Packaged Heat Pumps
Precedent™
WSC060-120
50 Hz
PKGP-PRC004-EN
January 2003
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Contents
Introduction
2
4
Features and Benefits
Application Considerations
Selection Procedure
Model Number Description
General Data
9
10
12
13
14
34
35
38
39
46
47
Performance Data
Controls
Electrical Data
Jobsite Connections
Dimensional Data
Weights
Mechanical Specifications
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Features and
Benefits
Easy-Adjust Idler Arm
With the Easy-Adjust Idler Arm, the belt
and sheaves can be quickly adjusted
without moving the mounted fan motor.
The result is a major savings in time and
money.
Patented Condenser Coil
Precedent boasts a patented 1+1+1
Hybrid coil, permanently gapped for
easy cleaning.
Unit Cabinet
The compact cabinet with rounded
corners takes up less room and is less
costly to ship. The beveled and ribbed
top is not only aesthetically pleasing, it is
designed to prevent water from pooling
Colored And Numbered Wiring
You save time and money tracing wires
and diagnosing the unit.
Single Point Power
A single electrical connection powers the
unit.
Convertible Units
• The units ship in a downflow
configuration. They can be easily
converted to horizontal by simply
moving two panels.
• Units come complete with horizontal
duct flanges so the contractor doesn’t
have to field fabricate them. These duct
flanges are a time and cost saver.
Sloped Drain Pans
Every Precedent unit has a non-
corrossive, removable, double-sloped
drain pan that’s easy to clean and
reversible to allow installation of drain
trap on either side of the unit.
Compressors
Precedent™ contains the best compressor
technology available to achieve the
highest possible performance. Our
compressor line includes Trane-built
Climatuff™ reciprocating and scrolls.
Through the Base Condensate
Every unit includes provisions for
through the base condensate drain
connections. This allows the drain to be
connected through the roof curb instead
of a roof penetration.
Easy Access Panels
Easy access panels reduce the number of
possible water entry points. Remove two
screws for access to the standardized
internal components and wiring.
Foil-Faced Insulation
All panels in the Evaporator section of
the unit have cleanable foil-faced
insulation. All edges are either captured
or sealed to ensure no fibers get into the
airstream.
Low Ambient Cooling
Unit Base
All Precedent units have cooling
capabilities down to -18°C (0°F) as
standard.
For added water integrity, Precedent has
a raised 29 mm 1(1/8") lip around the
unit’s downflow supply and return to
prevent water from blowing into the
ductwork.
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Features and
Benefits
Standardized Components
Flexible Applications
• Components are placed in the same
location on all Precedent™ units.
Familiarize yourself with one Precedent
and you are familiar with every
Precedent.
• Only two roof curbs for the 5-10 ton
Precedent line… simplifies curb
selection.
• Airflow is outstanding. The Precedent
can replace an older machine with old
ductwork and, in many cases, improve
comfort through better air distribution.
• Belt drive — standard or oversized
supply fan motors meet a wide airflow
range.
• Precedent offers ultimate flexibility.
Options and components are not pre-
packaged at the factory. Units are built
to order in our standard “ shortest in
the industry” ship cycle time.
Easy Access Low Voltage Terminal
Board
Precedent’s Low Voltage Terminal Board
is external to the electrical control
cabinet. It is extremely easy to locate and
attach the thermostat wire. This is
another cost and time saving installation
feature.
Low Voltage Connections
The wiring of the low voltage
connections to the unit and the zone
sensors is as simple as 1-1, 2-2, and 3-3.
This simplified system makes it easy for
the installer to wire
Single-Side Service
Single-side service is standard on all
Precedent units.
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Features and
Benefits
• Eliminates the need for field-installed
components with its built-in anti-
short-cycle timer, time delay relay
and minimum ‘’on’’ time controls.
These controls are factory tested to
assure proper operation.
• Requires no special tools to run the
Precedent unit through its paces
during testing. Simply place a
jumper between Test 1 and Test 2
terminals on the Low Voltage
Micro Controls
Terminal Board and the unit will walk
through its operational steps. The
unit automatically returns control to
the zone sensor after stepping
through the test mode a single time,
even if the jumper is left on the unit.
Several years ago,Trane was the first to
introduce microprocessor controls into
the Light Commercial Market. That
design, along with immeasurable
experience, has provided the technology
forTrane’s second-generation ReliaTel™
microprocessor controls.
• As long as the unit has power and
the LED is lit, the Micro is
ReliaTel Micro:
operational. The light indicates that
the Micro is functioning properly.
• Provides unit control for heating,
cooling, and ventilating by utilizing
input from sensors that measure
outdoor and indoor temperature.
• Features expanded diagnostic
capabilities when used with Trane’s
Integrated Comfort ™ systems.
• Improves quality and reliability through
the use of time-tested microprocessor
controls and logic.
• As an energy benefit, softens
electrical ‘’spikes’’ by staging on fans,
compressors and heaters.
• Prevents the unit from short cycling,
considerably improving compressor
life.
• The Intelligent Fallback or Adaptive
Control is a benefit to the building
occupant. If a component goes
astray, the unit will continue to
operate at predetermined
• Ensures that the compressor will run
for a specific amount of time, which
allows oil to return for better
temperature set points.
lubrication, enhancing the reliability of
the compressor.
• Intelligent Anticipation is a standard
feature of the Micro. Functioning
constantly, the Micro and zone
sensors work together in harmony to
provide tight comfort control.
• Reduces the number of components
required to operate the unit, thereby
reducing possibilities for component
failure.
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Features and
Benefits
The following options round-out the
complete line of Precedent™ options:
Factory-installed Options
Hinged Access Doors
These doors permit easy access to the
filter, fan/heat, and compressor/control
sections. They reduce the potential roof
damage from screws or sharp access
door corners.
— 0 - 50% Manual or Motorized
Outside Air
— Discharge Air Sensor
— Electric heaters (available as field-
installed accessories)
Economizer
Equipped with either dry bulb, reference
or comparative enthalpy sensing, this
feature provides free cooling as the
outdoor temperature and/or humidity
decreases. Economizers, correctly
installed, offer valuable energy savings.
Factory-installed economizers save time
and ensure proper installation.
— Hail Protection Quality Coil
Guards
— Wide array of Zone Sensors
— Factory built Roof Curb
One of Our Finest Assets:
Trane Sales Representatives are a
Support group that can assist you
with:
— Product
— Application
— Service
— Training
— Special Applications
— Specifications
— Computer Programs and much
Clogged Filter/Fan Fail Switches
These sensors allows a zone sensor
service light or Integrated Comfort
system to indicate a dirty filter or a fan
that’s not working.The field installation
charges for these valuable feedback
devices often eliminate them from
consideration. Factory installation can
make such features a good investment.
more
Precedent has the features and
benefits that make it first class in the
light commercial rooftop market.
Designed with input from field
contractors and engineers, its airflow
performance is outstanding.
Comm-3/4 Trane Communication
Interface
Available factory or field-installed.This
module, when applied with the Micro,
easily interfaces with Trane’s Integrated
Comfort™ system.
Precedent…The same Trane
quality…with added flexibility.
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Features and
Benefits
Quality And Reliability Testing
• We perform a 100% coil leak test at the
factory.The evaporator and condenser
coils are leak tested at 1,375 kPa (200
psig) and pressure tested to 3,100 kPa
(450 psig).
• All Precedent™ designs were rigorously
rain tested at the factory to ensure
water integrity.
• Actual shipping tests were performed
to determine packaging requirements.
Units were test shipped around the
country to determine the best
packaging.
• All parts are inspected at the point of
final assembly. Sub-standard parts are
identified and rejected immediately.
• Every unit receives a 100% unit run test
before leaving the production line to
make sure it lives up to rigorous Trane
requirements.
• Factory shake and drop tests were
used as part of the package design
process to help assure that the unit
arrives at the job site in top condition.
We test designs at our factory not on
our customers!
• Rigging tests include lifting a unit into
the air and letting it drop one foot,
assuring that the lifting lugs and rails
hold up under stress.
Va riTra c ™
VariTrac™
When Trane’s changeover VAV System
for light commercial applications is
coupled with Precedent, it provides the
latest in technological advances for
comfort management systems and can
allow thermostat control in every zone
served by VariTrac.
R
e
lia
T
e
l
Roof Top Unit
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Application
Considerations
Application of this product should be
within the cataloged airflow and cooling
considerations.
Condensate Trap
The evaporator is a draw-thru
configuration. A trap must be field
provided prior to start-up on the cooling
cycle.
Low Ambient Cooling
Precedent™ features, as standard, low
ambient cooling down to -18°C (0°F).
Contact your localTrane Representative
for more assistance with low ambient
cooling applications.
Clearance Requirements
The recommended clearances identified
with unit dimensions should be
maintained to assure adequate service,
maximum capacity and peak operating
efficiency. Actual clearances which
appear inadequate should be reviewed
with the localTrane sales personnel.
Barometric Relief
This product line offers an optional
barometric relief damper for use in
conjunction with economizer option.
This option consists of gravity dampers
which open with increased pressure. As
the building air pressure increases, the
pressure in the unit return air section
also increases, opening the dampers
and relieving the conditioned space.
Unit Pitch
These units have reversible sloped
condensate drain pans. Units must be
installed level, any unit slope must be
toward side of unit where condensate
drain is connected.
NOTE: THE EFFECTIVENESS OF
BAROMETRIC RELIEF DAMPER
DURING ECONOMIZING OPERATION
IS SYSTEM RELATED.
PRESSURE DROP OF THE RETURN AIR
SYSTEM SHOULD BE CONSIDERED TO
CONTROL BUILDING PRESSURIZA-
TION.
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Selection
Procedure - SI Units
Cooling Capacity
Table PD-1 shows that a WSC060AD has
a gross cooling capacity of 18.1 kW and
14.7 kW sensible capacity at 35 degree C
ambient and 3,400 m3/hr with 27 DB/19
WB air entering the evaporator.
Heating Capacity
Step 1
Step 1
Calculate the building heating load using
the Trane calculation form or other
standard accepted method.
Calculate the building’s total and
sensible cooling loads at design
conditions. Use the Trane calculation
form or any other standard accepted
method.
To find the net cooling capacities, fan
motor heat must be subtracted.
Determine the total unit static pressure:
Step 2
Size the equipment using Table PD-5 to
match the heating loads at design
conditions.
Step 2
External Static
Standard Filter 1 in.
Economizer
Supplementary Electric Heat
Total Static Pressure
130 Pa
37 Pa
46 Pa
21 Pa
234 Pa
Size the equipment using Table PD-1.
Match the cooling loads at design
conditions.
Example: The following are the building
cooling requirements:
A
Total Heating Load: 16 kW
B
Outdoor Ambient (Winter) – 9°C DB
Note: The Evaporator Fan Performance
Table PD-9 has deducted the pressure
drop for a 25 mm filter already in the
downflow unit.
A
C
Electrical Characteristics: 380– 415/50/3
Indoor Return Temperature: 21°C DB
B
D
Airflow: 3,400 m3/hr
Summer Design Conditions:
Entering Evaporator Coil: 27 DB/ 19 WB
Outdoor Ambient: 35
Therefore, the actualTotal Static
Pressure is 234 – 37 = 197 Pa. With 3,400
m3/hr and 197 Pa,Table PD-9 shows 0.75
kW.
Use the portion ofTable PD-5 for the
WSC060AD to determine capacity at
winter design conditions. The
mechanical heating portion of the heat
pump will provide 8.3 kW.
C
Total Cooling Load: 17.0 kW
Note below the table gives a formula to
calculate Fan Motor Heat,
D
Sensible Cooling Load: 11.7 kW
Fan Motor Heat (kW) =
Step 3
1.144 x (Fan kW) + 0.132
= 1.144 x 0.75 + 0.132 = 1.0 kW
Because 8.3 kW is less than the
building’s required heating capacity at
winter design conditions, a
supplementary heater must be selected.
16 kW – 8.3 kW = 7.7 kW
E
Airflow: 3,400 m3/hr
External Static Pressure: 130 Pa
NetTotal Cooling Capacity =
18.1 – 1.0 = 17.1 kW
F
Downflow Configuration
Net Sensible Cooling Capacity =
14.7 – 1.0 = 13.7 kW
From Table PD-9, at 380 volts, the 10.9
kW Heater will be adequate to do the
job.
10.9 kW 38.0 MBh
From Table ED-5 select heater
BAYHTRR418A (10.9 kW 380/50/3).
Air Delivery Selection
External static pressure drop through the
air distribution system has been
calculated to be 200 Pa. EnterTable PD-9
for a WSC060AD at 3400 m3/h and 200
Pa static pressure. The standard motor
will give the desired airflow.
Accessory Selection
Select accessories needed to
accommodate the application.
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Selection
Procedure - IP Units
Cooling Capacity
Table PD-1a shows that a WSC060AD
has a gross cooling capacity of 59.0 MBh
and 45.7 MBh sensible capacity at 95
degree ambient and 2,000 cfm with 80
DB/67 WB air entering the evaporator.
Heating Capacity
Step 1
Step 1
Calculate the building heating load using
the Trane calculation form or other
standard accepted method.
Calculate the building’s total and
sensible cooling loads at design
conditions. Use the Trane calculation
form or any other standard accepted
method.
To find the net cooling capacities, fan
motor heat must be subtracted.
Determine the total unit static pressure:
Step 2
Size the equipment using Table PD-5a to
match the heating loads at design
conditions.
Step 2
External Static
Standard Filter 1 in.
Economizer
0.52 in.
0.15 in.
0.18 in.
Size the equipment using Table PD-1a.
Match the cooling loads at design
conditions.
Example: The following are the building
cooling requirements:
A
Total Heating Load: 50 MBh
Supplementary Electric Heat 0.083 in.
Total Static Pressure 0.933 in.
B
Outdoor Ambient (Winter) 17 DB
Note: The Evaporator Fan Performance
Table PD-9a has deducted the pressure
drop for a 1 in. filter already in the
downflow unit.
A
C
Electrical Characteristics: 380– 415/50/3
Indoor Return Temperature: 70 DB
B
D
Summer Design Conditions:
Entering Evaporator Coil: 80 DB/ 67 WB
Outdoor Ambient: 95
Therefore, the actualTotal Static
Pressure is 0.933 – 0.15 = 0.78. With
2,000 cfm and 0.78 inches,Table PD-9a
shows 1.00 bhp.
Airflow: 2,000 cfm
Use the portion ofTable PD-5a for the
WSC060AD to determine capacity at
winter design conditions. The
mechanical heating portion of the heat
pump will provide 29.1 MBh.
C
Total Cooling Load: 53 MBh
Note below the table gives a formula to
calculate Fan Motor Heat,
D
Sensible Cooling Load: 33 MBh
Fan Motor Heat (MBh) =
Step 3
2.915 x (Fan bhp) + 0.451
= 2.915 x 1.00 + 0.451 = 3.37 MBh
Because 29.1 MBh is less than the
building’s required heating capacity at
winter design conditions, a
supplementary heater must be selected.
50 MBh – 29.1 MBh = 29.9 MBh
E
Airflow: 2,000 cfm
External Static Pressure: .52 in. w.g.
NetTotal Cooling Capacity =
57 – 3.37 = 53.6 MBh
F
Downflow Configuration
Net Sensible Cooling Capacity =
38 – 3.37 = 34.6 MBh
From Table PD-9a, at 380 volts, the 38.0
MBh Heater will be adequate to do the
job.
10.9 kW 38.0 MBh
From Table ED-2 select heater
BAYHTRR418A (38.0 MBh at 380 volts).
Air Delivery Selection
External static pressure drop through the
air distribution system has been
calculated to be 0.80 inches of water.
EnterTable PD-9a for a WSC060AD at
2000 cfm and 0.80 static pressure. The
standard motor will give the desired
airflow.
Accessory Selection
Select accessories needed to
accommodate the application.
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Model
Num ber
Description
W S
C
060
A
D
8
R
9
O
A
**
C
0
0
0
0
0
0
0
0
0
0
1
1
2
3 4,5,6 7
10 11 12,13 14 15 16 17 18 19 20 21 22 23 24 25
Digit 1 - Unit Function
Digit 14 - Fresh Air Selection
Digit 19 - Disconnect/Circuit Breaker
W = Packaged Heat Pump
0 = No Fresh Air
0 = No Disconnect or Circuit Breaker
A = Manual Outside Air Damper 0-50%
B = Motorized Outside Air Damper 0-50%
C = Economizer, Dry Bulb 0-100% without
Barometric Relief
Digit 2 - Efficiency
Digit 20 - Convenience Outlet
S
= Standard Efficiency
0 = No Convenience Outlet
D = Economizer, Dry Bulb 0-100% with
Barometric Relief
E = Economizer, Reference Enthalpy
0-100% without Barometric Relief
F = Economizer, Reference Enthalpy
0-100% with Barometric Relief
G = Economizer, Comparative Enthalpy
0-100% without Barometric Relief
H = Economizer, Comparative Enthalpy
0-100% with Barometric Relief
Digit 3 - Airflow
Digit 21 - Communications Options
C = Convertible
0 = No Communications Interface
1 = Comm-3/4 Trane Communications
Interface
2 = Comm-5 LonTalk Communications
Interface
Digits 4,5,6 - Nominal Gross Cooling
Capacity (MBh)
kW
17.6
21.1
26.4
35.1
Tons
5
6
7.5
10
060
072
090
120
=
=
=
=
Digit 22 - Refrigeration System Option
0 = Standard Refrigeration System
Digit 23 - Refrigeration Controls
Digit 15 - Supply Fan/Drive Type/Motor
Digit 7 - Major Design Sequence
0 = No Refrigeration Control
0 = Standard Drive
1 = Oversized Motor
A = First
Digit 24 - Smoke Detector
Digit 8 - Unit Voltage
0 = No Smoke Detector
Digit 16 - Hinged Service Access/Filters
D = 380– 415/50/3
T = 200/50/3
0 = Standard Panels/Standard Filters
A = Hinged Access Panels/Standard Filters
B = Standard Panels/50mm (2” ) Pleated
Filters
C = Hinged Access Panels/50mm (2” )
Pleated Filters
Digit 25 - Monitoring Controls
0 = No Monitoring Control
1 = Clogged Filter Switch
2 = Fan Failure Switch
3 = Discharge Air Sensing Tube
4 = Clogged Filter Switch and Fan Fail
Switch
5 = Clogged Filter Switch and Discharge
Air Sensing Tube
6 = Fan Fail Switch and Discharge Air
Sensing Tube
Digit 9 - Unit Controls
R = ReliaTel™ Microprocessor
Digit 10 - Electric Heater
Digit 17 - Condenser Coil Protection
0 = No Electric Heater
0 = Standard Coil
Digit 11 - Minor Design Sequence
1 = Standard Coil with Hail Guard
2 = Epoxy Coated Condenser Coil
3 = Epoxy Coated Condenser Coil
with Hail Guard
A = First Sequence
7 = Clogged Filter and Fan Fail Switches
and Discharge Air Sensing Tube
Digits 12,13 - Service Sequence
**= Factory Assigned
Digit18 - Through the Base Provisions
0 = No Through the Base Provisions
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General
Data
Table GD-1 - General Data
Convertible Units
WSC060AD,T
Convertible Units
WSC072AD,T
Convertible Units
WSC090AD,T
Convertible Units
WSC120AD,T
1
Cooling Performance
Gross Capacity - kW (MBh)
17.3 (59.0)
2.72 (9.3)
3400 (2000)
3400 (2000)
16.7 (57.0)
6.13
22.6 (77.0)
3.31 (11.3)
4080 (2400)
3570 (2100)
21.4 (73.0)
6.46
27.8 (95.0)
3.20 (10.9)
5100 (3000)
4460 (2625)
26.4 (90.0)
8.26
34.6 (118.0)
3.28 (10.1)
6800 (4000)
5950 (3500)
33.1 (113.0)
11.19
COP (EER) 2
Nominal Airflow - m3/h (cfm)
Rated Airflow - m3/h (cfm)
Net Capacity - kW (MBh)
System Power - kW
1
Heating Performance
High Temperature Capacity - kW (MBh)
COP
16.0 (54.5)
3.40
19.9 (68.0)
3.45
24.0 (82.0)
3.54
31.9 (109.0)
3.36
System Power - kW
4.71
5.76
6.78
9.48
Compressor
Number - Type
Outdoor Sound Rating - dB 3
Outdoor Coil - Type
1-Climatuff Scroll
80
1-Climatuff Scroll
85
1-Trane 3-D Scroll
85
2-Climatuff Scroll
79
Lanced
Lanced
Lanced
Lanced
Tube Size - in. OD
0.3125
1.02 (10.96)
3 / 17
0.3125
1.58 (17.00)
2 / 17
0.3125
1.58 (17.00)
3 / 17
0.3125
1.84 (19.83)
3 / 17
Face Area - m2 (sq ft)
Rows / FPI
Refrigerant Control
Expansion Valve
Expansion Valve
Expansion Valve
Expansion Valve
Indoor Coil - Type
Lanced
Lanced
Lanced
Lanced
Tube Size OD - in.
