11.3 Electrical specifi cations of electrical panels UCQ065D100
and UCQ065D200
Power supply
Power input
Operating range
Storage conditions
Operating conditions
Index of protection
Connections
Assembly
Case
Environmental pollution
11.4 Technical specifi cations of the CAREL DN33Z9HR20 humidistat
Power supply
Power input
Operating range
Resolution
Control precision
Storage conditions
Operating conditions
Assembly
Case
Index of protection
Connections
Inputs (probes with voltage signals)
Probe power supply output
Switching outputs
Type of action-disconnection
Insulation
Environmental pollution
Serial connection
IMPORTANT NOTE:
the cables used must resist up to the maximum operating temperature, that is, to the
maximum room temperature specifi ed, plus the heat produced by the controller, equal to 20°C with all the
outputs at the maximum capacity.
11.5 Technical specifi cations of the UCHUMM0000 mechanical
humidistat
Max contact rating
Min contact rating
Range
Time constant (speed in air at 2 m/s)
Differential
Control precision
Temperature coeffi cient
Calibration humidity
Operating temperature
Protection
humiDisk - +030222020 - rel. 2.1 - 01.03.2012
230 Vac ±10%
3 VA
0 to 50 °C
-10T60 °C, <90 % RH non-condensing
0T50 °C, <90 % RH non-condensing
IP55
spring terminals, cross-section 0.2 to 2.5 mm
wall mounted
plastic
normal
230 Vac ±10%
3 VA
0T50 °C
0.1 % RH
±0.5% of full scale
-10T70 °C, <90% RH non-condensing
0T50 °C, <90% RH non-condensing
DIN rail
Plastic
IP40 with panel mounted instrument
screw terminals with cross-section 0.5 to 1.5 mm2
-0.5 to 1 Vdc
5 Vdc, Imax= 20 mA
2 SPDT relays: Vac max= 250 V, max. switchable power = 2000 VA
maximum peak current = 10 A
type 1C disconnection (EN 60730-1)
the low voltage parts have primary insulation from the very low
voltage parts, and double insulation from the front panel
normal
using IROPZSER30 board
3 A 250 V
100 mA 24 V
20 to 90% RH
Approx. 5 min
6% RH
± 5%
+0.5 % RH/K
55% RH 23°C
0 to 40 °C
IP20 (EN60529) class (IEC 60730)
2
Tab. 11.c
Tab. 11.d
27
H %
1
2
3
Fig. 11.a
4
60
Fig. 11.b