Esquema eléctrico
Ilustración
32
En esta ilustración se muestra la conexión estándar de la unidad.
LED LAMP
KEYBOARD
OK
230V
RAIL
L1L2 L3 N PE
J1 (DIODE)
1
RGB RE
2
RGB GR
3
RGB BU
4
GND
J29 (ANT.)
1 GND
2 ANT.
J34 (GND)
1
GND
J25 (KEYB.)
1
3.3V
2
PG2
3
PG3
4
PG4
5
N.C.
J28 (USB)
1
VCC 5V
2
D-
3
D+
4
GND
J4 (RS485)
1
RS485_A
2
N.C.
3
N.C.
4
RS485_B
MAIN BOARD
5
N.C.
6
N.C.
7
N.C.
8
GND
J22 (RH/T)
1
+V
2
TH (GND)
3
TH
4
GND
5
RH
J19 (RUN/FAIL)
1
RUN
2
RUN
3
FAIL
4
FAIL
J10 (HEAT 1/2)
1
1: +
2
1: GND
3
2: +
4
2: GND
J8 (230V)
1
MAINS N
2
MAINS L
3
COMP. N
4
COMP. L
5
EX.FAN N
6
EX.FAN L
7
VALVE N
8
VALVE L
Mains
230V
Fig. 9
Esquema: Esquema eléctrico
Resistance coversion
TEMP.
Temp. °C
Kohm
5
6,96
SENSOR
10
5,44
(EVAPO.)
15
4,29
20
3,40
t
25
2,72
30
2,19
35
1,77
TEMP.
J17 (TEMP.)
SENSOR
EVAP.1
1
(COND.)
GND
2
EVAP.2
3
t
GND
4
COND.
5
GND
6
RESERV
7
GND
8
J27 (RH)
+5V
1
GND
2
SDA
3
SCK
4
J3 (EEV)
+12V
1
rH%
COIL 4
2
COIL 3
3
COIL 2
4
HUMIDITY
COIL 1
5
SENSOR
J2 (EEV)
+12V
1
CAPACITOR
+12V
2
COIL 4
3
COIL 3
4
COIL 2
5
COIL 1
6
J36 (CAP 1)
230V N
1
2
J35 (FAN 1)
INT. FAN
1
230V N
2
N.C.
3
4
J5 (CAP 2)
230V N
1
FAN
2
J37 (FAN 2)
INT. FAN
1
230V N
2
N.C.
3
4
J39 (CAP 3)
230V N
1
2
SOLENOID
J38 (FAN 3)
VALVE
INT. FAN
1
230V N
2
N.C.
3
4
COMPRESSOR