q [Imp gpm] Q [US 25 gpm] H [m] 8 5 1~ 3~ H [ft] P p [kw],4,2 kw/stage 4 2 [%] NPSH [m] Q [m6 3 /h] Q [l/min] 1 NPSH [ft] 6458_A_CH These performances are valid for liquids with density ρ = 1. Kg/dm 3 and kinematic viscosity ν = 1 mm 2 /sec. 25

26 5HM..P SERIES DIMENSIONS AND WEIGHTS AT 6 HZ, 2 POLES PUMP MOTOR DIMENSIONS (mm) PN WEIGHT VERSION Ref. TYPE kw SIZE A D H L bar kg 5HM2 X, HM3 SINGLE- 1, HM4 PHASE Y 1, HM2, HM3 THREE- 1, Y 5HM4 PHASE 1, hm-p-2p6_a_td 26

27 5HM..P SERIES OPERATING CHARACTERISTICS AT 6 Hz, 2 POLES 5HM..P 35 [rpm] ISO 996:212 - Grade 3B Q [Imp gpm] Q [US gpm] H [m] 4 1~ 3~ 25 H [ft] P p [kw],6,4,2 6 NPSH [m] 4 2 kw/stage Q [m 3 /h] Q [l/min] NPSH [ft] [%] 6459_A_CH These performances are valid for liquids with density ρ = 1. Kg/dm 3 and kinematic viscosity ν = 1 mm 2 /sec. 27

28 HM..S - HM..N SERIES HYDRAULIC PERFORMANCE RANGE AT 6 Hz, 2 POLES HM..S - HM..N 35 [rpm] ISO 996:212 - Grade 3B Q [Imp gpm] Q [US gpm] H [m] 6 5 1HM..S-N 3HM..S-N 2 H [ft] 4 5HM..S-N 1HM..S-N HM..S-N 22HM..S-N ,7, Q [m 3 /h] Q [l/min] _A_CH 28

29 1, 3 HM..S - HM..N SERIES HYDRAULIC PERFORMANCE TABLE AT 6 Hz, 2 POLES PUMP MOTOR ELECTRIC PUMP Q = DELIVERY TYPE * I l/min 13,3 19, 25, 31, 37, 43, 46,7 HM..S P N TYPE * P V 38-4 V m 3 /h,8 1,1 1,5 1,9 2,2 2,6 2,8 HM..N kw kw A A H = TOTAL HEAD IN METRES OF COLUMN OF WATER 1HM2,3 SM63HM../136,35 1,86-17,2 17, 16,7 15,9 14,7 13, 11, 9,6 1HM3,3 SM63HM../136,42 2,6-25,5 25, 24,4 23,2 21,3 18,8 15,7 13,6 1HM4,3 SM63HM../136,49 2,31-33,6 32,7 31,8 3, 27,4 24, 19,8 16,9 1HM5,4 SM63HM../146,58 2,84-42,4 41,6 4,5 38,4 35,2 3,9 25,8 22,2 1HM6,5 SM63HM../156,72 3,46-5,2 49,3 47,9 45,2 41, 35,7 29,2 24,8 1HM7,75 SM71HM../176,86 3,96-59,6 59, 57,6 54,5 49,9 43,8 36,4 31,3 1HM8,75 SM71HM../176,94 4,27-67,8 66,9 65,2 61,6 56,2 49,1 4,6 34,8 1HM9 1 ~,75 SM71HM../176 1,2 4,61-76, 74,7 72,7 68,5 62,3 54,2 44,6 38, 1HM1,95 SM71HM../196 1,14 5,19-84,7 83,3 81,1 76,6 69,8 61, 5,4 43,1 1HM11,95 SM71HM../196 1,21 5,49-92,8 91,1 88,5 83,5 75,9 66,1 54,3 46,3 1HM12,95 SM71HM../196 1,28 5, ,7 95,8 9,1 81,7 7,9 58,1 49,3 1HM13 1,1 SM8HM../1116 1,43 6, ,6 82, 68,1 58,4 1HM15 1,5 SM8HM../1156 1,71 8, ,6 7,4 1HM17 1,5 SM8HM../1156 1,87 8, ,1 78,4 1HM18 1,5 SM8HM../1156 1,95 9, ,2 1HM2,3 SM63HM../33,24 1,13,65 17,1 16,9 16,5 15,6 14,2 12,3 1,1 8,6 1HM3,3 SM63HM../33,32 1,25,72 25,2 24,7 24, 22,5 2,3 17,4 14, 11,7 1HM4,3 SM63HM../33,4 1,39,8 33, 32,1 3,9 28,8 25,7 21,9 17,3 14,1 1HM5,4 SM63HM../34,5 1,7,98 41,5 4,3 38,9 36,3 32,5 27,9 22,4 18,7 1HM6,5 SM63HM../35,58 1,94 1,12 49,4 47,7 45,9 42,7 38,1 32,5 26, 21,5 1HM7,75 SM8HM../37 E3,72 2,65 1,53 61,5 61,1 59,9 57,1 52,7 46,9 39,7 34,7 1HM8,75 SM8HM../37 E3,82 2,83 1,64 7,1 69,5 68,2 64,9 59,8 53,1 44,9 39,2 1HM9 3 ~,75 SM8HM../37 E3,91 3,3 1,75 78,6 77,9 76,3 72,6 66,9 59,3 5, 43,5 1HM1 1,1 SM8HM../311 E3 1,3 3,7 2,14 87,8 87,3 85,6 81,6 75,3 67, 56,8 49,6 1HM11 1,1 SM8HM../311 E3 1,13 3,89 2,24 96,4 95,7 93,9 89,5 82,5 73,3 62,1 54,1 1HM12 1,1 SM8HM../311 E3 1,22 4,8 2, ,2 89,6 79,5 67,3 58,5 1HM13 1,1 SM8HM../311 E3 1,31 4,27 2, ,6 85,7 72,4 62,9 1HM15 1,5 SM8HM../315 E3 1,45 4,94 2, ,3 72,2 1HM17 1,5 SM8HM../315 E3 1,63 5,31 3, ,4 8,8 1HM18 1,5 SM8HM../315 E3 1,72 5,51 3, , VERSION PUMP MOTOR ELECTRIC PUMP Q = DELIVERY TYPE * I l/min 23, 34, 45, 56, 67, 78, 87, HM..S P N TYPE * P V 38-4 V m 3 /h 1,4 2, 2,7 3,4 4, 4,7 5,2 HM..N kw kw A A H = TOTAL HEAD IN METRES OF COLUMN OF WATER 3HM2,3 SM63HM../136,47 2,25-21,1 2,7 19,8 18,5 16,8 14,6 11,8 9,1 3HM3,4 SM63HM../146,63 3,1-31,7 31,1 29,8 27,8 25,2 21,9 17,7 13,7 3HM4,5 SM63HM../156,82 3,83-42, 41,1 39,1 36,4 32,8 28,3 22,7 17,4 3HM5,75 SM71HM../176 1,3 4,67-53,3 52,5 5,3 47,1 42,8 37,3 3,4 23,7 3HM6,95 SM71HM../196 1,21 5,49-64, 62,9 6,3 56,5 51,4 44,8 36,5 28,5 3HM7,95 SM71HM../196 1,35 6,4-74,3 72,6 69,3 64,7 58,6 5,7 41, 31,6 3HM8 1 ~ 1,1 SM8HM../1116 1,57 7,16-85,8 84,6 81,3 76,3 69,7 6,9 49,9 39,2 3HM9 1,5 SM8HM../1156 1,83 8,64-97,2 96,7 93,2 88, 8,8 71,2 59, 47, 3HM1 1,5 SM8HM../1156 1,99 9, ,1 88,9 78,1 64,5 51,2 3HM11 2,2 PLM9HM../1226 2,4 9, ,6 73,7 59,1 3HM12 2,2 PLM9HM../1226 2,19 1, ,8 79,6 63,7 3HM13 2,2 PLM9HM../1226 2,34 1, ,3 68,1 3HM14 2,2 PLM9HM../1226 2,49 11, ,8 72,3 3HM2,3 SM63HM../33,38 1,34,77 21, 2,3 19,3 17,9 16,2 13,9 11,1 8,4 3HM3,5 SM63HM../35,53 1,82 1,5 31,6 3,5 29, 26,9 24,3 2,8 16,7 12,7 3HM4,5 SM63HM../35,66 2,1 1,21 41,4 39,4 37,1 34,1 3,3 25,6 2, 14,7 3HM5,75 SM8HM../37 E3,92 3,3 1,75 54,5 54,3 52,5 49,6 45,7 4,4 33,7 27,1 3HM6 1,1 SM8HM../311 E3 1,11 3,84 2,22 65,5 65,5 63,4 6,1 55,4 49,2 41,1 33,2 3HM7 1,1 SM8HM../311 E3 1,27 4,18 2,41 76,3 76,1 73,5 69,6 64,2 56,8 47,4 38,1 3HM8 3 ~ 1,5 SM8HM../315 E3 1,43 4,88 2,82 87,4 87,4 84,6 8,3 74,1 65,8 55, 44,5 3HM9 1,5 SM8HM../315 E3 1,6 5,23 3,2 98,2 98,1 94,8 89,8 82,8 73,4 61,3 49,4 3HM1 1,5 SM8HM../315 E3 1,76 5,59 3, ,3 91,5 8,9 67,4 54,2 3HM11 2,2 PLM9HM../322 E3 1,96 6,73 3, , 76,2 61,7 3HM12 2,2 PLM9HM../322 E3 2,12 7,7 4, ,7 82,7 66,8 3HM13 2,2 PLM9HM../322 E3 2,28 7,41 4, , 71,8 3HM14 2,2 PLM9HM../322 E3 2,44 7,78 4, ,2 76,7 Hydraulic performances in compliance with ISO 996:212 - Grade 3B (ex ISO 996: Annex A) 1-3hm-s-n-2p6_a_th * Maximum value in specified range: P1 = input power; I = input current. VERSION 29

