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AN628 Datasheet(PDF) 6 Page - STMicroelectronics |
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AN628 Datasheet(HTML) 6 Page - STMicroelectronics |
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6 / 35 page ![]() AN628 APPLICATION NOTE 6/35 PWM block. This block, comparing the sawtooth produced by the oscillator, with the reference signal from the C/A output, modulates its output signal duty-cycle. Its output, by the logic and driver sections, allows the controlled switch (Q) to modulate the inductor current. Logic block. Controls the flow from the PWM and the output with the Auxiliary function signals and soft start. Driver block. The driver supplies the gate current to turn on and off the power switch (Q). It delivers up to 1A peak current to allow high switching frequency applications. Aux functions. The Auxiliary functions allow to avoid overstress on power components of the application. Power supply block. This circuitry delivers the internal supply and references, recognizes the Undervoltage and Stand-by conditions to save consumption. P.F.C. BOOST DESIGN CRITERIA L4981 PIN DESCRIPTION AND BIASING CIRCUITRY. Pin 1. P-GND (Power stage ground). This pin, on the pc-board, has to be connected close the external Mosfet source. Pin 2. IPK (Overcurrent protection input). The current limitation is obtained with an internal comparator that holds down the output driver when the voltage at IPK input goes down to zero. In the L4981A, to preset the IPK input there is an internal current source (Iipk) of typically 85 µA. The maximum peak current (Ipk) can be programmed connecting (see fig. 6) a single resistor (Ripk) between this pin and the sense resistor (RS): In the L4981B, to preset the IPK input, an auxiliary resistor (Raux), connected from the VREF pin to the IPK pin, is required. The maximum peak current (Ipk) can be programmed choosing (see fig. 6) the resistances Raux and Ripk: Where: Note: If used with the L4981A, the auxiliary resistor avoids that the current source spread affects the precision of the protection simply getting an auxiliary current (Iaux) much higher than Iipk. R ipk R S I pk ⋅ I ipk ------------------- = R ipk R S I pk ⋅ I aux ------------------- = I aux V VREF R aux ------------------ = |
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