APC 6000 Electrical parameters for determining cable cross-sections, Heat losses

Page 7

Characteristics (cont.)

Electrical parameters for determining cable cross-sections

this table has been drawn up for rated phase-to-phase Mains and load voltages of 415V. For voltages of 380V, multiply the currents for Mains 2 and load by 1.09; for voltages of 400V, use the table in another language version of this manual;

the current values and cable cross- sections for Mains 1 are given for full rated load with a power factor of 0.8 and a battery consuming its minimum float charging voltage;

Parameters for single-unit UPS cables

the battery current values and cable cross-sections have been determined for a battery at the end of a charge cycle;

the current values and cable sections for Mains 2 and load are given for full rated load with a power factor of 0.8.

For frequency converters, the parameters concerning Mains 2 are not applicable.

The load parameters common to all the converters are given in the table below. For a parallel UPS, the parameters for Mains 2 and load are also provided in the table below.

For a modular UPS, the parameters for Mains 2 and load are also provided in the table below.

rated

line currents absorbed in Amps

cross-sectional area of Cu cables in mm2 (2)

 

 

inverter

Mains 1

415V

battery

Mains 1

 

415V

 

battery

 

output

with or without

Mains 2

 

with or without battery

Mains 2 and load

 

 

in kVA

 

 

 

 

battery (1)

and load

 

Copper

Aluminium

Copper

Aluminium

Copper

Aluminium

250

407

361

630

185

300

150

240

240

2 x 185

300

490

433

758

240

2 x 150

240

2 x 150

240

2 x 240

400

654

577

1013

2 X 185

2 x 300

2 x 150

2 x 240

2 x 185

3 x 185

450

735

649

1137

2 X 185

2 X 300

2 X 185

2 x 300

2 x 185

2 x 300

 

 

 

 

 

 

 

 

 

 

500

821

722

1252

2 x 240

4 x 185

2 X 185

2 x 300

3 x 150

3 x 240

600

981

866

1519

3 x 240

4 x 240

2 X 240

4 x 185

3 x 185

2 x 400

(1)the rated Mains 1 currents (In) have been determined for a minimum float charging voltage of 423V and full rated load with a power factor of 0.8.

(2)the cable cross-sections are given for copper conductors. They are calculated according to permissible temperature rise and allow for line voltage drops over a maximum length of 100 m (AC circuits) or 25 m (DC circuits if cables not provided). For greater lengths, the cross-sections should be chosen to limit voltage drops to 3% (AC) or 1% (DC).

NF C 15-100 authorizes a maximum of 4 cables per phase.

Heat losses

rectifier-inverter cubicles

rated

heat

 

inverter

losses (1)

 

output

 

 

 

 

in kVA

in kW

in cal./s

250

13,5

3220

300

17,5

4170

400

23

5480

 

 

 

450

25

5960

500

30

7150

600

32,8

7830

 

 

 

(1)the indicated heat losses are those produced by the unit at full rated load and with the battery float charging. They must be taken into account when dimensioning the air conditioning system. The cubicles are cooled by forced ventilation.

The air enters via the doors and grids at the bottom and is discharged via the roof.

static switch cubicles

rated

heat

 

SSC

losses (1)

 

output

 

 

 

 

in kVA

in kW

in cal./s

500

2,9

696

800

3,7

888

1200

< 0,5

< 120

2000

< 0,5

< 120

 

 

 

(1)the indicated heat losses are those produced by the unit at full rated load when operating on Mains 2. They are not to be taken into account when dimensioning the air conditioning system. The cubicles are cooled by forced ventilation.

"Pack advance" cubicles

rated

heat

 

inverter

losses (1)

 

output

 

 

 

 

in kVA

in kW

in cal./s

300

2,2

525

400

2,6

620

450

2,6

620

(1)the indicated heat losses are those produced by the unit at full rated load and with the battery float charging. They must be taken into account when dimensioning the air conditioning system. The cubicles are cooled by forced ventilation.

The air enters via the doors and grids at the bottom and is discharged via the roof.