30 5 HM..S - HM..N SERIES HYDRAULIC PERFORMANCE TABLE AT 6 Hz, 2 POLES PUMP MOTOR ELECTRIC PUMP Q = DELIVERY TYPE * I l/min 5, 7, 9, 11, HM..S P N TYPE * P V 38-4 V m 3 /h 3, 4,2 5,4 6,6 7,8 9, 1,2 HM..N kw kw A A H = TOTAL HEAD IN METRES OF COLUMN OF WATER 5HM2,5 SM63HM../156,73 3,5-21,3 2,1 19,1 17,8 16,2 14,1 11,6 8,8 5HM3,75 SM71HM../176 1,4 4,69-32,2 3,5 29, 27, 24,5 21,5 17,8 13,5 5HM4,95 SM71HM../196 1,31 5,88-42,8 4,3 38,2 35,5 32,2 28,1 23,1 17,4 5HM5 1,1 SM8HM../1116 1,63 7,42-54, 51,1 48,6 45,4 41,3 36,3 3,1 22,9 5HM6 1,5 SM8HM../1156 2, 9,29-65, 62,3 59,4 55,7 51, 45, 37,7 29,1 1 ~ 5HM7 2,2 PLM9HM../1226 2,16 1,2-76,3 73,4 7,2 66, 6,6 53,8 45,4 35,3 5HM8 2,2 PLM9HM../1226 2,41 11,2-87,1 83,4 79,7 74,8 68,5 6,7 51, 39,5 5HM9 2,2 PLM9HM../1226 2,66 12,3-97,7 93,4 89, 83,3 76,2 67,3 56,3 43,4 VERSION 5HM2,5 SM63HM../35,58 1,93 1,11 21,2 19,5 18,3 16,8 15,1 13, 1,5 7,6 5HM3,75 SM8HM../37 E3,92 3,5 1,76 32,8 31,6 3,3 28,5 26,2 23,3 19,7 15,4 5HM4 1,1 SM8HM../311 E3 1,22 4,8 2,35 43,8 42,3 4,5 38,1 35,1 31,3 26,5 2,8 5HM5 1,5 SM8HM../315 E3 1,5 5,1 2,89 54,9 53, 5,8 47,9 44,2 39,4 33,4 26,2 5HM6 1,5 SM8HM../315 E3 1,77 5,63 3,25 65,7 63,2 6,5 57, 52,4 46,6 39,4 3,8 5HM7 2,2 PLM9HM../322 E3 2,8 6,98 4,3 76,9 74,4 71,3 67,3 62,1 55,4 47, 37, 5HM8 3 ~ 2,2 PLM9HM../322 E3 2,35 7,57 4,37 87,7 84,7 81,1 76,5 7,5 62,8 53,2 41,8 5HM9 2,2 PLM9HM../322 E3 2,62 8,18 4,72 98,6 94,9 9,9 85,5 78,7 7, 59,2 46,3 5HM1 3 PLM9HM../33 E3 2,92 9,73 5, ,7 88,2 78,6 66,7 52,4 5HM11 3 PLM9HM../33 E3 3,19 1,3 5, ,5 85,9 72,7 57, 5HM12 3 PLM9HM../33 E3 3,46 11, 6, ,1 78,7 61,5 Hydraulic performances in compliance with ISO 996:212 - Grade 3B (ex ISO 996: Annex A) * Maximum value in specified range: P1 = input power; I = input current. 5-hm-s-n-2p6_a_th 3

