Does the compensation cabinet in your factory often burn out the capacitor? Or the measurement found that the harmonics of the power grid are too large, and even the switch can be seen sparking when the capacitor is switched on and off. The reason for the damage to the capacitor may be the lack of a series reactor.
The upgrading pressure on modern power distribution systems stems from the increasingly high demands for power quality, efficiency and compliance. A PFC solution, as an overall core power optimization approach that supports grid resilience and reduces TCO, has demonstrated a crucial role in numerous industries and their application scenarios.
In the power distribution rooms of factories, shopping malls, hospitals and other places, the switches that control capacitors are always in working state. Ordinary switches are easily damaged by excessive current after such frequent switching actions, which increases maintenance costs.
In a power system dominated by inductive loads, equipment operation needs to absorb a large amount of reactive power. Compensation intelligent low voltage power capacitor or Power auto compensation controller can be used to solve this problem.
A fire caused by overheating of a PFC capacitor will cause huge losses to the industrial power distribution system. Based on a library of tens of thousands of fault cases, Geyue Electric has summarized five overheating signals that must be intervened immediately in industrial low-voltage reactive power compensation scenarios, helping your enterprise avoid unexpected losses of more than six figures.
Worldwide, the pioneers in the transition to power factor correction technology based on the Internet of Things are mainly concentrated in countries and regions with high levels of industrial automation, strict energy efficiency policies, and developed Internet of Things infrastructure. Next, let's discuss the changes brought about by the countries and regions that led this revolution.
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