Installation; Storage Of The Cps; Preparation For Installation; Preliminary Information - Gtec Saturn Manual Del Usuario

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ALL OPERATIONS DESCRIBED IN THIS SECTION MUST BE CARRIED OUT BY QUALIFIED PERSONNEL
ONLY.
The company assumes no responsibility for any damage caused by flawed connections or by operations
that are not described in this manual.
S
CPS
TORAGE OF THE
The storage area must respect the following characteristics:
Temperature:
Relative humidity degree:
P
REPARATION FOR INSTALLATION

PRELIMINARY INFORMATION

CPS Models
Nominal power
Operating temperature
Max. relative humidity during operation
Max. installation height
Dimensions W x D x H
Weight with no batteries
Dissipated power with nominal resistive load
(pf=0.9) and buffer battery
Dissipated power with nominal distorting load
(pf=0.7) and charged battery
Flow rate of the fans to remove heat from the
(2)
installation area
Current dispersion to earth
Protection level
Cable input
(1) 3,97 B.T.U./h = 1 kcal/h
(2) The following formula can be used to calculate the air flow rate: Q [mc/h] = 3,1 x P diss [kcal/h] / (t a - t e ) [°C]
P diss is the power expressed in kcal/h dissipated by all the devices installed in the installation environment.
ta= ambient temperature, te=external temperature. In order to take leaks into account, it is necessary to increase
the value obtained by 10%.
The table shows an example of a flow rate with (t a - t e ) =5°C and a rated resistive load (pf=0.9).
(Note: This formula is applicable only if ta>te. If not, the CPS installation requires an air-conditioning system).
(3) The dispersion current of the load is added to that of the CPS on earth wire.

INSTALLATION

0°÷40°C (32°÷104°F)
95% max
(1)
(1)
(3)
CPS 20
20kVA
0 ÷ 40 °C
90 % (no condensation)
1000 m at nominal power rating
(-1% power for every 100 m over 1000 m)
max 4000 m
440 x 850 X 1320 mm
135kg
1.15 kW
990 kcal/h
3930 B.T.U./h
0.90 kW
775 kcal/h
3070 B.T.U./h
615 mc/h
< 50 mA
IP20
On the rear from the bottom
70
CPS 30
30kVA
145kg
1.28 kW
1101 kcal/h
4368 B.T.U./h
1.02 kW
877 kcal/h
3481 B.T.U./h
750 mc/h

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