56
Table 21 – CO
2
Sensor Standard Settings
SETTING
EQUIPMENT
OUTPUT
VENTILATION
RATE
(CFM/
PERSON)
ANALOG
OUTPUT
CO
2
CONTROL
RANGE
(PPM)
OPTIONAL
RELAY
SETPOINT
(PPM)
RELAY
HYSTERESIS
(PPM)
1
Proportional
Any
0---10V
4---20mA
0---2000
1000
50
2
Interface w/Standard Building
Control System
Proportional
Any
2---10V
7---20mA
0---2000
1000
50
3
Exponential
Any
0---10V
4---20mA
0---2000
1100
50
4
Proportional
15
0---10V
4---20mA
0---1100
1100
50
5
Economizer
Proportional
20
0---10V
4---20mA
0---900
900
50
6
Exponential
15
0---10V
4---20mA
1---1100
1100
50
7
Exponential
20
0---10V
4---20mA
0---900
900
50
8
Health & Safety
Proportional
---
0---10V
4---20mA
0---9999
5000
500
9
Parking/Air Intakes/Loading Docks
Proportional
---
0---10V
4---20mA
0---2000
700
50
Table 22 – CO
2
Sensor Standard Settings Economizer Input/Output Logic
INPUTS
OUTPUTS
DEMAND
CONTROL
VENTILATION
(DCV)
ENTHALPY
Y1
Y2
COMPRESSOR
N TERMINAL
OUTDOOR
RETURN
STAGE
1
STAGE
2
OCCUPIED
UNOCCUPIED
DAMPER
Below set (DCV
LED Off)
High (Free Cooling
LED off)
Low
On
On
On
On
Minimum position
Closed
On
Off
On
Off
Off
Off
Off
Off
Low (Free Cooling
LED on)
High
On
On
On
Off
Modulating** (between min.
position and full---open)
Modulating** (between closed
and full---open)
On
Off
Off
Off
Off
Off
Off
Off
Minimum position
Closed
Above set (DCV
LED On)
High (Free Cooling
LED off)
Low
On
On
On
On
Modulating
{{
(between
min. position and DCV
maximum)
Modulating
{{
(between closed
and DCV maximum)
On
Off
On
Off
Off
Off
Off
Off
Low (Free Cooling
LED on)
High
On
On
On
Off
Modulating***
Modulating
{{{
On
Off
Off
Off
Off
Off
Off
Off
* For single enthalpy control, the module compares outdoor enthalpy to the ABCD set point.
{
Power at N terminal determines Occupied/Unoccupied setting: 24 vac (Occupied), now power (Unoccupied).
**Modulating is based on the supply--- air sensor signal.
{{
Modulation is based on the DCV signal.
***Modulation is based on the greater of DCV and supply--- air sensor signals, between minimum position and either maximum position (DCV) or fully open (supply--- air signal).
{{{
Modulating is based on the greater of DCV and supply--- air sensor signals, between closed and wither maximum position (DCV) or fully open (supply--- air signal).
OPERATION
Sequence of Operation—
When free cooling is not available, the
compressor will be controlled by the thermostat. When free cooling
is available, the outdoor--air damper is modulated by the Economizer
control to provide a 50
_
to 55
_
F (10
_
to 12.8
_
C) supply--air
temperature into the zone. As the supply--air temperature fluctuates
above 55
_
(12.8
_
C) or below 50
_
F (10
_
C), the dampers will be
modulated (open or close) to bring the supply--air temperature back
within the set points. For Economizer operation, there must be a
thermostat call for the fan (G). This will move the damper to its
minimum position during the occupied mode.
NOTE
: The DCV Max potentiometer must be colosed (CCW)
when not using CO
2
sensor.
Above 50
_
F (10
_
C) supply--air temperature, the dampers will
modulate from 100% open to the minimum open position. From
50
_
F to 45
_
F (10
_
to 7.2
_
C) supply--air temperature, the dampers
will maintain at the minimum open position. Below 45
_
F (7.2
_
C),
the dampers will be completely shut. As the supply--air temperature
rises, the dampers will come back open to the minimum open position
once the supply--air temperature rises to 48
_
F (8.9
_
C). If power
exhaust is installed, as the outdoor--air damper opens and closes, the
power exhaust fans will be energized and deenergized. If field--
installed accessory CO
2
sensors are connected to the Economizer
control, a demand controlled ventilation strategy will begin to
operate. As the CO
2
level in the zone increases above the CO
2
set
point, the minimum position of the damper will be increased
proportionally. As the CO
2
level decreases because of the increase in
fresh air, the outdoor--air damper will be proportionally closed.
Damper position will follow the higher demand condition from DCV
mode or free cooling mode. Damper movement from full closed to
full open (or vice versa) will take between 1 1/2 and 2 1/2 minutes.
If free cooling can be used as determined from the appropriate
changeover command (dry bulb, enthalpy curve, or differential
enthalpy), a call for cooling (Y1 closes at the thermostat) will cause
the control to modulate the dampers open to maintain the supply air
temperature set point at 50
_
to 55
_
F (10
_
to 12.8
_
C). As the supply
air temperature drops below the set point range of 50
_
to 55
_
F (10
_
to 12.8
_
C), the control will modulate the outdoor--air dampers closed
to maintain the proper supply--air temperature.
574D
--
--
A
Содержание 574D----A
Страница 3: ...3 A09469 Fig 2 574D A24 36 Unit Dimensions 574D A ...
Страница 4: ...4 A09470 Fig 3 574D A42 60 Unit Dimensions 574D A ...
Страница 16: ...16 A09282 Fig 14 208 230 1 60 Connection Wiring Diagram 574D A ...
Страница 17: ...17 A09282 Fig 14 Cont 208 230 1 60 Ladder Wiring Diagram 574D A ...
Страница 18: ...18 A09264 Fig 15 208 230 3 60 Connection Wiring Diagram 574D A ...
Страница 19: ...19 A09264 Fig 15 Cont 208 230 3 60 Ladder Wiring Diagram 574D A ...
Страница 20: ...20 A09265 Fig 16 460 3 60 Connection Wiring Diagram 574D A ...
Страница 21: ...21 A09265 Fig 16 Cont 460 3 60 Ladder Wiring Diagram 574D A ...
Страница 25: ...25 Table 7 Cooling Charging Chart A08490 574D A ...
Страница 50: ...50 A10098 Fig 45 Economizer Wiring Diagram 574D A ...
Страница 51: ...51 A10075 Fig 46 Connection Wiring Diagram 230 3 574D A ...
Страница 52: ...52 A10075 Fig 46 Cont Ladder Wiring Diagram 230 3 574D A ...
Страница 53: ...53 A10087 Fig 47 Connection Wiring Diagram 460 3 574D A ...
Страница 54: ...54 A10087 Fig 48 Ladder Wiring Diagram 460 3 574D A ...
Страница 58: ...58 A10064 Fig 49 574D A 30 36 3 Phase with Economizer 574D A ...
Страница 59: ...59 A10065 Fig 50 574D A 42 60 3 Phase with Economizer 574D A ...