[
V
Electrical Wiring Diagram ]
- 57 -
HWE1312A
GB
V
Electrical Wiring Diagram
[1] Electrical Wiring Diagram
SW1
SW2
SW3
OFF
ON
OFF
ON
OFF
ON
1
2
3
4
5
6
7
8
9
10
1
2
3
4
5
6
7
8
9
10
1
2
3
4
5
6
7
8
9
10
3
2
1
0
1 : Capacity
control input
0 : W
ater temperature
setting input
ITEM CODE 21
ITEM CODE 1051
SW421-2
SW421-1
OFF
OFF
OFF
OFF
OFF
1~ 5V
2~10V
0~10V
4~20mA
ON
ON
ON
No-
V
o
ltage
contact
input
CNDC
Pink
N
(ON/OFF)
Mode
change2
(ON/OFF)
No-voltage contact output
Pump operation
command output
(hot water)
71
75
CN510
blue
CN51
1
5
C5
Z5
C3
C2
F02
R01
R02
F01
R03
Z1
Z2
R34
C30
C32
C34
C36
black
F03
F04
AC250V
6.3A
T
black
white
L
F01,F02,F03
AC250V
6.3A
T
DSA
R35
CT3
white
R33
SC-L3
R30
red
white
D1
R05
R32
R06
CN408
°t
TH9
12
Outdoor
temp. Input
CN407
red
TH16
External
Wa
ter sensor.2
(option)
TH15
1
External
Wa
ter sensor.1
(option)
°
°
t
t
TB6
T4
T1
T2
T3
23
4
°t
°t
°t
TH14
TH4
TH13
Heat source
outlet temp.1
Heat source
inlet temp.1
16
23
45
CN406
yellow
Heat exchanger wall
temp.1(heat source)
Three way valve
Emergency signal
(for extra heater)
yellow
CN512
CN422
blue
3
1
(+)
(-)
2
CN2
C31
U
Z4
Run/Stop
6
6
6
6
2
2
2
22
2
2
2
5
5
5
5
2
2
2
2
2
2
2
2
2
5
5
5
5
5
1
1
1
11
1
1
1
1
1
1
1
1
1
1
1
1
3
3
3
3
3
3
3
6
6
6
3
3
3
3
3
3
3
3
4
4
4
4
4
4
7
7
7
4
4
4
4
4
4
LEV3-1
CN142D
blue
CN142C
Flow
switch
C1
1
TB21
4
1
CN1B
L1
CN1A
red
Noise
Filter
TB22
CN3
green
TB24
N
C33
TB23
*3
black
U
red
Diode
Bridge
2
52C
1
black
SC-P2
C7
C8
CT12
L2
R5
U
+
2
red
C35
2
DCL
SC-L2
SC-P1
1
SC-U
CN1
black
C37
C1
C9
C10
CN6
4
LED1:Normal operation(lit)
/ Error(blink)
R1
23
SC-V
U
IPM
CT22
U
3
SC-W
SC-L1
CN4
blue
3
4
2
Z3
R31
1
C6
CNTYP
black
CN2
CN43
yellow
C1
1
RSH1
THHS
2
TH2
t°
FT
-P
P
N
FT
-N
T
O
SUB BOX
TB3
C4
+
INV Board
+
+
+
+
+
+
+
CN63LS
red
3
red
L3
-
CN405
blue
X01
+
CN402
green
X02
CN404
black
X03
3
2
CN401
CN502
1
2
1
CN501
Pump error
(hot water)
CN142B
blue
3
6
1
52P2
52P1
5
6
1
2
3
4
52P1
52P2
52P1
52P2
ELB2
M
3~
M
3~
MP1
M
P2
1
70
74
L2
2
CN801
yellow
N
LED2:CPU in operation
1
2
3
4
Error display
output
CN52C
red
Pump error
(heat source)
T
ransmission cable for multiple unit control
Measurement terminal for maintenance(M-NET)
(+)
(-)
1
2
CN63HS
PL1
3
11
12
L1
Outdoor temp.