31 1, 15, 22 HM..S - HM..N SERIES HYDRAULIC PERFORMANCE TABLE AT 6 Hz, 2 POLES PUMP MOTOR ELECTRIC PUMP Q = DELIVERY TYPE * I l/min 1, HM..S P N TYPE * P V 38-4 V m 3 /h 6, 7,9 9,7 11,6 13,4 15,3 17, HM..N kw kw A A H = TOTAL HEAD IN METRES OF COLUMN OF WATER 1HM1 1,1 SM8HM../1116 1,3 5,2-17,2 15,9 15, 13,8 12,2 1,3 8,1 5,6 1HM2 1,5 SM8HM../1156 1,75 8,36-33,9 31,5 29,9 27,9 25,2 21,9 17,9 13,8 1HM3 1 ~ 2,2 PLM9HM../1226 2,24 1,5-51,2 47,4 45,3 42,7 39,2 34,9 29,5 23,9 VERSION VERSION 1HM1,75 SM8HM../37 E3,79 2,77 1,6 17,2 16, 15,1 13,9 12,3 1,4 8,2 5,8 1HM2 1,5 SM8HM../315 E3 1,51 4,69 2,71 34,1 31,6 3, 28, 25,3 22, 18, 13,9 1HM3 2,2 PLM9HM../322 E3 2,17 7,19 4,15 51,6 48,1 46,2 43,7 4,3 36, 3,7 25,1 1HM4 3 PLM9HM../33 E3 2,86 9,62 5,56 68,8 64,1 61,5 58,1 53,7 47,9 4,9 33,4 1HM5 4 PLM1HM../34 E3 3,56 11,3 6,5 86,4 8,8 77,6 73,4 67,9 6,8 52, 42,6 3 ~ 1HM6 4 PLM1HM../34 E3 4,22 12,9 7, ,4 92,5 87,4 8,7 72,1 61,5 5,3 1HM7 5,5 PLM112HM../355 E3 5, 15,7 9, ,8 84,9 72,5 59,4 1HM8 5,5 PLM112HM../355 E3 5,65 17,1 9, ,2 82,1 67,1 PUMP MOTOR ELECTRIC PUMP Q = DELIVERY TYPE * I l/min HM..S P N TYPE * P V 38-4 V m 3 /h 1, 13,2 16,4 19,6 22,7 25,9 29, HM..N kw kw A A H = TOTAL HEAD IN METRES OF COLUMN OF WATER 15HM1 1,5 SM8HM../1156 1,76 8,39-2,4 18,5 17,6 16,4 14,9 12,8 1,2 7,2 1 ~ 15HM1 1,5 SM8HM../315 E3 1,52 5,7 2,93 2,6 18,8 17,9 16,7 15,2 13,2 1,6 7,6 15HM2 3 PLM9HM../33 E3 2,8 9,48 5,47 41,9 38,4 36,9 34,9 32,1 28,4 23,4 17,7 15HM3 4 PLM1HM../34 E3 4,38 13,2 7,65 63,1 57,4 54,9 51,6 47,2 41,6 34,8 27,5 3 ~ 15HM4 5,5 PLM112HM../355 E3 5,86 17,5 1,1 84,1 76,6 73,2 68,8 63, 55,5 46,4 36,7 PUMP VERSION MOTOR ELECTRIC PUMP Q = DELIVERY TYPE * I l/min HM..S P N TYPE * P V 38-4 V m 3 /h 13, 16,5 2, 23,5 26,9 3,4 34, HM..N kw kw A A H = TOTAL HEAD IN METRES OF COLUMN OF WATER 22HM1 1 ~ 2,2 PLM9HM../1226 2,19 1,9-21,4 19,8 18,9 17,6 15,8 13,5 11, 8,7 22HM1 2,2 PLM9HM../322 E3 2,11 7,17 4,14 21,6 2,1 19,2 18, 16,2 14, 11,4 9, 22HM2 4 PLM1HM../34 E3 4,4 12,4 7,19 43,9 41,2 39,6 37,4 34,4 3,2 24,9 18,1 22HM3 3 ~ 5,5 PLM112HM../355 E3 5,76 17,2 9,95 66,6 61,3 58,6 54,9 5,1 44,4 37,7 29,7 Hydraulic performances in compliance with ISO 996:212 - Grade 3B (ex ISO 996: Annex A) * Maximum value in specified range: P1 = input power; I = input current. 1-22hm-s-n-2p6_a_th 31

32 1HM..S - 1HM..N SERIES, (2 TO 1 STAGES) DIMENSIONS AND WEIGHTS AT 6 HZ, 2 POLES MOTOR DIMENSIONS (mm) PN WEIGHT PUMP TYPE kw SIZE A D H L L1 L2 M M1 N N1 bar kg 1HM2, HM3, HM4 X, HM5, HM6, HM HM8, Z 1HM9, HM1, VERSION SINGLE-PHASE 1HM2, HM3, HM4 X, HM5, HM6, HM7, HM8, Z 1HM9, HM THREE-PHASE Ref. 1hm-s-n-1-2p6_a_td 32

33 1HM..S - 1HM..N SERIES, (2 TO 1 STAGES) OPERATING CHARACTERISTICS AT 5 Hz, 2 POLES 1HM..S - 1HM..N 35 [rpm] ISO 996:212 - Grade 3B Q [Imp gpm] H [m] Q [US gpm] 1 1~ 3~ 9 25 H [ft] P p [kw],2,1, NPSH [m] kw/stage,,5 1, 1,5 2, 2,5 Q [m3, 3 /h] Q [l/min] [%] NPSH [ft] 6471_A_CH These performances are valid for liquids with density ρ = 1. Kg/dm 3 and kinematic viscosity ν = 1 mm 2 /sec. 33

34 1HM..S - 1HM..N SERIES, (11 TO 18 STAGES) DIMENSIONS AND WEIGHTS AT 6 HZ, 2 POLES PUMP TYPE VERSION kw SIZE A D H L L1 L2 M M1 N N1 bar kg 1HM11, HM HM13 1, HM15 1, HM17 1, HM18 1, SINGLE-PHASE MOTOR DIMENSIONS (mm) PN WEIGHT 1HM11 1, HM12 1, HM13 1, HM15 1, HM17 1, HM18 1, THREE-PHASE 1hm-s-n-2-2p6_a_td 34

35 1HM..S - 1HM..N SERIES, (11 TO 18 STAGES) OPERATING CHARACTERISTICS AT 6 Hz, 2 POLES 1HM..S - 1HM..N 35 [rpm] ISO 996:212 - Grade 3B Q [Imp gpm] H [m] Q [US gpm] 18 1~ ~ H [ft] P p [kw],2,1, NPSH [m] kw/stage,,5 1, 1,5 2, 2,5 Q [m3, 3 /h] Q [l/min] [%] NPSH [ft] 6472_A_CH These performances are valid for liquids with density ρ = 1. Kg/dm 3 and kinematic viscosity ν = 1 mm 2 /sec. 35

