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LT4322 数据表(PDF) 11 Page - Analog Devices

部件名 LT4322
功能描述  Floating, High-Voltage Active Rectifier Controller
PDF  29 Pages
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制造商  AD [Analog Devices]
网页  http://www.analog.com
标志 AD - Analog Devices

LT4322 数据表(HTML) 11 Page - Analog Devices

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Data Sheet
LT4322
analog.com
Rev. 0
11 of 29
For DC input supplies, VDDC must be driven from a DC supply voltage that is at least 9.5V higher than the ANODE/VSSA
voltage. Alternatively, VDDA can also be driven directly from a DC power supply whose voltage ranges from 9V to 14V
above VSSA. In this case, the LDO is not used, and users must connect VDDC to VSSA.
Internal undervoltage lockout (UVLO) circuitry drives the GATE pin to VSSA until VDDA has enough voltage to operate
properly. During this time, there is still a conduction path from input to output via the body diode of the external
MOSFET.
Steady-State Operation
Figure 19 shows the MOSFET gate and output voltage waveforms in steady-state operation for the full-bridge rectifier
circuit shown in Figure 20. The input power supply waveform VIN is a 120VRMS, 60Hz sine wave. As VIN nears its peak
voltage on positive half cycles, bottom side gate VBG1 and top side gate VTG1 are driven 12V above their respective
VSSA voltages, turning on M1 and M2 and charging VOUT to the peak VIN voltage. On negative half-cycles, bottom-side
gate VBG2 and top-side gate VTG2 are driven 12V above their respective VSSA voltages, turning on M3 and M4 and
charging VOUT to the peak VIN voltage.
Power MOSFETs M1 to M4 conduct high current to the output with a much lower forward voltage drop than a
Schottky diode, resulting in much higher efficiency and a lower temperature rise.
Figure 19. Full-Bridge Waveforms in Steady State
VTG1(30V/DIV)
VBG1(30V/DIV)
VOUT(30V/DIV)
VTG2(30V/DIV)



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