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HEAT ANTICIPATOR SETPOINTS

It is important that the anticipator setpoint be correct. Too high
of a setting will result in longer heat cycles and a greater
temperature swing in the conditioned space. Reducing the
value below the correct setpoint will give shorter “ON” cycles
and may result in the lowering of the temperture within the
conditioned space. Refer to the Heat Anticipator Setting Table
for the required heat anticipator setting.

CHECKING SUPPLY AIR CFM

The RPM of the supply air blower will depend on the required
CFM, the unit options/accessories and the static resistances of
both the supply and the return air duct systems. With this
information, the RPM for the supply air blower and the motor
pulley adjustment (turns open) can be determined from the
Blower Performance Data Tables.
High speed drive accessories (containing a smaller blower
pulley and a shorter belt) are available for applications requiring
the supply air blower to produce higher CFM’s and/or higher
static pressures. Use Model 1LD0416 for 15 ton units and
Model 1LD0417 for 20 ton units. Refer to the Blower Motor and
Drive Data table.
Note the following:

1. The supply air CFM must be within the limitations shown in

Unit Application Data table.

2. Pulleys can be adjusted in half turn increments.
3. The tension on the belt should be adjusted as shown in the

Belt Adjustment Figure.

Start the supply air blower motor. Adjust the resistances in both
the supply and the return air duct systems to balance the air
distribution throughout the conditioned space. The job
specifications may require that this balancing be done by
someone other than the equipment installer.
To check the supply air CFM after the initial balancing has been
completed:

1. Remove the two 5/16" dot plugs from the blower motor and

the filter access panels shown in the Dimensions and
Clearances Figure.

2. Insert at least 8" of 1/4 inch tubing into each of these holes

for sufficient penetration into the air flow on both sides of
the indoor coil.

NOTE: The tubes must be inserted and held in a position

perpendicular to the air flow so that velocity pres-
sure will not affect the static pressure readings.

3. Using an inclined manometer, determine the pressure drop

across a dry indoor coil. Since the moisture on an indoor
coil may vary greatly, measuring the pressure drop across
a wet coil under field conditions would be inaccurate. To
assure a dry coil, the compressors whould be de-activated
while the test is being run.

4. Knowing the pressure drop across a dry coil, the actual

CFM through the unit and clean 2" filters, can be
determined from the curve in the figure below.

WARNING: Failure to properly adjust the total system air

quantity can result in extensive blower damage.

After readings have been obtained, remove the tubes and
reinstall the two 5/16" dot plugs that were removed in Step 1.

NOTE:

DE-ENERGIZE THE COMPRESSORS BEFORE TAKING
ANY TEST MEASUREMENTS TO ASSURE A DRY INDOOR
COIL.

BELT DRIVE BLOWER
All units have belt drive single-speed blower motors. The
variable pitch pulley on the blower motor can be adjusted to
obtain the desired supply air CFM.

FIG.9 - BELT ADJUSTMENT

HEATER

KW

VOLTAGE

SETTING, AMPS

TH1

TH2

18

208/230-3-60

0.29

-

36

0.29

0.29

54

0.29

0.58

72

0.58

0.58

18

460-3-60

0.29

-

36

0.29

0.29

54

0.29

0.29

72

0.29

0.29

18

575-3-60

0.29

-

36

0.29

0.29

54

0.29

0.29

72

0.29

0.29

TABLE 13 - HEAT ANTICIPATOR SETTING

FIG. 10 - PRESSURE DROP ACROSS A DRY INDOOR

COIL VS SUPPLY AIR CFM

511.06-N3Y

16

Unitary Products Group

Summary of Contents for B1CH180

Page 1: ...in writing Refer to Form 50 15 NM for additional information REFERENCE Additional information on the design installation operation and service of this equipment is available in the following referenc...

Page 2: ...10 Blower Motor and Drive Data 13 11 Electrical Data Basic Units 14 12 Electrical Data Units w Elec Heat 14 13 Heat Anticipator Setpoints 16 FIGURES No Description Page 1 Typical Rigging 3 2 Center of...

Page 3: ...ion across the unit MUST be used across the top of the unit Refer to the Typical Rigging Figure Units may also be moved or lifted with a forklift from the front or rear only providing that an accessor...