36 3HM..S - 3HM..N SERIES, (2 TO 8 STAGES) DIMENSIONS AND WEIGHTS AT 6 HZ, 2 POLES MOTOR DIMENSIONS (mm) PN WEIGHT PUMP TYPE kw SIZE A D H L L1 L2 M M1 N N1 bar kg 3HM2, HM3, HM4 X, HM5, HM6, HM7, HM8 Z 1, VERSION SINGLE-PHASE Ref. 3HM2, HM3 X, HM4, HM5, Y 3HM6 1, HM7 1, HM8 Z 1, THREE-PHASE 3hm-s-n-1-2p6_a_td 36

37 3HM..S - 3HM..N SERIES, (2 TO 8 STAGES) OPERATING CHARACTERISTICS AT 6 Hz, 2 POLES 3HM..S - 3HM..N 35 [rpm] ISO 996:212 - Grade 3B Q [Imp gpm] H [m] Q [US 25 gpm] 8 1~ 3~ 7 25 H [ft] P p [kw],2,1 kw/stage 6 3 [%] NPSH [m] Q [m6 3 /h] Q [l/min] 1 NPSH [ft] 6473_A_CH These performances are valid for liquids with density ρ = 1. Kg/dm 3 and kinematic viscosity ν = 1 mm 2 /sec. 37

38 3HM..S - 3HM..N SERIES, (9 TO 14 STAGES) DIMENSIONS AND WEIGHTS AT 6 HZ, 2 POLES PUMP TYPE VERSION kw SIZE A D H L L1 L2 M M1 N N1 bar kg 3HM9 1, HM1 1, HM11 2, HM12 2, HM13 2, HM14 2, SINGLE-PHASE MOTOR DIMENSIONS (mm) PN WEIGHT 3HM9 1, HM1 1, HM11 2, HM12 2, HM13 2, HM14 2, THREE-PHASE 3hm-s-n-2-2p6_a_td 38

39 3HM..S - 3HM..N SERIES, (9 TO 14 STAGES) OPERATING CHARACTERISTICS AT 6 Hz, 2 POLES 3HM..S - 3HM..N 35 [rpm] ISO 996:212 - Grade 3B Q [Imp gpm] Q [US 25 gpm] H [m] 14 1~ 3~ 5 H [ft] P p [kw],2,1 kw/stage 6 3 [%] NPSH [m] Q [m6 3 /h] Q [l/min] 1 NPSH [ft] 6474_A_CH These performances are valid for liquids with density ρ = 1. Kg/dm 3 and kinematic viscosity ν = 1 mm 2 /sec. 39

40 5HM..S - 5HM..N SERIES, (2 TO 7 STAGES) DIMENSIONS AND WEIGHTS AT 6 HZ, 2 POLES MOTOR DIMENSIONS (mm) PN WEIGHT PUMP TYPE kw SIZE A D H L L1 L2 M M1 N N1 bar kg 5HM2, HM3 X, HM4, HM5 Y 1, HM6 1, HM7 Z 2, VERSION SINGLE-PHASE Ref. 5HM2 X, HM3, HM4 Y 1, HM5 1, HM6 1, HM7 Z 2, THREE-PHASE 5hm-s-n-1-2p6_b_td 4

41 5HM..S - 5HM..N SERIES, (2 TO 7 STAGES) OPERATING CHARACTERISTICS AT 6 Hz, 2 POLES 5HM..S - 5HM..N 35 [rpm] ISO 996:212 - Grade 3B Q [Imp 4 gpm] H [m] Q [US gpm] 1~ 3~ 25 H [ft] P p [kw],3,2 kw/stage 6 3 [%] NPSH [m] NPSH [ft] Q [m 3 /h] Q [l/min] 6475_A_CH These performances are valid for liquids with density ρ = 1. Kg/dm 3 and kinematic viscosity ν = 1 mm 2 /sec. 41

42 5HM..S - 5HM..N SERIES, (8 TO 12 STAGES) DIMENSIONS AND WEIGHTS AT 6 HZ, 2 POLES PUMP TYPE VERSION kw SIZE A D H L L1 L2 M M1 N N1 bar kg 5HM8 2, HM9 2, SINGLE-PHASE MOTOR DIMENSIONS (mm) PN WEIGHT 5HM8 2, HM9 2, HM HM HM THREE-PHASE 5hm-s-n-2-2p6_a_td 42

43 5HM..S - 5HM..N SERIES, (8 TO 12 STAGES) OPERATING CHARACTERISTICS AT 6 Hz, 2 POLES 5HM..S - 5HM..N 35 [rpm] ISO 996:212 - Grade 3B Q [Imp 4 gpm] H [m] Q [US gpm] 1~ 3~ 45 H [ft] P p [kw],3,2 kw/stage 6 4 [%] NPSH [m] NPSH [ft] Q [m 3 /h] Q [l/min] 6476_A_CH These performances are valid for liquids with density ρ = 1. Kg/dm 3 and kinematic viscosity ν = 1 mm 2 /sec. 43

44 1HM..S - 1HM..N SERIES DIMENSIONS AND WEIGHTS AT 6 HZ, 2 POLES PUMP TYPE SINGLE- THREE-PHASE VERSION PHASE MOTOR DIMENSIONS (mm) kw SIZE A D H H1 L L1 L2 M M1 N N1 P K bar kg 1HM1 1, , HM2 1, , HM3 2, , HM1, , HM2 1, , HM3 2, , HM , HM HM HM7 5, HM8 5, PN WEIGHT 1hm-s-n-2p6_a_td 44

45 1HM..S - 1HM..N SERIES OPERATING CHARACTERISTICS AT 6 Hz, 2 POLES 1HM..S - 1HM..N 35 [rpm] ISO 996:212 - Grade 3B Q [Imp gpm] H [m] Q [US gpm] 8 1~ 3~ 7 4 H [ft] P p [kw] 1,,8,6,4 6 NPSH [m] kw/stage Q [m18 3 /h] Q [l/min] 3 NPSH [ft] [%] 6477_A_CH These performances are valid for liquids with density ρ = 1. Kg/dm 3 and kinematic viscosity ν = 1 mm 2 /sec. 45

46 15HM..S - 15HM..N SERIES DIMENSIONS AND WEIGHTS AT 6 HZ, 2 POLES SINGLE- THREE-PHASE VERSION PHASE MOTOR DIMENSIONS (mm) PUMP TYPE kw SIZE A D H H1 L L1 L2 M M1 N N1 P K bar kg 15HM1 1, , HM1 1, , HM , HM HM4 5, PN WEIGHT 15hm-s-n-2p6_a_td 46