Analog Input 4~20mA
Wa
ter outlet temp.1
*4
MF1-1
7
MS
3~
U
TB2
Demand
20
LED1
LED3:Remote controller
lit while energized
TB6
Operation display
output
(heat source)
W
19
IT
TERMINAL
CN105
black
CNAC2
TB5
(Capacity priority/
COP
priority)
PL2
V
(0)
ENTER
Optional remote controller
connecting terminal
(Non-polarized)
1
SWP2
Unit address setting
1
SWP3
(0)
1
SWU1
3
UP
(1)
1
SWP1
SWU2
1
(Hot water/Heating)
(Brine/W
a
ter)
DOWN
SWU3
B
A
OFF
LOCAL
SWS1
1
SWS2
L3
CN142A
black
*7, 16
* 16
F06
AC250V
3.15A
T
2
2
10'
digit
TB5
TERMINAL
BOX
24
1'
digit
C100
TB1
3
2
(Normal/Error)
72
76
CN421
black
2
(Normal/Error)
3
4
22
red
1
°t
2
X04
X06
X08
X05
X07
X09
LEV1-1
°
°
CNLVC
12
°
3
°
t
tt
t
63H1
CNAC
red
1
2
F2
REMOTE
63LS
L3
L3
63HS
ELB1
LED4:Power supply
T
o
SUB BOX
TB4
L1
A
B
23
CN102
L2
MA
white
Wa
ter temp.setting
Analog input
4~20mA/0~10V
1~5V/2~10V
Capacity
control signal
27
MB
black
TH12
Pump interlock
(hot water)
25
CN3A
blue
TH1
Pump interlock
(heat source)
3
RA
RB
(Normal/Error)
Control power circuit
Suction Ref temp.1
Motor
(Compressor)
Discharge Ref
temp.1
L2
L2
L3
28
L1
L1
(Heating Eco/
Heating)
Mode
Heat source
change1
CNLVA
blue
SW421
TB5
3
1
2
29
CNTYP1
black
Z21
Control Board
Run
(ON/OFF)
TB6
TB6
TB6
Anti freeze
TB5
TB8
Capacity mode
TH3
Shell Ref temp.1
TH1
1
Wa
ter inlet temp.1
*6
Pump operation
command output
*5
power supply
3N~
50Hz
380/400/415V
DC12V
power supply
3N~
50Hz
380/400/415V
73
77
CNTYP2
black
N
N
SV1-1
7
2
1
6
5
1
4
3
2
Fan motor
(control box)
CN4
26
CN2
M
M
52C
15
16
Note 8.
The broken lines indicate the optional parts,field-supplied parts,and field work.
Note 9.
Make sure to connect a pump interlock contact.
A
short-circuit may cause abnormal stop or malfunctions.
Note10.
The preset temperature setting can be switched from the no-voltage contact or by setting time ranges.
Note1
1.
Leave a space of at least 5 cm between the low voltage external wiring(no-voltage contact
input and remote controller wiring) and wiring of 100V or greater
.
Do not place them in the same conduit tube or cabtyre cable as this will damage the circuit board.
Note12.
When cabtyre cable is used for the control cable wiring,
use a separate cabtyre cable for the following wiring.
Using the same cabtyre cable may cause malfunctions and damage to the unit.
(a) Optional remote controller wiring
(b) No-voltage contact input wiring
(c) No-voltage contact output wiring
(d)
Analog input wiring
Note13.
Use a contact that takes 12VDC 5mA
for no-voltage contact input.
Note14.
The SW1-SW3 switches indicated with can be set on site.
Do not change the other SW1-SW3 switch settings.
Note 1. Single-dotted lines indicate field wiring.
Note 2. The symbols of the field connecting terminals are as follows.
○:T
e
rminal block ×:Connection by cutting the short circuit wire
Note 3. Faston terminals have a locking function.
Press the tab in the middle of the terminals to remove them.
Check that the terminals are securely locked in place after insertion.
Note 4. Remove the short circuit wire between the terminals 25 and 27 to connect a flow switch.
Note 5. Be sure to connect the wires from
Te
rminals 1
1
and
Te
rminals 12 to
the interlock contact on the pump.
A
short-circuit may cause abnormal stop or malfunctions.
Note 6. Operation signals can be received from through the dry contact.
Note 7. Need to selects either W
a
ter temperature setting input signal or Capacity control
input
signal.
Set the SW421 and input the Item code 21, 1051 (by SW2 and SW3) corresponding
Incorrectly setting SW421 may cause damage to the circuit board.
to the input signal as shown in the table below
.
1~
M
H
Note15.
Make sure that on site terminal connection is correct.
With wrong connection, operation error may occur
.
OFF
ON
1
2
*17
*18
Note16.
Use a 4-20mA
signal output device with insulation.
Feeding 30mA
or more current may damage the circuit board.
Note17.
If CN142A
3-4 is ON (CLOSE), the operation mode cannot be changed
from the remote controller
.
Note18.
If using water as heat source, cut CN142D 1-3 (short circuit wire).
After
cutting CN142D 1-3,
the power reset function is enabled.
To
prevent the
heat exchanger from freezing, make sure to check that the CN142D
1-3 is cut if using water as heat source.
CRHV
-P600Y
A-HPB ELECTRICAL WIRING DIAGRAM
MAIN BOX
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: ......