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Carrier 30RBP-170R - Page 21

Carrier 30RBP-170R
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For the low pressure single pump motors of 30RQ/RQP 165-520R units (option 116T)
No.
(2)
Description
(3)
165R 180R 210R 230R 270R 310R 330R 370R 400R 430R 470R 520R
1 Nominal e󰀩ciency at full load and nominal voltage % 86,4 86,4 86,4 86,4 86,4 87,5 89,6 89,6 89,6 89,6 89,7 89,7
1 Nominal e󰀩ciency at 75% of full load and nominal voltage % 86,9 86,9 86,9 86,9 86,9 88,2 90,4 90,4 90,4 90,4 90 90
1 Nominal e󰀩ciency at 50% of full load and nominal voltage % 85,7 85,7 85,7 85,7 85,7 87,5 89,9 89,9 89,9 89,9 89 89
2 E󰀩ciency level - IE3
3 Year of manufacture -
This information varies depending on the manufacturer and model at
the time of incorporation. Please refer to the motor name plates,
4
Manufacturer's name and trademark, commercial registration
number and head o󰀩ce of manufacturer
- Same as above
5 Product model number - Same as above
6 Number of motor poles - 2
7-1
Nominal shaft power output at full load and nominal voltage
(400 V)
kW 2,2 2,2 2,2 2,2 2,2 3 4 4 4 4 5,5 5,5
7-2 Maximum input power (400 V)
(4)
kW 2,53 2,53 2,53 2,53 2,53 3,44 4,49 4,49 4,49 4,49 6,17 6,17
8 Nominal input frequency Hz 50
9-1 Nominal voltage V 3 x 400
9-2 Maximum current drawn (400 V) 
(5)
A 4,56 4,56 4,56 4,56 4,56 6,33 7,75 7,75 7,75 7,75 10,40 10,40
10 Nominal speed
r/s -
rpm
48 - 2900
11 Product disassembly, recycling or disposal at end of life -
Disassembly using standard tools. Disposal and recycling using an
appropriate company
12
Operating conditions for which the motor is specically designed
I - Altitudes above sea level m < 1000
(6)
II - Ambient air temperature °C < 40
III - Maximum operating temperature °C
Please refer to the operating conditions given in this manual or in the
specic conditions given in the selection programs.
IV - Potentially explosive atmospheres - Non ATEX environment
For the low pressure dual pump motors of 30RQ/RQP 165-520R units (option 116U)
No.
(2)
Description
(3)
165R 180R 210R 230R 270R 310R 330R 370R 400R 430R 470R 520R
1 Nominal e󰀩ciency at full load and nominal voltage % 85,9 86,4 87,5 87,5 87,5 87,5 89,6 89,6 89,6 89,6 89,7 89,7
1 Nominal e󰀩ciency at 75% of full load and nominal voltage % 86,4 86,9 88,2 88,2 88,2 88,2 90,4 90,4 90,4 90,4 90 90
1 Nominal e󰀩ciency at 50% of full load and nominal voltage % 84,9 85,7 87,5 87,5 87,5 87,5 89,9 89,9 89,9 89,9 89 89
2 E󰀩ciency level - IE3
3 Year of manufacture -
This information varies depending on the manufacturer and model at
the time of incorporation. Please refer to the motor name plates,
4
Manufacturer's name and trademark, commercial registration
number and head o󰀩ce of manufacturer
- Same as above
5 Product model number - Same as above
6 Number of motor poles - 2
7-1
Nominal shaft power output at full load and nominal voltage
(400 V)
kW 1,5 2,2 3 3 3 3 4 4 4 4 5,5 5,5
7-2 Maximum input power (400 V)
(4)
kW 1,76 2,53 3,44 3,44 3,44 3,44 4,49 4,49 4,49 4,49 6,17 6,17
8 Nominal input frequency Hz 50
9-1 Nominal voltage V 3 x 400
9-2 Maximum current drawn (400 V) 
(5)
A 3,17 4,56 6,33 6,33 6,33 6,33 7,75 7,75 7,75 7,75 10,40 10,40
10 Nominal speed
r/s -
rpm
48 - 2900
11 Product disassembly, recycling or disposal at end of life -
Disassembly using standard tools. Disposal and recycling using an
appropriate company
12
Operating conditions for which the motor is specically designed
I - Altitudes above sea level m < 1000
(6)
II - Ambient air temperature °C < 40
III - Maximum operating temperature °C
Please refer to the operating conditions given in this manual or in the
specic conditions given in the selection programs.
IV - Potentially explosive atmospheres - Non ATEX environment
(1)  Required by regulation No. 2019/1781 concerning the application of directive 2009/125/EC on the ecodesign requirements for electric motors.
(2)  Item number imposed by regulation No. 2019/1781, annex I2b.
(3)  Description given by regulation No. 2019/1781, annex I2b.
(4)  To  obtain  the  maximum  input  power  for  a  unit  with  a  hydraulic  module,  add  the  “maximum  operating  input  power”  for  the  unit  (see  Electrical  data  table)  to  the 
pump power.
(5)  To obtain the maximum operating intensity  for a unit with a hydraulic  module,  add the “maximum operating intensity”  for  the unit (see Electrical data table)  to the 
pump intensity.
(6)  Above 1000 m, a degradation of 3% for each 500 m should be taken into consideration.
5 - PHYSICAL AND ELECTRICAL DATA FOR THE UNITS
21

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