98
Table 77 — Display Configuration
Table 78 — Supply Fan VFD Configuration
*This default is model number dependent.
Table 79 — Exhaust Fan VFD Configuration
*This default is model number dependent.
EXHAUST FAN VFD CONFIGURATION
The sub-menu that contains these configurations is located at
the local display under
Configuration
E.VFD
.
VFD2 Nominal Motor Volts (N.VLT)
This configuration defines the nominal motor voltage. This val-
ue must equal the value on the motor rating plate. This value sets
the maximum drive output voltage supplied to the motor.
NOTE: The VFD cannot supply the motor with a voltage greater
than the voltage supplied to the VFD input. Power to the VFD must
be cycled for a change to this configuration to take effect.
VFD2 Nominal Motor Amps (N.AMP)
This configuration defines the nominal motor current. This val-
ue must equal the value defined in:
• the High-Capacity Power Exhaust Systems Motor Limita-
tions table (Table 28) if
BP.CF
=4
• the Supply Fan Motor Limitations table (Table 26) if
BP.CF
=5
• the Optional VFD Power Exhaust Motor Limitations table
(Table 80) if
BP.CF
=3
Power to the VFD must be cycled in order for a change to this
configuration to take effect.
VFD2 Nominal Motor Freq (N.FRQ)
This configuration defines the nominal motor frequency. This
value must equal the value on the motor rating plate. This val-
ue sets the frequency at which the output voltage equals the
Nominal Motor Volts (
N.VLT
). Power to the VFD must be cy-
cled in order for a change to this configuration to take effect.
Table 80 — Optional VFD Power Exhaust (PE) Motor
Limitations (FLA)
VFD2 Nominal Motor RPM (N.RPM)
This configuration defines the nominal motor speed. This value
must equal the value on the motor rating plate. Power to the VFD
must be cycled for a change to this configuration to take effect.
VFD2 Nominal Motor HPwr (N.PWR)
This configuration defines the nominal motor power. This value
must equal the value of the combined HP of both motors. Motor
HP is found on the motor rating plate. Power to the VFD must be
cycled in order for a change to this configuration to take effect.
VFD2 Motor Direction (M.DIR)
This configuration sets the direction of motor rotation. Motor
direction change occurs immediately upon a change to this
configuration. Power to the VFD need
NOT
be cycled for a
change to this configuration to take effect.
ITEM
EXPANSION
RANGE
UNITS
CCN POINT
DEFAULT
TEST
Test Display LEDs
ON/OFF
TEST
Off
METR
Metric Display
ON/OFF
DISPUNIT
Off
LANG
Language Selection
0-1(multi-text strings)
LANGUAGE
0
PAS.E
Password Enable
ENABLE/DISABLE
PASS_EBL
Enable
PASS
Service Password
0000-9999
PASSWORD
1111
ITEM
EXPANSION
RANGE
UNITS
CCN POINT
DEFAULT
S.VFD
SUPPLY FAN VFD CONFIG
N.VLT
VFD1 Nominal Motor Volts
0 to 999
Volts
VFD1NVLT
460*
N.AMP
VFD1 Nominal Motor Amps
0 to 999
Amps
VFD1NAMP
55.0*
N.FRQ
VFD1 Nominal Motor Freq
10 to 500
Hz
VFD1NFRQ
60
N.RPM
VFD1 Nominal Motor RPM
50 to 30000
RPM
VFD1NRPM
1750
N.PWR
VFD1 Nominal Motor HPwr
0 to 500
HP
VFD1NPWR
40*
M.DIR
VFD1 Motor Direction
0=FWD, 1=REV
VFD1MDIR
0
ACCL
VFD1 Acceleration Time
0 to 1800
sec
VFD1ACCL
30
DECL
VFD1 Deceleration Time
0 to 1800
sec
VFD1DECL
30
SW.FQ
VFD1 Switching Frequency
0=1kHz, 1=4kHz, 2=8kHz, 3=12kHz
VFD1SWFQ
2
TYPE
VFD1 Type
0=LEN, 1=ANALOG
VFD1TYPE
0
ITEM
EXPANSION
RANGE
UNITS
CCN POINT
DEFAULT
E.VFD
EXHAUST FAN VFD CONFIG
N.VLT
VFD2 Nominal Motor Volts
0 to 999
Volts
VFD2NVLT
460*
N.AMP
VFD2 Nominal Motor Amps
0 to 999
Amps
VFD2NAMP
28.7*
N.FRQ
VFD2 Nominal Motor Freq
10 to 500
Hz
VFD2NFRQ
60
N.RPM
VFD2 Nominal Motor RPM
50 to 30000
RPM
VFD2NRPM
1750
N.PWR
VFD2 Nominal Motor HPwr
0 to 500
H.P.
VFD2NPWR
20*
M.DIR
VFD2 Motor Direction
0=FWD, 1=REV
VFD2MDIR
0
ACCL
VFD2 Acceleration Time
0 to 1800
sec
VFD2ACCL
30
DECL
VFD2 Deceleration Time
0 to 1800
sec
VFD2DECL
30
SW.FQ
VFD2 Switching Frequency
0=1kHz, 1=4kHz, 2=8kHz, 3=12kHz
VFD2SWFQ
2
TYPE
VFD2 Type
0=LEN, 1=ANALOG
VFD2TYPE
0
Power
Exhaust HP
UNIT VOLTAGE
208/230
380
460
575
High Efficiency PE
6
20.4
10.0
9.6
7.6
10
30.6
18.2
12.8
10.2
15
44.8
24.4
19.4
15.6
20
58.6
32.4
26.8
20.6
Premium Efficiency PE
6
16.0
—
8.0
—
10
29.4
—
13.6
—
15
43.0
—
19.4
—
20
56.0
—
25.2
—
Summary of Contents for Weathermaster 48P2030-100
Page 130: ...130 Fig 19 Typical Power Schematic Sizes 040 075 Shown ...
Page 131: ...131 Fig 20 Main Base Board Input Output Connections ...
Page 132: ...132 Fig 21 RXB EXB CEM SCB Input Output Connections ...
Page 133: ...133 Fig 22 Typical Gas Heat Unit Control Wiring 48P030 100 Units Shown ...
Page 134: ...134 Fig 23 Typical Electric Heat Wiring 50P030 100 Units Shown ...
Page 135: ...135 Fig 24 Typical Power Wiring 115 V ...
Page 136: ...136 Fig 25 Typical Gas Heat Section Size 030 050 Units Shown ...
Page 138: ...138 Fig 27 Component Arrangement Size 030 035 Units ...
Page 139: ...139 Fig 28 Component Arrangement Size 040 075 Units ...
Page 140: ...140 Fig 29 Component Arrangement Size 090 100 Units ...