50PG03−16
Single−Package Rooftop Units
Electric Heater and
Single Point Box Accessories
Installation Instructions
Heater Part Numbers: CRHEATER200A00 through CRHEATER263A00
Single Point Box Part Numbers: CSINGLE028A00 through CRSINGLE036A00
HEATER PACKAGE CONTENTS
injury or product and property damage. NOTE is used to
highlight suggestions which will result in enhanced installation,
reliability, or operation.
ITEM
Heater Module
Wiring Label
QUANTITY
1
1
!
CAUTION
SINGLE POINT BOX PACKAGE CONTENTS
ELECTRICAL OPERATION HAZARD
ITEM
QUANTITY
Single Point Box
Terminal Block
Wiring Label
Fuse Block†
1
*
1
*
Failure to follow this caution may cause personal injury and
damage to equipment.
Field modification of electric heat staging may result in the
overriding of electric heat safety switches and is prohibited.
*
†
Quantity varies by kit.
If single point box has fuses, contents will include a hinged cover,
rivets, and magnetic latch.
TABLE OF CONTENTS
!
CAUTION
SAFETY CONSIDERATIONS . . . . . . . . . . . . . . . . . . . . . . . . 1
GENERAL . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1
INSTALLATION . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1-31
Heater Installation . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1
Install Single Point Box . . . . . . . . . . . . . . . . . . . . . . . . . . . 4
Configuring ComfortLinkt Control . . . . . . . . . . . . . . . . . 4
PROPERTY DAMAGE HAZARD
Failure to follow this caution may result in property
damage.
When removing panels from the unit, be careful not to
damage the roof or other surfaces with the panels.
SAFETY CONSIDERATIONS
GENERAL
Improper installation, adjustment, alteration, service,
maintenance, or use can cause explosion, fire, electrical shock, or
other conditions which may cause personal injury or property
damage. Consult a qualified installer, service agency, or your
distributor or branch for information or assistance. The qualified
installeror agency must use factory−authorized kits or accessories
when modifying this product. Refer to the individual instructions
packaged with kits or accessories when installing.
Follow all safety codes. Wear safety glasses and work gloves. Use
quenching cloth for brazing operations. Have fire extinguisher
available. Read these instructions thoroughly and follow all
warnings or cautions attached to the unit. Consult local building
codes and National Electrical Code (NEC) for special
requirements.
This installation instruction covers accessory heaters
CRHEATER200A00 through CRHEATER263A00. A single
point box may be required for some heaters. The single point box
must be ordered separately when required.
INSTALLATION
Heater Installation
Perform the following procedure to install the accessory electric
heaters:
1. Turn off power to the unit. Install “Lock−Out Tag−Out”
tag on unit disconnect or breaker.
2. Configure unit for horizontal duct configuration, if
desired.
NOTE: The 50PG16 size requires an accessory conversion kit
for converting from vertical to horizontal duct configuration.
Recognize safety information. This is the safety−alert symbol
.
When you see this symbol on the furnace and in
3. Permanently mark the appropriate block on the unit
nameplate for the accessory heater installed.
4. Verify unit input power wire sizing and circuit protection
per requirements on the unit nameplate for the accessory
heater installed.
instructions or manuals, be alert to the potential for personal
injury.
Understand the signal words DANGER, WARNING, and
CAUTION. These words are used with the safety−alert symbol.
DANGER identifies the most serious hazards which will result in
severe personal injury or death. WARNING signifies a hazard
which could result in personal injury or death. CAUTION is used
to identify unsafe practices which may result in minor personal
5. Open the electric heater section, compressor section, and
indoor fan section access doors. (See Fig. 1.)
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BLOCK-OFF
PLATE
C06183
Fig. 2 − Block−OffPlate
MANUAL RESET
LIMIT SWITCH
ACCESSORY
ELECTRIC
HEATER
ASSEMBLY
ROUTE HEATER POWER WIRES BEHIND
COMPRESSORS AS SHOWN.
(COMPRESSORS REMOVED FOR CLARITY)
SINGLE POINT BOX
C06184
Fig. 3 − ElectricHeater Installation
3
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SINGLE
POINT
BOX
POWER WIRES ARE
ROUTED INTO BOTTOM
OF SINGLE POINT BOX
ROUTE HEATER POWER WIRES
THROUGH RACEWAY AND BEHIND
COMPRESSORS (COMPRESSORS
REMOVED FOR CLARITY)
CONNECT PL3 PLUG
AND RECEPTACLE
HEATER ASSEMBLY
C06185
Fig. 4 − ElectricHeater Wire Routing
only a terminal block; no fuses are provided. Fuses are not
required per the National Electrical Code in these single point
accessories since the circuit is below 60 amps. Field−supplied
pressure connectors (Kerneys) may be used in place of these
single point boxes.
All fuses provided in the single point boxes are rated at 60 amps.
UNIT VOLTAGE
208/230
460
FUSE VOLTAGE RATING
UL CLASS
250
600
600
RK5
T
575
T
To install single point box:
1. Remove single point box access panel located on the end
of the unit. Save panel and screws. (See Fig. 3.)
2. Using the screws provided, install the terminal blocks and
fuse blocks (if required). (See Fig. 6-12.)
3. If required, using the wires provided, connect the terminal
block to the fuse block. (See Fig. 13-22.)
4. Route power wires from the control box and electric
heaters into the single point box. Route power wires from
the disconnect into the single point box through power
entry hole located next to the access panel. Make all
wiring connections.
AFFIX HEATER WIRING LABEL DIAGRAM
SUPPLIED WITH HEATERS ON
FOIL FACE INSULATION IN AREA SHOWN
5. If single point box has fuses, install hinged cover using
rivets provided. Install magnetic latch in rectangular hole.
(See Fig. 7-10 and 12.)
C06186
Fig. 5 − Heater Label Location
6. Install wiring label on back of single point box access
panel or on hinged cover.
7. Replace single point box access panel removed in item 1.
Install Single Point Box
See Tables 1 and 2 to determine the correct single point box
accessoryfor the selected heater. The appropriate single point box
is determined by the MOCP (maximum overcurrent protection)
for the heater and unit combination. Refer to the correct figure for
correct installation of the single point box components.
Configuring the ComfortLinkt Control
The ComfortLink control must be configured for Electric Heat
(default is No Heat). In addition, if a single-stage electric heater
has been installed, it will be necessary to change the N.HTR
configuration (2 is the default setting). These configurations are
changed through the Scrolling Marquee Display or a Carrier
network device.
Single
point
accessories
CRSINGLE028A00
and
CRSINGLE030A00 are for use on units where the combined
MOCP rating is less than 60 amps. These accessories contain
4
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NOTE: Consult the Controls and Troubleshooting Guide for in
depth instructions on using and configuring the ComfortLink
control. The following instructions are written for the Scrolling
Marquee Display or Navigator™ accessory.
1. The ComfortLink control must be configured to use the
electric heater accessory. A password may be required to
edit the configurations depending on the previous settings
configured in the unit. Default password is “1111.”
2. To configure the ComfortLink control, use the arrow keys
to scroll the red LED on the display to the “Configuration”
position and press ENTER.
3. Use the arrow keys to scroll down until the display shows
“HEAT.” This is the Heating Configuration Sub Mode.
Press ENTER.
4. The ComfortLink control will display the Type of Heat
(HT.TY) setting. Press ENTER once to select the HT.TY
setting for configuration. Press ENTER again. A “0” will
begin flashing.
5. Use the arrow keys to change the configuration from “0”
(No Heat) to “2” (Electric Heat) and press ENTER. Press
ESCAPE to save the setting.
TERMINAL
BLOCKS
(3-PHASE SHOWN)
6. For single-stage electric heaters only (10 kW or less), the
Number of Heat Stages must be changed from 2 to 1.
C06187
Fig. 6 − Single Point Box
a. Use the arrow keys to scroll down to the Number of Heat
Stages setting (N.HTR). Press ENTER to select the
N.HTR setting for configuration.
CRSINGLE028A00, CRSINGLE030A00
b. Press ENTER again. Configuration value will flash.
c. Use the arrow keys to change the configuration from “2”
(2 stages of heat) to “1” (one stage of heat) and press
ENTER.
d. Press ESCAPE to save the configuration change.
7. Configuration of ComfortLink™ control is now complete.
Pressing ESCAPE multiple times will return the
display to the auto-scroll setting.
FUSE BLOCK
8. Close and secure all access doors.
(3-PHASE SHOWN)
THERMOSTAT CONTROL
For heat mode to operate, the accessory thermostat must be
connected to the corresponding W1 and W2 terminals on the field
connection terminal board located in the unit control box.
HINGED COVER
SPACE TEMPERATURE CONTROL
(Direct Wired or CCN)
C06188
For heat mode to operate, a jumper must be connected between R
and W1 on the field-connection terminal board located in the unit
control box.
Fig. 7 − Single Point Box
CRSINGLE029A00, CRSINGLE031A00
FUSE BLOCK
TERMINAL BLOCK
HINGED COVER
C06189
Fig. 8 − Single Point Box CRSINGLE032A00
5
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FUSE BLOCK
HINGED COVER
TERMINAL BLOCK
C06190
Fig. 9 − Single Point Box CRSINGLE033A00
FUSE BLOCK
HINGED
COVER
TERMINAL BLOCK
C06191
Fig. 10 − Single Point Box CRSINGLE034A00
TERMINAL BLOCK
C06192
Fig. 11 − Single Point Box CRSINGLE035A00
6
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FUSE BLOCK
HINGED
COVER
TERMINAL BLOCK
C06192
Fig. 12 − Single Point Box CRSINGLE036A00
UNIT CONTROL BOX
UNIT CONTROL BOX
UNIT POWER
PIGTAILS
UNIT POWER
PIGTAILS
SINGLE POINT BOX
SINGLE POINT BOX
FB1
TO
FIELD
POWER
HEATER WIRES
SUPPLIED WITH
HEATERS
TO
FIELD
POWER
HEATER WIRES
SUPPLIED WITH
HEATERS
12 GA WIRES
HEATERS
HEATERS
15-25 kW ONLY
FUSE BLOCK
FUSE BLOCK
FUSE BLOCK
25 kW ONLY
FUSE BLOCK
C06194
C06195
Fig. 13 − Heater Wiring CRSINGLE028A00
Fig. 14 − Heater Wiring CRSINGLE029A00
7
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UNIT CONTROL BOX
UNIT CONTROL BOX
UNIT POWER
PIGTAILS
UNIT POWER
PIGTAILS
SINGLE POINT BOX
SINGLE POINT BOX
FB1
TO
FIELD
POWER
HEATER WIRES
SUPPLIED WITH
HEATERS
HEATER WIRES
SUPPLIED WITH
HEATERS
TO
FIELD
POWER
HEATERS
HEATERS
FUSE BLOCK
FUSE BLOCK
FUSE BLOCK
FUSE BLOCK
C06196
C06198
Fig. 15 − Heater Wiring CRSINGLE030A00
Fig. 17 − Heater Wiring CRSINGLE031A00, 35−50 kW
UNIT CONTROL BOX
UNIT CONTROL BOX
UNIT POWER
PIGTAILS
UNIT POWER
PIGTAILS
SINGLE POINT BOX
FB1
TB1
TO
FIELD
POWER
HEATER WIRES
SUPPLIED WITH
TO
FIELD
POWER
HEATER WIRES
SUPPLIED WITH
HEATERS
SINGLE POINT BOX
HEATERS
HEATERS
HEATERS
35-60 kW ONLY
FUSE BLOCK
FUSE BLOCK
FUSE BLOCK
60 kW
ONLY
C06197
Fig. 16 − Heater Wiring CRSINGLE031A00
C06199
Fig. 18 − Heater Wiring CRSINGLE032A00
8
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UNIT CONTROL BOX
UNIT POWER
PIGTAILS
SINGLE POINT BOX
FB1
TB1
HEATER WIRES
SUPPLIED WITH
HEATERS
TO
FIELD
POWER
HEATERS
FUSE BLOCK
FUSE BLOCK
40,50,60 kW ONLY
C06202
Fig. 21 − Heater Wiring CRSINGLE035A00
C06200
Fig. 19 − Heater Wiring CRSINGLE033A00
C06203
Fig. 22 − Heater Wiring CRSINGLE036A00
C06201
Fig. 20 − Heater Wiring CRSINGLE034A00
9
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Table 1 — Electrical Data — Units Without Optional Powered Convenience Outlet
VOLTAGE
RANGE
COMPRESSOR
DISCONNECT
SIZE
NOMINAL
POWER
ELECTRIC HEAT
POWER SUPPLY
POWER
EXHAUST
FLA
CRSINGLE
PART NO.
(Note 3)
(EA)
UNIT
50PG
OFM
FLA
IFM
FLA
IFM
WIRING
FIG. NO.
TYPE
SUPPLY
CRHEATER
NOMINAL
KW*
MIN
MAX
RLA
LRA
FLA
MCA
MOCP{
FLA
LRA
VOLTS−PH−HZ
PART NO.
ꢀ
ꢀ
ꢀ/ꢀ
21.8/21.8 30/30
ꢀ
21/21 73/73
21/21 73/73
26/29 73/73
36/40 73/73
45/52 73/73
21/21 73/73
21/21 73/73
26/29 73/73
36/40 73/73
45/52 73/73
23/23 75/75
23/23 75/75
27/30 75/75
37/42 75/75
47/53 75/75
23/23 75/75
23/23 75/75
27/30 75/75
37/42 75/75
47/53 75/75
24/24 96/96
24/24 96/96
26/29 96/96
36/40 96/96
45/52 96/96
65/75 96/96
24/24 96/96
24/24 96/96
26/29 96/96
36/40 96/96
45/52 96/96
65/75 96/96
26/26 98/98
26/26 98/98
27/30 98/98
37/42 98/98
47/53 98/98
67/76 98/98
26/26 98/98
26/26 98/98
27/30 98/98
37/42 98/98
47/53 98/98
67/76 98/98
20/20 90/90
20/20 90/90
20/20 90/90
23/26 90/90
29/32 90/90
40/45 90/90
20/20 90/90
20/20 90/90
20/20 90/90
23/26 90/90
29/32 90/90
40/45 90/90
ꢀ
13
13
13
13
ꢀ
13
13
13
13
ꢀ
13
13
13
13
ꢀ
13
13
13
13
ꢀ
13
13
13
13
14
ꢀ
13
13
13
13
14
ꢀ
13
13
13
13
14
ꢀ
13
13
13
13
14
ꢀ
15
15
15
15
15
ꢀ
15
15
15
15
15
200A00
201A00
202A00
203A00
ꢀ
10.8/12.5 2.3/ꢁ3.0 21.8/21.8 30/30
17.3/20.0 3.8/ꢁ5.0 27.8/31.1 30/35
26.0/30.0 5.6/ꢁ7.5 38.6/43.6 40/45
34.7/40.0 7.5/10.0 49.5/56.1 50/60
028A00
028A00
028A00
028A00
ꢀ
Low
High
Low
High
ꢀ
ꢀ
ꢀ/ꢀ
21.8/21.8 30/30
200A00
201A00
202A00
203A00
ꢀ
10.8/12.5 2.3/ꢁ3.0 21.8/21.8 30/30
17.3/20.0 3.8/ꢁ5.0 27.8/31.1 30/35
26.0/30.0 5.6/ꢁ7.5 38.6/43.6 40/45
34.7/40.0 7.5/10.0 49.5/56.1 50/60
028A00
028A00
028A00
028A00
ꢀ
03
208/230-1-60 187 253 12.8
60
0.9 4.9
ꢀ
ꢀ/ꢀ
23.2/23.2 30/30
200A00
201A00
202A00
203A00
ꢀ
10.8/12.5 2.3/ꢁ3.0 23.2/23.5 30/30
17.3/20.0 3.8/ꢁ5.0 29.5/32.9 30/35
26.0/30.0 5.6/ꢁ7.5 40.4/45.4 45/50
34.7/40.0 7.5/10.0 51.2/57.9 60/60
028A00
028A00
028A00
028A00
ꢀ
1.4
ꢀ
ꢀ/ꢀ
23.2/23.2 30/30
200A00
201A00
202A00
203A00
ꢀ
10.8/12.5 2.3/ꢁ3.0 23.2/23.5 30/30
17.3/20.0 3.8/ꢁ5.0 29.5/32.9 30/35
26.0/30.0 5.6/ꢁ7.5 40.4/45.4 45/50
34.7/40.0 7.5/10.0 51.2/57.9 60/60
028A00
028A00
028A00
028A00
ꢀ
ꢀ
ꢀ/ꢀ
25.0/25.0 30/30
200A00
201A00
202A00
203A00
204A00
ꢀ
10.8/12.5 ꢁ2.3/ꢁ3.0 25.0/25.0 30/30
17.3/20.0 ꢁ3.8/ꢁ5.0 27.8/31.1 30/40
26.0/30.0 ꢁ5.6/ꢁ7.5 38.6/43.6 40/45
34.7/40.0 ꢁ7.5/10.0 49.5/56.1 50/60
52.0/60.0 11.3/15.0 71.1/81.1 80/90
028A00
028A00
028A00
028A00
029A00
ꢀ
Low
High
Low
High
Low
High
ꢀ
1.4
ꢀ
ꢀ
ꢀ/ꢀ
25.0/25.0 30/30
200A00
201A00
202A00
203A00
204A00
ꢀ
10.8/12.5 ꢁ2.3/ꢁ3.0 25.0/25.0 30/30
17.3/20.0 ꢁ3.8/ꢁ5.0 27.8/31.1 30/40
26.0/30.0 ꢁ5.6/ꢁ7.5 38.6/43.6 40/45
34.7/40.0 ꢁ7.5/10.0 49.5/56.1 50/60
52.0/60.0 11.3/15.0 71.1/81.1 80/90
028A00
028A00
028A00
028A00
029A00
ꢀ
208/230-1-60 187 253 15.4
83
0.9 4.9
ꢀ
ꢀ/ꢀ
26.4/26.4 40/40
200A00
201A00
202A00
203A00
204A00
ꢀ
10.8/12.5 ꢁ2.3/ꢁ3.0 26.4/26.4 40/40
17.3/20.0 ꢁ3.8/ꢁ5.0 29.5/32.9 40/40
26.0/30.0 ꢁ5.6/ꢁ7.5 40.4/45.4 45/50
34.7/40.0 ꢁ7.5/10.0 51.2/57.9 60/60
52.0/60.0 11.3/15.0 72.9/82.9 80/90
028A00
028A00
028A00
028A00
029A00
ꢀ
04
ꢀ
ꢀ/ꢀ
26.4/26.4 40/40
200A00
201A00
202A00
203A00
204A00
ꢀ
10.8/12.5 ꢁ2.3/ꢁ3.0 26.4/26.4 40/40
17.3/20.0 ꢁ3.8/ꢁ5.0 29.5/32.9 40/40
26.0/30.0 ꢁ5.6/ꢁ7.5 40.4/45.4 45/50
34.7/40.0 ꢁ7.5/10.0 51.2/57.9 60/60
52.0/60.0 11.3/15.0 72.9/82.9 80/90
028A00
028A00
028A00
028A00
029A00
ꢀ
ꢀ
ꢀ/ꢀ
20.2/20.2 30/30
207A00
208A00
209A00
210A00
211A00
ꢀ
ꢁ6.3/ꢁ7.2 ꢁ2.3/ꢁ3.0 20.2/20.2 30/30
10.0/11.5 ꢁ3.8/ꢁ5.0 20.2/20.6 30/30
15.0/17.3 ꢁ5.6/ꢁ7.5 24.9/27.8 30/30
20.0/23.1 ꢁ7.5/10.0 31.1/35.0 35/40
30.0/34.6 11.3/15.0 43.6/49.4 45/50
030A00
030A00
030A00
030A00
030A00
ꢀ
208/230-3-60 187 253 11.5
77
0.9 4.9
ꢀ
ꢀ/ꢀ
20.2/20.2 30/30
207A00
208A00
209A00
210A00
211A00
ꢁ6.3/ꢁ7.2 ꢁ2.3/ꢁ3.0 20.2/20.2 30/30
10.0/11.5 ꢁ3.8/ꢁ5.0 20.2/20.6 30/30
15.0/17.3 ꢁ5.6/ꢁ7.5 24.9/27.8 30/30
20.0/23.1 ꢁ7.5/10.0 31.1/35.0 35/40
30.0/34.6 11.3/15.0 43.6/49.4 45/50
030A00
030A00
030A00
030A00
030A00
Example: Supply voltage is 460-3-60
LEGEND
Full Load Amps
FLA
−
AB = 224 v
BC = 231 v
AC = 226 v
HACR − Heating, Air Conditioning and Refrigeration
IFM
−
−
−
Indoor − Fan Motor
Locked Rotor Amps
Minimum Circuit Amps
224 + 231 + 226
3
LRA
MCA
Average Voltage =
681
3
=
MOCP − Maximum Overcurrent Protection
NEC
OFM
RLA
−
−
−
National Electrical Code
Outdoor−Fan Motor
Rated Load Amps
=
227
Determine maximum deviation from average voltage.
ꢂ(AB) 227 – 223 = 3 v
ꢂ(BC) 231 – 227 = 4 v
*
†
Heater capacity (kW) is based on heater voltage of 208 v, 240 v, or 480 v. If power distribu-
tion voltage to unit varies from rated heater voltage, heater kW will vary accordingly.
Fuse or HACR circuit breaker.
ꢂ(AC) 227 – 226 = 1 v
Maximum deviation is 4 v.
Determine percent of voltage imbalance.
NOTES:
1. In compliance with NEC requirements for multimotor and combination load equip-
ment (refer to NEC Articles 430 and 440), the overcurrent protective device for the
unit shall be fuse or HACR breaker.
4
% Voltage Imbalance
= 100 x
227
2. Unbalanced 3-Phase Supply Voltage
Never operate a motor where a phase imbalance in supply voltage is greater than
2%. Use the following formula to determine the percentage of voltage imbalance.
= 1.76%
This amount of phase imbalance is satisfactory as it is below the maximum allowable 2%.
IMPORTANT: If the supply voltage phase imbalance is more than 2%, contact your local electric
utility company immediately.
max voltage deviation from average voltage
% Voltage Imbalance
= 100 x
average voltage
3. Single point kits CRSINGLE028A00 and CRSINGLE030A00 are not required if
field−supplied pressure connectors are used.
10
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Table 1 — Electrical Data — Units Without Optional Powered Convenience Outlet (cont)
VOLTAGE
COMPRESSOR
ELECTRIC HEAT
POWER SUPPLY
DISCONNECT SIZE
NOMINAL
POWER
EXHAUST
FLA
CRSINGLE
PART NO.
(NOTE3)
RANGE
(EA)
UNIT
50PG
OFM
FLA
IFM
FLA
IFM
WIRING
FIG. NO.
POWER SUPPLY
VOLTS−PH−HZ
TYPE
CPHEATER
NOMINAL
KW*
MIN
MAX
RLA
LRA
FLA
MCA
MOCP†
FLA
LRA
PART NO.
