5. Wiring diagrams
SW0
7
SW0
2
SW0
3
SW0
1
2
2
CN3
1
1
1
45
45
CN
1
1
2
2
1
1
3
3
CN3
4
CN3
3
1
1
2
2
5
4
3
5
4
3
6
6
6
6
45
3
45
2
2
1
1
3
CN2
6
2
1
2
1
Re
la
y
RL
W
IRI
NG
D
IA
G
RA
M
O
F
I
NDO
O
R
UN
IT
in
a
c
c
o
rd
an
c
e
w
ith
th
e r
e
al
it
y
of
the
m
a
n
u
fa
c
tur
e.
3.
T
he P
a
rt
s
i
n
th
e d
as
he
d f
ra
m
e a
re
opt
io
na
l
1
.
is
te
rm
in
al
bl
o
c
k
, th
e w
o
rd
s
on
i
t
2
.
is
p
ri
n
ted
c
ir
c
u
it b
o
a
rd
a
re
th
e s
e
q
u
enc
e
nu
mb
er
R
:R
E
D B
R
:B
R
O
W
N
OR:
O
RA
NGE
B
L
:B
L
U
E
G:
GRE
E
N
GR
:G
RA
Y
Y:
YE
L
L
O
W
W
:W
H
IT
E
B
:B
L
AC
K
Y/
G
:Y
EL
L
O
W
/G
R
EE
N
1PH
,220-
2
30V ,
50H
z
~
W
ir
e
le
ss R
e
ce
iv
er
m
a
ke
th
e
l
o
c
a
l s
e
tt
in
g
in
a
c
cr
o
d
a
n
ce
w
it
h
t
h
e
fo
ll
o
w
in
g
ta
b
le
A
t th
e
tim
e
o
f
in
s
ta
lla
ti
o
n
o
r a
fte
r s
e
rv
ice
in
s
p
e
c
tio
n
/r
e
p
a
ir
*M
a
s
ter
/Sl
a
v
e
W
ire
d Re
mo
te
co
nt
rol
ler
an
d W
ir
el
e
ss
Re
mo
te S
et
ti
ng
M
a
lf
un
ct
io
n C
ode
indi
cat
ion b
y
W
ir
ed
R
em
ot
e C
o
nt
ro
lle
r
RC
M
FM
RL
TS
TS
F
EH
EH
EH
EH
6
5
4
1
R
R
R
B
R
W
~
Y/
G
Y/
G
Y/
G
2
2
1
1
34
5
3
45
6
6
1
2
6
5
4
3
1
2
3
456
001
057
8437
1
4
3
2
1
4
3
2
2
1
3
3
1
2
W
CN
3
5
5
W
CN
1
2
2
CN2
0
G
3
1
2
3
1
2
B
CN
1
9
TA
TC
2
TC
1
1
2
3
1
1
2
3
1
G
CN1
8
CN
2
1
3
2
2
1
1
R
CN7
5
3
11
3
5
W
CN8
3 2 1
3 2 1
RC
CN
2
4
W
AB
C
1
2
BL
1
2
CN4
2
11
W
2
CN5
1
2
CN6
2
G
1
1
1
23
2
3
CN1
3
W
CN
1
0
R
CN9
W
B
CN
1
5
P
Q
GR
GR
2
2
1
1
TW
2
TW
1
FS
~
~
PM
W
ir
el
es
s
R
em
ote C
ontr
ol
ler
D
isc
on
ne
ct
e
d
A,
B,
C
N
u
ll
Co
nn
ec
t t
o
So
c
k
e
t
Se
tt
in
g
CN
21
SW
08
-6
CN
30
CN
23
T
er
m
in
al
B
loc
k
A.
B.
C
c
o
n
n
e
c
t w
ith
ON
Nu
ll
Mas
ter
R
emote
OF
F
Sl
a
v
e
R
e
m
o
te
ON
Di
sc
on
ne
c
te
d
B
.C
c
o
nn
ec
t w
ith
01
02
05
06
04
08
09
07
03
M
a
lfunct
ion
In
d
o
o
r tw
in
en
er
gy
M
a
lf
u
n
c
tio
n
o
f t
ra
n
sm
iss
io
n
In
do
or l
iq
ui
d p
ipe t
e
mp
.