0.3125
0.72 (7.71)
3 / 16
0.3125
0.92 (9.89)
3 / 16
0.3125
0.92 (9.89)
4 / 16
0.3125
1.15 (12.36)
4 / 16
Face Area - m2 (sq ft)
Rows / FPI
Refrigerant Control
Drain Connection No. / Size - in.
Outdoor Fan - Type
No. Used / Diameter (in.)
Drive Type / No. Speeds
CFM
Short Orifice
1 / 0.75 NPT
Propeller
1 / 22
Direct / 1
2900
Short Orifice
1 / 0.75 NPT
Propeller
1 / 26
Direct / 1
5100
Short Orifice
1 / 0.75 NPT
Propeller
1 / 26
Direct / 1
5200
Short Orifice
1 / 0.75 NPT
Propeller
1 / 26
Direct / 1
5800
No. Motors / kW (HP)
Motor RPM
1 / 0.30 (0.40)
950
1 / .56 (0.75)
950
1 / .56 (0.75)
950
1 / .56 (0.75)
950
Belt Drive Indoor Fan -Type
No. Used
FC Centrifugal
1
FC Centrifugal
1
FC Centrifugal
1
FC Centrifugal
1
Fan Diameter xWidth - mm - in.
DrvieType / No. Speeds
No. Motors
280 X 280 (11 x 11)
Belt /Variable Speed
1
305 X 305 (12 x 12)
Belt /Variable Speed
1
305 X 305 (12 x 12)
Belt /Variable Speed
1
(381 X 381) 15 x 15
Belt /Variable Speed
1
Standard Motor Power - kW (HP)
Oversized Motor Power - kW (HP)
Motor RPM - Standard / Oversized
Motor Frame Size
1.1 (1.5)
1.1 (1.5)
1.5 (2.0)
1450 / 1450
56
1.5 (2.0)
2.2 (3.0)
1450 / 2850
56
2.2 (3.0)
-
-
1450 / -
56
2850 / -
56
Filters - Type Furnished
(No.) Size Reccommended - mm
(No.) Size Reccommended - in.
Refrigerant Charge - kg (lbs) of R-22 4
Throwaway
(2) 508 X 762 X 25
(2) 20 X 30 X 1
3.6 (8.0)
Throwaway
(4) 406 X 635 X 50
(4) 16 X 25 X 2
4.3 (9.4)
Throwaway
(4) 406 X 635 X 50
(4) 16 X 25 X 2
5.7 (12.5)
Throwaway
(4) 508 X 635 X 50
(4) 20 X 25 X 2
Circuit 1 - 3.5 (7.7)
Circuit 2 - 3.5 (7.7)
NOTES:
1. Cooling Perform ance is rated at 35.0 C (95 F) am bient, 26.7 C (80 F) entering dry bulb, 19.4 C (67 F) entering wet bulb. Heating Perform ance israted at 20.0 C (68 F) am bient, 8.3 C
(47 F) entering dry bulb, 6.1 C (43 F) entering wet bulb. Gross capacity does not include the effect of fan m otor heat. Net capacity includes the effect of fan m otor heat. Units are
suitable for operation to + 20 % of nom inal airflow.
2. EER are rated at ARI conditions.
3. Outdoor Sound rating shown is tested in accordance with ARI Standard 270. For m ore inform ation refer to Perform ance Data Table “ Sound Power Level” .
4. Refrigerant charge is an approcim ate value. For a m ore precise value, see unit nam eplate and service literature.
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Perform ance
Data
Table PD-1 — Gross Cooling Capacities (kW)WSC060AD,T (SI)
Enter.
Dry
Bulb
Temp
(C)
24
27
30
33
Ambient Temperature (C)
30
35
Entering Wet Bulb Temperature (C)
19 22 16
40
19
45
19
m3/h
Airflow
16
19
22
16
22
16
22
TGC SHC TGC SHC TGC SHC TGC SHC TGC SHC TGC SHC TGC SHC TGC SHC TGC SHC TGC SHC TGC SHC TGC SHC
14.5 13.2 16.6 10.7 18.3 7.6 15.6 13.8 17.7 11.0 19.0 8.0 13.3 12.6 15.3 10.1 17.4 7.2 12.1 12.0 13.9 9.5 16.3 6.6
15.3 15.3 16.7 13.4 18.4 10.4 16.3 16.3 17.8 13.9 19.1 10.8 14.3 14.3 15.4 12.8 17.5 10.0 13.3 13.3 14.1 12.2 16.3 9.5
16.7 16.7 17.0 16.3 18.5 13.2 17.6 17.6 18.0 16.8 19.3 13.4 15.7 15.7 15.8 15.8 17.5 12.8 14.7 14.7 14.7 14.7 16.4 12.3
17.9 17.9 17.9 17.9 18.7 15.9 18.6 18.6 18.6 18.6 19.5 16.0 17.0 17.0 17.0 17.0 17.7 15.6 16.0 16.0 16.0 16.0 16.6 15.2
3060
3400
3740
24
27
30
33
14.9 14.1 16.9 11.3 18.5 7.8 16.1 14.7 18.0 11.5 19.2 8.2 13.7 13.5 15.6 10.4 17.6 7.4 12.5 12.5 14.2 10.1 16.5 6.9
16.0 16.0 17.0 14.2 18.6 10.9 17.0 17.0 18.1 14.7 19.3 11.5 15.0 15.0 15.8 13.6 17.7 10.5 13.9 13.9 14.5 13.0 16.6 10.0
17.4 17.4 17.4 17.4 18.8 13.8 18.2 18.2 18.4 17.8 19.5 13.9 16.4 16.4 16.4 16.4 17.8 13.6 15.4 15.4 15.4 15.4 16.7 13.2
18.5 18.5 18.5 18.5 19.0 16.7 19.1 19.1 19.1 19.1 19.8 16.7 17.6 17.6 17.6 17.6 18.1 16.6 16.7 16.7 16.7 16.7 17.0 16.3
24
27
30
33
15.3 15.0 17.2 11.5 18.7 8.1 16.5 15.6 18.2 12.0 19.3 8.4 14.1 14.1 15.9 11.0 17.8 7.6 12.9 12.9 14.5 10.8 16.7 7.1
16.6 16.6 17.4 15.0 18.8 11.2 17.5 17.5 18.3 15.4 19.6 11.3 15.6 15.6 16.2 14.5 17.9 11.0 14.4 14.4 14.8 13.9 16.8 10.5
17.9 17.9 17.9 17.9 19.0 14.4 18.6 18.6 18.7 18.7 19.7 14.4 17.0 17.0 17.0 17.0 18.0 14.2 15.9 15.9 15.9 15.9 16.9 13.9
18.9 18.9 18.9 18.9 19.3 17.5 19.5 19.5 19.5 19.5 20.0 17.4 18.1 18.1 18.1 18.1 18.4 17.5 17.2 17.2 17.2 17.2 17.3 17.2
4080
24
27
30
33
15.6 15.6 17.4 12.1 18.8 8.3 16.8 16.4 18.4 12.4 19.5 8.6 14.5 14.5 16.1 11.5 17.9 7.9 13.4 13.4 14.7 10.8 16.9 7.3
17.1 17.1 17.6 15.8 18.9 11.6 18.0 18.0 18.5 16.0 19.7 11.8 16.1 16.1 16.5 15.3 18.1 11.4 14.9 14.9 15.1 14.7 17.0 11.0
18.3 18.3 18.3 18.3 19.2 14.9 19.0 19.0 19.0 19.0 19.9 14.8 17.4 17.4 17.4 17.4 18.2 14.9 16.4 16.4 16.4 16.4 17.1 14.6
19.2 19.2 19.2 19.2 19.5 18.2 19.8 19.8 19.8 19.8 20.2 17.9 18.5 18.5 18.5 18.5 18.6 18.2 17.6 17.6 17.6 17.6 17.6 17.6
Notes:
1. All capacities shown are gross and have not considered indoor fan heat. To obtain net cooling, subtract indoor fan heat.
2. TGC = Total Gross Capacity
3. SHC = Sensible Heat Capacity
Table PD-1a — Gross Cooling Capacities (MBH) WSC060AD,T (IP)
Enter.
Ambient Temperature (F)
Dry
Bulb
Temp
85
67
95
Entering Wet Bulb Temperature (F)
67 73 61
105
67
115
67
CFM
61
73
61
73
61
73
Airflow
1800
(F)
TGC SHC TGC SHC TGC SHC TGC SHC TGC SHC TGC SHC TGC SHC TGC SHC TGC SHC TGC SHC TGC SHC TGC SHC
75
80
85
90
54.0 46.5 61.5 35.8 65.9 24.0 49.6 44.2 57.7 34.7 63.5 22.6 45.0 41.9 52.8 32.5 60.3 21.1 40.3 39.5 47.6 30.2 56.2 19.4
55.3 55.3 61.7 44.9 66.5 33.3 51.8 51.8 57.9 43.1 64.0 31.9 48.0 48.0 53.1 40.9 60.6 30.2 44.0 44.0 47.9 38.5 56.4 28.4
59.5 59.5 62.2 53.8 67.1 42.4 56.1 56.1 58.5 52.3 64.3 40.4 52.3 52.3 54.0 50.2 60.9 39.3 48.4 48.4 49.1 47.9 56.6 37.4
62.9 62.9 63.3 62.7 67.6 49.1 60.1 60.1 60.1 60.1 64.8 48.8 56.6 56.6 56.6 56.6 61.2 47.9 52.8 52.8 52.8 52.8 57.0 46.4
2000
2200
75
80
85
90
55.5 49.5 62.4 38.3 66.5 24.4 51.0 47.2 58.8 35.6 64.1 23.1 46.4 44.9 54.0 34.4 61.0 21.6 41.6 41.6 48.6 32.1 57.0 19.9
57.7 57.7 62.6 47.1 67.2 34.4 54.1 54.1 59.0 45.7 64.6 33.2 50.1 50.1 54.4 43.5 61.3 31.6 46.0 46.0 49.1 41.2 57.2 29.8
61.6 61.6 63.4 56.8 68.0 42.9 58.5 58.5 59.9 55.8 65.0 42.0 54.7 54.7 55.5 53.9 61.6 41.1 50.6 50.6 50.6 50.6 57.4 39.7
64.8 64.8 64.8 64.8 68.3 50.9 62.1 62.1 62.1 62.1 65.6 51.1 58.9 58.9 58.9 58.9 62.2 50.6 55.1 55.1 55.1 55.1 58.0 49.4
75
80
85
90
56.8 52.4 63.1 39.9 66.9 24.8 52.3 50.1 59.6 37.2 64.5 23.5 47.3 47.3 54.9 35.1 61.5 22.0 43.1 43.1 49.5 34.0 57.6 20.4
59.7 59.7 63.4 49.2 67.7 35.1 56.1 56.1 59.9 48.1 64.9 35.4 52.1 52.1 55.4 46.1 61.9 32.9 47.8 47.8 50.2 43.8 57.9 31.1
63.2 63.2 64.3 59.5 68.5 44.1 60.3 60.3 61.0 58.9 65.6 45.3 56.7 56.7 56.7 56.7 62.3 42.9 52.7 52.7 52.6 52.6 58.1 41.7
66.2 66.2 66.1 66.1 69.3 53.4 63.7 63.7 63.6 63.6 66.3 53.1 60.6 60.6 60.6 60.6 63.0 53.0 57.0 57.0 57.0 57.0 58.9 52.2
2400
75
80
85
90
57.9 55.2 63.6 41.2 67.2 25.2 53.5 52.9 60.3 38.8 64.9 23.9 48.9 48.9 55.7 38.1 61.9 22.4 44.5 44.5 50.3 34.3 58.1 20.8
61.2 61.2 64.1 51.1 68.1 35.7 57.8 57.8 60.7 50.3 65.9 34.3 53.8 53.8 56.3 48.6 62.3 33.8 49.4 49.4 51.2 46.3 58.4 32.4
64.5 64.5 65.1 61.9 69.0 45.2 61.7 61.7 62.0 61.8 66.1 44.8 58.3 58.3 58.3 58.3 62.8 44.5 54.3 54.3 54.3 54.3 58.8 43.7
67.2 67.2 67.2 67.2 69.8 54.9 64.9 64.9 64.9 64.9 66.9 55.0 61.9 61.9 61.9 61.9 63.7 55.2 58.5 58.5 58.5 58.5 59.7 54.8
Notes:
1. All capacities shown are gross and have not considered indoor fan heat. To obtain net cooling, subtract indoor fan heat.
2. TGC = Total Gross Capacity
3. SHC = Sensible Heat Capacity
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Data
Table PD-2 — Gross Cooling Capacities (kW) WSC072AD,T (SI)
Enter.
Dry
Bulb
Temp
(C)
24
27
30
33
Ambient Temperature (C)
30
35
Entering Wet Bulb Temperature (C)
19 22 16
40
19
45
19
m3/h
Airflow
16
19
22
16
22
16
22
TGC SHC TGC SHC TGC SHC TGC SHC TGC SHC TGC SHC TGC SHC TGC SHC TGC SHC TGC SHC TGC SHC TGC SHC
20.3 18.1 22.7 14.4 23.9 10.2 19.0 17.4 21.7 14.0 23.6 9.9 17.6 16.7 20.2 13.4 22.9 9.6 16.1 16.0 18.6 12.7 21.7 9.2
21.2 21.2 22.8 17.9 24.2 13.6 20.1 20.1 21.8 17.6 23.7 13.6 19.0 19.0 20.4 17.0 22.9 13.3 17.7 17.7 18.8 16.3 21.7 12.9
22.6 22.6 23.1 21.5 24.4 16.7 21.9 21.9 22.2 21.5 23.8 16.8 20.8 20.8 20.9 20.9 23.0 16.8 19.5 19.5 19.5 19.5 21.8 16.5
23.7 23.7 23.7 23.7 24.6 19.9 23.2 23.2 23.2 23.2 24.1 20.2 22.4 22.4 22.4 22.4 23.2 20.4 21.3 21.3 21.3 21.3 22.1 20.3
3670
4080
4490
24
27
30
33
20.9 19.3 23.0 15.1 24.1 10.4 19.5 18.6 22.2 14.6 23.8 10.2 18.1 17.9 20.7 14.0 23.1 9.8 16.7 16.7 19.0 13.5 22.1 9.5
22.1 22.1 23.1 18.8 24.3 13.8 21.0 21.0 22.3 18.7 23.9 13.9 19.8 19.8 20.9 18.2 23.2 13.9 18.6 18.6 19.3 17.5 22.1 13.5
23.3 23.3 23.5 22.5 24.6 17.1 22.7 22.7 22.6 22.6 24.1 17.5 21.7 21.7 21.7 21.7 23.3 17.7 20.5 20.5 20.5 20.5 22.2 17.6
24.2 24.2 24.2 24.2 24.8 20.5 23.8 23.8 23.8 23.8 24.4 21.0 23.1 23.1 23.1 23.1 23.6 21.5 22.2 22.2 22.2 22.2 22.5 21.5
24
27
30
33
21.4 20.4 23.2 15.6 24.2 10.7 20.1 19.8 22.5 15.3 23.9 10.4 18.7 18.7 21.1 14.7 23.3 10.1 17.3 17.3 19.3 14.3 22.3 9.7
22.6 22.6 23.4 19.5 24.5 14.2 21.8 21.8 22.6 19.7 24.2 14.4 20.6 20.6 21.3 19.3 23.4 14.3 19.3 19.3 19.8 18.6 22.4 14.2
23.7 23.7 23.8 23.4 24.8 17.7 23.2 23.2 23.2 23.2 24.3 18.1 22.4 22.4 22.4 22.4 23.6 18.5 21.2 21.2 21.2 21.2 22.5 18.5
24.5 24.5 24.5 24.5 25.1 21.2 24.2 24.2 24.2 24.2 24.6 21.8 23.6 23.6 23.6 23.6 23.9 22.4 22.8 22.8 22.8 22.8 23.0 22.7
4900
24
27
30
33
21.9 21.6 23.4 16.1 24.3 10.8 20.5 20.5 22.7 15.9 24.0 10.6 19.3 19.3 21.4 15.4 23.4 10.4 17.9 17.9 19.7 15.1 22.5 10.0
23.1 23.1 23.6 20.2 24.6 14.4 22.4 22.4 22.9 20.6 24.2 14.6 21.3 21.3 21.8 20.4 23.6 14.8 20.0 20.0 20.2 19.7 22.5 14.7
24.0 24.0 24.0 24.0 24.9 18.1 23.6 23.6 23.6 23.6 24.4 18.6 22.9 22.9 22.9 22.9 23.8 19.1 22.0 22.0 22.0 22.0 22.8 19.4
24.8 24.8 24.8 24.8 25.2 21.7 24.5 24.5 24.5 24.5 24.8 22.4 24.0 24.0 24.0 24.0 24.2 23.2 23.3 23.3 23.3 23.3 23.3 23.3
Notes:
1. All capacities shown are gross and have not considered indoor fan heat. To obtain net cooling, subtract indoor fan heat.
2. TGC = Total Gross Capacity
3. SHC = Sensible Heat Capacity
Table PD-2a — Gross Cooling Capacities (MBH) WSC072AD,T (IP)
Enter.
