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AN2783 데이터시트(PDF) 23 Page - STMicroelectronics |
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AN2783 데이터시트(HTML) 23 Page - STMicroelectronics |
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23 / 47 page ![]() AN2783 Power converter 23/47 10 Power converter The PM8800 reference board implements a flyback converter operating in DCM (discontinuous mode) at low output power and in CCM (continuous mode) for medium to high output power. The output secondary rectifier can be a classic diode for low to medium output power or a synchronous rectifier for high output current. Flyback configuration is the standard choice for a low-power isolated converter. It is the simplest isolated converter, using the lowest number of power components. CCM has been selected in order to reduce the stress on the power components, especially on the secondary side. CCM is assured only at medium to full output power, while in low output power the converter works in DCM which allows reducing the size of the power transformer. It is out of the scope of this document to show the whole flyback converter theory, which can be found in every basic power supply handbook. In this application note we focus only on the aspects directly related to the use of the PM8800 in a flyback converter. 10.1 Flyback continuous conduction mode The flyback converter is in DCM when the energy stored during the ON phase has been completely transferred to the secondary side during the OFF phase. This means that a small period of time still remains during which no current is flowing on either side of the power transformer. When this period of time does not exist, i.e. when the energy stored has not been completely transferred during the ON phase, the flyback is said to work in CCM. Compared to CCM, DCM presents higher peak and rms current values on the primary switch and on the output rectifier. This implies higher output ripple and require bigger input and output filters. CCM presents an RHP zero, which slightly complicates the control loop compensation. A flyback converter designed to work in CCM is also stable in DCM. The transfer function of a flyback in CCM is: Equation 5 The above equation can be written as: Equation 6 Vin Vds – () Ton ⋅ Vout Vd + () NTsw Ton – () ⋅⋅ = Vout Vd + () Vin Vds – () -------------------------------- D N1 D – () ⋅ --------------------------- = |
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