9
20
EEPR
O
M
f
a
ilu
re
4
6
5
8
7
3
In
d
o
o
r am
bi
en
t
te
mp
.
In
do
or
g
a
s
pi
p
e
t
e
m
p
.
Mal
fun
c
ti
on C
o
n
ten
ts
1
2
Co
d
e
s
e
ns
or
T
A
f
a
ilu
re
s
e
ns
or
T
C
1
fai
lu
re
s
ens
o
r T
C
2 f
ai
lu
re
s
o
ur
c
e
s
ens
o
r f
a
ilu
re
b
et
w
ee
n r
m
o
te C
o
nt
rol
ler
and
I.
D
un
it
Mode
/D
ip
s
w
it
c
h
W
ir
ed C
ontr
ol
ler
W
ir
ed C
ontr
ol
ler
D
is
c
on
ne
ct
e
d
Nu
ll
re
m
o
te
re
ce
ive
r
(C
o
n
tr
o
l)
W
ir
ed R
em
o
te
Wi
re
d
R
e
m
o
te
C
ont
rol
ler
C
o
n
tr
o
lle
r
the P
C
B
/T
im
ing
LE
D
on
the
The
Fl
as
h T
im
e
s
o
f L
E
D
5
o
n
th
e
Mal
fun
c
ti
on o
f t
rans
mi
s
s
ion
b
e
tw
ee
n
I.D
a
n
d
O
.D
uni
t
le
ve
l co
n
tr
o
l syst
e
m
Mal
fun
c
ti
o
n of
D
ra
in
A
d
d
re
s
s
du
pl
ic
ati
o
n
im
pr
ope
r s
e
tt
ing
S
W
03
10
0A
A
d
dr
es
s
d
up
lic
at
io
n
im
p
rop
er
s
e
tt
in
g S
W
0
2
M
a
lf
un
c
ti
o
n
of
O
.D
un
it
Wi
ri
n
g
T
rans
m
is
s
io
n
(T
o O
.D
uni
t)
T
ran
s
m
is
s
ion
ad
d
res
s
s
e
tt
in
g
Di
p
s
w
it
c
h
(
8
H
P
)
D
ip
S
w
it
c
h
F
u
nc
ti
on
SW
0
1
SW
0
3
c
a
p
a
c
ity
s
e
tt
ing
o
f i
ndo
or
un
it
W
ire
d
c
o
ntr
o
lle
r
ad
dr
es
s
a
n
d
be
tw
e
en I
.D
a
nd O
.D
u
n
it
W
ir
ed r
e
mo
te
c
o
nt
ro
lle
r an
d I
.D
U
n
it
E
le
c
tr
on
ic
E
x
pa
ns
ion
V
al
v
e
G
Y
R
R
G
R
LE
D
2
L
ED
6
L
ED
5
L
ED
3
L
ED
4
L
ED
1
LE
D
I.
