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APPENDIX C — VARIABLE FREQUENCY DRIVE (VFD) (cont)
Table U — VFD Motor Default Configurations (cont)
For proper operation, there are three jumper wires that must re-
main installed and the VFD must be set to the auto mode. The
3 jumpers are shown on the unit schematic and are connected
through a plug called PL25. These jumpers set the VFD to start
enabled, run enabled, and tie the common bus together. The
VFD has 2 LEDs on its front panel to indicate operating status.
See below and VFD Troubleshooting section for details on
VFD faults and alarms. The VFD faults can be reset with the
VFD keypad or through the
Comfort
Link controls
(Alarms
R.CUR =Yes).
The Green LED on steady indicates power is on the VFD,
flashing Green indicates an alarm condition detected. Alarms
are advisory in nature. These indicate a problem has been de-
tected by the VFD’s diagnostics but this problem will not re-
quire a shutdown.
The Red LED steady or flashing indicates a fault condition is
detected. A fault is a significant internal situation for the VFD
or Motor. Faults will typically shutdown the motor.
VFD Diagnostics
The drive detects error situations and reports them using:
1. Green and red LEDs on the body of the drive (located
under the keypad)
2. Status LED on the control panel
3. Control panel display
4. The Fault Word and Alarm Word parameter bits (parame-
ters 0305 to 0309)
The form of the display depends on the severity of the error.
The user can specify the severity for many errors by directing
the drive to ignore the error situation, report the situation as an
alarm, or report the situation as a fault.
FAULTS (RED LED LIT)
The VFD signals that it has detected a severe error, or fault, by:
1. Enabling the red LED on the drive (LED is either steady
or flashing)
2. Setting an appropriate bit in a Fault Word parameter (0305
to 0307)
3. Overriding the control panel display with the display of a
fault code
4. Stopping the motor (if it was on)
5. Sets an appropriate bit in Fault Word parameter 0305-
0307.
UNIT SIZE
(Digits 7 & 8)
UNIT
VOLTAGE
(Digit 12)
UNIT STATIC
OPTION
(Digit 10)
COMFORTLINK CCN POINT (DISPLAY MENU ITEM)
VFD1NVLT
(N.VLT)
VFD1NAMP
(N.AMP)
VFD1NFRQ
(N.FRQ)
VFD1NRPM
(N.RPM)
VFD1NPWR
(N.PWR)
VFD1MAXA
(MAX.A)
24
208/230v(5)
V-Low (1)
230
13.6
60Hz
1740
5.3
15.6
V-Medium (2)
230
17.1
60Hz
1760
5.0
19.7
V-High (3)
230
23.5
60Hz
1760
7.5
27.0
H-Low (5)
230
13.6
60Hz
1740
5.3
15.6
H-Medium (6)
230
17.1
60Hz
1760
5.0
19.7
H-High (7)
230
23.5
60Hz
1760
7.5
27.0
460v(6)
V-Low (1)
460
6.4
60Hz
1740
5.3
7.4
V-Medium (2)
460
8.6
60Hz
1760
5.0
9.9
V-High (3)
460
11.9
60Hz
1760
7.5
13.7
H-Low (5)
460
6.4
60Hz
1740
5.3
7.4
H-Medium (6)
460
8.6
60Hz
1760
5.0
9.9
H-High (7)
460
11.9
60Hz
1760
7.5
13.7
575v(1)
V-Low (1)
575
6.0
60Hz
1725
5.3
6.9
V-Medium (2)
575
7.6
60Hz
1745
5.0
8.7
V-High (3)
575
9.0
60Hz
1750
7.5
10.4
H-Low (5)
575
6.0
60Hz
1725
5.3
6.9
H-Medium (6)
575
7.6
60Hz
1745
5.0
8.7
H-High (7)
575
9.0
60Hz
1750
7.5
10.4
28
208/230v(5)
V-Low (1)
230
13.6
60Hz
1740
5.3
15.6
V-Medium (2)
230
17.1
60Hz
1760
5.0
19.7
V-High (3)
230
23.5
60Hz
1760
7.5
27.0
H-Low (5)
230
13.6
60Hz
1740
5.3
15.6
H-Medium (6)
230
17.1
60Hz
1760
5.0
19.7
H-High (7)
230
23.5
60Hz
1760
7.5
27.0
460v(6)
V-Low (1)
460
6.4
60Hz
1740
5.3
7.4
V-Medium (2)
460
8.6
60Hz
1760
5.0
9.9
V-High (3)
460
11.9
60Hz
1760
7.5
13.7
H-Low (5)
460
6.4
60Hz
1740
5.3
7.4
H-Medium (6)
460
8.6
60Hz
1760
5.0
9.9
H-High (7)
460
11.9
60Hz
1760
7.5
13.7
575v(1)
V-Low (1)
575
6.0
60Hz
1725
5.3
6.9
V-Medium (2)
575
7.6
60Hz
1745
5.0
8.7
V-High (3)
575
9.0
60Hz
1750
7.5
10.4
H-Low (5)
575
6.0
60Hz
1725
5.3
6.9
H-Medium (6)
575.0
7.6
60Hz
1745.0
5.0
8.7
H-High (7)
575.0
9.0
60Hz
1750.0
7.5
10.4
Содержание /50HC 04-28
Страница 61: ...61 Fig 21 Saturated Condensing Temperature Thermistor Location 48 50HC 14 SCT B SCT A CIRCUIT B CIRCUIT A ...
Страница 69: ...69 Fig 24 Typical Control Diagram for 48HC 04 14 Units 48HC 08 09 shown ...
Страница 70: ...70 Fig 25 Typical Power Diagram for 48HC 04 14 Units 48HC 08 09 shown ...
Страница 71: ...71 Fig 26 Typical Control Diagram for 50HC 04 14 Units 50HC 14 shown ...
Страница 72: ...72 Fig 27 Typical Power Diagram for 50HC 04 14 Units 50HC 14 Non Humidi MiZer shown ...
Страница 73: ...73 Fig 28 Typical Control Diagram 48HC 17 28 Units ...
Страница 74: ...74 Fig 29 Typical Control Diagram 50HC 17 28 Units ...
Страница 75: ...75 Fig 30 Typical Humid MiZer Power Diagram and Component Arrangement 48 50HC 17 28 Units ...
Страница 76: ...76 Fig 31 Typical Non Humid MiZer Power Diagram and Component Arrangement 48 50HC 17 28 Units ...
Страница 89: ...89 Fig 42 Modulating ERV Wiring Schematic ...
Страница 90: ...90 Fig 43 EnergyX ERV Control Box Component Layouts ...
Страница 101: ...101 Fig 59 Exhaust Fan Assembly Removal Exhaust Fan Assembly ...
Страница 141: ......