Alternator. Ratings Book. Industrial. Edition 2

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1 Alternator Ratings Book Edition 2

2 i Introduction Rating Definitions All ratings are based on Rise by Resistance measurement method. Ratings based on Embedded Temperature Device (ETD) measurement may be provided under application to Cummins Generator Technologies. Thermal Insulation Class Insulation class governs the maximum permissible temperature an alternator can operate without damaging the insulation system. Cummins Generator Technologies use Class H & Class F. Insulation Class Maximum Permissible Temperature Class F 155 ºC Class H 180 ºC Temperature Rise Temperature rise is the increase in temperature above ambient temperature 40 ºC. Temperature Rise Temperature ºC Class B 80 ºC Class F 105 ºC Class H 125 ºC application allows windings to run hotter than the Class H temperature rise limit, therefore for an ambient of 40 ºC temperature rise 150 ºC 27 ºC temperature rise 163 ºC Generator Set Ratings The tables below summarises the definitions according to ISO for the generator set and a combination of ISO and IEC for the alternator. Genset Rating (ISO8528-1) Emergency Power (ESP) Limited Time Prime (LTP) Prime Rated Power (PRP) Operating Power (COP) Load type Variable Constant Variable Constant Annual operating hours Unlimited Unlimited Average load 70% 100% 70% 100% Overload No No 10% (1 hour in every 12 Hrs) No Alternator Rating (NEMA MG1-32) Duty Cycle (IEC ) S10 S10 S1 S1 Alternator Ratings 150/40 163/27 150/40 163/27 Class H Class F 105/40 Class B 80/40 Class H Class F 105/40 Class B 80/40 Page 2

3 i Derates Ambient Temperature If the ambient (alternator air inlet temperature) exceeds 40 ºC then the alternator output rating must be reduced using the following tables. DSG or DIG Introduction Utilisation Class H Class F Class B Temperature ºC Multiplying Factor Multiplying Factor Multiplying Factor For ambient temperatures above 60 ºC please consult applications engineering. Altitude (Low Voltage 690V) All ratings are based on altitude up to 1000 metres above sea level. If the altitude exceeds 1000m then the alternator output ratings must be derated using the following table. Altitude above sea level in metres Multiplying Factor Please consult applications engineering department for 1. High Voltages (>690V) 2. Altitudes above 3000m Page 3

4 i Introduction Useful Formulas TO OBTAIN Single Phase AC power Three Phase AC power kilowatts electrical (kw) kilowatts electrical (kw) kilowatts mechanical (kwm) kva Amps Speed (rpm) Reactive Power (kvar) % Voltage regulation (for Steady- Loads, from No Load to Full Load) Horsepower required to drive alternator First cycle RMS short circuit current (±10%) VVVVVVVVVV AAAAAAAA PPPP 1000 kkkkkk PPPP kkkkkk PPPP AAAAAAAAAAAAAAAAAAAA EEEEEEEEEEEEEEEEEEEE VVVVVVVVVV AAAAAAAA 1000 kkkkkk 1000 VVVVVVVVVV 120 FFFFFFFFFFFFFFFFFF # PPPPPPPPPP VVVVVVVVVV AAAAAAAA ssssss 1000 VV!" VV!" VV!" 100 FF!" kkkk FF!" AAAAAAAAAAAAAAAAAAAA FF!" EEEEEEEEEEEEEEEEEEEE RRRRRRRRRR AAAAAAAAAAAAAA pppppp dd VVVVVVVVVV AAAAAAAA PPPP kkkkkk PPPP kkkkkk PPPP AAAAAAAAAAAAAAAAAAAA EEEEEEEEEEEEEEEEEEEE VVVVVVVVVV AAAAAAAA kkkkkk 1000 VVVVVVtttt FFFFFFFFFFFFFFFFFF # PPPPPPPPPP VVVVVVVVVV AAAAAAAA ssssss VV!" VV!" VV!" 100 FF!" FF kkkk!" AAAAAAAAAAAAAAAAAAAA FF!" EEEEEEEEEEEEEEEEEEEE RRRRRRRRRR AAAAAAAAAAAAAA pppppp dd PF refers to power factor, which is expressed as a decimal fraction. For example, 80% power factor = 0.8 for the purposes of calculations. Sin refers to power factor, where = PF. For example, 80% power factor = 0.8, therefore Sin = Sin(0.8) # Poles refers to number of Poles Volts refers to line to line voltage. Amps refers to line current in amperes. pu refers to per unit Page 4

