IOMM AGZ-3
AGZ 035A through 065A
41
Figure 21, Zone Temperature Reset
LWRB
LWSP
ZTLL
ZTHL
ZTRB
(ZTLL=ZTHL - ZTRB)
As the Zone Temperature increases above the Zone Temperature Low Limit (ZTLL), the controller
decreases the Actual Leaving Water Setpoint from its Leaving High Limit (Leaving Water Setpoint
plus Leaving Reset Band) to the Leaving Water Setpoint. When the Zone Temperature reaches the
ZTHL, the Actual Leaving Water Setpoint equals the Leaving Water Setpoint (AI-4). If the Zone
Temperature sensor is missing or unreliable, no reset occurs and the Actual Leaving Water Setpoint
equals the Leaving Water Setpoint. If the Leaving Water Sensor (AI-1) becomes unreliable, the
compressor command is forced to 0%.
The Zone Terminal is required to activate and change the reset values.
Figure 22, RESET DIP SWITCH CONFIGURATION
OUTSIDE AIR / RETURN WATER / ZONE TEMPERATURE
Switch
1
2
3
4
5
6
On (10V)
X
X
X
X
SW2
Off (2V)
X
X
On (T)
X
X
SW1
Off (V)
X
X
X
X
Remote Reset
(
2 to 10VDC input
)
When selected, a 2 to 10Vdc signal is connected to TB-7 terminals #134 and #135. This input can be
achieved by using a 4-20ma signal and conditioning it with a 500 ohm resistor. This input resets the
leaving water temperature to a higher value based on the reset input signal magnitude. At a 2Vdc
(4ma) chiller signal input, the controller uses the Setpoint Dial setting. At a 10Vdc (20ma) signal
input, the controller adds the reset value to the Dial Setpoint for the controlling temperature.
Between 2Vdc and 10Vdc, a proportional value is added to the Dial Setpoint for the controlling
temperature. The leaving water temperature can be reset upwards an additional 15
o
F. The Zone
Terminal is required to change the reset values.
Demand Limit
(0 to 10VDC input)
When selected, a 0 to 10Vdc signal is connected to TB-7 terminals #134 and #135. This input limits
the cooling capacity (0 to 100%). At 0Vdc signal input, the controller does not limit compressor
staging. At 10Vdc signal input, the chiller would be off. Between 0Vdc and 10Vdc, a proportional
percentage capacity is available.
Содержание AGZ 035A
Страница 6: ...6 AGZ 035A through 065A IOMM AGZ 3 Figure 3 Clearance Requirements...
Страница 18: ...18 AGZ 035A through 065A IOMM AGZ 3 Electrical Legend Figure 8 Electrical Legend...
Страница 19: ...IOMM AGZ 3 AGZ 035A through 065A 19 Figure 9 Typical Field Wiring with Global UNT Controller...
Страница 20: ...20 AGZ 035A through 065A IOMM AGZ 3 Figure 10 Typical Field Wiring Diagram with MicroTech Controller...
Страница 21: ...IOMM AGZ 3 AGZ 035A through 065A 21 Figure 11 Single point Connection with FanTrol...
Страница 22: ...22 AGZ 035A through 065A IOMM AGZ 3 Figure 12 Single point Connection with SpeedTrol...
Страница 23: ...IOMM AGZ 3 AGZ 035A through 065A 23 Figure 13 Unit Control Schematic UNT...
Страница 24: ...24 AGZ 035A through 065A IOMM AGZ 3 Figure 14 Staging Schematic UNT...
Страница 25: ...IOMM AGZ 3 AGZ 035A through 065A 25 Figure 15 MicroTech Controller Schematic...
Страница 26: ...26 AGZ 035A through 065A IOMM AGZ 3 Figure 16 Unit Control Schematic MicroTech...
Страница 27: ...IOMM AGZ 3 AGZ 035A through 065A 27 Figure 17 Staging Schematic MicroTech...
Страница 94: ...94 AGZ 035A through 065A IOMM AGZ 3 Notes...
Страница 95: ......