![Zip InLine CEX-U Installation Instructions & User Manual Download Page 8](http://html1.mh-extra.com/html/zip/inline-cex-u/inline-cex-u_installation-instructions-and-user-manual_3984925008.webp)
8
Installation instructions & user manual
9120-25693 v3.00 Oct 2018 - ZIP CEX
Technical support
Tel: 0345 6 005 005 email: [email protected] www.zipwater.co.uk
TECHNICAL DATA
Zip InLine
MODEL
CEX-O
CEX-U
Installation
Over-basin
Under-basin
Declared load profile
XS
Energy efficiency class *
)
A
Energy efficiency (ηwh) *
)
40 %
Annual electricity consumption *
)
466 kWh
Rated power (Rated current)
6.0 / 9.6 kW (27.3 / 40 A)
Chosen power (Chosen current)
6.6 kW
(28.7 A)
8.8 kW
(38.3 A)
6.6 kW
(28.7 A)
8.8 kW
(38.3 A)
Electrical connection
1/N/PE 220..240 V AC
Min. required cable size
3 × 4 mm
2
3 × 6 mm
2
3 × 4 mm
2
3 × 6 mm
2
Hot water (l/min) max. at ∆t = 33 K
3.8
5.0
3.8
5.0
Rated volume
0,3 l
Rated pressure
1.0 MPa (10 bar)
Connecting type
pressure resistant / pressureless
Heating system
Bare wire heating system IES
®
Required spec. water resistance @ 15 °C
Spec. electrical conductivity
≥ 1100 Ωcm
≤ 90.9 mS/m
Inlet temperature
≤ 70 °C
Flow rate to switch on – max. flow rate
2,0 – 5,0 l/min
1)
Pressure loss
0.2 bar at 2.5 l/min 1.3 bar at 9.0 l/min
2)
Temperature choice
20 °C – 55 °C
Water connection
G ½"
Weight (when filled w. water)
2.7 kg
VDE class of protection
I
Water protection class
IP25
IP24
Type of protection / safety
*) The declaration complies with the EU regulation No 812/2013
1) Flow rate limited to achieve optimum temperature rise
2) Without flow regulator
The cable size may not exceed 10 mm²
All data quoted at nominal supply voltage. Standard European voltage tolerances of -6 % to +10 % may be
applied.
A minimum water pressure of 0.2 MPa (2 bar) is recommended for optimum performance.
Maximum flow rate will be achieved at a water pressure of 0.6 MPa (6 bar).
The appliance must not be subject to more than 1.0 MPa (10 bar).
Temperature rise °C = (Nominal power rating (kW) x 14.3)
Flow per minute (litres)
Instantaneous performance calculations