Muricken's generator is functioning as an emergency power house for the last 30 years. This is converting direct current (DC) to alternating current (AC). When the power is available, it charges a set of batteries taking power from power line or from solar plates. When power cut occurs, stored DC battery voltage is converted into 240V AC by an inverter to run all of house holds appliances. Thus no electricity black out is possible at home. There are two types of inverters. Digital, (controlled by micro chip) and Deluxe (analogue MOSFET, Transistor). The choice is yours. Wall mount or floor mount models are available.
An inverter is used to provide power to minimum level in case of power failure. Most of the inverters available in markets are of general purpose, meant only for lighting. They can not handle any power surge and are failure under such conditions. That is why a heavy duty inverter comes into picture. This inverter can handle tremendous momentary loads as close to short circuit as possible and even short circuit without getting damaged. The output is sinusoidal and can be fed to sensitive instruments.
In simple inverter circuit, DC power is connected to a transformer through the centre tap of the primary winding. A switch is rapidly switched back and allows the current to flow back to the DC source following two alternate paths through one end of the primary winding and then through the other end. The alternation of the direction of current in the primary winding of the transformer produces alternating current (AC) in the secondary circuit.
FLYLINE INVERTER FEATURES
► Bypass circuits specially designed for power savings.*** Maintenance free.*** Attractive designs.*** It has low power consumption.*** Single switch operation.*** Fully automatic.*** Auto resetting.*** Protection from lightening High/Low voltage trip.*** Overload protection.*** Can connect to the existing wiring.*** Over charge and deep discharge cut off.*** Audio and visual indicators.*** Switch for inverter auto and manual operation.*** Separate switch for battery charger on-off.*** MOSFET topology ( metal–oxide–semiconductor field-effect transistor ).► Single sided advanced PCB with very low component design.
|| IN-C 250
|| IN-C 400
|| IN-C 650
|| IN-C 1000
|| IN-C 1300
|| IN-C 2000
|| IN-C 3000
|| 250 VA
| Input voltage
| Output voltage
| No load loss
| Output frequency
|| 50 - 60Hz
| Output wave
|| Modified Sine Wave
Flyline Inverter images: -
Operation Diagram : -
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