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106963 Datasheet(PDF) 24 Page - PHOENIX CONTACT |
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106963 Datasheet(HTML) 24 Page - PHOENIX CONTACT |
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24 / 25 page ![]() TRIO-PS-2G/1AC/12DC/5/C2LPS 106963_en_00 PHOENIX CONTACT 24 / 25 17 Operating modes 17.1 Series operation Two power supplies can be switched in series, to double the output voltage. For connection in series, only power supplies of the same performance class should be used. An output voltage of, for example, 24 V DC can be provided, if two 12 V power supplies are connected in series. Various voltage levels are made possible by varying the switching of the respective output voltage and the measurement reference point. Figure 21 Wiring principle, voltage levels with two power supplies 17.2 Parallel operation Devices of the same type can be connected in parallel to increase both redundancy and power. By default upon delivery, no further adjustments are required. If the output voltage is adjusted, a uniform distribution of power is guaranteed by setting all parallel operated power supply units to exactly the same output voltage. To ensure symmetrical current distribution we recommend that all cable connections from the power supply unit to the busbar are the same length and have the same cross section. Depending on the system, for parallel connection of more than two power supplies a protective circuit should be installed at each individual device output (e.g., decoupling diode, DC fuse or circuit breaker). This prevents high return currents in the event of a secondary device fault. Figure 22 Schematic diagram in parallel operation 17.3 Redundant operation Redundant circuits are suitable for supplying systems which place particularly high demands on operational reliability. If a fault occurs in the primary circuit of the first power supply, the second device automatically takes over the complete power supply without interruption, and vice versa. To this end, the power supplies to be connected in parallel are dimensioned so that the total current requirements of all loads can be fully met by a single power supply. External decoupling diodes are required for 100% redundancy. 17.3.1 Decoupling with diode module Figure 23 Schematic diagram, decoupling with diode module -24 V - + - + +12 V -12 V - + - + +24 V - + - + Σ =I N + – +– - + I N - + I N Σ =I N + – +– - + I N - + I N |
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