5 Table of Contents 4 POLE low Voltage Page 50Hz 1500rpm 400V Page 8 690V Page 9 60Hz 1800rpm 480V Page V Page V Page 11 4 POLE High Voltage Page 50Hz 1500rpm 3300V Page V Page V Page V Page V Page 16 60Hz 1800rpm 4160V Page V Page V Page 19 6 POLE low Voltage Page 50Hz 1000rpm 400V Page V Page 21 60Hz 1200rpm 480V Page V Page V Page 24 Page 5

6 Table of Contents 6 POLE High Voltage Page 50Hz 1000rpm 3300V Page V Page V Page V Page V Page 29 60Hz 1200rpm 4160V Page V Page V Page 31 8 POLE low Voltage Page 50Hz 750rpm 400V Page V Page 33 60Hz 900rpm 480V Page V Page V Page 36 8 POLE High Voltage Page 50Hz 750rpm 3300V Page V Page V Page V Page V Page 40 60Hz 900rpm 4160V Page V Page V Page 42 Page 6

7 Table of Contents 10 POLE low Voltage Page 50Hz 600rpm 400V Page V Page 44 60Hz 720rpm 480V Page V Page POLE High Voltage Page 50Hz 600rpm 3300V Page V Page V Page V Page V Page 49 60Hz 720rpm 4160V Page V Page V Page 50 Page 7

8 4 POLE Low Voltage 400V 50Hz/1500rpm 163/27 150/40 (H) kva kw DSG 62 M1/ DSG 62 M2/ DSG 62 L1/ DSG 62 L2/ DSG 74 M1/ DSG 74 M2/ DSG 74 L1/ DSG 74 L2/ DSG 86 K1/ DSG 86 M1/ DSG 86 L1/ DSG 99 K1/ DSG 114 K1/ Page 8

9 4 POLE Low Voltage 690V 50Hz/1500rpm 163/27 150/40 (H) kva kw DSG 62 M1/ DSG 62 M2/ DSG 62 L1/ DSG 62 L2/ DSG 74 M1/ DSG 74 M2/ DSG 74 L1/ DSG 74 L2/ DSG 86 K1/ DSG 86 M1/ DSG 86 L1/ DSG 99 K1/ DSG 99 M1/ DSG 99 L1/ Page 9

10 4 POLE Low Voltage 480V 60Hz/1800rpm 163/27 150/40 (H) kva kw DSG 62 M1/ DSG 62 M2/ DSG 62 L1/ DSG 62 L2/ DSG 74 M1/ DSG 74 M2/ DSG 74 L1/ DSG 74 L2/ DSG 86 K1/ DSG 86 M1/ DSG 86 L1/ DSG 99 K1/ DSG 114 K1/ V 60Hz/1800rpm 163/27 150/40 (H) kva kw DSG 86 K1/ DSG 86 M1/ DSG 86 L1/ DSG 99 K0/ DSG 99 K1/ DSG 99 M1/ DSG 99 L1/ Page 10

11 4 POLE Low Voltage 690V 60Hz/1800rpm 163/27 150/40 (H) kva kw DSG 62 M1/ DSG 62 M2/ DSG 62 L1/ DSG 62 L2/ DSG 74 M1/ DSG 74 M2/ DSG 74 L1/ DSG 74 L2/ DSG 86 K1/ DSG 86 M1/ DSG 86 L1/ DSG 99 K0/ DSG 99 K1/ DSG 99 M1/ DSG 99 L1/ Page 11

12 4 POLE High Voltage 3300V 50Hz/1500rpm DIG 110 g/ DIG 110 h/ DIG 110 i/ DIG 120 g/ DIG 120 h/ DIG 120 i/ DIG 120 k/ DIG 130 h/ DIG 130 i/ DIG 130 k/ DIG 130 l/ DIG 142 c/ DIG 130 m/ DIG 142 d/ DIG 142 f/ DIG 156 i/ DIG 142 g/ DIG 150 k/ DIG 150 l/ DIG 142 i/ DIG 156 l/ DIG 150 m/ DIG 150 n/ DIG 156 m/ DIG 150 o/ DIG 156 n/ DIG 156 o/ Page 12