ꢀ
ꢀ
ꢀ/ꢀ
21.6/21.6
30/30
30/30
30/30
30/30
35/40
50/60
30/30
30/30
30/30
30/30
35/40
50/60
15
ꢀ
22/22
22/22
22/22
25/27
30/34
42/47
22/22
22/22
22/22
25/27
30/34
42/47
ꢁ9
92/92
92/92
92/92
92/92
92/92
92/92
92/92
92/92
92/92
92/92
92/92
92/92
42
ꢀ
15
15
15
15
15
ꢀ
15
15
15
15
15
ꢀ
15
15
15
15
15
ꢀ
15
15
15
15
15
ꢀ
15
15
15
15
15
ꢀ
15
15
15
15
15
ꢀ
15
15
ꢀ
15
15
ꢀ
15
15
ꢀ
15
15
ꢀ
13
13
13
14
14
ꢀ
13
13
13
14
14
ꢀ
13
13
13
14
14
ꢀ
13
13
13
14
14
ꢀ
15
15
15
15
16
ꢀ
15
15
15
15
16
207A00
208A00
209A00
210A00
211A00
ꢀ
6.3/ꢁ7.2 2.3/ꢁ3.0 21.6/21.6
10.0/11.5 ꢁ3.8/ꢁ5.0 21.6/22.3
15.0/17.3 ꢁ5.6/ꢁ7.5 26.6/29.5
20.0/23.1 ꢁ7.5/10.0 32.9/36.7
30.0/34.6 11.3/15.0 45.4/51.2
030A00
030A00
030A00
030A00
030A00
ꢀ
Low
High
Low
High
Low
High
208/230-3-60
(cont)
187 253
414 506
518 632
11.5
77
0.9 4.9
1.4
ꢀ
ꢀ/ꢀ
21.6/21.6
207A00
208A00
209A00
210A00
211A00
ꢀ
ꢁ6.3/ꢁ7.2 ꢁ2.3/ꢁ3.0 21.6/21.6
10.0/11.5 ꢁ3.8/ꢁ5.0 21.6/22.3
15.0/17.3 ꢁ5.6/ꢁ7.5 26.6/29.5
20.0/23.1 ꢁ7.5/10.0 32.9/36.7
30.0/34.6 11.3/15.0 45.4/51.2
030A00
030A00
030A00
030A00
030A00
ꢀ
ꢀ
ꢀ
ꢁ3.0
ꢁ5.0
ꢁ7.5
10.0
15.0
ꢀ
9.0
214A00
215A00
216A00
217A00
218A00
ꢀ
3.5
ꢁ9.0
ꢁ9.8
13.5
17.1
24.3
ꢁ9.0
ꢁ9.0
ꢁ9.8
13.5
17.1
24.3
ꢁ9.6
ꢁ9.6
10.6
14.2
17.8
25.0
ꢁ9.6
ꢁ9.6
10.6
14.2
17.8
25.0
ꢁ8.0
14.1
20.0
ꢁ8.0
14.1
20.0
ꢁ9.4
15.9
21.8
ꢁ9.4
15.9
21.8
15
030A00
030A00
030A00
030A00
030A00
ꢀ
ꢁ9
42
5.8
15
ꢁ9
42
ꢁ8.7
11.5
17.3
ꢀ
15
12
42
20
16
42
25
22
42
ꢀ
15
ꢁ9
42
214A00
215A00
216A00
217A00
218A00
ꢀ
ꢁ3.5
ꢁ5.8
ꢁ87
11.5
17.3
ꢀ
ꢁ3.0
ꢁ5.0
ꢁ7.5
10.0
15.0
ꢀ
15
030A00
030A00
030A00
030A00
030A00
ꢀ
ꢁ9
42
15
ꢁ9
42
15
12
42
20
16
42
25
22
42
04
(cont)
460-3-60
ꢁ5.1
35
0.5 2.1
15
10
43
214A00
215A00
216A00
217A00
218A00
ꢀ
ꢁ3.5
ꢁ5.8
ꢁ8.7
11.5
17.3
ꢀ
ꢁ3.0
ꢁ5.0
ꢁ7.5
10.0
15.0
ꢀ
15
030A00
030A00
030A00
030A00
030A00
ꢀ
10
43
15
10
43
15
13
43
20
16
43
30
23
43
0.6
15
10
43
214A00
215A00
216A00
217A00
218A00
ꢀ
ꢁ3.5
ꢁ5.8
ꢁ8.7
11.5
17.3
ꢀ
ꢁ3.0
ꢁ5.0
ꢁ7.5
10.0
15.0
ꢀ
15
030A00
030A00
030A00
030A00
030A00
ꢀ
10
43
15
10
43
15
13
43
20
16
43
30
23
43
15
ꢁ8
37
221A00
222A00
ꢀ
ꢁ9.2
13.9
ꢀ
10.0
15.0
ꢀ
15
030A00
030A00
ꢀ
13
37
Low
High
Low
High
25
18
37
ꢀ
15
ꢁ8
37
221A00
222A00
ꢀ
ꢁ9.2
13.9
ꢀ
10.0
15.0
ꢀ
15
030A00
030A00
ꢀ
13
37
25
18
37
575-3-60
ꢁ4.3
31.0
0.4 2.2
15
10
39
221A00
222A00
ꢀ
ꢁ9.2
13.9
ꢀ
10.0
15.0
ꢀ
20
030A00
030A00
ꢀ
15
39
25
20
39
1.4
15
10
39
221A00
222A00
ꢀ
ꢁ9.2
13.9
ꢀ
10.0
15.0
ꢀ/ꢀ
20
030A00
030A00
ꢀ
15
39
25
20
39
31.4/ꢁ31.4 ꢁ50/ꢁ50
30/30 122/122
30/30 122/122
36/40 122/122
45/52 122/122
65/76 122/122
85/98 122/122
33/ꢁ33 148/148
33/ꢁ33 148/148
38/ꢁ43 148/148
48/ꢁ54 148/148
68/ꢁ77 148/148
88/100 148/148
32/32 124/124
32/32 124/124
37/42 124/124
47/53 124/124
67/76 124/124
87/99 124/124
34/ꢁ34 150/150
34/ꢁ34 150/150
40/ꢁ44 150/150
50/ꢁ56 150/150
69/ꢁ79 150/150
89/102 150/150
23/23 104/104
23/23 104/104
23/26 104/104
29/32 104/104
40/45 104/104
52/59 104/104
24/24 123/123
24/24 123/123
24/26 123/123
29/33 123/123
41/46 123/123
52/59 123/123
201A00
202A00
203A00
204A00
205A00
ꢀ
17.3/20.0 ꢁ3.8/ꢁ5.0 31.4/ꢁ31.4 ꢁ50/ꢁ50
26.0/30.0 ꢁ5.6/ꢁ7.5 38.6/ꢁ43.6 ꢁ50/ꢁ50
34.7/40.0 ꢁ7.5/10.0 49.5/ꢁ56.1 ꢁ50/ꢁ60
52.0/60.0 11.3/15.0 71.1/ꢁ81.1 ꢁ80/ꢁ90
69.3/80.0 15.0/20.0 92.8/106.1 100/110
028A00
028A00
028A00
029A00
029A00
ꢀ
4.9
Low
High
Low
High
ꢀ
ꢀ
ꢀ/ꢀ
33.5/ꢁ33.5 ꢁ50/ꢁ50
201A00
202A00
203A00
204A00
205A00
ꢀ
17.3/20.0 ꢁ3.8/ꢁ5.0 33.5/ꢁ33.8 ꢁ50/ꢁ50
26.0/30.0 ꢁ5.6/ꢁ7.5 41.2/ꢁ46.3 ꢁ50/ꢁ50
34.7/40.0 ꢁ7.5/10.0 52.1/ꢁ58.8 ꢁ60/ꢁ60
52.0/60.0 11.3/15.0 73.7/ꢁ83.8 ꢁ80/ꢁ90
69.3/80.0 15.0/20.0 95.4/108.8 100/110
028A00
028A00
028A00
029A00
029A00
ꢀ
7.0
208/230-1-60 187 253
20.5
109
0.9
ꢀ
ꢀ/ꢀ
32.8/ꢁ32.8 ꢁ50/ꢁ50
201A00
202A00
203A00
204A00
205A00
ꢀ
17.3/20.0 ꢁ3.8/ꢁ5.0 32.8/ꢁ32.9 ꢁ50/ꢁ50
26.0/30.0 ꢁ5.6/ꢁ7.5 40.4/ꢁ45.4 ꢁ50/ꢁ50
34.7/40.0 ꢁ7.5/10.0 51.2/ꢁ57.9 ꢁ60/ꢁ60
52.0/60.0 11.3/15.0 72.9/ꢁ82.9 ꢁ80/ꢁ90
69.3/80.0 15.0/20.0 94.5/107.9 100/110
028A00
028A00
028A00
029A00
029A00
ꢀ
4.9
05
1.4
ꢀ
ꢀ/ꢀ
34.9/ꢁ34.9 ꢁ50/ꢁ50
201A00
202A00
203A00
204A00
205A00
ꢀ
17.3/20.0 ꢁ3.8/ꢁ5.0 34.9/ꢁ35.5 ꢁ50/ꢁ50
26.0/30.0 ꢁ5.6/ꢁ7.5 43.0/ꢁ48.0 ꢁ50/ꢁ50
34.7/40.0 ꢁ7.5/10.0 53.8/ꢁ60.5 ꢁ60/ꢁ70
52.0/60.0 11.3/15.0 75.5/ꢁ85.5 ꢁ80/ꢁ90
69.3/80.0 15.0/20.0 97.2/110.5 100/125
028A00
028A00
028A00
029A00
029A00
ꢀ
7.0
ꢀ
ꢀ/ꢀ
24.0/24.0
30/30
30/30
30/30
35/40
45/50
60/70
30/30
30/30
30/30
35/40
45/50
60/70
208A00
209A00
210A00
211A00
212A00
ꢀ
10.0/11.5 ꢁ3.8/ꢁ5.0 24.0/24.0
15.0/17.3 ꢁ5.6/ꢁ7.5 24.9/27.8
20.0/23.1 ꢁ7.5/10.0 31.1/35.0
30.0/34.6 11.3/15.0 43.6/49.4
40.0/46.2 15.0/20.0 56.2/63.9
030A00
030A00
030A00
030A00
031A00
ꢀ
4.9
Low
208/230-3-60 187 253
14.6
ꢁ91
0.9
ꢀ
ꢀ
ꢀ/ꢀ
24.3/24.3
208A00
209A00
210A00
211A00
212A00
10.0/11.5 ꢁ3.8/ꢁ5.0 24.3/24.3
15.0/17.3 ꢁ5.6/ꢁ7.5 25.3/28.2
20.0/23.1 ꢁ7.5/10.0 31.5/35.4
30.0/34.6 11.3/15.0 44.0/49.8
40.0/46.2 15.0/20.0 56.5/64.2
030A00
030A00
030A00
030A00
031A00
5.2
High
11
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Table 1 — Electrical Data — Units Without Optional Powered Convenience Outlet (cont)
VOLTAGE
COMPRESSOR
(EA)
NOMINAL
POWER
ELECTRIC HEAT
POWER SUPPLY
DISCONNECT SIZE
POWER
EXHAUST
FLA
CRSINGLE
PART NO.
(NOTE3)
RANGE
UNIT
50PG
OFM IFM
FLA FLA
IFM
WIRING
FIG. NO.
SUPPLY
TYPE
CRHEATER
PART NO.
NOMINAL
KW*
MIN MAX
RLA
LRA
FLA
MCA
MOCP†
FLA
LRA
VOLTS−PH−HZ
ꢀ
ꢀ
ꢀ/ꢀ
25.4/25.4
25.4/25.4
26.6/29.5
32.9/36.7
45.4/51.2
57.9/65.6
25.7/25.7
25.7/25.7
27.0/29.9
33.3/37.1
45.8/51.6
58.3/66.0
11.4
30/30
30/30
30/30
40/40
50/60
60/70
30/30
30/30
30/30
40/40
50/60
60/70
15
ꢀ
25/25
25/25
25/27
30/34
42/47
53/60
25/25
25/25
25/28
31/34
42/47
54/61
11
106/106
106/106
106/106
106/106
106/106
106/106
125/125
125/125
125/125
125/125
125/125
125/125
53
ꢀ
15
15
15
15
16
ꢀ
15
15
15
15
16
ꢀ
208A00
209A00
210A00
211A00
212A00
ꢀ
10.0/11.5 ꢁ3.8/ꢁ5.0
15.0/17.3 ꢁ5.6/ꢁ7.5
20.0/23.1 ꢁ7.5/10.0
30.0/34.6 11.3/15.0
40.0/46.2 15.0/20.0
030A00
030A00
030A00
030A00
031A00
ꢀ
4.9
Low
208/230-3-60
(cont)
187 253 14.6
ꢁ91
0.9
1.4
ꢀ
ꢀ/ꢀ
208A00
209A00
210A00
211A00
212A00
ꢀ
10.0/11.5 ꢁ3.8/ꢁ5.0
15.0/17.3 ꢁ5.6/ꢁ7.5
20.0/23.1 ꢁ7.5/10.0
30.0/34.6 11.3/15.0
40.0/46.2 15.0/20.0
030A00
030A00
030A00
030A00
031A00
ꢀ
5.2
High
ꢀ
ꢀ
215A00
216A00
217A00
218A00
219A00
ꢀ
ꢁ5.8
ꢁ8.7
11.5
17.3
23.1
ꢀ
ꢁ5.0
ꢁ7.5
10.0
15.0
20.0
ꢀ
11.4
13.5
17.1
24.3
31.5
11.9
11.9
14.1
17.7
24.9
32.1
12.0
12.0
14.2
17.8
25.0
32.2
12.5
12.5
14.8
18.4
25.7
32.9
ꢁ9.0
14.1
20.0
25.8
8.9
15
15
20
25
35
15
15
15
20
25
35
15
15
15
20
30
35
15
15
15
20
30
35
15
15
25
30
15
15
20
30
15
20
25
30
15
20
25
30
030A00
030A00
030A00
030A00
030A00
ꢀ
11
12
16
22
29
12
12
13
16
23
30
12
12
13
16
23
30
12
12
14
17
24
30
ꢁ9
13
18
24
9
53
53
53
53
53
62
62
62
62
62
62
54
54
54
54
54
54
63
63
63
63
63
63
40
40
40
40
46
46
46
46
42
42
42
42
48
48
48
48
15
15
15
15
15
ꢀ
15
15
15
15
15
ꢀ
15
15
15
15
15
ꢀ
15
15
15
15
15
ꢀ
15
15
15
ꢀ
15
15
15
ꢀ
15
15
15
ꢀ
15
15
15
2.1
Low
High
Low
High
ꢀ
215A00
216A00
217A00
218A00
219A00
ꢀ
ꢁ5.8
ꢁ8.7
11.5
17.3
23.1
ꢀ
ꢁ5.0
ꢁ7.5
10.0
15.0
20.0
ꢀ
030A00
030A00
030A00
030A00
030A00
ꢀ
2.6
460-3-60
414 506 ꢁ7.1
ꢁ46
0.5
215A00
216A00
217A00
218A00
219A00
ꢀ
ꢁ5.8
ꢁ8.7
11.5
17.3
23.1
ꢀ
ꢁ5.0
ꢁ7.5
10.0
15.0
20.0
ꢀ
030A00
030A00
030A00
030A00
030A00
ꢀ
05
(cont)
2.1
0.6
215A00
216A00
217A00
218A00
219A00
ꢀ
ꢁ5.8
ꢁ8.7
11.5
17.3
23.1
ꢀ
ꢁ5.0
ꢁ7.5
10.0
15.0
20.0
ꢀ
030A00
030A00
030A00
030A00
030A00
ꢀ
2.6
221A00
222A00
223A00
ꢀ
ꢁ9.2
13.9
18.5
ꢀ
10.0
15.0
20.0
ꢀ
030A00
030A00
030A00
ꢀ
Low
ꢀ
221A00
222A00
223A00
ꢀ
ꢁ9.2
13.9
18.5
ꢀ
10.0
15.0
20.0
ꢀ
14.0
19.9
25.6
10.4
15.9
21.8
27.5
10.3
15.8
21.6
27.4
030A00
030A00
030A00
ꢀ
13
18
24
10
15
20
25
10
14
20
25
High
575-3-60
518 632
5.0
34.0
0.4 2.0
221A00
222A00
223A00
ꢀ
ꢁ9.2
13.9
18.5
ꢀ
10.0
15.0
20.0
ꢀ
030A00
030A00
030A00
ꢀ
Low
1.4
221A00
222A00
223A00
ꢁ9.2
13.9
18.5
10.0
15.0
20.0
030A00
030A00
030A00
High
Example: Supply voltage is 460-3-60
LEGEND
Full Load Amps
FLA
−
AB = 224 v
BC = 231 v
AC = 226 v
HACR − Heating, Air Conditioning and Refrigeration
IFM
−
−
−
Indoor − Fan Motor
Locked Rotor Amps
Minimum Circuit Amps
224 + 231 + 226
3
LRA
MCA
Average Voltage =
681
3
=
MOCP − Maximum Overcurrent Protection
NEC
OFM
RLA
−
−
−
National Electrical Code
Outdoor−Fan Motor
Rated Load Amps
=
227
Determine maximum deviation from average voltage.
ꢂ(AB) 227 – 223 = 3 v
ꢂ(BC) 231 – 227 = 4 v
*
†
Heater capacity (kW) is based on heater voltage of 208 v, 240 v, or 480 v. If power distribu-
tion voltage to unit varies from rated heater voltage, heater kW will vary accordingly.
Fuse or HACR circuit breaker.
ꢂ(AC) 227 – 226 = 1 v
Maximum deviation is 4 v.
Determine percent of voltage imbalance.
NOTES:
1. In compliance with NEC requirements for multimotor and combination load equip-
ment (refer to NEC Articles 430 and 440), the overcurrent protective device for the
unit shall be fuse or HACR breaker.
4
% Voltage Imbalance
= 100 x
227
2. Unbalanced 3-Phase Supply Voltage
Never operate a motor where a phase imbalance in supply voltage is greater than
2%. Use the following formula to determine the percentage of voltage imbalance.
= 1.76%
This amount of phase imbalance is satisfactory as it is below the maximum allowable 2%.
IMPORTANT: If the supply voltage phase imbalance is more than 2%, contact your local electric
utility company immediately.
max voltage deviation from average voltage
% Voltage Imbalance
= 100 x
average voltage
3. Single point kits CRSINGLE028A00 and CRSINGLE030A00 are not required if
field−supplied pressure connectors are used.
12
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Table 1 — Electrical Data — Units Without Optional Powered Convenience Outlet (cont)
VOLTAGE
COMPRESSOR
(EA)
DISCONNECT
SIZE
ELECTRIC HEAT
POWER SUPPLY
NOMINAL
OFM
FLA
IFM
FLA
POWER
EXHAUST
FLA
IFM
PRSINGLE
PART N0.
(NOTE3)
RANGE
UNIT
50PG
WIRING
FIG. NO.
POWER SUPPLY
VOLTS-PH-HZ
CPHEATER
PART NO.
NOMINAL
KW*
TYPE
MIN MAX
RLA
LRA
FLA
MCA
MOCP†
FLA
LRA
ꢀ
ꢀ
ꢀ/ꢀ
ꢁ40.1/ꢁ40.1 ꢁ60/ꢁ60
ꢀ
ꢁ38ꢁ/38 159/159
ꢁ38/ꢁ38 159/159
ꢁ38/ꢁ40 159/159
ꢁ45/ꢁ52 159/159
ꢁ65/ꢁ75 159/159
ꢁ85/ꢁ98 159/159
105/121 159/159
ꢁ41/ꢁ41 185/185
ꢁ41/ꢁ41 185/185
ꢁ41/ꢁ43 185/185
ꢁ48/ꢁ54 185/185
ꢁ68/ꢁ77 185/185
ꢁ88/100 185/185
ꢀ
13
13
13
14
14
14
ꢀ
13
13
13
14
14
201A00
202A00
203A00
204A00
205A00
206A00
ꢀ
17.3/ꢁ20.0 ꢁ3.8/ꢁ5.0 ꢁ40.1/ꢁ40.1 ꢁ60/ꢁ60
26.0/ꢁ30.0 ꢁ5.6/ꢁ7.5 ꢁ40.1/ꢁ43.6 ꢁ60/ꢁ60
34.7/ꢁ40.0 ꢁ7.5/10.0 ꢁ49.5/ꢁ56.1 ꢁ50/ꢁ60
52.0/ꢁ60.0 11.3/15.0 ꢁ71.1/ꢁ81.1 ꢁ80/ꢁ90
69.3/ꢁ80.0 15.0/20.0 ꢁ92.8/106.1 100/110
86.7/100.0 18.8/25.0 114.4/131.1 125/150
028A00
028A00
028A00
029A00
029A00
029A00
ꢀ
4.9
Low
ꢀ
ꢀ
ꢀ/ꢀ
ꢁ42.2/ꢁ42.2 ꢁ60/ꢁ60
201A00
202A00
203A00
204A00
205A00
17.3/ꢁ20.0 ꢁ3.8/ꢁ5.0 ꢁ42.2/ꢁ42.2 ꢁ60/ꢁ60
26.0/ꢁ30.0 ꢁ5.6/ꢁ7.5 ꢁ42.2/ꢁ46.3 ꢁ60/ꢁ60
34.7/ꢁ40.0 ꢁ7.5/10.0 ꢁ52.1/ꢁ58.8 ꢁ60/ꢁ60
52.0/ꢁ60.0 11.3/15.0 ꢁ73.7/ꢁ83.8 ꢁ80/ꢁ90
69.3/ꢁ80.0 15.0/20.0 ꢁ95.4/108.8 100/110
86.7/100.0 18.8/25.0 117.1/133.8 125/150
028A00
028A00
028A00
029A00
029A00
7.0
High
208/230-1-60 187 253 26.9
145
1.5
206A00
ꢀ
029A00
ꢀ
108/123 185/185
ꢁ40/ꢁ40 161/161
ꢁ40/ꢁ40 161/161
ꢁ40/ꢁ42 161/161
ꢁ47/ꢁ53 161/161
ꢁ67/ꢁ76 161/161
ꢁ89/ꢁ99 161/161
107/122 161/161
ꢁ42/ꢁ42 187/187
ꢁ42/ꢁ42 187/187
ꢁ42/ꢁ44 187/187
ꢁ50/ꢁ56 187/187
ꢁ69/ꢁ79 187/187
ꢁ89/102 187/187
109/125 187/187
14
ꢀ
13
13
13
14
14
14
ꢀ
13
13
13
14
14
14
ꢀ
15
15
15
15
16
16
ꢀ
15
15
15
15
16
16
ꢀ
15
15
15
15
16
16
ꢀ
15
15
15
15
16
16
ꢀ
15
15
15
15
15
15
ꢀ
15
15
15
15
15
15
ꢀ
15
15
15
15
15
15
ꢀ
15
15
15
15
15
15
ꢀ
ꢀ/ꢀ
ꢁ41.5/ꢁ41.5 ꢁ60/ꢁ60
201A00
202A00
203A00
204A00
205A00
206A00
ꢀ
17.3/ꢁ20.0 ꢁ3.8/ꢁ5.0 ꢁ41.5/ꢁ41.5 ꢁ60/ꢁ60
26.0/ꢁ30.0 ꢁ5.6/ꢁ7.5 ꢁ41.5/ꢁ45.4 ꢁ60/ꢁ60
34.7/ꢁ40.0 ꢁ7.5/10.0 ꢁ51.2/ꢁ57.9 ꢁ60/ꢁ60
52.0/ꢁ60.0 11.3/15.0 ꢁ72.9/ꢁ82.9 ꢁ80/ꢁ90
69.3/ꢁ80.0 15.0/20.0 ꢁ94.5/107.9 100/110
86.7/100.0 18.8/25.0 116.2/132.9 125/150
028A00
028A00
028A00
029A00
029A00
029A00
ꢀ
4.9
Low
High
Low
High
Low
High
Low
High
1.4
ꢀ
ꢀ/ꢀ
ꢁ43.6/ꢁ43.6 ꢁ60/ꢁ60
201A00
202A00
203A00
204A00
205A00
206A00
ꢀ
17.3/ꢁ20.0 ꢁ3.8/ꢁ5.0 ꢁ43.6/ꢁ43.6 ꢁ60/ꢁ60
26.0/ꢁ30.0 ꢁ5.6/ꢁ7.5 ꢁ43.6/ꢁ48.0 ꢁ60/ꢁ60
34.7/ꢁ40.0 ꢁ7.5/10.0 ꢁ53.8/ꢁ60.5 ꢁ60/ꢁ70
52.0/ꢁ60.0 11.3/15.0 ꢁ75.5/ꢁ85.5 ꢁ80/ꢁ90
69.3/ꢁ80.0 15.0/20.0 ꢁ97.2/110.5 100/125
86.7/100.0 18.8/25.0 118.8/135.5 125/150
028A00
028A00
028A00
029A00
029A00
029A00
ꢀ
7.0
ꢀ
ꢀ/ꢀ
28.7/28.7
45/45
45/45
45/45
45/45
45/50
60/70
70/80
45/45
45/45
45/45
45/45
45/50
60/70
70/80
45/45
45/45
45/45
45/45
50/60
60/70
80/90
45/45
45/45
45/45
45/45
50/60
60/70
80/90
20
28/28
28/28
28/28
29/33
41/46
52/59
64/72
28/28
28/28
28/28
29/33
41/46
52/59
64/72
30/30
30/30
30/30
31/34
42/47
54/61
65/74
30/30
30/30
30/30
31/34
42/47
54/61
65/74
13
156/156
156/156
156/156
156/156
156/156
156/156
156/156
156/156
156/156
156/156
156/156
156/156
156/156
156/156
158/158
158/158
158/158
158/158
158/158
158/158
158/158
158/158
158/158
158/158
158/158
158/158
158/158
158/158
67
208A00
209A00
210A00
211A00
212A00
213A00
ꢀ
10.0/11.5 ꢁ3.8/ꢁ5.0 28.7/28.7
15.0/17.3 ꢁ5.6/ꢁ7.5 28.7/28.7
20.0/23.1 ꢁ7.5/10.0 31.5/35.4
30.0/34.6 11.3/15.0 44.0/49.8
40.0/46.2 15.0/20.0 56.5/64.2
50.0/57.7 18.8/25.0 69.0/78.7
030A00
030A00
030A00
030A00
031A00
031A00
ꢀ
ꢀ
ꢀ
ꢀ/ꢀ
28.7/28.7
208A00
209A00
210A00
211A00
212A00
213A00
ꢀ
10.0/11.5 ꢁ3.8/ꢁ5.0 28.7/28.7
15.0/17.3 ꢁ5.6/ꢁ7.5 28.7/28.7
20.0/23.1 ꢁ7.5/10.0 31.5/35.4
30.0/34.6 11.3/15.0 44.0/49.8
40.0/46.2 15.0/20.0 56.5/64.2
50.0/57.7 18.8/25.0 69.0/78.7
030A00
030A00
030A00
030A00
031A00
031A00
ꢀ
06
208/230-3-60 187 253 17.6
123
1.5
5.2
ꢀ
ꢀ/ꢀ
30.1/30.1
208A00
209A00
210A00
211A00
212A00
213A00
ꢀ
10.0/11.5 ꢁ3.8/ꢁ5.0 30.1/30.1
15.0/17.3 ꢁ5.6/ꢁ7.5 30.1/30.1
20.0/23.1 ꢁ7.5/10.0 33.3/37.1
30.0/34.6 11.3/15.0 45.8/51.6
40.0/46.2 15.0/20.0 58.3/66.0
50.0/57.7 18.8/25.0 70.8/80.4
030A00
030A00
030A00
030A00
031A00
031A00
ꢀ
1.4
ꢀ
ꢀ/ꢀ
30.1/30.1
208A00
209A00
210A00
211A00
212A00
213A00
ꢀ
10.0/11.5 ꢁ3.8/ꢁ5.0 30.1/30.1
15.0/17.3 ꢁ5.6/ꢁ7.5 30.1/30.1
20.0/23.1 ꢁ7.5/10.0 33.3/37.1
30.0/34.6 11.3/15.0 45.8/51.6
40.0/46.2 15.0/20.0 58.3/66.0
50.0/57.7 18.8/25.0 70.8/80.4
030A00
030A00
030A00
030A00
031A00
031A00
ꢀ
ꢀ
ꢀ
13.0
13.0
14.1
17.7
24.9
32.1
39.3
13.0
13.0
14.1
17.7
24.9
32.1
39.3
13.6
13.6
14.8
18.4
25.7
32.9
40.1
13.6
13.6
14.8
18.4
25.7
32.9
40.1
215A00
216A00
217A00
218A00
219A00
220A00
ꢀ
ꢁ5.8
ꢁ8.7
11.5
17.3
23.1
28.9
ꢀ
ꢁ5.0
ꢁ7.5
10.0
15.0
20.0
25.0
ꢀ
20
030A00
030A00
030A00
030A00
030A00
030A00
ꢀ
13
67
20
13
67
20
16
67
25
23
67
35
30
67
40
36
67
ꢀ
20
13
67
215A00
216A00
217A00
218A00
219A00
220A00
ꢀ
ꢁ5.8
ꢁ8.7
11.5
17.3
23.1
28.9
ꢀ
ꢁ5.0
ꢁ7.5
10.0
15.0
20.0
25.0
ꢀ
20
030A00
030A00
030A00
030A00
030A00
030A00
ꢀ
13
67
20
13
67
20
16
67
25
23
67
35
30
67
40
36
67
460-3-60
414 506
7.7
ꢁ50
0.8
2.6
20
13
68
215A00
216A00
217A00
218A00
219A00
220A00
ꢀ
ꢁ5.8
ꢁ8.7
11.5
17.3
23.1
28.9
ꢀ
ꢁ5.0
ꢁ7.5
10.0
15.0
20.0
25.0
ꢀ
20
030A00
030A00
030A00
030A00
030A00
030A00
ꢀ
13
68
20
14
68
20
17
68
Low
30
24
68
35
30
68
45
37
68
0.6
20
13
68
215A00
216A00
217A00
218A00
219A00
220A00
ꢁ5.8
ꢁ8.7
11.5
17.3
23.1
28.9
ꢁ5.0
ꢁ7.5
10.0
15.0
20.0
25.0
20
030A00
030A00
030A00
030A00
030A00
030A00
13
68
20
14
68
High
20
17
68
30
24
68
35
30
68
45
37
68
13
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Table 1 — Electrical Data — Units Without Optional Powered Convenience Outlet (cont)
VOLTAGE
COMPRESSOR
DISCONNECT
SIZE
ELECTRIC HEAT
POWER SUPPLY
NOMINAL
OFM
IFM
POWER
EXHAUST
FLA
IFM
CRSINGLE
PART NO.
(NOTE3)
RANGE
(EA)
UNIT
50PG
WIRING
FIG. NO.
POWER SUPPLY
VOLTS-PH-HZ
CRHEATER
PART NO.
