GRUNDFOS DATA BOOKLET. Sanitary pumps. Centrifugal pumps 50 Hz

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1 GRUNDFOS DATA BOOKLET Sanitary pumps Centrifugal pumps

2 Contents Introduction Grundfos sanitary pumps 3 Hygienic design 3 Performance range Performance range, -pole Performance range, -pole Euro-HYGIA Euro-HYGIA F&B-HYGIA F&B-HYGIA 8 Contra Contra durietta durietta 1 SIPLA SIPLA 1 MAXA and MAXANA MAXA and MAXANA 1 Identification Type keys 18 Design variations 19 Certification Approvals and certificates 3 Certificates 3 Surface finish of sanitary pumps 37 Installation Mechanical installation 38 Space requirements 38 Elimination of noise and vibration 39 Terminal box positions 39 Curve charts How to read the curve charts Curve conditions 1 Performance curves/technical data Euro-HYGIA I Euro-HYGIA II 8 F&B-HYGIA I 8 F&B-HYGIA II F&B-HYGIA II Contra I 7 Contra II 8 durietta 88 SIPLA 9 MAXA 8-1/XXX 98 MAXANA 3-1/XXX 11 Further product documentation WebCAPS 18 Connection selection guide Selection of connection according to application 1 Selection of connection according to pump type Design 3 Product range Sanitary pumps 7 Construction Motor 8 Motor ranges 8 Motor protection 31 Impeller types 3 Surface treatment 3 Shaft seals Mechanical shaft seal 33

3 Introduction Sanitary pumps Grundfos sanitary pumps Grundfos stainless steel sanitary pumps are designed for a wide range of hygienic and sanitary applications such as: food and beverage life science/pharmaceutical personal care water treatment. The Grundfos range of sanitary pumps comprises the below pump types, each state-of-the-art within their specific field of application. The pumps can be fitted with a variety of features to adapt to specific pumping tasks. In addition, it is possible to customise the pumps for optimum function or performance in relation to the job at hand. Euro-HYGIA Euro-HYGIA single-stage, end-suction centrifugal pumps come in a variety of flexible versions. The pumps offer heads up to 7 metres, flow rates up to m 3 /h and operating pressures up to 1 bar. Pipe connections range from DN to DN 1 and motor sizes from. to kw. See page. F&B-HYGIA F&B-HYGIA single-stage, end-suction centrifugal pumps offer heads up to 7 metres, flow rates up to m 3 /h and operating pressures up to 1 bar. Pipe connections range from DN to DN and motor sizes from 1.1 to 18. kw. See page 8. Contra Contra single-stage or multi-stage, end-suction centrifugal pumps come in a variety of flexible versions. The pumps offer heads up to 1 metres, flow rates up to m 3 /h and operating pressures up to bar. Pipe connections range from DN to DN 8 and motor sizes from. to 18. kw. See page. durietta durietta single-stage or multi-stage centrifugal pumps offer low flow and high head. The pumps are available in a vertical and a horizontal version. The pumps offer heads up to 7 metres, flow rates up to m 3 /h and operating pressures up to 8 bar. Pipe connections range from DN to DN (1" to 1½") and motor sizes from. to. kw. See page 1. SIPLA SIPLA single-stage, self-priming, side-channel pumps offer heads up to metres, flow rates up to 8 m 3 /h and operating pressures up to bar. Pipe connections range from DN 3 to DN 8 and motor sizes from.7 to kw. See page 1. MAXA and MAXANA MAXA and MAXANA are single-stage, end-suction centrifugal pumps. The MAXA pumps are designed according to DIN EN 733. The pumps offer heads up to 97 metres, flow rates up to 8 m 3 /h and operating pressures up to bar. Pipe connections range from DN 3 to DN 1 and motor sizes from. to 9 kw. See page 1. Hygienic design The Grundfos sanitary pumps have been designed in accordance with the strictest hygienic design criteria. The surface finish of the materials used is of paramount importance to prevent possible breeding grounds for bacteria and germs. Fully drainable models are available, and the use of AISI 31L (DIN EN 1./1.3) cold-rolled and/or forged stainless steel ensures a homogeneous, porefree surface in contrast to cast materials. The design, materials and material surface finish are subject to a variety of national and international rules and regulations, guidelines and laws. Among these are the EU Machinery Directive, the GMP (Good Manufacturing Practices) rules and regulations, the FDA (Food and Drug Administration) regulations, the 3A Sanitary Standards, the EU foodstuff hygienic guidelines, the DIN EN 1 Biotechnology Standard as well as the EHEDG (European Hygienic Engineering & Design Group) and the QHD (Qualified Hygienic Design) criteria. Shaft seals Single, flushed or double mechanical shaft seal arrangements are available, depending on the application and the pumped liquid. The seals offer trouble-free operation. The single shaft seals are inboard mechanical seals with the optimum position in the pumped liquid in order to ensure lubrication, cooling as well as CIP (Cleaning In Place) and SIP (Sterilisation In Place). Double seals are available as a tandem arrangement or mounted back-to-back. Connections A variety of connections are available, such as sterile threads to DIN PN 1 and sterile flanges to DIN 118- PN 1. See page 3. 3

4 Performance range Sanitary pumps Performance range, -pole p [kpa] H 1 Contra ll Euro-HYGIA II Contra I Euro-HYGIA II MAXANA MAXA F&B-HYGIA II *durietta Euro-HYGIA I F&B- HYGIA Q [m³/h] Q [l/s] TM Performance range, -pole p [kpa] H SIPLA MAXA MAXANA 1 Euro-HYGIA II F&B-HYGIA II Euro-HYGIA I F&B-HYGIA I *durietta Q [m³/h] Q [l/s] TM *durietta : The performance range is shown on page 88.

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6 Euro-HYGIA Sanitary pumps Euro-HYGIA Fig. 1 Euro-HYGIA Euro-HYGIA I and II GR893 Construction Euro-HYGIA pumps are single-stage, end-suction centrifugal pumps, designed to meet the hygienic requirements of sterile process technology. The pumps are available in a variety of flexible versions. The pumps are CIP and SIP capable in compliance with the DIN EN 1 performance criteria. The design of the wetted parts complies with the following: QHD criteria EHEDG recommendations for CIP cleanability (validated by the TNO Quality of Life institute) 3A Sanitary Standards (US) GOST sanitary standard (Russia). Head: up to 7 m Flow rate: up to 8 m 3 /h (Euro-HYGIA III up to m 3 /h on request): Operating pressure: up to 1 bar Operating temperature: 9 C (up to 1 C on request) Sterilisation temperature: 1 C (SIP) Applications The unique hygienic design and the materials used make the Euro-HYGIA pumps suitable for these applications: Life science/pharmaceutical pure water systems (WFI) biotechnology infusion nutrient and alcohol infusions filling/bottling systems. Personal care pure water lotions perfumes. Food and beverage beer/breweries dairies soft drink mixing yeast processes. Other industries cleaning solutions (CIP systems) water treatment semi-conductor manufacturing metal surface treatment. Fig. Certification The pumps comply with these surface finish requirements: Standard pump version: 3A1 Optional: 3A, 3A3. For explanation, see Certification, page 3. The pump housing is made of heavy-duty, rolled and deep-drawn CrNiMo steel to DIN EN 1./1.3, the equivalent of AISI 31L. Three impeller types are available, depending on the applications: Semi-open, closed and free-flow impeller. See page 3. The pumps have a mechanical shaft seal and a fancooled asynchronous motor with enclosure to IP. 3 1 Fig. 3 Sectional drawing of Euro-HYGIA I Bloc-SUPER on combi foot TM 97 3

7 Euro-HYGIA Sanitary pumps Materials Pos. Component Material DIN/EN 1 Impeller CrNiMo steel Pump housing CrNiMo steel Design variations See page. Mechanical shaft seal Grundfos offers these seal arrangements: single seal double tandem seal double back-to-back seal. As standard, the Euro-HYGIA is fitted with a single, inboard, mechanical shaft seal with an optimum position in the pumped liquid. This ensures lubrication, cooling as well as CIP and SIP, according to the criteria of hygienic design. Standard seals have carbon/stainless steel seal faces and EPDM O-rings. Other seal face material combinations are available on request. See page / / Shaft seal Sterile applications: SiC/SiC/EPDM Hygienic applications: Carbon/stainless steel/epdm or FKM Pump shaft CrNiMo steel 1.71 Shroud Stainless steel Support Stainless steel/cast iron Standard variation Euro-HYGIA Adapta Euro-HYGIA Adapta SUPER Euro-HYGIA Bloc Euro-HYGIA Bloc-SUPER Variation on request Euro-HYGIA Adapta -V Euro-HYGIA Bloc-V Euro-HYGIA VE Euro-HYGIA CN Euro-HYGIA tronic Description Horizontal installation, Adapta motor stool Horizontal installation, Adapta motor stool, motor with stainless steel shroud Horizontal installation Horizontal installation, motor with stainless steel shroud Description Vertical installation, Adapta motor stool Vertical installation Vertical tank installation Horizontal installation, long-coupled version mounted on base plate Horizontal/vertical installation, motor with built-in frequency converter (up to kw) Surface treatment As standard, all wetted parts are electro-polished to improve corrosion-resistance and surface finish. Standard connection Grundfos offers threads to DIN 1181 as standard for Euro-HYGIA pumps. Connections on request Threads: Aseptic threads to DIN Flanges: Aseptic flanges to DIN 118- APV flanges Flanges to DIN EN 9-1 (DIN 33) Kremo flanges to DIN EN 9-1 (DIN 33/). Clamps: Clamps to DIN 37 Clamps for Tri-Clamp /Tri-Clover. Note: Not all pump sizes are available with all connections types. See pages 3 to 3. For other connection types as well as applications and design of connections, see pages 1 to. Features and benefits A wide range of support options for motor and pump. Extremely reliable operation under most working conditions. Optimised hydraulics for high efficiency - reduced power consumption. Multi-function inducer for NPSH reduction or pumping of liquids containing gas (Euro-HYGIA II). Motors for special voltages and frequencies. Euro-HYGIA Adapta and Euro-HYGIA CN with explosion-proof or flameproof three-phase motors available for ATEX applications. Motors for variable speed drive with built-in frequency converter as "tronic", available for motor sizes up to kw. Mobile pumps mounted on two-wheel stainless steel trolley with on/off switch and electric cable. DN 1 diaphragm valve drain for sterile processes. DN 1 drain connection. Heating/cooling jacket for pump housing. Integral flange ring for bolted housing closure (HPM). Special paint finish for the drive and the cast iron/ steel parts. 7

8 F&B-HYGIA Sanitary pumps F&B-HYGIA Construction F&B-HYGIA single-stage, end-suction centrifugal pumps are designed to meet the hygienic requirements of sterile process technology. Fig. F&B-HYGIA F&B-HYGIA I and II GrA39 The pumps are CIP and SIP capable in compliance with the DIN EN 1 performance criteria. The design of the wetted parts complies with the following: QHD criteria EHEDG recommendations for CIP cleanability (validated by the TNO Quality of Life institute) 3A Sanitary Standards (3A1) For explanation, see Certification, page 3. Head: up to 7 m Flow rate: up to m 3 /h Operating pressure: up to 1 bar Operating temperature: 9 C (up to 1 C on request) Sterilisation temperature: 1 C (SIP) (Sterilisation In Place) Applications The unique hygienic design and the materials used make the F&B-HYGIA pumps suitable for these applications: Beverages Beer, soft drinks, alcohol, wine, fruit drinks, yeast, etc. Dairies Milk, whey, cream, condensed milk, etc. Confectionery Syrup, sugar solutions, etc. Fig. Certification The pump housing is made of heavy-duty, rolled and deep-drawn CrNiMo steel to DIN EN 1., the equivalent of AISI 31L. F&B-HYGIA pumps are fitted with a semi-open impeller. See page 3. The pumps have a mechanical shaft seal (optionally with quench) and a fan-cooled, asynchronous motor with enclosure to IP. The pumps are fitted with Grundfos MG motors up to 11 kw, -pole and. kw, -pole. It is possible to choose between EFF 1 motors and EFF motors (. kw, -pole motors are only available as EFF ). 1 Meat packing Liquid fat, frying oil, smokehouse spray, blood processing, etc. 3 TM Fig. Sectional drawing of F&B-HYGIA K on combi foot 8

