(Page 16 of 64)
TTJ-0197 (1/97)
COMPONENTS OPERATION & TESTING
WARNING
DISCONNECT ELECTRICAL POWER TO
UNIT BEFORE SERVICING OR TESTING
COMPRESSORS
Compressors are single phase, 115 or 230/208 volt,
depending on the model unit. All compressor motors
are permanent split capacitor type using only a running
capacitor across the start and run terminal.
All compressors are internally spring mounted and ex-
ternally mounted on rubber isolators.
COMPRESSOR WINDING TEST (See Figure 1)
Remove compressor terminal box cover and discon-
nect wires from terminals. Using an ohmmeter, check
continuity across the following:
1.
Terminal “C” and “S” - no continuity - open wind-
ing - replace compressor.
2.
Terminal “C” and “R” - no continuity - open wind-
ing - replace compressor.
3.
Terminal “R” and “S” - no continuity - open wind-
ing - replace compressor.
GROUND TEST
Use an ohmmeter set on its highest scale. Touch one
lead to the compressor body (clean point of contact as
a good connection is a must) and the other probe in
turn to each compressor terminal (see Figure 2.) If a
reading is obtained, the compressor is grounded and
must be replaced.
Figure 2:
Typical Ground Test
CHECKING COMPRESSOR EFFICIENCY
The reason for compressor inefficiency is normally due
to broken or damaged suction and/or discharge valves,
reducing the ability of the compressor to pump refrig-
erant gas.
This condition can be checked as follows:
1.
Install a piercing valve on the suction and dis-
charge or liquid process tube.
2.
Attach gauges to the high and low sides of the
system.
3.
Start the system and run a “cooling or heating
performance test.”
If test shows:
A. Below normal high side pressure.
B. Above normal low side pressure.
C. Low temperature difference across coil.
The compressor valves are faulty - replace the
compressor.
THERMAL OVERLOAD (External)
Some compressors are equipped with an external over-
load which is located in the compressor terminal box
adjacent to the compressor body (see Figure 3.)
Figure 1:
Compressor Winding Test
Summary of Contents for YL24J35
Page 7: ...TTJ 0197 1 97 Page 7 of 64 COOLING LOAD ESTIMATE FORM...
Page 9: ...TTJ 0197 1 97 Page 9 of 64...
Page 14: ...Page 14 of 64 TTJ 0197 1 97...
Page 26: ...Page 26 of 64 TTJ 0197 1 97...
Page 27: ...TTJ 0197 1 97 Page 27 of 64...
Page 28: ...Page 28 of 64 TTJ 0197 1 97...
Page 29: ...TTJ 0197 1 97 Page 29 of 64...
Page 30: ...Page 30 of 64 TTJ 0197 1 97...
Page 31: ...TTJ 0197 1 97 Page 31 of 64...
Page 32: ...Page 32 of 64 TTJ 0197 1 97...
Page 33: ...TTJ 0197 1 97 Page 33 of 64...
Page 34: ...Page 34 of 64 TTJ 0197 1 97...
Page 35: ...TTJ 0197 1 97 Page 35 of 64...
Page 36: ...Page 36 of 64 TTJ 0197 1 97...
Page 37: ...TTJ 0197 1 97 Page 37 of 64 WIRING DIAGRAM FOR MODELS YS13J33 YM18J34A YL24J35...
Page 39: ...TTJ 0197 1 97 Page 39 of 64...
Page 40: ...Page 40 of 64 TTJ 0197 1 97...
Page 46: ...Page 46 of 64 TTJ 0197 1 97...
Page 47: ...TTJ 0197 1 97 Page 47 of 64...
Page 52: ...Page 52 of 64 TTJ 0197 1 97...
Page 53: ...TTJ 0197 1 97 Page 53 of 64...
Page 57: ...TTJ 0197 1 97 Page 57 of 64...
Page 58: ...Page 58 of 64 TTJ 0197 1 97...