13 4 POLE High Voltage 6300V 50Hz/1500rpm DIG 110 g/ DIG 110 h/ DIG 110 i/ DIG 120 g/ DIG 120 h/ DIG 120 i/ DIG 130 g/ DIG 130 h/ DIG 130 i/ DIG 130 k/ DIG 142 c/ DIG 142 d/ DIG 142 e/ DIG 156 i/ DIG 142 f/ DIG 142 g/ DIG 150 k/ DIG 142 h/ DIG 150 l/ DIG 142 i/ DIG 156 l/ DIG 150 m/ DIG 150 n/ DIG 150 o/ DIG 156 m/ DIG 156 n/ DIG 156 o/ DIG 156 p/ DIG 156 q/ Page 13

14 4 POLE High Voltage 6600V 50Hz/1500rpm DIG 110 g/ DIG 110 h/ DIG 110 i/ DIG 120 g/ DIG 120 h/ DIG 120 i/ DIG 130 g/ DIG 130 h/ DIG 130 i/ DIG 130 k/ DIG 142 c/ DIG 142 d/ DIG 142 e/ DIG 156 i/ DIG 142 f/ DIG 142 g/ DIG 150 k/ DIG 142 h/ DIG 150 l/ DIG 142 i/ DIG 156 l/ DIG 150 m/ DIG 150 n/ DIG 150 o/ DIG 156 m/ DIG 156 n/ DIG 156 o/ DIG 156 p/ DIG 156 q/ Page 14

15 4 POLE High Voltage 10500V 50Hz/1500rpm DIG 110 h/ DIG 110 i/ DIG 120 g/ DIG 120 h/ DIG 120 i/ DIG 130 g/ DIG 130 h/ DIG 130 i/ DIG 130 k/ DIG 142 c/ DIG 142 d/ DIG 142 e/ DIG 156 i/ DIG 142 f/ DIG 150 k/ DIG 142 g/ DIG 142 h/ DIG 150 l/ DIG 142 i/ DIG 156 l/ DIG 150 m/ DIG 150 n/ DIG 156 m/ DIG 156 n/ DIG 156 o/ DIG 156 p/ DIG 156 q/ Page 15

16 4 POLE High Voltage 11000V 50Hz/1500rpm DIG 110 h/ DIG 110 i/ DIG 120 g/ DIG 120 h/ DIG 120 i/ DIG 130 g/ DIG 130 h/ DIG 130 i/ DIG 130 k/ DIG 142 c/ DIG 142 d/ DIG 142 e/ DIG 142 f/ DIG 150 k/ DIG 142 g/ DIG 142 h/ DIG 150 l/ DIG 142 i/ DIG 150 m/ DIG 156 l/ DIG 150 n/ DIG 156 m/ DIG 156 n/ DIG 156 o/ DIG 156 p/ DIG 156 q/ DIG 156 q/ Page 16

17 4 POLE High Voltage 4160V 60Hz/1800rpm DIG 110 g/ DIG 110 h/ DIG 110 i/ DIG 120 g/ DIG 120 h/ DIG 120 i/ DIG 120 k/ DIG 130 h/ DIG 130 i/ DIG 130 k/ DIG 130 l/ DIG 142 c/ DIG 142 d/ DIG 142 f/ DIG 150 k/ DIG 156 i/ DIG 142 g/ DIG 150 l/ DIG 142 i/ DIG 150 m/ DIG 156 l/ DIG 150 n/ DIG 150 o/ DIG 156 m/ DIG 156 n/ DIG 156 o/ Page 17

18 4 POLE High Voltage 6600V 60Hz/1800rpm DIG 110 g/ DIG 110 h/ DIG 110 i/ DIG 120 g/ DIG 120 h/ DIG 120 i/ DIG 130 g/ DIG 130 h/ DIG 130 i/ DIG 130 k/ DIG 142 c/ DIG 142 d/ DIG 142 e/ DIG 156 i/ DIG 142 f/ DIG 150 k/ DIG 142 g/ DIG 150 l/ DIG 142 h/ DIG 150 m/ DIG 156 l/ DIG 150 n/ DIG 150 o/ DIG 156 m/ DIG 156 n/ Page 18

