[
VII
Control ]
- 93 -
HWE1312A
GB
Emergency Operation Mode
-9- Multiple system control
1. Electrical wiring diagram
( * ) Main/Sub units and switch settings
SW2-8
( Use of external water temperature sensor)
SW2-9
( Multiple system)
Main unit (Unit to which the external
water temperature sensor is connected.)
ON
ON
Sub unit
OFF
ON
2. Water piping system configuration
a. Changing the number of units to go into operation and changing the startup sequence of the units
(controlled by the main unit)
b. Operation control based on the compressor frequency (Each unit controls its own frequency.)
External water temperature sensor
(ex) Attached to the outlet
The main unit will determine the Tshs (the target outlet water temperature)
for each sub unit as well as the number of units to put into operation as
explained under item a below.
The target outlet water temperature of each unit will be
set as Tshs, and the water temperature is controlled
based on the compressor frequency. (See item b below.)
Preset water temperature (tshs)
Check interval : Variable between 1 and 5
DIFF2 : Differential (Variable between 0 and 8 K)
1) One unit will stop when the external water temperature meets the following formula: External water temperature ≤
[Set temperature (Tshs)] + [DIFF 2 value divided by 2].
If two or more units are operating at the same frequency, the one with more hours of cumulative operation hours will be stopped first.
2) One unit will go into operation when the external water temperature meets the following formula: External water temperature ≤
[Set temperature (Tshs)] - [DIFF 2 value divided by 2].
The unit with shorter cumulative operation hours will go into operation first.
The cumulative operation hours of a given unit is determined by the cumulative operation hours of the compressor with more hours
than the other compressor.
Each unit increases or decreases the compressor frequency based on the difference between the preset and the current water
temperatures.
The frequency of the compressor is adjusted to a range between 50 and 70 Hz to optimize operation efficiency.
Only when all units are under the Thermo-ON condition, the operating frequency may exceed 70 Hz.
Sub unit
Sub unit
Main unit
Circuit board
Circuit board
Circuit board
External
temperature
sensor
Field-supplied dry
contact switch/relay
or remote controller
(PAR-W21MAA)
MAIN unit
SUB unit
SUB unit(s)
n units
Inter-unit wiring
(M-NET line)
MAIN
PCB
SUB
PCB
2
1
MAIN
PCB
SUB
PCB
MAIN
PCB
SUB
PCB
Inter-unit wiring
(M-NET line)
Summary of Contents for CRHV-P600YA-HPB
Page 1: ......
Page 7: ...CONTENTS HWE1312A GB ...
Page 9: ... 2 HWE1312A GB ...
Page 19: ... 12 HWE1312A GB ...
Page 41: ... II Restrictions 34 HWE1312A GB ...
Page 43: ... 36 HWE1312A GB ...
Page 51: ... III Unit Components 44 HWE1312A GB ...
Page 52: ... 45 HWE1312A GB IV Remote Controller 1 Using the Remote Controller 47 2 Function Settings 52 ...
Page 53: ... 46 HWE1312A GB ...
Page 61: ... IV Remote Controller 54 HWE1312A GB ...
Page 62: ... 55 HWE1312A GB V Electrical Wiring Diagram 1 Electrical Wiring Diagram 57 ...
Page 63: ... 56 HWE1312A GB ...
Page 67: ... V Electrical Wiring Diagram 60 HWE1312A GB ...
Page 69: ... 62 HWE1312A GB ...
Page 73: ... VI Refrigerant Circuit 66 HWE1312A GB ...
Page 75: ... 68 HWE1312A GB ...
Page 107: ... VII Control 100 HWE1312A GB ...
Page 109: ... 102 HWE1312A GB ...
Page 117: ... 110 HWE1312A GB ...
Page 165: ... IX Troubleshooting 158 HWE1312A GB ...
Page 166: ... 159 HWE1312A GB X Attachments 1 R410A saturation temperature table 161 ...
Page 167: ... 160 HWE1312A GB ...
Page 170: ......