D
an
d O
.D
u
n
it
T
ran
s
m
is
s
io
n
La
mp
b
e
tw
ee
n
M
a
lf
u
n
c
tio
n
la
m
p
f
o
r I
.D
u
n
it
F
o
rc
ed
-o
pe
n l
a
m
p
f
o
r i
n
d
oor
T
ran
s
m
is
s
ion
La
m
p
b
e
tw
ee
n
Li
q
ui
d
P
ipe T
e
mp
er
at
ur
e S
e
ns
or
De
s
c
ri
p
ti
o
n
TR
TA
Sy
m
b
o
l
RC
FM
TC
2
TC
1
EEV
TW
1
TW
2
FS
PM
E
le
c
tr
on
ic
E
x
pa
ns
ion
V
al
v
e
Tr
a
n
s
fo
rm
e
r
G
a
s
P
ipe
T
e
m
p
er
atu
re
S
e
ns
o
r
A
m
b
ien
t T
e
mp
er
at
ure
S
e
ns
or
Fa
n
M
o
to
r
R
un
ni
n
g C
apa
c
it
o
r
T
e
rm
in
al
bl
o
c
k
(P
o
w
er
)
T
e
rm
inal
b
loc
k
(
C
o
n
tr
ol
)
Fl
o
a
t S
w
it
c
h
Pu
m
p
M
o
to
r
W
ire
d R
em
o
te
C
o
nt
ro
lle
r
T
O
P
O
W
ER
SU
PP
L
Y
3
1
B
TR
N
L
Y/
G
Y/
G
R
BL
7
7
4
4
FM
2
CN1
7
Y
1
R
CN
2
2
3
2
1
3
2
1
2
1
1
2
1
1
BL
CN
2
3
Y
OR
B
A
BL
C
W
W
S
h
or
t c
o
n
n
ec
ted
S
h
or
t c
o
nne
ct
ed
S
h
or
t c
o
nne
ct
ed
D
ip
sw
it
ch
(
8
H
P
)
SW
0
2
Dip
s
w
it
c
h
(
8
HP
)
b
e
tw
ee
n I
.D
an
d c
e
n
tra
l
c
o
nt
ro
lle
r
T
ra
n
s
m
issio
n
a
d
d
re
ss
se
tt
in
g
Ro
o
m
Ca
rd
RC
Q
u
ie
t O
p
e
ra
tio
n
QO
CN
1
4
Y
CN1
6
G
12
12
1
2
1
2
RC
Q0
EEV
PC
B
W
CN3
0
1
1
2
2
LE
D
2
LE
D
1
LE
D
5
LE
D
6
1
2
3
4
5
10 9 8 7 6
CN2
1
W
LE
D
3
LE
D
4
250V
A
C
T5
A
FUS
E
SW0
8
84
Summary of Contents for YCV280
Page 1: ...Design Installation and Maintenance instruction R410A Heat Pump 50 Hz FlowLogic II 2016...
Page 5: ...2 External appearance YCV280 Outdoor YCV335 YCV400 YCV450 5...
Page 13: ...This range it 13...
Page 18: ...18...
Page 34: ...4 Piping diagram liquid pipe gas pipe EEV filter filter fan indoor heat exchanger 34...
Page 62: ...4 Piping diagrams liquid pipe gas pipe EEV filter filter fan indoor heat exchanger 62...
Page 83: ...4 Piping diagrams liquid pipe gas pipe EEV filter filter fan indoor heat exchanger 83...
Page 135: ...AQXQVO LQIOZIU fckoc jcj_ a m jcj_ FFV cfn_l cfn_l h ch iil b_ n _r b ha_l 135...
Page 170: ...C 938 1046 186 5 234 2 6 5 2 9 9 A B MODEL 3 Dimensions HAV007 16 HAV018 24 170...
Page 171: ...4 Piping diagrams liquid pipe gas pipe EEV filter filter fan indoor heat exchanger 171...
Page 178: ...Installation 8 178...
Page 179: ...179...
Page 180: ...HAV018 24 HAV007 16 180...
Page 181: ...181...
Page 185: ...9QTMUZQVUZ 86 97 6 96 8 786 8MU MY VN OYI Q 185...
Page 186: ...0 CQWQUO LQIOYITZ hemqe lela c o lela GGX behpan behpan b j ej kkn da p at_d jcan 186...
Page 200: ...N PR 6 MkjZeeh Sd_ji 62A B yt F vwv 200...
Page 206: ...206...
Page 208: ...208...
Page 209: ...209...
Page 210: ...210...
Page 211: ...211...
Page 212: ...212...
Page 249: ...E Capacity compensation value at different piping length and drop 255...
Page 280: ...286...
Page 298: ...RWV02 FlowLogic 304...
Page 309: ...Installation and connections Dimensions Connecting board 315...
Page 315: ...Ports Each port have serial number like 1 2 3 8 System Brief 321...
Page 322: ...Next Next Next 328...
Page 325: ...Select system DNS Click and add 331...
Page 327: ...3 Software installation Next 333...
Page 331: ...337...