19 4 POLE High Voltage 13800V 60Hz/1800rpm DIG 130 g/ DIG 130 h/ DIG 130 i/ DIG 130 k/ DIG 142 c/ DIG 142 d/ DIG 142 e/ DIG 150 k/ DIG 142 f/ DIG 142 g/ DIG 150 l/ DIG 142 h/ DIG 150 m/ DIG 150 n/ DIG 156 l/ DIG 156 m/ DIG 156 n/ Page 19

20 6 POLE Low Voltage 400V 50Hz/1000rpm 163/27 150/40 (H) kva kw DSG 74 M1/ DSG 74 M2/ DSG 74 L1/ DSG 74 L2/ DSG 86 K1/ DSG 86 M1/ DSG 86 L1/ DSG 99 K0/ DSG 99 K1/ DSG 99 M1/ DSG 99 L1/ DSG 114 K1/ DSG 114 M1/ DSG 114 M2/ Page 20

21 6 POLE Low Voltage 690V 50Hz/1000rpm 163/27 150/40 (H) kva kw DSG 74 M1/ DSG 74 M2/ DSG 74 L1/ DSG 86 K1/ DSG 86 M1/ DSG 86 L1/ DSG 99 K0/ DSG 99 M1/ DSG 99 L1/ DSG 114 K1/ DSG 114 M2/ DSG 114 L1/ Page 21

22 6 POLE Low Voltage 480V 60Hz/1200rpm 163/27 150/40 (H) kva kw DSG 74 M1/ DSG 74 M2/ DSG 74 L1/ DSG 74 L2/ DSG 86 K1/ DSG 86 M1/ DSG 86 L1/ DSG 99 K0/ DSG 99 K1/ DSG 99 M1/ DSG 99 L1/ DSG 114 K1/ DSG 114 M1/ DSG 114 M2/ Page 22

23 6 POLE Low Voltage 600V 60Hz/1200rpm 163/27 150/40 (H) kva kw DSG 86 K1/ DSG 86 M1/ DSG 99 K0/ DSG 86 L1/ DSG 99 K1/ DSG 99 M1/ DSG 99 L1/ DSG 114 K1/ DSG 114 M1/ DSG 114 M2/ DSG 114 L1/ Page 23

24 6 POLE Low Voltage 690V 60Hz/1200rpm 163/27 150/40 (H) kva kw DSG 74 M1/ DSG 74 M2/ DSG 74 L1/ DSG 86 K1/ DSG 86 M1/ DSG 99 K0/ DSG 86 L1/ DSG 99 K1/ DSG 99 M1/ DSG 99 L1/ DSG 114 K1/ DSG 114 M1/ DSG 114 M2/ DSG 114 L1/ Page 24

25 6 POLE High Voltage 3300V 50Hz/1000rpm DIG 130 h/ DIG 130 i/ DIG 130 k/ DIG 140 h/ DIG 130 l/ DIG 140 i/ DIG 140 k/ DIG 140 l/ DIG 140 m/ DIG 150 k/ DIG 140 n/ DIG 150 l/ DIG 150 m/ DIG 150 n/ DIG 156 l/ DIG 156 m/ DIG 156 n/ DIG 156 o/ DIG 156 p/ DIG 156 q/ Page 25

26 6 POLE High Voltage 6300V 50Hz/1000rpm DIG 130 g/ DIG 130 h/ DIG 130 i/ DIG 130 k/ DIG 140 h/ DIG 140 i/ DIG 140 k/ DIG 140 l/ DIG 150 k/ DIG 140 m/ DIG 150 l/ DIG 150 m/ DIG 150 n/ DIG 156 l/ DIG 156 m/ DIG 156 n/ DIG 156 o/ DIG 156 p/ DIG 156 q/ Page 26

