Catalog. Low voltage Water cooled motors

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1 Catalog Low voltage Water cooled motors

2 We provide motors and generators, services and expertise to save energy and improve customers processes over the total lifecycle of our products, and beyond. 2 Low voltage water cooled motors EN ABB Motors and Generators

3 Low voltage Water cooled motors Sizes 280 to General information Mechanical design Ordering information Technical data Variant codes Dimension drawings Rating plates Water cooled motors in brief ABB Motors total product offer Visit to our web site ABB Motors and Generators Low voltage water cooled motors EN

4 General information The motor range represents a new generation of water cooled motors developed in response to market demands for improved technical features. The range is available in IEC frame sizes 280 to 450. Water cooling is a very efficient method of transferring heat away from the motor, and water cooled motors provide high output power per unit of weight. Cooling efficiency is maintained throughout the speed range, which is especially important in constant torque applications. These advantages make the motors ideal for a range of uses, including marine applications, water and waste water pumping, printing machines, and wind turbine generators. The basic structure of the motors is optimized for variable speed use. International motor efficiency standards Since the validation of the standard IEC/EN , a worldwide energy efficiency classification system exists for low voltage three-phase asynchronous motors. This system increases the level of harmonization in efficiency regulations around the world. International Electrotechnical Commission (IEC) standard IEC/EN :2008 defines energyefficiency (IE code) classes for single speed, three-phase, 50 and 60 Hz induction motors. The standard is part of an effort to unify motor testing procedures and efficiency and product labeling requirements to enable motor purchasers worldwide to easily recognize premium efficiency products. The efficiency levels defined in IEC/EN are based on test methods specified in IEC/EN :2007. To promote transparency in the market, IEC states that both the efficiency class and efficiency value must be shown on the motor rating plate and in product documentation. The documentation must clearly indicate the efficiency testing method used as the different methods can produce differing results. All water cooled motors fulfill IE2 efficiency class. ABB determines efficiency values according to IEC/EN using the low uncertainty method i.e. indirect method, with additional load losses determined by measurement. IEC/EN :2008 IEC/EN :2008 defines three International Efficiency (IE) classes for single speed, three-phase, cage induction motors. IE1 = Standard efficiency (EFF2 in the former European classification scheme) IE2 = High efficiency (EFF1 in the former European classification scheme and identical to EPAct in the USA for 60 Hz) IE3 = Premium efficiency (identical to "NEMA Premium" in the USA for 60 Hz) IE4 = Super premium, according to IEC/TS Efficiency levels defined in IEC/EN are based on test methods specified in IEC/EN :2007. Compared to the former European efficiency classes defined by the CEMEP agreement the scope has been expanded. IEC/EN covers almost all motors (for example standard, hazardous area, marine, brake motors) Single speed, three-phase, 50 Hz and 60 Hz 2-, 4- or 6-pole Rated output from 0.75 to 375 kw Rated voltage UN up to 1000 V Duty type S1 (continuous duty) or S3 (intermittent periodic duty) with a rated cyclic duration factor of 80 % or higher Capable of operating direct online The following motors are excluded from IEC : Motors made solely for converter operation Motors completely integrated into a machine (for example, pump, fan or compressor) that cannot be tested separately from the machine 4 Low voltage water cooled motors EN ABB Motors and Generators

5 Minimum efficiency values defined in IEC :2008 standard (based on test methods specified in IEC :2007) Output IE Standard efficiency IE2 High efficiency IE3 Premium efficiency kw 2 pole 4 pole 6 pole 2 pole 4 pole 6 pole 2 pole 4 pole 6 pole ABB Motors and Generators Low voltage water cooled motors EN

6 Cooling designation IC 7 1 W Code letters Circuit arrangement Integral heat exchanger (using remote medium), Table 1 Movement primary coolant, Table 2 Secondary coolant, Table 3 Table 1. Circuit arrangement Characteristic numeral Brief description Definition 7 (see note 2) Integral heat exchanger (using remote medium) The primary coolant is circulated in a closed circuit and gives its heat via a heat exchanger, which is built into and forms an integral part of the machine, to the secondary coolant which is the remote medium. Note 2. The nature of the heat exchanger is not specified (ribbed or plain tubes, etc.). Table 2. Method of movement (Movement primary coolant) Characteristic numeral Brief description Definition 1 Self-circulation The coolant is moved dependent on the rotational speed of the main machine, either by action of the rotor alone or by means of a component designed for this purpose and mounted directly on the rotor of the main machine, or by a fan or pump unit mechanically driven by the rotor or the main machine. Table 3. Coolant (Secondary coolant) Characteristic letter W Coolant Water 6 Low voltage water cooled motors EN ABB Motors and Generators

