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DG Synchronization Panel is made up of a customised relay that automatically synchronises two or more power sources. In addition, we provide load sharing relays to ensure that each DG receives an equal load, as well as load management relays to regulate the start and stop of generators based on load requirements. With specialised PLC modules, a PLC-based synchronising panel may provide all of the monitoring and control of the synchronisation. PLCs can also be used for PC-based power management or load management.

L.T./H.T. Generator DG Synchronizing Panel. The synchronisation panel is depending on the load in KW. As a result, genuine sharing, starting, halting, and transfers are load-dependent rather than artificial parameters like voltage, current, and so on. Because modifications are made only through software, changing the scheme becomes incredibly simple. There is no need to change cables or add components such as relays or contactors, which is time-consuming, inconvenient, and takes up more space.

Because of PLC programming, KW sharing, KVAr sharing, and PF sharing are all highly accurate. In terms of KW, KVAr, and PF, there is no potential of uneven distribution. Manual involvement in D. G. set operation is not necessary for any form of load augmentation or reduction. Manual override is available in the event of an emergency. is conceivable It is feasible to use special programming to detect the Real Time Clock (RTC). D. G. sets may be used to their full potential thanks to KW-dependent load sharing. This improves D. G. Set efficiency and saves a significant amount of gasoline.

D. G. Sets are always tried to run at a load factor of 70% to 90%, which provides the most efficiency. With our technology, this is simple to accomplish.




 Auto On Main Failure

 Synchronizing

 Active Load Sharing

 Reactive Load Sharing

 Generator Protector


• Operation is straightforward because to the intuitive UI. To run the system, there is little or no learning curve.
• A primary screen featuring navigation buttons and non-critical switches and buttons.           
• The operator can manually launch automated system testing procedures from the system testing screen.
• Upon admission, the generator interface settings were locked into the PLC control system.
• Hard connected manual control switches in master control are redundant to system load add/shed manual control.
• Upon entering, the generator optimization parameters were locked into the PLC control system.
• Rather of employing rigid load blocks, the system is designed to dynamically add or shed weight dependent on the system load level.
• The system is set up to track the magnitude of each load on a per-load basis. This enables the system to swiftly calculate the number of loads to be added.
• Whether it’s in the middle of the afternoon or the middle of the night, get out of the system.
• A governor controller is provided with the capability required by various applications as well as the flexibility to interface with a variety of current engines.
• It can work in combination with a speed controller or on its own.
• The generator may be softly loaded and unloaded.
• Load sharing, built-in var/pf controller (kW and kVar).
• It has a built-in automated synchronizer that checks for voltage match.


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