Ambient Temperature (F)
Dry
Bulb
Temp
85
67
95
Entering Wet Bulb Temperature (F)
67 73 61
105
67
115
67
CFM
61
73
61
73
61
73
Airflow
2160
(F)
TGC SHC TGC SHC TGC SHC TGC SHC TGC SHC TGC SHC TGC SHC TGC SHC TGC SHC TGC SHC TGC SHC TGC SHC
75
80
85
90
70.1 61.0 78.5 46.7 82.3 30.5 65.0 58.4 75.5 45.1 81.3 29.5 59.6 55.8 70.0 43.2 79.0 28.3 53.9 53.1 63.6 40.5 75.2 26.9
72.0 72.0 78.8 57.5 83.2 41.7 68.0 68.0 75.7 56.9 81.8 41.4 63.6 63.6 70.3 54.6 79.4 40.1 58.9 58.9 64.0 51.9 75.3 38.7
76.7 76.7 79.5 68.6 84.1 51.1 73.5 73.5 76.4 68.7 82.4 51.6 69.3 69.3 71.4 66.6 79.6 51.3 64.6 64.6 65.5 64.0 75.4 50.3
80.2 80.2 80.6 79.2 84.9 60.6 78.1 78.1 78.1 78.1 82.9 61.4 74.8 74.8 74.8 74.8 80.1 62.2 70.3 70.3 70.3 70.3 75.8 61.9
2400
2640
75
80
85
90
72.0 64.9 79.4 48.9 82.8 31.0 66.8 62.4 76.7 47.2 81.8 30.0 61.4 59.8 71.5 45.0 79.7 28.8 55.7 55.7 65.0 43.0 76.2 27.5
75.0 75.0 79.8 59.9 83.7 42.4 71.1 71.1 77.0 60.1 82.6 42.5 66.5 66.5 71.9 58.1 80.1 41.8 61.6 61.6 65.6 55.4 76.3 40.4
78.9 78.9 80.6 71.7 84.6 52.2 76.5 76.5 77.9 72.6 83.4 53.4 72.4 72.4 73.3 71.4 80.5 53.5 67.6 67.6 67.6 67.6 76.5 53.2
81.9 81.9 81.8 81.8 85.5 62.3 80.2 80.2 80.2 80.2 84.2 64.5 77.5 77.5 77.4 77.4 81.2 65.2 73.5 73.5 73.5 73.5 77.1 65.5
75
80
85
90
73.5 68.6 79.9 49.2 83.2 31.4 68.6 66.3 77.6 49.1 82.2 30.5 62.9 62.9 72.7 47.9 80.2 29.3 57.9 57.9 66.2 45.3 76.8 27.9
77.0 77.0 80.6 62.0 84.1 43.0 73.6 73.6 78.0 62.8 83.1 43.3 69.1 69.1 73.3 61.4 80.7 43.6 64.0 64.0 67.1 58.9 77.1 42.0
80.4 80.4 81.5 74.3 85.1 53.3 78.4 78.4 79.2 76.2 84.0 54.9 75.2 75.2 75.1 75.1 81.2 55.4 70.3 70.3 70.3 70.3 77.3 55.6
83.0 83.0 83.0 83.0 86.0 63.8 81.8 81.8 81.8 81.8 84.9 66.5 79.4 79.4 79.4 79.4 82.0 67.8 76.0 76.0 76.0 76.0 78.2 68.9
2880
75
80
85
90
75.0 72.4 80.5 50.4 83.5 31.9 70.2 70.2 78.2 51.7 82.5 31.0 65.0 65.0 73.7 50.2 80.6 29.8 59.8 59.8 67.2 47.7 77.4 28.4
78.5 78.5 81.2 63.8 84.5 43.5 75.9 75.9 78.9 65.4 83.5 44.1 71.4 71.4 74.6 64.9 81.2 44.2 66.2 66.2 68.4 62.3 77.7 43.6
81.5 81.5 82.2 76.7 85.4 54.3 79.9 79.9 80.3 79.3 84.4 56.2 77.1 77.1 77.1 77.1 81.8 57.2 72.5 72.5 72.5 72.5 78.1 57.9
83.9 83.9 83.9 83.9 86.4 65.2 82.9 82.9 82.9 82.9 85.4 68.3 80.8 80.8 80.8 80.8 82.7 70.2 77.6 77.6 77.6 77.6 79.1 71.9
Notes:
1. All capacities shown are gross and have not considered indoor fan heat. To obtain net cooling, subtract indoor fan heat.
2. TGC = Total Gross Capacity
3. SHC = Sensible Heat Capacity
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Data
Table PD-3 — Gross Cooling Capacities (kW)WSC090AD,T (SI)
Enter.
Dry
Bulb
Temp
(C)
24
27
30
33
Ambient Temperature (C)
30
35
Entering Wet Bulb Temperature (C)
19 22 16
40
19
45
19
m3/h
Airflow
4590
16
19
22
16
22
16
22
TGC SHC TGC SHC TGC SHC TGC SHC TGC SHC TGC SHC TGC SHC TGC SHC TGC SHC TGC SHC TGC SHC TGC SHC
25.5 22.7 28.1 18.0 29.5 12.6 23.7 21.8 26.9 17.4 29.0 12.3 21.9 21.0 25.1 16.6 28.1 11.9 20.5 16.8 20.7 12.4 20.8 9.3
26.5 26.5 28.2 22.3 29.8 16.8 25.2 25.2 27.1 22.1 29.2 17.0 23.7 23.7 25.3 21.3 28.2 16.5 20.8 19.8 21.0 14.8 21.1 11.4
28.1 28.1 28.6 26.6 30.1 20.7 27.2 27.2 27.5 26.8 29.4 21.0 25.9 25.9 25.9 25.9 28.3 21.0 21.2 21.2 21.4 17.4 21.5 13.4
29.3 29.3 29.3 29.3 30.5 24.7 28.7 28.7 28.7 28.7 29.6 25.0 27.8 27.8 27.8 27.8 28.6 25.3 21.6 21.6 21.7 19.9 21.9 15.6
5100
5610
24
27
30
33
26.1 24.1 28.4 18.7 29.7 12.9 24.4 23.3 27.4 18.2 29.2 12.6 22.6 22.5 25.6 17.5 28.4 12.2 20.4 16.9 20.7 12.5 20.8 9.3
27.4 27.4 28.6 23.2 30.0 17.2 26.2 26.2 27.6 23.3 29.5 17.4 24.7 24.7 25.9 22.7 28.5 17.3 20.8 20.0 21.1 15.0 21.2 11.4
28.8 28.8 29.0 27.9 30.4 21.3 28.1 28.1 28.0 28.0 29.8 21.9 27.0 27.0 27.0 27.0 28.7 22.0 21.2 21.2 21.4 17.7 21.6 13.6
29.9 29.9 29.9 29.9 30.7 25.4 29.4 29.4 29.4 29.4 30.1 26.3 28.6 28.6 28.6 28.6 29.1 26.6 21.6 21.6 21.8 20.2 22.0 15.8
24
27
30
33
26.7 25.6 28.7 19.0 29.8 13.3 25.0 24.8 27.7 19.0 29.4 12.9 23.2 23.2 26.0 18.3 28.6 12.6 20.6 17.3 20.8 12.6 20.9 9.3
28.1 28.1 28.9 24.1 30.2 17.5 27.1 27.1 28.0 24.4 29.7 17.8 25.6 25.6 26.4 24.0 28.7 17.8 20.9 20.4 21.1 15.2 21.2 11.5
29.3 29.3 29.4 28.9 30.6 21.8 28.7 28.7 28.7 28.7 30.0 22.6 27.7 27.7 27.7 27.7 29.0 22.9 21.4 21.4 21.5 18.0 21.6 13.7
30.2 30.2 30.2 30.2 30.9 26.1 29.8 29.8 29.8 29.8 30.4 27.2 29.1 29.1 29.1 29.1 29.4 27.7 21.8 21.8 21.9 20.5 22.0 15.9
6120
24
27
30
33
27.2 26.8 28.9 19.6 29.9 13.4 25.6 25.6 28.0 20.3 29.5 13.3 23.9 23.9 26.3 19.7 28.8 12.9 22.3 22.3 24.3 19.0 27.6 12.5
28.5 28.5 29.2 24.9 30.3 17.8 27.7 27.7 28.3 25.4 29.9 18.2 26.4 26.4 27.0 25.4 29.0 18.4 24.8 24.8 25.1 24.6 27.7 18.3
29.6 29.6 29.6 29.6 30.7 22.3 29.1 29.1 29.1 29.1 30.2 23.2 28.3 28.3 28.3 28.3 29.3 23.7 27.1 27.1 27.1 27.1 28.0 24.0
30.5 30.5 30.5 30.5 31.1 26.8 30.2 30.2 30.2 30.2 30.7 28.0 29.6 29.6 29.6 29.6 29.7 28.7 28.7 28.7 28.7 28.7 28.7 28.7
Notes:
1. All capacities shown are gross and have not considered indoor fan heat. To obtain net cooling, subtract indoor fan heat.
2. TGC = Total Gross Capacity
3. SHC = Sensible Heat Capacity
Table PD-3a — Gross Cooling Capacities (MBH) WSC090AD,T (IP)
Enter.
Ambient Temperature (F)
Dry
Bulb
Temp
85
67
95
Entering Wet Bulb Temperature (F)
67 73 61
105
67
115
67
CFM
61
73
61
73
61
73
Airflow
2700
(F)
TGC SHC TGC SHC TGC SHC TGC SHC TGC SHC TGC SHC TGC SHC TGC SHC TGC SHC TGC SHC TGC SHC TGC SHC
75
80
85
90
87.8 76.5 97.1 58.3 101.4 37.7 81.1 73.3 93.3 56.2 99.9 36.5 74.3 70.1 86.7 54.3 97.1 35.0 70.3 57.6 71.2 40.6 71.5 28.7
90.1 90.1 97.5 71.3 102.5 52.9 85.0 85.0 93.6 70.9 100.7 51.5 79.4 79.4 87.1 68.3 97.6 49.8 71.3 67.7 72.3 48.5 72.7 35.8
95.4 95.4 98.3 84.9 103.6 63.1 91.7 91.7 94.5 85.4 101.8 64.2 86.4 86.4 88.5 83.4 97.9 63.8 72.6 72.6 73.4 56.8 73.9 42.3
99.3 99.3 99.8 97.9 104.7 74.9 96.7 96.7 96.7 96.7 102.5 76.8 93.0 93.0 93.0 93.0 98.6 77.4 74.0 74.0 74.5 65.1 75.1 48.9
3000
3300
75
80
85
90
89.9 81.2 97.8 59.7 102.0 38.3 83.4 78.2 94.6 58.6 100.6 37.1 76.5 75.0 88.3 57.2 97.8 35.6 70.5 58.6 71.4 41.0 71.7 29.3
93.4 93.4 98.6 74.0 103.1 52.4 88.6 88.6 95.0 74.5 101.6 52.6 82.9 82.9 88.9 72.5 98.5 51.9 71.6 68.9 72.5 49.1 72.9 36.0
97.8 97.8 99.7 88.5 104.3 64.5 94.7 94.7 96.3 90.1 102.7 66.1 89.9 89.9 91.1 89.4 99.1 66.5 73.0 73.0 73.7 57.7 74.2 42.7
101.2 101.2 101.2 101.1 105.5 76.9 99.1 99.1 99.1 99.1 103.7 79.9 95.8 95.8 95.8 95.7 99.8 80.9 74.4 74.4 74.8 66.1 75.4 49.5
75
80
85
90
91.9 85.9 98.6 61.8 102.4 39.0 85.5 83.0 95.6 62.2 101.0 37.7 78.3 78.3 89.7 58.7 98.5 36.3 70.8 59.6 71.6 41.4 71.9 29.1
95.5 95.5 99.5 76.4 103.6 53.1 91.6 91.6 96.2 77.9 102.2 53.6 86.0 86.0 90.7 76.8 99.2 54.2 71.9 69.9 72.7 49.7 73.1 36.2
99.4 99.4 100.7 91.5 104.9 65.7 96.9 96.9 97.8 94.3 103.3 67.8 93.1 93.1 93.0 93.0 100.0 69.1 73.3 73.3 73.9 58.5 74.3 43.0
102.5 102.5 102.5 102.5 106.1 78.7 100.9 100.9 100.9 100.9 104.5 82.3 97.9 97.9 97.9 97.9 100.8 84.1 74.7 74.7 75.0 67.1 75.6 50.0
3600
75
80
85
90
93.4 89.8 99.2 63.4 102.8 39.5 86.9 86.9 96.5 64.9 101.5 38.4 80.8 80.8 91.1 61.4 99.0 36.9 71.0 60.5 71.7 41.8 72.0 29.1
97.1 97.1 100.2 78.6 104.1 53.7 93.9 93.9 97.2 80.9 102.7 54.4 88.5 88.5 92.2 80.8 99.9 54.9 72.1 70.9 72.9 50.2 73.2 36.4
100.7 100.7 101.5 94.2 105.3 66.9 98.6 98.6 99.0 97.9 103.9 69.4 95.0 95.0 95.0 95.0 100.9 71.6 73.5 73.5 74.0 59.3 74.5 43.3
103.5 103.5 103.5 103.5 106.6 80.4 102.1 102.1 102.1 102.1 105.1 84.5 99.6 99.6 99.6 99.6 102.1 87.8 74.9 74.9 75.2 68.0 75.8 50.5
Notes:
1. All capacities shown are gross and have not considered indoor fan heat. To obtain net cooling, subtract indoor fan heat.
2. TGC = Total Gross Capacity
3. SHC = Sensible Heat Capacity
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Data
Table PD-4 — Gross Cooling Capacities (kW) WSC120AD,T (SI)
Enter.
Dry
Bulb
Temp
(C)
24
27
30
33
Ambient Temperature (C)
30
35
Entering Wet Bulb Temperature (C)
19 22 16
40
19
45
19
m3/h
Airflow
6120
16
19
22
16
22
16
22
TGC SHC TGC SHC TGC SHC TGC SHC TGC SHC TGC SHC TGC SHC TGC SHC TGC SHC TGC SHC TGC SHC TGC SHC
31.0 27.0 35.1 21.7 37.3 15.9 29.0 26.0 33.3 20.8 36.4 15.3 26.8 24.9 31.0 19.8 35.0 14.5 24.2 24.2 28.4 19.9 33.1 13.7
32.3 31.9 35.2 27.2 37.6 21.2 30.4 30.4 33.4 26.3 36.6 20.7 28.6 28.6 31.1 25.3 35.1 20.0 26.8 26.8 28.7 24.2 33.1 19.1
34.6 34.6 35.6 32.6 38.0 26.0 33.1 33.1 33.9 32.0 36.8 25.7 31.4 31.4 31.3 31.3 35.2 25.3 29.5 29.5 29.8 29.2 33.2 24.6
36.6 36.6 36.6 36.5 38.2 30.6 35.4 35.4 35.4 35.4 37.1 30.8 33.9 33.9 33.9 33.9 35.5 30.6 32.2 32.2 32.2 32.2 33.6 30.0
6800
7480
24
27
30
33
31.9 28.7 35.6 22.7 37.6 16.2 29.8 27.6 33.9 21.8 36.7 15.9 27.1 27.1 31.7 20.8 35.4 15.0 25.2 25.2 29.1 19.7 33.6 14.1
33.4 33.4 35.8 28.5 37.9 21.7 31.7 31.7 34.1 27.9 36.9 22.8 29.9 29.9 31.9 26.9 35.5 20.9 28.0 28.0 29.5 25.8 33.6 20.1
35.8 35.8 36.3 34.3 38.2 26.6 34.4 34.4 34.4 34.4 37.2 26.7 32.7 32.7 33.0 32.2 35.7 26.6 30.8 30.8 30.9 30.8 33.8 26.0
37.5 37.5 37.5 37.5 38.6 30.7 36.4 36.4 36.4 36.4 37.6 32.1 35.1 35.1 35.0 35.0 36.1 32.2 33.5 33.5 33.5 33.5 34.3 31.8
24
27
30
33
32.7 30.3 36.0 23.5 37.9 16.8 30.0 30.0 34.4 22.8 36.9 16.2 28.1 28.1 32.2 21.8 35.6 15.7 26.3 25.9 29.7 20.7 33.9 14.5
34.5 34.5 36.3 29.7 38.2 22.2 32.9 32.9 34.7 29.3 37.1 22.1 31.0 31.0 32.5 28.4 35.8 21.6 29.1 29.1 30.2 27.4 34.1 21.0
36.6 36.6 36.6 36.6 38.5 27.5 35.4 35.4 35.3 35.3 37.5 27.6 33.8 33.8 33.9 33.6 36.1 27.6 32.0 32.0 32.0 32.0 34.3 27.3
38.1 38.1 38.1 38.1 38.9 32.5 37.2 37.2 37.2 37.2 37.9 33.2 35.9 35.9 35.9 35.9 36.6 33.6 34.4 34.4 34.4 34.4 34.4 34.4
8160
24
27
30
33
32.8 32.8 36.3 24.2 37.9 17.1 30.9 30.9 34.8 23.7 37.1 16.8 29.0 29.0 32.7 22.7 35.9 16.1 26.9 26.9 30.2 21.6 34.2 14.9
35.4 35.4 36.7 30.8 38.4 22.5 33.9 33.9 35.1 30.6 37.4 22.6 32.0 32.0 33.1 29.9 36.1 22.2 30.0 30.0 30.8 28.9 34.4 21.8
37.2 37.2 37.2 37.2 38.9 28.1 36.1 36.1 36.1 35.7 37.7 28.4 34.7 34.7 34.6 34.6 36.4 28.6 32.9 32.9 32.9 32.9 34.7 28.4
38.6 38.6 38.5 38.5 39.4 33.8 37.7 37.7 37.7 37.7 38.2 34.2 36.6 36.6 36.6 36.6 37.0 34.7 35.1 35.1 35.1 35.1 35.1 35.1
Notes:
1. All capacities shown are gross and have not considered indoor fan heat. To obtain net cooling, subtract indoor fan heat.
2. TGC = Total Gross Capacity
3. SHC = Sensible Heat Capacity
Table PD-4a — Gross Cooling Capacities (MBH) WSC120AD,T (IP)
Enter.
Ambient Temperature (F)
Dry
Bulb
Temp
85
67
95
Entering Wet Bulb Temperature (F)
67 73 61
105
67
115
67
CFM
61
73
61
73
61
73
Airflow
3600
(F)
TGC SHC TGC SHC TGC SHC TGC SHC TGC SHC TGC SHC TGC SHC TGC SHC TGC SHC TGC SHC TGC SHC TGC SHC
75
80
85
90
107.1 91.1 121.9 71.0 128.7 47.6 99.2 87.2 115.7 67.7 125.5 45.7 91.0 83.1 107.0 67.2 120.9 43.4 80.7 80.7 97.5 63.2 114.4 40.5
109.1 109.1 122.1 88.0 130.0 66.8 103.3 102.4 115.9 85.0 126.5 63.3 96.0 96.0 107.5 81.2 121.4 60.7 89.0 89.0 98.1 77.1 114.6 57.7
117.2 117.2 123.0 104.8 131.4 80.1 111.2 111.2 116.8 102.7 127.3 78.9 104.6 104.6 108.8 99.1 121.7 77.5 97.5 97.5 100.1 95.2 114.9 74.8
123.7 123.7 123.6 123.6 132.5 94.8 118.9 118.9 118.8 118.8 128.1 94.3 112.9 112.9 113.2 112.8 122.6 93.8 106.1 106.1 106.1 106.1 115.4 91.8
4000
4400
75
80
85
90
110.0 96.6 123.5 73.7 129.3 48.4 101.9 92.6 117.7 70.7 126.3 46.5 93.6 88.6 109.4 67.0 121.9 44.2 84.1 84.1 99.8 62.9 115.8 41.4
114.1 113.0 123.9 91.8 130.8 66.7 107.2 107.2 118.0 89.7 127.5 65.8 100.2 100.2 109.9 86.1 122.7 63.2 92.9 92.9 100.5 82.1 116.1 60.2
121.2 121.2 125.0 109.8 132.3 82.0 115.8 115.8 119.2 108.7 128.3 82.0 109.2 109.2 111.8 105.8 123.2 80.7 102.0 102.0 101.9 101.9 116.6 78.9
126.8 126.8 126.8 126.8 133.8 97.6 122.6 122.6 122.7 122.1 129.4 97.7 117.2 117.2 117.1 117.1 124.2 98.1 110.7 110.7 110.6 110.6 117.4 97.0
75
80
85
90
112.5 101.9 124.4 77.0 129.8 49.0 104.5 98.0 119.3 73.6 127.0 47.1 94.7 94.7 111.3 70.0 122.7 45.1 87.9 86.2 101.8 65.9 116.8 42.1
117.5 117.5 125.3 95.1 131.4 67.5 111.1 111.1 119.7 93.9 128.3 70.3 104.0 104.0 112.0 90.7 123.6 65.8 96.5 96.5 102.7 86.8 117.3 62.6
124.1 124.1 126.6 114.1 133.0 83.5 119.3 119.3 121.3 114.1 129.9 84.1 113.0 113.0 113.0 113.0 124.3 83.3 105.8 105.8 106.7 104.3 117.8 82.2
129.1 129.1 129.0 129.0 134.5 99.7 125.4 125.4 125.3 125.3 131.4 100.4 120.3 120.3 120.3 120.3 125.5 101.8 114.2 114.2 114.2 114.2 119.0 101.6
4800
75
80
85
90
114.7 106.9 125.4 79.1 130.3 49.6 105.1 105.1 120.5 76.3 127.4 48.1 97.7 97.7 112.9 72.8 123.3 46.0 90.3 89.8 103.4 68.7 117.6 43.0
120.3 120.3 126.4 98.0 131.9 68.3 114.4 114.4 121.2 97.7 129.0 68.0 107.3 107.3 113.8 95.2 124.2 66.4 99.6 99.6 104.6 91.3 118.3 64.8
126.3 126.3 127.8 117.8 133.5 84.7 121.9 121.9 121.9 121.9 130.5 86.0 116.1 116.1 116.1 116.1 125.4 85.7 109.1 109.1 109.4 108.7 118.9 85.2
131.1 131.1 130.6 130.6 135.1 101.6 127.4 127.4 127.3 127.3 131.3 103.4 122.7 122.7 122.7 122.7 126.6 105.0 116.9 116.9 116.9 116.9 120.3 105.6
Notes:
1. All capacities shown are gross and have not considered indoor fan heat. To obtain net cooling, subtract indoor fan heat.