7 Optimized for variable speed applications The basic structure of the M3LP water cooled motors is as standard optimized for variable speed applications. The basic selection rules below should be considered, please refer to product catalogue for Process performance motors for details Temperature rise class B Temperature rise class F Motor loadability with ACS 800 frequency converter The curves in figure 1 are guidelines (not guaranteed values) for standard ACS 800 drives with DTC-control. These guidelines present the maximum continuous load torque of a motor as function of frequency (speed) to give the same temperature rise as with rated sinusoidal supply at nominal frequency and full rated load Figure 1. Motor loadability with ACS 800, field weakening point 50Hz. Insulation protection The increased voltage stresses of winding insulation in variable speed drive should be considered, therefore the precautions described in the table below must be taken to avoid risks of insulation damage. Bearing currents To avoid bearing currents all water cooled motors in variable speed drive must be equipped with insulated bearing at N-end. Framesize , 450 U N 500V Standard motor Common mode filter U N 600V du/dt filter (reactor) OR Reinforced insulation du/dt filter (reactor) and common mode filter OR Reinforced insulation and Common mode filter U N 690V Reinforced insulation Reinforced insulation, du/dt filer And du/dt filter (reactor) and Common mode filter ABB Motors and Generators Low voltage water cooled motors EN

8 Mechanical design Stator The frame material differs depending on the size of the motor. Frame sizes 280 and 315 are of casted aluminum with stainless steel water tubes inside the frame. These frames have also modular feet structure (steel). Frame sizes 355 to 450 are provided with integrated feet, both the frame and feet made of steel. Bearing housing and terminal box are of cast iron. Motors can be supplied for foot mounting, flange mounting and combinations of these. Degree of protection is IP 55 as standard, higher degree of protection, IP 56, is available as option. Motors from frame size 280 up to 315 ML are without bearing fan as standard, except motor types M3LP 315 ML 2-pole. Frame sizes 315KH and 355 are fitted with bearing fans at both non-drive and drive ends. Motors in frame sizes 400 and 450 are fitted with a bearing fan, which is mounted on the non-drive end. Drain holes Motors are supplied with drain holes and closable plugs as standard to avoid water from gathering in the windings. Cooling channel The motors in frame sizes 355 to 450 are equipped with emptying plug in the lowest position and air plug in the highest position at the channel. Due to the cooling channel construction no emptying or air plugs are needed for frame sizes Water inlet R1 Water outlet R1 Drain hole Closed Airplug of the water channel Emptying plug of the water channel Open Open Drain hole M Emptying plug and air plug for sizes 355 to Low voltage water cooled motors EN ABB Motors and Generators

9 Cooling water requirements Requirements for cooling water in motor sizes Water with a proportion of chloride up to 3000 mg/l can be used if the ingress of oxygen into cooling water is prevented and the cooling water temperature does not exceed 30 C. The highest allowed pressure for cooling water is 5 bar. Requirements for cooling water in motor sizes Cooling water must be tap water quality. Sea water or water with a proportion of chloride above 120 mg/l should not be used. The highest allowed pressure for cooling water is 5 bar, with a recommended maximum input water temperature of 40 C. Steel frame water-cooled construction is only to be used with a closed fresh water circulation. The cooling water circulates in ducts integrated in the machine frame. The material of the frame and ducts is carbon steel according to the standard EN S235JR. This material is prone to corrosion in saline and foul water. The corrosion products and fouling deposits might block the water flow in the ducts. This is why it is important to use pure water in the cooling system. Standard values for the cooling water to be used in the cooling system: ph Alkalinity (CaCO3) > 1 mmol/l Chloride (Cl) < 120 mg/l Conductivity < 1500 μs/cm In most cases, normal tap water, i.e. water for domestic consumption, meets all these requirements. The cooling water can also be inhibited with an agent protecting the cooling system against corrosion, fouling and, when necessary, against freezing. All materials in contact with the cooling water (pipes, heat exchanger, etc.) must be taken into account when selecting a suitable inhibitor. The outlet water temperature rise is from 7 15 K. The minimum pressure and amount of cooling water for the basic construction of a water cooled motor is shown in the following table. Motor type M3LP Frame type Number of inlets Cooling water fl ow rate (l/min) Water pressure min. (bar) Water temperature rise (K) 280 SM_ ML_ LK_ L_ L_ ABB Motors and Generators Low voltage water cooled motors EN