NOMINAL
KW*
MIN MAX
RLA
LRA
FLA
MCA
MOCP†
FLA
LRA
FLA
FLA
TYPE
ꢀ
ꢀ
ꢀ
10.4
14.0
15
15
ꢀ
10
13
53
53
ꢀ
15
15
15
15
ꢀ
15
15
15
15
ꢀ
15
15
15
15
16
16
ꢀ
15
15
15
15
16
16
ꢀ
15
15
15
15
16
16
ꢀ
15
15
15
15
16
16
ꢀ
15
15
15
15
15
15
ꢀ
15
15
15
15
15
15
ꢀ
15
15
15
15
15
15
ꢀ
15
15
15
15
15
15
221A00
222A00
223A00
254A00
ꢀ
ꢁ9.2
13.9
18.5
23.1
ꢀ
10.0
15.0
20.0
25.0
ꢀ
030A00
030A00
030A00
030A00
ꢀ
Low
and
20.1
20
18
53
ꢀ
High
25.6
30
24
53
31.4
30
29
53
06
(cont)
575-3-60
518 632
6.1
ꢁ40
0.8
2.0
11.7
15
12
54
221A00
222A00
223A00
254A00
ꢀ
ꢁ9.2
13.9
18.5
23.1
ꢀ
10.0
15.0
20.0
25.0
ꢀ/ꢀ
15.8
20
030A00
030A00
030A00
030A00
ꢀ
15
54
Low
and
21.6
25
20
54
1.4
High
27.3
30
25
54
33.1
30
30
54
32.3/32.3
50/50
50/50
50/50
50/50
50/50
60/70
70/80
50/50
50/50
50/50
50/50
50/60
60/70
80/90
50/50
50/50
50/50
50/50
50/60
60/70
80/90
50/50
50/50
50/50
50/50
50/60
70/70
80/90
25
31/31
31/31
31/31
31/33
41/46
52/59
64/72
34/34
34/34
34/34
34/35
43/48
55/62
66/75
33/33
33/33
33/33
33/34
42/47
54/61
65/74
36/36
36/36
36/36
36/37
45/50
56/63
68/77
15
182/182
182/182
182/182
182/182
182/182
182/182
182/182
208/208
208/208
208/208
208/208
208/208
208/208
208/208
184/184
184/184
184/184
184/184
184/184
184/184
184/184
210/210
210/210
210/210
210/210
210/210
210/210
210/210
ꢁ92
208A00
209A00
210A00
211A00
212A00
213A00
ꢀ
10.0/11.5 ꢁ3.8/ꢁ5.0 32.3/32.3
15.0/17.3 ꢁ5.6/ꢁ7.5 32.3/32.3
20.0/23.1 ꢁ7.5/10.0 32.3/35.4
30.0/34.6 11.3/15.0 44.0/49.8
40.0/46.2 15.0/20.0 56.5/64.2
50.0/57.7 18.8/25.0 69.0/78.7
030A00
030A00
030A00
030A00
031A00
031A00
ꢀ
5.2
7.5
5.2
7.5
2.6
3.4
ꢀ
Low
High
Low
High
Low
High
ꢀ
ꢀ/ꢀ
34.6/34.6
208A00
209A00
210A00
211A00
212A00
213A00
ꢀ
10.0/11.5 ꢁ3.8/ꢁ5.0 34.6/34.6
15.0/17.3 ꢁ5.6/ꢁ7.5 34.6/34.6
20.0/23.1 ꢁ7.5/10.0 34.6/38.2
30.0/34.6 11.3/15.0 46.9/52.7
40.0/46.2 15.0/20.0 59.4/67.1
50.0/57.7 18.8/25.0 71.9/81.5
030A00
030A00
030A00
030A00
031A00
031A00
ꢀ
ꢀ
208/230-3-60 187 253 20.5
149
1.5
ꢀ
ꢀ/ꢀ
33.7/33.7
208A00
209A00
210A00
211A00
212A00
213A00
ꢀ
10.0/11.5 ꢁ3.8/ꢁ5.0 33.7/33.7
15.0/17.3 ꢁ5.6/ꢁ7.5 33.7/33.7
20.0/23.1 ꢁ7.5/10.0 33.7/33.1
30.0/34.6 11.3/15.0 45.8/51.5
40.0/46.2 15.0/20.0 58.3/66.0
50.0/57.7 18.8/25.0 70.8/80.4
030A00
030A00
030A00
030A00
031A00
031A00
ꢀ
1.4
ꢀ
ꢀ/ꢀ
36/36
208A00
209A00
210A00
211A00
212A00
213A00
ꢀ
10.0/11.5 ꢁ3.8/ꢁ5.0 36.0/36.0
15.0/17.3 ꢁ5.6/ꢁ7.5 36.0/36.0
20.0/23.1 ꢁ7.5/10.0 36.1/40.0
30.0/34.6 11.3/15.0 48.6/54.4
40.0/46.2 15.0/20.0 61.1/68.9
50.0/57.7 18.8/25.0 73.6/83.3
030A00
030A00
030A00
030A00
031A00
031A00
ꢀ
07
ꢀ
ꢀ
15.4
15.4
15.4
17.7
24.9
32.1
39.3
16.2
16.2
16.2
18.7
25.9
33.1
40.3
16.0
16.0
16.0
18.4
25.7
32.9
40.1
16.8
16.8
16.8
19.4
26.7
33.9
41.1
215A00
216A00
217A00
218A00
219A00
220A00
ꢀ
ꢁ5.8
ꢁ8.7
11.5
17.3
23.1
28.9
ꢀ
ꢁ5.0
ꢁ7.5
10.0
15.0
20.0
25.0
ꢀ
25
030A00
030A00
030A00
030A00
030A00
030A00
ꢀ
15
ꢁ92
25
15
ꢁ92
25
16
ꢁ92
25
23
ꢁ92
35
30
ꢁ92
40
36
ꢁ92
ꢀ
25
16
105
215A00
216A00
217A00
218A00
219A00
220A00
ꢀ
ꢁ5.8
ꢁ8.7
11.5
17.3
23.1
28.9
ꢀ
ꢁ5.0
ꢁ7.5
10.0
15.0
20.0
25.0
ꢀ
25
030A00
030A00
030A00
030A00
030A00
030A00
ꢀ
16
105
25
16
105
25
17
105
30
24
105
35
30
105
45
37
105
460-3-60
414 506
9.6
75
0.8
25
16
ꢁ93
215A00
216A00
217A00
218A00
219A00
220A00
ꢀ
ꢁ5.8
ꢁ8.7
11.5
17.3
23.1
28.9
ꢀ
ꢁ5.0
ꢁ7.5
10.0
15.0
20.0
25.0
ꢀ
25
030A00
030A00
030A00
030A00
030A00
030A00
ꢀ
16
ꢁ93
25
16
ꢁ93
25
17
ꢁ93
2.6
Low
30
24
ꢁ93
35
30
ꢁ93
45
37
ꢁ93
0.6
25
17
106
215A00
216A00
217A00
218A00
219A00
220A00
ꢁ5.8
ꢁ8.7
11.5
17.3
23.1
28.9
ꢁ5.0
ꢁ7.5
10.0
15.0
20.0
25.0
25
030A00
030A00
030A00
030A00
030A00
030A00
17
106
25
17
106
3.4
High
25
18
106
30
25
106
35
31
106
45
38
106
Example: Supply voltage is 460-3-60
LEGEND
Full Load Amps
FLA
−
AB = 224 v
BC = 231 v
AC = 226 v
HACR − Heating, Air Conditioning and Refrigeration
IFM
−
−
−
Indoor − Fan Motor
Locked Rotor Amps
Minimum Circuit Amps
224 + 231 + 226
3
LRA
MCA
Average Voltage =
681
3
=
MOCP − Maximum Overcurrent Protection
NEC
OFM
RLA
−
−
−
National Electrical Code
Outdoor−Fan Motor
Rated Load Amps
=
227
Determine maximum deviation from average voltage.
ꢂ(AB) 227 – 223 = 3 v
ꢂ(BC) 231 – 227 = 4 v
*
†
Heater capacity (kW) is based on heater voltage of 208 v, 240 v, or 480 v. If power distribu-
tion voltage to unit varies from rated heater voltage, heater kW will vary accordingly.
Fuse or HACR circuit breaker.
ꢂ(AC) 227 – 226 = 1 v
Maximum deviation is 4 v.
Determine percent of voltage imbalance.
NOTES:
4
1. In compliance with NEC requirements for multimotor and combination load equip-
ment (refer to NEC Articles 430 and 440), the overcurrent protective device for the
unit shall be fuse or HACR breaker.
% Voltage Imbalance
= 100 x
227
= 1.76%
2. Unbalanced 3-Phase Supply Voltage
Never operate a motor where a phase imbalance in supply voltage is greater than
2%. Use the following formula to determine the percentage of voltage imbalance.
This amount of phase imbalance is satisfactory as it is below the maximum allowable 2%.
IMPORTANT: If the supply voltage phase imbalance is more than 2%, contact your local electric
utility company immediately.
max voltage deviation from average voltage
% Voltage Imbalance
= 100 x
3. Single point kits CRSINGLE028A00 and CRSINGLE030A00 are not required if
field−supplied pressure connectors are used.
average voltage
14
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Table 1 — Electrical Data — Units Without Optional Powered Convenience Outlet (cont)
VOLTAGE
COMPRESSOR
(EA.)
ELECTRIC HEAT
POWER SUPPLY
DISCONNECT SIZE
NOMINAL
POWER
EXHAUST
FLA
CRSINGLE
PART NO.
(NOTE3)
RANGE
UNIT
50PG
OFM IFMF
IFM
WIRING
FIG. NO.
POWER SUPPLY
VOLTS-PH-HZ
FLA
LA
TYPE
CRHEATER
PART NO.
NOMINAL
KW*
MIN MAX
RLA
LRA
FLA
MCA
MOCP†
FLA
LRA
ꢀ
ꢀ
ꢁ9.2
13.9
18.5
23.1
27.7
ꢀ
ꢀ
12.3
14.0
20.1
25.6
31.4
37.1
13.1
15.0
20.8
26.6
32.4
38.1
13.6
15.8
21.6
27.3
33.1
38.9
14.4
16.8
22.6
28.3
34.1
39.9
15
15
20
30
30
40
20
20
25
30
30
40
20
20
25
30
30
40
20
20
25
30
35
40
ꢀ
12
13
18
24
29
34
13
14
19
24
30
35
13
15
20
25
30
36
14
15
21
26
31
37
ꢁ67
ꢁ67
ꢁ67
ꢁ67
ꢁ67
ꢁ67
ꢁ76
ꢁ76
ꢁ76
ꢁ76
ꢁ76
ꢁ76
ꢁ68
ꢁ68
ꢁ68
ꢁ68
ꢁ68
ꢁ68
ꢁ80
ꢁ80
ꢁ80
ꢁ80
ꢁ80
ꢁ80
ꢀ
15
15
15
15
15
ꢀ
15
15
15
15
15
ꢀ
15
15
15
15
15
ꢀ
15
15
15
15
15
ꢀ
15
15
16
17
17
ꢀ
15
15
16
17
17
ꢀ
15
15
16
17
17
ꢀ
15
15
16
17
17
ꢀ
15
15
15
15
19
ꢀ
15
15
15
15
19
ꢀ
15
15
15
15
19
ꢀ
15
15
15
15
19
ꢀ
15
15
15
15
ꢀ
15
15
15
15
221A00
222A00
223A00
254A00
224A00
ꢀ
10.0
15.0
20.0
25.0
30.0
ꢀ
030A00
030A00
030A00
030A00
030A00
ꢀ
2.0
Low
High
Low
High
Low
High
Low
High
Low
High
Low
High
ꢀ
1.4
ꢀ
221A00
222A00
223A00
254A00
224A00
ꢀ
ꢁ9.2
13.9
18.5
23.1
27.7
ꢀ
10.0
15.0
20.0
25.0
30.0
ꢀ
030A00
030A00
030A00
030A00
030A00
ꢀ
2.8
2.0
2.9
5.2
7.5
5.2
7.5
2.6
3.4
2.6
3.4
07
(cont)
575-3-60
518 632
7.6
54.0 0.8
221A00
222A00
223A00
254A00
224A00
ꢀ
ꢁ9.2
13.9
18.5
23.1
27.7
ꢀ
10.0
15.0
20.0
25.0
30.0
ꢀ
030A00
030A00
030A00
030A00
030A00
ꢀ
221A00
222A00
223A00
254A00
224A00
ꢀ
ꢁ9.2
13.9
18.5
23.1
27.7
ꢀ
10.0
15.0
20.0
25.0
30.0
ꢀ/ꢀ
030A00
030A00
030A00
030A00
030A00
ꢀ
ꢁ38.5/ꢁ38.5 ꢁ50/ꢁ50
40/ꢁ40 212/212
40/ꢁ40 212/212
41/ꢁ46 212/212
64/ꢁ72 212/212
87/ꢁ99 212/212
98/112 212/212
ꢁ43/ꢁ43 238/238
ꢁ43/ꢁ43 238/238
ꢁ43/ꢁ48 238/238
ꢁ66/ꢁ75 238/238
ꢁ89/102 238/238
101/115 238/238
ꢁ44/ꢁ44 216/216
ꢁ44/ꢁ44 216/216
ꢁ44/ꢁ49 216/216
ꢁ67/ꢁ76 216/216
ꢁ90/102 216/216
101/116 216/216
ꢁ46/ꢁ46 242/242
ꢁ46/ꢁ46 242/242
ꢁ47/ꢁ52 242/242
ꢁ70/ꢁ78 242/242
ꢁ93/105 242/242
104/118 242/242
ꢁ7.5/10.0 ꢁ38.5/ꢁ38.5 ꢁ50/ꢁ50
030A00
030A00
031A00
031A00
031A00
ꢀ
225A00
226A00
227A00
228A00
229A00
ꢀ
20.0/23.1
30.0/34.6 11.3/15.0 ꢁ44.0/ꢁ49.8 ꢁ50/ꢁ50
50.0/57.7 18.8/25.0 ꢁ69.0/ꢁ78.7 ꢁ70/ꢁ80
70.0/80.8 26.3/35.0 ꢁ94.1/107.5 100/110
80.0/92.4 30.0/40.0 106.6/122.0 110/125
ꢀ
ꢀ/ꢀ
ꢁ40.8/ꢁ40.8 ꢁ50/ꢁ50
225A00
226A00
227A00
228A00
229A00
ꢀ
20.0/23.1 ꢁ7.5/10.0 ꢁ40.8/ꢁ40.8 ꢁ50/ꢁ50
30.0/34.6 11.3/15.0 ꢁ46.9/ꢁ52.7 ꢁ50/ꢁ60
50.0/57.7 18.8/25.0 ꢁ71.9/ꢁ81.5 ꢁ80/ꢁ90
70.0/80.8 26.3/35.0 ꢁ96.9/110.4 100/125
80.0/92.4 30.0/40.0 109.4/124.8 110/125
030A00
030A00
031A00
031A00
031A00
ꢀ
208/230-3-60 187 253 13.5
88
1.5
ꢀ
ꢀ/ꢀ
ꢁ41.5/ꢁ41.5 ꢁ50/ꢁ50
225A00
226A00
227A00
228A00
229A00
ꢀ
20.0/23.1 ꢁ7.5/10.0 ꢁ41.5/ꢁ41.5 ꢁ50/ꢁ50
30.0/34.6 11.3/15.0 ꢁ47.8/ꢁ53.6 ꢁ50/ꢁ60
50.0/57.7 18.8/25.0 ꢁ72.8/ꢁ82.4 ꢁ80/ꢁ90
70.0/80.8 26.3/35.0 ꢁ97.8/111.3 100/125
80.0/92.4 30.0/40.0 110.3/125.7 125/150
030A00
030A00
031A00
031A00
031A00
ꢀ
3.0
ꢀ
ꢀ/ꢀ
ꢁ43.8/ꢁ43.8 ꢁ50/ꢁ50
225A00
226A00
227A00
228A00
229A00
ꢀ
20.0/23.1 ꢁ7.5/10.0 ꢁ43.8/ꢁ43.8 ꢁ50/ꢁ50
30.0/34.6 11.3/15.0 ꢁ50.6/ꢁ56.4 ꢁ60/ꢁ60
50.0/57.7 18.8/25.0 ꢁ75.7/ꢁ85.3 ꢁ80/ꢁ90
70.0/80.8 26.3/35.0 100.7/114.2 110/125
80.0/92.4 30.0/40.0 113.2/128.6 125/150
030A00
030A00
031A00
031A00
031A00
ꢀ
ꢀ
ꢀ
18.6
18.6
24.9
39.3
53.8
61.0
19.4
19.4
25.9
40.3
54.8
62.0
19.8
19.8
26.4
40.8
55.3
62.5
20.6
20.6
27.4
41.8
56.3
63.5
18.0
20.1
31.4
42.9
48.7
18.8
20.8
32.4
43.9
49.7
25
25
25
40
60
70
25
25
30
45
60
70
25
25
30
45
60
70
25
25
30
45
60
70
20
20
35
45
50
20
25
35
45
50
20
20
23
36
49
56
20
20
24
37
50
57
21
21
24
38
51
57
22
22
25
38
52
58
19
19
29
39
45
20
20
30
40
46
ꢁ96
ꢁ96
ꢁ96
ꢁ96
ꢁ96
ꢁ96
109
109
109
109
109
109
ꢁ99
ꢁ99
ꢁ99
ꢁ99
ꢁ99
ꢁ99
112
112
112
112
112
112
ꢁ84
ꢁ84
ꢁ84
ꢁ84
ꢁ84
102
102
102
102
102
232A00
233A00
234A00
235A00
236A00
ꢀ
11.5
17.3
28.9
40.4
46.2
ꢀ
10.0
15.0
25.0
35.0
40.0
ꢀ
030A00
030A00
030A00
030A00
033A00
ꢀ
08
ꢀ
232A00
233A00
234A00
235A00
236A00
ꢀ
11.5
17.3
28.9
40.4
46.2
ꢀ
10.0
15.0
25.0
35.0
40.0
ꢀ
030A00
030A00
030A00
030A00
033A00
ꢀ
460-3-60
414 506
6.4
39
0.8
232A00
233A00
234A00
235A00
236A00
ꢀ
11.5
17.3
28.9
40.4
46.2
ꢀ
10.0
15.0
25.0
35.0
40.0
ꢀ
030A00
030A00
030A00
030A00
033A00
ꢀ
1.2
232A00
233A00
234A00
235A00
236A00
ꢀ
11.5
17.3
28.9
40.4
46.2
ꢀ
10.0
15.0
25.0
35.0
40.0
ꢀ
030A00
030A00
030A00
030A00
033A00
ꢀ
239A00
240A00
241A00
242A00
ꢀ
13.9
23.1
32.3
37.0
ꢀ
15.0
25.0
35.0
40.0
ꢀ
030A00
030A00
030A00
030A00
ꢀ
Low
575-3-60
518 632
6.4
30.0 0.8
2.0
ꢀ
239A00
240A00
241A00
242A00
13.9
23.1
32.3
37.0
15.0
25.0
35.0
40.0
030A00
030A00
030A00
030A00
High
15
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Table 1 — Electrical Data — Units Without Optional Powered Convenience Outlet (cont)
VOLTAGE
COMPRESSOR
(EA.)
ELECTRIC HEAT
POWER SUPPLY
DISCONNECT SIZE
NOMINAL
OFM
FLA
IFM
FLA
POWER
EXHAUST
FLA
CRSINGLE
PART NO.
(NOTE3)
RANGE
UNIT
50PG
IFM
WIRING
FIG. NO.
POWER SUPPLY
VOLTS-PH-HZ
TYPE
CRHEATER
PART NO.
NOMINAL
KW*
MIN MAX
RLA
LRA
FLA
MCA
MOCP†
FLA
LRA
ꢀ
ꢀ
ꢀ
18.1
23.6
35.1
46.7
52.4
18.9
24.6
36.1
47.7
53.4
20
25
40
50
60
25
25
40
50
60
ꢀ
19
22
32
43
48
20
23
33
44
49
86
86
86
86
86
98
98
98
98
98
ꢀ
15
15
15
15
ꢀ
15
15
15
15
ꢀ
15
15
16
17
17
ꢀ
15
15
16
17
17
ꢀ
15
15
16
17
17
ꢀ
15
15
16
17
17
ꢀ
15
15
15
15
19
ꢀ
15
15
15
15
19
239A00
240A00
241A00
242A00
ꢀ
13.9
23.1
32.3
37.0
ꢀ
15.0
25.0
35.0
40.0
ꢀ
030A00
030A00
030A00
030A00
ꢀ
Low
08
(cont)
575-3-60
(cont)
518 632
6.4
30.0 0.8
2.8
3.0
239A00
240A00
241A00
242A00
ꢀ
13.9
23.1
32.3
37.0
ꢀ
15.0
25.0
35.0
40.0
ꢀ/ꢀ
030A00
030A00
030A00
030A00
ꢀ
High
ꢁ44.3/ꢁ44.3 ꢁ60/ꢁ60
46/ꢁ46 218/218
46/ꢁ46 218/218
46/ꢁ46 218/218
64/ꢁ72 218/218
87/ꢁ99 218/218
98/112 218/218
ꢁ52/ꢁ52 261/261
ꢁ52/ꢁ52 261/261
ꢁ52/ꢁ52 261/261
ꢁ69/ꢁ78 261/261
ꢁ92/105 261/261
104/118 261/261
ꢁ50/ꢁ50 222/222
ꢁ50/ꢁ50 222/222
ꢁ50/ꢁ50 222/222
ꢁ67/ꢁ76 222/222
ꢁ90/102 222/222
101/116 222/222
ꢁ55/ꢁ55 265/265
ꢁ55/ꢁ55 265/265
ꢁ55/ꢁ55 265/265
ꢁ73/ꢁ82 265/265
ꢁ96/108 265/265
107/121 265/265
225A00
226A00
227A00
228A00
229A00
ꢀ
20.0/23.1 ꢁ7.5/10.0 ꢁ44.3/ꢁ44.3 ꢁ60/ꢁ60
30.0/34.6 11.3/15.0 ꢁ44.3/ꢁ49.8 ꢁ60/ꢁ60
50.0/57.7 18.8/25.0 ꢁ69.0/ꢁ78.7 ꢁ70/ꢁ80
70.0/80.8 26.3/35.0 ꢁ94.1/107.5 100/110
80.0/92.4 30.0/40.0 106.6/122.0 110/125
030A00
030A00
031A00
031A00
031A00
ꢀ
Low
High
Low
High
Low
High
ꢀ
ꢀ
ꢀ/ꢀ
ꢁ49.3/ꢁ49.3 ꢁ60/ꢁ60
225A00
226A00
227A00
228A00
229A00
ꢀ
20.0/23.1 ꢁ7.5/10.0 ꢁ49.3/ꢁ49.3 ꢁ60/ꢁ60
30.0/34.6 11.3/15.0 ꢁ50.3/ꢁ56.1 ꢁ60/ꢁ60
50.0/57.7 18.8/25.0 ꢁ75.3/ꢁ84.9 ꢁ80/ꢁ90
70.0/80.8 26.3/35.0 100.3/113.8 110/125
80.0/92.4 30.0/40.0 112.8/128.2 125/150
030A00
030A00
031A00
031A00
031A00
ꢀ
208/230-3-60 187 253 16.0
91
1.5
5.2
ꢀ
ꢀ/ꢀ
ꢁ47.3/ꢁ47.3 ꢁ60/ꢁ60
225A00
226A00
227A00
228A00
229A00
ꢀ
20.0/23.1 ꢁ7.5/10.0 ꢁ47.3/ꢁ47.3 ꢁ60/ꢁ60
30.0/34.6 11.3/15.0 ꢁ47.8/ꢁ53.6 ꢁ60/ꢁ60
50.0/57.7 18.8/25.0 ꢁ72.8/ꢁ82.4 ꢁ80/ꢁ90
70.0/80.8 26.3/35.0 ꢁ97.8/111.3 100/125
80.0/92.4 30.0/40.0 110.3/125.7 125/150
030A00
030A00
031A00
031A00
031A00
ꢀ
09
3.0
ꢀ
ꢀ/ꢀ
ꢁ52.3/ꢁ52.3 ꢁ60/ꢁ60
225A00
226A00
227A00
228A00
229A00
ꢀ
20.0/23.1 ꢁ7.5/10.0 ꢁ52.3/ꢁ52.3 ꢁ60/ꢁ60
30.0/34.6 11.3/15.0 ꢁ54.0/ꢁ59.8 ꢁ60/ꢁ60
50.0/57.7 18.8/25.0 ꢁ79.0/ꢁ88.7 ꢁ80/ꢁ90
70.0/80.8 26.3/35.0 104.1/117.5 110/125
80.0/92.4 30.0/40.0 116.6/132.0 125/150
030A00
030A00
031A00
031A00
031A00
ꢀ
ꢀ
ꢀ
20.1
20.1
24.9
39.3
53.8
61.0
22.3
22.3
27.7
42.1
56.5
63.7
25
25
25
40
60
70
25
25
30
45
60
70
21
21
23
36
49
56
24
24
25
39
52
59
110
110
110
110
110
110
132
132
132
132
132
132
232A00
233A00
234A00
235A00
236A00
ꢀ
11.5
17.3
28.9
40.4
46.2
ꢀ
10.0
15.0
25.0
35.0
40.0
ꢀ
030A00
030A00
030A00
030A00
033A00
ꢀ
2.6
4.8
460-3-60
414 506 ꢁ7.1
46
0.8
ꢀ
232A00
233A00
234A00
235A00
236A00
11.5
17.3
28.9
40.4
46.2
10.0
15.0
25.0
35.0
40.0
030A00
030A00
030A00
030A00
033A00
Example: Supply voltage is 460-3-60
LEGEND
Full Load Amps
FLA
−
AB = 224 v
BC = 231 v
AC = 226 v
HACR − Heating, Air Conditioning and Refrigeration
IFM
−
−
−
Indoor − Fan Motor
Locked Rotor Amps
Minimum Circuit Amps
224 + 231 + 226
3
LRA
MCA
Average Voltage =
681
3
=
MOCP − Maximum Overcurrent Protection
NEC
OFM
RLA
−
−
−
National Electrical Code
Outdoor−Fan Motor
Rated Load Amps
=
227
Determine maximum deviation from average voltage.
ꢂ(AB) 227 – 223 = 3 v
ꢂ(BC) 231 – 227 = 4 v
*
†
Heater capacity (kW) is based on heater voltage of 208 v, 240 v, or 480 v. If power distribu-
tion voltage to unit varies from rated heater voltage, heater kW will vary accordingly.
Fuse or HACR circuit breaker.
ꢂ(AC) 227 – 226 = 1 v
Maximum deviation is 4 v.
Determine percent of voltage imbalance.
NOTES:
1. In compliance with NEC requirements for multimotor and combination load equip-
ment (refer to NEC Articles 430 and 440), the overcurrent protective device for the
unit shall be fuse or HACR breaker.
4
% Voltage Imbalance
= 100 x
227
2. Unbalanced 3-Phase Supply Voltage
Never operate a motor where a phase imbalance in supply voltage is greater than
2%. Use the following formula to determine the percentage of voltage imbalance.
= 1.76%
This amount of phase imbalance is satisfactory as it is below the maximum allowable 2%.
IMPORTANT: If the supply voltage phase imbalance is more than 2%, contact your local electric
utility company immediately.
max voltage deviation from average voltage
% Voltage Imbalance
= 100 x
average voltage
3. Single point kits CRSINGLE028A00 and CRSINGLE030A00 are not required if
field−supplied pressure connectors are used.
16
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Table 1 — Electrical Data — Units Without Optional Powered Convenience Outlet (cont)
VOLTAGE
COMPRESSOR
(EA.)
ELECTRIC HEAT
POWER SUPPLY
DISCONNECT SIZE
NOMINAL
OFM
FLA
IFM
FLA
POWER
EXHAUST
FLA
CRSINGLE
PART NO.
(NOTES)
RANGE
UNIT
50PG
IFM
WIRING
FIG. NO.
POWER SUPPLY
VOLTS-PH-HZ
TYPE
CRHEATER
PART NO.