9 F&B-HYGIA Sanitary pumps Materials Pos. Component Material DIN EN 1 Impeller CrNiMo steel 1. Pump housing CrNiMo steel 1. 3 Shaft seal Hygienic applications: Carbon/stainless steel/epdm or FKM Pump shaft CrNiMo steel 1.71 Motor Support Stainless steel/cast iron Design variations Standard variation F&B-HYGIA K F&B-HYGIA K-SUPER Variation on request None See page. Description Horizontal installation with plug-in shaft and multi-functional lantern. Horizontal installation with plug-in shaft and multi-functional lantern, motor with stainless steel shroud. Description Standard connections Grundfos offers threads to DIN 1181 as standard for F&B-HYGIA pumps. Connections on request Flanges: Kremo flanges to DIN EN 9-1 (DIN 33/). Clamps: Clamps for Tri-Clamp /Tri-Clover. For other connection types as well as applications and design of connections, see pages 1 to. Features and benefits A wide range of support options for motor and pump. Extremely reliable operation under most working conditions. Optimised hydraulics for high efficiency - reduced power consumption. Motors for special voltages and frequencies on request. Mechanical shaft seal Grundfos offers these seal arrangements: single seal Flushed single mechanical seal. As standard, the F&B-HYGIA is fitted with a single, inboard, mechanical shaft seal with an optimum position in the pumped liquid. This ensures lubrication, cooling as well as CIP and SIP, according to the criteria of hygienic design. Carbon/stainless steel seal faces and EPDM O-rings are standard. Other seal face material combinations are available on request. See page 33. Surface treatment All chrome steel parts are blasted as standard. 9

10 Contra Sanitary pumps Contra Construction Contra pumps are single-stage or multi-stage, endsuction centrifugal pumps. The pumps are available in a variety of flexible versions. The pumps are CIP and SIP capable in compliance with the DIN EN 1 performance criteria. They also meet the GMP requirements regarding FDAapproved materials. The design complies with the following: GR891 QHD criteria EHEDG recommendations Fig. 7 Contra Contra I and II Head: up to 1 m Flow rate: up to m 3 /h Operating pressure: up to bar Operating temperature: 9 C (up to 1 C on request) Sterilisation temperature: 1 C (SIP) Applications The unique hygienic design and the materials used make the Contra pumps suitable for pressure boosting in these applications: Food and beverage breweries and dairies carbonising systems food processing plants. Pharmaceutical and related industry purification systems pure-water systems (WFI) personal care industries. Other industrial applications surface treatment systems water processing systems CIP feeding systems. Fig. 8 Certification The pumps comply with these surface finish requirements: Standard pump version:3a1 Optional: 3A, 3A3. For explanation, see section Certification, page 3. The pump housing is made of rolled and forged stainless steel to DIN EN 1./1.3, the equivalent of AISI 31L. This guarantees a homogeneous, pore-free surface, in contrast to cast materials. The Contra pumps have open diffusers. The O-ring seal locations for the housing and impellers are designed to meet the criteria of hygienic design with metal-to-metal contact seal areas and no pump housing dead-ends. Contra pumps are fitted with a semi-open impeller as standard. See page 3. The vertical versions are fully self-draining through the suction port of the pumps. The pumps have a mechanical shaft seal and a fancooled asynchronous motor with enclosure to IP Fig. 9 Sectional drawing of Contra I Bloc-SUPER on combi foot TM 9 3

11 Contra Sanitary pumps Materials Pos. Component Material EN/DIN 1 Impeller CrNiMo steel Pump housing CrNiMo steel 3 Shaft seal Pump shaft CrNiMo steel Design variations See page. Mechanical shaft seal Grundfos offers these seal arrangements: single seal double tandem seal double back-to-back seal. As standard, the Contra is fitted with a single, inboard, mechanical shaft seal with an optimum position in the pumped liquid. This ensures lubrication, cooling as well as CIP and SIP according to the criteria of hygienic design. Standard seals have carbon/stainless steel seal faces and EPDM O-rings. Other seal face material combinations are available on request. See page 33. Sterile applications: SiC/SiC/EPDM Hygienic applications: Carbon/ stainless steel/epdm or FKM Motor Shroud Stainless steel 7 Support Stainless steel/cast iron Standard variation Contra Adapta Contra Adapta SUPER Contra Adapta -V Contra Bloc Contra Bloc-SUPER Variation on request Contra Bloc-V Contra CN Contra tronic 1./ / / 1. Description Horizontal installation, Adapta motor stool Horizontal installation, Adapta motor stool, motor with stainless steel shroud Vertical installation, Adapta motor stool Horizontal installation Horizontal installation, motor with stainless steel shroud Description Vertical installation Horizontal installation, long-coupled version mounted on base plate Horizontal/vertical installation, motor with built-in frequency converter (up to 18. kw) Standard connection Grundfos offers threads to DIN 1181 as standard for Contra pumps. Connections on request Threads: Aseptic threads to DIN Flanges: Aseptic flanges to DIN 118- APV flanges Flanges to DIN EN 9-1 (DIN 33) Kremo flanges to DIN EN 9-1 (DIN 33/). Clamps: Clamps to DIN 37 Clamps for Tri-Clamp /Tri-Clover. Note: Not all pump sizes are available with all connection types. See pages 37 to. For other connection types as well as applications and design of connections, see pages 1 to. Features and benefits A wide range of support options for motor and pump. Extremely reliable operation under most working conditions. Optimised hydraulics for high efficiency - reduced power consumption. Contra Adapta and CN with explosion-proof or flameproof motors available for ATEX applications. Motors with special voltages and frequencies. Pump with water-cooled motor for clean-room applications. Adapta tronic versions fitted with motors for variable speed drive with built-in frequency converter, available for motor sizes up to 18. kw. Flush or barrier fluid systems for tandem or back-toback double mechanical seals. Mobile pumps mounted on two-wheel trolley with on/off switch. Special paint for motor, cast iron and carbon steel parts (except for Adapta Bloc). Surface treatment As standard, all wetted parts are electro-polished to improve corrosion-resistance and surface finish. 11

12 durietta Sanitary pumps durietta Construction durietta pumps are compact, end-suction, singlestage or multistage centrifugal pumps, designed in compliance with the 3A criteria (3A.1 and 3A1.). The laminated, stainless steel pump components are manufactured to EN 1.71 and EN 1.. The impeller types available are of the semi-open or closed type, depending on the applications. See page 3. GrA397 The pumps have a mechanical shaft seal and an asynchronous motor with enclosure to IP. Fig. durietta 1 durietta pumps Head: up to 7 m Flow rate: up to m 3 /h Operating pressure: up to 8 bar Temperature range: C to 9 C. Applications The unique hygienic design and the materials used make the durietta pumps suitable for these applications: Food and beverage pumping of liquids in micro-breweries and dairies bottling systems for liquids food processing plants drinking water systems. Pharmaceutical and related industry purification systems personal care industries. Other industrial applications semi-conductor manufacturing plate heat exchangers. 3 7 Fig. 11 Sectional drawing of durietta / K SUPER on combi foot Materials Pos. Component Material EN/DIN 1 Impeller CrNiMo steel 1. Pump housing CrNiMo steel 1. 3 Shaft seal SiC/SiC Carbon/stainless steel Joints: EPDM or FKM Pump shaft CrNiMo steel 1.71 Motor Shroud Stainless steel Support Stainless steel 1.7 Design variations TM3 378 Standard variation durietta K durietta K SUPER Variation on request durietta tronic Description Horizontal installation, monobloc Horizontal installation, motor with stainless steel shroud on stainless steel foot with elastomer base Description Horizontal installation, motor with built-in unshrouded frequency converter See page. Mechanical shaft seal Grundfos offers these seal arrangements: single seal double tandem seal (maximum four stages) The standard, mechanical shaft seals have an optimum 1

13 durietta Sanitary pumps position in the pump housing. This ensures lubrication and cooling of the mechanical shaft seal in accordance with the criteria of the hygienic design. Standard seals have carbon/stainless steel seal faces and EPDM O-rings. Other seal face material combinations are available on request. See page 33. Surface treatment Wetted parts are blasted as standard. Electro-polished wetted parts are also available on request. Standard connection Grundfos offers threads to DIN 1181 as standard for durietta pumps. Connections on request Threads: Threads, SMS Threads to DIN ISO 8 (male) - GAZ Threads to DIN EN -1 (female). Flanges: Flanges to DIN EN 9-1 (DIN ). Clamps: Clamps, ISO Clamps, SMS. Note: Not all pump sizes are available with all connection types. See page 3 to. For other connection types as well as applications and design of connections, see pages 1 to. Features and benefits Motor for special voltages and frequencies (NEMA, UL, CSA, etc.) on request Motor with built-in frequency converter for output regulation (not available in K SUPER execution) Mobile pumps mounted on stainless steel trolley with on/off switch (on request) Special paint finish for the motor (on request). 13

14 SIPLA Sanitary pumps SIPLA Construction SIPLA pumps are single-stage, self-priming, sidechannel pumps. The pump housing and front cover are made of precision-cast stainless steel to DIN EN 1.. The impeller nut is made of stainless steel to DIN EN 1.3, the equivalent of AISI 31L. SIPLA pumps are fitted with an open star impeller as standard. See page 3. GR89 The pump shaft is made of stainless steel to DIN EN 1.71, the equivalent of AISI 31TI. Fig. 1 SIPLA SIPLA pumps Head: up to m Flow rate: up to 8 m 3 /h (SIPLA on request): up to 9 m 3 /h Operating pressure: up to bar Operating temperature: 9 C Sterilisation temperature: 1 C (SIP) Thanks to its unique side-channel design, the SIPLA pump is capable of handling liquids with a high air content as in CIP-return systems. The pumps have a mechanical shaft seal and a fancooled asynchronous motor with enclosure to IP. Applications The unique hygienic design, the materials used and its exceptional self-priming capability make the SIPLA pumps suitable for these applications: Food and beverage transfer of yeast transfer of cheese whey. Pharmaceutical industry transfer of glycerine. Other industrial applications CIP-return pumping applications involving liquids with a high air content filtration systems Fig. 13 Sectional drawing of SIPLA Bloc-SUPER on stainless steel ball feet TM

15 SIPLA Sanitary pumps Materials Pos. Component Material EN/DIN 1 Impeller CrNiMo steel 1. Pump housing CrNiMo steel 1. 3 Shaft seal Hygienic applications: Carbon/stainless steel/ EPDM or FKM Pump shaft CrNiMo steel 1.71 Motor Shroud Stainless steel 7 Support Stainless steel/cast iron Design variations Standard variation SIPLA Adapta SIPLA Adapta SUPER SIPLA Bloc SIPLA Bloc-SUPER Variation on request SIPLA CN SIPLA tronic See page. Mechanical shaft seal SIPLA pumps are fitted with a single, inboard, mechanical shaft seal with an optimum position in the pumped liquid. This ensures efficient CIP, SIP, cooling and lubrication. As standard, the SIPLA pump is fitted with a shaft seal with carbon/stainless steel seal faces and EPDM or FKM O-rings. Shaft seals with SiC/SiC seal faces and EPDM or FKM O-ring are available on request. See page 33. Description Horizontal installation, Adapta motor stool Horizontal installation, Adapta motor stool, motor with stainless steel shroud Horizontal installation Horizontal installation, motor with stainless steel shroud Description Horizontal installation, long-coupled version mounted on base plate Horizontal/vertical installation, motor with built-in frequency converter (up to kw) Standard connection Grundfos offers threads to DIN 1181 as standard for SIPLA pumps. Connections on request Flanges: Flanges to DIN EN 9-1 (DIN 33/). Clamps: Clamps to DIN 37 Clamps for Tri-Clamp /Tri-Clover. For other connection types as well as applications and design of connections, see pages 1 to. Product features and benefits A wide range of support options for motor and pump Extremely reliable operation under most working conditions Optimised hydraulics for high efficiency - reduced power consumption Motors for variable speed drive with built-in frequency converter, "tronic", available for motor sizes up to kw ATEX-certified pumps available on request Mobile pumps mounted on two-wheel trolley with on/off switch. Surface treatment As standard, all wetted parts are electro-polished to improve corrosion-resistance and surface finish. 1

16 MAXA and MAXANA Sanitary pumps MAXA and MAXANA Construction The MAXA and MAXANA pumps are single-stage, endsuction, centrifugal pumps, designed for industrial processes. The pumps are available in a variety of flexible versions. TM3 17 EHEDG recommendations for CIP cleanability. Only valid for certain models. (validated by the TNO Quality of Life institute) For explanation, see Certification, page 3. Fig. 1 MAXA and MAXANA MAXA pumps Head: 97 m Flow rate: up to 8 m 3 /h Operating pressure: up to bar Operating temperature: 9 C (up to 1 C on request) Sterilisation temperature: 1 C (SIP) MAXANA pumps Head: up to 97 m Flow rate: up to 1 m 3 /h Operating pressure: up to bar Operating temperature: 9 C (up to 1 C on request) Sterilisation temperature: 1 C (SIP) Applications The MAXA and MAXANA pumps are suitable for these applications: Food and beverage gentle pumping of mash and wort, and beer filtration (hot side) liquid transfer in dairies and food processing plants. Certification Requirements complied with: Pump type Standard MAXA 3A and 3A*. MAXANA 3A * Applies to MAXA -, -, 1-, 1-, - For explanation, see section Certification, page 3. The major dimensions and characteristics of the pumps are according to DIN EN 733 and DIN EN 88. The pump housing are made of heavy-duty, rolled and deep-drawn stainless steel to DIN EN 1.. The back plate is made of rolled stainless steel to DIN EN The pumps feature closed steel impellers with optimised blade entry angles to DIN EN See page 3. 7 Other industrial applications water treatment plants chemical handling systems applications involving liquids with a high content of solid particles environmental systems Bio fuel TM 99 3 Fig. 1 Sectional drawing of MAXANA-CN on base plate 1

