Daikin EWWH455DZXSA2 [26/47] Setpoint reset by evaporator return temperature

Daikin EWWD470DZXEA1 [26/47] Setpoint reset by evaporator return temperature
D-EOMWC01405-18EN
26/47
EWWD_DZ EWWH_DZ
Parameter
Default
Range
Max Reset (MR)
5.0°C
0.0°C 10.0°C
Active Setpoint (AS)
LWT Setpoint (LWT SP)
Cool/Ice LWT
Signal
4-20mA External signal
5.1.4.5 Setpoint Reset by Evaporator Return Temperature
The active setpoint is calculated applying a correction that depends on the evaporator entering (return) water temperature.
As evaporator ΔT becomes lower than the SRΔT value, an offset to the LWT setpoint is increasingly applied, up to the MR
value when the return temperature reaches the chilled water temperature.
The Return Reset may affect negatively the chiller operation when operated with variable flow. Avoid to use this
strategy in case of inverter water flow control.
Parameter
Default
Range
Max Reset (MR)
5.0°C
0.0°C 10.0°C
Start Reset DT (SRT)
5.0°C
0.0°C 10.0°C
Active Setpoint (AS)
LWT Target (LWT SP)
Cool/Ice LWT
5.1.4.6 Soft Load
Soft Loading is a configurable function used to ramp up the unit capacity over a given time period, usually used to influence
building electrical demand by gradually loading the unit. The setpoints that control this function are:
Parameter
Description
Softload En
Enables soft loading
Softload Ramp
Duration of the soft load ramp
Starting Cap
Begin capacity limit. Unit will increase capacity from this value to 100% over the time specified by the Softload
Ramp setpoint.
5.1.5 Date/Time
5.1.5.1 Date,Time and UTC Settings
See 4.2.4.
5.1.6 Scheduler
Unit On/Off can be managed automatically through the function Time Scheduler enabled when the parameter Unit Enable
is set to Scheduler 0. For each day of the week user can define six time slots and choose for each time slot one of following
mode:
Parameter
Description
Off
Unit Off
On Setpoint 1
Unit On and Cool LWT 1 is the active setpoint
On Setpoint 2
Unit On and Cool LWT 2 is the active setpoint
4mA
20mA
Signal
AS
LWT SP
MR
LWT SP + MR
0
SRT
Evap T
AS
LWT SP
MR
LWT SP + MR

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