2. TGC = Total Gross Capacity
3. SHC = Sensible Heat Capacity
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Data
Table PD-5 – Net Heating Capacities (kW)WSC060AD,T at 3,400 m3/h (SI)
Integrated Heating Capacity (kW)
Total Power (kW)
Outdoor
Temp (C)
At Indicated Indoor Dry Bulb Temp (C)
At Indicated Indoor Dry Bulb Temp (C)
15
21
24
27
15
21
24
27
– 24
– 21
– 18
– 15
– 12
– 9
– 6
– 3
0
3
6
9
12
15
18
4.1
4.9
5.8
6.7
7.6
4.1
4.9
5.7
6.5
7.4
4.1
4.8
5.6
6.4
7.3
4.0
4.8
5.5
6.3
7.2
3.2
3.3
3.4
3.5
3.6
3.7
3.8
3.9
4.0
4.1
4.2
4.3
4.4
4.5
4.7
3.7
3.8
3.8
3.9
4.0
4.1
4.2
4.3
4.4
4.5
4.6
4.7
4.8
5.0
5.2
3.9
4.0
4.1
4.2
4.3
4.3
4.4
4.5
4.6
4.7
4.8
5.0
5.1
5.2
5.4
4.2
4.3
4.3
4.4
4.5
4.6
4.7
4.8
4.9
5.0
5.1
5.2
5.4
5.5
5.7
8.6
9.6
8.3
9.3
8.2
9.1
8.1
9.0
10.6
11.7
12.8
13.9
16.7
18.0
19.3
20.7
10.3
11.4
12.4
13.5
16.2
17.4
18.7
20.1
10.1
11.2
12.2
13.3
15.9
17.1
18.4
19.7
10.0
11.0
12.0
13.1
15.7
16.9
18.1
19.4
21
24
22.1
23.6
21.4
22.8
21.1
22.4
20.7
22.1
4.8
5.0
5.3
5.5
5.6
5.8
5.9
6.1
Notes:
1. Net heating capacity and power include indoor fan heat at ARI ESP. To obtain net heating at other conditions, subtract fan heat at this condition and add fan heat at new condition.
2. Integrated heating capacities and power include the effects of defrost in the frost region. All heating capacities and power are at 70 % outdoor relative hum idity and dem and
defrost cycle.
Table PD-5a — Net Heating Capacities (MBH)WSC060AD,T at 2,000 CFM (IP)
Integrated Heating Capacity (MBh)
At Indicated Indoor Dry Bulb Temp (F)
Total Power (kW)
At Indicated Indoor Dry Bulb Temp (F)
Outdoor
Temp (F)
60
70
75
80
60
70
75
80
– 8
– 3
2
15.8
18.3
21.0
23.9
26.8
29.9
33.1
36.5
39.9
43.4
46.8
56.0
60.0
64.1
68.4
72.7
77.3
15.6
18.0
20.6
23.3
26.1
29.1
32.2
35.4
38.8
42.0
45.4
54.2
58.1
62.1
66.3
70.6
75.0
15.4
17.8
20.3
23.0
25.7
28.7
31.7
34.9
38.2
41.4
44.7
53.4
57.3
61.1
65.4
69.6
73.9
15.2
17.6
20.0
22.6
25.4
28.2
31.2
34.4
37.6
40.8
44.1
52.7
56.5
60.3
64.4
68.5
72.7
3.3
3.4
3.5
3.6
3.7
3.8
3.8
3.9
4.0
4.1
4.2
4.3
4.4
4.5
4.6
4.8
5.0
3.7
3.8
3.9
4.0
4.1
4.1
4.2
4.3
4.4
4.5
4.6
4.7
4.8
4.9
5.1
5.3
5.4
4.0
4.0
4.1
4.2
4.3
4.4
4.4
4.5
4.6
4.7
4.8
4.9
5.0
5.2
5.3
5.5
5.7
4.2
4.3
4.4
4.4
4.5
4.6
4.7
4.8
4.9
5.0
5.1
5.2
5.3
5.4
5.6
5.8
6.0
7
12
17
22
27
32
37
42
47
52
57
62
67
72
Notes:
1. Net heating capacity and power include indoor fan heat at ARI ESP. To obtain net heating at other conditions, subtract fan heat at this condition and add fan heat at new condition.
2. Integrated heating capacities and power include the effects of defrost in the frost region. All heating capacities and power are at 70 % outdoor relative hum idity and dem and
defrost cycle.
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Data
Table PD-6 — Three Phase Net Heating Capacities (kW) WSC072AD,T at 4,080 m3/h (SI)
Integrated Heating Capacity (kW)
Total Power (kW)
Outdoor
Temp (C)
At Indicated Indoor Dry Bulb Temp (C)
At Indicated Indoor Dry Bulb Temp (C)
15
21
24
27
15
21
24
27
– 24
– 21
– 18
– 15
– 12
– 9
– 6
– 3
0
3
6.3
7.3
8.3
6.2
7.2
8.1
6.2
7.1
8.1
6.2
7.1
8.0
8.9
9.9
11.0
12.1
13.1
14.3
15.5
16.7
20.0
21.5
23.0
24.6
26.1
27.5
4.5
4.6
4.7
4.7
4.8
4.9
5.0
5.0
5.1
5.2
5.3
5.4
5.5
5.6
5.8
5.9
6.0
4.9
5.0
5.0
5.1
5.2
5.3
5.4
5.5
5.6
5.7
5.8
5.9
6.0
6.1
6.2
6.4
6.5
5.1
5.2
5.2
5.3
5.4
5.5
5.6
5.7
5.8
5.9
6.0
6.1
6.2
6.4
6.5
6.7
6.8
5.3
5.4
5.5
5.6
5.6
5.7
5.8
5.9
6.0
6.2
6.3
6.4
6.5
6.7
6.8
7.0
7.1
9.3
9.1
9.0
10.4
11.5
12.6
13.8
15.0
16.3
17.6
21.0
22.6
24.2
25.8
27.5
29.2
10.2
11.2
12.3
13.5
14.7
15.9
17.2
20.5
22.0
23.6
25.2
26.8
28.2
10.1
11.1
12.2
13.3
14.5
15.7
16.9
20.3
21.8
23.3
24.9
26.5
27.9
6
9
12
15
18
21
24
Notes:
1. Net heating capacity and power include indoor fan heat at ARI ESP. To obtain net heating at other conditions, subtract fan heat at this condition and add fan heat at new condition.
2. Integrated heating capacities and power include the effects of defrost in the frost region. All heating capacities and power are at 70 % outdoor relative hum idity and dem and
defrost cycle.
Table PD-6a — Three Phase Net Heating Capacities (MBH) WSC072AD,T at 2,400 CFM (IP)
Integrated Heating Capacity (MBh)
At Indicated Indoor Dry Bulb Temp (F)
Total Power (kW)
At Indicated Indoor Dry Bulb Temp (F)
Outdoor
Temp (F)
60
70
75
80
60
70
75
80
– 8
– 3
2
23.4
26.6
29.8
33.1
36.5
40.1
43.5
47.2
51.1
55.1
59.1
70.4
75.3
80.3
85.4
90.6
95.9
23.2
26.2
29.2
32.5
35.8
39.2
42.6
46.2
50.0
53.9
57.9
68.9
73.6
78.5
83.5
88.6
93.8
23.0
26.0
29.0
32.1
35.4
38.8
42.1
45.7
49.5
53.3
57.2
68.1
72.8
77.6
82.6
87.6
92.7
22.9
25.8
28.7
31.8
35.0
38.4
41.8
45.2
48.9
52.7
56.6
67.3
71.9
76.7
81.6
86.5
91.5
4.6
4.7
4.7
4.8
4.9
4.9
5.0
5.1
5.2
5.3
5.3
5.4
5.5
5.6
5.7
5.9
6.0
4.9
5.0
5.1
5.2
5.2
5.3
5.4
5.5
5.6
5.7
5.8
5.9
6.0
6.1
6.2
6.3
6.5
5.1
5.2
5.3
5.4
5.4
5.5
5.6
5.7
5.8
5.9
6.0
6.1
6.2
6.3
6.4
6.6
6.7
5.3
5.4
5.5
5.6
5.6
5.7
5.8
5.9
6.0
6.1
6.2
6.3
6.5
6.6
6.7
6.9
7.0
7
12
17
22
27
32
37
42
47
52
57
62
67
72
Notes:
1. Net heating capacity and power include indoor fan heat at ARI ESP. To obtain net heating at other conditions, subtract fan heat at this condition and add fan heat at new condition.
2. Integrated heating capacities and power include the effects of defrost in the frost region. All heating capacities and power are at 70 % outdoor relative hum idity and dem and
defrost cycle.
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Data
Table PD-7 — Three Phase Net Heating Capacities (kW)WSC090AD,T at 5,100 m3/h (SI)
Integrated Heating Capacity (kW)
Total Power (kW)
Outdoor
Temp (C)
At Indicated Indoor Dry Bulb Temp (C)
At Indicated Indoor Dry Bulb Temp (C)
15
21
24
27
15
21
24
27
– 24
– 21
– 18
– 15
– 12
– 9
– 6
– 3
0
3
4.0
6.5
8.4
9.9
7.3
8.6
9.8
8.2
9.2
8.7
9.6
4.8
5.1
5.2
5.4
5.5
5.6
5.8
5.9
6.0
6.1
6.2
6.3
6.4
6.5
6.6
6.7
6.9
5.8
5.9
6.0
6.1
6.2
6.3
6.4
6.5
6.6
6.7
6.8
6.9
7.0
7.1
7.2
7.4
7.6
6.2
6.3
6.4
6.5
6.6
6.6
6.7
6.8
6.9
7.0
7.1
7.2
7.3
7.5
7.6
7.8
7.9
6.7
6.7
6.8
6.9
6.9
7.0
7.1
7.2
7.3
7.4
7.5
7.6
7.7
7.9
8.0
8.2
8.4
10.3
11.3
12.5
13.7
14.9
16.2
17.6
19.0
20.5
24.4
26.2
28.0
29.8
31.3
33.3
10.5
11.5
12.6
13.7
14.9
16.2
17.5
18.9
20.3
24.2
25.9
27.7
29.5
30.9
32.8
11.0
12.2
13.5
14.9
16.3
17.7
19.2
20.7
24.7
26.5
28.3
30.2
31.7
33.7
11.5
13.0
14.6
16.2
17.8
19.4
21.0
25.1
27.0
29.0
31.0
32.7
34.7
6
9
12
15
18
21
24
Notes:
1. Net heating capacity and power include indoor fan heat at ARI ESP. To obtain net heating at other conditions, subtract fan heat at this condition and add fan heat at new condition.
2. Integrated heating capacities and power include the effects of defrost in the frost region. All heating capacities and power are at 70 % outdoor relative hum idity and dem and
defrost cycle.
Table PD-7a — Three Phase Net Heating Capacities (MBH) WSC090AD,T at 3,000 CFM (IP)
Integrated Heating Capacity (MBh)
At Indicated Indoor Dry Bulb Temp (F)
Total Power (kW)
At Indicated Indoor Dry Bulb Temp (F)
Outdoor
Temp (F)
60
70
75
80
60
70
75
80
– 8
– 3
2
20.2
26.3
31.6
36.2
40.9
45.8
50.7
55.7
60.7
65.7
70.7
84.2
90.2
96.2
102.4
108.6
114.0
27.7
31.7
35.4
39.2
43.1
47.2
51.5
55.9
60.5
65.1
69.7
82.8
88.4
94.2
100.0
104.9
111.0
30.0
33.4
36.6
40.0
43.7
47.5
51.6
55.8
60.2
64.6
69.2
82.1
87.5
93.2
99.0
103.7
109.6
31.5
34.3
37.3
40.5
44.0
47.6
51.5
55.5
59.8
64.1
68.5
81.3
86.7
92.3
97.9
102.5
108.3
5.0
5.2
5.4
5.5
5.6
5.7
5.8
5.9
6.0
6.1
6.2
6.3
6.4
6.5
6.6
6.7
6.8
5.9
6.0
6.1
6.2
6.2
6.3
6.4
6.5
6.6
6.7
6.8
6.9
7.0
7.1
7.2
7.3
7.5
6.3
6.3
6.4
6.5
6.6
6.6
6.7
6.8
6.9
7.0
7.1
7.2
7.3
7.4
7.5
7.7
7.8
6.7
6.7
6.8
6.8
6.9
7.0
7.1
7.1
7.2
7.3
7.4
7.5
7.7
7.8
7.9
8.0
8.2
7
12
17
22
27
32
37
42
47
52
57
62
67
72
Notes:
1. Net heating capacity and power include indoor fan heat at ARI ESP. To obtain net heating at other conditions, subtract fan heat at this condition and add fan heat at new condition.
2. Integrated heating capacities and power include the effects of defrost in the frost region. All heating capacities and power are at 70 % outdoor relative hum idity and dem and
defrost cycle.
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Data
Table PD-8 — Three Phase Net Heating Capacities (kW) WSC120AD,T at 6,800 m3/h (SI)
Integrated Heating Capacity (kW)
Total Power (kW)
Outdoor
Temp (C)
At Indicated Indoor Dry Bulb Temp (C)
At Indicated Indoor Dry Bulb Temp (C)
15
21
24
27
15
21
24
27
–– 24
– 21
– 18
– 15
– 12
– 9
– 6
– 3
0
3
6
9
12
15
18
21
24
11.8
12.8
14.0
15.3
16.8
18.3
20.1
21.9
23.9
25.8
27.9
33.3
35.8
38.4
40.9
43.7
46.6
11.6
12.7
13.9
15.2
16.7
18.2
19.9
21.7
23.6
25.5
27.4
32.7
35.1
37.5
40.0
42.7
45.5
11.6
12.7
13.9
15.2
16.6
18.2
19.8
21.6
23.4
25.3
27.2
32.4
34.8
37.1
39.6
42.1
44.9
11.6
12.8
13.9
15.2
16.6
18.1
19.7
21.4
23.3
25.1
27.0
32.1
34.4
36.7
39.1
41.6
44.3
7.2
7.3
7.4
7.5
7.6
7.7
7.9
8.0
8.2
8.3
8.5
8.7
8.9
9.1
9.3
9.5
9.9
8.0
8.1
8.2
8.3
8.4
8.6
8.7
8.9
9.0
9.2
9.3
9.5
9.7
10.0
10.2
10.5
10.8
8.5
8.6
8.7
8.8
8.9
9.0
9.2
9.3
9.5
9.0
9.1
9.2
9.3
9.4
9.5
9.7
9.8
10.0
10.2
10.3
10.5
10.8
11.0
11.3
11.6
11.9
9.7
9.8
10.0
10.2
10.5
10.7
11.0
11.4
Notes:
1. Net heating capacity and power include indoor fan heat at ARI ESP. To obtain net heating at other conditions, subtract fan heat at this condition and add fan heat at new condition.
2. Integrated heating capacities and power include the effects of defrost in the frost region. All heating capacities and power are at 70 % outdoor relative hum idity and dem and
defrost cycle.
Table PD-8a — Three Phase Net Heating Capacities (MBH) WSC120AD,T at 4,000 CFM (IP)
Integrated Heating Capacity (MBh)
At Indicated Indoor Dry Bulb Temp (F)
Total Power (kW)
At Indicated Indoor Dry Bulb Temp (F)
Outdoor
Temp (F)
60
70
75
80
60
70
75
80
– 8
– 3
2
42.1
45.7
49.7
54.0
58.7
63.8
69.3
75.1
81.3
41.9
45.5
49.5
53.8
58.4
63.4
68.7
74.4
80.4
41.8
45.5
49.5
53.7
58.3
63.2
68.5
74.0
79.9
41.9
45.6
49.5
53.7
58.2
63.0
68.2
73.7
79.5
7.3
7.4
7.5
7.6
7.7
7.8
8.0
8.1
8.2
8.4
8.5
8.7
8.9
9.1
9.3
9.5
9.8
8.1
8.2
8.3
8.4
8.5
8.6
8.7
8.9
9.0
9.2
9.3
9.5
9.7
9.9
10.1
10.3
10.6
8.5
8.6
8.7
8.8
8.9
9.1
9.2
9.3
9.5
9.0
9.1
9.2
9.3
9.4
9.5
9.6
9.8
9.9
10.1
10.3
10.4
10.6
10.8
11.1
11.3
11.6
7
12
17
22
27
32
37
42
47
52
57
62
67
72
Notes:
87.5
93.9
86.4
92.5
85.8
91.8
85.2
91.1
9.6
9.8
111.7
119.4
127.4
135.5
143.6
152.8
109.9
117.3
124.9
132.7
140.5
149.4
109.0
116.3
123.8
131.4
139.0
147.7
108.1
115.2
122.6
130.0
137.4
146.0
10.0
10.2
10.4
10.6
10.8
11.1
1. Net heating capacity and power include indoor fan heat at ARI ESP. To obtain net heating at other conditions, subtract fan heat at this condition and add fan heat at new condition.
2. Integrated heating capacities and power include the effects of defrost in the frost region. All heating capacities and power are at 70 % outdoor relative hum idity and dem and
defrost cycle.
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Data
Table PD-9 — Belt Drive Evaporator Fan Performance WSC060AD,T Downflow Configuration (SI)
External Static Pressure (Pascals)
25
50
75
100
RPM
1.12 Nom kW Standard Motor & Low Static Drive
125
150
RPM
175
RPM
200
RPM
225
250
m3/h
RPM
kW
RPM
kW
RPM
kW
kW
RPM
kW
kW
kW
kW
RPM kW
RPM kW
1.12 Nom kW Standard Motor & Drive
0.47 975 0.53 1014 0.58 1050 0.63
0.57 1016 0.62 1056 0.68 1093 0.74
2720
3060
3400
3740
4080
—
—
690
746
806
869
933
0.26
0.34
0.45
0.58
0.74
746
802
856
913
972
0.30
0.39
0.50
0.63
0.78
795
848
904
959
0.34
0.44
0.55
0.68
843
892
945
1001 0.74
1056 0.90
0.38
0.48
0.60
889
935
985
0.42
0.52
0.65
933
976
693
758
824
890
0.31
0.41
0.54
0.69
1023 0.70 1061 0.75 1098 0.80 1135 0.86
1074 0.85 1109 0.90 1143 0.96 1177 1.01
1128 1.03 1160 1.09 1193 1.15 1225 1.20
1038 0.80
1094 0.97
1014 0.84
External Static Pressure (Pascals)
300 325
RPM RPM
1.12 Nom kW Standard Motor & Drive
275
RPM
350
RPM
375
m3/h
kW
kW
kW
kW
RPM
kW
2720
3060
3400
1085 0.68
1128 0.80
1170 0.93
1118 0.72
1160 0.86
1203 1.00
1151 0.78
1192 0.91
1235 1.06
1183 0.83
1223 0.97
1265 1.12
1214 0.88
1252 1.02
1295 1.19
1.12 Nom kW Standard Motor &
Hi Static Drive
3740
4080
1212 1.07
1256 1.26
1244 1.14
1287 1.32
1276 1.21
1308 1.29
—
—
—
—
—
—
—
—
Factory Supplied Motors, In Com m ercial Equipm ent, Are
Definite Purpose Motors, Specifically Designed And Tested To
Operate Reliably And Continuously At All Cataloged Conditions.