17 MAXA and MAXANA Sanitary pumps Materials Pos. Component Material EN/DIN 1 Impeller CrNiMo steel 1./ 1. Pump housing CrNiMo steel 1. 3 Shaft seal Design variations See page. Mechanical shaft seal Grundfos offers these seal arrangements: single seal double tandem seal double back-to-back seal. As standard, MAXA and MAXANA pumps are fitted with a single, inboard, mechanical shaft seal with an optimum position in the pumped liquid. This ensures efficient cleaning, cooling and lubrication. The mechanical shaft seal is designed to DIN EN 17. Standard single seals have carbon/stainless steel seal faces and EPDM O-rings. Other seal face material combinations are available on request. See page 33. Sterile applications: SiC/ SiC/EPDM Hygienic applications: Carbon/stainless steel/ EPDM or FKM Pump shaft CrNiMo steel Bearing bracket Stainless steel Coupling 7 Motor 8 Base plate Standard variation MAXA L MAXA CN MAXANA Adapta MAXANA Bloc Variation on request MAXA CN Maxa VE MAXA tronic MAXANA CN MAXANA L MAXANA tronic Steel Chrome steel Description Horizontal installation 1.71/ 1. Horizontal installation, mounted on base plate Horizontal installation, Adapta motor stool Horizontal installation Description Horizontal installation, mounted on base plate Vertical tank installation Horizontal installation, motor with built-in frequency converter (up to kw) Horizontal installation, mounted on base plate Horizontal installation, mounted on pump foot or motor foot Horizontal installation, motor with built-in frequency converter (up to kw) Standard connection Grundfos offers Kremo flanges to DIN EN 9-1 as standard for MAXA and MAXANA pumps. MAXA pumps also come with flanges to DIN EN 9-1 as standard. Note: Not all MAXA pump sizes are available with all connection types. See page. Connections on request For other connection types as well as applications and design of connections, see pages 1 to. Features and benefits A wide range of support options for motor and pump. Extremely reliable operation under most working conditions. Optimised hydraulics for high efficiency - reduced power consumption. Optional location of discharge port on top, on right or on left side of pump. Double mechanical seals, depending on model, with flushing or barrier fluid. Stuffing box as shaft seal, single or flushed with C-bearing support to DIN EN 88 and shaft sleeve. Motors with special voltages and frequencies. Adapta and CN available with a flameproof threephase motor for ATEX applications. Motors for variable speed drive with built-in frequency converter as "tronic", available for motor sizes up to kw. Housing drain connection DN 1; other sizes available. Housing with heating jacket. Special paint for motor and steel components. Surface treatment As standard, all wetted parts are made of corrosionresistant chrome-nickel-molybdenum steel. Grundfos offers industrial, electro-polished variants. 17

18 Identification Sanitary pumps Type keys Euro-HYGIA Example Euro-HYGIA I BYY 3. Pump range Size Design Nominal diameter of suction port (DN) Nominal diameter of discharge port (DN) Motor power (P ) Number of poles MAXA Example MAXA 8- KYY 8 37 Pump range Size Design Nominal diameter of suction port (DN) Nominal diameter of discharge port Motor power (P ) Number of poles F&B-HYGIA Example F&B-HYGIA I KYY. Pump range Size Design Nominal diameter of suction port (DN) Nominal diameter of discharge port (DN) Motor power (P ) Number of poles Contra Example Contra I/1 BYY 3 1. Pump range Size/stages Design Nominal diameter of suction port (DN) Nominal diameter of discharge port (DN) Motor power (P ) Number of poles durietta Example durietta / KYY 3. Pump range Size/stages Design Nominal diameter of suction port (DN) Nominal diameter of discharge port Motor power (P ) Number of poles SIPLA Example SIPLA 3.1 BYY Pump range Size Design Nominal diameter of suction port (DN) Nominal diameter of discharge port (DN) Motor power (P ) Number of poles MAXANA Example MAXANA 3- BYY 3. Pump range Size Design Nominal diameter of suction port (DN) Nominal diameter of discharge port (DN) Motor power (P ) Number of poles Design* A D D Adapta-SUPER-DOC A D S Adapta-SUPER A D V Adapta-V A D X Adapta-SUPER/quiet A D Y Adapta A T D Adapta-SUPER-tronic-DOC A T S Adapta-SUPER-tronic A V E Adapta-VE B T S Bloc-SUPER-tronic B V E Bloc-VE B V S Bloc-V-SUPER B V X Bloc-V-SUPER/quiet B V Y Bloc-V B Y S Bloc-SUPER B Y X Bloc-SUPER/quiet B Y Y Bloc C H Y CN-srecial grease (hot) C N S CN-Super C N V CN-V C N Y CN C V Y CV C Y Y C K V Y K-V K Y S K-SUPER K Y T K, portable K Y X K-SUPER/quiet K Y Y K L Y S L-SUPER L Y X L-SUPER/quiet L Y Y L S U B Bloc-submercible motor V E Y VE * see page 7 for clarification 18

19 Identification Sanitary pumps Design variations Grundfos offers each pump range in different designs. Principal sketches of each design variant are shown below. Not all pumps are available in the design variations shown. Bloc on motor foot TM Adapta -SUPER K Fig. Euro-HYGIA Adapta -SUPER on stainless steel combi foot TM Fig. 1 Euro-HYGIA Bloc on motor foot Bloc on stainless steel foot TM Fig. 3 F&B-HYGIA K on combi foot TM 8 8 Fig. 17 Euro-HYGIA Bloc on stainless steel foot K-super Bloc-SUPER Fig. 18 Euro-HYGIA Bloc-SUPER with shroud on stainless steel combi foot Bloc on stainless steel trolley TM F&B-HYGIA K super on combi foot Adapta on stainless steel trolley TM TM Fig. Euro-HYGIA Adapta on stainless steel trolley Fig. 19 Euro-HYGIA Bloc on stainless steel trolley Adapta -V CN TM TM Fig. Euro-HYGIA CN on base plate Adapta Fig. 1 Euro-HYGIA Adapta on cast iron foot TM Fig. Euro-HYGIA Adapta -V on pedestal and with suction elbow connection TM

20 Product range Sanitary pumps Sanitary pumps Pump range Euro-HYGIA I Euro-HYGIA II F&B-HYGIA I F&B-HYGIA II Contra I Contra II Hydraulic data Max. head Max. flow rate [m 3 /h] Max. operating temperature [ C] Max. temperature [ C] - on request Max. operating pressure [bar] Max. pump efficiency [%] Motor data Motor power [kw] Design Bloc Bloc SUPER Bloc-V VE Adapta Adapta SUPER Adapta -V K K SUPER K-V CN L Tronic Materials Pump housing: CrNiMo stainless steel 1. Pump housing: Stainless steel 1./1.3 Pipe connections See page 1 to Impeller types durietta SIPLA 3.1 Semi-open Closed Two-channel (closed) Free-flow Star Standard. Available on request. SIPLA.1 SIPLA 1.1 SIPLA 18.1 SIPLA 8.1 SIPLA.1 SIPLA.1 SIPLA 9.1 MAXA MAXANA 7

21 Connection selection guide Sanitary pumps Selection of connection according to application The table below is intended as a general guide. The selection of connections often depends on local conditions. Connection Beverages Food Application Life science and personal care Industrial applications Cleaning Threads Flanges Clamps Type Standard Breweries Wine Juice Alcohol Soft drinks Confectionary Dairies Frying oil Food processing Syrup Meat packing Pure-water systems, WFI Biotechnology Perfumes and lotions Glue and paint Purification systems Chemical handling systems Environmental handling systems Surface treatment systems Biofuel CIP Aseptic threaded connection DIN Threaded connection DIN 1181 Threaded connection, SMS ISO 37 Threaded connection, DS DS 7 Threaded connection, RJT BS8- Threaded connection, IDF ISO 83 BS 8- Threaded connection (male), GAZ DIN ISO 8 Tapped connection (female) DIN EN -1 Aseptic flange DIN 118- Flange, APV-FN1/APV-FG1 ISO Flange DIN EN 9-1 Kremo flange DIN EN 9-1 Flange, ANSI 1 LB RF ANSI Clamp DIN 37 ISO 8 Clamp BS 8-3 Clamp, Tri-Clamp /Tri-Clover ASME BPE Clamp, ISO Clamp, SMS Stub DIN 118 Typically used. SIP 1

22 Connection selection guide Sanitary pumps Selection of connection according to pump type The table below is intended as a general guide. The selection of connections often depends on local conditions. Threads Flanges Clamps Description Connection Rated pressure Standard Sanitary standard 3A 3A1 3A 3A3 Euro-HYGIA I Euro-HYGIA II F&B-HYGIA I F&B-HYGIA II Pump type Aseptic threaded connection PN - DIN Threaded connection PN 1- DIN 1181 Threaded connection, SMS ISO 37 Threaded connection, DS ISO 37 Threaded connection, RJT BS8- Threaded connection, IDF ISO 83 BS8- Contra I Contra II Threaded connection (male), GAZ PN DIN ISO 8 Tapped connection (female) PN DIN EN -1 Aseptic flange PN - DIN 118- Flange, APV-FN1/APV-FG1 PN APV Flange PN DIN EN 9-1 Flange PN 1 DIN EN 9-1 Kremo flange PN DIN EN 9-1 Kremo flange PN 1 DIN EN 9-1 Flange, ANSI 1 LB RF PN -1 ANSI Clamp DIN 37 Clamp ISO 8 BS8-3 durietta SIPLA Clamp, Tri-Clamp /Tri-Clover ASME BPE Clamp, ISO Clamp, SMS Stub DIN 118 * See the NOVAlobe data booklet Standard Available on request MAXA MAXANA NOVAlobe*

23 Connection selection guide Sanitary pumps Design The following tables show the design of the different connection types. Threads Connection Standard Design Aseptic threaded connection DIN Typical applications: Life science/pharmaceutical TM3 8 7 Threaded connection DIN 1181 Typical applications: Beverages Food TM Threaded connection, SMS Threaded connection, DS ISO 37 DS 7 Typical applications: Beverages Food. TM Threaded connection, RJT BS8- Typical applications: Life science/pharmaceutical. TM Threaded connection, IDF Typical applications: Life science/pharmaceutical. ISO 83 BS8- TM Threaded connection (male), GAZ Typical applications: Beverages Food Industrial. DIN ISO 8 TM To be sealed with thread tape 3

24 Connection selection guide Sanitary pumps Threaded connection (female) DIN EN -1 Typical applications: Industrial. TM To be sealed with thread tape Description of components Pos. Description a Threaded connection in pump housing Threaded connection 11 Circular joint ring 1 O-ring 9 Grooved union nut

25 Connection selection guide Sanitary pumps Flanges Connection Standard Design Aseptic flange DIN 118- Typical applications: Life science/pharmaceutical. TM Flange, APV-FN1/APV-FG1 ISO Typical applications: Beverages Food. TM Flange (fixed flange) Flange, ANSI 1 and LB RF DIN EN 9-1 ANSI Typical applications: Industrial applications. TM Flange (loose flange) DIN EN 9-1 Typical applications: Industrial applications. TM Kremo flange DIN EN 9-1 Typical applications: Industrial applications. TM Description of components Pos. Description 1a Flanged connection in pump housing 1 Flanged connection Gasket Profile gasket 1 O-ring 91 Hexagon head screw 9 Hexagon nut

26 Connection selection guide Sanitary pumps Clamps Connection Standard Design Clamp Clamp Clamp Clamp Tri-Clamp /Tri-Clover Typical applications: Life science/pharmaceutical. Clamp, ISO and SMS Typical applications: Food Life science/pharmaceutical. Description of components DIN 37 ISO 8 BS 8-3 ASME BPE - TM Pos. Description 11a Clamp connection in pump housing 11 Clamp connection Profile gasket 1 Clamp ring

27 Construction Sanitary pumps Motor The motor is a totally enclosed, fan-cooled standard motor with main dimensions to IEC and DIN standards. Electrical tolerances to IEC 3. Mounting designation Pump range Euro-HYGIA Mounting designation to IEC 3-7 Horizontal installation Vertical installation F&B-HYGIA Contra IM 1 (IM B3) IM 11 (IM V) IM 1 (IM B) IM 11 (IM V1) SIPLA IM 1 (IM B3) IM 11 (IM V1) MAXA MAXANA durietta IM 1 (IM B3) IM 11 (IM V1) Relative air humidity: Max. 9 % Enclosure class: IP Insulation class: F, to IEC 8 Ambient temperature: Max. C (standard motors) Max. C (MG motors, EFF 1). F&B-HYGIA I P kw -pole -pole The grey shaded areas indicate non-available motors. F&B-HYGIA II P kw -pole -pole ) The grey shaded areas indicate non-available motors. 1) Not available as EFF 1 motor. Contra I In humid locations, the lowest drain hole in the motor must be opened. In such cases, the motor enclosure class is IP. P kw 1-stage -stage -pole 3-stage -stage -stage -stage -pole 1-stage Motor ranges Euro-HYGIA I P kw -pole -pole The grey shaded areas indicate non-available motors. Contra II.. The grey shaded areas indicate non-available motors. Euro-HYGIA II P kw.7 1-stage -stage -pole 3-stage -stage -stage -pole 1-stage P kw -pole -pole The grey shaded areas indicate non-available motors The grey shaded areas indicate non-available motors. 8