47 15HM..S - 15HM..N SERIES OPERATING CHARACTERISTICS AT 6 Hz, 2 POLES 15HM..S - 15HM..N 35 [rpm] ISO 996:212 - Grade 3B Q [Imp gpm] Q [US gpm] H [m] 8 4 1~ 3~ H [ft] P p [kw] 1,6 1,2,8 6 NPSH [m] kw/stage Q [m3 3 /h] Q [l/min] 5 NPSH [ft] [%] 6478_A_CH These performances are valid for liquids with density ρ = 1. Kg/dm 3 and kinematic viscosity ν = 1 mm 2 /sec. 47

48 22HM..S - 22HM..N SERIES DIMENSIONS AND WEIGHTS AT 6 HZ, 2 POLES SINGLE- THREE-PHASE VERSION PHASE MOTOR DIMENSIONS (mm) PUMP TYPE kw SIZE A D H H1 L L1 L2 M M1 N N1 P K bar kg 22HM1 2, , HM1 2, , HM HM3 5, PN WEIGHT 22hm-s-n-2p6_a_td 48

49 22HM..S - 22HM..N SERIES OPERATING CHARACTERISTICS AT 6 Hz, 2 POLES 22HM..S - 22HM..N 35 [rpm] ISO 996:212 - Grade 3B Q 12 [Imp gpm] Q [US gpm] H [m] 6 3 1~ 3~ 2 H [ft] P p [kw] 2,5 2, 1,5 1, NPSH [m] 6 kw/stage Q [m35 3 /h] Q [l/min] NPSH [ft] [%] 6479_A_CH These performances are valid for liquids with density ρ = 1. Kg/dm 3 and kinematic viscosity ν = 1 mm 2 /sec. 49

50 5

51 ACCESSORIES 51

52 ACCESSORIES MODEL REF. CODE DESCRIPTION Ball valve 1" " FF PN38 WITH DRAIN, CHROME PLATED BRASS 1" " FF PN3, CHROME PLATED BRASS 1" 1/4 R /4 FF PN3, CHROME PLATED BRASS 1" 1/2 R /2 FF PN3, CHROME PLATED BRASS 2" R FF PN25, CHROME PLATED BRASS 1" " MF PN4, CHROME PLATED BRASS 1" 1/4 R "1/4 MF PN3, CHROME PLATED BRASS 1" 1/ "1/2 MF PN25. CHROME PLATED BRASS 2" " MF PN25, CHROME PLATED BRASS 1" " MF WITH UNION JOINT, CHROME PLATED BRASS 1" 1/ "1/4 MF WITH UNION JOINT, CHROME PLATED BRASS 1" 1/ "1/2 MF WITH UNION JOINT, CHROME PLATED BRASS 2" NO CODE 2" MF WITH UNION JOINT, CHROME PLATED BRASS Non-return valve 1" " MF SUCTION MALE, PN 25, BRASS 1" 1/ "1/4 MF SUCTION MALE, PN 25, BRASS 1" 1/ "1/2 MF SUCTION MALE, PN 25, BRASS 2" " MF SUCTION MALE, PN 4, BRASS 1" " MF SUCTION MALE, PN16, STAINLESS STEEL AISI34 1" 1/ "1/4 MF SUCTION MALE, PN16, STAINLESS STEEL AISI34 1" 1/ "1/2 MF SUCTION MALE, PN16, STAINLESS STEEL AISI34 2" " MF SUCTION MALE, PN16, STAINLESS STEEL AISI34 1" " FF PN32, STAINLESS STEEL AISI316 1" 1/ "1/4 FF PN28, STAINLESS STEEL AISI316 1" 1/ "1/2 FF PN28, STAINLESS STEEL AISI316 2" " FF PN23, STAINLESS STEEL AISI316 Union 3 Pieces MF 1" R " MF, GALVANISED STEEL 1" 1/4 R "1/4 MF, GALVANISED STEEL 1" 1/2 R "1/2 MF, GALVANISED STEEL 2" R " MF, GALVANISED STEEL 1" " MF, STAINLESS STEEL AISI 316 1" 1/ "1/4 MF, STAINLESS STEEL AISI 316 1" 1/ "1/2 MF, STAINLESS STEEL AISI 316 2" " MF, STAINLESS STEEL AISI 316 GENYO GENYO 8A/F GENYO 8A/F12, WITH ELECTRICAL CABLE GENYO 8A/F GENYO 8A/F15 WITH ELECTRICAL CABLE GENYO 8A/F GENYO 8A/F22 WITH ELECTRICAL CABLE GENYO 16A/R GENYO 16A/R15-3 WITH ELECTRICAL CABLE Diaphragm tank 8 lt LITRES-8 BAR, 1" CONNECTION, FLANGE IN GALVANISED STEEL 24 lt LITRES-8 BAR, 1" CONNECTION, FLANGE IN GALVANISED STEEL 24 lt LITRES-1 BAR, 1" CONNECTION, FLANGE IN GALVANISED STEEL 24 lt LITRES-16 BAR, 1" CONNECTION, FLANGE IN GALVANISED STEEL 18 lt LITRES-1 BAR, 1" CONNECTION, FLANGE IN STAINLESS STEEL AISI34 24 lt LITRES-1 BAR, 1" CONNECTION, FLANGE IN STAINLESS STEEL AISI34 24 lt LITRES-16 BAR, 1" CONNECTION, FLANGE IN STAINLESS STEEL AISI34 52

