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Cooling Tower 3 Phase Induction Motor

Cooling Tower 3 Phase Induction Motor

2000.00 - 10000.00 INR/Unit

Product Details:

  • Poles Number 4
  • Pressure Standard Atmospheric
  • Rated Frequency 50 Hz
  • Rated Voltage 415 V
  • Ambient Temperature -10C to 50C
  • Starting Type DOL
  • Power Rating 2.2 kW
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Cooling Tower 3 Phase Induction Motor Price And Quantity

  • 2000.00 - 10000.00 INR/Unit
  • 5 Unit
  • S1 (Continuous) Duty
  • 1.15
  • Low Vibration
  • TEFC (Totally Enclosed Fan Cooled)
  • Class F
  • Cooling Towers, Industrial Applications, HVAC Equipment
  • 112M
  • Squirrel Cage

Cooling Tower 3 Phase Induction Motor Product Specifications

  • 3 HP
  • 2.2 kW
  • 415 V
  • 38 kg
  • IP55
  • High Efficiency
  • 2.2 kW
  • Three Phase
  • 430 mm x 290 mm x 290 mm
  • 1440 RPM
  • DOL
  • -10C to 50C
  • 415 V
  • 50 Hz
  • Standard Atmospheric
  • 4
  • Blue
  • <72 dB
  • Air Cooled
  • 3 HP
  • IP55
  • Corrosion Resistant, Low Maintenance, Energy Efficient
  • 20 Nm
  • Foot Mounted
  • Squirrel Cage Induction Motor
  • 50 Hz
  • 28 mm
  • Cooling Tower 3 Phase Induction Motor
  • Deep Groove Ball Bearing
  • AC
  • Totally Enclosed Fan Cooled (TEFC)
  • S1 (Continuous) Duty
  • 1.15
  • Low Vibration
  • TEFC (Totally Enclosed Fan Cooled)
  • Class F
  • Cooling Towers, Industrial Applications, HVAC Equipment
  • 112M
  • Squirrel Cage

Cooling Tower 3 Phase Induction Motor Trade Information

  • 1 Unit Per Day
  • 1 Days

Product Description

Features
  • Application: Cooling tower motors are specially designed flange  mounted motors in totally enclosed construction to suit air conditioning  & refrigeration industries. This also helps in the better cooling of the  motor. Motors are compact in design & less in weight to facilitate easy  maintenance.
  • Direction of rotation: Bi-directional.
  • Vibration level: Normal class in accordance with 12075-1986.
  • Noise level: As per IS:12065-1986
  • Squirrel Cage Rotor: Dynamically balanced with half sized key and  corrosion-protected aluminium die-cast squirrel cage is provided.
  • Rotor Shaft: Special long shaft construction with external threaded end are provided at drive end to directly mount the fan blades of the Cooling  Tower. Standard shaft material is EN series (carbon steel) as per IS 1570- 1979.
  • Earthing Terminal: One earthing terminal inside the terminal box  (M5/M6) and two earthing terminals (M6/M8) on stator housing are  provided.
  • Eye Bolt: Forged steel eye bolt is provided from frame size 100 onwards  to facilitate lifting.

Specification

 

  • Supply Voltage : 415 Volts 10%, 3 Phase AC
  • Frequency:  50Hz 5%
  • Ambient Temperature:  50 C 
  • Altitude : Upto 1000 meters above MSL
  • Relative humidity:  Upto 100%
  • Insulation class F Class
  • Bearings Double Sealed Ball Bearings 
  • Winding temperature 
  • rise
  • Designed to operate within class B 
  • limit
  • Duty Continuous S1
  • Protection class IP55
  • Method of cooling IC411
  • Terminal box position Top of housing towards DE
  • Paint shade Epoxy Bayer Blue. 

Performance of Cooling Tower Motor

 

KW

HP

Size

Pole

RPM

Amp

Tst / Tr

Ist/Ir

Tpo/Tr

%

PF [cos ]