28 Construction Sanitary pumps durietta SIPLA P kw MAXA, -pole -pole -pole 1-stage -stage 3-stage -stage -stage -stage 1-stage The grey shaded areas indicate non-available motors. -pole P kw Size The grey shaded areas indicate non-available motors. P kw pole Size The grey shaded areas indicate non-available motors. MAXA, -pole P kw MAXANA, -pole MAXANA, -pole -pole Size The grey shaded areas indicate non-available motors. P kw pole Size The grey shaded areas indicate non-available motors. P kw pole Size The grey shaded areas indicate non-available motors. 9

29 Construction Sanitary pumps Electrical data of standard motors -pole, 3 x -/38-1 V P [kw] I 1/1 [A] cos ϕ η [%] n [min -1 ] pole, 3 x 38-1/-9 V P [kw] I 1/1 [A] cos ϕ η [%] n [min -1 ] pole, 3 x -/38-1 V P [kw] I 1/1 [A] cos ϕ η [%] n [min -1 ] pole, 3 x 38-1/-9 V Electrical data of EFF 1 MG motors -pole, 3 x - V Δ/38-1 V Y P [kw] I 1/1 [A] cos ϕ η [%] n [min -1 ] 1../ / / / / / / pole, 3 x 38-1 V Δ P [kw] I 1/1 [A] cos ϕ η [%] n [min -1 ] pole, 3 x - V Δ/38-1 V Y P [kw] I 1/1 [A] cos ϕ η [%] n [min -1 ] 1.1.7/ / / / / pole, 3 x 38-1 V Δ P [kw] I 1/1 [A] cos ϕ η [%] n [min -1 ] P [kw] I 1/1 [A] cos ϕ η [%] n [min -1 ]

30 Construction Sanitary pumps Electrical data of standard motors with built-in frequency converter -pole, 3 x 38-1 V P [kw] I 1/1 [A] pole, 3 x 38-1 V P [kw] I 1/1 [A] The values depend on the motor make. Motor protection Three-phase motors must be connected to a motor protective circuit breaker. All three-phase standard motors can be connected to an external frequency converter. The connection of a frequency converter will often overload the motor insulation system, and the motor will be more noisy than during normal operation. In addition, large motors are loaded by bearing currents caused by the frequency converter. In the case of frequency converter operation, bear in mind: In - and -pole motors of frame size and upwards, one of the motor bearings should be electrically isolated to prevent damaging currents from passing through the motor bearings. In the case of noise-sensitive applications, the motor noise can be reduced by fitting a du/dt filter between the motor and the frequency converter. In particularly noise-sensitive applications, we recommend to fit a sinusoidal filter. The length of the cable between motor and frequency converter affects the motor load. It should therefore be checked that the cable length meets the specifications laid down by the frequency converter supplier. For supply voltages between and 9 V, fit a du/dt filter to reduce voltage peaks or use a motor with reinforced insulation. For supply voltages of 9 V, use a motor with reinforced insulation and fit a du/dt filter. 31

31 Construction Sanitary pumps Impeller types Grundfos offers four impeller types suitable for different liquids and applications. Not all impeller types are available for the complete product range. Free-flow impeller Semi-open impeller Fig. 7 Semi-open impeller The electro-polished, stainless steel, semi-open-type impeller is available in three versions, according to the application. Impeller version Application Surface finish Cast Industrial/hygienic 3A to 3A1 Welded Industrial/hygienic 3A to 3A1 Milled Industrial/hygienic/sterile 3A to 3A3 For surface finish requirements, see page 37. The impeller is suitable for low-viscosity liquids and liquids containing particles. The semi-open-type impeller is not fitted in durietta. Closed impellers Two-channel, closed Fig. 8 Closed impellers The two electro-polished, stainless steel, closed-type impellers are available in two versions, according to the application. For surface finish requirements, see page 37. The two-channel impeller is suitable for pumped liquids containing solid particles. The closed impeller is suitable for pumped liquids with a low content of solid particles. This impeller type has the highest efficiency. The closed-type impellers are not fitted in durietta. GR939 GR GR939 GR9393 Closed Impeller version Application Surface finish Cast Industrial/hygienic 3A to 3A1 Welded Industrial/hygienic 3A to 3A1 Fig. 9 Free-flow impeller The electro-polished, stainless steel, free-flow-type impeller is available in two versions, according to the application. Impeller version Application Surface finish Cast Industrial/hygienic 3A to 3A1 Welded Industrial/hygienic 3A to 3A1 For surface finish requirements, see page 37. The non-clogging, free-flow impeller is designed for pumped liquids with a high content of solid particles or fibres. Star impeller Fig. Star impeller The electro-polished, cast, stainless steel star-type impeller is suitable for industrial/hygienic applications. Impeller version Application Surface finish Cast Industrial/hygienic 3A to 3A1 For surface finish requirements, see page 37. The highly efficient, self-priming star impeller is suitable for pumped liquids with a low content of solid particles. Surface treatment All non-wetted parts of the pumps receive the following surface treatment: 1. Priming colour Epoxy resin (RAL 73) Thickness of film: to 7 µm.. Top coat (standard) Epoxy resin (RAL ) Thickness of film: to 7 µm. The durietta receives a single coat of polyurethane (RAL ) of a thickness of to µm. GRA393p 3

32 Shaft seals Sanitary pumps Mechanical shaft seal The operating range of the shaft seal depends on the type of shaft seal, the operating pressure and the liquid temperature. The shaft seal types described below are standard seal types; other shaft seal types are available on request. Hygienic applications As standard, Grundfos offers a single shaft seal fitted with a metal spring as seal driver. The seal is suitable for hygienic applications. Fig. 31 Single shaft seal for hygienic applications The single shaft seal has carbon/stainless steel seal faces and EPDM or FKM O-rings. p [bar] t [ C] Fig. 3 Operating range of shaft seal with metal spring as seal driver for hygienic applications 1: Carbon/stainless steel + EPDM : Carbon/stainless steel + EPDM and carbon/stainless steel + FKM. TM 9 3 TM3 11 Sterile applications As standard, Grundfos offers a closed O-ring seal for sterile applications. Fig. 33 Single shaft seal for sterile applications. The O-ring seal has SiC/SiC seal faces and O-rings of EPDM (optionally FFKM (white) or FKM). p [bar] 1 t [ C] Fig. 3 Operating range of closed O-ring seal for sterile applications Shaft seals for sanitary pumps Shaft seal SiC/SiC/EPDM SiC/SiC/EPDM SiC/SiC/FFKM SiC/SiC/FKM Euro-HYGIA F&B-HYGIA Pump range Single Quench Tandem * Back-to-back * Standard On request * Maximum stages Contra durietta SIPLA MAXA TM 9 3 TM3 118 MAXANA 33

33 Shaft seals Sanitary pumps Seal Code Design standar Seat Shaft diameter Material stationary ring Material rotary ring Material elastomere Seal design Spring design 3A 1 19 a e E O 1 Design standard 3A Designation Standart Fe <[%] Surface Finish Ra < [nm] Material 3A1 Industrial 3A Mixed material 3A1 Hygienic 3A1. - 3, Mixed material 3A Sterile 3A.3 -,8 Mixed material 3A Sterile 3A.33 3,8 Mixed material 3A3 Sterile 3A3.7 -, Mixed material 3A3 Sterile 3A3.37 3, Mixed material 3A Pharmaceutical 3A1. 3 3, 1.3 3A Sterile 3A. 1, A3 Sterile 3A3. 1, 1.3 3A1 Hygienic 3A1.L - 3, Mixed material wolfram carbide coated um 3A1 Hygienic 3A1.K - 3, Mixed material C-finished 33um 3A1 Industrial 3A.S1 - - Mixed material 3AD Hygienic 3A1. - 3, 1. 3A3 Sterile 3A3.X8 1,8 1.3 crystalline Ra, um electropolished Material stationary and rotary ring a b c d e f g h i k m s Y hard carbon, resin impr. (foodstuff quality) Tungsten Carbide,shrunk Ceramic PTFE, glassfibre reinforced stainless steel hard carbon, antimony improved Tungsten carbide, soldered Tungsten carbide, solid Silicon carbide,shrunk Silicon carbide, solid SIC, solid SIC, shrunk no spezification Material elastomere E F K P S T V Y EPDM FEP-S( Silicon FEP-wrapped) Kalrez(FFKM) Perbunan(NBR) Silicon Teflon(PTFE) Viton(FKM) no specification 3

34 Shaft seals Sanitary pumps Seal design A B C D E F G O stationary ring with rotation Stop stationary ring bi-elastic mounted not incl. Hilge standard (3A3 / V-gap and groove) in standard dimension N in standard dimension N with stop in standard dimension K in standard dimension K with stop no explanation required Spring design 1 duo-directional left hand spring 3 right hand spring Vacuum left hand spring Vacuum right hand spring encapsulated left hand spring 7 encapsulated right hand spring A MFL8N / MFL8S1 B MG1G C M7N / M7 D HJ9N E HJ977GN F M78N / M78 G Typ H Typ O no explanation R Roten RS3- S MF9 / MF9N T MG1G9 U SHJ9SX L Typ 8U V M7S3 3

35 Certification Sanitary pumps Approvals and certificates The design, materials used and surface finish are subject to a variety of national and international rules and regulations, such as the 3A Sanitary Standards, the EHEDG recommendations and the QHD criteria. 3A Sanitary Standards Fig. 3 3A symbol The 3A Sanitary Standards for design and manufacture provide material specifications and requirements for surface finish. This ensures that dairy, food and other microbially sensitive products are protected from contamination and that all surfaces in contact with the products can be cleaned in place (CIP) or easily dismantled for manual cleaning. The 3A symbol is used by manufacturers to indicate compliance with the 3A Sanitary Standards. For information on the surface finish of sanitary pumps, see page 37. EHEDG Fig. 3 EHEDG symbol The EHEDG (European Hygienic Engineering & Design Group) develops guidelines and test methods for the safe and hygienic processing of food. This ensures the microbiological safety of the end product, for example the pumped medium. The EHEDG symbol is used by manufacturers to indicate compliance with the EHEDG recommendations. A3 EHEDG QHD Fig. 37 QHD symbol The QHD (Qualified Hygienic Design) is a two-phase testing system for the hygienic design and cleanability of components, machinery and plant for aseptic or sterile applications. This ensures that all surfaces can be cleaned in place (CIP). The QHD symbol is used by manufacturers to indicate compliance with the QHD criteria. Certificates Grundfos offers the following certificates and approvals: Hygienic design certificates (certificates guaranteeing compliance with the 3A Sanitary Standards as well as the EHEDG and QHD criteria). Material certificates (certificates stating material specifications). Performance certificates (test reports guaranteeing and certifying test data of QH, current consumption, speed, curves, etc.). Authorized test by third party (surveyed performance test). ATEX-approved sanitary pumps (according to ATEX Directive 9/9/EC). The certificates must be ordered with the pump. QHD 3

36 Certification Sanitary pumps Surface finish of sanitary pumps In order to meet the demands of the pharmaceutical, food and beverage industries, Grundfos has developed the below surface finish requirements: Code Application Material Surface finish 3A.1 Industrial CrNiMo steel 3A1. Hygienic CrNiMo steel Ra 3. μm 3A.3 Sterile 1./1.3 (AISI 31L) Ra.8 μm 3A1. Pharmaceutical 1.3, Fe 3 % Ra 3. μm 3A. Sterile 1.3, Fe 1 % Ra.8 μm 3A3. Sterile 1.3, Fe 1 % Ra. μm 3A3.7 Sterile 3A.33 Sterile 3A3.37 Sterile 1./1.3 (AISI 31L) 1./1.3 Fe 3 % (AISI 31L) 1./1.3 Fe 3 % (AISI 31L) Ra. μm Ra.8 μm Ra. μm TM Certificate Standard 3A hygienic design certificate EHEDG test report QHD test report Material specification report Material report with certificate CE declaration of conformity ATEX-approved pump Inspection certificate EN. 3.1 Inspection certificate - Lloyds Register of Shipping (LRS) - Det Norske Veritas (DNV) EN Germanischer Lloyd (GL) - Bureau Veritas (BV), etc. Surface roughness report Motor test report Standard test report ISO 99 Vibration report Certificate of compliance with the order EN..1 Test report - non-specific inspection and EN.. testing Report, Cleaned and dried pump Report, Electro-polished pump 37