NOMINAL
KW*
MIN MAX
RLA
LRA
FLA
MCA
MOCP†
FLA
LRA
ꢀ
ꢀ
ꢀ
10.0
15.0
25.0
35.0
40.0
ꢀ
21.3
21.3
26.4
40.8
55.3
62.5
23.5
23.5
29.2
43.6
58.0
65.2
16.2
20.1
31.4
42.9
48.7
17.5
21.4
33.0
45.1
50.3
19.1
23.6
35.1
46.7
52.4
19.9
24.6
36.1
47.7
53.4
25
25
30
45
60
70
30
30
30
45
60
70
20
20
35
45
50
20
25
35
45
50
25
25
40
50
60
25
25
40
50
60
ꢀ
22
22
24
38
51
57
25
25
27
40
53
60
17
18
29
39
45
19
20
30
41
46
20
22
32
43
48
21
23
33
44
49
113
113
113
113
113
113
134
134
134
134
134
134
ꢁ98
ꢁ98
ꢁ98
ꢁ98
ꢁ98
136
136
136
136
136
ꢁ92
ꢁ92
ꢁ92
ꢁ92
ꢁ92
104
104
104
104
104
ꢀ
15
15
15
15
19
ꢀ
15
15
15
15
19
ꢀ
15
15
15
15
ꢀ
15
15
15
15
ꢀ
15
15
15
15
ꢀ
15
15
15
15
ꢀ
15
15
16
17
17
17
ꢀ
15
15
16
17
17
17
ꢀ
15
15
16
17
17
17
ꢀ
15
15
16
17
17
17
ꢀ
15
15
15
15
19
19
ꢀ
15
15
15
15
19
19
ꢀ
15
15
15
15
19
19
ꢀ
15
15
15
15
19
19
232A00
233A00
234A00
235A00
236A00
ꢀ
11.5
17.3
28.9
40.4
46.2
ꢀ
030A00
030A00
030A00
030A00
033A00
ꢀ
2.6
4.8
Low
460-3-60
(cont)
414 506 ꢁ7.1
46
0.8
1.2
232A00
233A00
234A00
235A00
236A00
ꢀ
11.5
17.3
28.9
40.4
46.2
ꢀ
10.0
15.0
25.0
35.0
40.0
ꢀ
030A00
030A00
030A00
030A00
033A00
ꢀ
High
239A00
240A00
241A00
242A00
ꢀ
13.9
23.1
32.3
37.0
ꢀ
15.0
25.0
35.0
40.0
ꢀ
030A00
030A00
030A00
030A00
ꢀ
2.0
3.3
2.0
3.3
Low
High
Low
High
09
(cont)
ꢀ
239A00
240A00
241A00
242A00
ꢀ
13.9
23.1
32.3
37.0
ꢀ
15.0
25.0
35.0
40.0
ꢀ
030A00
030A00
030A00
030A00
ꢀ
575-3-60
518 632 ꢁ5.6 37.0 0.8
239A00
240A00
241A00
242A00
ꢀ
13.9
23.1
32.3
37.0
ꢀ
15.0
25.0
35.0
40.0
ꢀ
030A00
030A00
030A00
030A00
ꢀ
3.0
239A00
240A00
241A00
242A00
ꢀ
13.9
23.1
32.3
37.0
ꢀ
15.0
25.0
35.0
40.0
ꢀ/ꢀ
030A00
030A00
030A00
030A00
ꢀ
ꢁ51.0/ꢁ51.0 ꢁ60/ꢁ60
ꢁ54/ꢁ54 314/314
ꢁ54/ꢁ54 314/314
ꢁ54/ꢁ54 314/314
ꢁ66/ꢁ75 314/314
ꢁ89/102 314/314
101/115 314/314
124/141 314/314
ꢁ57/ꢁ57 331/331
ꢁ57/ꢁ57 331/331
ꢁ57/ꢁ57 331/331
ꢁ69/ꢁ78 331/331
ꢁ92/105 331/331
104/118 331/331
127/145 331/331
ꢁ57/ꢁ57 318/318
ꢁ57/ꢁ57 318/318
ꢁ57/ꢁ57 318/318
ꢁ70/ꢁ78 318/318
ꢁ93/105 318/318
104/118 318/318
127/145 318/318
ꢁ60/ꢁ60 335/335
ꢁ60/ꢁ60 335/335
ꢁ60/ꢁ60 335/335
ꢁ73/ꢁ82 335/335
ꢁ96/108 335/335
107/121 335/335
130/148 335/335
225A00
226A00
227A00
228A00
229A00
230A00
ꢀ
ꢁ20.0/ꢁ23.1 ꢁ7.5/10.0 ꢁ51.0/ꢁ51.0 ꢁ60/ꢁ60
ꢁ30.0/ꢁ34.6 11.3/15.0 ꢁ51.0/ꢁ52.7 ꢁ60/ꢁ60
ꢁ50.0/ꢁ57.7 18.8/25.0 ꢁ71.9/ꢁ81.5 ꢁ80/ꢁ90
ꢁ70.0/ꢁ80.8 26.3/35.0 ꢁ96.9/110.4 100/125
ꢁ80.0/ꢁ92.4 30.0/40.0 109.4/124.8 110/125
100.1/115.5 37.6/50.0 134.5/124.8 150/150
030A00
030A00
031A00
031A00
031A00
031A00
ꢀ
ꢁ7.5
10.2
ꢁ7.5
10.2
ꢁ3.4
ꢁ4.8
Low
High
Low
High
Low
High
ꢀ
ꢀ
ꢀ/ꢀ
ꢁ53.7/ꢁ53.7 ꢁ60/ꢁ60
225A00
226A00
227A00
228A00
229A00
230A00
ꢀ
ꢁ20.0/ꢁ23.1 ꢁ7.5/10.0 ꢁ53.7/ꢁ53.7 ꢁ60/ꢁ60
ꢁ30.0/ꢁ34.6 11.3/15.0 ꢁ53.7/ꢁ56.1 ꢁ60/ꢁ60
ꢁ50.0/ꢁ57.7 18.8/25.0 ꢁ75.3/ꢁ84.9 ꢁ80/ꢁ90
ꢁ70.0/ꢁ80.8 26.3/35.0 100.3/113.8 110/125
ꢁ80.0/ꢁ92.4 30.0/40.0 112.8/128.2 125/150
100.1/115.5 37.6/50.0 137.8/128.2 150/150
030A00
030A00
031A00
031A00
031A00
031A00
ꢀ
208/230-3-60 187 253 17.6
123
1.9
ꢀ
ꢀ/ꢀ
ꢁ54.0/ꢁ54.0 ꢁ60/ꢁ60
225A00
226A00
227A00
228A00
229A00
230A00
ꢀ
ꢁ20.0/ꢁ23.1 ꢁ7.5/10.0 ꢁ54.0/ꢁ54.0 ꢁ60/ꢁ60
ꢁ30.0/ꢁ34.6 11.3/15.0 ꢁ54.0/ꢁ56.4 ꢁ60/ꢁ60
ꢁ50.0/ꢁ57.7 18.8/25.0 ꢁ75.7/ꢁ85.3 ꢁ80/ꢁ90
ꢁ70.0/ꢁ80.8 26.3/35.0 100.7/114.2 110/125
ꢁ80.0/ꢁ92.4 30.0/40.0 113.2/128.6 125/150
100.1/115.5 37.6/50.0 138.2/128.6 150/150
030A00
030A00
031A00
031A00
031A00
031A00
ꢀ
3.0
ꢀ
ꢀ/ꢀ
ꢁ56.7/ꢁ56.7 ꢁ70/ꢁ70
225A00
226A00
227A00
228A00
229A00
230A00
ꢀ
ꢁ20.0/ꢁ23.1 ꢁ7.5/10.0 ꢁ56.7/ꢁ56.7 ꢁ70/ꢁ70
ꢁ30.0/ꢁ34.6 11.3/15.0 ꢁ56.7/ꢁ59.8 ꢁ70/ꢁ70
ꢁ50.0/ꢁ57.7 18.8/25.0 ꢁ79.0/ꢁ88.7 ꢁ80/ꢁ90
ꢁ70.0/ꢁ80.8 26.3/35.0 104.1/117.5 110/125
ꢁ80.0/ꢁ92.4 30.0/40.0 116.6/132.0 125/150
100.1/115.5 37.6/50.0 141.6/132.0 150/150
030A00
030A00
031A00
031A00
031A00
031A00
ꢀ
12
ꢀ
ꢀ
22.7
22.7
25.9
40.3
54.8
62.0
62.0
24.1
24.1
27.7
42.1
56.5
63.7
63.7
23.9
23.9
27.4
41.8
56.3
63.5
63.5
25.3
25.3
29.2
43.6
58.0
65.2
65.2
30
30
30
45
60
70
70
30
30
30
45
60
70
70
30
30
30
45
60
70
70
30
30
30
45
60
70
70
24
24
24
37
50
57
70
26
26
26
39
52
59
72
25
25
25
38
52
58
72
27
27
27
40
53
60
73
130
130
130
130
130
130
130
139
139
139
139
139
139
139
133
133
133
133
133
133
133
141
141
141
141
141
141
141
232A00
233A00
234A00
235A00
236A00
237A00
ꢀ
11.5
17.3
28.9
40.4
46.2
57.7
ꢀ
10.0
15.0
25.0
35.0
40.0
50.0
ꢀ
030A00
030A00
030A00
030A00
033A00
033A00
ꢀ
ꢀ
232A00
233A00
234A00
235A00
236A00
237A00
ꢀ
11.5
17.3
28.9
40.4
46.2
57.7
ꢀ
10.0
15.0
25.0
35.0
40.0
50.0
ꢀ
030A00
030A00
030A00
030A00
033A00
033A00
ꢀ
460-3-60
414 506 ꢁ7.7
ꢁ50
1.0
232A00
233A00
234A00
235A00
236A00
237A00
ꢀ
11.5
17.3
28.9
40.4
46.2
57.7
ꢀ
10.0
15.0
25.0
35.0
40.0
50.0
ꢀ
030A00
030A00
030A00
030A00
033A00
033A00
ꢀ
ꢁ3.4
Low
1.2
232A00
233A00
234A00
235A00
236A00
237A00
11.5
17.3
28.9
40.4
46.2
57.7
10.0
15.0
25.0
35.0
40.0
50.0
030A00
030A00
030A00
030A00
033A00
033A00
ꢁ4.8
High
17
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Table 1 — Electrical Data — Units Without Optional Powered Convenience Outlet (cont)
VOLTAGE
COMPRESSOR
(EA.)
DISCONNECT
SIZE
ELECTRIC HEAT
POWER SUPPLY
NOMINAL
POWER
EXHAUST
FLA
CRSINGLE
PART
RANGE
UNIT
50PG
OFM
FLA
IFM
FLA
IFM
WIRING
FIG. NO.
POWER SUPPLY
VOLTS-PH-HZ
TYPE
CRHEATER
PART NO.
NOMINAL
KW*
NO.(NOTE3)
MIN MAX
RLA
LRA
FLA
MCA
MOCP†
FLA
LRA
ꢀ
ꢀ
ꢀ
20.1
20.8
32.4
43.9
49.7
49.7
18.6
21.4
33.0
45.1
50.3
50.3
21.1
24.6
36.1
47.7
53.4
53.4
21.1
24.6
36.1
47.7
53.4
53.4
20
25
35
45
50
60
20
25
35
45
50
60
25
25
40
50
60
60
25
25
40
50
60
60
ꢀ
21
21
32
42
48
58
20
20
30
41
46
57
23
23
33
44
49
60
23
23
33
44
49
60
124
124
124
124
124
124
142
142
142
142
142
142
110
110
110
110
110
110
110
110
110
110
110
110
ꢀ
15
15
15
15
15
ꢀ
15
15
15
15
15
ꢀ
15
15
15
15
15
ꢀ
15
15
15
15
15
239A00
240A00
241A00
242A00
243A00
ꢀ
13.9
23.1
32.3
37.0
46.2
ꢀ
15.0
25.0
35.0
40.0
50.0
ꢀ
030A00
030A00
030A00
030A00
030A00
ꢀ
ꢁ2.8
ꢁ3.3
ꢁ2.8
ꢁ3.3
Low
High
Low
High
ꢀ
239A00
240A00
241A00
242A00
243A00
ꢀ
13.9
23.1
32.3
37.0
46.2
ꢀ
15.0
25.0
35.0
40.0
50.0
ꢀ
030A00
030A00
030A00
030A00
030A00
ꢀ
12
(cont)
575-3-60
518 632 ꢁ6.1 40.0 0.8
239A00
240A00
241A00
242A00
243A00
ꢀ
13.9
23.1
32.3
37.0
46.2
ꢀ
15.0
25.0
35.0
40.0
50.0
ꢀ
030A00
030A00
030A00
030A00
030A00
ꢀ
3.0
239A00
240A00
241A00
242A00
243A00
13.9
23.1
32.3
37.0
46.2
15.0
25.0
35.0
40.0
50.0
030A00
030A00
030A00
030A00
030A00
Example: Supply voltage is 460-3-60
LEGEND
Full Load Amps
FLA
−
AB = 224 v
BC = 231 v
AC = 226 v
HACR − Heating, Air Conditioning and Refrigeration
IFM
−
−
−
Indoor − Fan Motor
Locked Rotor Amps
Minimum Circuit Amps
224 + 231 + 226
3
LRA
MCA
Average Voltage =
681
3
=
MOCP − Maximum Overcurrent Protection
NEC
OFM
RLA
−
−
−
National Electrical Code
Outdoor−Fan Motor
Rated Load Amps
=
227
Determine maximum deviation from average voltage.
ꢂ(AB) 227 – 223 = 3 v
ꢂ(BC) 231 – 227 = 4 v
*
†
Heater capacity (kW) is based on heater voltage of 208 v, 240 v, or 480 v. If power distribu-
tion voltage to unit varies from rated heater voltage, heater kW will vary accordingly.
Fuse or HACR circuit breaker.
ꢂ(AC) 227 – 226 = 1 v
Maximum deviation is 4 v.
Determine percent of voltage imbalance.
NOTES:
1. In compliance with NEC requirements for multimotor and combination load equip-
ment (refer to NEC Articles 430 and 440), the overcurrent protective device for the
unit shall be fuse or HACR breaker.
4
% Voltage Imbalance
= 100 x
227
2. Unbalanced 3-Phase Supply Voltage
Never operate a motor where a phase imbalance in supply voltage is greater than
2%. Use the following formula to determine the percentage of voltage imbalance.
= 1.76%
This amount of phase imbalance is satisfactory as it is below the maximum allowable 2%.
IMPORTANT: If the supply voltage phase imbalance is more than 2%, contact your local electric
max voltage deviation from average voltage
utility company immediately.
% Voltage Imbalance
= 100 x
average voltage
3. Single point kits CRSINGLE028A00 and CRSINGLE030A00 are not required if
field−supplied pressure connectors are used.
18
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Table 1 — Electrical Data — Units Without Optional Powered Convenience Outlet (cont)
VOLTAGE
COMPRESSOR
(EA.)
DISCONNECT
SIZE
ELECTRIC HEAT
POWER SUPPLY
NOMINAL
POWER
EXHAUST
FLA
CRSINGLE
PART
RANGE
UNIT
50PG
OFM
FLA
IFM
FLA
IFM
WIRING
FIG. NO.
POWER SUPPLY
VOLTS-PH-HZ
TYPE
CRHEATER
PART NO.
NOMINAL
KW*
NO.(NOTE3)
MIN MAX
RLA
LRA
FLA
MCA
MOCP†
FLA
LRA
ꢀ
ꢀ
ꢀ/ꢀ
ꢁ64.5/ꢁ64.5 ꢁ80/ꢁ80
ꢀ
ꢁ68/ꢁ68
ꢁ68/ꢁ68
ꢁ68/ꢁ68
ꢁ69/ꢁ78
ꢁ92/105
127/145
150/171
ꢁ73/ꢁ73
ꢁ73/ꢁ73
ꢁ73/ꢁ73
ꢁ75/ꢁ84
ꢁ98/110
132/150
155/177
ꢁ71/ꢁ71
ꢁ71/ꢁ71
ꢁ71/ꢁ71
ꢁ73/ꢁ82
ꢁ96/108
130/148
153/175
ꢁ77/ꢁ77
ꢁ77/ꢁ77
ꢁ77/ꢁ77
ꢁ78/ꢁ87
101/114
136/153
159/180
32
383/383
383/383
383/383
383/383
383/383
383/383
383/383
391/391
391/391
391/391
391/391
391/391
391/391
391/391
387/387
387/387
387/387
387/387
387/387
387/387
387/387
395/395
395/395
395/395
395/395
395/395
395/395
395/395
190
ꢀ
18
18
18
18
18
18
ꢀ
18
18
18
18
18
18
ꢀ
18
18
18
18
18
18
ꢀ
18
18
18
18
18
18
ꢀ
15
15
15
15
19
19
ꢀ
15
15
15
15
19
19
ꢀ
15
15
15
15
19
19
ꢀ
15
15
15
15
19
19
ꢀ
15
15
15
15
15
15
ꢀ
15
15
15
15
15
19
ꢀ
15
15
15
15
15
19
ꢀ
15
15
15
15
15
19
225A00
226A00
227A00
228A00
230A00
231A00
ꢀ
ꢁ20.0/ꢁ23.1 ꢁ7.5/10.0 ꢁ64.5/ꢁ64.5 ꢁ80/ꢁ80
ꢁ30.0/ꢁ34.6 11.3/15.0 ꢁ64.5/ꢁ64.5 ꢁ80/ꢁ80
ꢁ50.0/ꢁ57.7 18.8/25.0 ꢁ75.3/ꢁ84.9 ꢁ80/ꢁ90
ꢁ70.0/ꢁ80.8 26.3/35.0 100.3/113.8 110/125
100.1/115.5 37.6/50.0 137.8/128.2 150/150
120.1/138.6 45.1/60.0 162.8/151.3 175/175
032A00
032A00
032A00
032A00
032A00
032A00
ꢀ
10.2
15.0
10.2
15.0
ꢁ4.8
ꢁ7.4
ꢁ4.8
ꢁ7.4
3.3
Low
High
Low
High
Low
High
Low
High
Low
High
ꢀ
3.0
ꢀ
ꢀ
ꢀ/ꢀ
ꢁ69.3/ꢁ69.3 ꢁ90/ꢁ90
225A00
226A00
227A00
228A00
230A00
231A00
ꢀ
ꢁ20.0/ꢁ23.1 ꢁ7.5/10.0 ꢁ69.3/ꢁ69.3 ꢁ90/ꢁ90
ꢁ30.0/ꢁ34.6 11.3/15.0 ꢁ69.3/ꢁ69.3 ꢁ90/ꢁ90
ꢁ50.0/ꢁ57.7 18.8/25.0 ꢁ81.3/ꢁ90.9 ꢁ90/100
ꢁ70.0/ꢁ80.8 26.3/35.0 106.3/119.8 110/125
100.1/115.5 37.6/50.0 143.8/134.2 150/150
120.1/138.6 45.1/60.0 168.8/157.3 175/175
032A00
032A00
032A00
032A00
032A00
032A00
ꢀ
208/230-3-60 187 253 22.4
149
1.9
ꢀ
ꢀ/ꢀ
ꢁ67.5/ꢁ67.5 ꢁ80/ꢁ80
225A00
226A00
227A00
228A00
230A00
231A00
ꢀ
ꢁ20.0/ꢁ23.1 ꢁ7.5/10.0 ꢁ67.5/ꢁ67.5 ꢁ80/ꢁ80
ꢁ30.0/ꢁ34.6 11.3/15.0 ꢁ67.5/ꢁ67.5 ꢁ80/ꢁ80
ꢁ50.0/ꢁ57.7 18.8/25.0 ꢁ79.0/ꢁ88.7 ꢁ80/ꢁ90
ꢁ70.0/ꢁ80.8 26.3/35.0 104.1/117.5 110/125
100.1/115.5 37.6/50.0 141.6/132.0 150/150
120.1/138.6 45.1/60.0 166.6/155.1 175/175
032A00
032A00
032A00
032A00
032A00
032A00
ꢀ
ꢀ
ꢀ/ꢀ
ꢁ72.3/ꢁ72.3 ꢁ90/ꢁ90
225A00
226A00
227A00
228A00
230A00
231A00
ꢀ
ꢁ20.0/ꢁ23.1 ꢁ7.5/10.0 ꢁ72.3/ꢁ72.3 ꢁ90/ꢁ90
ꢁ30.0/ꢁ34.6 11.3/15.0 ꢁ72.3/ꢁ72.3 ꢁ90/ꢁ90
ꢁ50.0/ꢁ57.7 18.8/25.0 ꢁ85.0/ꢁ94.7 ꢁ90/100
ꢁ70.0/ꢁ80.8 26.3/35.0 110.1/123.5 125/125
100.1/115.5 37.6/50.0 147.6/138.0 150/150
120.1/138.6 45.1/60.0 172.6/161.1 175/175
032A00
032A00
032A00
032A00
032A00
032A00
ꢀ
ꢀ
ꢀ
30.6
30.6
30.6
42.1
56.5
63.7
75.3
33.2
33.2
33.2
45.3
59.8
67.0
78.5
31.8
31.8
31.8
43.6
58.0
65.2
76.8
34.4
34.4
34.4
46.8
61.3
68.5
80.0
28.7
28.7
33.0
45.1
50.3
50.3
59.6
31.0
31.0
35.9
47.4
53.2
53.2
62.4
24.7
24.7
36.1
47.7
53.4
53.4
62.7
27.5
28.1
39.6
51.2
56.9
56.9
66.2
40
40
40
45
60
70
90
40
40
40
50
60
80
90
40
40
40
45
60
70
90
45
45
45
50
70
80
90
25
25
35
45
50
60
60
30
30
40
50
60
60
70
30
30
40
50
60
60
70
30
30
40
60
60
60
70
232A00
233A00
234A00
235A00
237A00
238A00
ꢀ
11.5
17.3
28.9
40.4
57.7
69.3
ꢀ
10.0
15.0
25.0
35.0
50.0
60.0
ꢀ
030A00
030A00
030A00
030A00
033A00
033A00
ꢀ
32
190
32
190
39
190
52
190
72
190
85
190
35
194
232A00
233A00
234A00
235A00
237A00
238A00
ꢀ
11.5
17.3
28.9
40.4
57.7
69.3
ꢀ
10.0
15.0
25.0
35.0
50.0
60.0
ꢀ
030A00
030A00
030A00
030A00
033A00
033A00
ꢀ
35
194
35
194
42
194
55
194
75
194
88
194
14
460-3-60
414 506 10.6
ꢁ75
1.0
34
192
232A00
233A00
234A00
235A00
237A00
238A00
ꢀ
11.5
17.3
28.9
40.4
57.7
69.3
ꢀ
10.0
15.0
25.0
35.0
50.0
60.0
ꢀ
030A00
030A00
030A00
030A00
033A00
033A00
ꢀ
34
192
34
192
40
192
53
192
73
192
87
192
1.2
37
197
232A00
233A00
234A00
235A00
237A00
238A00
ꢀ
11.5
17.3
28.9
40.4
57.7
69.3
ꢀ
10.0
15.0
25.0
35.0
50.0
60.0
ꢀ
030A00
030A00
030A00
033A00
033A00
033A00
ꢀ
37
197
37
197
43
197
56
197
76
197
90
197
30
180
239A00
240A00
241A00
242A00
243A00
244A00
ꢀ
13.9
23.1
32.3
37.0
46.2
55.4
ꢀ
15.0
25.0
35.0
40.0
50.0
60.0
ꢀ
030A00
030A00
030A00
030A00
030A00
030A00
ꢀ
30
180
30
180
41
180
46
180
57
180
68
180
ꢀ
33
191
239A00
240A00
241A00
242A00
243A00
244A00
ꢀ
13.9
23.1
32.3
37.0
46.2
55.4
ꢀ
15.0
25.0
35.0
40.0
50.0
60.0
ꢀ
030A00
030A00
030A00
030A00
030A00
033A00
ꢀ
33
191
33
191
44
191
5.6
49
191
60
191
70
191
575-3-60
518 632 10.6 59.0 0.8
26
138
239A00
240A00
241A00
242A00
243A00
244A00
ꢀ
13.9
23.1
32.3
37.0
46.2
55.4
ꢀ
15.0
25.0
35.0
40.0
50.0
60.0
ꢀ
030A00
030A00
030A00
030A00
030A00
033A00
ꢀ
26
138
33
138
44
138
3.3
Low
49
138
60
138
70
138
3.0
29
151
239A00
240A00
241A00
242A00
243A00
244A00
13.9
23.1
32.3
37.0
46.2
55.4
13.9
23.1
32.3
37.0
46.2
55.4
030A00
030A00
030A00
030A00
030A00
033A00
29
151
36
151
5.6
High
47
151
52
151
63
151
74
151
19
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Table 1 — Electrical Data — Units Without Optional Powered Convenience Outlet (cont)
VOLTAGE
RANGE
COMPR
COMPR
COMPR
POWER
NOMINAL
POWER
ELECTRIC HEAT
POWER SUPPLY
DISCONNECT SIZE
OF
MFL
A
CRSINGLE
PART NO.
(NOTE3)
NO. 1
NO. 2
NO. 3
EXHAUST
UNIT
50PG
IFM
IFM
FLA
WIRING
FIG. NO.
CRHEATER
PART NO.
NOMINAL
KW*
TYPE
SUPPLY
MIN MAX RLA LRA RLA LRA RLA LRA
QTY FLA
FLA
MCA
MOCP
FLA
LRA
(V-PH-HZ)
ꢀ
ꢀ
ꢀ/ꢀ
ꢁ74.2/ꢁ74.2 ꢁ90/ꢁ90
ꢀ
ꢁ80/ꢁ80 482/482
ꢁ80/ꢁ81 482/482
132/150 482/482
192/219 482/482
ꢁ86/ꢁ86 491/491
ꢁ86/ꢁ86 491/491
137/156 491/491
197/225 491/491
ꢁ91/ꢁ91 529/529
ꢁ91/ꢁ91 529/529
142/161 529/529
202/230 529/529
ꢁ84/ꢁ84 486/486
ꢁ84/ꢁ84 486/486
135/154 486/486
195/223 486/486
ꢁ89/ꢁ89 495/495
ꢁ89/ꢁ90 495/495
141/159 495/495
200/228 495/495
ꢁ94/ꢁ94 533/533
ꢁ94/ꢁ95 533/533
146/164 533/533
206/233 533/533
ꢀ
20
20
20
ꢀ
20
20
20
ꢀ
20
20
20
ꢀ
20
20
20
ꢀ
20
20
20
ꢀ
20
20
20
ꢀ
21
22
22
ꢀ
21
22
22
ꢀ
21
22
22
ꢀ
21
22
22
ꢀ
21
22
22
ꢀ
21
22
22
ꢀ
21
21
22
ꢀ
21
21
22
ꢀ
21
21
22
ꢀ
21
21
22
ꢀ
21
21
22
ꢀ
21
21
22
255A00
256A00
257A00
ꢀ
ꢁ52.1/ꢁ60.1 18.8/25.0 ꢁ77.9/ꢁ87.9 ꢁ90/ꢁ90
104.2/120.3 37.6/50.0 143.0/133.0 150/150
156.3/180.4 56.3/75.0 169.1/193.2 200/225
034
034
034
ꢀ
Low 10.2
ꢀ
ꢀ/ꢀ
ꢁ79.0/ꢁ79.0 ꢁ90/ꢁ90
255A00
256A00
257A00
ꢀ
ꢁ52.1/ꢁ60.1 18.8/25.0 ꢁ83.9/ꢁ93.9 ꢁ90/100
104.2/120.3 37.6/50.0 149.0/139.0 150/175
156.3/180.4 56.3/75.0 175.1/199.2 200/225
034
034
034
ꢀ
Mid-
15.0
Low
ꢀ
ꢀ
3.0
ꢀ
ꢀ
ꢀ/ꢀ
ꢁ83.4/ꢁ83.4 100/100
255A00
256A00
257A00
ꢀ
ꢁ52.1/ꢁ60.1 18.8/25.0 ꢁ89.4/ꢁ99.4 100/100
104.2/120.3 37.6/50.0 154.5/144.5 175/175
156.3/180.4 56.3/75.0 180.6/204.7 200/225
034
034
034
ꢀ
High 19.4
208/230-3-60 187 253 18.1 137 18.1 137 17.6 123 1.9
ꢀ
ꢀ/ꢀ
ꢁ77.2/ꢁ77.2 ꢁ90/ꢁ90
255A00
256A00
257A00
ꢀ
ꢁ52.1/ꢁ60.1 18.8/25.0 ꢁ81.6/ꢁ91.7 ꢁ90/100
104.2/120.3 37.6/50.0 146.8/136.8 150/150
156.3/180.4 56.3/75.0 172.8/196.9 200/225
034
034
034
ꢀ
Low 10.2
ꢀ
ꢀ/ꢀ
ꢁ82.0/ꢁ82.0 100/100
255A00
256A00
257A00
ꢀ
ꢁ52.1/ꢁ60.1 18.8/25.0 ꢁ87.6/ꢁ97.7 100/100
104.2/120.3 37.6/50.0 152.8/142.8 175/175
156.3/180.4 56.3/75.0 178.8/202.9 200/225
034
034
034
ꢀ
Mid-
15.0
Low
2
ꢀ
ꢀ/ꢀ
ꢁ86.4/ꢁ86.4 100/100
255A00
256A00
257A00
ꢀ
ꢁ52.1/ꢁ60.1 18.8/25.0 ꢁ93.1/103.2 100/110
104.2/120.3 37.6/50.0 158.3/148.3 175/175
156.3/180.4 56.3/75.0 184.3/208.4 200/250
034
034
034
ꢀ
High 19.4
ꢀ
ꢀ/ꢀ
25.0
50.0
75.0
ꢀ/ꢀ
25.0
50.0
75.0
ꢀ/ꢀ
25.0
50.0
75.0
ꢀ/ꢀ
25.0
50.0
75.0
ꢀ/ꢀ
25.0
50.0
75.0
ꢀ/ꢀ
25.0
50.0
75.0
ꢀ/ꢀ
25.0
50.0
75.0
ꢀ/ꢀ
25.0
50.0
75.0
ꢀ/ꢀ
25.0
50.0
75.0
ꢀ/ꢀ
25.0
50.0
75.0
ꢀ/ꢀ
25.0
50.0
75.0
ꢀ/ꢀ
25.0
50.0
75.0
ꢁ35.8
ꢁ43.6
ꢁ66.1
ꢁ96.2
ꢁ38.4
ꢁ46.8
ꢁ69.4
ꢁ99.5
ꢁ40.7
ꢁ49.7
ꢁ72.3
102.3
ꢁ37.0
ꢁ45.1
ꢁ67.6
ꢁ97.7
ꢁ39.6
ꢁ48.3
ꢁ70.9
101.0
ꢁ41.9
ꢁ51.2
ꢁ73.8
103.8
ꢁ26.6
ꢁ33.6
ꢁ49.7
ꢁ75.7
ꢁ29.4
ꢁ37.1
ꢁ53.2
ꢁ79.2
ꢁ31.6
ꢁ39.8
ꢁ55.9
ꢁ81.9
ꢁ29.6
ꢁ37.3
ꢁ53.4
ꢁ79.4
ꢁ32.4
ꢁ40.8
ꢁ56.9
ꢁ82.9
ꢁ34.6
ꢁ43.6
ꢁ59.7
ꢁ85.7
ꢁ40
ꢁ45
ꢁ80
100
ꢁ45
ꢁ50
ꢁ80
110
ꢁ50
ꢁ50
ꢁ80
125
ꢁ45
ꢁ50
ꢁ80
100
ꢁ45
ꢁ50
ꢁ80
110
ꢁ50
ꢁ60
ꢁ80
125
ꢁ30
ꢁ35
ꢁ60
ꢁ80
ꢁ35
ꢁ40
ꢁ60
ꢁ90
ꢁ35
ꢁ40
ꢁ60
ꢁ90
ꢁ35
ꢁ40
ꢁ60
ꢁ90
ꢁ35
ꢁ45
ꢁ60
ꢁ90
ꢁ40
ꢁ45
ꢁ70
ꢁ100
ꢁ39
ꢁ40
ꢁ75
109
ꢁ42
ꢁ43
ꢁ78
112
ꢁ44
ꢁ46
ꢁ80
115
ꢁ40
ꢁ41
ꢁ76
111
ꢁ43
ꢁ44
ꢁ79
114
ꢁ46
ꢁ47
ꢁ82
116
ꢁ29
ꢁ31
ꢁ56
ꢁ86
ꢁ32
ꢁ34
ꢁ60
ꢁ89
ꢁ34
ꢁ37
ꢁ62
ꢁ92
ꢁ32
ꢁ34
ꢁ60
ꢁ90
ꢁ35
ꢁ38
ꢁ63
ꢁ93
ꢁ38
ꢁ40
ꢁ66
ꢁ95
215
215
215
215
219
219
219
219
238
238
238
238
217
217
217
217
222
222
222
222
241
241
241
241
167
167
167
167
181
181
181
181
196
196
196
196
171
171
171
171
185
185
185
185
200
200
200
200
258A00
259A00
260A00
ꢀ
30.1
60.1
90.2
ꢀ
035
036
036
ꢀ
Low
4.8
7.4
9.7
4.8
7.4
9.7
2.8
5.6
7.8
2.8
258A00
259A00
260A00
ꢀ
30.1
60.1
90.2
ꢀ
035
036
036
ꢀ
Mid-
Low
ꢀ
258A00
259A00
260A00
ꢀ
30.1
60.1
90.2
ꢀ
035
036
036
ꢀ
High
Low
16
460-3-60
414 506 ꢁ9.0 ꢁ62 ꢁ9.0 ꢁ62 ꢁ7.7 ꢁ50 1.0
258A00
259A00
260A00
ꢀ
30.1
60.1
90.2
ꢀ
035
036
036
ꢀ
258A00
259A00
260A00
ꢀ
30.1
60.1
90.2
ꢀ
035
036
036
ꢀ
Mid-
Low
2
1.2
258A00
259A00
260A00
ꢀ
30.1
60.1
90.2
ꢀ
036
036
036
ꢀ
High
Low
261A00
262A00
263A00
ꢀ
24.1
46.2
72.2
ꢀ
035
035
036
ꢀ
261A00
262A00
263A00
ꢀ
24.1
46.2
72.2
ꢀ
035
035
036
ꢀ
Mid-
Low
ꢀ
ꢀ
261A00
262A00
263A00
ꢀ
24.1
46.2
72.2
ꢀ
035
035
036
ꢀ
High
Low
575-3-60
518 633 ꢁ6.8 ꢁ50 ꢁ6.8 ꢁ50 ꢁ6.1 ꢁ40 0.8
261A00
262A00
263A00
ꢀ
24.1
46.2
72.2
ꢀ
035
035
036
ꢀ
261A00
262A00
263A00
ꢀ
24.1
46.2
72.2
ꢀ
035
035
036
ꢀ
Mid-
Low
2
3.0
5.6
7.8
261A00
262A00
263A00
24.1
46.2
72.2
035
035
036
High
20
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Table 2 — Electrical Data — Units With Optional Powered Convenience Outlet
VOLTAGE
RANGE
COMPRESSOR
ELECTRIC HEAT
POWER SUPPLY
DISCONNECT SIZE
NOMINAL
POWER
EXHAUST
FLA
CRSINGLE
PART NO.