27 6 POLE High Voltage 6600V 50Hz/1000rpm DIG 130 g/ DIG 130 h/ DIG 130 i/ DIG 130 k/ DIG 140 h/ DIG 140 i/ DIG 140 k/ DIG 140 l/ DIG 140 m/ DIG 150 k/ DIG 150 l/ DIG 150 m/ DIG 150 n/ DIG 156 l/ DIG 156 m/ DIG 156 n/ DIG 156 o/ DIG 156 p/ DIG 156 q/ Page 27

28 6 POLE High Voltage 10500V 50Hz/1000rpm DIG 130 g/ DIG 130 h/ DIG 130 i/ DIG 130 k/ DIG 140 h/ DIG 130 m/ DIG 140 i/ DIG 140 k/ DIG 140 l/ DIG 150 k/ DIG 140 m/ DIG 150 l/ DIG 150 m/ DIG 150 n/ DIG 156 l/ DIG 156 m/ DIG 156 n/ DIG 156 o/ DIG 156 p/ DIG 156 q/ Page 28

29 6 POLE High Voltage 11000V 50Hz/1000rpm DIG 130 g/ DIG 130 h/ DIG 130 i/ DIG 130 k/ DIG 140 h/ DIG 130 m/ DIG 140 i/ DIG 140 k/ DIG 140 l/ DIG 140 m/ DIG 150 k/ DIG 150 l/ DIG 150 m/ DIG 150 n/ DIG 156 l/ DIG 156 m/ DIG 156 n/ DIG 156 o/ DIG 156 p/ DIG 156 q/ Page 29

30 6 POLE High Voltage 4160V 60Hz/1200rpm DIG 130 h/ DIG 130 i/ DIG 130 k/ DIG 130 l/ DIG 150 k/ DIG 150 l/ V 60Hz/1200rpm DIG 130 g/ DIG 130 h/ DIG 130 i/ DIG 130 k/ DIG 150 k/ DIG 150 l/ Page 30

31 6 POLE High Voltage 13800V 60Hz/1200rpm DIG 130 g/ DIG 130 h/ DIG 130 i/ DIG 130 k/ DIG 150 k/ DIG 150 l/ Page 31

32 8 POLE Low Voltage 400V 50Hz/750rpm 163/27 150/40 (H) kva kw DSG 74 M1/ DSG 74 M2/ DSG 74 L1/ DSG 86 K0/ DSG 74 L2/ DSG 86 K1/ DSG 86 M1/ DSG 86 L1/ DSG 99 K1/ DSG 99 M1/ DSG 99 L1/ DSG 99 L2/ DSG 114 K1/ DSG 114 M1/ DSG 114 L1/ Page 32

33 8 POLE Low Voltage 690V 50Hz/750rpm 163/27 150/40 (H) kva kw DSG 74 M1/ DSG 74 M2/ DSG 74 L1/ DSG 74 L2/ DSG 86 K0/ DSG 86 K1/ DSG 86 M1/ DSG 86 L1/ DSG 99 K1/ DSG 99 M1/ DSG 99 L1/ DSG 114 K1/ DSG 99 L2/ DSG 114 M1/ DSG 114 M2/ DSG 114 L2/ DSG 125 K2/ DSG 125 M1/ DSG 125 M2/ DSG 125 L1/ Page 33

34 8 POLE Low Voltage 480V 60Hz/900rpm 163/27 150/40 (H) kva kw DSG 74 M1/ DSG 74 M2/ DSG 74 L1/ DSG 74 L2/ DSG 86 K0/ DSG 86 K1/ DSG 86 M1/ DSG 86 L1/ DSG 99 K1/ DSG 99 M1/ DSG 99 L1/ DSG 99 L2/ DSG 114 K1/ DSG 114 M1/ DSG 114 L1/ Page 34

35 8 POLE Low Voltage 600V 60Hz/900rpm 163/27 150/40 (H) kva kw DSG 86 K0/ DSG 99 L2/ DSG 114 K1/ DSG 114 M1/ DSG 114 M2/ DSG 114 L1/ Page 35