37 Installation Sanitary pumps Mechanical installation The pump should never be installed with the motor pointing downwards. Horizontal installation Pumps fitted with motors up to and including kw require a mm clearance behind the motor. See fig.. Pumps fitted with motors of. kw and up require a mm clearance behind and a 1 metre clearance above the motor to allow the use of lifting equipment. See fig.. TM kw Fig. 38 Installation mm The pumps must be installed in such a way that strain from the pipework is not transferred to the pump housing. When installed outdoors, the motor must be provided with a suitable cover to avoid condensation on the electronic components and to protect pump and motor against the direct effects of the elements..- kw 1 m Space requirements Vertical installation Pumps fitted with motors up to and including kw require a mm clearance above the motor. See fig. 39. Pumps fitted with motors of. kw and up require at least a 1 metre clearance above the motor to allow the use of lifting equipment. See fig. 39. Fig. Horizontal installation mm.- kw.- kw mm 1 m TM3 11 TM3 11 Fig. 39 Vertical installation 38

38 Installation Sanitary pumps Elimination of noise and vibration In order to achieve optimum operation and minimum noise and vibration, consider vibration dampening of the pump. Generally, always consider this for pumps with motors above 11 kw. Smaller motors, however, may also cause undesirable noise and vibration. Noise and vibration are generated by the rotations in the motor and pump and by the flow in pipes and fittings. The effect on the environment is subjective and depends on correct installation and the state of the remaining system. Foundation Vibration dampening is best achieved by installing the pumps on a plane and rigid concrete foundation. See fig. 1. Expansion joint Concrete foundation Vibration damper Fig. 1 Example of foundation of a Contra II pump As a rule of thumb, the weight of a concrete foundation should be 1. times the pump weight. Vibration dampers To prevent the transmission of vibrations to buildings, we recommend that you isolate the pump foundation from building parts by means of vibration dampers. The selection of the right vibration damper requires these data: forces transmitted through the damper motor speed considering speed control, if any required dampening in % (suggested value is 7 %). Which is the right damper varies from installation to installation, and a wrong damper may increase the vibration level. Vibration dampers should therefore be sized by the supplier. TM3 11 Expansion joints If you install the pump on a foundation with vibration dampers, always fit expansion joints on the pump flanges. This is important to prevent the pump from "hanging" in the flanges. Install expansion joints to absorb expansions/contractions in the pipework caused by changing liquid temperature reduce mechanical strains in connection with pressure surges in the pipework isolate mechanical structure-borne noise in the pipework (only rubber bellows expansion joints). Note: Do not install expansion joints to compensate for inaccuracies in the pipework such as centre displacement of flanges. Fit expansion joints at a distance of minimum 1 to 1½ times the nominal flange diameter away from the pump on the suction as well as on the discharge side. This will prevent the development of turbulence in the expansion joints, resulting in better suction conditions and a minimum pressure loss on the discharge side. At high water velocities (> m/s), we recommend you to install larger expansion joints corresponding to the pipework. Expansion joints with limiting rods can be used to minimise the forces caused by the expansion joints. We always recommend expansion joints with limiting rods for flanges larger than DN. The pipes should be anchored so that they do not stress the expansion joints and the pump. Follow the supplier s instructions and pass them on to advisers or pipe installers. Terminal box positions The terminal box positions shown in fig. are possible for all pump ranges. 1 o clock 3 o clock 9 o clock Fig. Possible terminal box positions TM

39 Curve charts Sanitary pumps How to read the curve charts H 3 1 MAXA 8-1 /19 /1 /173 /18 /187 Pump type and frequency. QH curve for the individual pump with a specific impeller diameter. P [kw] Q [m³/h] /187 The power curve indicates pump input power [P] for the individual pump with a specific impeller diameter. 1 /1 /19 /173 /18 Eta [%] Q [m³/h] The eta curve indicates the pump efficiency for the individual pump with a specific impeller diameter. /18 /187 /19 /1 / Q [m³/h] NPSH 8 /19 /1 The NPSH curve indicates the Net Positive Suction Head of the individual pump with a specific impeller diameter. /18 /187 / Q [m³/h] Q [l/s] TM 97

40 Curve charts Sanitary pumps Curve conditions The guidelines below apply to the curves shown on the following pages: 1. Tolerances to ISO 99, Annex A. 1 kw < P < kw Flow rate: ± 9 % Total head: ± 7 % Efficiency: up to 7 % * * Efficiency of motor sizes below kw are calculated on the basis of a formula stated in ISO 99. P > kw Flow rate: ± 8 % Total head: ± % Efficiency: %. QH curves of the individual pumps are shown with expected speed of a three-phase standard motor. 3. Measurements have been made with airless water at a temperature of + C.. The curves apply to the following kinematic viscosity: υ = 1 mm /s (1 cst).. If the pumped liquid density and/or viscosity is higher than that of water, it may be necessary to use a motor with a higher performance. 1

41 Performance curves/ technical data Euro-HYGIA I Euro-HYGIA I -pole H 3 1 P [kw] 3 1 Eta [%] 3 Euro-HYGIA I /18 / / Q [m³/h] /18 / / Q [m³/h] /18 / /1 NPSH Q [m³/h].. Euro-HYGIA I -pole H Euro-HYGIA I /18 /1 /1 P Q [m³/h] [kw].8 / Eta [%] 3 /1 / Q [m³/h] NPSH Q [m³/h].. /18 /1 / / /1 / /1 /18 / Q [m³/h] 8 Q [l/s] TM Q [m³/h] 1 3 Q [l/s] TM 971

42 Euro-HYGIA I Euro-HYGIA I Adapta on cast iron foot Option Annular housing with clamp ring (KLM) TM On cast iron foot P [kw] n [min -1 ] IEC size b k (1) 3 u (1) S S L L L L M S 39 Dimensions depend on housing size (DN s, DN d, a 1, h, e 1 ). See table of connections, page 3. (1) Motor dimensions depend on make; motor dimensions show maximum size () Other sizes and special connections are available on request. () Largest diameter of pump without motor. (7) N-Eupex coupling. (8) Option: Drain-Gemü DN 1 diaphragm valve. Drain-clamp connection to DIN 3 7 DN 1 ( angle). 3

43 Euro-HYGIA I Euro-HYGIA I Adapta SUPER on stainless steel combi foot (frame size 8-9) Option Annular housing with clamp ring (KLM) TM3 38 On stainless steel combi foot P [kw] n [min -1 ] IEC size l H h H d H S S L L Dimensions depend on housing size (DN s, DN d, a 1, h, e 1 ). See table of connections, page 3. () Other sizes and special connections are available on request. () Largest diameter of pump without motor. (7) N-Eupex coupling. (8) Option: Drain-Gemü DN 1 diaphragm valve. Drain-clamp connection to DIN 3 7 DN 1 ( angle).

44 Euro-HYGIA I Euro-HYGIA I Adapta SUPER on stainless steel combi foot (frame size -13) Option Annular housing with clamp ring (KLM) TM On stainless steel combi foot P [kw] n [min -1 ] IEC size l H h H d H. 1 L L M S Dimensions depend on housing size (DN s, DN d, a 1, h, e 1 ). See table of connections, page 3. () Other sizes and special connections are available on request. () Largest diameter of pump without motor. (7) N-Eupex coupling. (8) Option: Drain-Gemü DN 1 diaphragm valve. Drain-clamp connection to DIN 3 7 DN 1 ( angle).

45 Euro-HYGIA I Euro-HYGIA I Bloc on cast iron foot Option Annular housing with clamp ring (KLM) TM3 38 On cast iron foot P [kw] n [min -1 ] IEC size (1) k 3 u (1) S S L L L L M M Dimensions depend on housing size (DN s, DN d, a 1, h, e 1 ). See table of connections, page 3. (1) Motor dimensions depend on make; motor dimensions show maximum size. () Other sizes and special connections are available on request. () Largest diameter of pump without motor. (8) Option: Drain-Gemü DN 1 diaphragm valve. Drain-clamp connection to DIN 3 7 DN 1 ( angle).

46 Euro-HYGIA I Euro-HYGIA I Bloc-SUPER on stainless steel combi foot Option Annular housing with clamp ring (KLM) TM On stainless steel combi foot P [kw] n [min -1 ] IEC size l l H d H S S L L 7. 1 L L M M 8 7 Dimensions depend on housing size (DN s, DN d, a 1, h, e 1 ). See table of connections, page 3. () Other sizes and special connections are available on request. () Largest diameter of pump without motor. (8) Option: Drain-Gemü DN 1 diaphragm valve. Drain-clamp connection to DIN 3 7 DN 1 ( angle). 7

47 Performance curves Euro-HYGIA II Euro-HYGIA II Euro-HYGIA II -pole -pole H Euro-HYGIA II / / /19 H Euro-HYGIA II / / /19 P [kw] Q [m³/h] / / /19 P [kw] Q [m³/h] / / / Eta [%] Q [m³/h] / /19. Eta [%] Q [m³/h] /19 / / / 3 NPSH Q [m³/h] 3 NPSH 1 3 Q [m³/h] 3. 3 / /19 / / / / Q [m³/h] 1 Q [l/s] TM Q [m³/h] Q [l/s] TM 97 8

48 Euro-HYGIA II Euro-HYGIA II Adapta on Adapta foot (frame size 18M) Option Annular housing with clamp ring (KLM) TM3 38 P [kw] n [min -1 On Adapta foot ] IEC size (1) k 3 u (1). 9 18M Dimensions depend on housing size (DN s, DN d, a 1, h, e 1 ). See table of connections, page 3. (1) Motor dimensions depend on make; motor dimensions show maximum size. () Other sizes and special connections are available on request. () Largest diameter of pump without motor. (7) N-Eupex coupling. (8) Option: Drain-Gemü DN 1 diaphragm valve. Drain-clamp connection to DIN 3 7 DN 1 ( angle). 9

49 Euro-HYGIA II Euro-HYGIA II Adapta on cast iron foot (frame size -1) Option Annular housing with clamp ring (KLM) TM On cast iron foot P [kw] n [min -1 ] IEC size b (1) k 3 u (1). 1 L L L M M S S S M M M L 1 Dimensions depend on housing size (DN s, DN d, a 1, h, e 1 ). See table of connections, page 3. (1) Motor dimensions depend on make; motor dimensions show maximum size. () Other sizes and special connections are available on request. () Largest diameter of pump without motor. (7) N-Eupex coupling. (8) Option: Drain-Gemü DN 1 diaphragm valve. Drain-clamp connection to DIN 3 7 DN 1 ( angle).

50 Euro-HYGIA II Euro-HYGIA II Adapta SUPER on stainless steel combi foot (frame size -1) Option Annular housing with clamp ring (KLM) TM On stainless steel combi foot P [kw] n [min -1 ] IEC size l H h H d H. 1 L 3. 1 L 3. 9 L. 1 11M. 9 11M. 1 13S. 9 13S S M M M L 8 8 Dimensions depend on housing size (DN s, DN d, a 1, h, e 1 ). See table of connections, page 3. () Other sizes and special connections are available on request. () Largest diameter of pump without motor. (7) N-Eupex coupling. (8) Option: Drain-Gemü DN 1 diaphragm valve. Drain-clamp connection to DIN 3 7 DN 1 ( angle). 1

51 Euro-HYGIA II Euro-HYGIA II Adapta SUPER on machine pads (frame size 18) Option Annular housing with clamp ring (KLM) TM P [kw] n [min -1 ] IEC size. 9 18M Dimensions depend on housing size (DN s, DN d, a 1, h, e 1 ). See table of connections, page 3. () Other sizes and special connections are available on request. () Largest diameter of pump without motor. (7) N-Eupex coupling. (8) Option: Drain-Gemü DN 1 diaphragm valve. Drain-clamp connection to DIN 3 7 DN 1 ( angle).

52 Euro-HYGIA II Euro-HYGIA II Bloc on cast iron foot (frame size 9-13) ø1 Option Annular housing with clamp ring (KLM) 1 TM3 38 On cast iron foot P [kw] n [min -1 ] IEC size k (1) 3 u (1).7 1 9S L S L L L L M M M M M S M Dimensions depend on housing size (DN s, DN d, a 1, h, e 1 ). See table of connections, page 3. (1) Motor dimensions depend on make; motor dimensions show maximum size. () Other sizes and special connections are available on request. () Largest diameter of pump without motor. (8) Option: Drain-Gemü DN 1 diaphragm valve. Drain-clamp connection to DIN 3 7 DN 1 ( angle). 3

53 Euro-HYGIA II Euro-HYGIA II Bloc on motor foot with stainless steel plinth (frame size 1) Option Annular housing with clamp ring (KLM) TM On motor foot with stainless steel plinth P [kw] n [min -1 ] IEC size (1) k 3 u (1) m 1 m s n 1 n M L L Dimensions depend on housing size (DN s, DN d, a 1, h, e 1 ). See table of connections, page 3. (1) Motor dimensions depend on make; motor dimensions show maximum size. () Other sizes and special connections are available on request. () Largest diameter of pump without motor. (8) Option: Drain-Gemü DN 1 diaphragm valve. Drain-clamp connection to DIN 3 7 DN 1 ( angle).

