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Improving the constant supply of low current using a device to an electrolytic cell, comprises determining the low-voltage frequency to set a timer, detecting the flow of sinusoid to implement the timer, and measuring the current
Improving the constant supply of low current using a device to an electrolytic cell, comprises determining the low-voltage frequency to set a timer, detecting the flow of sinusoid to implement the timer, and measuring the current
The process comprises determining the low-voltage frequency to set a timer, detecting the flow of sinusoid to implement the timer, measuring the current, determining the instant or second half sinusoid to set a timer to zero, controlling a power MOSFET that opens or closes only at the zero and crosses pair of half-sine wave when a mean value of current is reached. A low-voltage-frequency is determined by measuring the time interval between the start of two vibrations. The time interval measurement is used to set the timer. The process comprises determining the low-voltage frequency to set a timer, detecting the flow of sinusoid to implement the timer, measuring the current, determining the instant or second half sinusoid to set a timer to zero, controlling a power MOSFET that opens or closes only at the zero and crosses pair of half-sine wave when a mean value of current is reached. A low-voltage-frequency is determined by measuring the time interval between the start of two vibrations. The time interval measurement is used to set the timer that allows a microprocessor to determine when to set on or off the power MOSFET. The power management is done by removing a pair of half-wave transformer secondary side with a power MOSFET. The regulation of current is carried using the microcontroller. An independent claim is included for a device for improving the constant supply of low current to an electrolytic cell using a device.
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