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MS1003SH Folha de dados(PDF) 39 Page - Shindengen Electric Mfg.Co.Ltd

Nome de Peças MS1003SH
Descrição Electrónicos  Control IC
PDF  41 Pages
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Fabricante Electrônico  SHINDENGEN [Shindengen Electric Mfg.Co.Ltd]
Página de início  http://www.shindengen.co.jp/
Logo SHINDENGEN - Shindengen Electric Mfg.Co.Ltd

MS1003SH Folha de dados(HTML) 39 Page - Shindengen Electric Mfg.Co.Ltd

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MS1003SH・MS1004SH
Application Note Ver.2.2
SHINDENGEN ELECTRIC MFG. CO. , LTD
39/41
1) VDC voltage
This is the same as the input capacitor voltage. Formula 2 gives the maximum value. In this
example, the maximum value is 186.7 V.
2) Flyback voltage
This is the transformer’s flyback voltage:
1
1
1
)
(
S
F
O
N
V
V
Np
The following formula gives the voltage:
8
)
6
.
0
12
(
68
=107.1[V]
3) Surge voltage
This surge voltage attributable to leakage inductance varies from specification to specification and
from transformer to transformer. In this example, it is estimated to be 150 V at maximum. This
parameter must be confirmed using actual equipment.
4) Quasi-resonance trough voltage
The higher this voltage, the greater the switching loss. This is obtained by subtracting (2) from (1)
above. In this example, it is 186.7 V – 107.1 V = 79.6 V.
The maximum voltage of the main switching device is 186.7 V + 107.1 V + 150 V = 443.8 V. For
instance, a MOSFET capable of withstanding 500 V is suitable for use with a margin exceeding 10%
(450 V). If the withstand voltage is too low, reduce on duty ratio D. Increase the on duty ratio D to
make the most of quasi-resonance effects.



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