10 Terminal box standard delivery The terminal box in the frame sizes 280 to 355 is mounted on the top of the motor. The terminal boxes in the frame sizes 400 and 450 are mounted in the 45 angle on the motor, either on right or left hand side of the motor, to be defined when ordering. Terminal box sizes 210, 370 & 750 can be turned 4x90 and terminal box size 1200 can be turned 2x180. Degree of protection of standard terminal box is IP 55. To ensure that suitable terminations for the motor can be supplied, please state the cable type, quantity and size when ordering. Non-standard terminal box designs - e.g. non-standard size or degree of protection - are available as options. The terminations are suitable for Cu- and Al-cables. The cables are connected to the terminals using cable lugs (not included with the motor). Please see variant code pages for options. The terminal box is equipped with a steel flange for protection during transport. There are no cable glands or cable boxes as standard, but these are available as option. Please see variant code section table below for exact availability. Standard delivery 400/690 V Single core cross-section Motor size Pole number Terminal box type Terminal box opening mm 2 for rated power Terminal bolt size 6 x 280SMA, SMB C 2x150 M12 280SMC D 2x240 M12 280SMC 4, C 2x150 M12 280SMD D 2x240 M12 315KH E 4x240 M12 315KH D 2x240 M12 315MA, MB, MC D 2x240 M12 315MLA, MLB E 4x240 M12 315MLA, MLB D 2x240 M E 4x240 M12 355MLC, LK E 4x240 M12 355MLA, MLB D 2x240 M E 6x240 M12 400LA, LB E 4x240 M12 400LC, LD E 6x240 M12 400LC E 4x240 M E 6x240 M12 450LA, LB E 4x240 M12 Terminal bolt size M12 Earthing bolt size on stator frame M10 10 Low voltage water cooled motors EN ABB Motors and Generators

11 Examples of terminal boxes and connection parts below pictures show a collection of terminal boxes and connection parts. Terminal box 370 outside Terminal box 750 outside M M M Terminal box 370 inside Terminal box 750 inside M M M Terminal box 370 from D-end Terminal box 750 from D-end M M M Terminal box 1200 outside Terminal box 1200 inside Terminal box 1200 from D-end ABB Motors and Generators Low voltage water cooled motors EN

12 Terminal box alternatives Optional adapters There is a broad selection of cable termination accessories available to allow termination of one or several cables. The most common ones are explained below, for other options please contact ABB. M Motor frame sizes 355 to 450 with main terminal box How to order? Check first that the teminal box can allow mounting of the cable and cores (refer to motor type and terminal box type cross reference page 18). If very large cables are used it might be necessary to use a larger terminal box than standard. Select the right cable gland(s) or cable sealing end unit(s) depending on outer diamater of the cable(s). Select appropriate adapter and flange and gland(s) or cable sealing end unit. Note that turning the terminal box to a non-standard position might limit the use of some adapters. Ordering example Motor 500 kw, 4-pole, 400 V, 50 Hz, B3 Cables 2 pieces, outer diameter 72 mm, singel core cross section 200 mm 2 clamping device needed, cable coming from below Needed one terminal box for anticondensation heaters 240 V and another for PT100's in winding, one per phase 3-wire, material cast iron Motor M3LP 355MLE 4 B3 Adapter E-D, variant code 294 Cable sealing end unit Variant code 278 Clamping Variant code 231 Auxiliaries Variant codes 380, 451, 502, 567, 568 Main terminal box and maximum single core cross section Only one size larger terminal box can be selected. Please check also the capacity of the cable entry, to make sure that the cables fit. One size larger terminal box can be selected if larger single cross section is needed Standard terminal box Size of opening Max single cross section per phase mm 2 Variant code 019 larger terminal box than standard Size of opening with Variant code 019 Max single cross section per phase mm C 2 x D 2 x D 2 x E 4 x E 4 x E 4 x E 4 x 500 NA NA NA 12 Low voltage water cooled motors EN ABB Motors and Generators

13 Optional adapters To allow easy termination of cables entering the terminal box from above or below is it recommended to use an angle adapter. These can also be used to allow mounting of several cable sealing end units or gland plates. Adapter Variant code Opening towards terminal box Flange or opening for cable sealing end unit Material Notes 292 C C Steel M M D D Steel 294 E D Steel M M E 2 pcs D Steel 296 E 3 pcs D Steel Only possible on terminal box 1200 M M E 2 pcs E Steel Only possible on terminal box 1200 Flange, maxium size of glands and material Flanges are delivered blind or can be drilled and tapped to accomodate glands to suit the cable diameter and amount of glands needed. Standard flange material is siluminum with terminal boxes up to size 370. From size 750 upwards flanges are painted mild steel. Stainless steel flanges are available as options. Examples of maximum size and Size number of glands, metric C 2xM90 3xM50 7xM32 D 4xM90 4xM63 7xM50 E 6xM90 7xM63 9xM50 Related variant codes 729 Aluminum non-drilled flange for cable glands 730 Prepared for NPT cable glands 743 Painted non-drilled flange in steel for cable glands 744 Stainless steel non-drilled flange for cable glands 745 Painted steel flange equipped with brass cable glands 746 Stainless steel cable flange equipped with standard brass cable glands ABB Motors and Generators Low voltage water cooled motors EN

