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Daikin MicroTech I Sales And Engineering Data Sheet

Daikin MicroTech I
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spaCe TemperaTure seTpoInT meThods
www.DaikinApplied.com 59 ED 15103-6 • MICROTECH III WSHP UNIT CONTROLLER
Valid nviSetpoint value:
ReferenceSP = (nviSetpoint + nviSetptOffset)
EffCoolOnSP = (ReferenceSP + DeadBandFactor)
EffCoolOffSP = (EffCoolOnSP – nciOccDiff)
EffHeatOnSP = (ReferenceSP – DeadBandFactor)
EffHeatOffSP = (EffHeatOnSP + nciOccDiff)
Invalid nviSetpoint value: (Analog Null)
The Reference setpoint used in this calculation is shown here
for both Occupied and Standby modes:
Occupied: ReferenceSP = (nciSetpoints.occupied_cool -
DeadBandFactor+nviSetptOffset)
Standby: ReferenceSP = (nciSetpoints.standby_cool –
DeadBandFactor + nviSetptOffset)
EffCoolOnSP = (ReferenceSP + DeadBandFactor)
EffCoolOffSP = (EffCoolOnSP – nciOccDiff)
EffHeatOnSP = (ReferenceSP – DeadBandFactor)
EffHeatOffSP = (EffHeatOnSP + nciOccDiff)
3. The unit is operating In Occupied or Standby mode
with Long Range Local Setpoint Adjust selected and
nciLocSptEnable=1. The DeadBandFactor used in this
calculation is shown here for both Occupied and Standby
modes.
Occupied: DeadBandFactor = ((nciSetpoints.occupied_
cool – nciSetpoints.occupied_heat) / 2)
Standby: DeadBandFactor = ((nciSetpoints.standby_cool
– nciSetpoints.standby_heat) / 2)
ReferenceSP = nvoSetpoint
EffCoolOnSP = (ReferenceSP + DeadBandFactor)
EffCoolOffSP = (EffCoolOnSP – nciOccDiff)
EffHeatOnSP = (ReferenceSP – DeadBandFactor)
EffHeatOffSP = (EffHeatOnSP + nciOccDiff)
4. The unit is operating in Occupied mode with
Short Range Local Setpoint Adjust selected and
nciLocSptEnable=1.
EffCoolOnSP = (nciSetpoints.occupied_cool +
nvoSetptShift)
EffCoolOffSP = (EffCoolOnSP – nciOccDiff)
EffHeatOnSP = (nciSetpoints.occupied_heat +
nvoSetptShift)
EffHeatOffSP = (EffHeatOnSP + nciOccDiff)
5. The unit is operating in Standby mode with
Short Range Local Setpoint Adjust selected and
nciLocSptEnable=1.
EffCoolOnSP = (nciSetpoints.standby_cool +
nvoSetptShift)
EffCoolOffSP = (EffCoolOnSP – nciOccDiff)
EffHeatOnSP = (nciSetpoints.standby_heat +
nvoSetptShift)
EffHeatOffSP = (EffHeatOnSP + nciOccDiff)
NOTE: Refer below for subsequent stages #2-4 heating/
cooling setpoint calculations.
1. Ennity Single Stage Compressor models MHC/
MHW, CCH/CCW (5-ton or less), VFC/VF, LVC/LVW,
and VHC/VHF (HP0)
Cool Stage#2 ON SP = Cool Stage#1 ON SP + 2°F
Heat Stage#2 ON SP = Heat Stage#1 ON SP – 2°F
2. SmartSource Single and Two Stage Compressor
(Series2) models GSH/GSV, GTH/GTV, GCV (HP2) and
Ennity Large Two Compressor (SS2C) models CCH/
CCW (6-ton or greater), and LVC/LVW (HP3)
Cool Stage#2 ON SP = Cool Stage#1 ON SP +
nciStg2SptDiff (AV33)
Cool Stage#3 ON SP = Cool Stage#2 ON SP +
nciStg2SptDiff (AV33)
Heat Stage#2 ON SP = Heat Stage#1 ON SP
nciStg2SptDiff (AV33)
Heat Stage#3 ON SP = Heat Stage#2 ON SP
nciStg3SptDiff (AV36)
Heat Stage#4 ON SP = Heat Stage#3 ON SP
nciStg4SptDiff (AV37) applies to HP2 only
Important Notes
1. The Long/Short Range conguration jumper (JP5) does
not affect network setpoint operation.
2. Effective deadband does not apply to units in
Unoccupied mode.
3. The LonMark organization provides a detailed
description of the symmetrical method used to determine
the effective setpoint calculation. Refer to the Wall Unit
Functional Prole, available at: http://www.lonmark.org/
technical_resources/guidelines/docs/proles/8540_10.
pdf.

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Daikin MicroTech I Specifications

General IconGeneral
BrandDaikin
ModelMicroTech I
CategoryController
LanguageEnglish

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