Page 4: ...ndensate drain operates in a negative pressure in the cabinet The condensate drain line MUST be trapped to provide proper drainage COMPRESSORS Units are shipped with compressor mountings factory adjus...

Page 5: ...same minimum gauge as the replaced wire Electrical line must be sized properly to carry the load Each unit must be wired with a separate branch circuit fed directly from the meter panel and properly f...

Page 6: ...the setpoint and minimum position adjusting screws to prevent twisting them off 1 The enthalpy set point may now be set by selecting the desired setpoint shown in the Adjusting Enthalpy Setpoint Figur...

Page 7: ...FIG 6 ENTHALPY SETPOINT ADJUSTMENT 511 06 N3Y Unitary Products Group 7...

Page 8: ...COMPRESSOR Qty Per Unit 7 1 2 TON TANDEM 2 10 TON TANDEM 2 AIR FILTERS QUANTITY PER UNIT 16 X 20 X 2 4 QUANTITY PER UNIT 16 X 25 X 2 4 QUANTITY PER UNIT 18 X 24 X 2 5 TOTAL FACE AREA sq ft 15 0 20 0...

Page 9: ...TION OUTDOOR SECTION Front 36 Back 24 Less Economizer 49 With Economizer Left Side Filter Access 24 Less Economizer 36 3 With Economizer 4 Right Side Cond Coil 36 Below Unit1 20 Above Unit2 72 With 36...

Page 10: ...535 583 559 240 2 390 514 538 684 654 NOTE These weights are with economizer and 36kW electric heat UNIT 6 POINT LOADS LBS TOTAL A B C D E F 180 2 190 342 358 373 388 372 357 240 2 390 343 359 407 45...

Page 11: ...7 4 2 1 8 5 5 4 9 230 460 575 VOLT AND STANDARD DRIVE 870 6 0 1 0 2 4 2 2 0 8 3 1 2 8 0 6 3 5 3 1 0 2 4 1 3 7 915 5 0 1 1 2 6 2 4 0 9 3 3 3 0 0 7 3 7 3 3 0 3 4 4 3 9 0 2 4 5 4 0 965 4 0 1 2 2 9 2 6 1...

Page 12: ...0 8 3 2 2 7 0 5 3 5 2 9 0 2 3 8 3 2 930 4 0 1 1 4 1 3 4 0 9 4 5 3 8 0 6 4 9 4 1 0 1 5 1 4 3 950 3 5 1 3 4 6 3 9 1 1 5 1 4 3 0 8 5 5 4 6 0 4 5 9 5 0 980 2 5 1 6 5 3 4 5 1 4 5 8 4 9 1 2 6 3 5 3 0 7 6 9...

Page 13: ...Access 950 1120 BK110 10 75 10 4 1 3 16 BX80 81 8 1 1 All motors have a nominal speed of 1800 RPM a 1 15 service factor and a solid base They can operate to the limit of their service factor because t...

Page 14: ...37 5 75 1 112 6 150 1 133 0 133 0 179 9 179 9 150 150 200 200 230 3 60 E018 E036 E054 E072 18 0 36 0 54 0 72 0 1 2 2 2 43 3 86 6 129 9 173 2 141 4 141 4 195 5 195 5 150 150 200 200 180A46 460 3 60 E01...

Page 15: ...perature as monitored by the discharge air sensor If the outdoor air enthalpy is above the setpoint Y1 energizes compressor 1 outdoor fan motor 1 and outdoor fan motor 2 if the ambient temperature is...

Page 16: ...ler To check the supply air CFM after the initial balancing has been completed 1 Remove the two 5 16 dot plugs from the blower motor and the filter access panels shown in the Dimensions and Clearances...

Page 17: ...is energized The defrost time cycle will restart 10 minutes after the start of the defrost cycle even though the liquid sensor terminated defrost after 3 minutes During troubleshooting the defrost tim...

Page 18: ...r equivalent into the bearing cavity until new grease shows at the open port Do not over lubricate Run the motor for ten minutes until excess grease is purged from the cavity Replace the plugs On 20 t...

Page 19: ...511 06 N3Y Unitary Products Group 19...

Page 20: ...Code SBY 511 06 N3Y 5005 York Drive Norman OK 73069 Subject to change without notice Printed in U S A Copyright by York International Corporation 2000 All Rights Reserved...

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