14 Cable glands and cable sealing end units Cable glands Table below shows the selection of cable gland types and possible cable outer diameter for each size. Cable gland type Outer diameter, mm Variant code 745; Painted steel flange equipped withbrass cable glands Variant code 231; Standard cable glands with clamping device Variant code 704; EMC cable gland M M M M M M M NA NA M NA NA For armoured and NPT cable glands please contact ABB. Cable sealing end unit As an alternative to flanges and cable glands, cable sealing end-units can be used. These allow more space for spreading the cores for easy terminating. Cable sealing end units have rubber sealed entries for one or two main cables. In addition there are two M20 plugged holes for auxillary cables. M Variant code Opening towards terminal box Cable outer diameter mm Cable entry auxiliary cable Accessories Variant code 704; EMC cable gland Variant code 231; Standard cable gland with clamping device M C 1 or 2 pcs mm *) 2 pcs M20 plugged holes Optional Optional M D 1 or 2 pcs mm *) 2 pcs M20 plugged holes Optional Optional M D 1 or 2 pcs mm *) 2 pcs M20 plugged holes Optional Optional *) The cable seal inside the cable sealing end unit can be used so that it is suitable for cable diameters 40-52mm. 14 Low voltage water cooled motors EN ABB Motors and Generators

15 Auxiliary terminal box It s possible to equip the motors from frame size 160 upwards with one or several auxillary terminal boxes for connection of auxillaries like heaters or temperature detectors. By using variant code 418 auxiliary terminal box in aluminum is provided. Cast iron auxiliary terminal box can be ordered with variant code 567. Both are equipped with M20 glands for entry of the connection cables. Connection terminals are spring loaded type for quick and easy connection. These are suitable for up to 2,5mm 2 wires. Auxillary terminal boxes are equipped with an earthing terminal. The first auxiliary terminal box is as standard located a RHS at D-end. Related variant codes: 380 Separate terminal box for temperature detectors, standard material 418 Separate terminal box for auxiliaries, standard material 567 Separate terminal box material: cast iron 568 Separate terminal box for heating elements, standard material 569 Separate terminal box for brake Small, aluminum auxiliary terminal box (80 x 125 mm, max 12 strips). Earthing size M4 Large, aluminum auxiliary terminal box (80 x 250 mm, max 30 strips) Earthing M4 Cast iron auxiliary terminal box (211 x 188 mm, max 30 strips) Earthing M6 M M M Standard cable entry size M20. Number of entries depends on the terminal box type and number of selected auxiliaries. ABB Motors and Generators Low voltage water cooled motors EN

16 Dimension drawings Terminal boxes, standard design with 6 terminal M Dimensions for terminal box inlets Inlet c e f g d C M8 D M10 E M12 Motor sizes Top- and side-mounted Terminal boxes 210, 370 Motor sizes Top-mounted Terminal box adapter Motor size 450 Top-mounted Terminal box 1200 M M M Motor sizes Terminal box type A1 B1 H top-mounted side-mounted Low voltage water cooled motors EN ABB Motors and Generators

17 Bearings The motors are normally fitted with single-row deep groove ball bearings as listed in the table below. SPM-nipples for bearing vibration monitoring are delivered as standard both at N- and D-end. If the bearing at the D-end is replaced with a roller bearing (NU), higher radial forces can be handled. Roller bearings are suitable for belt drive applications. Basic version with deep groove ball bearings Deep groove ball bearings Motor size Number of poles D-end N-end /C3 6316/C /C3 6316/C /C3 6316/C /C3 6316/C /C3 6319/C M/C3 6322/C3 When there are high axial forces e.g. in vertical position, angular contact ball bearings should be used, and direction of forces shall be informed. This option is available on request. When a motor with angular contact ball bearings is ordered, the method of mounting and direction and magnitude of the axial force must be specified. For special bearings, please see the variant codes. Version with roller bearings, variant code 037 Roller bearing variant code 037 Motor size Number of poles D-end NU316/C NU319/C NU322/C NU324/C NU326/C3 On request Axially-locked bearings All motors are equipped as standard with an axially- locked bearing at the D-end. Transport locking Motors that have roller bearings or angular contact ball bearing are fitted with a transport or angular contact ball bearings are lock before despatch to prevent damage to the bearings during transport. In case of transport locked bearing, motors are provided with a warning sign. Locking may also be fitted in other cases where transport conditions are suspected of being potentially damaging. Bearing seals The size and type of seals are in accordance with the table below: Motor size Number of poles D-end N-end Labyrinth seal Enclosed Axial seal VS80 Enclosed 315 ML, KH 2 Labyrinth seal Labyrinth seal 315 M_ 4-8 Axial seal VS95 Enclosed 315 KH 4-8 Labyrinth seal Labyrinth seal Labyrinth seal Labyrinth seal Labyrinth seal Labyrinth seal Labyrinth seal Labyrinth seal Labyrinth seal M Bearing life The nominal life L10 of a bearing is defined according to ISO 281 as the number of operating hours achieved or exceeded by 90% of identical bearings in a large test series under certain specified conditions. 50% of the bearings achieve at least five times this figure. The calculated bearing life L10 for power transmission by means of a coupling (horizontal machine) is 200,000 hours. Corresponding life L10 for vertical machine in V1 position is hours. Other values on request. ABB Motors and Generators Low voltage water cooled motors EN

