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CONSTANT VOLUME 2-STAGE CONTROL (
BP.CF
= 1
)
OPERATION — Two exhaust fan relays will be turned on and
off based on economizer position. The two trip set points are
BP.P1
and
BP.P2
. If the economizer is greater than or equal
to
BP.P1
, then power exhaust stage 1 is requested and a
60-second timer is initialized. If the economizer is 5% below
the
BP.P1
, then power exhaust stage 1 is turned off. Also, if the
economizer position is less than
BP.P1
and the 60-second timer
has expired, power exhaust stage 1 is turned off. The same
logic applies to the second power exhaust stage, except the
BP.P2
trip point is monitored. If the economizer position is
greater than or equal to
BP.P2
, then power exhaust stage 2
is energized and a 60-second timer is initialized. If the econo-
mizer is 5% below the
BP.P2
the second power exhaust
stage turned off. If the economizer is less than
BP.P2
and the
60-second timer has expired, second stage power exhaust is
turned off.
For
BP.CF
=1
, the Table 82 illustrates the power exhaust
stages 1 and 2, relay combinations based upon
Configuration
BP.MT
(4 or 6 motors).
MULTIPLE POWER EXHAUST STAGE BUILDING
PRESSURE CONTROL (
BP.CF
= 2
) OPERATION —
Building pressure control is active whenever the supply fan is
running. The control algorithm to be used (
BP.SL
=1
) is a timed
threshold technique for bringing stages of power exhaust on
and off.
The number of power exhaust stages available for this con-
trol algorithm is a function of the number of motors it supports.
This number of motors is defined by the
Configuration
BP
BP.MT
configuration. Table 83 illustrates the staging tables
for this control algorithm based on
BP.MT
.
The following configurations are used in the controlling of
building pressure with this algorithm:
•
Configuration
BP
B.CFG
BP.HP
(building pressure
high threshold level)
•
Configuration
BP
B.CFG
BP.LP
(building pressure
low threshold level)
•
Configuration
BP
B.CFG
BP.TM
(building pressure
timer)
This control function is allowed to add or select power ex-
haust stages at any time, except that a delay time must expire
after a stage is added or subtracted. Any time a stage change is
made, a timer is started which delays staging for 10 *
BP.TM
seconds. The default for
BP.TM
is 1, therefore the delay
between stage changes is set to 10 seconds.
The logic to add or subtract a stage of power exhaust is as
follows:
• If building pressure (
Pressures
AIR.P
BP
) is greater
than the building pressure set point (
Configuration
BP
BPSP
) plus the building pressure high threshold level
(
Configuration
BP
B.CFG
BP.HP
)
add
a stage of
power exhaust.
Table 81 — Building Pressure Configuration
*Some configurations are machine dependent.
Table 82 — Power Exhaust Staging (
BP.CF
= 1)
ITEM
EXPANSION
RANGE
UNITS
CCN POINT
DEFAULT
BP
BUILDING PRESS. CONFIG
BP.CF
Building Press. Config
0-3
BLDG_CFG
0*
BP.RT
Bldg.Pres.PID Run Rate
5-120
sec
BPIDRATE
10
BP.P
Bldg. Press. Prop. Gain
0-5
BLDGP_PG
0.5
BP.I
Bldg.Press.Integ.Gain
0-2
BLDGP_IG
0.5
BP.D
Bldg.Press.Deriv.Gain
0-5
BLDGP_DG
0.3
BP.SO
BP Setpoint Offset
0.0 - 0.5
"H2O
BPSO
0.05
BP.MN
BP VFD Minimum Speed
0-100
%
BLDGPMIN
10
BP.MX
BP VFD Maximum Speed
0-100
%
BLDGPMAX
100
BP.FS
VFD/Act. Fire Speed/Pos.
0-100
%
BLDGPFSO
100
BP.MT
Power Exhaust Motors
1-2
PWRM
1*
BP.S
Building Pressure Sensor
Enable/Dsable
BPSENS
Dsable*
BP.R
Bldg Press (+/–) Range
0 - 1.00
"H2O
BP_RANGE
0.25
BP.SP
Building Pressure Setp.
-0.25 -> 0.25
"H2O
BPSP
0.05
BP.P1
Power Exhaust On Setp.1
0 - 100
%
PES1
35
BP.P2
Power Exhaust On Setp.2
0 - 100
%
PES2
75
B.CFG
BP ALGORITHM CONFIGS
BP.SL
Modulating PE Alg. Slct.
1-3
BPSELECT
1
BP.TM
BP PID Evaluation Time
0 - 10
min
BPPERIOD
1
BP.ZG
BP Threshold Adjustment
0.1 - 10.0
"H2O
BPZ_GAIN
1
BP.HP
High BP Level
0 - 1.000
"H2O
BPHPLVL
0.05
BP.LP
Low BP Level
0 - 1.000
"H2O
BPLPLVL
0.04
BP.MT
= 1 (4 motors)
PE.A
PE.B
PE.C
Power Exhaust Stage 0
OFF
OFF
OFF
Power Exhaust Stage 1
OFF
ON
OFF
Power Exhaust Stage 2
ON
ON
ON
BP.MT
= 2 (6 motors)
PE.A
PE.B
PE.C
Power Exhaust Stage 0
OFF
OFF
OFF
Power Exhaust Stage 1
OFF
OFF
ON
Power Exhaust Stage 2
ON
ON
ON
Содержание WEATHERMAKER 48/50AJ
Страница 103: ...103 Fig 15 Typical Main Control Box Wiring Schematic 48 50AJ AK AW AY Units cont a48 8355 ...
Страница 104: ...104 Fig 16 Typical Main Control Box Wiring Schematic 48 50A2 A3 A4 A5 Units a48 8355 ...
Страница 105: ...105 TO NEXT PAGE Fig 17 Typical Auxiliary Control Box Wiring Schematic A48 7294 ...
Страница 106: ...106 Fig 17 Typical Auxiliary Control Box Wiring Schematic cont a48 8356 ...
Страница 107: ...107 Fig 18 Typical 2 Stage Gas Heat Wiring Schematic Size 051 and 060 Units Shown a48 8357 ...
Страница 108: ...108 TO NEXT PAGE Fig 19 Typical Staged Gas Heat Wiring Schematic Size 051 and 060 Units Shown A48 7296 ...
Страница 109: ...109 Fig 19 Typical Staged Gas Heat Wiring Schematic Size 051 and 060 Units Shown cont A48 8358 ...
Страница 110: ...110 Fig 20 Typical Electric Heat Control Schematic 50 Series Size 051 and 060 Units Shown a50 8228 ...
Страница 111: ...111 TO NEXT PAGE Fig 21 Typical Power Schematic 48 50AJ AK AW AY051 and 060 Units Shown A48 7298 ...
Страница 112: ...112 FROM PREVIOUS PAGE Fig 21 Typical Power Schematic 48 50AJ AK AW AY051 and 060 Units Shown cont a48 8360 ...
Страница 113: ...113 Fig 22 Typical Power Schematic 48 50A2 A3 A4 A5060 Unit Shown ...
Страница 114: ...114 SW1 SW2 OR DEHUMIDIFY SWITCH Fig 23 Typical Controls Option Wiring Schematic a48 8361 ...
Страница 115: ...115 Fig 24 Typical Small Chassis Component Location Size 020 035 Units a48 8362 ...
Страница 116: ...116 Fig 25 Typical Large Chassis Component Locations Size 036 060 Units A48 7302 ...
Страница 169: ...169 APPENDIX C VFD INFORMATION cont Fig F Internal Enclosure Fan Replacement A48 7716 ...