| 전자부품 데이터시트 검색엔진 |
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ST-ONEMP 데이터시트(PDF) 16 Page - STMicroelectronics |
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ST-ONEMP 데이터시트(HTML) 16 Page - STMicroelectronics |
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16 / 39 page ![]() The second port controller and DC/DC converter are connected on the SVCC, before the load switch and before the current sense resistor. Using this configuration, both the load switch and the current sense act only on the main TypeC output. The GPIO0 pin is driven by a logic signal providing information about the connection of the second port: depending on its logic level, the ST-ONEMP chooses two different sets of PDOs and APDOs providing either full or reduced power on the main TypeC port to implement a power sharing scheme. The GPIO1 is used to keep the DC/DC converter off during startup until the output voltage is stable. 8.2 External component selection 8.2.1 Symbols used in this section Ipk peak magnetizing current Lp primary side inductance Lk primary side leakage inductance Vi converter input voltage Vo converter output voltage n transformer turns ratio Tsw switching period fsw switching frequency Po converter output power D duty cycle Cph phase (switching) node total capacitance (typically, switch Coss + transformer input capacitance) Cclamp clamp capacitor value VpriPk peak primary side voltage fsamp control loop sampling frequency Cout output capacitor value Vdrop voltage drop during step load transient Istep load transient current step 8.2.2 Transformer design 8.2.2.1 Turns ratio The ideal operating condition for a flyback is with duty cycle around 50%. The turns ratio is anyway limited by the voltage capability of the primary side switches. As a first approximation, the turns ratio can be selected considering the maximum input and output voltage and selecting the highest value for which the voltage stress on the primary side switches is acceptable. The voltage stress can be calculated asVpriPk=Vi+nVo+Ipk LkCclamp (1) The last term in the equation can be ignored for a first approximation, then considered after component selection. Typical turns ratio value for a wide input range, 20V output USB-PD application is around 6. 8.2.2.2 Primary side inductance – switching frequency The ST-ONEMP Non complementary active clamp operates in a similar way as a quasi-resonant flyback, so as a first approximation the relation between the switching frequency and the primary side inductance can be calculated as Lp= VinVo Vi−nVo 2 12fswPo (2) For a more accurate calculation the clamping time and the deadtimes must be considered, especially for high frequency converters. The following equation can be used to calculate the switching frequency when the system operates in ZVS: ST-ONEMP External component selection DS13989 - Rev 2 page 16/39 |
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