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48
Table 35 — Cooling Configuration
CSB A1 Feedback Alarm (CS.A1)
This configuration is used to enable or disable the compressor
A1 feedback alarm. This configuration must be enabled when-
ever
A1.EN
is enabled.
CSB A2 Feedback Alarm (CS.A2)
This configuration is used to enable or disable the compressor
A2 feedback alarm. This configuration must be enabled when-
ever
A2.EN
is enabled.
CSB A3 Feedback Alarm (CS.A3)
This configuration is used to enable or disable the compressor
A3 feedback alarm. This configuration must be enabled when-
ever
A3.EN
is enabled.
CSB B1 Feedback Alarm (CS.B1)
This configuration is used to enable or disable the compressor
B1 feedback alarm. This configuration must be enabled when-
ever
B1.EN
is enabled.
CSB B2 Feedback Alarm (CS.B2)
This configuration is used to enable or disable the compressor
B2 feedback alarm. This configuration must be enabled when-
ever
B2.EN
is enabled.
CSB B3 Feedback Alarm (CS.B3)
This configuration is used to enable or disable the compressor
B3 feedback alarm. This configuration must be enabled when-
ever
B3.EN
is enabled.
Capacity Threshold Adjust (Z.GN)
This configuration provides an adjustment to the SUMZ Cool-
ing Algorithm for capacity control. The configuration affects
the cycling rate of the cooling stages by raising or lowering the
threshold that demand must build to in order to add or subtract
a stage of cooling. Normally this configuration should not re-
quire any tuning or adjustment. If there is an application where
the unit may be significantly oversized and there are indica-
tions of high compressor cycles, then the Capacity Threshold
Adjust (
Z.GN
) can be used to adjust the overall logic gain.
Normally this is set to 1.0, but the value can be adjusted from
0.1 to 10. As the value of
Z.GN
is increased, the cycling of
cooling stages will be slowed.
Compressor Lockout Temperature (MC.LO)
This configuration defines the outdoor air temperature below
which mechanical cooling is locked out.
Lead/Lag Operation? (LLAG)
This configuration selects the type of lead/lag compressor op-
eration for the unit. There are 3 choices: automatic, circuit A,
and circuit B.
0 = AUTOMATIC
If this configuration is set to “AUTOMATIC”, every time cool-
ing capacity drops to 0%, on the next call for cooling, the con-
trol will start up the first compressor on the circuit that did not
start on the previous cooling cycle.
1 = CIRCUIT A
If this configuration is set to “CIRCUIT A”, every time cooling
capacity drops to 0%, a circuit A compressor is always the first
to start on the next call for cooling.
2 = CIRCUIT B
If this configuration is set to “CIRCUIT B”, every time cooling
capacity drops to 0%, a circuit B compressor is always the first
to start on the next call for cooling.
NOTE: If the unit is configured for a Digital Scroll (
Configura-
tion
COOL
DG.A1
= YES) or Minimum Load Valve (
Config-
uration
COOL
MLV
= ENABLE), then circuit A is always
the lead circuit regardless of the setting of this configuration.
This configuration must be set to 1 (CIRCUIT A) for size 30 to
60 units if an accessory low ambient operation Motormaster
®
V
control is installed on the unit.
If the unit is configured for the Humidi-MiZer
®
adaptive dehu-
midification system, then circuit B automatically becomes the lead
circuit when the unit enters into one of the Humidi-MiZer modes
ITEM
EXPANSION
RANGE
UNITS
CCN POINT
DEFAULT
COOL
COOLING CONFIGURATION
A1.EN
Enable Compressor A1
Enable/Disable
CMPA1ENA
Enable
A2.EN
Enable Compressor A2
Enable/Disable
CMPA2ENA
Enable
A3.EN
Enable Compressor A3
Enable/Disable
CMPA3ENA
Enable
B1.EN
Enable Compressor B1
Enable/Disable
CMPB1ENA
Enable
B2.EN
Enable Compressor B2
Enable/Disable
CMPB2ENA
Enable
B3.EN
Enable Compressor B3
Enable/Disable
CMPB3ENA
Enable
CS.A1
CSB A1 Feedback Alarm
Enable/Disable
CSB_A1EN
Enable
CS.A2
CSB A2 Feedback Alarm
Enable/Disable
CSB_A2EN
Enable
CS.A3
CSB A3 Feedback Alarm
Enable/Disable
CSB_A3EN
Enable
CS.B1
CSB B1 Feedback Alarm
Enable/Disable
CSB_B1EN
Enable
CS.B2
CSB B2 Feedback Alarm
Enable/Disable
CSB_B2EN
Enable
CS.B3
CSB B3 Feedback Alarm
Enable/Disable
CSB_B3EN
Enable
Z.GN
Capacity Threshold Adjst
0.1 to 10.0
Z_GAIN
1
MC.LO
Compressor Lockout Temp
–25 to 55
dF
OATLCOMP
40
LLAG
Lead/Lag Operation ?
Yes/No
LLENABLE
No
M.M.
Motor Master Control ?
Yes/No
MOTRMAST
No
SCT.H
Maximum Condenser Temp
100 to 150
dF
SCT_MAX
115
SCT.L
Minimum Condenser Temp
40 to 90
dF
SCT_MIN
72
DG.A1
A1 is Digital Scroll
Yes/No
DIGCMPA1
No
MC.A1
A1 Min Digital Capacity
10 to 100
%
MINCAPA1
50
DS.AP
Dig Scroll Adjust Delta
0 to 100
%
DSADJPCT
100
DS.AD
Dig Scroll Adjust Delay
15 to 60
sec
DSADJDLY
20
DS.RP
Dig Scroll Reduce Delta
0 to 100
%
DSREDPCT
6
DS.RD
Dig Scroll Reduce Delay
15 to 60
sec
DSREDDLY
30
DS.RO
Dig Scroll Reduction OAT
70 to 120
dF
DSREDOAT
95
DS.MO
Dig Scroll Max Only OAT
70 to 120
dF
DSMAXOAT
105
MLV
Min Load Valve Enable
Enable/Disable
MLV_ENAB
Disable
H.SST
Hi SST Alert Delay Time
5 to 30
min
HSSTTIME
10
RR.VF
Rev Rotation Verified?
Yes/No
REVR_VER
No
CS.HP
Use CSBs for HPS Detect?
Yes/No
CSBHPDET
Yes
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 ...