(NOTE3)
(EA)
UNIT
50PG
OFM
FLA
IFM
FLA
IFM
WIRING
FIG. NO.
POWER SUPPLY
VOLTS-PH-HZ
TYPE
MA
MIN
X
CRHEATER
PART NO.
NOMINAL
KW*
RLA
LRA
FLA
MCA
MOCP†
FLA
LRA
ꢀ
ꢀ
ꢀ/ꢀ
2.3/3.0
3.8/5.0
5.6/7.5
27.8/27.8
27.8/27.8
32.8/36.1
43.6/48.6
30/30
30/30
35/40
45/50
60/70
30/30
30/30
35/40
45/50
60/70
40/40
40/40
40/40
50/60
60/70
40/40
40/40
40/40
50/60
60/70
45/45
45/45
45/45
45/50
60/70
80/90
45/45
45/45
45/45
45/50
60/70
80/90
45/45
45/45
45/45
50/60
60/70
80/90
45/45
45/45
45/45
50/60
60/70
80/90
30/30
30/30
30/30
35/35
40/45
50/60
30/30
30/30
30/30
35/35
40/45
50/60
ꢀ
27/27
27/27
31/34
41/46
51/57
27/27
27/27
31/34
41/46
51/57
29/29
29/29
33/36
43/47
53/59
29/29
29/29
33/36
43/47
53/59
78/78
78/78
78/78
78/78
78/78
78/78
78/78
78/78
78/78
78/78
80/80
80/80
80/80
80/80
80/80
80/80
80/80
80/80
80/80
80/80
ꢀ
13
13
13
13
ꢀ
13
13
13
13
ꢀ
13
13
13
13
ꢀ
13
13
13
13
ꢀ
13
13
13
13
14
ꢀ
13
13
13
13
14
ꢀ
13
13
13
13
14
ꢀ
13
13
13
13
14
ꢀ
15
15
15
15
15
ꢀ
15
15
15
15
15
200A00
201A00
202A00
203A00
ꢀ
10.8/12.5
17.3/20.0
26.0/30.0
028A00
028A00
028A00
028A00
ꢀ
Low
High
Low
High
34.7/40.0 7.5/10.0 54.5/61.1
ꢀ
ꢀ
ꢀ/ꢀ
2.3/3.0
3.8/5.0
5.6/7.5
27.8/27.8
27.8/27.8
32.8/36.1
43.6/48.6
200A00
201A00
202A00
203A00
ꢀ
10.8/12.5
17.3/20.0
26.0/30.0
028A00
028A00
028A00
028A00
ꢀ
34.7/40.0 7.5/10.0 54.5/61.1
03
208/230-1-60 187 253 12.8
60
0.9
4.9
ꢀ
ꢀ/ꢀ
29.2/29.2
29.2/29.2
200A00
201A00
202A00
203A00
ꢀ
10.8/12.5
2.3/3.0
028A00
028A00
028A00
028A00
ꢀ
17.3/20.0 3.8/ꢁ5.0 34.5/37.9
26.0/30.0 5.6/ꢁ7.5 45.4/50.4
34.7/40.0 7.5/10.0 56.2/62.9
1.4
ꢀ
ꢀ/ꢀ
29.2/29.2
200A00
201A00
202A00
203A00
ꢀ
10.8/12.5 2.3/ꢁ3.0 29.2/29.2
17.3/20.0 3.8/ꢁ5.0 34.5/37.9
26.0/30.0 5.6/ꢁ7.5 45.4/50.4
34.7/40.0 7.5/10.0 56.2/62.9
028A00
028A00
028A00
028A00
ꢀ
ꢀ
ꢀ/ꢀ
31.0/31.0
30/30 101/101
30/30 101/101
31/34 101/101
41/46 101/101
51/57 101/101
71/80 101/101
30/30 101/101
30/30 101/101
31/34 101/101
41/46 101/101
51/57 101/101
71/80 101/101
32/32 103/103
32/32 103/103
33/36 103/103
43/47 103/103
53/59 103/103
73/82 103/103
32/32 103/103
32/32 103/103
33/36 103/103
43/47 103/103
53/59 103/103
73/82 103/103
200A00
201A00
202A00
203A00
204A00
ꢀ
10.8/12.5 ꢁ2.3/ꢁ3.0 31.0/31.0
17.3/20.0 ꢁ3.8/ꢁ5.0 32.8/36.1
26.0/30.0 ꢁ5.6/ꢁ7.5 43.6/48.6
34.7/40.0 ꢁ7.5/10.0 54.5/61.1
52.0/60.0 11.3/15.0 76.1/86.1
028A00
028A00
028A00
028A00
029A00
ꢀ
Low
High
Low
High
Low
High
ꢀ
1.4
ꢀ
ꢀ
ꢀ/ꢀ
31.0/31.0
200A00
201A00
202A00
203A00
204A00
ꢀ
10.8/12.5 ꢁ2.3/ꢁ3.0 31.0/31.0
17.3/20.0 ꢁ3.8/ꢁ5.0 32.8/36.1
26.0/30.0 ꢁ5.6/ꢁ7.5 43.6/48.6
34.7/40.0 ꢁ7.5/10.0 54.5/61.1
52.0/60.0 11.3/15.0 76.1/86.1
028A00
028A00
028A00
028A00
029A00
ꢀ
208/230-1-60 187 253 15.4
83
0.9
4.9
ꢀ
ꢀ/ꢀ
32.4/32.4
200A00
201A00
202A00
203A00
204A00
ꢀ
10.8/12.5 ꢁ2.3/ꢁ3.0 32.4/32.4
17.3/20.0 ꢁ3.8/ꢁ5.0 34.5/37.9
26.0/30.0 ꢁ5.6/ꢁ7.5 45.4/50.4
34.7/40.0 ꢁ7.5/10.0 56.2/62.9
52.0/60.0 11.3/15.0 77.9/87.9
028A00
028A00
028A00
028A00
029A00
ꢀ
04
ꢀ
ꢀ/ꢀ
32.4/32.4
200A00
201A00
202A00
203A00
204A00
ꢀ
10.8/12.5 ꢁ2.3/ꢁ3.0 32.4/32.4
17.3/20.0 ꢁ3.8/ꢁ5.0 34.5/37.9
26.0/30.0 ꢁ5.6/ꢁ7.5 45.4/50.4
34.7/40.0 ꢁ7.5/10.0 56.2/62.9
52.0/60.0 11.3/15.0 77.9/87.9
028A00
028A00
028A00
028A00
029A00
ꢀ
ꢀ
ꢀ/ꢀ
25.0/25.0
25/25
25/25
25/25
28/31
34/38
46/51
25/25
25/25
25/25
28/31
34/38
46/51
95/95
95/95
95/95
95/95
95/95
95/95
95/95
95/95
95/95
95/95
95/95
95/95
207A00
208A00
209A00
210A00
211A00
ꢀ
ꢁ6.3/ꢁ7.2 ꢁ2.3/ꢁ3.0 25.0/25.0
10.0/11.5 ꢁ3.8/ꢁ5.0 25.0/26.0
15.0/17.3 ꢁ5.6/ꢁ7.5 30.9/33.2
20.0/23.1 ꢁ7.5/10.0 37.2/40.4
30.0/34.6 11.3/15.0 49.7/54.9
030A00
030A00
030A00
030A00
030A00
ꢀ
208/230-3-60 187 253 11.5
77
0.9
4.9
ꢀ
ꢀ/ꢀ
25.0/25.0
207A00
208A00
209A00
210A00
211A00
ꢁ6.3/ꢁ7.2 ꢁ2.3/ꢁ3.0 25.0/25.0
10.0/11.5 ꢁ3.8/ꢁ5.0 25.0/26.0
15.0/17.3 ꢁ5.6/ꢁ7.5 30.9/33.2
20.0/23.1 ꢁ7.5/10.0 37.2/40.4
30.0/34.6 11.3/15.0 49.7/54.9
030A00
030A00
030A00
030A00
030A00
Example: Supply voltage is 460-3-60
LEGEND
Full Load Amps
FLA
−
AB = 224 v
BC = 231 v
AC = 226 v
HACR − Heating, Air Conditioning and Refrigeration
IFM
−
−
−
Indoor − Fan Motor
Locked Rotor Amps
Minimum Circuit Amps
224 + 231 + 226
3
LRA
MCA
Average Voltage =
681
3
=
MOCP − Maximum Overcurrent Protection
NEC
OFM
RLA
−
−
−
National Electrical Code
Outdoor−Fan Motor
Rated Load Amps
=
227
Determine maximum deviation from average voltage.
ꢂ(AB) 227 – 223 = 3 v
ꢂ(BC) 231 – 227 = 4 v
*
†
Heater capacity (kW) is based on heater voltage of 208 v, 240 v, or 480 v. If power distribu-
tion voltage to unit varies from rated heater voltage, heater kW will vary accordingly.
Fuse or HACR circuit breaker.
ꢂ(AC) 227 – 226 = 1 v
Maximum deviation is 4 v.
Determine percent of voltage imbalance.
NOTES:
1. In compliance with NEC requirements for multimotor and combination load equip-
ment (refer to NEC Articles 430 and 440), the overcurrent protective device for the
unit shall be fuse or HACR breaker.
4
% Voltage Imbalance
= 100 x
227
2. Unbalanced 3-Phase Supply Voltage
Never operate a motor where a phase imbalance in supply voltage is greater than
2%. Use the following formula to determine the percentage of voltage imbalance.
= 1.76%
This amount of phase imbalance is satisfactory as it is below the maximum allowable 2%.
IMPORTANT: If the supply voltage phase imbalance is more than 2%, contact your local electric
utility company immediately.
max voltage deviation from average voltage
% Voltage Imbalance
= 100 x
average voltage
3. Single point kits CRSINGLE028A00 and CRSINGLE030A00 are not required if
field−supplied pressure connectors are used.
21
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Table 2 — Electrical Data — Units With Optional Powered Convenience Outlet (cont)
VOLTAGE
RANGE
COMPRESSOR
NOMINAL
POWER
ELECTRIC HEATC
POWER SUPPLY
DISCONNECT SIZE
POWER
EXHAUST
FLA
CRSINGLE
PART NO.
(NOTE3)
(EA)
UNIT
50PG
OFM
FLA
IFM
FLA
IFM
WIRING
FIG. NO.
SUPPLY
TYPE
CRHEATER
NOMINAL
KW*
MIN MAX
RLA
LRA
FLA
MCA
MOCP†
FLA
LRA
VOLTS-PH-HZ
PART NO.
ꢀ
ꢀ
ꢀ/ꢀ
26.4/26.4
26.4/26.4
26.4/27.7
32.6/35.0
38.9/42.2
51.4/56.6
26.4/26.4
26.4/26.4
26.4/27.7
32.6/35.0
38.9/42.2
51.4/56.6
11.2
30/30
30/30
30/30
35/40
40/45
60/60
30/30
30/30
30/30
35/40
40/45
60/60
15
ꢀ
27/27
27/27
27/27
30/33
36/39
47/53
27/27
27/27
27/27
30/33
36/39
47/53
11
97/97
97/97
97/97
97/97
97/97
97/97
97/97
97/97
97/97
97/97
97/97
97/97
44
ꢀ
15
15
15
15
15
ꢀ
15
15
15
15
15
ꢀ
15
15
15
15
15
ꢀ
15
15
15
15
15
ꢀ
15
15
15
15
15
ꢀ
15
15
15
15
15
ꢀ
15
15
ꢀ
15
15
ꢀ
15
15
ꢀ
15
15
ꢀ
13
13
13
14
14
ꢀ
13
13
13
14
14
ꢀ
13
13
13
14
14
ꢀ
13
13
13
14
14
ꢀ
15
15
15
15
16
ꢀ
15
15
15
15
16
207A00
208A00
209A00
210A00
211A00
ꢀ
ꢁ6.3/ꢁ7.2 ꢁ2.3/ꢁ3.0
10.0/11.5 ꢁ3.8/ꢁ5.0
15.0/17.3 ꢁ5.6/ꢁ7.5
20.0/23.1 ꢁ7.5/10.0
30.0/34.6 11.3/15.0
030A00
030A00
030A00
030A00
030A00
ꢀ
Low
High
Low
High
Low
High
208/230-3-60
(cont)
187 253 11.5
77
0.9
0.5
0.4
4.9
2.1
2.2
1.4
ꢀ
ꢀ/ꢀ
207A00
208A00
209A00
210A00
211A00
ꢀ
ꢁ6.3/ꢁ7.2 ꢁ2.3/ꢁ3.0
10.0/11.5 ꢁ3.8/ꢁ5.0
15.0/17.3 ꢁ5.6/ꢁ7.5
20.0/23.1 ꢁ7.5/10.0
30.0/34.6 11.3/15.0
030A00
030A00
030A00
030A00
030A00
ꢀ
ꢀ
ꢀ
ꢁ3.0
ꢁ5.0
ꢁ7.5
10.0
15.0
ꢀ
214A00
215A00
216A00
217A00
218A00
ꢀ
ꢁ3.5
ꢁ5.8
ꢁ8.7
11.5
17.3
ꢀ
11.2
15
030A00
030A00
030A00
030A00
030A00
ꢀ
11
44
12.6
15
12
44
16.2
20
15
44
19.8
20
18
44
27.0
30
25
44
ꢀ
11.2
15
11
44
214A00
215A00
216A00
217A00
218A00
ꢀ
ꢁ3.5
ꢁ5.8
ꢁ8.7
11.5
17.3
ꢀ
ꢁ3.0
ꢁ5.0
ꢁ7.5
10.0
15.0
ꢀ
11.2
15
030A00
030A00
030A00
030A00
030A00
ꢀ
11
44
12.6
15
12
44
16.2
20
15
44
19.8
20
18
44
27.0
30
25
44
04
460-3-60
414 506
5.1
35
11.8
15
12
45
214A00
215A00
216A00
217A00
218A00
ꢀ
ꢁ3.5
ꢁ5.8
ꢁ8.7
11.5
17.3
ꢀ
ꢁ3.0
ꢁ5.0
ꢁ7.5
10.0
15.0
ꢀ
11.8
15
030A00
030A00
030A00
030A00
030A00
ꢀ
12
45
13.3
15
12
45
16.9
20
16
45
20.5
25
19
45
27.7
30
26
45
0.6
11.8
15
12
45
214A00
215A00
216A00
217A00
218A00
ꢀ
ꢁ3.5
ꢁ5.8
ꢁ8.7
11.5
17.3
ꢀ
ꢁ3.0
ꢁ5.0
ꢁ7.5
10.0
15.0
ꢀ
11.8
15
030A00
030A00
030A00
030A00
030A00
ꢀ
12
45
13.3
15
12
45
16.9
20
16
45
20.5
25
19
45
27.7
30
26
45
ꢁ9.7
15
10
39
221A00
222A00
ꢀ
ꢁ9.2
13.9
ꢀ
10.0
15.0
ꢀ
16.3
20
030A00
030A00
ꢀ
15
39
Low
High
Low
High
22.1
25
20
38
ꢀ
9.7
15
10
39
221A00
222A00
ꢀ
ꢁ9.2
13.9
ꢀ
10.0
15.0
ꢀ
16.3
20
030A00
030A00
ꢀ
15
39
22.1
25
20
39
575-3-60
518 632
4.3
31.0
11.1
15
12
41
221A00
222A00
ꢀ
ꢁ9.2
13.9
ꢀ
10.0
15.0
ꢀ
18.0
20
030A00
030A00
ꢀ
17
41
23.9
25
22
41
1.4
11.1
15
12
41
221A00
222A00
ꢀ
ꢁ9.2
13.9
ꢀ
10.0
15.0
ꢀ/ꢀ
18.0
20
030A00
030A00
ꢀ
17
41
23.9
25
22
41
37.4/ꢁ37.4 ꢁ50/ꢁ50
36/ꢁ36 127/127
201A00
202A00
203A00
204A00
205A00
ꢀ
17.3/20.0 ꢁ3.8/ꢁ5.0 37.4/ꢁ37.4 ꢁ50/ꢁ50 028A00 36/ꢁ36 127/127
26.0/30.0 ꢁ5.6/ꢁ7.5 43.6/ꢁ48.6 ꢁ50/ꢁ50 028A00 41/ꢁ46 127/127
34.7/40.0 ꢁ7.5/10.0 54.5/ꢁ61.1 ꢁ60/ꢁ70 028A00 51/ꢁ57 127/127
52.0/60.0 11.3/15.0 76.1/ꢁ86.1 ꢁ80/ꢁ90 029A00 71/ꢁ80 127/127
69.3/80.0 15.0/20.0 97.8/111.1 100/125 029A00 91/103 127/127
4.9
7.0
4.9
7.0
Low
High
Low
High
ꢀ
ꢀ
ꢀ/ꢀ
ꢁ39.5/ꢁ39.5 ꢁ50/ꢁ50
ꢀ
38/ꢁ38 153/153
201A00
202A00
203A00
204A00
205A00
ꢀ
17.3/20.0 ꢁ3.8/ꢁ5.0 ꢁ39.5/ꢁ39.5 ꢁ50/ꢁ50 028A00 38/ꢁ38 153/153
26.0/30.0 ꢁ5.6/ꢁ7.5 ꢁ46.2/ꢁ51.3 ꢁ50/ꢁ60 028A00 43/ꢁ48 153/153
34.7/40.0 ꢁ7.5/10.0 ꢁ57.1/ꢁ63.8 ꢁ60/ꢁ70 028A00 53/ꢁ60 153/153
52.0/60.0 11.3/15.0 ꢁ78.7/ꢁ88.8 ꢁ80/ꢁ90 029A00 73/ꢁ83 153/153
69.3/80.0 15.0/20.0 100.4/113.8 110/125 029A00 93/106 153/153
208/230-1-60 187 253 20.5
109
0.9
ꢀ
ꢀ/ꢀ
38.8/ꢁ38.8 ꢁ50/ꢁ50
ꢀ
37/ꢁ37 129/129
201A00
202A00
203A00
204A00
205A00
ꢀ
17.3/20.0 ꢁ3.8/ꢁ5.0 38.8/ꢁ38.8 ꢁ50/ꢁ50 028A00 37/ꢁ37 129/129
26.0/30.0 ꢁ5.6/ꢁ7.5 45.4/ꢁ50.4 ꢁ50/ꢁ60 028A00 43/ꢁ47 129/129
34.7/40.0 ꢁ7.5/10.0 56.2/ꢁ62.9 ꢁ60/ꢁ70 028A00 53/ꢁ59 129/129
52.0/60.0 11.3/15.0 77.9/ꢁ87.9 ꢁ80/ꢁ90 029A00 73/ꢁ82 129/129
69.3/80.0 15.0/20.0 99.5/112.9 110/125 029A00 92/105 129/129
05
1.4
ꢀ
ꢀ/ꢀ
ꢁ40.9/ꢁ40.9 ꢁ60/ꢁ60
ꢀ
40/ꢁ40 155/155
201A00
202A00
203A00
204A00
205A00
ꢀ
17.3/20.0 ꢁ3.8/ꢁ5.0 ꢁ40.9/ꢁ40.9 ꢁ60/ꢁ60 028A00 40/ꢁ40 155/155
26.0/30.0 ꢁ5.6/ꢁ7.5 ꢁ48.0/ꢁ53.0 ꢁ60/ꢁ60 028A00 45/ꢁ50 155/155
34.7/40.0 ꢁ7.5/10.0 ꢁ58.8/ꢁ65.5 ꢁ60/ꢁ70 028A00 55/ꢁ61 155/155
52.0/60.0 11.3/15.0 ꢁ80.5/ꢁ90.5 ꢁ90/100 029A00 75/ꢁ84 155/155
69.3/80.0 15.0/20.0 102.2/115.5 110/125 029A00 95/107 155/155
ꢀ
ꢀ/ꢀ
28.8/28.8
28.8/28.8
30.9/33.2
37.2/40.4
49.7/54.9
62.2/69.3
29.1/29.1
29.1/29.1
31.3/33.6
37.5/40.8
50.0/55.2
62.5/69.7
40/40
40/40
40/40
40/45
50/60
70/70
40/40
40/40
40/40
40/45
60/60
70/80
ꢀ
29/29 109/109
29/29 109/109
29/31 109/109
34/38 109/109
46/51 109/109
57/64 109/109
29/29 128/128
29/29 128/128
29/31 128/128
35/38 128/128
46/51 128/128
58/65 128/128
208A00
209A00
210A00
211A00
212A00
ꢀ
10.0/11.5 ꢁ3.8/ꢁ5.0
15.0/17.3 ꢁ5.6/ꢁ7.5
20.0/23.1 ꢁ7.5/10.0
30.0/34.6 11.3/15.0
40.0/46.2 15.0/20.0
030A00
030A00
030A00
030A00
031A00
ꢀ
4.9
5.2
Low
208/230-3-60 187 253 14.6
ꢁ91
0.9
ꢀ
ꢀ
ꢀ/ꢀ
208A00
209A00
210A00
211A00
212A00
10.0/11.5 ꢁ3.8/ꢁ5.0
15.0/17.3 ꢁ5.6/ꢁ7.5
20.0/23.1 ꢁ7.5/10.0
30.0/34.6 11.3/15.0
40.0/46.2 15.0/20.0
030A00
030A00
030A00
030A00
031A00
High
22
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Table 2 — Electrical Data — Units With Optional Powered Convenience Outlet (cont)
COMPRESSOR
VOLTAGE
RANGE
NOMINAL
POWER
ELECTRIC HEAT
POWER SUPPLY
DISCONNECT SIZE
POWER
EXHAUST
FLA
CRSINGLE
PART NO.
(NOTE3)
(EA)
UNIT
50PG
OFM
FLA
IFM
FLA
IFM
WIRING
FIG. NO.
TYPE
CRHEATER
PART NO.
