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Editing voltage regulator module

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===== Voltage regulation =====
 
===== Voltage regulation =====
The end goal of the circuit is to deliver a constant voltage of our choosing. On a modern microprocessor this might be around 1.2 volts. To achieve 1.2 V, the circuit needs to cut off the [[inductor]] charging when the voltage at point ''B'' reaches 1.2 V. Once that happens the voltage will start to drop at which point the circuit will go back to charging up the inductor. The entire cycle is repeated forever through a technique known as [[pulse-width modulation]], maintaining the average voltage at the desired operating voltage. At roughly 50% [[duty cycle]], the output voltage at point [[B]] will be 6 V. To get our desired 1.2 V the duty cycle should be 10%. In actual circuits, the closing and opening of the low-side and high-side MOSFETs is done by the [[PWM Controller]] along with a driver or a doubler.
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The end goal of the circuit is to deliver a constant voltage of our choosing. On a modern microprocessor this might be around 1.2 volts. To achieve 1.2 V, the circuit needs to cut off the [[inductor]] charging when the voltage at point ''B'' reaches 1.2 V. Once that happens the voltage will start to drop at which point the circuit will go back to charging up the inductor. The entire cycle is repeated forever through a technique known as [[pulse-width modulation]], maintaining the average voltage at the desired operating voltage. At roughly 50% [[duty cycle]], the output voltage at point [[B]] will be 6 V. To get our desired 1.2 V the duty cycle should be 10%.
  
 
:: [[File:vrm voltage 12v to 1p2v.svg|900px]]
 
:: [[File:vrm voltage 12v to 1p2v.svg|900px]]

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