53 ACCESSORIES MODEL REF. CODE DESCRIPTION Flexible Hose 1" " MF, L=17MM PN16, REINFORCING BRADING IN GALVANISED STEEL " MF, L=18MM PN16, REINFORCING BRADING IN GALVANISED STEEL " MF, L=23MM PN16, REINFORCING BRADING IN GALVANISED STEEL " MF, L=36MM PN16, REINFORCING BRADING IN GALVANISED STEEL " MF, L=4MM PN16, REINFORCING BRADING IN GALVANISED STEEL " MF, L=43MM PN16, REINFORCING BRADING IN GALVANISED STEEL " MF, L=45MM PN16, REINFORCING BRADING IN GALVANISED STEEL " MF, L=5MM PN16, REINFORCING BRADING IN GALVANISED STEEL " MF L=55MM PN16, REINFORCING BRADING IN GALVANISED STEEL " MF L=6MM PN16, REINFORCING BRADING IN GALVANISED STEEL " MF, L=7MM PN16, REINFORCING BRADING IN GALVANISED STEEL " MF, L=8MM PN16, REINFORCING BRADING IN GALVANISED STEEL " MF, L=1MM PN16, REINFORCING BRADING IN GALVANISED STEEL 1" 1/ "1/4 MF L=7MM PN16, REINFORCING BRADING IN GALVANISED STEEL "1/4 MF L=8MM PN16, REINFORCING BRADING IN GALVANISED STEEL "1/4 MF L=9MM PN16, REINFORCING BRADING IN GALVANISED STEEL "1/4 MF L=1MM PN16, REINFORCING BRADING IN GALVANISED STEEL 1"1/ "1/2 MF L=5MM PN16, REINFORCING BRADING IN GALVANISED STEEL "1/2 MF L=8MM PN16, REINFORCING BRADING IN GALVANISED STEEL 2" " MF L=5MM PN16, REINFORCING BRADING IN GALVANISED STEEL " MF L=6MM PN16, REINFORCING BRADING IN GALVANISED STEEL 1" " MF 44+ELBOW PN16, REINFORCING BRADING IN GALVANISED STEEL Elbow " MF 48+ELBOW PN16, REINFORCING BRADING IN GALVANISED STEEL " MF 5+ELBOW PN16, REINFORCING BRADING IN GALVANISED STEEL " MF 55+ELBOW PN16, REINFORCING BRADING IN GALVANISED STEEL " MF8+ELBOW PN16, REINFORCING BRADING IN GALVANISED STEEL Pressure Switch 1/ SQUARE-D FSG2(1,4-4,6), Rp1/4" CONNECTION GALVANISED STEEL SQUARE-D FYG22(2,8-7), Rp1/4" CONNECTION GALVANISED STEEL SQUARE-D FYG32(5,6-1,5), Rp1/4" CONNECTION GALVANISED STEEL ITALTECNICA PM/5(1-5), Rp1/4" CONNECTION GALVANISED STEEL ITALTECNICA PM/12(2,5-12), Rp1/4" CONNECTION GALVANISED STEEL ITALTECNICA PM/12S(1-8,5), Rp1/4" CONNECTION GALVANISED STEEL Pressure gaude with radial 1/ BAR, DRY TYPE, ABS CASE, 1/4" BRASS CONNECTION, D=5MM connection BAR, DRY TYPE, ABS CASE, 1/4" BRASS CONNECTION, D=63MM BAR,DRY TYPE, ABS CASE, 1/4" BRASS CONNECTION, D=63MM BAR, DRY TYPE, AISI34 CASE, 1/4" AISI316 CONNECTION, D=63MM BAR, DRY TYPE, AISI34 CASE, 1/4" AISI316 CONNECTION, D=63MM Hexagon Nipple 1" ", GALVANISED STEEL 1" 1/ "1/4, GALVANISED STEEL 1" 1/ "1/2, GALVANISED STEEL 2" ", GALVANISED STEEL 1" ", STAINLESS STEEL AISI 316 1" 1/ "1/4, STAINLESS STEEL AISI316 1" 1/ "1/2, STAINLESS STEEL AISI316 2" ", STAINLESS STEEL AISI Elbow 1" " MF, GALVANISED STEEL 1" 1/ "1/4 MF, GALVANISED STEEL 1" 1/ "1/2 MF, GALVANISED STEEL 2" " MF, GALVANISED STEEL 53

54 ACCESSORIES MODEL REF. CODE DESCRIPTION 1" " FF, GALVANISED STEEL 1" 1/4 R "1/4 FF, GALVANISED STEEL 1" 1/ "1/2 FF, GALVANISED STEEL 2" " FF, GALVANISED STEEL 1" " MF, STAINLESS STEEL AISI 316 1" 1/ "1/4 MF, STAINLESS STEEL AISI 316 1" 1/ "1/2 MF, STAINLESS STEEL AISI 316 2" " MF, STAINLESS STEEL AISI 316 1" " FF, STAINLESS STEEL AISI 316 1" 1/ "1/4 FF, STAINLESS STEEL AISI 316 1" 1/ "1/2 FF, STAINLESS STEEL AISI 316 2" " FF, STAINLESS STEEL AISI 316 Fittings 1/4" R CROSS 1/4" 3F1M, CHROME PLATED BRASS CROSS 1/4" 4F, STAINLESS STEEL AISI 316 R ELBOW 9 1/4" FF, CHROME PLATED BRASS R ELBOW 9 1/4" MF, CHROME PLATED BRASS ELBOW 9 1/4" FF, STAINLESS STEEL AISI ELBOW 9 1/4" MF, STAINLESS STEEL AISI TEE 1/4"" FFF, STAINLESS STEEL AISI 316 R26723 TEE 1/4"" FFF, CHROME PLATED BRASS TEE 1/4"" FFM, CHROME PLATED BRASS TEE 1/4"" FMF, CHROME PLATED BRASS TEE 1/4"" MFM, CHROME PLATED BRASS TEE 1/4"" MMF, CHROME PLATED BRASS TEE 1/4"" MMM, CHROME PLATED BRASS R BALL VALVE 1/4" FF PN15, CHROME PLATED BRASS BALL VALVE 1/4" FF PN6, STAINLESS STEEL AISI BALL VALVE 1/4" MF PN15, CHROME PLATED BRASS BALL VALVE 1/4" MF PN63, STAINLESS STEEL AISI 316 1/2" CROSS 1/2" 4F, CHROME PLATED BRASS CROSS 1/2" 4F, STAINLESS STEEL AISI 316 R ELBOW 9 1/2" FF, GALVANISED STEEL ELBOW 9 1/2" FF, STAINLESS STEEL AISI ELBOW 9 1/2" MF, STAINLESS STEEL AISI TEE 1/2" FFF, STAINLESS STEEL AISI 316 R TEE 1/2" FFF, CHROME PLATED BRASS TEE 1/2" MMF, CHROME PLATED BRASS TEE 1/2" MMM, CHROME PLATED BRASS TEE 1/2" MFM, CHROME PLATED BRASS TEE 1/2" FFM, CHROME PLATED BRASS BALL VALVE 1/2" FF PN6, STAINLESS STEEL AISI 316 R BALL VALVE 1/2" MF PN15, CHROME PLATED BRASS BALL VALVE 1/2" MF PN63, STAINLESS STEEL AISI BALL VALVE 1/2" FF PN15, CHROME PLATED BRASS 1" TEE 1" FFF, GALVANISED STEEL TEE 1" FFF, STAINLESS STEEL AISI Ways Fitting 1" R1, BRASS 54