6739381EN/

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Contents Mgetm GalaxyTM 2 6739381EN/JD Contents Characteristics common to all cubicles CharacteristicsPack Advance cubicles Static Switch cubiclesExternal maintenance bypass cubicles Rectifier-inverter cubiclesElectrical parameters for Mains 2 Electrical parameters for selecting protective devicesElectrical parameters for Mains RemarkHeat losses Electrical parameters for determining cable cross-sectionsLine current Mm2 KVA Inverters Amps Copper Aluminium Installation with parallel frequency convertersInstallation with parallel UPSs with a centralised SSC Number Total UPSLine current Number Total UPS Mains 2 or loadKVA Inverters Amps Copper Front HandlingPositioning the cubicles Side clearances provided by the spacing uprights RearCubicle footpads Rear Layout for a single-unit UPS with one battery cubicleFloor loads figure Cubicle layout on false floor or normal floor figures 6, 7Rectifier-inverter cubicle Power circuit wiring diagramsConnection via the top Special caseExample of a 2 parallel UPS rectifier-inverters with SSC Diagram for a frequency converter with batteriesDiagram for a frequency converter without batteries Static Switch CubicleModular UPS cubicle External maintenance bypass cubicle General Connection of power circuitsCross-section AA KVA single-unit UPS cubicles see the appendix 160kVA to 400kVA modular UPS rectifier-inverter cubicleXR2 XR5 XR3 XR6 Acpz XR4 XR7 600kVA parallel UPS cubicles see the appendixApoz XR4 XR7 500kVA single-unit UPS rectifier-inverter cubicle600kVA single-unit UPS cubicles see the appendix OffXM7 XR2 XR5 500kVA modular UPS rectifier-inverter cubicleXR4 XR7 XM5 XM133 Q1on Air admission Mains 1, load BatteryL1L2 L3 L1 L2 L3 Mains Battery Load XR1 XR8XR3 XR4 XR7 500/800kVA Static Switch CubicleFront Rear XR9 XR2 Q4SXR3 XR5 XR2 XR9 XR1 XR8 1200kVA Static Switch CubicleFront view XR7 XR4 UPS XR6Block XR1 Important noteAuxiliary TerminalKey to figure 1200kVA external maintenance bypass cubicleXR1 XR2 XR3 XR4 Connection of auxiliary circuits on the remote relay boardConnections between Apoz boards Connection to battery circuit breaker QF1Connections between cubicles Emergency shutdownMisi Connections between Misi boards modular UPSsXM XM XM XM XM XM 127 128 129 130 131Misi XR8 XR9 XR5 XR6 XR7 Acpz board of the Static Switch CubicleConnections Connection of the battery Temperature Monitor optionalInstalling the Temperature Monitor in a battery cubicle Temperature Monitor installation in a APC bySchneider Electric battery cubicle Temperature Monitor installation in a battery roomConsult manual 6739388XU for further information Rauz 1 board XM098 XM097 XR11 XM096 XR10 Connector XR10Connection of the LED remote indications unit Link to an IBM AS/400→ computerAfter making the connections Final installation stepsConfiguration of the AS/400→ Connection to the Media Contacts 9 relay boardUPS 500kVA Mains 2 line protectionRated inverter output Maximum permissible current KVA UPS 250 to 450kVACubicle mounting Cubicle mounting and connection for 600kVA UPSsInternal connections between cubicles Left cubicle of 600kVA single-unit or parallel UPS with SSC Connection of power and auxiliary circuitsXR2 XR5 XR3 XR6 XR4 XR7 Right cubicle of a 600kVA single-unit UPSMains Load L1 L2 L3 Air Admission Air admission Load Right cubicle of a 600kVA parallel UPS with SSCXR3 XR6 XR4 Card cage Left cubicleRight cubicle Q3BP XF1-XF2 XM1-XM2Mains Off Right cubicle of a 2000kVA Static SwitchCross-section AA Front view Air admission Air extractionXR6 XR3 XR5 XR2 Left cubicle of a 2000kVA Static SwitchXR9 XR1 XR8 Inverter input Details of earthing connections in the various cubicles250 to 400kVA rectifier-inverter cubicle 450 500kVA rectifier-inverter cubicle600kVA rectifier-inverter cubicle 120 to 1200kVA Static Switch CubiclesInverter Input Tele Monitor unit 2000kVA Static Switch CubiclesTele-Monitor unit Connection with Bolt, nut andmains 2 contact washer6739381ENPage 46 --JD6739381EN/JD
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