18 Lubrication On delivery, the motors are ready lubricated with high quality grease. The recommended grease used can be seen from ABB s Low Voltage Motors Manual delivered together with the motor or from the lubrication plate fastened to the motor frame. See example of lubrication plate on page 26. All motors are equipped with relubrication nipples. The bearing system has been built so that a valve disc can be used to ease the lubrication. Motors are lubricated while running. Grease outlet opening has closing valves at both ends. This should be opened before greasing and closed 1-2 hours after regreasing. After lubrication close the valves. This ensures that the construction is tight and dust or dirt cannot get inside the bearing. As an option, a grease collection method can be used. Lubrication intervals ABB follows the L1-principle in defining lubrication interval. That means that 99% of the motors are sure to make the interval time. The lubrication intervals can also be calculated according to the L10-principle, which are normally doubled compared to L1-values. Values available from ABB at request. The table below gives lubrication intervals according to the L1-principle for different speeds. The values are valid for horizontal mounted motors (B3), with about 80 C bearing temperature and using high quality grease with lithium complex soap and mineral or PAO-oil. For more information, see ABB's Low voltage motors manual and the additional manual for Low voltage water cooled motors. Frame size Amount of 3600 r/min 3000 r/min 1800 r/min 1500 r/min 1000 r/min r/min grease g Ball bearings: lubrication intervals in duty hours Frame Amount size of r/min r/min r/min r/min r/min r/min grease g Roller bearings: lubrication intervals in duty hours Pulley diameter When the desired bearing life has been determined, the minimum permissible pulley diameter can be calculated using F R, as follows: D = K P n F R where: D = P = n = K = F R = diameter of pulley, mm power requirement, kw motor speed, r/min belt tension factor, dependent on belt type and type of duty. A common value for V-belts is 2.5. permissible radial force 18 Low voltage water cooled motors EN ABB Motors and Generators

19 Permissible loadings on shaft The tables give the permissible radial force in Newtons, assuming zero axial force. The values are based on normal conditions at 50 Hz and calculated bearing lives of 20,000 and 40,000 hours. Motors are foot-mounted IM B3 version with force directed sideways. In some cases the strength of the shaft affects the permissible forces. If the radial force is applied between points X0 and Xmax, the permissible force FR can be calculated from the following formula: F R = F X0 - X (F E X0 - F Xmax ) E = length of shaft extension in basic version F R X At 60 Hz the values must be reduced by 10%. Permissible loads of simultaneous radial and axial forces will be supplied on request. F X max F X 0 M Permissible radial forces Length of shaft Ball bearings Roller bearings Motor size Poles extension E (mm) 20,000 hours F X0 (N) F Xmax (N) 40,000 hours F X0 (N) F Xmax (N) 20,000 hours F X0 (N) F Xmax (N) 40,000 hours F X0 (N) F Xmax (N) 280 SM_ M_ KH_ ML_ LK L_ L_ ABB Motors and Generators Low voltage water cooled motors EN

20 Permissible axial forces The following tables give the permissible axial forces in Newton, assuming zero radial force. The values are based on normal conditions at 50 Hz with standard bearings and calculated bearing lives of 20,000 and 40,000 hours. At 60 Hz the values are to be reduced by 10%. The permissible loads of simultaneous radial and axial forces will be supplied on request. Given axial forces FAD, assumes D-bearing locked by means of locking ring. Mounting arrangement IM B3 20,000 hours 40,000 hours 2-pole 4-pole 6-pole 8-pole 2-pole 4-pole 6-pole 8-pole Motor F AD F AZ F AD F AZ F AD F AZ F AD F AZ F AD F AZ F AD F AZ F AD F AZ F AD F AZ size (N) (N) (N) (N) (N) (N) (N) (N) (N) (N) (N) (N) (N) (N) (N) (N) 280 SM ML KH_ ML_ LK_ L_ L_ F AD è çf AZ M é Mounting arrangement IM V1 F AD 20,000 hours 40,000 hours 2-pole 4-pole 6-pole 8-pole 2-pole 4-pole 6-pole 8-pole Motor F AD F AZ F AD F AZ F AD F AZ F AD F AZ F AD F AZ F AD F AZ F AD F AZ F AD F AZ size (N) (N) (N) (N) (N) (N) (N) (N) (N) (N) (N) (N) (N) (N) (N) (N) 280 SM ML KH_ ML_ LK_ L_ L_ On request F AZ ê M Low voltage water cooled motors EN ABB Motors and Generators