55 REPORTS AND DECLARATIONS 55

56 REPORTS AND DECLARATIONS i) Test reports a) Factory Test Report (Lowara identity code: 1A) (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 996:212 Grade 3B) and tightness test. b) Audit Test Report (Lowara identity code: 1B) - Test report for electric pumps compiled in the test room, comprising flow-head-pump input-pump efficiency performance test (ISO 996:212 Grade 3B) c) NPSH Test Report (Lowara identity code: 1A / CTF-NP) (unavailable for submerged or submergible pumps) - Test report for electric pumps compiled in the test room, comprising flow-npsh performance test (ISO 996:212 Grade 3B) d) Noise Test Report (Lowara identity code: 1A / CTF-RM) (unavailable for submerged pumps) - Report indicating sound pressure and power measurements (EN ISO 2361, EN ISO 1123, EN ISO 4871) using the intensimetric (EN ISO , EN ISO ), or phonometric method. e) Vibration Test Report (unavailable for submerged or submergible pumps) - Report indicating vibration measurements (ISO ) ii) Declaration of product conformity with the technical requirements indicated in the order a) EN 124:24 - type 2.1 (Lowara identity code: CTF-21) - does not include test results on supplied or similar products. b) EN 124:24 - type 2.2 (Lowara identity code: CTF-22) - includes test results (materials certificates) on similar products. c) EN 124:24 - type 3.1 (Lowara identity code: 1A / CTF-31 or 1B / CTF-31) - includes test report (Factory Test Report or Audit Test Report), list of materials, EC Declaration of Conformity (in addition to the one accompanying the product), certificates / declarations concerning materials in contact with water. 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 26/42/EC, EMCD 24/18/EC, ErP 29/125/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. 56

57 TECHNICAL APPENDIX 57

58 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 +.5) + 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.,5 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 (4 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),2,7 2, 5, 7,4 15,4 21,5 Elevation above sea level (m) Suction loss (m),55 1,1 1,65 2,2 2,75 3,3 Friction loss is shown in the tables at pages 6-61 of this catalogue. To reduce it to a minimum, especially in cases of high suction head (over 4-5 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 ~15 C γ = 1 kg/dm 3 Flow rate required: 25 m 3 /h Head for required delivery: 7 m. Suction lift: 3,5 m. The selection is an 33SV3G75T pump whose NPSH required value is, at 25 m 3 /h, of 2 m. For water at 15 C hp = Pa / γ = 1,33m, hpv = Pv / γ =,174m (,171 bar) The Hf flow resistance in the suction line with foot valves is ~ 1,2 m. By substituting the parameters in formula 1 with the numeric values above, we have: 1,33 + (-3,5) (2 +,5) + 1,2 +,17 from which we have: 6,8 > 3,9 The relation is therefore verified. TECHNICAL APPENDIX 58

59 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 3 273,15,611, ,15,15741, ,15 1,9854, ,15,657, ,15,16511, ,15 2,1145, ,15,76, ,15,17313, ,15 2,254, ,15,758, ,15,18147, ,15 2,3933, ,15,813 1, ,15,1916, ,15 2,5435, ,15,872 1, 6 333,15,1992, ,15 2,713, ,15,935 1, ,15,286, ,15 2,867, ,15,11, ,15,2184, ,15 3,41, ,15,172, ,15,2286, ,15 3,223, ,15,1147, ,15,2391, ,15 3,414, ,15,1227, ,15,251, ,15 3,614, ,15,1312, ,15,2615, ,15 4,155, ,15,141, ,15,2733, ,15 5,433, ,15,1497, ,15,2856, ,15 6,181, ,15,1597, ,15,2984, ,15 7,8, ,15,174, ,15,3116, ,15 7,92, ,15,1817, ,15,3253, ,15 8,924, ,15,1936, ,15,3396, ,15 1,27, ,15,262, ,15,3543, ,15 11,233, ,15,2196, ,15,3696, ,15 12,551, ,15,2337, ,15,3855, ,15 13,987, ,15,2485, ,15,419, ,15 15,55, ,15,2642, ,15,4189, ,15 17,243, ,15,288, ,15,4365, ,15 19,77, ,15,2982, ,15,4547, ,15 21,6, ,15,3166, ,15,4736, ,15 23,198, ,15,336, ,15,4931, ,15 25,51, ,15,3564, ,15,5133, ,15 27,976, ,15,3778, ,15,5342, ,15 3,632, ,15,44, ,15,5557, ,15 33,478, ,15,4241, ,15,578, ,15 36,523, ,15,4491, ,15,611, ,15 39,776, ,15,4753, ,15,6249, ,15 43,246, ,15,529, ,15,6495, ,15 46,943, ,15,5318, ,15,6749, ,15 5,877, ,15,5622, ,15,711, ,15 55,58, ,15,594, ,15,7281, ,15 59,496, ,15,6274, ,15,7561, ,15 64,22, ,15,6624, ,15,7849, ,15 69,186, ,15,6991, ,15,8146, ,15 74,461, ,15,7375, ,15,8453, ,15 8,37, ,15,7777, ,15,8769, ,15 85,927, ,15,8198, ,15,994, ,15 92,144, ,15,9639, ,15,943, ,15 98,7, ,15,91, ,15,9776, ,15 15,61, ,15,9582, ,15 1,133, ,15 112,89, ,15,186, ,15 1,878, ,15 12,56, ,15,1612, ,15 1,1668, ,15 128,63, ,15,11162, ,15 1,254, ,15 146,5, ,15,11736, ,15 1,339, ,15 165,35, ,15,12335, ,15 1,4327, ,15 186,75, ,15,12961, ,15 1,5316, ,15 21,54, ,15,13613, ,15 1,6362, ,15 647,3 221,2, ,15,14293, ,15 1,7465, ,15,152, ,15 1,8628,9445 G-at_npsh_b_sc 59 TECHNICAL APPENDIX