Using The Full Horsepower Range Of Our Fan Motors As Shown
In Our Tabular Data Will Not Result In Nuisance Tripping Or
Prem ature Motor Failure. Our Product’s Warranty Will Not Be
Affected.
Notes:
Data Includes Pressure Drop Due To Wet Coils And Filters.
1.12 kW - Fan Motor Heat (kW) = 1.144 x Fan kW + 0.132
Table PD-9a — Belt Drive Evaporator Fan Performance WSC060AD,T Downflow Configuration (IP)
External Static Pressure (Inches of Water)
0.10
0.20
0.30
0.40
0.50
0.60
0.70
0.80
0.90
1.00
CFM
RPM BHP
RPM BHP
RPM BHP
RPM BHP
RPM BHP
RPM BHP
RPM BHP RPM BHP RPM BHP RPM BHP
1– 1/ 2 HP Standard Motor & Low Static Drive
1– 1/ 2 HP Standard Motor & Drive
1600
1800
2000
2200
2400
—
—
690
746
806
869
933
0.35
0.46
0.60
0.78
0.99
746
802
856
913
972
0.40
0.52
0.67
0.84
1.05
795
848
904
959
0.46
0.59
0.74
0.92
843
892
945
1001 1.00
1056 1.21
0.51
0.65
0.81
889
935
985
1038 1.07
1094 1.30
0.57
0.70
0.87
933
976
0.64
975
0.71 1014 0.78 1050 0.84
693
758
824
890
0.41
0.56
0.73
0.93
0.76 1016 0.84 1056 0.92 1093 1.00
1023 0.94 1061 1.00 1098 1.07 1135 1.16
1074 1.15 1109 1.21 1143 1.28 1177 1.35
1128 1.38 1160 1.46 1193 1.54 1225 1.61
1014 1.12
1-1/ 2 HP Standard Motor & Static Drive
External Static Pressure (Inches of Water)
1.10
1.20
1.30
1.40
1.50
CFM
RPM BHP
RPM BHP
RPM BHP
RPM BHP
RPM BHP
1– 1/2 HP Standard Motor & Drive
1600
1800
2000
2200
2400
1085 0.91
1128 1.08
1170 1.25
1212 1.44
1256 1.69
1118 0.97
1160 1.15
1203 1.34
1244 1.53
1287 1.77
1151 1.04
1192 1.22
1235 1.43
1276 1.63
1183 1.11
1223 1.29
1265 1.51
1308 1.73
1214 1.18
1252 1.37
1295 1.59
1– 1/2 HP Standard Motor &
Hi Static Drive
—
—
—
—
—
—
—
—
Factory Supplied Motors, In Com m ercial Equipm ent,
Notes:
Data Includes Pressure Drop Due To Wet Coils And Filters.
1 1/2 HP - Fan Motor Heat (MBH) = 2.915 x Fan BHP + 0.451
Are Definite Purpose Motors, Specifically Designed And Tested To
Operate Reliably And Continuously At All Cataloged Conditions.
Using The Full Horsepower Range Of Our Fan Motors As Shown In
Our Tabular Data Will Not Result In Nuisance Tripping Or Prem ature
Motor Failure. Our Product’s Warranty Will Not Be Affected.
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Data
Table PD-10 — Belt Drive Evaporator Fan Performance WSC060AD,T Horizontal Configuration (SI)
External Static Pressure (Pascals)
25
50
75
100
RPM
1.12 Nom kW Standard Motor & Low Static Drive
125
RPM
150
RPM
175
RPM
200
RPM
225
RPM kW
250
RPM kW
m3/h
RPM
kW
RPM
kW
RPM
kW
kW
kW
kW
kW
kW
1.12 Nom kW Standard Motor & Drive
2720
3060
3400
3740
4080
692
761
831
901
0.25
0.35
0.46
0.60
761
825
891
958
0.30
0.40
0.52
0.67
823
882
945
1009 0.73
1075 0.91
0.36
0.46
0.58
884
937
995
1057 0.80
1120 0.98
0.41
0.52
0.65
941
992
1045 0.72
1101 0.88
1163 1.06
0.47
0.58
990
0.52
1034 0.58 1077 0.64 1119 0.70 1158 0.75
1088 0.71 1130 0.77 1169 0.83 1207 0.90
1141 0.86 1185 0.93 1224 1.00 1260 1.07
1192 1.03 1235 1.11 1277 1.18 1314 1.26
1043 0.65
1094 0.79
1146 0.95
1204 1.14
972.8 0.76
1026 0.84
1245 1.23
—
—
—
—
—
—
1.12 Nom kW Standard Motor &
Hi Static Drive
External Static Pressure (Pascals)
300 325
RPM RPM
275
RPM
350
RPM
375
RPM
m 3/h
kW
kW
kW
kW
kW
1.12 Nom kW Standard Motor
& Drive
1.12 Nom kW Standard Motor &
Hi Static Drive
2720
3060
3400
3740
4080
1196 0.82
1244 0.96
1295 1.14
1231 0.88
1280 1.03
1330 1.21
1265 0.94
1314 1.10
1363 1.28
—
—
1298 1.00
1346 1.16
1330 1.07
1380 1.24
—
—
—
—
—
—
—
—
—
—
—
—
—
—
—
—
—
—
—
—
—
—
Factory Supplied Motors, In Com m ercial Equipm ent, Are Definite Purpose
Motors, Specifically Designed And Tested To Operate Reliably And
Continuously At All Cataloged Conditions. Using The Full Horsepower
Range Of Our Fan Motors As Shown In Our Tabular Data Will Not Result In
Nuisance Tripping Or Prem ature Motor Failure. Our Product’s Warranty
Will Not Be Affected.
Notes:
Data Includes Pressure Drop Due To Wet Coils And Filters.
1.12 kW - Fan Motor Heat (kW) = 1.144 x Fan kW + 0.132
Table PD-10a — Belt Drive Evaporator Fan Performance WSC060AD,T Horizontal Configuration (IP)
External Static Pressure (Inches of Water)
0.10
0.20
0.30
0.40
0.50
0.60
0.70
0.80
0.90
1.00
CFM
RPM BHP
RPM BHP
RPM BHP
RPM BHP
RPM BHP
RPM BHP
RPM BHP RPM BHP RPM BHP RPM BHP
1-1/ 2 HP Standard Motor & Low Static Drive
1-1/ 2 HP Standard Motor & Drive
1600
1800
2000
2200
2400
692
761
831
901
0.34
0.47
0.62
0.80
761
825
891
958
0.41
0.54
0.70
0.90
823
882
945
1009 0.98
1075 1.22
0.48
0.62
0.78
884
937
995
1057 1.08
1120 1.32
0.55
0.70
0.87
941
992
1045 0.97
1101 1.18
1163 1.42
0.63
0.78
990
0.70
1034 0.78 1077 0.85 1119 0.93 1158 1.01
1088 0.95 1130 1.03 1169 1.12 1207 1.21
1141 1.15 1185 1.25 1224 1.34 1260 1.43
1192 1.38 1235 1.49 1277 1.59 1314 1.69
1043 0.87
1094 1.06
1146 1.28
1204 1.53
972.8 1.02
1026 1.13
1245 1.65
—
—
—
—
—
—
1-1/ 2 HP Standard Motor & Hi Static Drive
1-1/ 2 HP Standard Motor & Drive
External Static Pressure (Inches of Water)
1.10
1.20
1.30
1.40
1.50
CFM
RPM BHP
RPM BHP
RPM BHP
RPM BHP
RPM BHP
1-1/2 HP Std Motor & Drive
1-1/2 HP Standard Motor & Hi Static Drive
1600
1196 1.09
1244 1.29
1295 1.52
1231 1.17
1280 1.38
1330 1.62
1265 1.26
1314 1.47
1363 1.72
1298 1.35
1346 1.56
1330 1.44
1380 1.66
1800
2000
2200
2400
—
—
—
—
—
—
—
—
—
—
—
—
—
—
—
—
—
—
—
—
—
—
—
—
Factory Supplied Motors, In Com m ercial Equipm ent,
Notes:
Are Definite Purpose Motors, Specifically Designed And Tested To
Operate Reliably And Continuously At All Cataloged Conditions.
Using The Full Horsepower Range Of Our Fan Motors As Shown In
Our Tabular Data Will Not Result In Nuisance Tripping Or Prem ature
Motor Failure. Our Product’s Warranty Will Not Be Affected.
Data Includes Pressure Drop Due To Wet Coils And Filters.
1 1/2 HP - Fan Motor Heat (MBH) = 2.915 x Fan BHP + 0.451
PKGP-PRC004-EN
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Perform ance
Data
Table PD-11 — Belt Drive Evaporator Fan Performance WSC072AD,T Downflow Configuration (SI)
External Static Pressure (Pascals)
25
50
75
100
RPM
1.12 Nom kW Standard Motor & Low Static Drive
125
RPM
150
RPM
175
RPM
200
RPM
225
RPM kW
250
RPM kW
m3/h
RPM
kW
RPM
kW
RPM
kW
kW
kW
kW
kW
kW
1.12 Nom kW Standard Motor & Drive
3260
3670
4080
4490
4890
—
—
565
610
657
—
—
0.31
0.40
0.51
541
579
620
662
705
0.22
0.29
0.37
0.47
0.58
603
635
670
709
749
0.28
0.35
0.43
0.53
0.64
657
688
720
753
791
0.33
0.41
0.50
0.60
0.72
705
736
768
799
832
0.38
0.47
0.56
0.67
0.79
751
779
810
843
874
0.44
0.53
0.63
0.75
0.88
794
821
850
882
914
0.50
0.59
0.70
0.82
0.96
835
860
888
919
950
0.56
0.65
0.76
0.89
1.04
874 0.62
898 0.72
925 0.83
954 0.97
912 0.68
936 0.79
961 0.91
987 1.04
985 1.12 1018 1.20
1.12 Nom kW Standard Motor
& Hi Static Drive
External Static Pressure (Pascals)
300 325
RPM RPM
275
RPM
350
RPM
375
RPM
m 3/h
kW
kW
kW
kW
kW
1.12 Nom kW Standard Motor
& Drive
1.12 Nom kW Standard Motor &
Hi Static Drive
3260
3670
4080
4490
4890
948
971
995
0.75
0.86
0.98
982
0.81
1015 0.87
1037 1.00
1060 1.13
1085 1.28
1112 1.44
1047 0.93
1069 1.07
1091 1.21
1115 1.36
1140 1.53
1079 0.99
1099 1.14
1121 1.29
1145 1.45
1170 1.62
1004 0.93
1027 1.06
1053 1.20
1081 1.36
1021 1.12
1050 1.28
1.50 Nom kW Over-Sized Motor
& Hi Static Drive
Notes:
Factory Supplied Motors, In Com m ercial Equipm ent, Are
Definite Purpose Motors, Specifically Designed And Tested To
Operate Reliably And Continuously At All Cataloged Conditions.
Using The Full Horsepower Range Of Our Fan Motors As Shown
In Our Tabular Data Will Not Result In Nuisance Tripping Or
Prem ature Motor Failure. Our Product’s Warranty Will Not Be
Affected.
Data Includes Pressure Drop Due To Wet Coils And Filters.
1.12 kW - Fan Motor Heat (kW) = 1.144 x Fan kW + 0.132
1.50 kW - Fan Motor Heat (kW) = 1.178 x Fan kW + 0.464
Table PD-11a — Belt Drive Evaporator Fan Performance WSC072AD,T Downflow Configuration (IP)
External Static Pressure (Inches of Water)
0.10
0.20
0.30
0.40
0.50
0.60
0.70
0.80
0.90
1.00
CFM
RPM BHP
RPM BHP
RPM BHP
RPM BHP
RPM BHP
RPM BHP
RPM BHP RPM BHP RPM BHP RPM BHP
1-1/ 2 HP Standard Motor & Low Static Drive
1-1/ 2 HP Standard Motor & Drive
1920
2160
2400
2640
2880
—
—
565
610
657
—
—
0.42
0.54
0.68
541
579
620
662
705
0.30
0.39
0.49
0.62
0.78
603
635
670
709
749
0.37
0.46
0.57
0.71
0.86
657
688
720
753
791
0.44
0.55
0.66
0.80
0.96
705
736
768
799
832
0.51
0.63
0.76
0.90
1.06
751
779
810
843
874
0.59
0.71
0.84
1.00
1.17
794
821
850
882
914
0.67
0.79
0.93
1.10
1.28
835
860
888
919
950
0.75
0.88
1.02
1.20
1.39
874 0.83
898 0.97
925 1.12
954 1.29
912 0.92
936 1.06
961 1.22
987 1.39
985 1.50 1018 1.60
External Static Pressure (Inches of Water)
1-1/ 2 HP Standard Motor &
Hi Static Drive
1.10
RPM BHP
1.20
1.30
1.40
RPM BHP
1.50
CFM
RPM BHP
RPM BHP
RPM BHP
1-1/2 HP Std Motor
& Hi Static Drive
1-1/2 HP Standard Motor
& Hi Static Drive
1920
2160
2400
2640
2880
948
971
995
1.00
1.15
1.32
982
1.08
1015 1.16
1037 1.34
1060 1.52
1085 1.72
1112 1.94
1047 1.25
1069 1.43
1091 1.62
1115 1.83
1140 2.05
1079 1.33
1099 1.52
1121 1.73
1145 1.94
1170 2.17
1004 1.25
1027 1.42
1053 1.60
1081 1.82
1021 1.50
1050 1.71
2 HP Over-Sized Motor & Hi Static Drive
Notes:
Factory Supplied Motors, In Com m ercial Equipm ent,
Data Includes Pressure Drop Due To Wet Coils And Filters.
1 1/2 HP - Fan Motor Heat (MBH) = 2.915 x Fan BHP + 0.451
2 HP – Fan Motor Heat (MBH) = 3.000 x Fan BHP + 0.500
Are Definite Purpose Motors, Specifically Designed And Tested To
Operate Reliably And Continuously At All Cataloged Conditions.
Using The Full Horsepower Range Of Our Fan Motors As Shown In
Our Tabular Data Will Not Result In Nuisance Tripping Or Prem ature
Motor Failure. Our Product’s Warranty Will Not Be Affected.
PKGP-PRC004-EN
24
Download from Www.Somanuals.com. All Manuals Search And Download.
Perform ance
Data
Table PD-12 — Belt Drive Evaporator Fan Performance WSC072AD,T Horizontal Configuration (SI)
External Static Pressure (Pascals)
25
50
75
100
RPM
1.12 Nom kW Standard Motor & Low Static Drive
125
RPM
150
RPM
1.12 Nom kW Standard Motor & Drive
175
RPM
200
RPM
225
RPM kW
250
RPM kW
m3/h
RPM
kW
RPM
kW
RPM
kW
kW
kW
kW
kW
kW
3260
3670
4080
4490
4890
535
590
647
703
761
0.21
0.29
0.38
0.50
0.64
595
638
686
740
795
0.26
0.34
0.43
0.55
0.70
654
695
737
781
828
0.32
0.40
0.49
0.61
0.76
703
745
787
828
871
0.36
0.46
0.57
0.68
0.83
750
789
831
872
913
0.42
0.51
0.64
0.77
0.91
794
830
870
911
953
0.48
0.58
0.70
0.84
1.00
838
871
908
948
990
0.55
0.65
0.76
0.91
882
910
944
983
0.61
0.72
0.84
923 0.67
950 0.79
980 0.92 1015 0.99
963 0.73
987 0.86
0.98 1016 1.06 1049 1.14
1.08 1023 1.15 1055 1.23 1086 1.31
1.12 Nom kW Standard Motor & Drive
1.12 Nom kW Standard Motor &
Hi Static Drive
External Static Pressure (Pascals)
300 325
RPM RPM
1.12 Nom kW Standard Motor & Hi Static Drive
275
RPM
350
RPM
375
RPM kW
m 3/h
kW
kW
kW
kW
3260
3670
4080
4490
4890
1002 0.80
1025 0.93
1051 1.07
1081 1.23
1117 1.40
1038 0.87
1060 1.00
1085 1.15
1113 1.31
1147 1.49
1073 0.94
1096 1.07
1118 1.23
1146 1.40
1178 1.59
1107 1.01
1129 1.15
1152 1.31
1178 1.49
1206 1.68
1140 1.09
1162 1.23
1185 1.39
1208 1.57
1236 1.77
1.50 Nom kW Over-Sized Motor & Hi Static Drive
Notes:
Factory Supplied Motors, In Com m ercial Equipm ent, Are Definite
Purpose Motors, Specifically Designed And Tested To Operate
Reliably And Continuously At All Cataloged Conditions. Using The Full
Horsepower Range Of Our Fan Motors As Shown In Our Tabular Data
Will Not Result In Nuisance Tripping Or Prem ature Motor Failure. Our
Product’s Warranty Will Not Be Affected.
Data Includes Pressure Drop Due To Wet Coils And Filters.
1.12 kW - Fan Motor Heat (kW) = 1.144 x Fan kW + 0.132
1.50 kW - Fan Motor Heat (kW) = 1.178 x Fan kW + 0.464
Table PD-12a — Belt Drive Evaporator Fan Performance WSC072AD,T Horizontal Configuration (IP)
External Static Pressure (Inches of Water)
0.10
0.20
0.30
0.40
0.50
0.60
0.70
0.80
0.90
1.00
CFM
RPM BHP
RPM BHP
RPM BHP
RPM BHP
RPM BHP
RPM BHP
RPM BHP RPM BHP RPM BHP RPM BHP
1-1/ 2 HP Standard Motor & Low Static Drive
1-1/ 2 HP Standard Motor & Drive
1920
2160
2400
2640
2880
535
590
647
703
761
0.28
0.39
0.51
0.67
0.85
595
638
686
740
795
0.34
0.45
0.58
0.74
0.94
654
695
737
781
828
0.42
0.53
0.66
0.82
1.02
703
745
787
828
871
0.49
0.62
0.76
0.92
1.11
750
789
831
872
913
0.56
0.69
0.85
1.03
1.22
794
830
870
911
953
0.65
0.77
0.93
1.13
1.34
838
871
908
948
990
0.73
0.87
1.02
1.22
882
910
944
983
0.82
0.96
1.12
923 0.90
950 1.06
980 1.23 1015 1.33
963 0.99
987 1.15
1.31 1016 1.42 1049 1.53
1.45 1023 1.55 1055 1.65 1086 1.75
1-1/ 2 HP Standard Motor & Drive
1-1/ 2 HP Std Motor & Hi Static Drive
External Static Pressure (Inches of Water)
1.10
1.20
1.30
1.40
1.50
CFM
RPM BHP
RPM BHP
RPM BHP
RPM BHP
RPM BHP
1-1/2 HP Standard Motor & Hi Static Drive
1920
2160
2400
2640
2880
1002 1.08
1025 1.25
1051 1.44
1081 1.65
1117 1.88
1038 1.17
1060 1.34
1085 1.54
1113 1.76
1147 2.00
1073 1.27
1096 1.44
1118 1.64
1146 1.88
1178 2.13
1107 1.36
1129 1.54
1152 1.75
1178 1.99
1206 2.25
1140 1.46
1162 1.65
1185 1.86
1208 2.10
1236 2.38
2 HP Over-Sized Motor & Hi Static Drive
Notes:
Factory Supplied Motors, In Com m ercial Equipm ent, Are Definite Purpose
Motors, Specifically Designed And Tested To Operate Reliably And
Continuously At All Cataloged Conditions. Using The Full Horsepower Range
Of Our Fan Motors As Shown In Our Tabular Data Will Not Result In
Nuisance Tripping Or Prem ature Motor Failure. Our Product’s Warranty Will
Not Be Affected.
