Introduction to Low-Frequency Inverters by Costa Power Industries Pvt. Ltd
For those who are unaware, the purpose of an off-grid inverter is simple, yet incredibly important for anyone who is looking to set up an off-grid or back up power system, including solar powered systems. Inverters convert the DC power stored within a battery (direct current, 12V, 24V or 48V) into AC power (alternating current, 230-240V) that can be used to run your household items and electrical appliances, from fridges to televisions to mobile phone chargers. Inverters are an essential item for anyone without access to a mains power source, as they can easily provide a plentiful amount of electricity.
Inverters come in many different shapes and sizes, and vary in a diverse amount of ways. There are two main contrasting characteristics between different types of off-grid inverter. Costa power is Inverter Dealer in Mumbai as well as Inverter supplier in Mumbai and all parts of India. We specially believe and distributors for Luminous Inverter dealer and Luminous inverter battery dealer along with Microtek inverter Dealer and Microtek Inverter battery dealer in Mumbai and across India.
The type of power output, categorized by which sine wave it uses – modified or pure sine wave. Photonic Universe only stocks pure sine wave inverters, which are more efficient and have a broader range of suitable appliances they can power, compared to modified sine wave inverters.
What internal frequency the inverter circuits operate at - low frequency or high frequency (not to be confused with AC power output frequency which is a standard 50Hz for our inverters).
We are pleased to add low-frequency inverters to our catalogue, and this article is going to help anyone who is looking to buy an inverter find out whether a low-frequency inverter is right for them, so that they can make an informed and confident purchase.
Low-frequency inverters have the advantage over high-frequency inverters in two fields: peak power capacity, and reliability. Low-frequency inverters are designed to deal with higher power spikes for longer periods of time than high-frequency inverters. Power spikes can occur for a number of reasons (e.g. devices like power tools, pumps, vacuum cleaners and other appliances with electric motors require high starting power); when inverters experience such spikes, they can endure the increased power for a short period of time before shutting down in order to prevent any damage being done to them. Low-frequency inverters have much greater peak power capacity to handle large loads with power spikes than high-frequency inverters. In fact, low-frequency inverters can operate at the peak power level which is up to 300% of their nominal power level for several seconds, while high-frequency inverters can operate at 200% power level for a small fraction of a second. The second main difference is reliability: low-frequency inverters operate using powerful transformers, which are more reliable and sturdy than the high-frequency inverter’s MOSFETs, which use electronic switching and more prone to damage, particularly at high power levels.
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