21 Ordering information When placing an order, please state the following minimum data in the order, as in example. The product code of the motor is composed in accordance with the following example. Motor type Pole number Mounting arrangement (IM code) Rated output Product code Variant codes if needed M3LP 450L 6 IM B3 (IM kw 3GLP RDG Explanation of the product code A B C D E F G A = Motor type M3LP 450 L 3GLP R D G 003 etc The product code must be, if needed, followed by variant codes. B = Motor size C = Product code D = Mounting arrangement code E = Voltage and frequency code F = Generation code G = Variant codes Positions 1 to 4 3GLP = Totally enclosed water cooled squirrel cage motor with steel frame Positions 5 and 6 IEC-frame 28 = = = = = 450 Position 7 Speed (Pole pairs) 2 = 4 poles 3 = 6 poles 4 = 8 poles Position 8 to 10 Serial number Position 11 - (dash) Position 12 Mounting arrangement Frame size A = Foot-mounted, top-mounted terminal box B = Flange-mounted, large flange Frame sizes R = Foot-mounted, terminal box RHS seen from D-end. Please note that the motor with mounting code R means that the terminal box is on right hand seen from D-end. The terminal box is located at 45 angle on the motor. L = Foot-mounted, terminal box LHS B = Flange-mounted, large flange Position 13 Code letter for voltage and frequency Direct start or, with -connection, also Y/ -start D = 380, 400, 415 V 50 Hz / 440 V 60 Hz E = 500 V 50 Hz Position 14 Generation code A, B, C,... ABB Motors and Generators Low voltage water cooled motors EN

22 Technical data Water cooled motors Technical data for totally enclosed squirrel cage three phase motors IE2 IP55 IC71W - Insulation class F, temperature rise class B Output kw Motor type Product code Speed r/min Efficiency IEC ; 2007 Full load 100% 3000 r/min = 2 poles 400 V 50 Hz 3/4 load 75% 1/2 load 50% Current Torque Moment of Power factor I N I S T N T l T b inertia J = 1/4 GD 2 cos A Nm kgm M3LP 280 SMA 3GLP G M3LP 280 SMB 3GLP G M3LP 280 SMC 3GLP G M3LP 315 MA 3GLP G M3LP 315 MB 3GLP G M3LP 315 MC 3GLP G M3LP 315 MLA 3GLP G M3LP 315 MLB 3GLP G M3LP 315 KHA 3GLP G M3LP 315 KHB 3GLP G r/min = 4 poles 400 V 50 Hz 90 M3LP 280 SMA 3GLP G M3LP 280 SMB 3GLP G M3LP 280 SMC 3GLP G M3LP 280 SMD 3GLP G M3LP 280 SME 3GLP G M3LP 315 MC 3GLP G M3LP 315 MLA 3GLP G M3LP 315 KHA 3GLP G M3LP 355 MLA 3GLP G M3LP 315 KHB 3GLP G M3LP 355 MLB 3GLP G M3LP 315 KHC 3GLP G M3LP 355 MLC 3GLP G M3LP 355 MLD 3GLP G M3LP 355 MLE 3GLP G M3LP 355 LKA 3GLP G M3LP 355 LKB 3GLP G M3LP 400 LA 3GLP G M3LP 400 LB 3GLP G M3LP 400 LC 3GLP G M3LP 450 LA 3GLP G M3LP 450 LB 3GLP G M3LP 450 LC 3GLP G Temperature rise class F The two bullets in the product code indicate choice of mounting arrangements, voltage and frequency code (see ordering information page. I N T N T N Weight kg Efficiency classes are valid for 2 to 6 pole motors, up to 375 kw. Efficiency values are given according to IEC ; Please note that the values are not comparable without knowing the testing method. ABB has calculated the efficiency values according to indirect method, stray load losses (additional losses) determined from measuring. 22 Low voltage water cooled motors EN ABB Motors and Generators

