43
4 TO 20 MA TEMPERATURE RESET
The control system is also capable of temperature reset based
on an externally powered 4 to 20 mA signal. The EMM is re-
quired for temperature reset using a 4 to 20 mA signal.
To use 4 to 20 mA Temperature Reset, four variables must be
configured: Cooling Reset Select, Current No Reset Value
(milliamp signal at which no temperature reset is required),
Current Full Reset Value (milliamp signal at which full tem-
perature reset is required), and Cooling Reset Deg Value (the
maximum amount of temperature reset desired).
To configure this option with the Carrier Controller display:
In the example in Fig. 41, at 4 mA no reset takes place and at
20 mA, 5°F (2.8°C) chilled water set point reset is required.
SPACE TEMPERATURE RESET
The control system is also capable of temperature reset
based on space temperature. The EMM and accessory sen-
sor (P/N 33ZCT55SPT) are required for temperature reset
using space temperature. This sensor measures the space
(room) temperature for the purpose of set point reset. Only
units with the optional energy management module are fit-
ted with this sensor.
To use Space Temperature Reset, four variables must be con-
figured: Cooling Reset Select, Space T No Reset Value (space
temperature at which no temperature reset is required), Space T
Full Reset Value (space temperature at which full temperature
reset is required), and Cooling Reset Deg Value (the maximum
amount of temperature reset desired).
To configure this option with the Carrier Controller display:
In the space temperature reset example in Fig. 42, a reset of
6°F (3.3°C) is applied when the space temperature is 68°F
(20.0°C) and no reset takes place when the space temperature
is 72°F (22.2°C).
Fig. 41 — Example: 4 to 20 mA Temperature Reset
CAUTION
Care should be taken when interfacing with other control
systems due to possible power supply differences such as a
full wave bridge versus a half wave rectification. Connection
of control devices with different power supplies may result in
permanent damage. Carrier Controller controls incorporate
power supplies with half wave rectification. A signal isola-
tion device should be utilized if the signal generator incorpo-
rates a full wave bridge rectifier.
DISPLAY NAME
PATH
VALUE
Cooling Reset
Select
Main Menu
Configuration Menu
Reset Configuration
Default = 3
0=None,
1=OAT
2=Delta T,
3=4 to 20mA control
4=Space Temp
Current No
Reset Value
Default = 0mA
Range 0 to 20mA
Current Full
Reset Value
Default = 0mA
Range 0 to 20mA
Cooling Reset
Deg Value
Default = 0°F (0°C)
Range –30 to 30°F
(–16.7 to 16.6°C)
DISPLAY NAME
PATH
VALUE
Cooling Reset
Select
Main Menu
Configuration Menu
Reset Configuration
Default = 4
0=None,
1=OAT
2=Delta T,
3=4 to 20mA control
4=Space Temp
Space T No
Reset Value
Default = 14°F (7.8°C)
Range 14 to 125°F
(7.8 to 69.4°C)
Space T Full
Reset Value
Default = 14°F (7.8°C)
Range 14 to 125°F
(7.8 to 69.4°C)
Cooling Reset
Deg Value
Default = 0°F (0°C)
Range –30 to 30°F
(–16.7 to 16.6°C)
0
1
2
3
4
5
6
0
2
4
1
0
1
0
mA
S
i
g
nal
De
g
ree
s
Re
s
et (de
g
F)
2
Cooling Re
s
et
Deg. V
a
l
u
e
(cr_deg)
C
u
rrent No Re
s
et V
a
l
u
e
(v_hr_no)
C
u
rrent F
u
ll Re
s
et V
a
l
u
e
(v_hr_f
u
)
4
6
8
12
16
1
8
a30-5885
Содержание AquaForce 30XV140
Страница 79: ...79 Fig 76 VFD Communication Wiring Compressor A B Fan VFD A1 A2 B1 B2...
Страница 82: ...82 Fig 81 VFD Compressor Locations 30XV225 325 30XV350 500 30XV140 325 COMPRESSOR A VFD COMPRESSOR B VFD...
Страница 228: ...228 Fig 90 30XV Typical Field Wiring Schematic cont...
Страница 229: ...229 Fig 91 30XV Standard Tier 140 275 All Voltages Power Schematic NOTE See Legend on page 226...
Страница 230: ...230 Fig 92 30XV Standard Tier 300 325 All Voltages Power Schematic NOTE See Legend on page 226...
Страница 231: ...231 Fig 92 30XV Standard Tier 300 325 All Voltages Power Schematic cont NOTE See Legend on page 226...
Страница 232: ...232 Fig 93 30XV Standard Tier 350 500 380 400 415 440 460 575v Power Schematic NOTE See Legend on page 226...
Страница 233: ...233 Fig 93 30XV Standard Tier 350 500 380 400 415 440 460 575v Power Schematic cont NOTE See Legend on page 226...
Страница 234: ...234 Fig 94 30XV High Tier 350 450 All Voltages Mid Tier 350 500 All Voltages Power Schematic NOTE See Legend on page 226...
Страница 235: ...235 Fig 95 30XV Mid Tier 140 All Voltages 160 275 380 400 415 440 460 575v Power Schematic NOTE See Legend on page 226...
Страница 236: ...236 Fig 96 30XV High Tier 140 200 380 400 415 440 460 575v Power Schematic NOTE See Legend on page 226...
Страница 237: ...237 Fig 97 30XV High Tier 140 200 208 230v Mid Tier 160 200 208 230v Power Schematic NOTE See Legend on page 226...
Страница 238: ...238 Fig 98 30XV High Tier 225 325 All Voltages Mid Tier 300 325 All Voltages Power Schematic NOTE See Legend on page 226...
Страница 240: ...240 Fig 99 30XV Communication Wiring...
Страница 241: ...241 Fig 100 30XV 115V Control Wiring All Tonnages All Voltages...
Страница 242: ...242 Fig 101 30XV 24V Control Wiring 30XV140 325 All Voltages...
Страница 243: ...243 Fig 101 30XV 24V Control Wiring 30XV140 325 All Voltages cont...
Страница 244: ...244 Fig 102 30XV 24V Control Wiring 30XV350 500 All Voltages...
Страница 245: ...245 Fig 102 30XV 24V Control Wiring 30XV350 500 All Voltages cont...
Страница 246: ...246 Fig 103 Component Arrangement Diagram for 30XV140 325...
Страница 247: ...247 Fig 103 Component Arrangement Diagram for 30XV140 325 cont...
Страница 248: ...248 Fig 104 Component Arrangement Diagram for 30XV350 500...
Страница 337: ...337 APPENDIX J FACTORY SUPPLIED PUMPS cont Fig L System Information...
Страница 338: ...338 APPENDIX J FACTORY SUPPLIED PUMPS cont Fig M Unit and Language Settings...
Страница 339: ...339 APPENDIX J FACTORY SUPPLIED PUMPS cont Fig N Hand Off Auto This is set in Auto mode for sensorless operation...
Страница 341: ...341 APPENDIX J FACTORY SUPPLIED PUMPS cont Fig P Data Input 2...
Страница 342: ...342 APPENDIX J FACTORY SUPPLIED PUMPS cont Fig Q Data Input 3...
Страница 347: ...347 APPENDIX J FACTORY SUPPLIED PUMPS cont Fig U Pump Wiring Diagram...