87
•
IQ.I.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 unoccu
-
pied period.
Economizer Min Position (Configuration
IAQ
DCV.C
EC.MN)
This is the fully occupied minimum economizer position.
IAQ Demand Vent Min Pos. (Configuration
IAQ
DCV.C
IAQ.M)
This configuration will be used to set the minimum damper po
-
sition in the occupied period when there is no IAQ demand.
IAQ Econo Override Pos (Configuration
IAQ
AQ.SP
IQ.O.P)
This configuration is the position that the economizer goes to
when override is in effect.
TOAQ 4-20 mA Sensor Config (Configuration
IAQ
AQ.CF
OQ.A.C)
This is used to configure the type of outdoor sensor that will be
used for OAQ levels. It has the following configuration options:
•
OQ.A.C
= 0 (No Sensor) — No sensor will be used and the
internal software reference setting will be used.
•
OQ.A.C
= 1 (OAQ Sensor with DAQ) — An outdoor CO
2
sensor will be used.
•
OQ.A.C
= 2 (4 to 20 mA Sensor without DAQ).
OAQ Lockout Value (Configuration
IAQ
AQ.SP
OAQ.L)
This is the maximum OAQ level above which demand con
-
trolled ventilation will be disabled.
Diff. Air Quality Lo Limit (Configuration
IAQ
AQ.SP
DAQ.L)
This is the differential CO
2
level at which IAQ control of the
dampers will be initiated.
Diff. Air Quality Hi Limit (Configuration
IAQ
AQ.SP
DAQ.H)
This is the differential CO
2
level at which IAQ control of the
dampers will be at maximum and the dampers will be at the
Configuration
IAQ
DCV.C
EC.MN
.
DAQ ppm Fan On Set Point (Configuration
IAQ
AQ.SP
D.F.ON)
This is the CO
2
level at which the indoor fan will be turned on.
DAQ ppm Fan Off Set Point (Configuration
IAQ
AQ.SP
D.F.OF)
This is the CO
2
level at which the indoor fan will be turned off.
IAQ Low Reference (Configuration
IAQ
AQ.S.R
IQ.R.L)
This is the reference that will be used with a non-Carrier IAQ
sensor that may have a different characteristic curve. It rep
-
resents the CO
2
level at 4 mA.
IAQ High Reference (Configuration
IAQ
AQ.SR
IQ.R.H)
This is the reference that will be used with a non-Carrier IAQ
sensor that may have a different characteristic curve. It rep
-
resents the CO
2
level at 4 mA.
OAQ Low Reference (Configuration
IAQ
AQ.S.R
OQ.R.L)
This is the reference that will be used with a non-Carrier OAQ
sensor that may have a different characteristic curve. It rep
-
resents the CO
2
level at 4 mA.
OAQ High Reference (Configuration
IAQ
AQ.S.R
OQ.R.H)
This is the reference that will be used with a non-Carrier OAQ
sensor that may have a different characteristic curve. It rep
-
resents the CO
2
level at 4 mA.
Diff. IAQ Responsiveness (Configuration
IAQ
AQ.SP
IAQ.R)
This is the configuration that is used to select the IAQ response
curves as shown in Fig. 13.
PRE-OCCUPANCY PURGE
The control has the option for a pre-occupancy purge to refresh
the air in the space prior to occupancy.
This feature is enabled by setting
Configuration
IAQ
IAQ.P
IQ.PG
to Yes.
The IAQ Purge will operate under the following conditions:
•
IQ.PG
is enabled
• the unit is in the unoccupied state
• Current Time is valid
• Next Occupied Time is valid
• time is within 2 hours of the next occupied period
• time is within the purge duration (
Configuration
IAQ
IAQ.P
IQ.P.T
)
If all of the above conditions are met, the following logic is used:
If OAT
IQ.L.O
and OAT
OCSP and economizer is avail
-
able, then purge will be enabled, and the economizer will be
commanded to 100%.
Else, if OAT <
IQ.L.O
, then the economizer will be positioned
to the IAQ Purge LO Temp Min Pos (
Configuration
IAQ
IAQ.P
IQ.P.L
)
If neither of the above are true, then the dampers will be posi
-
tioned to the IAQ Purge HI Temp Min Pos (
Configuration
IAQ
IAQ.P
IQ.P.H
)
If this mode is enabled the indoor fan and heat interlock relay
(VAV) will be energized.
IAQ Purge (Configuration
IAQ
IAQ.P
IQ.PG)
This is used to enable IAQ pre-occupancy purge.
IAQ Purge Duration (Configuration
IAQ
IAQ.P
IQ.P.T)
This is the maximum amount of time that a purge can occur.
IAQ Purge Lo Temp Min Pos (Configuration
IAQ
IAQ.P
IQ.P.L)
This is used to configure a low limit for damper position to be
used during the purge mode.
IAQ Purge Hi Temp Min Pos (Configuration
IAQ
IAQ.P
IQ.P.H)
This is used to configure a maximum position for the dampers
to be used during the purge cycle.
IAQ Purge OAT Lockout Temp (Configuration
IAQ
IAQ.P
IQ.L.O)
Nighttime lockout temperature below which the purge cycle
will be disabled.
OPTIONAL AIRFLOW STATION
The
Comfort
Link controls are capable of working with a factory-
installed optional airflow station that measures the amount of out
-
door air entering the economizer. This flow station is intended to
measure ventilation airflows and has a limitation as to the maxi
-
mum flow rate it can measure. The limits are 52,500 cfm for 75 to
105
-
ton units. The limit is 60,000 cfm for 120 to 150-ton units.
All configurations for the outdoor airflow station can be found
in the
Configuration
ECON
CFM.C
submenu. For this al
-
gorithm to function, the Outdoor Air Cfm Sensor Configura
-
tion (
OCF.S
.
) must be enabled (set to 1 or 2).
There are 3 set point configurations:
O.C.MN
— Econ OACFM DCV Min Flow
O.C.MX
— Econ OACFM DCV Max Flow
O.C.DB
— Econ OACFM MinPos Deadbd
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 ...