54 Euro-HYGIA II Euro-HYGIA II Bloc-SUPER on stainless steel combi foot (frame size 9-13) Option Annular housing with clamp ring (KLM) TM3 On stainless steel combi foot P [kw] n [min -1 ] IEC size l l H d H.7 1 9S L S L L L L M M M M M S M Dimensions depend on housing size (DN s, DN d, a 1, h, e 1 ). See table of connections, page 3. () Other sizes and special connections are available on request. () Largest diameter of pump without motor. (8) Option: Drain-Gemü DN 1 diaphragm valve. Drain-clamp connection to DIN 3 7 DN 1 ( angle).

55 Euro-HYGIA II Euro-HYGIA II Bloc-SUPER on stainless steel combi foot (frame size 1) Option Annular housing with clamp ring (KLM) TM On stainless steel combi foot P [kw] n [min -1 ] IEC size l l H d H M L L Dimensions depend on housing size (DN s, DN d, a 1, h, e 1 ). See table of connections, page 3. () Other sizes and special connections are available on request. () Largest diameter of pump without motor. (8) Option: Drain-Gemü DN 1 diaphragm valve. Drain-clamp connection to DIN 3 7 DN 1 ( angle).

56 7

57 Performance curves F&B-HYGIA I F&B-HYGIA I F&B-HYGIA I -pole -pole H 3 1 F&B-HYGIA I /18 / /1 H F&B-HYGIA I /18 /1 /1 P [kw] 3 1 Eta [%] Q [m³/h] /18 / / Q [m³/h] /18 / /1 NPSH Q [m³/h]. P Q [m³/h] [kw].8 / Eta [%] 3 /1 / Q [m³/h] NPSH Q [m³/h]. /18 /1 / /18 / / Q [m³/h] 8 Q [l/s] TM /1 /18 / Q [m³/h] 1 3 Q [l/s] TM3 39 8

58 F&B-HYGIA I F&B-HYGIA I K on motor foot TM On motor foot P [kw] n [min -1 ] IEC size k 3 u a m n n 1 s 1 h 1 o S ) S L ). 9 9L ). 1 L L M S Dimensions depend on housing size (DN s, DN d, a 1, h, e 1 ). See table of connections, page 3. All motors are Grundfos MG motors. 1) Indicates the dimensions of the EFF MG motor when they differ from the dimensions of the EFF 1 MG motor. 9

59 F&B-HYGIA I F&B-HYGIA I K on cast iron foot TM3 379 On cast iron foot P [kw] n [min -1 ] IEC size k 3 u S ) S L ). 9 9L ) 1. 1 L L M S Dimensions depend on housing size (DN s, DN d, a 1, h, e 1 ). See table of connections, page 3. All motors are Grundfos MG motors. 1) Indicates the dimensions of the EFF MG motor when they differ from the dimensions of the EFF 1 MG motor.

60 F&B-HYGIA I F&B-HYGIA I K on combi foot TM On combi foot P [kw] n [min -1 ] IEC size k 3 u S ) S L ). 9 9L ) 1. 1 L L M S Dimensions depend on housing size (DN s, DN d, a 1, h, e 1 ). See table of connections, page 3. All motors are Grundfos MG motors. 1) Indicates the dimensions of the EFF MG motor when they differ from the dimensions of the EFF 1 MG motors. 1

61 F&B-HYGIA I F&B-HYGIA I K SUPER on combi foot TM3 379 P [kw] n [min -1 ] IEC size On combi foot l l H h H d H S ) 31 1) S L ) 31 1). 9 9L ) 31 1) 1. 1 L L M S 91 1 Dimensions depend on housing size (DN s, DN d, a 1, h, e 1 ). See table of connections, page 3. All motors are Grundfos MG motors. 1) Indicates the dimensions of the EFF MG motor when they differ from the dimensions of the EFF 1 MG motor.

62 3

63 Performance curves F&B-HYGIA II F&B-HYGIA II F&B-HYGIA II -pole -pole H F&B-HYGIA II / / /19 H F&B-HYGIA II / / /19 P [kw] Q [m³/h] / / /19 P [kw] Q [m³/h] / / / Eta [%] Q [m³/h] / / /19. Eta [%] Q [m³/h] / / /19 3 NPSH Q [m³/h] 3 NPSH 1 3 Q [m³/h] / / / Q [m³/h] 1 Q [l/s] TM / / / Q [m³/h] Q [l/s] TM3 39

64 F&B-HYGIA II F&B-HYGIA II K on motor foot TM3 379 On motor foot P [kw] n [min -1 ] IEC size k 3 u a m n n 1 s 1 h 1 o. 1 L L L M M S S S M ) M L Dimensions depend on housing size (DN s, DN d, a 1, h, e 1 ). See table of connections, page 3. Motors up to 11 kw are Grundfos MG motors. The EFF 1 MG motor is not available as. kw, -pole. 1) Indicates the dimensions of the EFF MG motor when they differ from the dimensions of the EFF 1 MG motor. 1 kw and 18. kw are Siemens motors.

65 F&B-HYGIA II F&B-HYGIA II K on cast iron foot TM On cast iron foot P [kw] n [min -1 ] IEC size k 3 u. 1 L L L M M S S S Dimensions depend on housing size (DN s, DN d, a 1, h, e 1 ). See table of connections, page 3. All motors are Grundfos MG motors. The EFF 1 MG motor is not available as. kw, -pole. 1) Indicates the dimensions of the EFF MG motor when they differ from the dimensions of the EFF 1 MG motor.

66 F&B-HYGIA II F&B-HYGIA II K on combi foot (frame size -13) TM On combi foot P [kw] n [min -1 ] IEC size k 3 u. 1 L L M M M S S S Dimensions depend on housing size (DN s, DN d, a 1, h, e 1 ). See table of connections, page 3. All motors are Grundfos MG motors. The EFF 1 MG motor is not available as. kw, -pole. 1) Indicates the dimensions of the EFF MG motor when they differ from the dimensions of the EFF 1 MG motor. 7

67 F&B-HYGIA II F&B-HYGIA II K on combi foot (frame size 1) TM On combi foot P [kw] n [min -1 ] IEC size k 3 u M 99 1) M L Dimensions depend on housing size (DN s, DN d, a 1, h, e 1 ). See table of connections, page kw is a Grundfos MG motor. 1) Indicates the dimensions of the EFF MG motor when they differ from the dimensions of the EFF 1 MG motor. 1 kw and 18. kw are Siemens motors. 8

68 F&B-HYGIA II F&B-HYGIA II K SUPER on combi foot (frame size -13) TM3 379 On combi foot P [kw] n [min -1 ] IEC size l l H h H d H. 1 L L L M M S S S Dimensions depend on housing size (DN s, DN d, a 1, h, e 1 ). See table of connections, page 3. All motors are Grundfos MG motors. The EFF 1 MG motor is not available as. kw, -pole. 1) Indicates the dimensions of the EFF MG motor when they differ from the dimensions of the EFF 1 MG motor. 9

69 F&B-HYGIA II F&B-HYGIA II K SUPER on combi foot (frame size 1) TM P [kw] n [min -1 ] IEC size On combi foot l l H h H d H M ) 1) 18 1) 37 1) M L Dimensions depend on housing size (DN s, DN d, a 1, h, e 1 ). See table of connections, page kw is a Grundfos MG motor. 1) Indicates the dimensions of the EFF MG motor when they differ from the dimensions of the EFF 1 MG motor. 1 kw and 18. kw are Siemens motors. 7

70 71

71 Performance curves Contra I Contra I -pole H Contra I P [kw] 3 1 Eta [%] Q [m³/h] Q [m³/h] NPSH Q [m³/h] Q [m³/h] 1 3 Q [l/s] TM 979 7

72 Contra I Contra I Adapta on cast iron foot TM3 38 On cast iron foot P [kw] n [min -1 ] IEC size b (1) k 3 u (1) S S L L L L M S 39 Dimensions depend on housing size (DN s, DN d, a 1, f, h ). See table of connections, page 37. (1) Motor dimensions depend on make; motor dimensions show maximum size. () Other sizes and special connections are available on request. () Largest diameter of pump without motor. (7) Coupling of our choice. 73

73 Contra I Contra I Adapta SUPER on stainless steel combi foot (frame size 8-9) TM3 38 On stainless steel combi foot P [kw] n [min -1 ] IEC size l H h H d H S S L L Dimensions depend on housing size (DN s, DN d, a 1, f, h ). See table of connections, page 37. () Other sizes and special connections are available on request. () Largest diameter of pump without motor. (7) Coupling of our choice. 7

74 Contra I Contra I Adapta SUPER on stainless steel combi foot (frame size -13) TM3 38 On stainless steel combi foot P [kw] n [min -1 ] IEC size l H h H d H. 1 L L M S Dimensions depend on housing size (DN s, DN d, a 1, f, h ). See table of connections, page 37. () Other sizes and special connections are available on request. () Largest diameter of pump without motor. (7) Coupling of our choice. 7

75 Contra I Contra I Adapta -V on stainless steel pedestal with/without suction elbow For installing, removing and servicing the pump, lifting points should be arranged directly above the pump and removable lengths incorporated into the suction line. TM On stainless steel pedestal with/without suction elbow P [kw] n [min -1 ] IEC size b (1) k 3 u (1) S S L L L L M S 39 Dimensions depend on housing size (DN s, DN d, a 1, e, f, h, h 3 ). See table of connections, page 37. (1) Motor dimensions depend on make; motor dimensions show maximum size. () Other sizes and special connections are available on request. () Largest diameter of pump without motor. (7) Coupling of our choice. 7

76 Contra I Contra I Bloc on cast iron foot TM On cast iron foot P [kw] n [min -1 ] IEC size (1) k 3 u (1) S S L L L L M M Dimensions depend on housing size (DN s, DN d, a 1, f, h ). See table of connections, page 37. (1) Motor dimensions depend on make; motor dimensions show maximum size. () Other sizes and special connections are available on request. () Largest diameter of pump without motor. 77

77 Contra I Contra I Bloc-SUPER on stainless steel combi foot TM On stainless steel combi foot P [kw] n [min -1 ] IEC size l H d H S S L. 9 9L. 1 L L M M 7 Dimensions depend on housing size (DN s, DN d, a 1, f, h ). See table of connections, page 37. () Other sizes and special connections are available on request. () Largest diameter of pump without motor. 78

78 79

79 Performance curves Contra II Contra II -pole H P [kw] Contra II 1 3 Q [m³/h] Eta [%] Q [m³/h] NPSH 1 3 Q [m³/h] Q [m³/h] Q [l/s] TM 97 8

80 Contra II Contra II Adapta on cast iron foot TM On cast iron foot P [kw] n [min -1 ] IEC size b (1) k 3 u (1) 3. 9 L M M S S S M M M L 1 Dimensions depend on housing size (DN s, DN d, a 1, f, h ). See table of connections, page. (1) Motor dimensions depend on make; motor dimensions show maximum size. () Other sizes and special connections are available on request. () Largest diameter of pump without motor. (7) N-Eupex coupling. 81

81 Contra II Contra II Adapta SUPER on stainless steel combi foot (frame size -1) TM On stainless steel combi foot P [kw] n [min -1 ] IEC size l H h H d H 3. 9 L. 1 11M. 9 11M. 1 13S. 9 13S S M M M L 8 8 Dimensions depend on housing size (DN s, DN d, a 1, f, h ). See table of connections, page. () Other sizes and special connections are available on request. () Largest diameter of pump without motor. (7) N-Eupex coupling. 8

82 Contra II Contra II Adapta -V on stainless steel pedestal with/without suction elbow (frame size -1) 7 For installing, removing and servicing the pump, lifting point should be arranged directly above the pump and removable lengths incorporated into the suction line. The discharge port is asymmetric; the pump can be drained completely. TM3 7 7 On stainless steel pedestal with/without suction elbow P [kw] n [min -1 ] IEC size b k (1) 3 u (1). 1 L L L M M S S S M M M L 1 Dimensions depend on housing size (DN s, DN d, a 1, f, h, h 3, e 1, e ). See table of connections, page. (1) Motor dimensions depend on make; motor dimensions show maximum size. () Other sizes and special connections are available on request. (7) N-Eupex coupling. 83

83 Contra II Contra II Bloc on cast iron foot (frame size 9-13) TM On cast iron foot P [kw] n [min -1 ] IEC size (1) k 3 u (1).7 1 9S S L S L L L L M M M S M Dimensions depend on housing size (DN s, DN d, a 1, f, h ). See table of connections, page. (1) Motor dimensions depend on make; motor dimensions show maximum size. () Other sizes and special connections are available on request. () Largest diameter of pump without motor. 8

