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VIPER0PHDTR Datasheet(PDF) 5 Page - STMicroelectronics |
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VIPER0PHDTR Datasheet(HTML) 5 Page - STMicroelectronics |
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5 / 36 page ![]() VIPer0P Pin setting DocID028423 Rev 2 5/36 1 Pin setting Figure 2: Connection diagram The PCB copper area for heat dissipation has to be provided under the DRAIN pins. Table 1: Pin description SO16N Name Function 1 PGND Power ground and MOSFET source. The pulsed current flowing through the Power MOSFET must be closed on this pin. The pin must be connected to the same ground plan of SGND with the shortest track. 2 EAGND Error amplifier ground reference. In case of non-isolated flyback converter with negative output voltage, this pin can be connected directly to the negative rail. Otherwise, in case of positive output voltage, the pin must be shorted to SGND. 3 VCC Controller supply. An external storage capacitor has to be connected across this pin and SGND. The pin, internally connected to the high-voltage current source, provides the VCC capacitor charging current at startup and, if self- supply mode is selected, also during steady-state operation. A small bypass capacitor (0.1 μF typ.) in parallel, placed as close as possible to the IC, is also recommended, for noise filtering purpose. 4 SGND Signal ground. All of the groundings of bias components must be tied to a trace going to this pin and kept separate from the pulsed current return. 5 FB Direct feedback. It is the inverting input of the internal transconductance E/A, which is internally referenced to 1.2 V with respect to EAGND. In case of non- isolated converter, the output voltage information is directly fed into the pin through a voltage divider. In case of primary regulation, the FB voltage divider is connected to the VCC. The E/A is disabled soldering FB to EAGND. 6 COMP Compensation. It is the output of the internal E/A. A compensation network is placed between this pin and SGND to achieve stability and good dynamic performance of the control loop. In case of secondary feedback, the internal E/A must be disabled and the COMP directly driven by the optocoupler to control the DRAIN peak current setpoint. PGND DRAIN DRAIN SGND COMP EAGND FB ON OFF DRAIN DRAIN N.C. N.C. N.C. N.C. VCC VIPer0P GIPD210420151108MT |
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