Switch control circuit and buck converter including the same
First Claim
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1. A switch control circuit for a power switch and a synchronous switch that are connected to an inductor, the switch control circuit comprising:
- a comparator configured to compare a detection voltage obtained by detecting an inductor current flowing through the inductor with a predetermined reference voltage;
a delay unit configured to delay an output of the comparator by a zero voltage delay time; and
a zero voltage delay calculation unit configured to calculate the zero voltage delay time based on an ON time and an OFF time of the power switch and a delay time,wherein the delay time is determined based on the inductor and parasitic capacitors of the power switch and the synchronous switch, andwherein the zero voltage delay calculation unit is further configured to calculate a difference between a first zero voltage delay time calculated for a first previous switching period of the power switch and a second zero voltage delay time calculated for a second previous switching period of the power switch and to compensate for a zero voltage delay time of a current switching period of the power switch using the calculated difference.
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Abstract
A buck converter includes a power switch having one end to which an input voltage is transferred, a synchronous switch connected between the other end of the power switch and the ground, an inductor having an end connected to the other end of the power switch, and a switch control circuit configured to calculate a zero voltage delay time based on at least an ON time of the power switch and a delay time. The delay time is determined based on the inductor and parasitic capacitors of the power switch and the synchronous switch.
9 Citations
7 Claims
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1. A switch control circuit for a power switch and a synchronous switch that are connected to an inductor, the switch control circuit comprising:
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a comparator configured to compare a detection voltage obtained by detecting an inductor current flowing through the inductor with a predetermined reference voltage; a delay unit configured to delay an output of the comparator by a zero voltage delay time; and a zero voltage delay calculation unit configured to calculate the zero voltage delay time based on an ON time and an OFF time of the power switch and a delay time, wherein the delay time is determined based on the inductor and parasitic capacitors of the power switch and the synchronous switch, and wherein the zero voltage delay calculation unit is further configured to calculate a difference between a first zero voltage delay time calculated for a first previous switching period of the power switch and a second zero voltage delay time calculated for a second previous switching period of the power switch and to compensate for a zero voltage delay time of a current switching period of the power switch using the calculated difference. - View Dependent Claims (2, 3)
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4. A buck converter comprising:
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a power switch having one end to receive an input voltage; a synchronous switch connected between a second end of the power switch and ground; an inductor having an end connected to the second end of the power switch; and a switch control circuit configured to calculate a zero voltage delay time based on an ON time and an OFF time of the power switch and a delay time, wherein the delay time is determined based on the inductor and parasitic capacitors of the power switch and the synchronous switch, wherein the switch control circuit is further configured to calculate a difference between a first zero voltage delay time calculated for a first previous switching period of the power switch and a second zero voltage delay time calculated for a second previous switching period of the power switch and compensate for a zero voltage delay time of a current switching period of the power switch using the calculated difference.
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5. A switch control circuit for a power switch and a synchronous switch that are connected to an inductor, the switch control circuit comprising:
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a comparator configured to compare a detection voltage obtained by detecting an inductor current flowing through the inductor with a predetermined reference voltage; a delay unit configured to delay an output of the comparator by a zero voltage delay time; and a zero voltage delay calculation unit configured to calculate the zero voltage delay time based on an ON time and an OFF time of the power switch and a delay time, wherein the delay time is determined based on the inductor and parasitic capacitors of the power switch and the synchronous switch, and wherein the zero voltage delay calculation unit is further configured to calculate the zero voltage delay time based on a result of adding the ON time and the OFF time of the power switch, dividing the sum by the ON time, and multiplying the quotient by the delay time. - View Dependent Claims (6, 7)
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Specification