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HVLED101TR 数据表(PDF) 15 Page - STMicroelectronics |
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HVLED101TR 数据表(HTML) 15 Page - STMicroelectronics |
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15 / 36 page ![]() 6.2.5 Deep low consumption mode This state is intended to reduce the IC consumption to the minimum level in order to reduce the input power consumption during burst-mode condition (FB or OPTO driven). When the deep low consumption mode condition is removed, the system evolves to the relevant next state without turning on the high-voltage startup unit. 6.2.6 Auto-restart time and check state These are auxiliary states. Auto-restart time is intended to maintain the device supplied for a time equal to TART until a new restart procedure is automatically generated. If VCC drops below VCC-OFF, the timers are frozen, while if VCC drops below VCC-SHD the internal logic of the device is reset and all automatic procedures are also interrupted. The check state is a logic state that is invoked after VCC-ON trigger to check the status of all protections and take the proper actions according to protection logic. 6.3 Control loop The HVLED101 IC is optimized to operate as high power factor peak current mode quasi-resonant (QR) flyback (Figure 7). In order to realize this operating scheme, it embeds a multiplier that creates the threshold for the PWM comparator that turns off the main switch when the current measured across a shunt resistor, placed between the source of said switch and GND, reaches the above-mentioned threshold. During QR operation, the turn-on command is given by an internal logic that detects the falling edge subsequent to the transformer demagnetization and applies the delay time programmed by the resistance connected to DLY/CFG pin. A minimum off-time (TBLANK) is provided to ignore the falling edges that could be associated with spurious oscillations of leakage inductance. Figure 7. QR operating scheme GD TBLANK ZCD TDLY CS VCS VTRIG VARM GD ZCD CS unarmed already triggered VTRIG VARM VCS TBLANK TDLY TWAIT The IC operates in quasi-resonant mode, but one or more resonance valley can be skipped to slow down the operating frequency and improve the system efficiency. The VL pin can be used to adjust the valley skipping levels as described in the relevant paragraph. During fixed frequency operation, the turn-on command is given by an internal logic. HVLED101 Control loop DS14143 - Rev 2 page 15/36 |
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