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PWD13F60 数据表(PDF) 16 Page - STMicroelectronics |
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PWD13F60 数据表(HTML) 16 Page - STMicroelectronics |
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16 / 26 page ![]() Functional description PWD13F60 16/26 DocID030865 Rev 2 6.2 Bootstrap structure Bootstrap circuitry is typically used to supply the high-voltage section. This function is normally accomplished by a high-voltage fast recovery diode (see Figure 13 a). In the PWD13F60 a patented integrated structure replaces the external diode. It is realized by the series of the low-voltage diode and a high-voltage DMOS, driven synchronously with the low side driver (LVG), as shown in Figure 13 b. An internal bootstrap provides the DMOS driving voltage. The integrated diode structure is actively turned on and guarantees the best performance when the low side driver is on. In those applications whose control strategy requires recharging the bootstrap capacitor also when the low side driver is off, the use of an external bootstrap diode in parallel to the integrated structure is possible. Figure 13. Bootstrap structure 6.3 VCC supply pins and UVLO function The VCCx supply pin supplies the current to the low side section of the gate driver as well as to the integrated bootstrap diode used to charge the bootstrap capacitor. During outputs commutations the average current used to provide gate charge to the high side and low side MOSFETs flow through these pins. The two pins VCC1 and VCC2 separately supply power to the two drivers even if usually are connected together at the power supply in the final application. The PWD13F60 supply voltages (VCCx) are continuously monitored by an undervoltage lockout (UVLO) circuitry that turns the high side and low side MOSFETs off when the supply voltage goes below the VCC_thOFF threshold. The UVLO circuitry turns on the MOSFET, accordingly to the LIN and HIN status, as soon as the supply voltage goes above the VCC_thON voltage. A VCC_hys hysteresis is provided for the noise rejection purpose. Two separate UVLO circuitries are provided to monitor VCC1 and VCC2. When a UVLO occurs on a single rail, only the related half bridge MOSFETs are turned off. |
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