84 Contra II Contra II Bloc-SUPER on stainless steel combi foot (frame size 9-13) TM On stainless steel combi foot P [kw] n [min -1 ] IEC size l l H d H.7 1 9S S L S L L L L M M M S M 1 Dimensions depend on housing size (DN s, DN d, a 1, f, h ). See table of connections, page. () Other sizes and special connections are available on request. () Largest diameter of pump without motor. 8

85 Contra II Contra II Bloc-SUPER on stainless steel combi foot (frame size 1) M1 ø TM On stainless steel combi foot P [kw] n [min -1 ] IEC size l l H d H M L Dimensions depend on housing size (DN s, DN d, a 1, f, h ). See table of connections, page. () Other sizes and special connections are available on request. () Largest diameter of pump without motor. 8

86 87

87 Performance curves durietta durietta -pole durietta -pole H durietta H durietta P [kw] 1 3 Q [m³/h]. P Q [m³/h] [kw] Q [m³/h] Q [l/s] TM Q [m³/h] Q [l/s] TM

88 durietta durietta K on motor foot TM3 378 P [kw] n [min -1 ] IEC size Stage D E F G H U Net weight [kg] S S L L Dimensions depend on housing size (DN s, DN d, A, A, B (1), B (), C, J, K). See table of connections, page 3. (1) Add 37. mm for pumps with double mechanical seal. - and -stage pumps are not available with double mechanical seal. 89

89 durietta durietta K SUPER on stainless steel combi foot TM3 378 P [kw] n [min -1 ] IEC size Stage D' E' F' G' H' U' I' L ± Net weight [kg] S Dimensions depend on housing size (DN s, DN d, A, A, B (1), B (), C, J, K). See table of connections, page 3. () Add 37. mm for pumps with double mechanical seal. - and -stage pumps are not available with double mechanical seal. 9

90 durietta durietta K-V TM B (1) P [kw] n [min -1 ] IEC size Stage H'' U'' Net weight [kg] S S S L L Dimensions depend on housing size (DN s, DN d, A, A, B (1), B (), C, J, K). See table of connections, page 3. (1) Add 37. mm for pumps with double mechanical seal. - and -stage pumps are not available with double mechanical seal. 91

91 Performance curves SIPLA SIPLA SIPLA 3.1 and.1, -pole 1.1, 18.1 and 8.1, -pole H SIPLA H SIPLA P 1 3 Q [m³/h] [kw] Eta [%] Q [m³/h] Q [m³/h] NPSH Q [m³/h] Q [l/s] TM P Q [m³/h] [kw] Eta [%] Q [m³/h] NPSH Q [m³/h] Q [m³/h] 8 Q [l/s] TM

92 Performance curves SIPLA SIPLA.1,.1 and 9.1, -pole H SIPLA P [kw] Eta [%] Q [m³/h] Q [m³/h] Q [m³/h] NPSH Q [m³/h] 1 Q [l/s] TM

93 SIPLA SIPLA Adapta on cast iron foot TM 9 3 Pump type DN s / DN d a l Pump Motor On cast iron foot e l l IEC size P [kw] 1) The pumps are fitted with oversized motors for the pumping of high-viscosity liquids. k 3 Size w1 m n 1 n s 1 /s h 1 h l M.7 9 I 1 / / L 1. 8 I 1 / L 1). 313 I 1 / L II 1 1 / M 1). 33 II 1 1 / S 1). 37 II 1 1 / S 1) II 1 1 / M. 33 II 1 1 / S 1). 37 II 1 1 / S 7. 1) 37 II 1 1 / M II 1 1 / M 1) II 1 1 / L III M 1) 18. III L. 1) III M 18. III L 1). III

94 SIPLA SIPLA Adapta SUPER on combi foot TM 9 3 Pump Motor AD On combi foot Shroud Pump DN s / a l h type DN 1 h h 3 d e l l IEC P Size l size [kw] 7 ' Size m n Size p k3 ' M.7 I I / L 1. I I L 1). I II L 3. II II M. 1) II II S. 1) II II M 7. 1) II II M. II II S 1). II II M 1) 7. II II M 7. II II M 11. 1) II II.3 8 1) The pumps are fitted with oversized motors for the pumping of high-viscosity liquids. 9

95 SIPLA SIPLA Bloc on motor foot TM 97 3 Pump type DN s / Pump Motor a l o h DN d e l l IEC size P [kw] h1 k 3 m n 1 n s 1 w M / L / L. 1) L M 1) S 1) M 1) M S. 1) M 7. 1) M M 1) L M 18. 1) M. 1) M L 1) ) The pumps are fitted with oversized motors for the pumping of high-viscosity liquids. 9

96 SIPLA SIPLA Bloc-SUPER on stainless steel ball feet TM 98 3 Pump type DN s /DN d h 1 h l n m Pump Motor Shroud e l ' a c IEC size P [kw] p k 3 ' M.7.1/ L L. 1) L M 1) S 1) M 1) M S. 1) M 7. 1) M L 1) L M 18. 1) L. 1) M L 1). 37 1) The pumps are fitted with oversized motors for the pumping of high-viscosity liquids. 97

97 Performance curves MAXA MAXA 8-1 MAXA 8-1 -pole -pole H 3 MAXA 8-1 H MAXA 8-1 /187 1 /19 /1 /173 / /18 /173 /1 /187 P [kw] Q [m³/h] /1 /19 /173 /18 /187 P [kw] Q [m³/h] /1 /18 /173 /187 Eta [%] Q [m³/h]. Eta [%] Q [m³/h] 7 7 /18 /187 /18 /19 /1 /173 NPSH Q [m³/h] 8 /19 /1 /173 /1 /187 NPSH Q [m³/h] /1 /173 /18 /187 / Q [m³/h] Q [l/s] TM /187 / Q [m³/h] 1 Q [l/s] TM

98 Performance curves MAXA MAXA 8- MAXA 8- -pole -pole H 7 MAXA 8- H MAXA 8-1 /18 /8 / / / /19 8 /8 / / /18 /19 / P [kw] Q [m³/h] /8 / / / /19 /18 P [kw] Q [m³/h] /19 /18 / / /8 / Eta [%] Q [m³/h] /19 /18 /8 / / / NPSH Q [m³/h] /8 / 3 / Eta [%] 3 8 Q [m³/h] NPSH 8 Q [m³/h] / 3 /18 /19 /8 / /18 /19 / / / / /8 / 1 /18 / Q [m³/h] Q [l/s] TM Q [m³/h] Q [l/s] TM

99 Performance curves MAXA MAXA 8- -pole H P [kw] MAXA 8- / /8 / / / / Q [m³/h] / /8 / / / / MAXA 8- -pole H P [kw] 8 MAXA 8- /8 / / / / / 8 Q [m³/h] /8 / / / / / Eta [%] Q [m³/h] / / /8 / / / Eta [%] Q [m³/h] / /8 / / NPSH Q [m³/h] 8 /8 / / / / / Q [m³/h] Q [l/s] TM 97 / / NPSH 8 Q [m³/h] 3 1 /8 / / / / / 8 Q [m³/h] Q [l/s] TM 979

100 Performance curves MAXA MAXA pole H MAXA /33 /3 /31 / /8 /7 P [kw] Q [m³/h] /33 /3 /31 / /8 /7 Eta [%] Q [m³/h] /7 /8 /3 /33 / /31 NPSH 8 1 Q [m³/h] /33 /3 /7 /31 /8 3 / Q [m³/h] Q [l/s] TM 97 1

101 Performance curves MAXA MAXA - MAXA - -pole -pole H 7 MAXA - H MAXA - 1 /3 /3 8 / /1 /19 / /18 / /1 / /18 /19 P [kw] Eta [%] Q [m³/h] /3 / /1 / /19 / Q [m³/h] /18 /19 /1 / /3 / NPSH Q [m³/h] /18 / /19 / /3 P [kw] 3 1 Eta [%] Q [m³/h] /3 / /1 / /19 / Q [m³/h] /18 /19 /3 / /1 / NPSH 8 1 Q [m³/h] /18 / / Q [m³/h] 8 Q [l/s] TM / /1 / /3 8 1 Q [m³/h] Q [l/s] TM 9731

102 Performance curves MAXA MAXA - MAXA - -pole -pole H 9 8 MAXA - H MAXA - 7 /7 / / /3 / / / / /3 / /1 /7 P [kw] Q [m³/h] P [kw] Q [m³/h] 8 /7 / / /3 / /1 8 / / /3 / /1 /7 Eta [%] Q [m³/h] /7 / / /3 / /1 NPSH Q [m³/h] /3 / / /1 / /7 3 Eta [%] Q [m³/h] NPSH Q [m³/h] 3 / /1 / / /3 / /1 /3 / / /7 / Q [m³/h] 8 Q [l/s] TM Q [m³/h] Q [l/s] TM 973 3

103 Performance curves MAXA MAXA 1- -pole H P [kw] MAXA 1- /7 / / / / /9 8 1 Q [m³/h] MAXA pole H 3 1 P [kw] MAXA 1-31 /33 /3 /3 /3 /9 8 1 Q [m³/h] 1 1 /7 /9 /33 /3 8 / / / / /3 /3 /9 Eta [%] Q [m³/h] /7 /9 Eta [%] Q [m³/h] / / / / 7 /33 /3 /3 /3 /9 NPSH 8 1 Q [m³/h] 3 / / / / NPSH 8 1 Q [m³/h] 7 /33 /3 /3 /3 /9 1 /9 /7 8 1 Q [m³/h] Q [l/s] TM Q [m³/h] Q [l/s] TM 973

104 Performance curves MAXA MAXA 1- MAXA pole -pole H MAXA 1- / / /8 / /9 H 3 1 MAXA 1-31 /3 /31 / /39 /3 P [kw] Q [m³/h] / / / /9 /8 P [kw] 1 3 Q [m³/h] /3 /39 /3 /31 / Eta [%] Q [m³/h] Eta [%] Q [m³/h] /3 7 7 /39 /3 /9 /31 / / / /8 NPSH 1 3 Q [m³/h] 7 / / / /9 /8 NPSH 1 3 Q [m³/h] 7 /39 / / /3 / Q [m³/h] 7 Q [l/s] TM / Q [m³/h] 7 1 Q [l/s] TM 973

105 Performance curves MAXA MAXA 1- MAXA - -pole -pole H 7 3 MAXA 1- /3 /3 / /38 /3 / H 3 1 MAXA - /8 /37 /3 / 1 P [kw] Q [m³/h] / /38 /3 /3 /3 / P [kw] Q [m³/h] /8 /37 /3 / Eta [%] Q [m³/h] /3 Eta [%] Q [m³/h] /37 /3 /3 / / / /8 /3 / NPSH 1 3 Q [m³/h] /3 / 7 8 Q [m³/h] NPSH 9 8 /3 3 1 /3 /3 /38 / 1 3 Q [m³/h] 7 1 Q [l/s] TM /37 / 7 8 Q [m³/h] 1 Q [l/s] TM 9738

106 MAXA L MAXA L TM 93 3, -pole Pump size P [kw] IEC size (1) k 3 a 1 f 3 h p 3 p p () DNs () DN d p u (1) w 1 h 1 m 1 m n 1 n h 9 s 1 Net weight [kg] 11. 1M M L M M L ( (). 18M ) L L L L L M L (1) (1) L (1) Motor dimensions depend on make; motor dimensions show maximum size. () Flange dimensions are according to DIN EN 9-1 (DIN 3). Nominal diameters in parenthesis are available on request. 7

107 MAXA L * This drawing applies to pump size 8-1, only. For pump sizes 8- to 1-, see previous page. TM3 1, -pole Pump size 8-1* P [kw] IEC size k (1) 3 a 1 f 3 h p 3 p p DNs () DN () d p u (1) w 1 h 1 m 1 m n 1 n h 9 s 1 Net weight [kg] 3. L M S M S M M ( (). 13S ) M M L M L S M S 13M (1) (1) M L M M L () (1) M L (1) Motor dimensions depend on make; motor dimensions show maximum size. () Flange dimensions are according to DIN EN 9-1 (DIN 3). (3) Nominal diameter in parenthesis are available on request. () Pumps fitted with motors of IEC size and 11 are supported with pump foot and motor foot; from IEC size 13 pumps are fitted with motor foot, only. 8

108 MAXA CN MAXA CN TM 9 3, -pole Pump size P [kw] IEC size k 3 (1) l E (7) f 1 a 1 h 1 h h 7 d d DNs () () DN d a l 1 l l 3 b 1 b b 3 d plate Base size 11. 1M M L M L M L M L ( () 37. L ) M L L M M S M L M L L M M S (1) (1) L L M M S M Net weight [kg] 9

109 MAXA CN, -pole Pump size P [kw] IEC size k 3 (1) l E (7) f 1 a 1 h 1 h h 7 d d DNs () () DN d a l 1 l l 3 b 1 b b 3 d plate Base size 3. L M L L M S M S ( M () 1) M S M M L M L L M S M M (1) (1) S M M L M M L M M 1L () 1 (1) M L L S Net weight [kg] To be continued on the next page. 1

