92
Field Piping
To ensure satisfactory operation and performance, the following points should be noted for the field piping
arrangements of the complete refrigerant cycle.
a) Liquid loops or oil traps must be provided according to the position of the outdoor and the indoor units
(depending on whether the indoor unit is above or below the outdoor unit).
b) Field supplied filter dryer should be provided as close to the expansion valve(s) of the indoor unit
(evaporator) as possible.
c) Field supplied sight glass must be assembled and mounted next to filter dryer.
Maximum Pipe Length And Maximum Number Of Bends
When the pipe is too long, the required refrigerant quantity increases. Both the capacity and reliability drops
as a result. As the number of bends increases, system piping resistance to the refrigerant flow increases,
thus lowering the cooling capacity and the compressor may become defective. If the height difference
between the evaporator and the condenser is excessive, the cooling capacity drops, the lubricating oil return
is retarded, affecting the compressor efficiency adversely.
Always choose the shortest piping path and follow the recommendations as shown below :
Model
Max. Elevation,
m (ft.)
Max. Length,
m (ft)
Max. Total Length,
m (ft.)
Max. of
Bends
MMC 075B
25(82.0)
20 (65.6)
45(147.6)
8
MMC 100B/BR
25(82.0)
20 (65.6)
45(147.6)
8
MMC 125B/BR
25(82.0)
20 (65.6)
45(147.6)
8
MMC 075C/CR
25(82.0)
20 (65.6)
45(147.6)
8
MMC 100C
25(82.0)
20 (65.6)
45(147.6)
8
MMC 150C
25(82.0)
20 (65.6)
45(147.6)
8
CAUTION:
1) Our guarantee on the performance of our air-conditioners is strictly revoked if the height, length
and/or the number of bends of the refrigerant piping system installed is beyond the limit above.
2) Bendings must be carefully made so as not to crush the pipe. Use a pipe bender to bend a pipe
as far as possible.
Maximum Allowable Piping Length & Elevation Difference
25m
25m
Summary of Contents for MDB075B
Page 1: ...MDB 2004 Ducted Split Systems Models MDB 075 750B MDB 125 150C MDB 075 500BR MDB 125CR...
Page 38: ...37 Blower Performance Curves MDB 075B BLOWER PERFORMANCE CURVE...
Page 39: ...38 MDB 100B BLOWER PERFORMANCE CURVE...
Page 40: ...39 MDB 125B BLOWER PERFORMANCE CURVE...
Page 41: ...40 MDB 125C BLOWER PERFORMANCE CURVE...
Page 42: ...41 MDB 150B BLOWER PERFORMANCE CURVE...
Page 43: ...42 MDB 150C BLOWER PERFORMANCE CURVE...
Page 44: ...43 MDB 200B BLOWER PERFORMANCE CURVE...
Page 45: ...44 MDB 250B BLOWER PERFORMANCE CURVE...
Page 46: ...45 MDB 300B BLOWER PERFORMANCE CURVE L s...
Page 47: ...46 MDB 350B BLOWER PERFORMANCE CURVE...
Page 48: ...47 MDB 400B BLOWER PERFORMANCE CURVE...
Page 49: ...48 MDB 450B BLOWER PERFORMANCE CURVE...
Page 50: ...49 MDB 500B BLOWER PERFORMANCE CURVE...
Page 51: ...50 MDB 600B BLOWER PERFORMANCE CURVE...
Page 52: ...51 MDB 750B BLOWER PERFORMANCE CURVE...
Page 60: ...59 MODEL MMC 075C CR MODEL MMC 100C...
Page 61: ...60 MODEL MMC 125BR 150C STANDARD VERTICAL DISCHARGE NON CONVERTIBLE...
Page 70: ...69 MODEL INDOOR MDB 600B4 WITH SEQUENTIAL CONTROLLER OUTDOOR MMC 150C x 4...
Page 71: ...70 MODEL INDOOR MDB 750B5 WITH MAGNETIC CONTACTOR OUTDOOR MMC 150C x 5 INDOOR AUXILLARY C1 C1...
Page 72: ...71 Wiring Diagrams Heatpump INDOOR EXPORT MODEL MDB 075 100BR C3 0B MODEL MDB 125CR EXPORT...
Page 73: ...72 MODEL MDB 150 200 250 BR2 EXPORT MODEL MDB 300 350 BR3 EXPORT...
Page 74: ...73 MODEL MDB 400 500 BR4 EXPORT...
Page 84: ...83 Refrigerant Circuit Diagram MODEL MMC 075C 100C...
Page 85: ...84 MODEL MMC 075B 100B 125B 150C...
Page 86: ...85 MODEL MMC 075CR WITH CAPILLARY TUBE EXPANSION SPECIFICATION...
Page 87: ...86 MODEL MMC 100BR 125BR WITH CAPILLARY TUBE EXPANSION SPECIFICATION...
Page 88: ...87 MODEL MMC 075CR WITH THERMAL EXPANSION VALVE SPECIFICATION...
Page 89: ...88 MODEL MMC 100BR 125BR WITH THERMAL EXPANSION VALVE SPECIFICATION...
Page 101: ...100 SEQUENTIAL CONTROLLER BLOCK DIAGRAM...
Page 163: ...2004 McQuay International 1 800 432 1342 www mcquay com ISO 9002 REGISTERED...