Data Includes Pressure Drop Due To Wet Coils And Filters.
1 1/2 HP - Fan Motor Heat (MBH) = 2.915 x Fan BHP + 0.451
2 HP – Fan Motor Heat (MBH) = 3.000 x Fan BHP + 0.500
PKGP-PRC004-EN
25
Download from Www.Somanuals.com. All Manuals Search And Download.
Perform ance
Data
Table PD-13 — Belt Drive Evaporator Fan Performance WSC090AD,T Downflow Configuration (SI)
External Static Pressure (Pascals)
25
50
75
100
RPM
1.50 Nom kW Standard Motor & Low Static Drive
125
RPM
150
RPM
1.50 Nom kW Standard Motor & Drive
175
RPM
200
RPM
225
RPM kW
250
RPM kW
m3/h
RPM
kW
RPM
kW
RPM
kW
kW
kW
kW
kW
kW
4080
4590
5100
5610
6120
—
—
680
739
798
—
—
0.57
0.73
0.94
—
—
670
719
770
823
876
0.43
0.55
0.71
0.90
1.12
720
763
810
861
913
0.50
0.63
0.78
0.97
1.20
768
807
849
897
947
0.56
0.70
0.86
1.05
1.28
810
850
890
933
980
0.63
0.78
0.95
1.12
1.37
850
889
929
969
0.70
0.85
1.03
888
926
967
0.76
0.93
925 0.83
961 1.00
961 0.91
995 1.08
673
727
782
838
0.49
0.65
0.83
1.04
1.12 1000 1.20 1034 1.28
1.23 1006 1.33 1041 1.42 1074 1.52
1013 1.47 1047 1.57 1080 1.67 1113 1.77
1.50 Nom kW Standard Motor
& Hi Static Drive
External Static Pressure (Pascals)
300 325
RPM RPM
275
RPM
350
RPM
375
RPM
m 3/h
kW
kW
kW
kW
kW
1.50 Nom kW Std Motor
& Drive
1.50 Nom kW Standard Motor &
Hi Static Drive
4080
4590
5100
5610
6120
995
0.98
1027 1.06
1059 1.23
1095 1.45
1134 1.70
1173 1.98
1060 1.13
1091 1.32
1125 1.53
1163 1.79
1202 2.08
1091 1.21
1121 1.40
1154 1.62
1191 1.88
1229 2.17
1121 1.29
1151 1.49
1183 1.71
1217 1.97
1256 2.27
1027 1.15
1065 1.36
1104 1.60
1144 1.88
2.24 Nom kW Over-Sized Motor & Hi Static Drive
Notes:
Factory Supplied Motors, In Com m ercial Equipm ent, Are Definite
Purpose Motors, Specifically Designed And Tested To Operate
Reliably And Continuously At All Cataloged Conditions. Using The
Full Horsepower Range Of Our Fan Motors As Shown In Our Tabular
Data Will Not Result In Nuisance Tripping Or Prem ature Motor
Failure. Our Product’s Warranty Will Not Be Affected.
Data Includes Pressure Drop Due To Wet Coils And Filters.
1.50 kW - Fan Motor Heat (kW) = 1.178 x Fan kW + 0.464
2.24 kW - Fan Motor Heat (kW) = 1.138 x Fan kW + 0.139
Table PD-13a — Belt Drive Evaporator Fan Performance WSC090AD,T Downflow Configuration (IP)
External Static Pressure (Inches of Water)
0.10
0.20
0.30
0.40
0.50
0.60
0.70
0.80
0.90
1.00
CFM
RPM BHP
RPM BHP
RPM BHP
RPM BHP
RPM BHP
RPM BHP
RPM BHP RPM BHP RPM BHP RPM BHP
2 HP Standard Motor & Low Static Drive
2 HP Standard Motor & Drive
2400
2700
3000
3300
3600
—
—
680
739
798
—
—
0.76
0.98
1.25
—
—
670
719
770
823
876
0.57
0.74
0.95
1.21
1.50
720
763
810
861
913
0.66
0.84
1.05
1.30
1.61
768
807
849
897
947
0.76
0.94
1.16
1.41
1.72
810
850
890
933
980
0.84
1.04
1.27
1.50
1.84
850
889
929
969
0.93
1.14
1.38
888
926
967
1.02
1.24
925 1.12
961 1.34
961 1.22
995 1.44
673
727
782
838
0.66
0.87
1.11
1.39
1.50 1000 1.61 1034 1.72
1.66 1006 1.78 1041 1.91 1074 2.03
1013 1.97 1047 2.11 1080 2.24 1113 2.38
External Static Pressure (Inches of Water)
2 HP Standard Motor &
Hi Static Drive
1.10
RPM BHP
1.20
1.30
1.40
RPM BHP
1.50
RPM BHP
CFM
RPM BHP
RPM BHP
2 HP Standard Motor
& Drive
2 HP Standard Motor &
Hi Static Drive
2400
2700
3000
3300
3600
995
1.32
1027 1.42
1059 1.65
1095 1.94
1134 2.27
1173 2.65
1060 1.52
1091 1.77
1125 2.05
1163 2.40
1202 2.78
1091 1.62
1121 1.88
1154 2.17
1191 2.52
1229 2.91
1121 1.73
1027 1.55
1065 1.83
1104 2.15
1144 2.52
1151 2.00
1183 2.30
1217 2.64
1256 3.05
3 HP Over-Sized Motor & Hi Static Drive
Notes:
Factory Supplied Motors, In Com m ercial Equipm ent,
Data Includes Pressure Drop Due To Wet Coils And Filters
2 HP - Fan Motor Heat (MBH) = 3.000 x Fan BHP + 0.500
3 HP - Fan Motor Heat (MBH) = 2.900 x Fan BHP + 0.475
Are Definite Purpose Motors, Specifically Designed And Tested To
Operate Reliably And Continuously At All Cataloged Conditions.
Using The Full Horsepower Range Of Our Fan Motors As Shown In
Our Tabular Data Will Not Result In Nuisance Tripping Or Prem ature
Motor Failure. Our Product’s Warranty Will Not Be Affected.
PKGP-PRC004-EN
26
Download from Www.Somanuals.com. All Manuals Search And Download.
Perform ance
Data
Table PD-14 — Belt Drive Evaporator Fan Performance WSC090AD,T Horizontal Configuration (SI)
External Static Pressure (Pascals)
25
50
75
100
RPM
125
RPM
150
RPM
1.50 Nom kW Standard Motor & Drive
175
RPM
200
RPM
225
RPM kW
250
RPM kW
m3/h
RPM
kW
RPM
kW
RPM
kW
kW
kW
kW
kW
kW
1.50 Nom kW Std Mtr & Low Static Drive
4080
4590
5100
5610
6120
—
—
0.53
0.71
0.93
1.20
686
753
822
892
963
0.43
0.59
0.78
1.01
1.28
737
792
853
921
990
0.49
0.65
0.84
1.08
1.35
787
839
892
951
0.57
0.72
0.91
1.15
831
882
935
988
0.64
0.80
0.99
1.22
870
922
974
1026 1.31
1079 1.59
0.70
0.88
1.08
908
958
0.76
0.95
944
992
0.84
980 0.92 1015 0.99
718
789
862
934
1.02 1026 1.10 1058 1.18
1011 1.18 1044 1.25 1076 1.33 1106 1.41
1062 1.42 1096 1.52 1129 1.61 1158 1.69
1115 1.69 1148 1.80 1180 1.91 1210 2.02
1016 1.43
1045 1.51
1.50 Nom kW Standard Motor &
Hi Static Drive
2.24 Nom kW OS
Motor & Hi Static Drive
External Static Pressure (Pascals)
300 325
RPM RPM
275
RPM
350
RPM
375
RPM
m 3/h
kW
kW
kW
kW
kW
1.50 Nom kW Standard Motor & Hi Static Drive
4080
4590
5100
5610
6120
1051 1.07
1090 1.27
1136 1.49
1187 1.78
1239 2.12
1085 1.15
1122 1.36
1165 1.59
1214 1.86
1266 2.21
1118 1.23
1153 1.45
1194 1.68
1242 1.96
1291 2.30
1152 1.31
1185 1.53
1223 1.78
1269 2.06
1317 2.39
1185 1.39
1216 1.62
1251 1.88
1296 2.17
1343 2.49
2.24 Nom kW Over-Sized Motor & Hi Static Drive
Notes:
Factory Supplied Motors, In Com m ercial Equipm ent, Are Definite
Data Includes Pressure Drop Due To Wet Coils And Filters
1.50 kW - Fan Motor Heat (kW) = 1.178 x Fan kW + 0.464
2.24 kW - Fan Motor Heat (kW) = 1.138 x Fan kW + 0.139
Purpose Motors, Specifically Designed And Tested To Operate
Reliably And Continuously At All Cataloged Conditions. Using The
Full Horsepower Range Of Our Fan Motors As Shown In Our Tabular
Data Will Not Result In Nuisance Tripping Or Prem ature Motor
Failure. Our Product’s Warranty Will Not Be Affected.
Table PD-14a — Belt Drive Evaporator Fan Performance WSC090AD,T Horizontal Configuration (IP)
External Static Pressure (Inches of Water)
0.10
0.20
0.30
0.40
0.50
0.60
0.70
0.80
0.90
1.00
CFM
RPM BHP
RPM BHP
RPM BHP
RPM BHP
RPM BHP
RPM BHP
RPM BHP RPM BHP RPM BHP RPM BHP
2 HP Standard Motor & Low Static Drive
2 HP Standard Motor & Drive
2400
2700
3000
3300
3600
—
—
0.71
0.96
1.25
1.61
686
753
822
892
963
0.58
0.79
1.04
1.35
1.71
737
792
853
921
990
0.66
0.87
1.13
1.44
1.81
787
839
892
951
0.76
0.96
1.22
1.54
831
882
935
988
0.85
1.08
1.33
1.64
870
922
974
1026 1.76
1079 2.13
0.93
1.18
1.45
908
958
1.02
1.27
944
992
1.12
980 1.23 1015 1.33
718
789
862
934
1.36 1026 1.47 1058 1.59
1011 1.58 1044 1.68 1076 1.78 1106 1.88
1062 1.90 1096 2.04 1129 2.16 1158 2.27
1115 2.27 1148 2.41 1180 2.57 1210 2.71
1016 1.92
1045 2.02
2 HP Standard Motor & Static Drive
2 HP Std Motor & Hi Static Drive
External Static Pressure (Inches of Water)
3 HP Over-Sized Motor
& Hi Static Drive
1.10
1.20
1.30
1.40
1.50
RPM BHP
CFM
RPM BHP
RPM BHP
RPM BHP
RPM BHP
2 HP Standard Motor & Hi Static Drive
2400
2700
3000
3300
3600
1051 1.44
1090 1.70
1136 2.00
1187 2.39
1239 2.84
1085 1.54
1122 1.82
1165 2.13
1214 2.50
1266 2.96
1118 1.64
1153 1.94
1194 2.26
1242 2.63
1291 3.08
1152 1.75
1185 2.06
1223 2.39
1269 2.76
1317 3.20
1185 1.86
1216 2.18
1251 2.52
1296 2.90
1343 3.34
3 HP Over-Sized Motor & Hi Static Drive
Notes:
Factory Supplied Motors, In Com m ercial Equipm ent Are Definite
Data Includes Pressure Drop Due To Wet Coils And Filters.
2 HP - Fan Motor Heat (MBH) = 3.000 x Fan BHP + 0.500
3 HP - Fan Motor Heat (MBH) = 2.900 x Fan BHP + 0.475
Purpose Motors, Specifically Designed And Tested To Operate
Reliably And Continuously At All Cataloged Conditions. Using The
Full Horsepower Range Of Our Fan Motors As Shown In Our Tabular
Data Will Not Result In Nuisance Tripping Or Prem ature Motor
Failure. Our Product’s Warranty Will Not Be Affected.
PKGP-PRC004-EN
27
Download from Www.Somanuals.com. All Manuals Search And Download.
Perform ance
Data
Table PD-15 — Belt Drive Evaporator Fan Performance WSC0120AD,T Downflow Configuration (SI)
External Static Pressure (Pascals)
25
50
75
100
RPM
125
RPM
150
RPM
175
RPM
200
RPM
225
RPM kW
250
RPM kW
m3/h
RPM
kW
RPM
kW
RPM
kW
kW
kW
kW
kW
kW
2.24 Nom kW Standard Motor & Low Static Drive
2.24 Nom kW Standard Motor & Drive
5440
6120
6800
7480
—
—
—
—
—
—
0.95
—
—
—
—
—
—
—
—
718
764
814
864
0.72
0.90
1.11
1.36
754
797
844
894
0.82
0.99
1.21
1.48
789
829
874
922
0.93
1.10
1.32
1.59
822
860
903
948
1.03
1.22
1.44
1.70
856 1.14
892 1.34
932 1.56
887 1.25
922 1.46
960 1.69
694
747
803
0.71
0.90
1.14
731
782
834
0.81
1.01
1.24
715
773
0.81
1.04
741
975 1.82 1001 1.95
8160
803
1.21
833
1.31
861
1.42
887
1.52
916
1.64
947
1.77
972
1.90
997
2.02 1022 2.14 1046 2.27
External Static Pressure (Pascals)
375 400
RPM RPM
275
RPM
300
RPM
325
RPM
350
RPM
425
RPM
450
RPM
475
RPM kW
500
RPM kW
m3/h
kW
kW
kW
kW
kW
kW
kW
kW
2.24 Nom kW Standard Motor & Drive
5440
6120
6800
7480
8160
917
951
988
1028 2.09
1071 2.41
1.36
1.57
1.82
945
979
1.47
1.69
973
1.60
999
1.72
1024 1.84
1059 2.07
1093 2.35
1128 2.66
1166 3.02
1048 1.97
1082 2.20
1117 2.48
1152 2.81
1189 3.17
1072 2.10 1095 2.23 1117 2.37 1140 3.36
1107 2.34 1130 2.49 1152 2.63 1173 3.71
1142 2.63 1164 2.76 1187 2.91 1209 4.11
1007 1.82
1042 2.08
1078 2.38
1119 2.70
1033 1.94
1068 2.21
1103 2.52
1142 2.86
1015 1.95
1053 2.23
1095 2.55
1176 2.95 1198 3.10 1221 3.25
1212 3.33
—
—
—
—
—
—
—
—
2.24 Nom kW Standard Motor & High Static Drive
Notes:
Factory Supplied Motors, In Com m ercial Equipm ent, Are Definite
Purpose Motors, Specifically Designed And Tested To Operate
Reliably And Continuously At All Cataloged Conditions. Using The
Full Horsepower Range Of Our Fan Motors As Shown In Our
Tabular Data Will Not Result In Nuisance Tripping Or Prem ature
Motor Failure. Our Product’s Warranty Will Not Be Affected.
Data Includes Pressure Drop Due To Wet Coils And Filters.
2.24 kW - Fan Motor Heat (kW) = 1.138 x Fan kW + 0.139
Table PD-15a — Belt Drive Evaporator Fan Performance WSC0120AD,T Downflow Configuration (IP)
External Static Pressure (Inches of Water)
0.10
0.20
0.30
0.40
0.50
0.60
0.70
0.80
0.90
1.00
CFM
RPM BHP
RPM BHP
RPM BHP
RPM BHP
RPM BHP
RPM BHP
RPM BHP RPM BHP RPM BHP RPM BHP
3 HP Standard Motor & Low Static Drive
3 HP Standard Motor & Drive
3200
3600
4000
4400
4800
—
—
—
741
803
—
—
—
1.27
1.62
—
—
—
—
715
773
833
—
—
—
—
718
764
814
864
916
0.97
1.20
1.49
1.82
2.20
754
797
844
894
947
1.10
1.33
1.63
1.98
2.38
789
829
874
922
972
1.25
1.48
1.77
2.13
2.55
822
860
903
948
997
1.38
1.63
1.93
2.28
856 1.53
892 1.79
932 2.09
887 1.67
922 1.95
960 2.27
694
747
803
861
0.95
1.21
1.53
1.90
731
782
834
887
1.08
1.35
1.67
2.04
1.09
1.40
1.76
975 2.44 1001 2.62
2.71 1022 2.87 1046 3.04
External Static Pressure (Water)
1.10
RPM BHP
1.20
RPM BHP
1.30
RPM BHP
3 HP Standard Motor & Drive
973 2.14 999 2.30
1.40
RPM BHP
1.50
RPM BHP
1.60
RPM BHP
1.70
1.80
1.90
2.00
CFM
RPM BHP RPM BHP RPM BHP RPM BHP
3200
3600
4000
4400
4800
917
951
988
1.82
2.11
2.44
945
979
1.97
2.27
1024 2.47
1059 2.78
1093 3.15
1128 3.57
1166 4.04
1048 2.65
1082 2.95
1117 3.33
1152 3.77
1189 4.25
1072 2.82 1095 3.00 1117 3.17 1140 3.36
1107 3.14 1130 3.33 1152 3.52 1173 3.71
1142 3.52 1164 3.70 1187 3.91 1209 4.11
1176 3.96 1198 4.15 1221 4.36
1212 4.46
1007 2.43
1042 2.79
1078 3.19
1119 3.62
1033 2.60
1068 2.97
1103 3.38
1142 3.83
1015 2.62
1053 3.00
1095 3.42
1028 2.81
1071 3.23
—
—
—
—
—
—
—
—
3 HP Standard Motor & High Static Drive
Notes:
Factory Supplied Motors, In Com m ercial Equipm ent, Are Definite
Purpose Motors, Specifically Designed And Tested To Operate
Reliably And Continuously At All Cataloged Conditions. Using The
Full Horsepower Range Of Our Fan Motors As Shown In Our Tabular
Data Will Not Result In Nuisance Tripping Or Prem ature Motor
Failure. Our Product’s Warranty Will Not Be Affected.
Data Includes Pressure Drop Due To Wet Coils And Filters.