NOMINAL
KW*
SUPPLY
MIN MAX
RLA
LRA
FLA
MCA
MOCP†
FLA
LRA
VOLTS-PH-HZ
ꢀ
ꢀ
ꢀ/ꢀ
30.2/30.2
30.2/30.2
32.6/35.0
38.9/42.2
51.4/56.6
63.9/71.0
30.5/30.5
30.5/30.5
33.0/35.3
39.3/42.6
51.8/57.0
64.3/71.4
13.6
40/40
40/40
40/40
40/45
60/60
70/80
45/45
45/45
45/45
45/45
60/60
70/80
20
ꢀ
31/31
31/31
31/33
36/39
47/53
59/66
31/31
31/31
31/33
36/40
48/53
59/66
14
111/111
111/111
111/111
111/111
111/111
111/111
130/130
130/130
130/130
130/130
130/130
130/130
55
ꢀ
15
15
15
15
16
ꢀ
15
15
15
15
16
ꢀ
15
15
15
15
15
ꢀ
15
15
15
15
15
ꢀ
15
15
15
15
15
ꢀ
15
15
15
15
15
ꢀ
15
15
15
ꢀ
15
15
15
ꢀ
15
15
15
ꢀ
15
15
15
ꢀ
13
13
13
14
14
14
ꢀ
13
13
13
14
14
14
208A00
209A00
210A00
211A00
212A00
ꢀ
10.0/11.5 ꢁ3.8/ꢁ5.0
15.0/17.3 ꢁ5.6/ꢁ7.5
20.0/23.1 ꢁ7.5/10.0
30.0/34.6 11.3/15.0
40.0/46.2 15.0/20.0
030A00
030A00
030A00
030A00
031A00
ꢀ
4.9
5.2
2.1
2.6
2.1
2.6
Low
High
Low
High
Low
High
208/230-3-60
(cont)
187 253 14.6
ꢁ91
0.9
1.4
ꢀ
ꢀ/ꢀ
208A00
209A00
210A00
211A00
212A00
ꢀ
10.0/11.5 ꢁ3.8/ꢁ5.0
15.0/17.3 ꢁ5.6/ꢁ7.5
20.0/23.1 ꢁ7.5/10.0
30.0/34.6 11.3/15.0
40.0/46.2 15.0/20.0
030A00
030A00
030A00
030A00
031A00
ꢀ
ꢀ
ꢀ
ꢁ5.0
ꢁ7.5
10.0
15.0
20.0
ꢀ
215A00
216A00
217A00
218A00
219A00
ꢀ
ꢁ5.8
ꢁ8.7
11.5
17.3
23.1
ꢀ
13.6
20
030A00
030A00
030A00
030A00
030A00
ꢀ
14
55
16.2
20
15
55
19.8
20
18
55
27.0
30
25
55
34.2
35
31
55
ꢀ
14.1
20
14
64
215A00
216A00
217A00
218A00
219A00
ꢀ
ꢁ5.8
ꢁ8.7
11.5
17.3
23.1
ꢀ
ꢁ5.0
ꢁ7.5
10.0
15.0
20.0
ꢀ
14.1
20
030A00
030A00
030A00
030A00
030A00
ꢀ
14
64
16.8
20
15
64
20.4
25
19
64
27.6
30
25
64
34.8
35
32
64
460-3-60
414 506 ꢁ7.1
ꢁ46
0.5
14.2
20
14
56
215A00
216A00
217A00
218A00
219A00
ꢀ
ꢁ5.8
ꢁ8.7
11.5
17.3
23.1
ꢀ
ꢁ5.0
ꢁ7.5
10.0
15.0
20.0
ꢀ
14.2
20
030A00
030A00
030A00
030A00
030A00
ꢀ
14
56
05
(cont)
16.9
20
16
56
20.5
25
19
56
27.7
30
26
56
35.0
40
32
56
0.6
14.7
20
15
65
215A00
216A00
217A00
218A00
219A00
ꢀ
ꢁ5.8
ꢁ8.7
11.5
17.3
23.1
ꢀ
ꢁ5.0
ꢁ7.5
10.0
15.0
20.0
ꢀ
14.7
20
030A00
030A00
030A00
030A00
030A00
ꢀ
15
65
17.5
20
16
65
21.2
25
19
65
28.4
30
26
65
35.6
40
33
65
10.7
15
11
42
221A00
222A00
223A00
ꢀ
ꢁ9.2
13.9
18.5
ꢀ
10.0
15.0
20.0
ꢀ
16.3
20
030A00
030A00
030A00
ꢀ
15
42
Low
High
Low
High
22.1
25
20
42
27.9
30
26
42
ꢀ
10.6
15
11
48
221A00
222A00
223A00
ꢀ
ꢁ9.2
13.9
18.5
ꢀ
10.0
15.0
20.0
ꢀ
16.1
20
030A00
030A00
030A00
ꢀ
15
48
22.0
25
20
48
27.8
30
26
48
575-3-60
518 632 ꢁ5.0 34.0 0.4
2.0
12.1
15
12
44
221A00
222A00
223A00
ꢀ
ꢁ9.2
13.9
18.5
ꢀ
10.0
15.0
20.0
ꢀ
18.0
20
030A00
030A00
030A00
ꢀ
17
44
23.9
25
22
44
29.6
30
27
44
1.4
12.0
15
12
50
221A00
222A00
223A00
ꢀ
ꢁ9.2
13.9
18.5
ꢀ
10.0
15.0
20.0
ꢀ/ꢀ
17.9
20
030A00
030A00
030A00
ꢀ
16
50
23.8
25
22
50
29.5
30
27
50
ꢁ46.1/ꢁ46.1 ꢁ60/ꢁ60
ꢁ44/ꢁ44 164/164
201A00 17.3/ꢁ20.0 ꢁ3.8/ꢁ5.0 ꢁ46.1/ꢁ46.1 ꢁ60/ꢁ60
202A00 26.0/ꢁ30.0 ꢁ5.6/ꢁ7.5 ꢁ46.1/ꢁ48.6 ꢁ60/ꢁ60
203A00 34.7/ꢁ40.0 ꢁ7.5/10.0 ꢁ54.5/ꢁ61.1 ꢁ60/ꢁ70
204A00 52.0/ꢁ60.0 11.3/15.0 ꢁ76.1/ꢁ86.1 ꢁ80/ꢁ90
205A00 69.3/ꢁ80.0 15.0/20.0 ꢁ97.8/111.1 100/125
206A00 86.7/100.0 18.8/25.0 119.4/136.1 125/150
028A00 ꢁ44/ꢁ44 164/164
028A00 ꢁ44/ꢁ46 164/164
028A00 ꢁ51/ꢁ57 164/164
029A00 ꢁ71/ꢁ80 164/164
029A00 ꢁ91/103 164/164
029A00 111/126 164/164
4.9
Low
06
208/230-1-60 187 253 26.9
145
1.5
ꢀ
ꢀ
ꢀ
ꢀ/ꢀ
ꢁ48.2/ꢁ48.2 ꢁ60/ꢁ60
ꢀ
ꢁ46/ꢁ46 190/190
201A00 17.3/ꢁ20.0 ꢁ3.8/ꢁ5.0 ꢁ48.2/ꢁ48.2 ꢁ60/ꢁ60
202A00 26.0/ꢁ30.0 ꢁ5.6/ꢁ7.5 ꢁ48.2/ꢁ51.3 ꢁ60/ꢁ60
028A00 ꢁ46/ꢁ46 190/190
028A00 ꢁ46/ꢁ48 190/190
028A00 ꢁ53/ꢁ60 190/190
029A00 ꢁ73/ꢁ83 190/190
029A00 ꢁ93/106 190/190
029A00 113/129 190/190
7.0
High 203A00 34.7/ꢁ40.0 ꢁ7.5/10.0 ꢁ57.1/ꢁ63.8 ꢁ60/ꢁ70
204A00 52.0/ꢁ60.0 11.3/15.0 ꢁ78.7/ꢁ88.8 ꢁ80/ꢁ90
205A00 69.3/ꢁ80.0 15.0/20.0 100.4/113.8 110/125
206A00 86.7/100.0 18.8/25.0 122.1/138.8 125/150
Example: Supply voltage is 460-3-60
LEGEND
Full Load Amps
FLA
−
AB = 224 v
BC = 231 v
AC = 226 v
HACR − Heating, Air Conditioning and Refrigeration
IFM
−
−
−
Indoor − Fan Motor
Locked Rotor Amps
Minimum Circuit Amps
224 + 231 + 226
3
LRA
MCA
Average Voltage =
681
3
=
MOCP − Maximum Overcurrent Protection
NEC
OFM
RLA
−
−
−
National Electrical Code
Outdoor−Fan Motor
Rated Load Amps
=
227
Determine maximum deviation from average voltage.
ꢂ(AB) 227 – 223 = 3 v
ꢂ(BC) 231 – 227 = 4 v
*
†
Heater capacity (kW) is based on heater voltage of 208 v, 240 v, or 480 v. If power distribu-
tion voltage to unit varies from rated heater voltage, heater kW will vary accordingly.
Fuse or HACR circuit breaker.
ꢂ(AC) 227 – 226 = 1 v
Maximum deviation is 4 v.
Determine percent of voltage imbalance.
NOTES:
4
1. In compliance with NEC requirements for multimotor and combination load equip-
ment (refer to NEC Articles 430 and 440), the overcurrent protective device for the
unit shall be fuse or HACR breaker.
% Voltage Imbalance
= 100 x
227
= 1.76%
2. Unbalanced 3-Phase Supply Voltage
Never operate a motor where a phase imbalance in supply voltage is greater than
2%. Use the following formula to determine the percentage of voltage imbalance.
This amount of phase imbalance is satisfactory as it is below the maximum allowable 2%.
IMPORTANT: If the supply voltage phase imbalance is more than 2%, contact your local electric
utility company immediately.
max voltage deviation from average voltage
% Voltage Imbalance
= 100 x
3. Single point kits CRSINGLE028A00 and CRSINGLE030A00 are not required if
field−supplied pressure connectors are used.
average voltage
23
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Table 2 — Electrical Data — Units With Optional Powered Convenience Outlet (cont)
VOLTAGE
RANGE
COMPRESSOR
ELECTRIC HEAT
POWER SUPPLY
DISCONNECT SIZE
NOMINAL
POWER SUPPLY
VOLTS-PH-HZ
POWER
EXHAUST
FLA
CRSINGLE
PART NO.
(NOTE3)
UNIT
50PG
OFM
FLA
IFM
FLA
IFM
WIRING
FIG. NO.
CRHEATER
PART NO.
NOMINAL
KW*
TYPE
MIN
MAX
RLA
LRA
FLA
MCA
MOCP†
FLA
LRA
ꢀ
ꢀ
ꢀ/ꢀ
ꢁ46.2/ꢁ46.2 ꢁ60/ꢁ60
ꢀ
ꢁ45/ꢁ45 166/166
ꢀ
13
13
13
14
14
14
ꢀ
13
13
13
14
14
14
ꢀ
15
15
15
15
16
16
ꢀ
15
15
15
15
16
16
ꢀ
15
15
15
15
16
16
ꢀ
15
15
15
15
16
16
ꢀ
15
15
15
15
15
15
ꢀ
15
15
15
15
15
15
ꢀ
15
15
15
15
15
15
ꢀ
15
15
15
15
15
15
ꢀ
15
15
15
15
ꢀ
15
15
15
15
ꢀ
15
15
15
15
ꢀ
15
15
15
15
201A00 17.3/ꢁ20.0 ꢁ3.8/ꢁ5.0 ꢁ46.2/ꢁ46.2 ꢁ60/ꢁ60
202A00 26.0/ꢁ30.0 ꢁ5.6/ꢁ7.5 ꢁ46.4/ꢁ51.4 ꢁ60/ꢁ60
203A00 34.7/ꢁ40.0 ꢁ7.5/10.0 ꢁ57.3/ꢁ63.9 ꢁ60/ꢁ70
204A00 52.0/ꢁ60.0 11.3/15.0 ꢁ78.9/ꢁ88.9 ꢁ80/ꢁ90
028A00 ꢁ45/ꢁ45 166/166
028A00 ꢁ45/ꢁ47 166/166
028A00 ꢁ53/ꢁ59 166/166
029A00 ꢁ73/ꢁ82 166/166
029A00 ꢁ92/105 166/166
029A00 112/128 166/166
4.9
Low
High
Low
High
Low
High
Low
High
Low
High
205A00 69.3/ꢁ80.0 15.0/20.0 100.5/1139
206A00 86.7/100.0 18.8/25.0 122.3/138.9 125/150
ꢀ/ꢀ ꢁ49.6/ꢁ49.6 ꢁ60/ꢁ60
110/125
208/230-1-60
(cont)
187 253
26.9
145
1.5
1.4
ꢀ
ꢀ
ꢀ
ꢁ48/ꢁ48 192/192
201A00 17.3/ꢁ20.0 ꢁ3.8/ꢁ5.0 ꢁ49.6/ꢁ49.6 ꢁ60/ꢁ60
202A00 26.0/ꢁ30.0 ꢁ5.6/ꢁ7.5 ꢁ49.6/ꢁ53.0 ꢁ60/ꢁ60
203A00 34.7/ꢁ40.0 ꢁ7.5/10.0 ꢁ58.8/ꢁ65.5 ꢁ60/ꢁ70
204A00 52.0/ꢁ60.0 11.3/15.0 ꢁ80.5/ꢁ90.5 ꢁ90/100
205A00 69.3/ꢁ80.0 15.0/20.0 102.2/115.5 110/125
206A00 86.7/100.0 18.8/25.0 123.8/140.5 125/150
028A00 ꢁ48/ꢁ48 192/192
028A00 ꢁ48/ꢁ50 192/192
028A00 ꢁ55/ꢁ61 192/192
029A00 ꢁ75/ꢁ84 192/192
029A00 ꢁ95/107 192/192
029A00 115/130 192/192
7.0
ꢀ
ꢀ
ꢀ/ꢀ
33.5/33.5
33.5/33.5
33.5/33.6
37.5/40.8
50.0/55.2
62.5/69.7
75.1/84.1
33.5/33.5
33.5/33.5
33.5/33.6
37.5/40.8
50.0/55.2
62.5/69.7
75.1/84.1
34.9/34.9
34.9/34.9
34.9/35.3
39.3/42.6
51.8/57.0
64.3/71.4
76.8/85.9
34.9/34.9
34.9/34.9
34.9/35.3
39.3/42.6
51.8/57.0
64.3/71.4
76.8/85.9
15.2
50/50
50/50
50/50
50/50
60/60
70/80
80/90
50/50
50/50
50/50
50/50
60/60
70/80
80/90
50/50
50/50
50/50
50/50
60/60
70/80
80/90
50/50
50/50
50/50
50/50
60/60
70/80
80/90
20
ꢀ
34/34
34/34
34/34
35/38
46/51
58/65
69/78
34/34
34/34
34/34
35/38
46/51
58/65
69/78
35/35
35/35
35/35
36/40
48/53
59/66
71/80
35/35
35/35
35/35
36/40
48/53
59/66
71/80
15
161/161
161/161
161/161
161/161
161/161
161/161
161/161
161/161
161/161
161/161
161/161
161/161
161/161
161/161
163/163
163/163
163/163
163/163
163/163
163/163
163/163
163/163
163/163
163/163
163/163
163/163
163/163
163/163
69
208A00
209A00
210A00
211A00
212A00
213A00
ꢀ
10.0/11.5 ꢁ3.8/ꢁ5.0
15.0/17.3 ꢁ5.6/ꢁ7.5
20.0/23.1 ꢁ7.5/10.0
30.0/34.6 11.3/15.0
40.0/46.2 15.0/20.0
50.0/57.7 18.8/25.0
030A00
030A00
030A00
030A00
031A00
031A00
ꢀ
ꢀ
ꢀ
ꢀ/ꢀ
208A00
209A00
210A00
211A00
212A00
213A00
ꢀ
10.0/11.5 ꢁ3.8/ꢁ5.0
15.0/17.3 ꢁ5.6/ꢁ7.5
20.0/23.1 ꢁ7.5/10.0
30.0/34.6 11.3/15.0
40.0/46.2 15.0/20.0
50.0/57.7 18.8/25.0
030A00
030A00
030A00
030A00
031A00
031A00
ꢀ
208/230-3-60 187 253
17.6
123
1.5
5.2
ꢀ
ꢀ/ꢀ
208A00
209A00
210A00
211A00
212A00
213A00
ꢀ
10.0/11.5 ꢁ3.8/ꢁ5.0
15.0/17.3 ꢁ5.6/ꢁ7.5
20.0/23.1 ꢁ7.5/10.0
30.0/34.6 11.3/15.0
40.0/46.2 15.0/20.0
50.0/57.7 18.8/25.0
030A00
030A00
030A00
030A00
031A00
031A00
ꢀ
1.4
ꢀ
ꢀ/ꢀ
208A00
209A00
210A00
211A00
212A00
213A00
ꢀ
10.0/11.5 ꢁ3.8/ꢁ5.0
15.0/17.3 ꢁ5.6/ꢁ7.5
20.0/23.1 ꢁ7.5/10.0
30.0/34.6 11.3/15.0
40.0/46.2 15.0/20.0
50.0/57.7 18.8/25.0
030A00
030A00
030A00
030A00
031A00
031A00
ꢀ
ꢀ
ꢀ
215A00
216A00
217A00
218A00
219A00
220A00
ꢀ
ꢁ5.8
ꢁ8.7
11.5
17.3
23.1
28.9
ꢀ
ꢁ5.0
ꢁ7.5
10.0
15.0
20.0
25.0
ꢀ
15.2
20
030A00
030A00
030A00
030A00
030A00
030A00
ꢀ
15
69
16.8
20
15
69
06
(cont)
20.4
25
19
69
27.6
30
25
69
34.8
35
32
69
42.1
45
39
69
ꢀ
15.2
20
15
69
215A00
216A00
217A00
218A00
219A00
220A00
ꢀ
ꢁ5.8
ꢁ8.7
11.5
17.3
23.1
28.9
ꢀ
ꢁ5.0
ꢁ7.5
10.0
15.0
20.0
25.0
ꢀ
15.2
20
030A00
030A00
030A00
030A00
030A00
030A00
ꢀ
15
69
16.8
20
15
69
20.4
25
19
69
27.6
30
25
69
34.8
35
32
69
42.1
45
39
69
460-3-60
414 506
ꢁ7.7
ꢁ50
0.8
2.6
15.8
20
16
70
215A00
216A00
217A00
218A00
219A00
220A00
ꢀ
ꢁ5.8
ꢁ8.7
11.5
17.3
23.1
28.9
ꢀ
ꢁ5.0
ꢁ7.5
10.0
15.0
20.0
25.0
ꢀ
15.8
20
030A00
030A00
030A00
030A00
030A00
030A00
ꢀ
16
70
17.5
20
16
70
21.2
25
19
70
28.4
30
26
70
35.6
40
33
70
42.8
45
39
70
0.6
15.8
20
16
70
215A00
216A00
217A00
218A00
219A00
220A00
ꢀ
ꢁ5.8
ꢁ8.7
11.5
17.3
23.1
28.9
ꢀ
ꢁ5.0
ꢁ7.5
10.0
15.0
20.0
25.0
ꢀ
15.8
20
030A00
030A00
030A00
030A00
030A00
030A00
ꢀ
16
70
17.5
20
16
70
21.2
25
19
70
28.4
30
26
70
35.6
40
33
70
42.8
45
39
70
12.1
15
12
54
221A00
222A00
223A00
254A00
ꢀ
ꢁ9.2
13.9
18.5
23.1
ꢀ
10.0
15.0
20.0
25.0
ꢀ
16.2
20
030A00
030A00
030A00
030A00
ꢀ
15
54
22.0
25
20
54
Low
High
Low
High
27.8
30
26
54
33.5
35
31
54
ꢀ
13.5
15
14
56
221A00
222A00
223A00
254A00
ꢀ
ꢁ9.2
13.9
18.5
23.1
ꢀ
10.0
15.0
20.0
25.0
ꢀ
18.0
20
030A00
030A00
030A00
030A00
ꢀ
17
56
23.7
25
22
56
29.5
30
27
56
35.3
35
32
56
575-3-60
518 632
ꢁ6.1
40.0
0.8
2.0
12.1
20
12
54
221A00
222A00
223A00
254A00
ꢀ
ꢁ9.2
13.9
18.5
23.1
ꢀ
10.0
15.0
20.0
25.0
ꢀ
16.2
20
030A00
030A00
030A00
030A00
ꢀ
15
54
22.0
25
20
54
27.8
30
26
54
33.5
40
31
54
1.4
13.5
20
14
56
221A00
222A00
223A00
254A00
ꢁ9.2
13.9
18.5
23.1
10.0
15.0
20.0
25.0
18.0
20
030A00
030A00
030A00
030A00
17
56
23.7
25
22
56
29.5
30
27
56
35.3
40
32
56
24
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Table 2 — Electrical Data — Units With Optional Powered Convenience Outlet (cont)
VOLTAGE
RANGE
NOMINAL
POWER
COMPRESSOR
ELECTRIC HEAT
POWER SUPPLY
DISCONNECT SIZE
POWER
EXHAUST
FLA
CRSINGLE
PART NO.
(NOTE3)
UNIT
50PG
OFM
FLA
IFM
FLA
IFM
WIRING
FIG. NO.
SUPPLY
TYPE
CRHEATER
NOMINAL
KW*
MIN MAX
RLA
LRA
FLA
MCA
MOCP†
FLA
LRA
VOLTS-PH-HZ
PART NO.
ꢀ
ꢀ
ꢀ/ꢀ
37.2/37.2
50/50
50/50
50/50
50/50
50/50
60/70
70/80
50/50
50/50
50/50
50/50
60/60
70/80
80/90
50/50
50/50
50/50
50/50
60/60
70/80
80/90
60/60
60/60
60/60
60/60
60/70
70/80
80/90
25
ꢀ
37/37 187/187
37/37 187/187
37/37 187/187
37/38 187/187
46/51 187/187
58/65 187/187
69/78 187/187
39/39 213/213
39/39 213/213
39/39 213/213
39/41 213/213
49/54 213/213
60/67 213/213
72/81 213/213
38/38 189/189
38/38 189/189
38/38 189/189
38/40 189/189
48/53 189/189
59/66 189/189
71/80 189/189
41/41 214/214
41/41 214/214
41/41 214/214
41/42 214/214
50/56 214/214
62/69 214/214
73/82 214/214
ꢀ
15
15
15
15
16
16
ꢀ
15
15
15
15
16
16
ꢀ
15
15
15
15
16
16
ꢀ
15
15
15
15
16
16
ꢀ
15
15
15
15
15
15
ꢀ
15
15
15
15
15
15
ꢀ
15
15
15
15
15
15
ꢀ
15
15
15
15
15
15
208A00 10.0/11.5 ꢁ3.8/ꢁ5.0 37.2/37.2
209A00 15.0/17.3 ꢁ5.6/ꢁ7.5 37.2/37.2
210A00 20.0/23.1 ꢁ7.5/10.0 37.5/40.8
211A00 30.0/34.6 11.3/15.0 50.0/55.2
212A00 40.0/46.2 15.0/20.0 62.5/69.7
213A00 50.0/57.7 18.8/25.0 75.1/84.1
030A00
030A00
030A00
030A00
031A00
031A00
ꢀ
5.2
7.5
5.2
7.5
2.6
3.4
2.6
3.4
Low
High
Low
High
Low
High
Low
High
ꢀ
1.4
ꢀ
ꢀ
ꢀ
ꢀ/ꢀ
39.5/39.5
208A00 10.0/11.5 ꢁ3.8/ꢁ5.0 39.5/39.5
209A00 15.0/17.3 ꢁ5.6/ꢁ7.5 39.5/39.5
210A00 20.0/23.1 ꢁ7.5/10.0 40.4/43.7
211A00 30.0/34.6 11.3/15.0 52.9/58.1
212A00 40.0/46.2 15.0/20.0 65.4/72.5
213A00 50.0/57.7 18.8/25.0 77.9/87.0
030A00
030A00
030A00
030A00
031A00
031A00
ꢀ
208/230-3-60 187 253 20.5
149
1.5
ꢀ
ꢀ
ꢀ/ꢀ
38.6/38.6
208A00 10.0/11.5 ꢁ3.8/ꢁ5.0 38.6/38.6
209A00 15.0/17.3 ꢁ5.6/ꢁ7.5 38.6/38.6
210A00 20.0/23.1 ꢁ7.5/10.0 39.3/42.6
211A00 30.0/34.6 11.3/15.0 51.8/57.0
212A00 40.0/46.2 15.0/20.0 64.3/71.4
213A00 50.0/57.7 18.8/25.0 76.8/85.9
030A00
030A00
030A00
030A00
031A00
031A00
ꢀ
ꢀ
ꢀ
ꢀ/ꢀ
40.9/40.9
208A00 10.0/11.5 ꢁ3.8/ꢁ5.0 40.9/40.9
209A00 15.0/17.3 ꢁ5.6/ꢁ7.5 40.9/40.9
210A00 20.0/23.1 ꢁ7.5/10.0 42.2/45.4
211A00 30.0/34.6 11.3/15.0 54.7/59.9
212A00 40.0/46.2 15.0/20.0 67.2/74.3
213A00 50.0/57.7 18.8/25.0 79.7/88.7
030A00
030A00
030A00
031A00
031A00
031A00
ꢀ
07
ꢀ
ꢀ
ꢀ
17.6
17.6
17.6
20.4
27.6
34.8
42.1
18.4
18.4
18.4
21.4
28.6
35.8
43.1
18.2
18.2
18.2
21.2
28.4
35.6
42.8
19.0
19.0
19.0
22.2
29.4
36.6
43.8
17
17
17
19
25
32
39
18
18
18
20
26
33
40
18
18
18
19
26
33
39
19
19
19
20
27
34
40
ꢁ94
ꢁ94
ꢁ94
ꢁ94
ꢁ94
ꢁ94
ꢁ94
107
107
107
107
107
107
107
ꢁ95
ꢁ95
ꢁ95
ꢁ95
ꢁ95
ꢁ95
ꢁ95
108
108
108
108
108
108
108
215A00
216A00
217A00
218A00
219A00
220A00
ꢀ
ꢁ5.8
ꢁ8.7
11.5
17.3
23.1
28.9
ꢀ
ꢁ5.0
ꢁ7.5
10.0
15.0
20.0
25.0
ꢀ
25
030A00
030A00
030A00
030A00
030A00
030A00
ꢀ
25
25
30
35
45
25
215A00
216A00
217A00
218A00
219A00
220A00
ꢀ
ꢁ5.8
ꢁ8.7
11.5
17.3
23.1
28.9
ꢀ
ꢁ5.0
ꢁ7.5
10.0
15.0
20.0
25.0
ꢀ
25
030A00
030A00
030A00
030A00
030A00
030A00
ꢀ
25
25
30
40
45
460-3-60
414 506
9.6
75
0.8
25
215A00
216A00
217A00
218A00
219A00
220A00
ꢀ
ꢁ5.8
ꢁ8.7
11.5
17.3
23.1
28.9
ꢀ
ꢁ5.0
ꢁ7.5
10.0
15.0
20.0
25.0
ꢀ
25
030A00
030A00
030A00
030A00
030A00
030A00
ꢀ
25
25
30
40
45
0.6
25
215A00
216A00
217A00
218A00
219A00
220A00
ꢁ5.8
ꢁ8.7
11.5
17.3
23.1
28.9
ꢁ5.0
ꢁ7.5
10.0
15.0
20.0
25.0
25
030A00
030A00
030A00
030A00
030A00
030A00
25
25
30
40
45
Example: Supply voltage is 460-3-60
LEGEND
Full Load Amps
FLA
−
AB = 224 v
BC = 231 v
AC = 226 v
HACR − Heating, Air Conditioning and Refrigeration
IFM
−
−
−
Indoor − Fan Motor
Locked Rotor Amps
Minimum Circuit Amps
224 + 231 + 226
3
LRA
MCA
Average Voltage =
681
3
=
MOCP − Maximum Overcurrent Protection
NEC
OFM
RLA
−
−
−
National Electrical Code
Outdoor−Fan Motor
Rated Load Amps
=
227
Determine maximum deviation from average voltage.
ꢂ(AB) 227 – 223 = 3 v
ꢂ(BC) 231 – 227 = 4 v
*
†
Heater capacity (kW) is based on heater voltage of 208 v, 240 v, or 480 v. If power distribu-
tion voltage to unit varies from rated heater voltage, heater kW will vary accordingly.
Fuse or HACR circuit breaker.
ꢂ(AC) 227 – 226 = 1 v
Maximum deviation is 4 v.
Determine percent of voltage imbalance.
NOTES:
1. In compliance with NEC requirements for multimotor and combination load equip-
ment (refer to NEC Articles 430 and 440), the overcurrent protective device for the
unit shall be fuse or HACR breaker.
4
% Voltage Imbalance
= 100 x
227
2. Unbalanced 3-Phase Supply Voltage
Never operate a motor where a phase imbalance in supply voltage is greater than
2%. Use the following formula to determine the percentage of voltage imbalance.
= 1.76%
This amount of phase imbalance is satisfactory as it is below the maximum allowable 2%.
IMPORTANT: If the supply voltage phase imbalance is more than 2%, contact your local electric
utility company immediately.
max voltage deviation from average voltage
% Voltage Imbalance
= 100 x
average voltage
3. Single point kits CRSINGLE028A00 and CRSINGLE030A00 are not required if
field−supplied pressure connectors are used.