23 Technical data Water cooled motors Technical data with optimized outputs for totally enclosed squirrel cage three phase motors IP55 IC71W - Insulation class F, temperature rise class B - Cooling water temperature + 26 to 40 C Output kw Motor type Product code Speed r/min 3600 r/min = 2 poles 440 V 60 Hz Efficiency IEC ; 2007 Current Torque Moment of Full load 3/4 load 1/2 load Power factor I N I s T N T l T b inertia J = 1/4 GD 2 100% 75% 50% cos A Nm kgm M3LP 280 SMA 3GLP G M3LP 280 SMB 3GLP G M3LP 280 SMC 3GLP G M3LP 315 MA 3GLP G M3LP 315 MB 3GLP G M3LP 315 MC 3GLP G M3LP 315 MLA 3GLP G M3LP 315 MLB 3GLP G M3LP 315 KHA 3GLP G M3LP 315 KHB 3GLP G r/min = 4 poles 440 V 60 Hz 100 M3LP 280 SMA 3GLP G M3LP 280 SMB 3GLP G M3LP 280 SMC 3GLP G M3LP 280 SMD 3GLP G M3LP 280 SME 3GLP G M3LP 315 MC 3GLP G M3LP 315 MLA 3GLP G M3LP 315 KHA 3GLP G M3LP 355 MLA 3GLP G M3LP 315 KHB 3GLP G M3LP 355 MLB 3GLP G M3LP 315 KHC 3GLP G M3LP 355 MLC 3GLP G M3LP 355 MLD 3GLP G M3LP 355 MLE 3GLP G M3LP 355 LKA 3GLP G M3LP 355 LKB 3GLP G M3LP 400 LA 3GLP G M3LP 400 LB 3GLP G M3LP 400 LC 3GLP G M3LP 450 LA 3GLP G M3LP 450 LB 3GLP G M3LP 450 LC 3GLP G Temperature rise class F The two bullets in the product code indicate choice of mounting arrangements, voltage and frequency code (see ordering information page. I N T N T N Weight kg Efficiency values are given according to IEC ; Please note that the values are not comparable without knowing the testing method. ABB has calculated the efficiency values according to indirect method, stray load losses (additional losses) determined from measuring. ABB Motors and Generators Low voltage water cooled motors EN

24 Technical data Water cooled motors Technical data for totally enclosed squirrel cage three phase motors IE2 IP55 IC71W - Insulation class F, temperature rise class B Output kw Motor type Product code Speed r/min Efficiency IEC ; 2007 Full load 100% 1000 r/min = 6 poles 400 V 50 Hz 3/4 load 75% 1/2 load 50% Current Torque Moment of Power factor I N I S T N T l T b inertia J = 1/4 GD 2 cos A Nm kgm 2 90 M3LP 280 SME 3GLP G M3LP 315 MB 3GLP G M3LP 315 MC 3GLP G M3LP 315 MLA 3GLP G M3LP 315 MLB 3GLP G M3LP 315 KHA 3GLP G M3LP 315 KHB 3GLP G M3LP 355 MLA 3GLP G M3LP 315 KHC 3GLP G M3LP 355 MLB 3GLP G M3LP 355 MLC 3GLP G M3LP 355 MLD 3GLP G M3LP 355 LKA 3GLP G M3LP 355 LKB 3GLP G M3LP 400 LA 3GLP G M3LP 400 LB 3GLP G M3LP 400 LC 3GLP G M3LP 400 LD 3GLP G M3LP 450 LA 3GLP G M3LP 450 LB 3GLP G M3LP 450 LC 3GLP G r/min = 8 poles 400 V 50 Hz 55 M3LP 280 SMA 3GLP G M3LP 280 SMC 3GLP G M3LP 315 MB 3GLP G M3LP 315 MC 3GLP G M3LP 315 MLA 3GLP G M3LP 315 KHA 3GLP G M3LP 355 MLA 3GLP G M3LP 315 KHC 3GLP G M3LP 355 MLB 3GLP G M3LP 355 MLC 3GLP G M3LP 355 LKA 3GLP G M3LP 355 LKB 3GLP G M3LP 400 LA 3GLP G M3LP 400 LB 3GLP G M3LP 400 LC 3GLP G M3LP 450 LA 3GLP G M3LP 450 LB 3GLP G Temperature rise class F The two bullets in the product code indicate choice of mounting arrangements, voltage and frequency code (see ordering information page. I N T N T N Weight kg Efficiency classes are valid for 2 to 6 pole motors, up to 375 kw. Efficiency values are given according to IEC ; Please note that the values are not comparable without knowing the testing method. ABB has calculated the efficiency values according to indirect method, stray load losses (additional losses) determined from measuring. 24 Low voltage water cooled motors EN ABB Motors and Generators

