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L6739 数据表(PDF) 17 Page - STMicroelectronics

部件名 L6739
功能描述  CPU and DSP power supply
PDF  30 Pages
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制造商  STMICROELECTRONICS [STMicroelectronics]
网页  http://www.st.com
标志 STMICROELECTRONICS - STMicroelectronics

L6739 数据表(HTML) 17 Page - STMicroelectronics

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L6739
High current embedded drivers
30
8
High current embedded drivers
The L6739 device provides high current driving control. The driver for the high-side
MOSFET uses the BOOT pin for supply and the PHASE pin for return. The driver for the
low-side MOSFET uses the VCCDR voltage for supply and the GND pin for return. An
embedded linear regulator is provided to guarantee proper supply voltage to the high-side
and low-side drivers which are optimized for such regulated voltage to guarantee minimum
deadtimes and higher efficiency. The LDO can be bypassed, in case of low 5 V VCC
applications, by properly shorting VCCDR to VCC. In this case the LDO automatically
disables reducing consumptions.
The embedded driver embodies an anti shoot-through and adaptive deadtime control to
minimize the low-side body diode conduction time maintaining good efficiency and saving
the use of Schottky diodes: when the high-side MOSFET turns off, the voltage on its source
begins to fall; when the voltage reaches about 2 V, the low-side MOSFET gate drive voltage
is suddenly applied. When the low-side MOSFET turns off, the voltage at the LGATE pin is
sensed. When it drops below about 1 V, the high-side MOSFET gate drive voltage is
suddenly applied. If the current flowing in the inductor is negative, the source of the high-
side MOSFET never drops. To allow the low-side MOSFET to turn-on even in this case,
a watchdog controller is enabled: if the source of the high-side MOSFET doesn't drop, the
low-side MOSFET is switched on, so allowing the negative current of the inductor to
recirculate. This mechanism allows the system to regulate even if the current is negative.
8.1
Boot capacitor design
The bootstrap capacitor needs to be designed in order to show a negligible discharge due to
the high-side MOSFET turn-on. In fact, it must give a stable voltage supply to the high-side
driver during the MOSFET turn-on, also minimizing the power dissipated by the embedded
boot switch. Figure 8 gives some guidelines on how to select the capacitance value for the
bootstrap according to the desired discharge and depending on the selected MOSFET.
Figure 8. Bootstrap capacitor design



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