36 8 POLE Low Voltage 690V 60Hz/900rpm 163/27 150/40 (H) kva kw DSG 74 M1/ DSG 74 M2/ DSG 74 L1/ DSG 74 L2/ DSG 86 K0/ DSG 86 K1/ DSG 86 M1/ DSG 86 L1/ DSG 99 K1/ DSG 99 M1/ DSG 99 L1/ DSG 99 L2/ DSG 114 K1/ DSG 114 M1/ DSG 114 M2/ DSG 114 L1/ DSG 125 K2/ DSG 125 M1/ DSG 125 M2/ DSG 125 L1/ Page 36

37 8 POLE High Voltage 3300V 50Hz/750rpm DIG 130 i/ DIG 150 k/ DIG 150 l/ DIG 150 m/ DIG 150 n/ DIG 156 k/ DIG 156 l/ DIG 150 o/ DIG 156 m/ DIG 156 n/ DIG 156 o/ DIG 156 p/ Page 37

38 8 POLE High Voltage 6300V 50Hz/750rpm DIG 150 k/ DIG 150 l/ DIG 150 m/ DIG 150 n/ DIG 156 k/ DIG 150 o/ DIG 156 l/ DIG 156 m/ DIG 156 n/ DIG 156 o/ DIG 156 p/ Page 38

39 8 POLE High Voltage 6600V 50Hz/750rpm DIG 130 h/ DIG 130 l/ DIG 150 k/ DIG 150 l/ DIG 150 m/ DIG 150 n/ DIG 156 k/ DIG 156 l/ DIG 150 o/ DIG 156 m/ DIG 156 n/ DIG 156 o/ DIG 156 p/ Page 39

40 8 POLE High Voltage 10500V 50Hz/750rpm DIG 150 k/ DIG 150 l/ DIG 150 m/ DIG 150 n/ DIG 156 k/ DIG 150 o/ DIG 156 l/ DIG 156 m/ DIG 156 n/ DIG 156 o/ DIG 156 p/ V 50Hz/750rpm DIG 150 k/ DIG 150 l/ DIG 150 m/ DIG 150 n/ DIG 156 k/ DIG 150 o/ DIG 156 l/ DIG 156 m/ DIG 156 n/ DIG 156 o/ DIG 156 p/ Page 40

41 8 POLE High Voltage 4160V 60Hz/900rpm DIG 150 k/ DIG 150 l/ DIG 150 m/ DIG 156 k/ DIG 150 n/ DIG 150 o/ DIG 156 l/ DIG 156 m/ DIG 156 n/ DIG 156 o/ V 60Hz/900rpm DIG 150 k/ DIG 150 l/ DIG 150 m/ DIG 150 n/ DIG 156 k/ DIG 150 o/ DIG 156 l/ DIG 156 m/ DIG 156 n/ DIG 156 o/ Page 41

42 8 POLE High Voltage 13800V 60Hz/900rpm DIG 150 k/ DIG 150 l/ DIG 150 m/ DIG 150 n/ DIG 156 k/ DIG 156 l/ DIG 156 m/ DIG 156 n/ DIG 156 o/ Page 42

43 10 POLE Low Voltage 400V 50Hz/600rpm 163/27 150/40 (H) kva kw DSG 86 K0/ DSG 86 K1/ DSG 86 M1/ DSG 86 L1/ DSG 99 K1/ DSG 99 M1/ DSG 99 L1/ DSG 99 L2/ DSG 114 K1/ DSG 114 M1/ DSG 114 M2/ DSG 114 L1/ Page 43

44 10 POLE Low Voltage 690V 50Hz/600rpm 163/27 150/40 (H) kva kw DSG 86 K0/ DSG 86 K1/ DSG 86 M1/ DSG 86 L1/ DSG 99 K1/ DSG 99 M1/ DSG 99 L1/ DSG 99 L2/ DSG 114 K1/ DSG 114 M1/ DSG 114 M2/ DSG 114 L1/ Page 44

45 10 POLE Low Voltage 480V 60Hz/720rpm 163/27 150/40 (H) kva kw DSG 86 K0/ DSG 86 K1/ DSG 86 M1/ DSG 86 L1/ DSG 99 K1/ DSG 99 M1/ DSG 99 L1/ DSG 99 L2/ DSG 114 K1/ DSG 114 M1/ DSG 114 M2/ DSG 114 L1/ Page 45

