Table 23. Status Points. (Continued)
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| Value | Digital |
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| Direct | Hardware | Manual |
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| User Address | NvName | Field Name | (Metric) or States plus Range | ofState | Stateor | Default | (M, P,S) | Share | Map | Access | Config. | Config. | Test | Comments |
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| Engineering Units: English |
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| AlarmLog1 | nvoAlarmLog | type[0] | NO_ALARM | 0 |
| NO_ALARM |
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| X |
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| ype[0] |
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| 0 to 255 | INPUT_NV_FAILURE | 1 |
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| 0 to 255 |
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| (AlarmTypeLog0) | NODE_DISABLED | 2 |
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| (AlarmTypeLog0) |
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| (AlarmTypeLog1) | SENSOR_FAILURE | 3 |
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| (AlarmTypeLog1) |
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| (AlarmTypeLog2) | FROST_PROTECTION | 4 |
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| (AlarmTypeLog2) |
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| (AlarmTypeLog3) | INVALID_SET_POINT | 5 |
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| (AlarmTypeLog4) | LOSS_OF_AIR_FLOW | 6 |
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| DIRTY_FILTER | 7 |
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| A supervisory node may poll the AlarmLog output for a short alarm history. |
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| SMOKE_ALARM | 8 |
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| The last five alarm reports sent via nvoAlarm are reported via AlarmLog. |
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| IAQ_OVERRIDE | 9 |
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| When ALARM_NOTIFY_DISABLED is entered into the log, further alarms |
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| LOW_LIM_ECON_CLOSE | 10 |
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| or return to normals are not entered into the log, until alarm reporting is |
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| rINPUT_NV_FAILURE | 129 |
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| again enabled. If Alarm is bound and not being acknowledged, the last | |
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| rNODE_DISABLED | 130 |
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| alarm report entered into AlarmLog is the one that was not | |
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| rSENSOR_FAILURE | 131 |
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| acknowledged.See Alarm and AlarmStatus for related subjects.type [n] | |
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| rFROST_PROTECTION | 132 |
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| specifies the alarm that was issued via Alarm. See Alarm for the alarm | |
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| rINVALID_SET_POINT | 133 |
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| types used in AlarmLog. The newest alarm is reported in type[0] and the | |
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| rLOSS_OF_AIR_FLOW | 134 |
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| oldest is reported in type[4]. When a new entry is made to the log, the | |
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| rDIRTY_FILTER | 135 |
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| oldest entry is lost. | |
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| rSMOKE_ALARM | 136 |
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83 |
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| rIAQ_OVERRIDE | 137 |
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| rLOW_LIM_ECON_CLOSE | 138 |
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| ALARM_NOTIFY_DISABLED | 255 |
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| nvoData1 | FieldNo | UPDATE_ALL_FIELDS | 0 |
| UPDATE_ALL_FIELDS |
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| FieldNo: nvoData1 and nvoCtlDataG1 are output network variables |
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| (nvoCtlDataG1) |
| MODE_FIELD | 1 |
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| indicating the node status. The information contained in these network |
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| EFFECT_OCC_FIELD | 2 |
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| variables are typically used to display the node status on an operator |
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| OVERRIDE_FIELD | 3 |
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| terminal, used in a trend log, or used in a control process. The information |
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| SCHED_OCC_FIELD | 4 |
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| contained in nvoCtlDataG1 and nvoData1 are identical. nvoCtlDataG1 uses |
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| OCC_TIME_CLOCK_FIELD | 5 |
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| the SGPUC mechanism to update the status or values. The fields in |
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| NET_MAN_OCC_FIELD | 6 |
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| nvoData are updated when network variables are polled by the receiver. |
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| SEN_OCC_FIELD | 7 |
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| Then every six seconds the difference between the field in nvoData and |
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| ECON_ENABLE_FIELD | 8 |
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| nvoCtlDataG is calculated. If the difference is significant the field is updated |
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| PROOF_AIR_FLOW_FIELD | 9 |
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| according to the SGPUC mechanism. FieldNo indicates which other data |
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| CALC_OD_ENTHALPY_FIELD | 10 |
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| field in the SGPUC network variable has changed since the last time it was |
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| CALC_RA_ENTHALPY_FIELD | 11 |
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| sent on the network according to the SGPUC mechanism. If FieldNo is |
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| HEAT_STAGES_ON_FIELD | 12 |
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| UPDATE_ALL_FIELDS, then all fields have been updated. If FieldNo is |
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| COOL_STAGES_ON_FIELD | 13 |
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| UPDATE_NO_FIELDS, then no fields have been updated recently. |
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| FREE1_OUT_FIELD | 14 |
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| FREE2_OUT_FIELD | 15 |
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| OCC_STATUS_OUT_FIELD | 16 |
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| FAN_ON_FIELD | 17 |
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| AUX_ECON_OUT_FIELD | 18 |
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| ECON_FLOAT_SYNCH_FIELD | 19 |
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| DLC_SHED_FIELD | 20 |
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| IAQ_OVERRIDE_FIELD | 21 |
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| SMOKE_MONITOR_FIELD | 22 |
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| WINDOW_OPEN_FIELD | 23 |
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| DIRTY_FILTER_FIELD | 24 |
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| SHUTDOWN_FIELD | 25 |
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| MON_SWITCH_FIELD | 26 |
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| WSHP_ENABLE_FIELD | 27 |
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| UPDATE_NO_FIELDS | 127 |
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EXCEL 10 W7750A,B,C CONSTANT VOLUME AHU CONTROLLER