25
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Table 2 — Electrical Data — Units With Optional Powered Convenience Outlet (cont)
VOLTAGE
RANGE
COMPRESSOR
ELECTRIC HEAT
POWER SUPPLY
DISCONNECT SIZE
NOMINAL
POWER
EXHAUST
FLA
CRSINGLE
PART NO.
(NOTE3)
UNIT
50PG
OFM
FLA
IFM
FLA
IFM
WIRING
FIG. NO.
POWER SUPPLY
VOLTS-PH-HZ
TYPE
CRHEATER
NOMINAL
KW*
MIN MAX
RLA
LRA
FLA
MCA
MOCP†
FLA
LRA
PART NO.
ꢀ
ꢀ
ꢀ
14.1
16.2
22.0
27.8
33.5
39.3
15.1
17.2
23.0
28.8
34.5
40.3
15.4
18.0
23.7
29.5
35.3
41.1
16.2
19.0
24.7
30.5
36.3
42.1
20
20
25
30
35
40
20
20
25
30
35
45
20
20
25
30
40
45
20
20
25
35
40
45
ꢀ
14
15
20
26
31
36
15
16
21
26
32
37
15
17
22
27
32
38
16
17
23
28
33
39
ꢁ68
ꢁ68
ꢁ68
ꢁ68
ꢁ68
ꢁ68
ꢁ77
ꢁ77
ꢁ77
ꢁ77
ꢁ77
ꢁ77
ꢁ70
ꢁ70
ꢁ70
ꢁ70
ꢁ70
ꢁ70
ꢁ81
ꢁ81
ꢁ81
ꢁ81
ꢁ81
ꢁ81
ꢀ
15
15
15
15
15
ꢀ
15
15
15
15
15
ꢀ
15
15
15
15
15
ꢀ
15
15
15
15
15
ꢀ
15
15
16
17
17
ꢀ
15
15
16
17
17
ꢀ
15
15
16
17
17
ꢀ
15
15
16
17
17
ꢀ
15
15
15
15
19
ꢀ
15
15
15
15
19
ꢀ
15
15
15
15
19
ꢀ
15
15
15
15
19
221A00
222A00
223A00
254A00
224A00
ꢀ
ꢁ9.2
13.9
18.5
23.1
27.7
ꢀ
10.0
15.0
20.0
25.0
30.0
ꢀ
030A00
030A00
030A00
030A00
030A00
ꢀ
2.0
2.8
2.0
2.8
5.2
7.5
5.2
7.5
2.6
3.4
Low
High
Low
High
Low
High
Low
High
Low
High
ꢀ
1.4
ꢀ
221A00
222A00
223A00
254A00
224A00
ꢀ
ꢁ9.2
13.9
18.5
23.1
27.7
ꢀ
10.0
15.0
20.0
25.0
30.0
ꢀ
030A00
030A00
030A00
030A00
030A00
ꢀ
07
(cont)
575-3-60
518 632 7.6
54.0 0.8
221A00
222A00
223A00
254A00
224A00
ꢀ
ꢁ9.2
13.9
18.5
23.1
27.7
ꢀ
10.0
15.0
20.0
25.0
30.0
ꢀ
030A00
030A00
030A00
030A00
030A00
ꢀ
221A00
222A00
223A00
254A00
224A00
ꢀ
ꢁ9.2
13.9
18.5
23.1
27.7
ꢀ
10.0
15.0
20.0
25.0
30.0
ꢀ/ꢀ
030A00
030A00
030A00
030A00
030A00
ꢀ
ꢁ43.3/ꢁ43.3 ꢁ50/ꢁ50
ꢁ46/ꢁ46 217/217
ꢁ46/ꢁ46 217/217
ꢁ46/ꢁ51 217/217
ꢁ69/ꢁ78 217/217
ꢁ92/104 217/217
104/118 217/217
ꢁ49/ꢁ49 243/243
ꢁ49ꢁ/49 243/243
ꢁ49/ꢁ54 243/243
ꢁ72/ꢁ81 243/243
ꢁ95/107 243/243
106/120 243/243
ꢁ49/ꢁ49 221/221
ꢁ49/ꢁ49 221/221
ꢁ49/ꢁ55 221/221
ꢁ72/ꢁ81 221/221
ꢁ96/108 221/221
107/121 221/221
ꢁ52/ꢁ52 247/247
ꢁ52/ꢁ52 247/247
ꢁ52/ꢁ57 247/247
ꢁ75/ꢁ84 247/247
ꢁ98/111 247/247
110/124 247/247
225A00
226A00
227A00
228A00
229A00
ꢀ
20.0/23.1 ꢁ7.5/10.0 ꢁ43.3/ꢁ43.3 ꢁ50/ꢁ50
30.0/34.6 11.3/15.0 ꢁ50.0/ꢁ55.2 ꢁ60/ꢁ60
50.0/57.7 18.8/25.0 ꢁ75.1/ꢁ84.1 ꢁ80/ꢁ90
70.0/80.8 26.3/35.0 100.1/113.0 110/125
80.0/92.4 30.0/40.0 112.6/127.4 125/150
030A00
030A00
031A00
031A00
031A00
ꢀ
ꢀ
ꢀ/ꢀ
ꢁ45.6/ꢁ45.6 ꢁ50/ꢁ50
225A00
226A00
227A00
228A00
229A00
ꢀ
20.0/23.1 ꢁ7.5/10.0 ꢁ45.6/ꢁ45.6 ꢁ50/ꢁ50
30.0/34.6 11.3/15.0 ꢁ52.9/ꢁ58.1 ꢁ60/ꢁ60
50.0/57.7 18.8/25.0 ꢁ77.9/ꢁ87.0 ꢁ80/ꢁ90
70.0/80.8 26.3/35.0 102.9/115.9 110/125
80.0/92.4 30.0/40.0 115.4/130.3 125/150
030A00
030A00
031A00
031A00
031A00
ꢀ
208/230-3-60 187 253 13.5
88
1.5
ꢀ
ꢀ/ꢀ
ꢁ46.3/ꢁ46.3 ꢁ50/ꢁ50
225A00
226A00
227A00
228A00
229A00
ꢀ
20.0/23.1 ꢁ7.5/10.0 ꢁ46.3/ꢁ46.3 ꢁ50/ꢁ50
30.0/34.6 11.3/15.0 ꢁ53.8/ꢁ59.0 ꢁ60/ꢁ60
50.0/57.7 18.8/25.0 ꢁ78.8/ꢁ87.9 ꢁ80/ꢁ90
70.0/80.8 26.3/35.0 103.8/116.7 110/125
80.0/92.4 30.0/40.0 116.3/131.2 125/150
030A00
030A00
031A00
031A00
031A00
ꢀ
3.0
ꢀ
ꢀ/ꢀ
ꢁ48.6/ꢁ48.6 ꢁ60/ꢁ60
225A00
226A00
227A00
228A00
229A00
ꢀ
20.0/23.1 ꢁ7.5/10.0 ꢁ48.6/ꢁ48.6 ꢁ60/ꢁ60
30.0/34.6 11.3/15.0 ꢁ56.7/ꢁ61.9 ꢁ60/ꢁ70
50.0/57.7 18.8/25.0 ꢁ81.7/ꢁ90.7 ꢁ90/100
70.0/80.8 26.3/35.0 106.7/119.6 110/125
80.0/92.4 30.0/40.0 119.2/134.0 125/150
030A00
031A00
031A00
031A00
031A00
ꢀ
08
ꢀ
ꢀ
20.8
20.8
27.6
42.1
56.5
63.7
21.6
21.6
28.6
43.1
57.5
64.7
22.0
22.0
29.1
43.6
58.0
65.2
22.8
22.9
30.1
44.6
59.0
66.2
25
25
30
45
60
70
25
25
30
45
60
70
25
25
30
45
60
70
25
25
35
45
60
70
22
22
25
39
52
59
23
23
26
40
53
60
23
23
27
40
53
60
24
24
28
41
54
61
ꢁ98
ꢁ98
ꢁ98
ꢁ98
ꢁ98
ꢁ98
111
111
111
111
111
111
101
101
101
101
101
101
114
114
114
114
114
114
232A00
233A00
234A00
235A00
236A00
ꢀ
11.5
17.3
28.9
40.4
46.2
ꢀ
10.0
15.0
25.0
35.0
40.0
ꢀ
030A00
030A00
030A00
030A00
033A00
ꢀ
ꢀ
232A00
233A00
234A00
235A00
236A00
ꢀ
11.5
17.3
28.9
40.4
46.2
ꢀ
10.0
15.0
25.0
35.0
40.0
ꢀ
030A00
030A00
030A00
030A00
033A00
ꢀ
460-3-60
414 506 6.4
39
0.8
232A00
233A00
234A00
235A00
236A00
ꢀ
11.5
17.3
28.9
40.4
46.2
ꢀ
10.0
15.0
25.0
35.0
40.0
ꢀ
030A00
030A00
030A00
030A00
033A00
ꢀ
2.6
3.4
Low
1.2
232A00
233A00
234A00
235A00
236A00
11.5
17.3
28.9
40.4
46.2
10.0
15.0
25.0
35.0
40.0
030A00
030A00
030A00
030A00
033A00
High
26
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Table 2 — Electrical Data — Units With Optional Powered Convenience Outlet (cont)
VOLTAGE
RANGE
NOMINAL
POWER
COMPRESSOR
ELECTRIC HEAT
POWER SUPPLY
DISCONNECT SIZE
POWER
EXHAUST
FLA
CRSINGLE
PART NO.
(NOTE3)
UNIT
50PG
OFM
FLA
IFM
FLA
IFM
WIRING
FIG. NO.
SUPPLY
TYPE
CRHEATER
NOMINAL
KW*
MIN MAX
RLA
LRA
FLA
MCA
MOCP†
FLA
LRA
VOLTS-PH-HZ
PART NO.
ꢀ
ꢀ
ꢀ
15.0
25.0
35.0
40.0
ꢀ
20.1
22.0
20
25
ꢀ
21
21
31
41
47
22
22
32
42
48
21
24
34
45
50
22
25
35
46
51
ꢁ86
ꢁ86
ꢁ86
ꢁ86
ꢁ86
104
104
104
104
104
ꢁ88
ꢁ88
ꢁ88
ꢁ88
ꢁ88
100
100
100
100
100
ꢀ
15
15
15
15
ꢀ
15
15
15
15
ꢀ
15
15
15
15
ꢀ
15
15
15
15
ꢀ
15
15
16
17
17
ꢀ
15
15
16
17
17
ꢀ
15
15
16
17
17
ꢀ
15
15
16
17
17
ꢀ
15
15
15
15
19
ꢀ
15
15
15
15
19
239A00
240A00
241A00
242A00
ꢀ
13.9
23.1
32.3
37.0
ꢀ
030A00
030A00
030A00
030A00
ꢀ
33.5
35
Low
High
Low
High
45.1
50
50.9
60
575-3-60
518 632
6.4
30.0
0.8
2.0
ꢀ
20.6
20
239A00
240A00
241A00
242A00
ꢀ
13.9
23.1
32.3
37.0
ꢀ
15.0
25.0
35.0
40.0
ꢀ
23.0
25
030A00
030A00
030A00
030A00
ꢀ
34.5
35
46.1
50
51.9
60
08
(cont)
19.9
25
239A00
240A00
241A00
242A00
ꢀ
13.9
23.1
32.3
37.0
ꢀ
15.0
25.0
35.0
40.0
ꢀ
25.7
30
030A00
030A00
030A00
030A00
ꢀ
37.3
40
48.8
50
54.6
60
575-3-60
518 632
6.4
30.0
0.8 ꢁ2.8
3.0
20.7
25
239A00
240A00
241A00
242A00
ꢀ
13.9
23.1
32.3
37.0
ꢀ
15.0
25.0
35.0
40.0
ꢀ/ꢀ
26.7
30
030A00
030A00
030A00
030A00
ꢀ
38.3
40
49.8
50
55.6
60
ꢁ49.1/ꢁ49.1
ꢁ60/ꢁ60
ꢁ60/ꢁ60
ꢁ60/ꢁ60
ꢁ80/ꢁ90
110/125
125/150
ꢁ60/ꢁ60
ꢁ60/ꢁ60
ꢁ60/ꢁ70
ꢁ90/100
110/125
125/150
ꢁ60/ꢁ60
ꢁ60/ꢁ60
ꢁ60/ꢁ60
ꢁ80/ꢁ90
110/125
125/150
ꢁ70/ꢁ70
ꢁ70/ꢁ70
ꢁ70/ꢁ70
ꢁ90/100
125/125
125/150
25
ꢁ52/ꢁ52 223/223
225A00 20.0/23.1 ꢁ7.5/10.0 ꢁ49.1/ꢁ49.1
226A00 30.0/34.6 11.3/15.0 ꢁ50.0/ꢁ55.2
227A00 50.0/57.7 18.8/25.0 ꢁ75.1/ꢁ84.1
228A00 70.0/80.8 26.3/35.0 100.1/113.0
229A00 80.0/92.4 30.0/40.0 112.6/127.4
030A00 ꢁ52/ꢁ52 223/223
030A00 ꢁ52/ꢁ52 223/223
031A00 ꢁ69/ꢁ78 223/223
031A00 ꢁ92/104 223/223
031A00 104/118 223/223
ꢁ5.2
Low
High
Low
High
Low
High
ꢀ
3.0
ꢀ
ꢀ
ꢀ
ꢀ/ꢀ
ꢁ54.1/ꢁ54.1
ꢀ
ꢁ58/ꢁ58 266/266
225A00 20.0/23.1 ꢁ7.5/10.0 ꢁ54.1/ꢁ54.1
226A00 30.0/34.6 11.3/15.0 ꢁ56.3/ꢁ61.5
227A00 50.0/57.7 18.8/25.0 ꢁ81.3/ꢁ90.4
228A00 70.0/80.8 26.3/35.0 106.3/119.2
229A00 80.0/92.4 30.0/40.0 118.8/133.7
031A00 ꢁ58/ꢁ58 266/266
031A00 ꢁ58/ꢁ58 266/266
031A00 ꢁ75/ꢁ84 266/266
031A00 ꢁ98/110 266/266
031A00 109/123 266/266
10.2
208/230-3-60 187 253 16.0
91
1.5
ꢀ
ꢀ
ꢀ/ꢀ
ꢁ52.1/ꢁ52.1
ꢀ
ꢁ55/ꢁ55 227/227
225A00 20.0/23.1 ꢁ7.5/10.0 ꢁ52.1/ꢁ52.1
226A00 30.0/34.6 11.3/15.0 ꢁ53.8/ꢁ59.0
227A00 50.0/57.7 18.8/25.0 ꢁ78.8/ꢁ87.9
228A00 70.0/80.8 26.3/35.0 103.8/116.7
229A00 80.0/92.4 30.0/40.0 116.3/131.2
031A00 ꢁ55/ꢁ55 227/227
031A00 ꢁ55/ꢁ55 227/227
031A00 ꢁ72/ꢁ81 227/227
031A00 ꢁ96/108 227/227
031A00 107/121 227/227
ꢁ5.2
09
ꢀ
ꢀ
ꢀ/ꢀ
ꢁ57.1/ꢁ57.1
ꢀ
ꢁ61/ꢁ61 270/270
225A00 20.0/23.1 ꢁ7.5/10.0 ꢁ57.1/ꢁ57.1
226A00 30.0/34.6 11.3/15.0 ꢁ60.0/ꢁ65.2
227A00 50.0/57.7 18.8/25.0 ꢁ85.1/ꢁ94.1
228A00 70.0/80.8 26.3/35.0 110.1/123.0
229A00 80.0/92.4 30.0/40.0 122.6/137.4
030A00 ꢁ61/ꢁ61 270/270
030A00 ꢁ61/ꢁ61 270/270
031A00 ꢁ78/ꢁ87 270/270
031A00 101/114 270/270
031A00 113/127 270/270
10.2
ꢀ
ꢀ
ꢀ
22.2
22.2
27.6
42.1
56.5
63.7
24.4
24.4
30.4
44.8
59.2
66.5
ꢀ
24
24
25
39
52
59
26
26
28
41
54
61
112
112
112
112
112
112
134
134
134
134
134
134
232A00
233A00
234A00
235A00
236A00
ꢀ
11.5
17.3
28.9
40.4
46.2
ꢀ
10.0
15.0
25.0
35.0
40.0
ꢀ
25
030A00
030A00
030A00
030A00
033A00
ꢀ
30
ꢁ2.6
45
60
70
460-3-60
414 506 ꢁ7.1
46
0.8
30
232A00
233A00
234A00
235A00
236A00
11.5
17.3
28.9
40.4
46.2
10.0
15.0
25.0
35.0
40.0
30
030A00
030A00
030A00
030A00
033A00
35
ꢁ4.8
45
60
70
Example: Supply voltage is 460-3-60
LEGEND
Full Load Amps
FLA
−
AB = 224 v
BC = 231 v
AC = 226 v
HACR − Heating, Air Conditioning and Refrigeration
IFM
−
−
−
Indoor − Fan Motor
Locked Rotor Amps
Minimum Circuit Amps
224 + 231 + 226
3
LRA
MCA
Average Voltage =
681
3
=
MOCP − Maximum Overcurrent Protection
NEC
OFM
RLA
−
−
−
National Electrical Code
Outdoor−Fan Motor
Rated Load Amps
=
227
Determine maximum deviation from average voltage.
ꢂ(AB) 227 – 223 = 3 v
ꢂ(BC) 231 – 227 = 4 v
*
†
Heater capacity (kW) is based on heater voltage of 208 v, 240 v, or 480 v. If power distribu-
tion voltage to unit varies from rated heater voltage, heater kW will vary accordingly.
Fuse or HACR circuit breaker.
ꢂ(AC) 227 – 226 = 1 v
Maximum deviation is 4 v.
Determine percent of voltage imbalance.
NOTES:
1. In compliance with NEC requirements for multimotor and combination load equip-
ment (refer to NEC Articles 430 and 440), the overcurrent protective device for the
unit shall be fuse or HACR breaker.
4
% Voltage Imbalance
= 100 x
227
2. Unbalanced 3-Phase Supply Voltage
Never operate a motor where a phase imbalance in supply voltage is greater than
2%. Use the following formula to determine the percentage of voltage imbalance.
= 1.76%
This amount of phase imbalance is satisfactory as it is below the maximum allowable 2%.
IMPORTANT: If the supply voltage phase imbalance is more than 2%, contact your local electric
utility company immediately.
max voltage deviation from average voltage
% Voltage Imbalance
= 100 x
average voltage
3. Single point kits CRSINGLE028A00 and CRSINGLE030A00 are not required if
field−supplied pressure connectors are used.
27
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Table 2 — Electrical Data — Units With Optional Powered Convenience Outlet (cont)
VOLTAGE
RANGE
NOMINAL
POWER
COMPRESSOR
ELECTRIC HEAT
POWER SUPPLY
DISCONNECT SIZE
POWER
EXHAUST
FLA
CRSINGLE
PART NO.
(NOTE3)
UNIT
50PG
OFM
FLA
IFM
FLA
IFM
WIRING
FIG. NO.
SUPPLY
TYPE
CRHEATER
PART NO.
NOMINAL
KW*
MIN MAX RLA
LRA
FLA
MCA
MOCP†
FLA
LRA
VOLTS-PH-HZ
ꢀ
ꢀ
ꢀ
10.0
15.0
25.0
35.0
40.0
ꢀ
23.4
23.4
29.1
43.6
58.0
65.2
25.6
25.6
31.9
46.3
60.7
68.0
17.9
22.0
33.5
45.1
50.9
19.2
23.6
35.2
46.7
52.5
20.9
25.7
37.3
48.8
54.6
21.7
26.7
38.3
49.8
55.6
30
30
30
45
60
70
30
30
35
50
70
70
20
25
35
50
60
25
25
35
50
60
25
30
40
50
60
25
30
40
50
60
ꢀ
25
25
27
40
53
60
27
27
29
43
56
63
19
20
31
41
47
21
22
32
43
48
22
24
34
45
50
23
25
35
46
51
115
115
115
115
115
115
136
136
136
136
136
136
100
100
100
100
100
138
138
138
138
138
ꢁ94
ꢁ94
ꢁ94
ꢁ94
ꢁ94
105
105
105
105
105
ꢀ
15
15
15
15
19
ꢀ
15
15
15
15
19
ꢀ
15
15
15
15
ꢀ
15
15
15
15
ꢀ
15
15
15
15
ꢀ
15
15
15
15
ꢀ
15
15
16
17
17
17
ꢀ
15
16
16
17
17
17
ꢀ
15
16
16
17
17
17
ꢀ
15
16
16
17
17
17
ꢀ
15
15
15
15
19
19
ꢀ
15
15
15
15
19
19
232A00
233A00
234A00
235A00
236A00
ꢀ
11.5
17.3
28.9
40.4
46.2
ꢀ
030A00
030A00
030A00
030A00
033A00
ꢀ
ꢁ2.6
ꢁ4.8
Low
460-3-60
(cont)
414 506 ꢁ7.1
46
0.8
1.2
232A00
233A00
234A00
235A00
236A00
ꢀ
11.5
17.3
28.9
40.4
46.2
ꢀ
10.0
15.0
25.0
35.0
40.0
ꢀ
030A00
030A00
030A00
033A00
033A00
ꢀ
High
239A00
240A00
241A00
242A00
ꢀ
13.9
23.1
32.3
37.0
ꢀ
15.0
25.0
35.0
40.0
ꢀ
030A00
030A00
030A00
030A00
ꢀ
ꢁ2.0
ꢁ3.3
ꢁ2.0
ꢁ3.3
Low
High
Low
High
09
(cont)
ꢀ
239A00
240A00
241A00
242A00
ꢀ
13.9
23.1
32.3
37.0
ꢀ
15.0
25.0
35.0
40.0
ꢀ
030A00
030A00
030A00
030A00
ꢀ
575-3-60
518 632 ꢁ5.6 37.0
0.8
239A00
240A00
241A00
242A00
ꢀ
13.9
23.1
32.3
37.0
ꢀ
15.0
25.0
35.0
40.0
ꢀ
030A00
030A00
030A00
030A00
ꢀ
3.0
239A00
240A00
241A00
242A00
ꢀ
13.9
23.1
32.3
37.0
ꢀ
15.0
25.0
35.0
40.0
ꢀ/ꢀ
030A00
030A00
030A00
030A00
ꢀ
ꢁ55.8/ꢁ55.8 ꢁ70/ꢁ70
ꢁ59/ꢁ59 318/318
ꢁ59/ꢁ59 318/318
ꢁ59/ꢁ59 318/318
ꢁ72/ꢁ81 318/318
ꢁ95/107 318/318
106/120 318/318
129/147 318/318
ꢁ62/ꢁ62 335/335
ꢁ62/ꢁ62 335/335
ꢁ62/ꢁ62 335/335
ꢁ75/ꢁ84 335/335
ꢁ98/110 335/335
109/123 335/335
132/150 335/335
ꢁ63/ꢁ63 322/322
ꢁ63/ꢁ63 322/322
ꢁ63/ꢁ63 322/322
ꢁ75/ꢁ84 322/322
ꢁ98/111 322/322
110/124 322/322
133/150 322/322
ꢁ66/ꢁ66 339/339
ꢁ66/ꢁ66 339/339
ꢁ66/ꢁ66 339/339
ꢁ78/ꢁ87 339/339
101/114 339/339
113/127 339/339
136/154 339/339
225A00 ꢁ20.0/ꢁ23.1 ꢁ7.5/10.0 ꢁ55.8/ꢁ55.8 ꢁ70/ꢁ70
226A00 ꢁ30.0/ꢁ34.6 11.3/15.0 ꢁ55.8/ꢁ58.1 ꢁ70/ꢁ70
227A00 ꢁ50.0/ꢁ57.7 18.8/25.0 ꢁ77.9/ꢁ87.0 ꢁ80/ꢁ90
228A00 ꢁ70.0/ꢁ80.8 26.3/35.0 102.9/115.9 110/125
229A00 ꢁ80.0/ꢁ92.4 30.0/40.0 115.4/130.3 125/150
230A00 100.1/115.5 37.6/50.0 140.5/130.3 150/150
031A00
031A00
031A00
031A00
031A00
031A00
ꢀ
ꢁ7.5
10.2
ꢁ7.5
10.2
Low
High
Low
High
Low
ꢀ
ꢀ
ꢀ
ꢀ/ꢀ
ꢁ58.5/ꢁ58.5 ꢁ70/ꢁ70
225A00 ꢁ20.0/ꢁ23.1 ꢁ7.5/10.0 ꢁ58.5/ꢁ58.5 ꢁ70/ꢁ70
226A00 ꢁ30.0/ꢁ34.6 11.3/15.0 ꢁ58.5/ꢁ61.5 ꢁ70/ꢁ70
227A00 ꢁ50.0/ꢁ57.7 18.8/25.0 ꢁ81.3/ꢁ90.4 ꢁ90/100
228A00 ꢁ70.0/ꢁ80.8 26.3/35.0 106.3/119.2 110/125
229A00 ꢁ80.0/ꢁ92.4 30.0/40.0 118.8/133.7 125/150
230A00 100.1/115.5 37.6/50.0 143.8/133.7 150/150
031A00
031A00
031A00
031A00
031A00
031A00
ꢀ
208/230-3-60 187 253 17.6
123
1.9
ꢀ
ꢀ
ꢀ/ꢀ
ꢁ58.8/ꢁ58.8 ꢁ70/ꢁ70
225A00 ꢁ20.0/ꢁ23.1 ꢁ7.5/10.0 ꢁ58.8/ꢁ58.8 ꢁ70/ꢁ70
226A00 ꢁ30.0/ꢁ34.6 11.3/15.0 ꢁ58.8/ꢁ61.9 ꢁ70/ꢁ70
227A00 ꢁ50.0/ꢁ57.7 18.8/25.0 ꢁ81.7/ꢁ90.7 ꢁ90/100
228A00 ꢁ70.0/ꢁ80.8 26.3/35.0 106.7/119.6 110/125
229A00 ꢁ80.0/ꢁ92.4 30.0/40.0 119.2/134.0 125/150
230A00 100.1/115.5 37.6/50.0 144.2/134.0 150/150
031A00
031A00
031A00
031A00
031A00
031A00
ꢀ
12
3.0
ꢀ
ꢀ
ꢀ/ꢀ
ꢁ61.5/ꢁ61.5 ꢁ70/ꢁ70
225A00 ꢁ20.0/ꢁ23.1 ꢁ7.5/10.0 ꢁ61.5/ꢁ61.5 ꢁ70/ꢁ70
226A00 ꢁ30.0/ꢁ34.6 11.3/15.0 ꢁ61.5/ꢁ65.2 ꢁ70/ꢁ70
227A00 ꢁ50.0/ꢁ57.7 18.8/25.0 ꢁ85.1/ꢁ94.1 ꢁ90/100
228A00 ꢁ70.0/ꢁ80.8 26.3/35.0 110.1/123.0 125/125
229A00 ꢁ80.0/ꢁ92.4 30.0/40.0 122.6/137.4 125/150
230A00 100.1/115.5 37.6/50.0 147.6/137.4 150/150
031A00
031A00
031A00
031A00
031A00
031A00
ꢀ
ꢀ
ꢀ
ꢀ
24.9
24.9
28.6
43.1
57.5
64.7
64.7
26.3
26.3
30.4
44.8
59.2
66.5
66.5
30
30
30
45
60
70
70
30
30
35
45
60
70
80
26
26
26
40
53
60
73
28
28
28
41
54
61
74
132
132
132
132
132
132
132
141
141
141
141
141
141
141
232A00
233A00
234A00
235A00
236A00
237A00
ꢀ
11.5
17.3
28.9
40.4
46.2
57.7
ꢀ
10.0
15.0
25.0
35.0
40.0
50.0
ꢀ
030A00
030A00
030A00
030A00
033A00
033A00
ꢀ
ꢁ3.4
460-3-60
414 506 ꢁ7.7
ꢁ50
1.0
ꢀ
232A00
233A00
11.5
17.3
28.9
40.4
46.2
57.7
10.0
15.0
25.0
35.0
40.0
50.0
030A00
030A00
030A00
030A00
033A00
033A00
ꢁ4.8
High 234A00
235A00
236A00
237A00
28
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Table 2 — Electrical Data — Units With Optional Powered Convenience Outlet (cont)
VOLTAGE
RANGE
NOMINAL
POWER
COMPRESSOR
ELECTRIC HEAT
POWER SUPPLY
DISCONNECT SIZE
POWER
EXHAUST
FLA
CRSINGLE
PART NO.