3 HP - Fan Motor Heat (MBH) = 2.900 x Fan BHP + 0.475
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Data
Table PD-16 — Belt Drive Evaporator Fan Performance WSC0120AD,T Horizontal Configuration (SI)
External Static Pressure (Pascals)
25
50
75
100
RPM
125
RPM
150
RPM
175
RPM
200
RPM
225
RPM kW
250
RPM kW
m3/h
RPM
kW
RPM
kW
RPM
kW
kW
kW
kW
kW
kW
2.24 Nom kW Standard Motor & Low Static Drive
2.24 Nom kW Standard Motor & Drive
5440
6120
6800
7480
8160
—
—
691
761
833
905
977
0.67
0.91
1.22
1.58
2.02
730
792
860
931
0.75
0.99
1.29
1.67
771
829
890
955
0.84
1.08
1.38
1.75
807
865
923
983
0.94
1.19
1.50
1.86
844
898
956
1.04
1.30
1.62
886
930
986
1.16
1.41
926
965
1.28
965 1.41 1000 1.53
729
802
876
950
0.84
1.13
1.49
1.91
1.53 1002 1.67 1038 1.81
1.72 1015 1.85 1044 1.98 1077 2.12
1014 1.99
1074 2.42
1045 2.12 1072 2.25 1098 2.37 1125 2.51
1102 2.56 1131 2.71 1156 2.84 1181 2.98
1002 2.11
1025 2.20
1048 2.30
2.24 Nom kW Standard Motor & High Static Drive
External Static Pressure (Pascals)
375 400
RPM RPM
275
RPM
300
RPM
325
RPM
350
RPM
425
RPM
450
RPM
475
RPM kW
500
RPM kW
m3/h
kW
kW
kW
kW
kW
kW
kW
kW
2.24 Nom kW Standard Motor & Drive
5440
6120
6800
7480
8160
1029 1.64
1072 1.95
1111 2.28
1152 2.65
1205 3.12
1057 1.75
1106 2.10
1143 2.43
1182 2.81
1229 3.27
1084 1.86
1134 2.22
1174 2.58
1211 2.97
1108 1.96
1160 2.35
1204 2.74
1241 3.14
1132 2.06
1185 2.47
1232 2.90
1270 3.31
1155 2.17
1209 2.59
1260 3.05
1177 2.27 1198 2.37 1219 2.48 1239 3.46
1231 2.70 1252 2.82 1274 2.94 1295 4.10
1283 3.18 1306 3.32
—
—
—
—
—
—
—
—
—
—
—
—
—
—
—
—
—
—
—
—
—
—
—
—
—
—
—
—
—
—
2.24 Nom kW Standard Motor & High Static Drive
Notes:
Factory Supplied Motors, In Com m ercial Equipm ent, Are Definite
Data Includes Pressure Drop Due To Wet Coils And Filters.
2.24 kW - Fan Motor Heat (kW) = 1.138 x Fan kW + 0.139
Purpose Motors, Specifically Designed And Tested To Operate Reliably
And Continuously At All Cataloged Conditions. Using The Full
Horsepower Range Of Our Fan Motors As Shown In Our Tabular Data
Will Not Result In Nuisance Tripping Or Prem ature Motor Failure. Our
Product’s Warranty Will Not Be Affected.
Table PD-16a — Belt Drive Evaporator Fan Performance WSC0120AD,T Horizontal Configuration (IP)
External Static Pressure (Inches of Water)
0.10
0.20
0.30
0.40
0.50
0.60
0.70
0.80
0.90
1.00
CFM
RPM BHP
RPM BHP
RPM BHP
RPM BHP
RPM BHP
RPM BHP
RPM BHP RPM BHP RPM BHP RPM BHP
3 HP Standard Motor & Low Static Drive
3 HP Standard Motor & Drive
3200
3600
4000
4400
4800
—
—
691
761
833
905
977
0.89
1.22
1.63
2.12
2.70
730
792
860
931
1.00
1.32
1.73
2.24
771
829
890
955
1.13
1.45
1.86
2.35
807
865
923
983
1.26
1.60
2.01
2.49
844
898
956
1014 2.66
1074 3.24
1.39
1.74
2.17
886
930
986
1.55
1.89
926
965
1.72
965 1.89 1000 2.06
729
802
876
950
1.13
2.06 1002 2.24 1038 2.43
2.30 1015 2.48 1044 2.65 1077 2.85
1045 2.84 1072 3.01 1098 3.18 1125 3.36
1102 3.43 1131 3.63 1156 3.81 1181 4.00
1.52
1.99
2.56
1002 2.84
1025 2.96
1048 3.08
3 HP Standard Motor & High Static Drive
External Static Pressure (Water)
1.10
RPM BHP
3 HP Std Motor & Drive
1.20
RPM BHP
1.30
RPM BHP
1.40
RPM BHP
1.50
RPM BHP
1.60
RPM BHP
1.70
1.80
1.90
2.00
CFM
RPM BHP RPM BHP RPM BHP RPM BHP
3200
3600
4000
4400
4800
1029 2.20
1072 2.62
1111 3.05
1152 3.55
1205 4.19
1057 2.35
1106 2.81
1143 3.26
1182 3.76
1229 4.39
1084 2.49
1134 2.98
1174 3.47
1211 3.99
1108 2.63
1160 3.15
1204 3.68
1241 4.21
1132 2.77
1185 3.31
1232 3.88
1270 4.44
1155 2.91
1209 3.47
1260 4.09
1177 3.05 1198 3.18 1219 3.32 1239 3.46
1231 3.63 1252 3.78 1274 3.94 1295 4.10
1283 4.27 1306 4.46
—
—
—
—
—
—
—
—
—
—
—
—
—
—
—
—
—
—
—
—
—
—
—
—
—
—
—
—
—
—
3 HP Standard Motor & High Static Drive
Notes:
Factory Supplied Motors, In Com m ercial Equipm ent, Are Definite
Data Includes Pressure Drop Due To Wet Coils And Filters.
3 HP - Fan Motor Heat (MBH) = 2.900 x Fan BHP + 0.475
Purpose Motors, Specifically Designed And Tested To Operate Reliably
And Continuously At All Cataloged Conditions. Using The Full
Horsepower Range Of Our Fan Motors As Shown In Our Tabular Data
Will Not Result In Nuisance Tripping Or Prem ature Motor Failure. Our
Product’s Warranty Will Not Be Affected.
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Data
Table PD-17 — Standard Motor & Sheave/Fan Speed (RPM)
Unit
6 Turns
Open
5 Turns
Open
4 Turns
Open
3 Turns
Open
2 Turns
Open
1 Turn
Open
Model No.
Closed
1243
967
WSC060AD,T
WSC072AD,T
WSC090AD,T
WSC120AD,T
N/A
N/A
N/A
N/A
898
698
752
782
967
751
806
838
1036
806
860
894
1105
859
914
950
1174
913
968
1020
1062
1006
Factory set at 3 turns open
Table PD-18 — Standard Motor & Low Static Drive Accessory Sheave/Fan Speed (RPM)
Unit
6 Turns
5 Turns
4 Turns
3 Turns
2 Turns
1 Turn
Model No.
Open
Open
Open
Open
Open
Open
Closed
1036
806
WSC060AD,T
WSC072AD,T
WSC090AD,T
WSC120AD,T
N/A
N/A
N/A
N/A
691
537
671
717
760
590
714
754
829
644
757
799
898
698
800
844
967
752
843
885
886
922
Factory set at 3 turns open
Table PD-19 — Standard Motor & High Static Drive Accessory Sheave/Fan Speed (RPM)
Unit
6 Turns
5 Turns
4 Turns
3 Turns
2 Turns
1 Turn
Model No.
Open
Open
Open
Open
Open
Open
Closed
1588
1235
N/A
WSC060AD,T
WSC072AD,T
WSC090AD,T
WSC120AD,T
N/A
N/A
1243
967
1311
1021
1127
1174
1379
1075
1181
1229
1450
1128
1235
1285
1515
1183
1289
1341
1020
1062
1073
1118
N/A
Factory set at 3 turns open
Table PD-20 — Over-Sized Motor & Drive Sheave/Fan Speed (RPM)
Unit
6 Turns
5 Turns
4 Turns
3 Turns
2 Turns
1 Turn
Open
Model No.
Open
Open
Open
Open
Open
Closed
1235
N/A
WSC072AD,T
WSC090AD,T
WSC120AD,T
N/A
1112
N/A
967
1182
N/A
1021
1252
N/A
1075
1322
N/A
1128
1392
N/A
1183
1460
N/A
N/A
Factory set at 3 turns open
Table PD-21 — Sound Power Level – dB (ref. 10 – 12 Watts)
Unit
Model No.
Octave Center Frequency
Overall
dBA
63
84
83
83
83
125m
91m
90
250
79
86
86
80
500
77
82
83
77
1000m
2000
4000
68
8000
WSC060AD,T
WSC072AD,T
WSC090AD,T
WSC120AD,T
74
71
75
75
69
63
63
64
60
80
85
85
79
79
70
90
80
71
86
73
66
Note:
Tests follow ARI270-95.
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Data
Table PD-22 - Static Pressure Drops Through Accessories - (Pascals)
Econimizer with
OA/RA Dampers2
100% RA 100% OA
Downflow Horizontal
Electric Heater
Accessory (kW)3
10-27
Unit
Model No.
Airflow
(m3/h)
Standard
Filters1
Pleated Filters
50 mm (2 inch)
100% OA
100% RA
7-9
37-40
2720
3400
4080
25
37
55
37
55
72
30
46
64
11
17
26
30
46
64
4
6
9
11
17
25
13
21
30
—
—
—
WSC060AD,T
WSC072AD,T
WSC090AD,T
3260
4080
4890
10
15
22
17
22
30
25
27
33
2
5
10
15
20
25
5
5
10
—
—
—
5
8
13
—
—
—
4080
5100
6120
15
25
35
22
32
45
27
35
52
5
12
17
20
30
62
5
12
20
—
—
—
8
16
25
—
—
—
5440
6800
8160
17
27
40
25
37
50
42
65
85
12
17
22
35
75
87
12
20
25
—
—
—
9
14
20
10
17
26
WSC120AD,T
Notes:
1. Tested with standard filters. The WSC060AD,T has 25 m m (1 inch) standard fiters. The WSC072AD,T - 120AD,T has 50 m m (2 inch) standard filters. The difference in pressure drop
should be considered when utilizing optional 50 m m (2 inch) pleated filters.
2. OA = Outside Air and RA = Return Air
3. Nom inal kW ratings at 380 V
Table PD-22a - Static Pressure Drops Through Accessories - (Inches of Water Column)
Econimizer with
OA/RA Dampers2
Electric Heater
Accessory (kW)3
10-27
Unit
Airflow
(CFM)
Standard
Filters1
Pleated Filters
50 mm (2 inch)
100% OA
100% RA
100% OA
100% RA
7-9
37-40
Model No.
Downflow
Horizontal
1600
2000
2400
0.10
0.15
0.22
0.15
0.22
0.29
0.12
0.18
0.26
0.04
0.07
0.10
0.12
0.18
0.26
0.01
0.02
0.04
0.045
0.070
0.100
0.053
0.083
0.120
—
—
—
WSC060AD,T
WSC072AD,T
WSC090AD,T
1920
2400
2880
0.04
0.06
0.09
0.07
0.09
0.12
0.10
0.11
0.13
0.01
0.02
0.04
0.06
0.08
0.10
0.02
0.02
0.04
—
—
—
0.021
0.034
0.052
—
—
—
2400
3000
3600
0.06
0.10
0.14
0.09
0.13
0.18
0.11
0.14
0.21
0.02
0.05
0.07
0.08
0.12
0.25
0.02
0.05
0.08
—
—
—
0.034
0.063
0.102
—
—
—
3200
4000
4800
0.07
0.11
0.16
0.10
0.15
0.20
0.17
0.26
0.34
0.05
0.07
0.09
0.14
0.30
0.35
0.05
0.08
0.10
—
—
—
0.036
0.056
0.081
0.042
0.070
0.106
WSC120AD,T
Notes:
1. Tested with standard filters. The WSC060AD,T has 25 m m (1 inch) standard fiters. The WSC072AD,T - 120AD,T has 50 m m (2 inch) standard filters. The difference in pressure drop
should be considered when utilizing optional 50 m m (2 inch) pleated filters.
2. OA = Outside Air and RA = Return Air
3. Nom inal kW ratings at 380 V
Table PD-23 — Electric Heater Voltage Correction
Factors (Apply to Auxiliary Heat
Capacity)
Nominal
Voltage
Distribution
Voltage
Capacity
Multipiler
200
200
1.00
380
400
415
0.84
0.93
1.00
415
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Data
Table PD-24 — Auxiliary Electric Heat Capacity
Total2
Stage 1
kW
Stage 2
kW
Unit
Model No.
kW
No. Stages
8.3
12.1
16
2
2
2
4.2
6.0
9.9
4.2
6.0
6.0
WSC060AT
7.5 / 9.0
10.9 / 13.0
14.4 / 17.2
2
2
2
3.75 / 4.5
5.45 / 6.5
8.95 / 10.7
3.75 / 4.5
5.45 / 6.5
5.45 / 6.5
WSC060AD
WSC072AT
WSC072AD
WSC090AT
WSC090AD
WSC120AT
WSC120AD
12.5
18.8
25
1
2
2
12.5
12.5
12.5
6.3
12.5
11.3 / 13.5
16.9 / 20.2
22.6 / 26.9
1
2
2
11.3 / 13.5
11.3 / 13.5
11.3 / 13.5
— -
5.6 / 6.7
11.3 / 13.5
12.5
18.8
25
1
2
2
12.5
12.5
12.5
6.3
12.5
11.3 / 13.5
16.9 / 20.2
22.6 / 26.9
1
2
2
11.3 / 13.5
11.3 / 13.5
11.3 / 13.5
— -
5.6 / 6.7
11.3 / 13.5
18.8
25
37.5
2
2
2
12.5
12.5
25.0
6.3
12.5
12.5
16.9 / 20.2
22.6 / 26.9
33.9 / 40.4
2
2
2
11.3 / 13.8
11.3 / 13.9
11.3 / 13.10
5.6 / 6.7
11.3 / 13.5
22.5 / 26.9
Notes:
1. Does not include indoor fan power or heat
2. Heaters are rated at 200V, and 380V / 415V. For other than rated voltage, CAP = (Voltage/Rated Voltage)2 x Rated Cap.
Table PD-24a — Auxiliary Electric Heat Capacity
Total2
Stage 1
MBH
Stage 2
MBH
Unit
Model No.
MBH
No. Stages
28
41
55
2
2
2
14
20
34
14
20
20
WSC060AT
WSC060AD
WSC072AT
WSC072AD
WSC090AT
WSC090AD
WSC120AT
WSC120AD
26 / 31
38 / 45
50 / 59
2
2
2
13 / 16
19 / 23
31 / 37
13 / 16
19 / 23
19 / 23
43
64
85
1
2
2
43
43
43
— -
22
43
39 / 47
58 / 69
78 / 92
1
2
2
39 / 47
39 / 47
39 / 47
— -
20 / 23
39 / 47
43
64
85
1
2
2
43
43
43
— -
22
43
39 / 47
58 / 69
78 / 92
1
2
2
39 / 47
39 / 47
39 / 47
— -
20 / 23
39 / 47
64
85
123
2
2
2
43
43
85
22
43
43
58 / 69
78 / 92
2
2
39 / 47
39 / 47
20 / 23
39 / 47
116 / 138
2
39 / 47
77 / 92
Notes:
1. Does not include indoor fan power or heat
2. Heaters are rated at 200V, and 380V / 415V. For other than rated voltage, CAP = (Voltage/Rated Voltage)2 x Rated Cap.
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Perform ance
Data
Table PD-25 — Air Temperature Rise Across Electric Heaters (Degrees C)
5 Ton
3400 M3/H
6 Ton
4100 M3/H
7.5 Ton
5100 M3/H
10 Ton
6800 M3/H
kW
Stages
WSC060AD, T
WSC072AD, T
WSC090AD, T
WSC120AD, T
7.5
8.3
9.0
2
2
2
2
1
2
1
2
1
2
2
2
2
2
2
2
2
2
2
2
2
6.6
7.3
7.9
9.6
—
10.6
—
11.4
—
12.6
14.0
—
15.1
—
—
—
—
—
—
—
—
—
—
—
—
8.3
—
9.1
—
9.9
—
—
12.4
—
13.8
14.8
16.5
18.3
19.7
—
—
—
—
—
6.6
—
7.3
—
7.9
—
—
9.9
—
11.0
11.8
13.2
14.6
15.7
—
—
—
—
—
10.9
11.3
12.1
12.5
13.0
13.5
14.4
16.0
16.9
17.2
18.8
20.2
22.6
25.0
26.9
33.9
37.5
40.4
—
—
—
—
—
—
—
7.4
—
8.3
8.9
9.9
11.0
11.8
14.9
16.5
17.7
—
—
—
—
Note:
For m inim um design airflow, see perform ance table for each unit.
To calculate tem p rise at differrent airflow, use following form ula:
Tem p. Rise (C0) across Elect Htr = (kW x 2985) / (M3/H)
Table PD-25a — Air Temperature Rise Across Electric Heaters (Degrees F)
5 Ton
6 Ton
7.5 Ton
10 Ton
2000 CFM
2400 CFM
3000 CFM
4000 CFM
kW
Stages
WSC060AD, T
WSC072AD, T
WSC090AD, T
WSC120AD, T
7.5
8.3
9.0
2
2
2
2
1
2
1
2
1
2
2
2
2
2
2
2
2
2
2
2
2
11.9
13.1
14.2
17.2
—
19.1
—
20.5
—
22.8
25.3
—
27.2
—
—
—
—
—
—
—
—
—
—
—
—
14.9
—
16.5
—
17.8
—
—
22.3
—
24.8
26.6
29.8
32.9
35.4
—
—
—
—
—
11.9
—
13.2
—
14.2
—
—
17.8
—
19.8
21.3
23.8
26.3
28.3
—
—
—
—
—
10.9
11.3
12.1
12.5
13.0
13.5
14.4
16.0
16.9
17.2
18.8
20.2
22.6
25.0
26.9
33.9
37.5
40.4
—
—
—
—
—
—
—
13.4
—
14.9
16.0
17.9
19.8
21.3
26.8
29.6
31.9
—
—
—
—
NOTE:
For m inim um design airflow, see perform ance table for each unit.
To calculate tem p rise at differrent airflow, use following form ula:
Tem p. Rise (F0) across Elect Htr = (kW x 3414) / ( 1.08 x CFM)
Table PD-26 — Electric Heater Temperature Rise Correction Factors
% Variation From Nom inal Airflow – 20
Tem perature Rise Multiplier 1.25
– 15
1.17
– 10
1.11
– 5
0
1
+ 5
+ 10
0.91
+ 15
0.87
+ 20
0.83
1.05
0.95
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Controls
Remote Sensor — Sensor(s) available
for all zone sensors to provide remote
sensing capabilities.
Programmable Night Setback — Auto or
manual changeover with seven-day
programming. Keyboard selection of
Heat, Cool, Fan, Auto, or On.
All programmable sensors have System
On, Heat, Cool, Service LED/indicators as
standard. Night Setback Sensors have
one (1) Occupied, one (1) Unoccupied,
and two (2) Override programs per day.
Field-Installed Control Options
Zone Sensors are the building
occupant’s comfort control devices
available for Precedent™ units.
Manual Changeover — Heat, Cool or Off
System Switch. Fan Auto or Off Switch.
One temperature setpoint lever.
Non-Programmable Manual/Auto —
Change over with digital LCD display —
Auto, Heat, Cool, Emergency, Heat, or
Off mode selection button. Status
Indication LCD indicators — System On,
Heat, Cool, or Service.
Integrated Comfort™ System —
Sensor(s) available
with optional temperature adjustment
and override buttons to provide central
control through a Trane Integrated
Comfort™ system.
Manual/Automatic Changeover — Auto,
Heat, Cool or Off System Switch. Fan
Auto or Off Switch.Two temperature
setpoint levers. Optional Status
Indication LED lights, System On, Heat,
Cool, or Service.
LCD indicators – System On, Heat,
Cool, or Service
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Electrical
Data
Table ED-1 — Unit Wiring
Standard Indoor Fan Motor
Oversize Indoor Fan Motor
Minimum Maximum Fuse
Unit
Minimum
Maximum Fuse
Unit
Model No.
Operating
Voltage Range
Circuit
Ampacity
Size Or Maximum
Circuit
Ampacity
Size Or Maximum
Circuit Breaker1
Circuit Breaker1
WSC060AD
WSC060AT
342-456
180-220
18.9
37.2
25
50
18.9
37.2
25
50
WSC072AD
WSC072AT
342-456
180-220
21.9
38.4
30
60
22.9
43.9
30
60
WSC090AD
WSC090AT
342-456
180-220
24.8
47.6
35
60
26.5
50.2
35
60
WSC120AD
WSC120AT
342-456
180-220
31.2
59.5
40
60
31.2
59.5
40
60
Notes:
1. All units to be installed under local codes.
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Electrical
Data
Table ED-2 — Unit Wiring With Electric Heat Single Point Connection — 380– 415 Volts
Standard Indoor Fan Motor
Oversized Indoor Fan Motor
Minimum
Circuit
Maximum Fuse
Minimum
Circuit
Maximum Fuse
Unit
Heater
Heater2
kW Rating
Control
Stages
Size Or Maximum
Size Or Maximum
Model No.