110 MAXA CN Continued from previous page Pump size P [kw] IEC size k 3 (1) l E (7) f 1 a 1 h 1 h h 7 d d DNs () () DN d a l 1 l l 3 b 1 b b 3 d plate Base size 11. 1M L M L L L M L L S M M L () S M M S M L S M M S M Net weight [kg] (1) Motor dimensions depend on make; motor dimensions show maximum size. () Flange dimensions are according to DIN EN 9-1 (DIN 3). (3) Nominal diameter in parenthesis are available on request. (7) Coupling of our choice. Larger motors, threaded pipe connections and special flanges are available on request. 111

111 Performance curves MAXANA MAXANA 3-1 -pole MAXANA 3-1 -pole H 3 MAXANA 3-1 H MAXANA /18 /17 /1 /1 /1 3 1 /1 /17 /1 /1 /18 P [kw] 3 1 Eta [%] Q [m³/h] /18 /17 /1 /1 / Q [m³/h] /18 /1 /17 /1 /1 P [kw] Eta [%] Q [m³/h] /1 /17 /1 /1 / Q [m³/h] /17 /1 /1 /1 /18 NPSH Q [m³/h] 8 /17 /1 /18 /1 / Q [m³/h] 8 Q [l/s] TM 999 NPSH Q [m³/h] 3 /18 1 /1 /1 /1 / Q [m³/h] 1 3 Q [l/s] TM 97 11

112 Performance curves MAXANA MAXANA 3- -pole MAXANA 3- -pole H 7 MAXANA 3- H 1 MAXANA 3-1 / 1 / / /19 8 /18 /17 / /19 /17 /18 / / P [kw] Q [m³/h] / / / /19 /18 /17 P [kw] Q [m³/h] /18 /17 /19 / / /. Eta [%] Q [m³/h] / / / /19 /18 /17 NPSH 1 3 Q [m³/h] 8 /18 /19 / / /. Eta [%] Q [m³/h] NPSH Q [m³/h] / /17 /19 /18 /19 / / / / / Q [m³/h] 8 Q [l/s] TM /17 / / Q [m³/h] 8 Q [l/s] TM

113 Performance curves MAXANA MAXANA -1 -pole MAXANA -1 -pole H 3 MAXANA -1 H MAXANA -1 1 /18 /17 /1 /1 /1 3 /1 /1 /17 /18 /1 1 P [kw] Q [m³/h] /18 /17 /1 /1 /1 P [kw] Q [m³/h] /1 /17 /1 /1 /18 Eta [%] Q [m³/h] /1 /1. Eta [%] Q [m³/h] /1 /17 /18 /1 /1 /1 /17 /18 NPSH 1 3 Q [m³/h] 3 NPSH Q [m³/h] 8 /18 /1 /17 /1 3 /1 /17 /1 /1 /18 / Q [m³/h] 8 1 Q [l/s] TM Q [m³/h] 8 Q [l/s] TM

114 Performance curves MAXANA MAXANA - -pole H P [kw] Eta [%] 3 MAXANA - / / / /19 /18 / Q [m³/h] / / / /19 /18 / Q [m³/h] /17 /18 /19 / / / NPSH 1 3 Q [m³/h] MAXANA - -pole H P [kw] Eta [%] 3 MAXANA - / / / /18 /19 / Q [m³/h] /18 /17 / / / / Q [m³/h] /18 /17 / / / /19 NPSH Q [m³/h] 8 / / / 8 / / /19 /18 /17 / /19 /18 / Q [m³/h] Q [l/s] TM Q [m³/h] 8 Q [l/s] TM

115 Performance curves MAXANA MAXANA -1 -pole MAXANA -1 -pole H MAXANA -1 H 7 MAXANA -1 1 /11 /1 /1 / /11 /1 /13 /1 P [kw] Q [m³/h] /11 /1 /1 /13 P [kw] Q [m³/h] /11 /1 /13 /1 Eta [%] 7 7 Q [m³/h] /11 /1 /1 /13 NPSH 7 Q [m³/h] 8 /11 /1 /1 /13 7 Q [m³/h] 1 Q [l/s] TM 973. Eta [%] Q [m³/h] /11 /1 /13 /1 NPSH 1 3 Q [m³/h] /11 /13 /1 /1 1 3 Q [m³/h] 8 Q [l/s] TM

116 Performance curves MAXANA MAXANA -1 -pole MAXANA -1 -pole H 3 1 P [kw] 8 Eta [%] 7 MAXANA -1 /18 /17 /1 /1 /1 7 Q [m³/h] /18 /17 /1 /1 /1 7 Q [m³/h] /1 /17 /1 /1 /18 NPSH 7 Q [m³/h] 8 /1 /17 /18 /1 H P [kw] Eta [%] 7 3 MAXANA -1 /1 /1 /1 /17 / Q [m³/h] /1 /1 /1 /17 / Q [m³/h] /1 /1 /1 /17 / Q [m³/h] Q [l/s] /1 7 Q [m³/h] 1 Q [l/s] TM 97 TM

117 Performance curves MAXANA MAXANA - -pole MAXANA - -pole H 7 MAXANA - H 18 1 MAXANA - 1 / / / 1 8 / /19 /18 /17 /17 /18 / / /19 P [kw] Q [m³/h] / / / /19 /18 /17 P [kw] Q [m³/h] /17 /18 / /19 / / Eta [%] Q [m³/h] /. Eta [%] Q [m³/h] / / / /19 /18 /17 NPSH 7 8 Q [m³/h] / /19 / /17 3 /18 NPSH Q [m³/h] 8 /17 8 / /18 /19 / / 7 8 Q [m³/h] 1 Q [l/s] TM 97 /19 /18 / / / /17 Q [m³/h] 1 Q [l/s] TM

118 Performance curves MAXANA MAXANA -1 -pole H MAXANA -1 1 /1 P [kw] 8 Q [m³/h] 8 /1 Eta [%] 8 Q [m³/h] 3 /1 NPSH 8 Q [m³/h] 8 /1 8 Q [m³/h] Q [l/s] TM

119 Performance curves MAXANA MAXANA -1 -pole H 3 1 P [kw] Eta [%] 3 MAXANA -1 /1 /18 /17 /1 /1 8 Q [m³/h] /1 /18 /17 /1 /1 8 Q [m³/h] /1 /1 /18 /17 /1 NPSH 8 Q [m³/h] MAXANA -1 -pole H P [kw] Eta [%] 3 MAXANA -1 /18 /1 /1 /1 /17 7 Q [m³/h] /1 /1 /1 /18 /17 7 Q [m³/h] /1 /18 /1 /1 /17 NPSH 7 Q [m³/h] 8 /18 /17 /1 /1 /1 3 /17 8 Q [m³/h] Q [l/s] TM /18 /1 /1 /1 7 Q [m³/h] 1 Q [l/s] TM

120 Performance curves MAXANA MAXANA - -pole MAXANA - -pole H 7 MAXANA - H MAXANA - 1 /17 / / / /19 /18 8 / / /19 / /17 /18 P [kw] Q [m³/h] /17 / / / /18 /19 P [kw] Q [m³/h] /17 /19 /18 / / / Eta [%] Q [m³/h] / / / /19 /18 /17 NPSH 8 1 Q [m³/h] Eta [%] Q [m³/h] / /17 / /18 /19 / NPSH Q [m³/h] /17 /18 / /19 / / 8 1 Q [m³/h] Q [l/s] TM 978 /17 /18 /19 / / / Q [m³/h] 1 Q [l/s] TM

121 Performance curves MAXANA MAXANA - MAXANA - -pole -pole H MAXANA - /8 H 18 1 MAXANA - / 1 / / / 1 8 / / / / /8 P [kw] Q [m³/h] /8 / / / / P [kw] Q [m³/h] / / / / /8 Eta [%] Q [m³/h] / /8 / / / NPSH Q [m³/h] 7 / Eta [%] Q [m³/h] / / /8 / / Q [m³/h] NPSH / /8 / / / 3 / / / / Q [m³/h] Q [l/s] TM Q [m³/h] 1 Q [l/s] TM

122 MAXANA Adapta MAXANA Adapta on stainless steel foot TM 9 3 Pump size P [kw] IEC size k 3 u (1) a 1 h p () b DN s () 3. L M S DN d () Net weight [kg] 3. L M () () 8. 13S S M M M S S M () S M M L M (8) S S S 13S () M M M M M S S S S () (8) M M M M Dimensions depend on housing size (DN s, DN d, a 1, h ). See table of connections, page 7. (1) Motor dimensions depend on make; motor dimensions show maximum size. () Flange dimensions are according to DIN EN 9-1 (DIN 3). Nominal diameter in parenthesis are available on request. () Largest diameter of pump without motor. (7) N-Eupex coupling. 13

123 MAXANA Adapta MAXANA Adapta on Adapta foot 39 TM3 183 Pump size - P [kw] n [min -1 ] IEC size b k (1) 3 u (1) M L L -. 9 L L 3. 9 M 7 3 (1) Motor dimensions depend on make; motor dimensions show maximum size. () Other sizes and special connections are available on request. (7) N-Eupex coupling. 1

124 MAXANA Bloc MAXANA Bloc on pump and motor foot TM3 1, -pole Pump size P [kw] IEC size k 3 (1) u (1) a 1 h 1 h p () m 1 m n 1 n b DNs (). 9L L M M () () 9 3. L M M M M () L 11M (8). 11M () M M M () (8) M DN d () Net weight [kg] (1) Motor dimensions depend on make; motor dimensions show maximum size. () Other sizes and special connections are available on request. () Largest diameter of pump without motor. 1

125 MAXANA Bloc, -pole Pump size P [kw] IEC size k 3 (1) u (1) a 1 h 1 h p () m 1 m n 1 n b DNs () S S () () S L S S L () S L L S (8) () S S L L L (). L L M S S S S L L L () (8) L L L M M DN d () Net weight [kg] Dimensions depend on housing size (DN s, DN d, a 1, h ). See table of connections, page 7. (1) Motor dimensions depend on make; motor dimensions show maximum size. () Flange dimensions are according to DIN EN 9-1 (DIN 3). Nominal diameter in parenthesis are available on request. () Largest diameter of pump without motor. 1

126 MAXANA Bloc MAXANA Bloc on motor foot TM3 1 Pump size P [kw] IEC size a 1 h 1 h p m1 m n 1 n h 9 s 1 DNs () 7. 13S S () () M S S S 13S () M L S S (8) S M L () S M L L S S S M L L () (8) S M L L DN d () Net weight [kg] Dimensions depend on housing size (DN s, DN d, a 1, h ). See table of connections, page 7. (1) Motor dimensions depend on make; motor dimensions show maximum size. () Flange dimensions are according to DIN EN 9-1 (DIN 3). Nominal diameter in parenthesis are available on request. () Largest diameter of pump without motor. 17

127 Further product documentation Sanitary pumps WebCAPS WebCAPS is a Web-based Computer Aided Product Selection program available on WebCAPS contains detailed information on more than 18, Grundfos products in more than languages. In WebCAPS, all information is divided into sections: Catalogue Literature Service Sizing Replacement CAD drawings. Catalogue This section is based on fields of application and pump types, and contains technical data curves (QH, Eta, P1, P, etc) which can be adapted to the density and viscosity of the pumped liquid and show the number of pumps in operation product photos dimensional drawings wiring diagrams quotation texts, etc. Literature In this section you can access all the latest documents of a given pump, such as data booklets installation and operating instructions service documentation, such as Service kit catalogue and Service kit instructions quick guides product brochures, etc. Service This section contains an easy-to-use interactive service catalogue. Here you can find and identify service parts of both existing and discontinued Grundfos pumps. Furthermore, this section contains service videos showing you how to replace service parts. 18

128 1 Further product documentation Sanitary pumps Sizing This section is based on different fields of application and installation examples, and gives easy step-by-step instructions in how to select the most suitable and efficient pump for your installation carry out advanced calculations based on energy consumption, payback periods, load profiles, life cycle costs, etc. analyse your selected pump via the built-in life cycle cost tool determine the flow velocity in wastewater applications, etc. Replacement In this section you find a guide to selecting and comparing replacement data of an installed pump in order to replace the pump with a more efficient Grundfos pump. The section contains replacement data of a wide range of pumps produced by other manufacturers than Grundfos. Based on an easy step-by-step guide, you can compare Grundfos pumps with the one you have installed on your site. When you have specified the installed pump, the guide will suggest a number of Grundfos pumps which can improve both comfort and efficiency. CAD drawings In this section it is possible to download -dimensional (D) and 3- dimensional (3D) CAD drawings of most Grundfos pumps. These formats are available in WebCAPS: -dimensional drawings:.dxf, wireframe drawings.dwg, wireframe drawings. 3-dimensional drawings:.dwg, wireframe drawings (without surfaces).stp, solid drawings (with surfaces).eprt, E-drawings. 19

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