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Image | Part Number | D.S | Description | Package Category | Prices / Stock | Model | Action |
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IW673-00
Renesas Electronics
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1 | Combined with a MOSFET, the iW673 can emulate the diode rectifier at the secondary side of the flyback to reduce conduction loss. The iW673 determines the timing of the driver by sensing the voltage across the RDS(ON) to achieve lossless sensing. The iW673 uses proprietary digital adaptive turn-off control technology to minimize the turn-off deadtime of the synchronous rectifier so that the parallel Schottky diode required by conventional synchronous rectifiers can be eliminated. The integrated driver has s | SOT23 (6-Pin) | IW673-00 |
3
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IW673-20
Renesas Electronics
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1 | Combined with a MOSFET, the iW673 can emulate the diode rectifier at the secondary side of the flyback to reduce conduction loss. The iW673 determines the timing of the driver by sensing the voltage across the RDS(ON) to achieve lossless sensing. The iW673 uses proprietary digital adaptive turn-off control technology to minimize the turn-off deadtime of the synchronous rectifier so that the parallel Schottky diode required by conventional synchronous rectifiers can be eliminated. The integrated driver has s | SOT23 (6-Pin) | IW673-20 |
3
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IW673-10
Renesas Electronics
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1 | Combined with a MOSFET, the iW673 can emulate the diode rectifier at the secondary side of the flyback to reduce conduction loss. The iW673 determines the timing of the driver by sensing the voltage across the RDS(ON) to achieve lossless sensing. The iW673 uses proprietary digital adaptive turn-off control technology to minimize the turn-off deadtime of the synchronous rectifier so that the parallel Schottky diode required by conventional synchronous rectifiers can be eliminated. The integrated driver has s | SOT23 (6-Pin) | IW673-10 |
3
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IW673-01
Renesas Electronics
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1 | Combined with a MOSFET, the iW673 can emulate the diode rectifier at the secondary side of the flyback to reduce conduction loss. The iW673 determines the timing of the driver by sensing the voltage across the RDS(ON) to achieve lossless sensing. The iW673 uses proprietary digital adaptive turn-off control technology to minimize the turn-off deadtime of the synchronous rectifier so that the parallel Schottky diode required by conventional synchronous rectifiers can be eliminated. The integrated driver has s | SOT23 (6-Pin) | IW673-01 |
3
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iW673-88
Renesas Electronics
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1 | Combined with a MOSFET, the iW673 can emulate the diode rectifier at the secondary side of the flyback to reduce conduction loss. The iW673 determines the timing of the driver by sensing the voltage across the RDS(ON) to achieve lossless sensing. The iW673 uses proprietary digital adaptive turn-off control technology to minimize the turn-off deadtime of the synchronous rectifier so that the parallel Schottky diode required by conventional synchronous rectifiers can be eliminated. The integrated driver has s | SOT23 (6-Pin) | iW673-88 |
3
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IW673-00
Dialog Semiconductor GmbH
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1 | Switching Controller, Current-mode, 0.3A, PDSO6, SOT-23, 6 PIN | IW673-00 |
0
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IW673-20
Dialog Semiconductor GmbH
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1 | Switching Controller, Current-mode, 0.3A, PDSO6, SOT-23, 6 PIN | IW673-20 |
0
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IW673-01
Dialog Semiconductor GmbH
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1 | Switching Controller, Current-mode, 0.3A, PDSO6, SOT-23, 6 PIN | IW673-01 |
0
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IW673-10
Dialog Semiconductor GmbH
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1 | Switching Controller, Current-mode, 0.3A, PDSO6, SOT-23, 6 PIN | IW673-10 |
0
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DIW67321000
Belden Inc
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1 | Wire And Cable, | DIW67321000 |
0
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