60 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 /2" 3/4" 1" 1 1/4" 1 1/2" 2 2 1/2" 3" 4" 5" 6" 7" 8" 1" 12" 14" 16",6 1 v,94,53,34,21,13 hr 16 3,94 1,33,4,13 The hr values must be multiplied by:,9 15 v 1,42,8,51,31,2,71 for galvanized or painted steel pipes hr 33,9 8,35 2,82,85,29,54 for stainless steel or copper pipes 1,2 2 v 1,89 1,6,68,41,27,17,47 for PVC or PE pipes hr 57,7 14,21 4,79 1,44,49,16 1,5 25 v 2,36 1,33,85,52,33,21 hr 87,2 21,5 7,24 2,18,73,25 1,8 3 v 2,83 1,59 1,2,62,4,25 hr 122 3,1 1,1 3,5 1,3,35 2,1 35 v 3,3 1,86 1,19,73,46,3 hr 162 4, 13,5 4,6 1,37,46 2,4 4 v 2,12 1,36,83,53,34,2 hr 51,2 17,3 5,19 1,75,59, v 2,65 1,7 1,4,66,42,25 hr 77,4 26,1 7,85 2,65,89,25 3,6 6 v 3,18 2,4 1,24,8,51,3 hr 18 36,6 11, 3,71 1,25,35 4,2 7 v 3,72 2,38 1,45,93,59,35 hr ,7 14,6 4,93 1,66,46 4,8 8 v 4,25 2,72 1,66 1,6,68,4 hr ,3 18,7 6,32 2,13,59 5, v v 3,6 3,4 1,87 2,7 1,19 1,33,76,85,45,5,3,33 hr hr 77,5 94,1 23,3 28,3 7,85 9,54 2,65 3,22,74,9,27,33 7,5 125 v 4,25 2,59 1,66 1,6,63,41 hr ,8 14,4 4,86 1,36, v 3,11 1,99 1,27,75,5,32 hr 59,9 2,2 6,82 1,9,69,23 1,5 175 v 3,63 2,32 1,49,88,58,37 hr 79,7 26,9 9,7 2,53,92, v 4,15 2,65 1,7 1,1,66,42 hr 12 34,4 11,6 3,23 1,18, v v 5,18 3,98 3,32 2,55 2,12 1,51 1,26 1,,83,64,53,41,34 hr hr ,8 52, 24,6 17,5 6,85 4,89 2,49 1,78,84,6,28, v v v 5,31 6,63 5,1 3,4 4,25 3,2 2,1 2,51 1,99 1,33 1,66 1,27,85 1,6,82,54,68,57,38,47,42 hr hr hr ,6 41,8 63,2 24,7 11,66 17,6 8,98 4,24 6,41 3,3 1,43 2,16 1,2,48,73,42,2,3, v 5,94 3,52 2,32 1,49,95,66,49 hr ,8 11,9 4,3 1,36,56, v v 6,79 7,64 4,2 4,52 2,65 2,99 1,7 1,91 1,9 1,22,75,85,55,62 hr hr , 52,3 15,3 19, 5,16 6,41 1,74 2,16,72,89,34, v 5,3 3,32 2,12 1,36,94,69,53 hr 63,5 23,1 7,79 2,63 1,8,51, v 6,28 4,15 2,65 1,7 1,18,87,66 hr 96, 34,9 11,8 3,97 1,63,77, v 7,54 4,98 3,18 2,4 1,42 1,4,8 hr ,9 16,5 5,57 2,29 1,8, v 8,79 5,81 3,72 2,38 1,65 1,21,93 hr ,1 21,9 7,4 3,5 1,44, v 6,63 4,25 2,72 1,89 1,39 1,6,68 hr 83,3 28,1 9,48 3,9 1,84,96, v 8,29 5,31 3,4 2,36 1,73 1,33,85 hr ,5 14,3 5,89 2,78 1,45, v 6,37 4,8 2,83 2,8 1,59 1,2,71 hr 59,5 2,1 8,26 3,9 2,3,69, v 7,43 4,76 3,3 2,43 1,86 1,19,83 hr 79,1 26,7 11, 5,18 2,71,91, v 8,49 5,44 3,77 2,77 2,12 1,36,94 hr 11 34,2 14,1 6,64 3,46 1,17, v 6,79 4,72 3,47 2,65 1,7 1,18 hr 51,6 21,2 1, 5,23 1,77, v 8,15 5,66 4,16 3,18 2,4 1,42 hr 72,3 29,8 14,1 7,33 2,47 1, v 6,61 4,85 3,72 2,38 1,65 1,21 hr 39,6 18,7 9,75 3,29 1,35, v v 7,55 8,49 5,55 6,24 4,25 4,78 2,72 3,6 1,89 2,12 1,39 1,56 1,19 hr hr 5,7 63, 23,9 29,8 12,49 15,5 4,21 5,24 1,73 2,16,82 1,2, G-at-pct-en_a_th v 6,93 5,31 3,4 2,36 1,73 1,33 hr 36,2 18,9 6,36 2,62 1,24,65 hr = flow resistance for 1 m of straight pipeline (m) V = water speed (m/s) TECHNICAL APPENDIX 6

61 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) 45 bend,2,2,4,4,6,6,9 1,1 1,5 1,9 2,4 2,8 9 bend,4,6,9 1,1 1,3 1,5 2,1 2,6 3, 3,9 4,7 5,8 9 smooth bend,4,4,4,6,9 1,1 1,3 1,7 1,9 2,8 3,4 3,9 Union tee or cross 1,1 1,3 1,7 2,1 2,6 3,2 4,3 5,3 6,4 7,5 1,7 12,8 Gate - - -,2,2,2,4,4,6,9 1,1 1,3 Non return valve 1,1 1,5 1,9 2,4 3, 3,4 4,7 5,9 7,4 9,6 11,8 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 1,41; for stainless steel, copper and coated cast iron pipework, multiply the values by 1,85; 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. 61 TECHNICAL APPENDIX

62 VOLUMETRIC CAPACITY Litres Cubic metres Cubic feet Cubic feet Imp. gal. US gal. 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,,6 2,1189,353,22, ,6667 1, 35,3147,5886 3,6662 4,429,4719,283 1,,167,138, ,3168 1,699 6, 1, 6,2288 7,485 4,5461,2728 9,6326,165 1, 1,29 3,7854,2271 8,28,1337,8327 1, PRESSURE AND AND HEAD HEAD Newton per kilo Pascal bar Pound force per metre millimetre of square metre square inch of water mercury N/m 2 kpa bar psi m H 2 O mm Hg 1,,1 1 x x x 1-4,75 1, 1,,1,145,12 7,56 1 x 1 5 1, 1, 14,538 1, , ,757 6,8948,689 1,,731 51, ,65 9,867,981 1,4223 1, 73, ,322,1333,13,193,136 1, LENGTH millimetre centimetre metre inch foot yard VOLUME mm cm m in ft yd 1,,1,1,394,33,11 1, 1,,1,3937,328,19 1, 1, 1, 39,371 3,288 1,936 25,4 2,54,254 1,,833,278 34,8 3,48,348 12, 1,, ,4 91,44, , 3, 1, cubic metre litre millilitre imp. Gallon US gallon cubic foot m 3 litro ml imp. gal. US gal. ft 3 1, 1, 1 x , ,172 35,3147,1 1, 1,,22,2642,353 1 x 1-6,1 1, 2.2 x x x 1-5,45 4, ,87 1, 1,29,165,38 3, ,412,8327 1,,1337,283 28, ,8466 6,2288 7,485 1, G-at_pp-en_a_sc TECHNICAL APPENDIX 62

63 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, and Vogel 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 and Vogel 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. 63 TECHNICAL APPENDIX

64 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 have a My Xylect space, where all projects are saved. For more information about Xylect TM please contact our sales network or visit Dimensional drawings appear on the screen and can be downloaded in dxf format. TECHNICAL APPENDIX 64

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