GD2 Kg

0.37

0.5

71

4

1330

1.4

2.5

6

2.6

72.7

0.6

0.0035

0.55

0.75

80

4

1340

1.7

2.6

6

2.6

77.1

0.6

0.004

0.75

1

80

 4

 1360

 2.2

 2.6

 6

 2.6

 79.6

0.62

0.0045

1.1

 1.5

 90S

 4

 1370

 2.9

 2.6

 6

2.6

81.4

 0.62

 0.010

1.5

 2

 90L

 4

 1380

3.8

2.3

 6

 2.6

 82.8

 0.64

 0.007

0.75

 1

 90S

 6

890

 2.3

 1.9

 6

 2.2

75.9

0.65

 0.02

1.1

 1.5

 90L

6

900

 3.4

 1.9

6

2.2

78.1

 0.68

 0.02

1.5

2

100L

6

900

 4

 1.9

 6

 2.2

 79.8

0.71

0.03

2.2

3.0

112M

 6

910

 5.7

 2.2

7

 2.3

81.8

0.74

0.05

3.7

5.0

132S

6

920

 8.8

2

7

2.4

84.8

0.72

0.12

5.5

7.5

132M

 6

920

12.9

 2

7

2.4

86

 0.75

0.16

7.5

10.0

160M

 6

 930

 16.7

 2

 7

2.3

 87.2

0.81

 0.32

9.3

 12.5

 160L

 6

 935

20

2

7

2.4

88

0.8

 0.33

11.0

15.0

 160L

 6

935

 23.3

 2

7

2.5

88.7

 0.78

 0.45

0.75

 1

100L

 8

650

 2.7

1.8

5.5

2.2

 66.2

0.6

0.03

1.1

1.5

 100L

 8

660

 3.5

 1.8

5.5

 2.2

 70.8

 0.62

0.03

1.5

2

112M

 8

 670

4.5

 1.8

6

 2

74.1

 0.66

 0.06

2.2

 3.0

 132S

8

680

 6.1

 1.7

 6

2.3

77.6

 0.66

 0.1

3.7

5.0

160M

8

690

9.8

 1.7

6

2.4

 81.4

 0.68

 0.25

5.5

 7.5

160M

 8

690

 14.2

 1.8

 6

 2.3

 83.8

 0.7

0.35

7.5

 10.0

 160L

 8

695

 19

1.7

6

2.3

85.3

0.72

0.45

9.3

12.5

 180L

8

700

 22

1.7

6

2.2

 86

0.72

 1.0

11.0

 15.0

 180L

8

700

26

1.7

6

 2.1

 86.9

 0.72

 1.0

15.0

 20.0

 200L

 8

705

 35

 1.7

 6

2.1

 88

 0.75

 1.0

Dimension Details

Frame

D1

D2

D3

F

G

GA

L1

L2

L3

E

P max

M PCD

N

S

ZNO

T

LA

X

71

15

14

M12

5

11

16

50

40

65

155

160

130

110

10

4

3.5

9

35

80

20

19

M16

6

15.5

21.5

50

55

65

170

200

165

130

12

4

3.5

10

45

90S

25

24

M16

8

20

27

50

55

65

170

200

165

130

12

4

3.5

10

45

90L

25

24

M16

8

20

27

50

55

65

170

200

165

130

12

4

3.5

10

45

100L

30

28

M24

8

24

31

50

55

65

170

250

215

180

15

4

4

11

45

112M

30

28

M24

8

24

31

50

55

65

170

250

215

180

15

4

4

11

45

132S

40

38

M30

10

33

41

75

75

70

220

300

265

230

15

4

4

12

65

132M

40

38

M30

10

33

41

75

75

70

220

300

265

230

15

4

4

12

65

160M

45

42

M30

12

37

45

75

75

70

220

350

300

250

19

4

5

13

65

160L

45

42

M30

12

37

45

75

75

70

220

350

300

250

19

4

5

13

65

180L

50

48

M30

14

42.5

51.5

100

120

70

290

350

300

250

19

4

5

13

110

 



Robust and Efficient for Demanding Applications

Designed for continuous (S1) operation, this 3 phase induction motor features a TEFC enclosure, offering excellent protection in cooling tower and HVAC environments. The Class F insulation and squirrel cage rotor ensure safe, reliable performance and minimal maintenance, even under rigorous industrial conditions.


Optimized Performance and Safety

With a service factor of 1.15 and IP55 sealing, this motor handles variable loads while resisting dust and water intrusion. Its low vibration design, deep groove ball bearings, and noise level below 72 dB help create a comfortable and efficient workplace.

FAQs of Cooling Tower 3 Phase Induction Motor:


Q: How does the TEFC enclosure enhance motor performance in industrial settings?

A: The TEFC (Totally Enclosed Fan Cooled) enclosure prevents the ingress of dust, water, and contaminants, ensuring the motor operates efficiently and reliably even in harsh, dusty, or humid environments common in cooling towers and HVAC applications.

Q: What are the benefits of using this motor for cooling tower applications?

A: This motor provides high energy efficiency, robust corrosion resistance, low maintenance requirements, and dependable operation with continuous (S1) duty. Its IP55-rated enclosure and Class F insulation deliver added protection and extended service life in demanding cooling tower settings.

Q: When should I use a three-phase squirrel cage induction motor like this one?

A: This motor is ideal whenever you require reliable, continuous operation, especially in cooling towers, industrial machinery, or HVAC equipment. Its three-phase configuration and high service factor handle variable industrial loads efficiently.

Q: Where is this motor typically installed, and how is it mounted?

A: The motor is frequently installed in cooling towers, HVAC plants, industrial machines, and similar environments. It uses a foot-mounted configuration for secure, stable attachment to a variety of bases or platforms.

Q: What maintenance process is recommended for this motor type?

A: Routine checks should include inspection of bearings, ensuring the TEFC enclosure is intact, and verifying low noise and vibration levels. Minimal lubrication and maintenance are needed due to the deep groove ball bearings and the robust, sealed design.

Q: How does the low vibration and noise level benefit users?

A: Low vibration and noise levels (below 72 dB) reduce mechanical wear, enhance equipment lifespan, and contribute to a quieter, safer working environment, making the motor especially suitable for indoor and industrial locations.

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