(NOTE3)
UNIT
50PG
OFM
FLA
IFM
FLA
IFM
WIRING
FIG. NO.
SUPPLY
TYPE
CRHEATER
PART NO.
NOMINAL
KW*
MIN MAX RLA
LRA
FLA
MCA
MOCP†
FLA
LRA
VOLTS-PH-HZ
ꢀ
ꢀ
ꢀ
26.1
26.1
30.1
44.6
59.0
66.2
66.2
27.5
27.5
31.9
46.3
60.7
68.0
68.0
20.1
23.0
34.5
46.1
51.9
51.9
20.4
23.6
35.2
46.7
52.5
52.5
22.8
26.7
38.3
49.8
55.6
55.6
22.8
26.7
38.3
49.8
55.6
55.6
30
30
35
45
60
70
70
30
30
35
50
70
70
80
25
25
35
50
60
60
25
25
35
50
60
60
25
30
40
50
60
60
25
30
40
50
60
60
ꢀ
28
28
28
41
54
61
74
29
29
29
43
56
63
76
21
21
32
42
48
58
22
22
32
43
48
59
25
25
35
46
51
62
25
25
35
46
51
62
135
135
135
135
135
135
135
143
143
143
143
143
143
143
124
124
124
124
124
124
144
144
144
144
144
144
111
111
111
111
111
111
111
111
111
111
111
111
ꢀ
15
15
15
15
19
19
ꢀ
15
15
15
15
19
19
ꢀ
15
15
15
15
15
ꢀ
15
15
15
15
15
ꢀ
15
15
15
15
15
ꢀ
15
15
15
15
15
ꢀ
18
18
18
18
18
18
ꢀ
18
18
18
18
18
18
232A00
233A00
234A00
235A00
236A00
237A00
ꢀ
11.5
17.3
28.9
40.4
46.2
57.7
ꢀ
10.0
15.0
25.0
35.0
40.0
50.0
ꢀ
030A00
030A00
030A00
030A00
033A00
033A00
ꢀ
ꢁ3.4
Low
460-3-60
(cont)
414 506 ꢁ7.7
ꢁ50
1.0
0.8
1.9
1.2
232A00
233A00
234A00
235A00
236A00
237A00
ꢀ
11.5
17.3
28.9
40.4
46.2
57.7
ꢀ
10.0
15.0
25.0
35.0
40.0
50.0
ꢀ
030A00
030A00
030A00
033A00
033A00
033A00
ꢀ
ꢁ4.8
High
239A00
240A00
241A00
242A00
243A00
ꢀ
13.9
23.1
32.3
37.0
46.2
ꢀ
15.0
25.0
35.0
40.0
50.0
ꢀ
030A00
030A00
030A00
030A00
030A00
ꢀ
ꢁ2.8
ꢁ3.3
ꢁ2.8
ꢁ3.3
Low
High
Low
High
12
(cont)
ꢀ
239A00
240A00
241A00
242A00
243A00
ꢀ
13.9
23.1
32.3
37.0
46.2
ꢀ
15.0
25.0
35.0
40.0
50.0
ꢀ
030A00
030A00
030A00
030A00
030A00
ꢀ
575-3-60
518 632 ꢁ6.1 40.0
239A00
240A00
241A00
242A00
243A00
ꢀ
13.9
23.1
32.3
37.0
46.2
ꢀ
15.0
25.0
35.0
40.0
50.0
ꢀ
030A00
030A00
030A00
030A00
030A00
ꢀ
3.0
239A00
240A00
241A00
242A00
243A00
ꢀ
13.9
23.1
32.3
37.0
46.2
ꢀ
15.0
25.0
35.0
40.0
50.0
ꢀ/ꢀ
030A00
030A00
030A00
030A00
030A00
ꢀ
ꢁ69.3/ꢁ69.3 ꢁ90/ꢁ90
ꢁ73/ꢁ73 387/387
ꢁ73/ꢁ73 387/387
ꢁ73/ꢁ73 387/387
ꢁ75/ꢁ84 387/387
ꢁ98/110 387/387
132/150 387/387
155/177 387/387
ꢁ79/ꢁ79 396/396
ꢁ79/ꢁ79 396/396
ꢁ79/ꢁ79 396/396
ꢁ80/ꢁ89 396/396
103/116 396/396
138/156 396/396
161/182 396/396
225A00
226A00
227A00
228A00
230A00
231A00
ꢀ
ꢁ20.0/ꢁ23.1 ꢁ7.5/10.0 ꢁ69.3/ꢁ69.3 ꢁ90/ꢁ90
ꢁ30.0/ꢁ34.6 11.3/15.0 ꢁ69.3/ꢁ69.3 ꢁ90/ꢁ90
ꢁ50.0/ꢁ57.7 18.8/25.0 ꢁ81.3/ꢁ90.4 ꢁ90/100
ꢁ70.0/ꢁ80.8 26.3/35.0 106.3/119.2 110/125
100.1/115.5 37.6/50.0 143.8/133.7 150/150
120.1/138.6 45.1/60.0 168.9/156.8 175/175
032A00
032A00
032A00
032A00
032A00
032A00
ꢀ
10.2
Low
14
208/230-3-60 187 253 22.4
149
ꢀ
ꢀ
ꢀ/ꢀ
ꢁ74.1/ꢁ74.1 ꢁ90/ꢁ90
225A00
226A00
227A00
228A00
230A00
231A00
ꢁ20.0/ꢁ23.1 ꢁ7.5/10.0 ꢁ74.1/ꢁ74.1 ꢁ90/ꢁ90
ꢁ30.0/ꢁ34.6 11.3/15.0 ꢁ74.1/ꢁ74.1 ꢁ90/ꢁ90
ꢁ50.0/ꢁ57.7 18.8/25.0 ꢁ87.3/ꢁ96.4 ꢁ90/100
ꢁ70.0/ꢁ80.8 26.3/35.0 112.3/125.2 125/150
100.1/115.5 37.6/50.0 149.8/139.7 150/150
120.1/138.6 45.1/60.0 174.9/162.8 175/175
032A00
032A00
032A00
032A00
032A00
032A00
15.0
High
Example: Supply voltage is 460-3-60
LEGEND
Full Load Amps
FLA
−
AB = 224 v
BC = 231 v
AC = 226 v
HACR − Heating, Air Conditioning and Refrigeration
IFM
−
−
−
Indoor − Fan Motor
Locked Rotor Amps
Minimum Circuit Amps
224 + 231 + 226
3
LRA
MCA
Average Voltage =
681
3
=
MOCP − Maximum Overcurrent Protection
NEC
OFM
RLA
−
−
−
National Electrical Code
Outdoor−Fan Motor
Rated Load Amps
=
227
Determine maximum deviation from average voltage.
ꢂ(AB) 227 – 223 = 3 v
ꢂ(BC) 231 – 227 = 4 v
*
†
Heater capacity (kW) is based on heater voltage of 208 v, 240 v, or 480 v. If power distribu-
tion voltage to unit varies from rated heater voltage, heater kW will vary accordingly.
Fuse or HACR circuit breaker.
ꢂ(AC) 227 – 226 = 1 v
Maximum deviation is 4 v.
Determine percent of voltage imbalance.
NOTES:
1. In compliance with NEC requirements for multimotor and combination load equip-
ment (refer to NEC Articles 430 and 440), the overcurrent protective device for the
unit shall be fuse or HACR breaker.
4
% Voltage Imbalance
= 100 x
227
2. Unbalanced 3-Phase Supply Voltage
Never operate a motor where a phase imbalance in supply voltage is greater than
2%. Use the following formula to determine the percentage of voltage imbalance.
= 1.76%
This amount of phase imbalance is satisfactory as it is below the maximum allowable 2%.
IMPORTANT: If the supply voltage phase imbalance is more than 2%, contact your local electric
utility company immediately.
max voltage deviation from average voltage
% Voltage Imbalance
= 100 x
average voltage
3. Single point kits CRSINGLE028A00 and CRSINGLE030A00 are not required if
field−supplied pressure connectors are used.
29
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Table 2 — Electrical Data — Units With Optional Powered Convenience Outlet (cont)
VOLTAGE
RANGE
NOMINAL
POWER
COMPRESSOR
ELECTRIC HEAT
POWER SUPPLY
DISCONNECT SIZE
POWER
EXHAUST
FLA
CRSINGLE
PART NO.
(NOTE3)
UNIT
50PG
OFM
FLA
IFM
FLA
IFM
WIRING
FIG. NO.
SUPPLY
TYPE
CRHEATER
PART NO.
NOMINAL
KW*
MIN MAX
RLA
LRA
FLA
MCA
MOCP†
FLA
LRA
VOLTS-PH-HZ
ꢀ
ꢀ
ꢀ/ꢀ
ꢁ72.3/ꢁ72.3 ꢁ90/ꢁ90
ꢀ
ꢁ77/ꢁ77
ꢁ77/ꢁ77
ꢁ77/ꢁ77
ꢁ78/ꢁ87
101/114
136/154
159/180
ꢁ82/ꢁ82
ꢁ82/ꢁ82
ꢁ82/ꢁ82
ꢁ84/ꢁ93
107/119
141/159
164/186
35
391/391
391/391
391/391
391/391
391/391
391/391
391/391
400/400
400/400
400/400
400/400
400/400
400/400
400/400
192
ꢀ
18
18
18
18
18
18
ꢀ
18
18
18
18
18
18
ꢀ
15
15
15
15
19
19
ꢀ
15
15
15
15
19
19
ꢀ
15
15
15
15
19
19
ꢀ
15
15
15
19
19
19
ꢀ
15
15
15
15
15
19
ꢀ
15
15
15
15
15
19
ꢀ
15
15
15
15
15
19
ꢀ
15
15
15
15
15
19
225A00 ꢁ20.0/ꢁ23.1 ꢁ7.5/10.0 ꢁ72.3/ꢁ72.3 ꢁ90/ꢁ90
226A00 ꢁ30.0/ꢁ34.6 11.3/15.0 ꢁ72.3/ꢁ72.3 ꢁ90/ꢁ90
227A00 ꢁ50.0/ꢁ57.7 18.8/25.0 ꢁ85.1/ꢁ94.1 ꢁ90/100
228A00 ꢁ70.0/ꢁ80.8 26.3/35.0 110.1/123.0 125/125
230A00 100.1/115.5 37.6/50.0 147.6/137.4 150/150
231A00 120.1/138.6 45.1/60.0 172.6/160.5 175/175
032A00
032A00
032A00
032A00
032A00
032A00
ꢀ
10.2
15.0
ꢁ4.8
ꢁ7.4
ꢁ4.8
ꢁ7.4
3.3
Low
High
Low
High
Low
High
Low
High
Low
High
208/230-3-60
(cont)
187 253 22.4
149
1.9
3.0
ꢀ
ꢀ
ꢀ/ꢀ
ꢁ77.1/ꢁ77.1 ꢁ90/ꢁ90
225A00 ꢁ20.0/ꢁ23.1 ꢁ7.5/10.0 ꢁ77.1/ꢁ77.1 ꢁ90/ꢁ90
226A00 ꢁ30.0/ꢁ34.6 11.3/15.0 ꢁ77.1/ꢁ77.1 ꢁ90/ꢁ90
227A00 ꢁ50.0/ꢁ57.7 18.8/25.0 ꢁ91.1/100.1 100/110
228A00 ꢁ70.0/ꢁ80.8 26.3/35.0 116.1/129.0 125/150
230A00 100.1/115.5 37.6/50.0 153.6/143.4 175/150
231A00 120.1/138.6 45.1/60.0 178.6/166.5 200/175
032A00
032A00
032A00
032A00
032A00
032A00
ꢀ
ꢀ
ꢀ
ꢀ
32.8
32.8
32.8
44.8
59.2
66.5
78.0
35.4
35.4
35.4
48.1
62.5
69.7
81.3
34.0
34.0
34.0
46.3
60.7
68.0
79.5
36.6
36.6
36.6
49.6
64.0
71.2
82.8
30.4
30.4
35.2
46.7
52.5
52.5
61.7
32.7
32.7
38.0
49.6
55.4
55.4
65.1
26.4
26.7
38.3
49.8
55.6
55.6
64.9
29.2
30.2
41.8
53.3
59.1
59.1
68.4
40
40
40
45
60
80
90
45
45
45
50
70
80
90
40
40
40
50
70
80
90
45
45
45
50
70
80
90
30
30
35
50
60
60
70
30
30
40
50
60
60
70
30
30
40
50
60
60
70
35
35
45
60
60
60
70
232A00
233A00
234A00
235A00
237A00
238A00
ꢀ
11.5
17.3
28.9
40.4
57.7
69.3
ꢀ
10.0
15.0
25.0
35.0
50.0
60.0
ꢀ
030A00
030A00
030A00
030A00
033A00
033A00
ꢀ
35
192
35
192
41
192
54
192
74
192
88
192
ꢀ
38
196
232A00
233A00
234A00
235A00
237A00
238A00
ꢀ
11.5
17.3
28.9
40.4
57.7
69.3
ꢀ
10.0
15.0
25.0
35.0
50.0
60.0
ꢀ
030A00
030A00
030A00
033A00
033A00
033A00
ꢀ
38
196
38
196
44
196
57
196
77
196
91
196
460-3-60
414 506 10.6
ꢁ75
1.0
36
194
232A00
233A00
234A00
235A00
237A00
238A00
ꢀ
11.5
17.3
28.9
40.4
57.7
69.3
ꢀ
10.0
15.0
25.0
35.0
50.0
60.0
ꢀ
030A00
030A00
030A00
033A00
033A00
033A00
ꢀ
36
194
36
194
43
194
56
194
76
194
89
194
14
(cont)
1.2
39
199
232A00
233A00
234A00
235A00
237A00
238A00
ꢀ
11.5
17.3
28.9
40.4
57.7
69.3
ꢀ
10.0
15.0
25.0
35.0
50.0
60.0
ꢀ
030A00
030A00
030A00
033A00
033A00
033A00
ꢀ
39
199
39
199
46
199
59
199
79
199
92
199
32
182
239A00
240A00
241A00
242A00
243A00
244A00
ꢀ
13.9
23.1
32.3
37.0
46.2
55.4
ꢀ
15.0
25.0
35.0
40.0
50.0
60.0
ꢀ
030A00
030A00
030A00
030A00
030A00
033A00
ꢀ
32
182
32
182
43
182
48
182
59
182
70
182
ꢀ
35
193
239A00
240A00
241A00
242A00
243A00
244A00
ꢀ
13.9
23.1
32.3
37.0
46.2
55.4
ꢀ
15.0
25.0
35.0
40.0
50.0
60.0
ꢀ
030A00
030A00
030A00
030A00
030A00
033A00
ꢀ
35
193
35
193
46
183
5.6
51
193
62
183
72
193
575-3-60
518 632 10.6
59.0
0.8
28
139
239A00
240A00
241A00
242A00
243A00
244A00
ꢀ
13.9
23.1
32.3
37.0
46.2
55.4
ꢀ
15.0
25.0
35.0
40.0
50.0
60.0
ꢀ
030A00
030A00
030A00
030A00
030A00
033A00
ꢀ
28
139
35
139
46
139
3.3
51
139
62
139
72
139
3.0
31
153
239A00
240A00
241A00
242A00
243A00
244A00
13.9
23.1
32.3
37.0
46.2
55.4
15.0
25.0
35.0
40.0
50.0
60.0
030A00
030A00
030A00
030A00
030A00
033A00
31
153
38
153
49
153
5.6
54
153
65
153
76
153
See legend pg. 32.
30
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Table 2 — Electrical Data — Units With Optional Powered Convenience Outlet (cont)
VOLTAGE
RANGE
COMPR
NO. 1
COMPR
NO. 2
COMPR
NO. 3
POWER
NOMINAL
POWER
OFM
IFM
ELECTRIC HEAT
POWER SUPPLY
DISCONNECT SIZE
IFM
CRSINGLE
PART NO.
(NOTE 3)
WIRING
FIG.
EXHAUST
UNIT
50PG
SUPPLY
CRHEATER
PART NO.
NOMINAL
KW*
NO.
MIN MAX RLA LRA RLA LRA RLA LRA FLA QTY FLA
FLA
FLA
MCA
MOCP
FLA
LRA
TYPE
(V-PH-HZ)
ꢀ
ꢀ
ꢀ/ꢀ
ꢁ79.0/ꢁ79.0 ꢁ90/ꢁ90
ꢀ
ꢁ86/ꢁ86 487/487
ꢁ86/ꢁ86 487/487
137/156 487/487
197/225 487/487
ꢁ91/ꢁ91 495/495
ꢁ91/ꢁ92 495/495
143/161 495/495
203/230 495/495
ꢁ96/ꢁ96 534/534
ꢁ96/ꢁ97 534/534
148/166 534/534
208/235 534/534
ꢁ89/ꢁ89 491/491
ꢁ89/ꢁ90 491/491
141/159 491/491
201/228 491/491
ꢁ95/ꢁ95 499/499
ꢁ95/ꢁ95 499/499
146/165 499/499
206/234 499/499
100/100 538/538
100/100 538/538
151/170 538/538
211/239 538/538
ꢀ
20
20
20
ꢀ
20
20
20
ꢀ
20
20
20
ꢀ
20
20
20
ꢀ
20
20
20
ꢀ
20
20
20
ꢀ
21
22
22
ꢀ
21
22
22
ꢀ
21
22
22
ꢀ
21
22
22
ꢀ
21
22
22
ꢀ
21
22
22
ꢀ
21
21
22
ꢀ
21
21
22
ꢀ
21
21
22
ꢀ
21
21
22
ꢀ
21
21
22
ꢀ
21
21
22
255A00
256A00
257A00
ꢀ
ꢁ52.1/ꢁ60.1 18.8/25.0 ꢁ83.9/ꢁ93.4 ꢁ90/100
104.2/120.3 37.6/50.0 149.1/138.5 150/150
156.3/180.4 56.3/75.0 175.1/198.6 200/225
034
034
034
ꢀ
Low 10.2
ꢀ
ꢀ/ꢀ
ꢁ83.8/ꢁ83.8 100/100
255A00
256A00
257A00
ꢀ
ꢁ52.1/ꢁ60.1 18.8/25.0 ꢁ89.9/ꢁ99.4 100/100
104.2/120.3 37.6/50.0 155.1/144.5 175/175
156.3/180.4 56.3/75.0 181.1/204.6 200/225
034
034
034
ꢀ
Mid-
15.0
Low
ꢀ
ꢀ
3.0
ꢀ
ꢀ
ꢀ/ꢀ
ꢁ88.2/ꢁ88.2 100/100
255A00
256A00
257A00
ꢀ
ꢁ52.1/ꢁ60.1 18.8/25.0 ꢁ95.4/104.9 100/110
104.2/120.3 37.6/50.0 160.6/150.0 175/175
156.3/180.4 56.3/75.0 186.6/210.1 200/250
034
034
034
ꢀ
High 19.4
Low 10.2
208/230-3-60 187 253 18.1 137 18.1 137 17.6 123 1.9
ꢀ
ꢀ/ꢀ
ꢁ82.0/ꢁ82.0 100/100
255A00
256A00
257A00
ꢀ
ꢁ52.1/ꢁ60.1 18.8/25.0 ꢁ87.7/ꢁ97.1 100/100
104.2/120.3 37.6/50.0 152.8/142.2 175/175
156.3/180.4 56.3/75.0 178.9/202.4 200/225
034
034
034
ꢀ
ꢀ
ꢀ/ꢀ
ꢁ86.8/ꢁ86.8 100/100
255A00
256A00
257A00
ꢀ
ꢁ52.1/ꢁ60.1 18.8/25.0 ꢁ93.7/103.1 100/110
104.2/120.3 37.6/50.0 158.8/148.2 175/175
156.3/180.4 56.3/75.0 184.9/208.4 200/225
034
034
034
ꢀ
Mid-
15.0
Low
2
ꢀ
ꢀ/ꢀ
ꢁ91.2/ꢁ91.2 100/100
255A00
256A00
257A00
ꢀ
ꢁ52.1/ꢁ60.1 18.8/25.0 ꢁ99.2/108.6 100/110
104.2/120.3 37.6/50.0 164.3/153.7 175/175
156.3/180.4 56.3/75.0 190.4/213.9 200/250
034
034
034
ꢀ
High 19.4
ꢀ
ꢀ/ꢀ
25.0
50.0
75.0
ꢀ/ꢀ
25.0
50.0
75.0
ꢀ/ꢀ
25.0
50.0
75.0
ꢀ/ꢀ
25.0
50.0
75.0
ꢀ/ꢀ
25.0
50.0
75.0
ꢀ/ꢀ
25.0
50.0
75.0
ꢀ/ꢀ
25.0
50.0
75.0
ꢀ/ꢀ
25.0
50.0
75.0
ꢀ/ꢀ
25.0
50.0
75.0
ꢀ/ꢀ
25.0
50.0
75.0
ꢀ/ꢀ
25.0
50.0
75.0
ꢀ/ꢀ
25.0
50.0
75.0
ꢁ37.9
ꢁ46.3
ꢁ68.9
ꢁ98.9
ꢁ40.5
ꢁ49.6
ꢁ72.1
102.2
ꢁ42.8
ꢁ52.4
ꢁ75.0
105.1
ꢁ39.1
ꢁ47.8
ꢁ70.4
100.4
ꢁ41.7
ꢁ51.1
ꢁ73.6
103.7
ꢁ44.0
ꢁ53.9
ꢁ76.5
106.6
ꢁ28.3
ꢁ35.7
ꢁ51.9
ꢁ77.8
ꢁ31.1
ꢁ39.2
ꢁ55.4
ꢁ81.3
ꢁ33.3
ꢁ42.0
ꢁ58.1
ꢁ84.1
ꢁ31.3
ꢁ39.5
ꢁ55.6
ꢁ81.6
ꢁ34.1
ꢁ43.0
ꢁ59.1
ꢁ85.1
ꢁ36.3
ꢁ45.7
ꢁ61.9
ꢁ87.8
ꢁ45
ꢁ50
ꢁ80
100
ꢁ45
ꢁ50
ꢁ80
110
ꢁ50
ꢁ60
ꢁ80
125
ꢁ45
ꢁ50
ꢁ80
110
ꢁ50
ꢁ60
ꢁ80
125
ꢁ50
ꢁ60
ꢁ80
125
ꢁ35
ꢁ40
ꢁ60
ꢁ90
ꢁ35
ꢁ40
ꢁ60
ꢁ90
ꢁ40
ꢁ45
ꢁ60
ꢁ100
ꢁ35
ꢁ40
ꢁ60
ꢁ90
ꢁ40
ꢁ45
ꢁ60
ꢁ90
ꢁ40
ꢁ50
ꢁ70
100
ꢁ41
ꢁ43
ꢁ77
112
ꢁ44
ꢁ46
ꢁ80
115
ꢁ47
ꢁ48
ꢁ83
117
ꢁ42
ꢁ44
ꢁ79
113
ꢁ45
ꢁ47
ꢁ82
116
ꢁ48
ꢁ50
ꢁ84
119
ꢁ31
ꢁ33
ꢁ58
ꢁ88
ꢁ34
ꢁ36
ꢁ62
ꢁ91
ꢁ36
ꢁ39
ꢁ64
ꢁ94
ꢁ34
ꢁ36
ꢁ62
ꢁ92
ꢁ37
ꢁ40
ꢁ65
ꢁ95
ꢁ40
ꢁ42
ꢁ68
ꢁ97
217
217
217
217
221
221
221
221
240
240
240
240
220
220
220
220
224
224
224
224
243
243
243
243
169
169
169
169
183
183
183
183
198
198
198
198
173
173
173
173
187
187
187
187
202
202
202
202
258A00
259A00
260A00
ꢀ
30.1
60.1
90.2
ꢀ
035
036
036
ꢀ
Low
4.8
7.4
258A00
259A00
260A00
ꢀ
30.1
60.1
90.2
ꢀ
035
036
036
ꢀ
Mid-
Low
ꢀ
258A00
259A00
260A00
ꢀ
30.1
60.1
90.2
ꢀ
035
036
036
ꢀ
High 9.7
16
460-3-60
414 506 ꢁ9.0 ꢁ62 ꢁ9.0 ꢁ62 ꢁ7.7 ꢁ50 1.0
258A00
259A00
260A00
ꢀ
30.1
60.1
90.2
ꢀ
035
036
036
ꢀ
Low
4.8
7.4
258A00
259A00
260A00
ꢀ
30.1
60.1
90.2
ꢀ
035
036
036
ꢀ
Mid−
Low
2
1.2
258A00
259A00
260A00
ꢀ
30.1
60.1
90.2
ꢀ
035
036
036
ꢀ
High 9.7
261A00
262A00
263A00
ꢀ
24.1
46.2
72.2
ꢀ
035
035
036
ꢀ
Low
2.8
5.6
261A00
262A00
263A00
ꢀ
24.1
46.2
72.2
ꢀ
035
035
036
ꢀ
Mid-
Low
ꢀ
ꢀ
261A00
262A00
263A00
ꢀ
24.1
46.2
72.2
ꢀ
035
035
036
ꢀ
High 7.8
575-3-60
518 633 ꢁ6.8 ꢁ50 ꢁ6.8 ꢁ50 ꢁ6.1 ꢁ40 0.8
261A00
262A00
263A00
ꢀ
24.1
46.2
72.2
ꢀ
035
035
036
ꢀ
Low
2.8
5.6
261A00
262A00
263A00
ꢀ
24.1
46.2
72.2
ꢀ
035
035
036
ꢀ
Mid−
Low
2
3.0
261A00
262A00
263A00
24.1
46.2
72.2
035
036
036
High 7.8
See legend pg. 32.
31
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Example: Supply voltage is 460-3-60
LEGEND
FLA
−
Full Load Amps
AB = 224 v
BC = 231 v
AC = 226 v
HACR − Heating, Air Conditioning and Refrigeration
IFM
−
−
−
Indoor − Fan Motor
Locked Rotor Amps
Minimum Circuit Amps
224 + 231 + 226
3
LRA
MCA
Average Voltage =
681
3
=
MOCP − Maximum Overcurrent Protection
NEC
OFM
RLA
−
−
−
National Electrical Code
Outdoor−Fan Motor
Rated Load Amps
=
227
Determine maximum deviation from average voltage.
ꢂ(AB) 227 – 223 = 3 v
ꢂ(BC) 231 – 227 = 4 v
*
†
Heater capacity (kW) is based on heater voltage of 208 v, 240 v, or 480 v. If power distribu-
tion voltage to unit varies from rated heater voltage, heater kW will vary accordingly.
Fuse or HACR circuit breaker.
ꢂ(AC) 227 – 226 = 1 v
Maximum deviation is 4 v.
Determine percent of voltage imbalance.
NOTES:
1. In compliance with NEC requirements for multimotor and combination load equip-
ment (refer to NEC Articles 430 and 440), the overcurrent protective device for the
unit shall be fuse or HACR breaker.
4
% Voltage Imbalance
= 100 x
227
2. Unbalanced 3-Phase Supply Voltage
Never operate a motor where a phase imbalance in supply voltage is greater than
2%. Use the following formula to determine the percentage of voltage imbalance.
= 1.76%
This amount of phase imbalance is satisfactory as it is below the maximum allowable 2%.
IMPORTANT: If the supply voltage phase imbalance is more than 2%, contact your local electric
utility company immediately.
max voltage deviation from average voltage
% Voltage Imbalance
= 100 x
average voltage
3. Single point kits CRSINGLE028A00 and CRSINGLE030A00 are not required if
field−supplied pressure connectors are used.
Printed in U.S.A.
Edition Date: 10/06
Copyright 2006 Carrier Corp. S 7310 W. Morris St. S Indianapolis, IN 46231
Catalog No:50PG−16SI
Replaces: 50PG−13SI
Manufacturer reserves the right to change, at any time, specifications and designs without notice and without obligations.
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