25 Technical data Water cooled motors Technical data with optimized outputs for totally enclosed squirrel cage three phase motors IP55 IC71W - Insulation class F, temperature rise class B - Cooling water temperature + 26 to 40 C Output kw Motor type Product code Speed r/min 1200 r/min = 6 poles 440 V 60 Hz Efficiency IEC ; 2007 Current Torque Moment of Full load 3/4 load 1/2 load Power factor I N I s T N T l T b inertia J = 1/4 GD 2 100% 75% 50% cos A Nm kgm 2 95 M3LP 280 SME 3GLP G M3LP 315 MB 3GLP G M3LP 315 MC 3GLP G M3LP 315 MLA 3GLP G M3LP 315 MLB 3GLP G M3LP 315 KHA 3GLP G M3LP 315 KHB 3GLP G M3LP 355 MLA 3GLP G M3LP 315 KHC 3GLP G M3LP 355 MLB 3GLP G M3LP 355 MLC 3GLP G M3LP 355 MLD 3GLP G M3LP 355 LKA 3GLP G M3LP 355 LKB 3GLP G M3LP 400 LA 3GLP G M3LP 400 LB 3GLP G M3LP 400 LC 3GLP G M3LP 400 LD 3GLP G M3LP 450 LA 3GLP G M3LP 450 LB 3GLP G M3LP 450 LC 3GLP G r/min = 8 poles 440 V 60 Hz 60 M3LP 280 SMA 3GLP G M3LP 280 SMC 3GLP G M3LP 315 MB 3GLP G M3LP 315 MC 3GLP G M3LP 315 MLA 3GLP G M3LP 315 KHA 3GLP G M3LP 355 MLA 3GLP G M3LP 315 KHC 3GLP G M3LP 355 MLB 3GLP G M3LP 355 MLC 3GLP G M3LP 355 LKA 3GLP G M3LP 355 LKB 3GLP G M3LP 400 LA 3GLP G M3LP 400 LB 3GLP G M3LP 400 LC 3GLP G M3LP 450 LA 3GLP G M3LP 450 LB 3GLP G Temperature rise class F I N T N T N Weight kg The two bullets in the product code indicate choice of mounting arrangements, voltage and frequency code (see ordering information page. Efficiency values are given according to IEC ; Please note that the values are not comparable without knowing the testing method. ABB has calculated the efficiency values according to indirect method, stray load losses (additional losses) determined from measuring. ABB Motors and Generators Low voltage water cooled motors EN

26 Variant codes Frame Size Code Variant Administration year extension on standard warranty. P P P P P 531 Sea freight packing. P P P P P Balancing 052 Vibration acc. to Grade A (IEC ). S S S S S 417 Vibration acc. to Grade B (IEC ). NA NA P P NA 423 Balanced without key. P P P P P 424 Full key balancing. P P P P P Bearings and lubrication 036 Transport lock for bearings. P P P P P 037 Roller bearing at D-end. P P P P P 040 Heat resistant grease. P P P P P 041 Bearings regreasable via grease nipples. S S S S S 042 Locked drive-end. S S S S S 043 SPM compatible nipples for vibration measurement. S S S S S 058 Angular contact bearing at D-end, shaft force away from bearing. P P P P P 059 Angular contact bearing at N-end, shaft force towards bearing. P P P P P 060 Angular contact bearing at D-end, shaft force towards bearing. P P P P P 061 Angular contact bearing at N-end, shaft force away from bearing. P P P P P 107 Pt100 2-wire in bearings. P P P P P 130 Pt100 3-wire in bearings. P P P P P 420 Bearing mounted PTC thermistors. P P P P P 433 Outlet grease collector. P P P P P 796 Grease nipples JIS B 1575 PT 1/8 Type A. P P P P P 797 Stainless steel SPM nipples. P P P P P 798 Stainless steel grease nipples. P P P P P 799 Grease nipples flat type DIN 3404, thread M10x1. P P P P P 800 Grease nipples JIS B 1575 PT 1/8 pin type. P P P P P Branch standard designs 056 Float type leakage detector. R R P P P 178 Stainless steel / acid proof bolts. P P P P P 204 Jacking bolts for foot mounted motors. P P S S S 209 Non-standard voltage or frequency, (special winding). P P P P P 396 Motor designed for ambient temperature -20 C to -40 C, wtih space heaters (code 450/451 must be added). NA NA R R R 397 Motor designed for ambient temperature -40 C to -55 C, wtih space heaters (code 450/451 must be added). NA NA R R R 398 Motor designed for ambient temperature -20 C to -40 C. NA NA R R R 399 Motor designed for ambient temperature -40 C to -55 C. NA NA R R R 425 Corrosion protected stator and rotor core. P P P P P Cooling system 075 Cooling method IC418 (without fan). NA NA NA R R Coupling 035 Assembly of customer supplied coupling-half. P P P P P Documentation 141 Binding dimension drawing. P P P P P Drain holes 065 Plugged existing drain holes. P P P P P 448 Draining holes with metal plugs. P P P P P P = New manufacture only R = On request S = Included as standard NA = Not applicable 26 Low voltage water cooled motors EN ABB Motors and Generators

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