Model No.
MBH
Ampacitiy
Circuit Breaker1
Ampacitiy
Circuit Breaker1
380 / 415 Volts
BAYHTRR412A
BAYHTRR418A
BAYHTRR423A
7.5 / 9.0
10.9 / 13.0
14.4 / 17.2
26 / 31
38 / 45
50 / 59
2
2
2
33.3 / 34.6
39.7 / 41.6
46.3 / 48.8
40 / 40
45 / 45
50 / 50
—
—
—
—
—
—
WSC060AD
WSC072AD
WSC090AD
WSC120AD
BAYHTRS418A
BAYHTRS427A
BAYHTRS436A
11.3 / 13.5
16.9 / 20.2
22.6 / 26.9
39 / 47
58 / 69
78 / 92
1
2
2
43.4 / 45.4
54.1 / 57.1
64.8 / 68.7
50 / 50
60 / 60
70 / 70
44.4 / 46.4
55.1 / 58.1
65.8 / 69.7
50 / 50
60 / 60
70 / 70
BAYHTRS418A
BAYHTRS427A
BAYHTRS436A
11.3 / 13.5
16.9 / 20.2
22.6 / 26.9
39 / 47
58 / 69
78 / 92
1
2
2
46.3 / 48.3
56.9 / 59.9
67.7 / 71.6
50 / 50
60 / 60
70 / 70
48.0 / 50.0
58.6 / 61.6
69.4 / 73.3
50 / 50
60 / 60
70 / 70
BAYHTRT427A
BAYHTRT436A
BAYHTRT454A
16.9 / 20.2
22.6 / 26.9
33.9 / 40.4
58 / 69
78 / 92
116 / 138
2
2
2
63.3 / 66.3
74.0 / 77.9
95.5 / 101.4
70 / 70
80 / 80
100 / 110
—
—
—
—
—
—
Notes:
1. All units to be installed under local codes
2. kW shown for 380V / 415V
Table ED-3 — Unit Wiring With Electric Heat Single Point Connection — 200 Volts
Standard Indoor Fan Motor
Oversized Indoor Fan Motor
Minimum
Circuit
Maximum Fuse
Minimum
Circuit
Maximum Fuse
Unit
Heater
Heater2
kW Rating
Control
Stages
Size Or Maximum
Size Or Maximum
Model No.
Model No.
MBH
Ampacitiy
Circuit Breaker1
Ampacitiy
Circuit Breaker1
200 Volts
BAYHTRR312AA
BAYHTRR318AA
BAYHTRR323AA
8.3
12.1
16.0
28
41
55
2
2
2
67.2
80.9
95.0
80
90
100
—
—
—
—
—
—
WSC060AT
WSC072AT
WSC090AT
WSC120AT
BAYHTRS318AA
BAYHTRS327AA
BAYHTRS336AA
12.5
18.8
25.0
43
64
85
1
2
2
86.4
109.1
131.5
100
110
150
89.1
111.8
134.2
100
125
150
BAYHTRS318AA
BAYHTRS327AA
BAYHTRS336AA
12.5
18.8
25.0
43
64
85
1
2
2
92.7
115.4
137.8
100
125
150
95.3
118.0
140.4
100
125
150
BAYHTRT327AA
BAYHTRT336AA
BAYHTRT354AA
18.8
25.0
37.5
64
85
123
2
2
2
127.4
149.7
194.9
150
150
200
—
—
—
—
—
—
Notes:
1. All units to be installed under local codes
2. kW shown for 380V / 415V
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Electrical
Data
Table ED-4 — Electrical Characteristics – Evaporator Fan Motor – 50 Hz
Standard Evaporator Fan Motor
Oversized Evaporator Fan Motor
Unit
Amps
Amps
Model No.
No.
Volts
Phase
HP
FLA
LRA
No.
Volts
Phase
HP
FLA
LRA
WSC060AD
WSC060AT
1
1
380-415
200
3
3
1.5
1.5
4.3
8.1
25.3
48.0
—
—
—
—
—
—
—
—
—
—
—
—
WSC072AD
WSC072AT
1
1
380-415
200
3
3
1.5
1.5
4.3
8.1
25.3
48.0
1
1
380-415
200
3
3
2.0
2.0
5.3
10.8
36.4
69.0
WSC090AD
WSC090AT
1
1
380-415
200
3
3
2.0
2.0
5.3
10.8
36.4
69.0
1
1
380-415
200
3
3
3.0
3.0
7.0
13.4
57.0
108
WSC120AD
WSC120AT
1
1
380-415
200
3
3
3.0
3.0
7.0
13.4
57.0
108
—
—
—
—
—
—
—
—
—
—
—
—
Table ED-5 — Electrical Characteristics – Compressor Motor And Condenser Motor – 50 Hz
Compressor Motor
Condenser Fan Motor
Unit
Amps
Amps
Model No.
WSC060AD
WSC072AD
WSC090AD
WSC120AD
No.
1
Volts
Phase
HP1
6
RPM
2875
2875
2875
2875
RLA1
10.9
LRA1
74.00
No.
1
Phase
HP
FLA
1.9
2.8
2.8
2.8
LRA
2.8
7.1
7.1
7.1
380-415
380-415
380-415
380-415
3
3
3
3
3
3
3
3
0.40
0.75
0.75
0.75
1
6.8
11.7
101.00
91.00
1
1
8.3
13.2
1
2
5.7 / 5.7
9.4 / 9.4
74 / 74
1
Note:
1. Com p1 / Com p2
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J obsite
Connections
Zone Sensors — Typical Number Of Wires
DISCONNECT
SWITCH
A — Manual Changeover
Manual/Auto Changeover
Manual/Auto Changeover with
Status Indication LED’s
4
5
(BY OTHERS)
ZONE SENSOR
OR THERMOSTAT
10
7
Programmable Night Setback with
Status Indication LED’s
ROOFTOP
UNIT
Thermostats — Typical Number of Wires
A — 3 wires, 24-volts, Cooling Only
4 wires, 24-volts, with Electric Heat
B — 3 Power Wires + 1 Ground Wire (three phase)
2 Power Wires + 1 Ground Wire (single phase)
For specific wiring inform ation, see the installation instructions.
All wiring except power wires is low voltage.
All custom er supplied wiring to be copper and m ust conform to NEC or CEC and local electrical codes. Wiring shown dotted is to be furnished and installed by the custom er.
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Dim ensional
Data
WSC060
All dimensions are in inches/millimeters.
WSC060
WSC060 — Downflow Airflow Supply/
Return
WSC060 — Horizontal Airflow Supply/
Return
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Dim ensional
Data
WSC060
All dimensions are in inches/millimeters.
WSC060 — Unit Clearance and Roof Opening
WSC060 — Roof Curb
WSC060 — Downflow Duct Connections —
Field Fabricated
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Dim ensional
Data
WSC072–120
All dimensions are in inches/millimeters.
WSC072 and WSC090
WSC120
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Dim ensional
Data
WSC072–120
All dimensions are in inches/millimeters.
WSC072– 120 — Downflow Airflow Supply
and Return
WSC072– 120 — Horizontal Airflow Supply
and Return
Return
Supply
WSC072– 120 — Unit Clearance and
Roof Opening
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Dim ensional
Data
WSC072–120
All dimensions are in inches/millimeters.
WSC072– 120 — Roof Curb
ALL FLANGES 1 1/4” (31 MM)
WSC072– 120 — Downflow Duct Connections —
Field Fabricated
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Dim ensional
Data
WSC060 Options/
Accessories
All dimensions are in inches/millimeters.
WSC060 — Economizer, Manual, or
Motorized Fresh Air Damper
WSC060 — Barometric Relief Damper
WSC060 — Swing Diameter for Hinged Doors
Option
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WSC072-120
Options/
Accessories
Dim ensional
Data
All dimensions are in inches/millimeters.
WSC072– 120 — Economizer and Barometric
Relief Damper Hoods
WSC072– 120 — Swing Diameter for Hinged
Door(s) Option
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Weights
Table W-1 — Maximum Unit and Corner Weights And Center Of Gravity Dimensions (SI)
Maximum Weights2 (kg)
Corner Weights1 (kg)
Center of Gravity (mm)
Unit Model No.
Shipping2
Net2
A
B
C
D
Length
Width
WSC060AD,T
WSC072AD,T
WSC090AD,T
266
408
18
241
368
378
77
58
93
95
49
66
67
58
87
88
790
970
970
480
560
530
122
128
WSC120AD,T
Notes:
484
445
150
115
78
102
970
530
1. Corner weights are given for information only. All models must be supported continuously by a curb or equivalent frame support.
2. Weights are approxim ate.
Table W-1a — Maximum Unit and Corner Weights And Center Of Gravity Dimensions (IP)
Maximum Weights (lbs)
Corner Weights1 (lbs)
Center of Gravity (in)
Unit Model No.
WSC060AD,T
WSC072AD,T
WSC090AD,T
WSC120AD,T
Notes:
Shipping2
586
Net
532
812
834
981
A
B
C
D
Length
31
Width
19
170
269
282
330
128
206
210
253
107
146
147
172
127
191
195
225
899
38
22
921
38
21
1068
38
21
1. Corner weights are given for information only. All models must be supported continuously by a curb or equivalent frame support.
2. Weights are approxim ate.
Table W-2 — Accessory Net Weights1, 2 (kg)
Table W-2a — Accessory Net Weights1, 2 (lbs)
Net Weights2
Net Weights2
WSC072-120
Accessory3
WSC060
WSC072-120
Accessory3
WSC060
Economizer
12
3
9
7
32
2
5
5
7
16
5
14
12
52
4
9
5
14
Economizer
26
7
20
16
70
5
12
10
15
36
10
30
26
115
8
20
12
30
Barometric Relief
Motorized Outside Air Damper
Manual Outside Air Damper
Roof Curb
Oversized Motor
Coil Guards
Barometric Relief
Motorized Outside Air Damper
Manual Outside Air Damper
Roof Curb
Oversized Motor
Coil Guards
Hinged Doors
Electric Heaters
Hinged Doors
Electric Heaters
Notes:
Notes:
1. Weights for options not listed are < 3 kg.
1. Weights for options not listed are < 5 lbs.
2. Net weight should be added to unit weight when ordering factory-
installed accessories.
2. Net weight should be added to unit weight when ordering factory-
installed accessories.
3. Som e accessories not available on all units.
3. Som e accessories not available on all units.
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Mechanical
Specifications
General
Filters
Outdoor Fans
The units shall be convertible airflow.
The operating range shall be between
46°C and – 18°C (115°F and 0°F) in
cooling as standard from the factory for
all units. All units shall be factory
assembled, internally wired, fully
charged with R-22, and 100 percent run
tested to check cooling operation, fan
and blower rotation and control
sequence, before leaving the factory.
Wiring internal to the unit shall be
colored and numbered for simplified
identification.
25 mm (1 inch), throwaway filters
shall be standard on all 5 ton units..
The filter rack can be converted to two
inch capability. 50 mm (2 inch) filters
shall be factory supplied on all 6-10
ton units. Optional 50 mm (2 inch)
pleated media filters shall be
available.
The outdoor fan shall be direct-drive,
statically and dynamically balanced,
draw-through in the vertical discharge
position. The fan motor shall be
permanently lubricated and shall have
built-in thermal overload protection.
Indoor Fan
All units shall be belt driven. Units with
belt-drive shall have an idler-arm
assembly for quick-adjustment of fan
belts and motor sheaves. All motors
shall be thermally protected. Oversized
motors shall be available for high static
application.
Compressors
All units shall have direct-drive,
hermetic, scroll type compressors
with centrifugal type oil pumps.
Motor shall be suction gas-cooled
and shall have a voltage utilization
range of plus or minus 10 percent of
unit nameplate voltage. Internal
overloads shall be provided with the
scroll compressors. .
Casing
Unit casing shall be constructed of zinc
coated, heavy gauge, galvanized steel.
Exterior surfaces shall be cleaned,
phosphatized, and finished with a
weather-resistant baked enamel finish.
Cabinet construction shall allow for all
maintenance on one side of the unit.
Service panels shall have lifting handles
and be removed and reinstalled by
removing only a single fastener while
providing a water and air tight seal. All
exposed vertical panels and top covers
in the indoor air section shall be
Controls
Unit shall be completely factory wired
with necessary controls and contactor
pressure lugs or terminal block for
power wiring. Unit shall provide an
external location for mounting a fused
disconnect device. Microprocessor
controls shall be provided for all 24 volt
control functions. The resident control
algorithms shall make all heating,
cooling, and/or ventilating decisions in
response to electronic signals from
sensors measuring indoor and outdoor
temperatures. The control algorithm
maintains accurate temperature control,
minimizes drift from set point, and
provides better building comfort. A
centralized microprocessor shall provide
anti-short cycle timing and time delay
between compressors to provide a
higher level of machine protection.
Refrigerant Circuits
Each refrigerant circuit shall have
independent fixed orifice or thermal
expansion devices, service pressure
ports, and refrigerant line filter driers
factory-installed as standard. An area
shall be provided for replacement
suction line driers.
Evaporator and Condenser Coils
insulated with cleanable foil faced, fire-
retardent permanent, odorless glass
fiber material. The base of the unit shall
5
/
Internally finned, 8mm ( 16 inch)
copper tubes mechanically bonded to
a configured aluminum plate fin shall
be standard. Coils shall be leak tested
at the factory to ensure the pressure
integrity.The evaporator coil and
condenser coil shall be leak tested to
1,375 kPa (200 psig) and pressure
tested to 3,100 kPa (450 psig). The
condenser coil shall have a patent
pending 1 + 1 + 1 hybrid coil designed
with slight gaps for ease of cleaning.
A reversible, removeable, double
sloped condensate drain pan with
provision for through the base
1
/
be insulated with 13mm, 16 kg ( 2 inch, 1
pound) density foil-faced, closed-cell
material. All insulation edges shall be
either captured or sealed.The unit’s base
pan shall have no penetrations within
the perimeter of the curb other than the
1
Defrost Controls
/
raised 29mm (1 8 inch) high downflow
supply/return openings to provide an
added water integrity precaution, if the
condensate drain backs up. The base of
the unit shall have provisions for forklift
and crane lifting, with forklift capabilities
on three sides of the unit.
Adaptive demand defrost shall be
provided to permit defrost wherever coil
icing conditions begin to significantly
reduce unit capacity.
condensate drain is standard.
Unit Top
The top cover shall be one piece, or
where seams exist, double hemmed and
gasket sealed to prevent water leakage.
The ribbed top adds extra strength and
prevents water from pooling on unit top.
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Mechanical
Specifications
Remote Potentiometer — The minimum
position setting of the economizer shall
be adjusted with this field-installed
accessory.
High Pressure Cutout — Standard in all
units.
Options/Accessories
Electric Heaters — Field-installed electric
heat modules shall be available for
installation within basic unit. Electric
heater elements shall be constructed of
heavy-duty nickel chromium elements
internally delta connected for 200 volt,
wye connected for 380-415 volt. Staging
shall be achieved through the unit
control processor (UCP). Each heater
package shall have automatically reset
high limit control operating through
heating element contactors. All heaters
shall be individually fused from the
factory, where required. Power
Hinged Access Doors — Sheet metal
hinges are available factory-installed on
the Filter/Evaporator, Supply Fan/Heat,
and the Compressor/Control Access
Doors.
Reference or Comparative Enthalpy —
Reference or Comparative Enthalpy
option shall be available when a factory-
installed economizer is ordered.
Discharge Air Sensing Kit — This factory
or field-installed option provides true
discharge air sensing in heating models.
This sensor is a status indicator readable
through Tracer™ or Tracker™ .
Clogged Filter/Fan Failure Switch —
A factory or field-installed dedicated
differential pressure switch is available
to achieve active fan failure indication
and/or clogged filter indication. These
indications will be registered with either
a zone sensor with status indication
lights or an Integrated Comfort™ system.
Black Epoxy Coated Condenser Coil —
The coil provides corrosion protection to
condenser coils for seacoast application.
The protection is a factory applied
thermoset vinyl coating, bonded to
normal aluminum fin stock. The uniform
thickness of the bonded vinyl layer
exhibits excellent corrosion protection in
salt spray tests.
assemblies shall provide single-point
connection.
Manual Outside Air Damper — Factory
or field-installed rain hood and screen
shall provide up to 50 pecent outside air.
Roof Curb — The roof curb shall be
designed to mate with the downflow
supply and return openings and provide
support and a water tight installation
when installed properly.The roof curb
design shall allow field-fabricated
rectangular supply/return ductwork to be
connected directly to the curb. Curb shall
be shipped knocked down for field
assembly and shall include wood nailer
strips.
Motorized Outside Air Dampers —
Factory or field-installed manually set
outdoor air dampers shall provide up to
50 percent outside air. Once set, outdoor
air dampers shall open to set position
when indoor fan starts. The damper
shall close to the full closed position
when indoor fan shuts down.
Oversized Motors — Factory or field-
installed direct drive oversized motors
shall be available for high static
applications.
Economizer — shall be either field or
factory-installed and shall be available
with or without barometric relief. The
assembly includes fully modulating 0-
100 percent motor and dampers, relief,
minimum position setting, preset
linkage, wiring harness with plug, spring
return actuator and fixed dry bulb. The
barometric relief damper provide a
pressure operated damper that shall be
gravity closing and shall prohibit
entrance of outside air during the
equipment “ off” cycle. Solid state
enthalpy and differential enthalpy
control shall be factory or field-installed
options. The factory-installed
economizer arrives in the shipping
position and shall be moved to the
operating position by the installing
contractor.
PKGP-PRC004-EN
48
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Mechanical
Specifications
Reference Enthalpy Control — Replaces
the dry bulb control with a wet bulb
changeover controller which has a fully
adjustable set point. Enthalpy control
offers a higher level of comfort control,
along with energy savings potential,
than the standard dry bulb control. This
is due to the additional wet bulb sensing
capability.This option can be field-
installed or factory-installed with the
factory-installed economizer.
Control Options
COMM3/4 Trane Communications
Interface — An option for a factory or
field-installed Trane Communication
Interface is available to allow twisted
wire pair communication with an
Integrated Comfort™ system.
Comm-5 LonTalk Communication
Interface — This factory or field-installed
option shall be provided to allow the unit
to communicate as a Trane Comm-5
device or directly with generic LonTalk
Network Building Automation System
Controls.
Differential Enthalpy Control — Replaces
the standard dry bulb control with two
enthalpy sensors that compare total heat
content of the indoor air and outdoor air
to determine the most efficient air
source. This control option offers the
highest level of comfort control, plus
energy efficiency, available.This option
can be field-installed or factory-installed
with the factory-installed economizer.
Zone Sensors — This field-installed
option shall be provided to interface with
the micro equipped Precedent and shall
be available in either manual, automatic,
programmable with night setback, with
system malfunction lights or remote
sensor options.
Differential Pressure Switches — These
factory or field-installed options allow for
individual fan failure and dirty filter
indication. The fan failure switch will
disable all unit functions and “ flash” the
Service LED on the zone sensor.The
dirty filter switch will light the Service
LED on the zone sensor and will allow
continued unit operation.
PKGP-PRC004-EN
49
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Literature Order Number
File Number
PKGP-PRC004-EN
PL-UN-000-PKGP-PRC004-EN-0103
New
Trane
Supersedes
A business of American Standard Companies
www.trane.com
Stocking Location
Webb/Mason
For more information, contact your local district
Trane has a policy of continuous product and product data improvement and reserves the right to change
design and specifications without notice.
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