86
Table 57 —
Indoor Air Quality Configuration
•
IQ.A.C
= 3 (4 to 20 mA minimum position) — With a 4 to
20 mA signal connected to TB201 terminal 7 and 8, the
economizer minimum position will be scaled linearly from
0% (4 mA) to
EC.MN
(20 mA).
•
IQ.A.C
= 4 (10K potentiometer minimum position) — With
a 10K linear potentiometer connected to TB201 terminal 7
and 8, the economizer minimum position will be scaled lin
-
early from 0% (0 ohms) to
EC.MN
(10,000 ohms).
IAQ Analog Fan Config (Configuration
IAQ
AQ.CF
IQ.A.F)
This is used to configure the control of the indoor fan. If this
option is used, the IAQ sensor must be in the space and not in
the return duct. It has the following configurations:
•
IQ.A.F
= 0 (No Fan Start) — IAQ demand will never
override normal indoor fan operation during occupied or
unoccupied period and turn it on.
•
IQ.A.F
= 1 (Fan On If Occupied) — IAQ demand will
override normal indoor fan operation and turn it on (if off)
only during the occupied period (CV operation with auto
-
matic fan).
•
IQ.A.F
= 2 (Fan On Occupied/Unoccupied) — IAQ de
-
mand will always override normal indoor fan operation and
turn it on (if off) during both the occupied and unoccupied
period. For
IQ.A.F
= 1 or 2, the fan will be turned on as de
-
scribed above when DAQ is above the DAQ Fan On Set
Point (
Configuration
IAQ
AQ.SP
D.F.ON
). The fan
will turn off when DAQ is below the DAQ Fan Off Set
Point (
Configuration
IAQ
AQ.SP
D.F.OF
). The con
-
trol can be set up to respond to a discrete IAQ input. The
discrete input is connected to TB202 terminal 12 and 13.
IAQ Discrete Input Config (Configuration
IAQ
AQ.CF
IQ.I.C)
This configuration is used to set the type of IAQ sensor. The
following are the options:
•
IQ.I.C
= 0 (No Discrete Input) — This is used to indicate
that no discrete input will be used and the standard IAQ
sensor input will be used.
•
IQ.I.C
= 1 (IAQ Discrete Input) — This will indicate that
the IAQ level (high or low) will be indicated by the dis
-
crete input. When the IAQ level is low, the economizer
minimum
position
will
be
Configuration
IAQ
DCV.C
IAQ.M
.
•
IQ.I.C
= 2 (IAQ Discrete Input with Minimum Position
Override) — This will indicate that the IAQ level (high or
low) indicated by the discrete input and the economizer
minimum position will be the IAQ override position,
IQ.P.O
(when high). It is also necessary to configure how
the fan operates when using the IAQ discrete input.
IAQ Discrete Fan Config (Configuration
IAQ
AQ.CF
IQ.I.F)
This is used to configure the operation of the fan during an
IAQ demand condition. It has the following configurations:
•
IQ.I.F
= 0 (No Fan Start) — IAQ demand will never over
-
ride normal indoor fan operation during occupied or unoc
-
cupied period and turn it on.
•
IQ.I.F
= 1 (Fan On If Occupied) — IAQ demand will
override normal indoor fan operation and turn it on (if off)
only during the occupied period (CV operation with auto
-
matic fan).
ITEM
EXPANSION
RANGE
UNITS
CCN POINT
DEFAULT
DCV.C
DCV ECONOMIZER SETPOINTS
EC.MN
Economizer Min.Position
0 to 100
%
ECONOMIN
5
IAQ.M
IAQ Demand Vent Min.Pos.
