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AN2115 Datasheet(PDF) 16 Page - STMicroelectronics |
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AN2115 Datasheet(HTML) 16 Page - STMicroelectronics |
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16 / 33 page ![]() Synchronization AN2115 16/33 Doc ID 11165 Rev 5 5 Synchronization The device can also be synchronized with an external signal from 1 MHz up to 2 MHz through the internal PLL. When the device is locked, the external signal and the high side turn on rising edges are aligned. In this case, low noise mode is automatically selected. The device could skip some cycles in very light load conditions depending on the input/output conditions. The internal synchronization circuit is inhibited in short circuit and overvoltage conditions in order to keep the protections effective (see relative sections). The synchronization signal amplitude can range typically from 1 V to VCC and the duty factor can range typically from 20% to 80%. Occasionally, if the synchronization signal duty cycle is very similar to the application duty factor, a jittering can be detected on the LX pin. In this case some practical solutions are listed below: 1. Change the synchronization signal duty factor. 2. Decrease the synchronization signal amplitude. 3. Add a 20 pF capacitor between the COMP pin and ground. The device switches at 1.4 MHz (typ.) if no synchronization signal is applied. 5.1 Dropout operation The Li-Ion battery voltage ranges from approximately 3 V to 4.2 V (depending on the anode material). If the regulated output voltage is from 2.5 V and 3.3 V, it is possible for the battery voltage to decrease to the regulated voltage near the end of battery life. In this case, the device stops switching and works at 100% of duty cycle, minimizing the dropout voltage and the device losses. The minimum input voltage necessary to ensure output regulation can be calculated as: Equation 8 Where RDS(on)_HS_MAX is the maximum high side resistance and RL is the series inductor resistance. 5.2 PGOOD (Power Good output) The device also features a Power Good output signal. The VFB pin is internally connected to a comparator with a threshold set at 90% of the reference voltage (0.6 V). Since the output voltage is connected to the VFB pin by a resistor divider, when the output voltage goes lower than the regulated value, the VFB pin voltage goes lower than 90% of the internal reference value. The internal comparator is triggered and the Power Good pin is pulled down. The pin is an open drain output, so it should be connected to a pull up resistor. If the feature is not required, the pin can be left floating. 5.3 Adjustable output voltage The output voltage can be adjusted by an external resistor divider from a minimum value of 0.6 V up to the input voltage. The output voltage value is given by: V in MIN – V o I o R DS on () HS – MAX – R L + () • + = |
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