
Communication
Figure 15 Calculating total load per UPS
Input
2 UPSes Connected to a Parallel Pod
L1  | L1  | 
N  | N  | 
L2  | L2  | 
GG
UPS1 UPS2
I/P O/P I/P O/P I/P O/P
Maintenance
Breaker
Optional L1
Output N
Distribution L2
Module G
Input
Output
L1
N
Load L2
G
3 UPSes Connected to a Parallel Pod
L1  | 
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N  | 
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L2  | 
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G  | 
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UPS1  | 
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  | UPS3  | 
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I/P O/P I/P O/P I/P O/P
Maintenance
Breaker
Optional L1
Output N
Distribution L2
Module G
Output
L1
N
Load L2
G
Table 3  | Calculating total load, 20kVA example | 
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20kVA Load, Full Load of Parallel Pod | 
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  | 2 UPSs Connected to Parallel POD  | 
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UPS 1  | 
  | UPS 2  | Total Output  | 
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5  | 
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Total load supported by the parallel POD for each of these configurations is 20kVA. If two UPSs are connected to  | ||||||||||||||||
the parallel POD, each provides 10kVA. If three UPSs are connected to the parallel POD, each provides 6.67kVA.  | ||||||||||||||||
This example is the full load capacity of the parallel POD.  | 
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Table 4  | Calculating total load, 12kVA example | 
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12kVA Load, Full Load of Parallel Pod | 
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2 UPSs Connected to Parallel POD  | 
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UPS 1  | UPS 2  | Total Output  | 
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  | UPS 2  | UPS 3  | 
  | Total Output  | |||||||
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3  | 
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Total load supported by the parallel POD for each of these configurations is 12kVA. If two UPSs are connected to  | ||||||||||||||||
the parallel POD, each provides 6kVA. If three UPSs are connected to the parallel POD, each provides 4kVA. This  | ||||||||||||||||
example is with all 120V loads evenly distributed between   | 
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UPS 1  | UPS 2  | Total Output  | 
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  | 1.33  | 2.67  | 1.33  | 2.67  | 
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Total load supported by the parallel POD for each of these configurations is 12kVA. If two UPSs are connected to  | ||||||||||||||||
the parallel POD, each provides 6kVA. If three UPSs are connected to the parallel POD, each provides 4kVA. This  | ||||||||||||||||
example is with more 120V loads connected on   | 
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Note that the 
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