0 to 100
%
IAQMINP
0
O.C.MX
Economizer Min.Flow
0 to 20000
CFM
OACFMMAX
2000
O.C.MN
IAQ Demand Vent Min.Flow
0 to 20000
CFM
OACFMMIN
0
O.C.DB
Econ.Min.Flow Deadband
200 to 1000
CFM
OACFM_DB
400
AQ.CF
AIR QUALITY CONFIGS
IQ.A.C
IAQ Analog Sensor Config
0 to 4
IAQANCFG
0
IQ.A.F
IAQ 4-20 ma Fan Config
0 to 2
IAQANFAN
0
IQ.I.C
IAQ Discrete Input Config
0 to 2
IAQINCFG
0
IQ.I.F
IAQ Disc.In. Fan Config
0 to 2
IAQINFAN
0
OQ.A.C
OAQ 4-20ma Sensor Config
0 to 2
OAQANCFG
0
AQ.SP
AIR QUALITY SETPOINTS
IQ.O.P
IAQ Econo Override Pos.
0 to 100
%
IAQOVPOS
100
IQ.O.C
IAQ Override Flow
0 to 31000
CFM
IAQOVCFM
10000
DAQ.L
Diff.Air Quality LoLimit
0 to 1000
DAQ_LOW
100
DAQ.H
Diff. Air Quality HiLimit
100 to 2000
DAQ_HIGH
700
D.F.OF
DAQ PPM Fan Off Setpoint
0 to 2000
DAQFNOFF
200
D.F.ON
DAQ PPM Fan On Setpoint
0 to 2000
DAQFNON
400
IAQ.R
Diff. AQ Responsiveness
-5 to 5
IAQREACT
0
OAQ.L
OAQ Lockout Value
0 to 2000
OAQLOCK
0
OAQ.U
User Determined OAQ
0 to 5000
OAQ_USER
400
AQ.SR
AIR QUALITY SENSOR RANGE
IQ.R.L
IAQ Low Reference
0 to 5000
IAQREFL
0
IQ.R.H
IAQ High Reference
0 to 5000
IAQREFH
2000
OQ.R.L
OAQ Low Reference
0 to 5000
OAQREFL
0
OQ.R.H
OAQ High Reference
0 to 5000
OAQREFH
2000
IAQ.P
IAQ PRE-OCCUPIED PURGE
IQ.PG
IAQ Purge
No/Yes
IAQPURGE
No
IQ.P.T
IAQ Purge Duration
5 to 60
min
IAQPTIME
15
IQ.P.L
IAQ Purge LoTemp Min Pos
0 to 100
%
IAQPLTMP
10
IQ.P.H
IAQ Purge HiTemp Min Pos
0 to 100
%
IAQPHTMP
35
IQ.L.O
IAQ Purge OAT Lockout
35 to 70
dF
IAQPNTLO
50
Содержание WeatherExpert 48N2
Страница 135: ...135 Fig 18 48 50N Typical Power Schematic Nominal 075 Ton Unit Shown ...
Страница 136: ...136 Fig 19 48 50N Typical Power Schematic Nominal Ton 90 150 Units Shown ...
Страница 137: ...137 Fig 20 48 50N Main Base Board Input Output Connections ...
Страница 138: ...138 Fig 21 48 50N RXB EXB CEM Input Output Connections a48 9307 ...
Страница 139: ...139 Fig 22 48 50N EXV SCB Input Output Connections a48 9308 ...
Страница 140: ...140 Fig 23 48N Typical Modulating Gas Heat Unit Control Wiring ...
Страница 141: ...141 Fig 24 50N Typical Electric Heat Unit Control Wiring ...
Страница 144: ...144 Fig 27 48N Typical Gas Heat Section Wiring Nominal Ton 120 to 150 Units ...
Страница 145: ...145 Fig 28 48 50N Typical Power Component Control Wiring 460 v ...
Страница 146: ...146 Fig 29 48 50N Component Control Wiring 575 v Nominal Ton 075 to 150 Units ...
Страница 147: ...147 Fig 30 48 50N Component Arrangement Power Box ...
Страница 148: ...148 Fig 31 48 50N Component Arrangement Control Box ...
Страница 168: ...168 Fig 47 Sensor and Ignition Position Fig 48 Combustion Blower Details SENSOR DETAILS IGNITION DETAILS ...
Страница 240: ...240 APPENDIX D VFD INFORMATION CONT Fig G VFD Bypass Wiring Diagram WHEN USED ...