46 10 POLE Low Voltage 690V 60Hz/720rpm 163/27 150/40 (H) kva kw DSG 86 K0/ DSG 86 K1/ DSG 86 M1/ DSG 86 L1/ DSG 99 K1/ DSG 99 M1/ DSG 99 L1/ DSG 114 K1/ DSG 114 M1/ DSG 114 M2/ DSG 114 L1/ DSG 125 K1/ DSG 125 M1/ DSG 125 M2/ DSG 125 L1/ DSG 144 M1/ Page 46

47 10 POLE High Voltage 3300V 50Hz/600rpm DIG 156 k/ DIG 156 l/ DIG 156 m/ DIG 156 n/ DIG 156 o/ DIG 156 p/ DIG 156 q/ V 50Hz/600rpm DIG 156 k/ DIG 156 l/ DIG 156 m/ DIG 156 n/ DIG 156 o/ DIG 156 p/ DIG 156 q/ Page 47

48 10 POLE High Voltage 6600V 50Hz/600rpm DIG 156 k/ DIG 156 l/ DIG 156 m/ DIG 156 n/ DIG 156 o/ DIG 156 p/ DIG 156 q/ V 50Hz/600rpm DIG 156 k/ DIG 156 l/ DIG 156 m/ DIG 156 n/ DIG 156 o/ DIG 156 p/ DIG 156 q/ Page 48

49 10 POLE High Voltage 11000V 50Hz/600rpm DIG 156 k/ DIG 156 l/ DIG 156 m/ DIG 156 n/ DIG 156 o/ DIG 156 p/ DIG 156 q/ V 60Hz/720rpm DIG 156 k/ DIG 156 l/ DIG 156 m/ DIG 156 n/ DIG 156 o/ DIG 156 p/ DIG 156 q/ Page 49

50 10 POLE High Voltage 6600V 60Hz/720rpm DIG 156 k/ DIG 156 m/ DIG 156 l/ DIG 156 n/ DIG 156 o/ DIG 156 p/ DIG 156 q/ V 60Hz/720rpm DIG 156 k/ DIG 156 l/ DIG 156 m/ DIG 156 n/ DIG 156 o/ DIG 156 p/ DIG 156 q/ Page 50

51 Application Engineering Application Engineering generally owns the technical relationship with our customers and therefore is the first point of contact. The team s aim is to Delight our Customers by providing a world class customer service by striving to understand customer needs and best matched products to suit each individual customer application. Application teams are based in the US, Europe, India and China, sharing a common enquiry database. Due to this, there are always Application Engineers available to support customer requirements and deliver the best technical product selection that STAMFORD I AvK branded products can offer. Key deliverables include: Provide technical data and support for Cummins Generator Technologies products Technical data, drawings, application guidance notes Size alternators for different load applications -motors, lighting, non-linear (UPS, VSD, SCR) Advise and discuss all aspects of alternator application, control and installation Discuss needs, resolve issues and review specification Provide qualified technical recommendations to ensure fit for purpose products Assist with design and development of complete generating set systems Provide bespoke application engineering training to suit customer requirements Application sizing Alternator selection considerations Changing market requirements such as grid codes or marine standards Provide Voice of Customer and application field knowledge into new product introduction or product improvement programs. Application Engineering support customers as they venture into new market segments and integrate product designs to ensure superior fit to market. The team work closely with the Application Validation Team to validate and fully understand the operating boundaries of our products to ensure the right machines meet the harsh, increasingly challenging environments in which our customers operate in. For Applications Support contact: applications@cummins.com Page 51

52 Follow Cummins Generator Technologies youtube.com/stamfordavk news.stamford-avk.com For Applications Support: For Customer Service: For general enquiries: Copyright 2017, Cummins Generator Technologies Ltd. All rights reserved. Cummins and the Cummins logo are registered trade marks of Cummins Inc. STAMFORD, AvK are registered trade marks of Cummins Generator Technologies Ltd. Part No. A056R161 Rev. 02 Disclaimer The ratings provided are for information only, the accuracy cannot be guaranteed as Cummins Generator Technologies has an ongoing process of development and reserves the right to change the contents of ratings book without notice and shall not be held responsible for any subsequent claims in relation to the content

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