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LT8301MP 查看數據表(PDF) - Analog Devices

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LT8301MP Datasheet PDF : 24 Pages
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APPLICATIONS INFORMATION
VSW
<65V
<50V
VLEAKAGE
VSW
<65V
<50V
VLEAKAGE
VSW
<65V
<50V
LT8301
VLEAKAGE
tOFF > 450ns
tSP < 350ns
No Snubber
tOFF > 450ns
tSP < 350ns
TIME
TIME
with DZ Snubber
tOFF > 450ns
tSP < 350ns
with RC Snubber
Figure 5. Maximum Voltages for SW Pin Flyback Waveform
TIME
8301 F05
L
Z
D
L
C
R
8300 F06a
DZ Snubber
Figure 6. Snubber Circuits
8301 F06b
RC Snubber
A snubber circuit is recommended for most applications.
Two types of snubber circuits shown in Figure 6 that can
protect the internal power switch include the DZ (diode-
Zener) snubber and the RC (resistor-capacitor) snubber.
The DZ snubber ensures well defined and consistent
clamping voltage and has slightly higher power efficiency,
while the RC snubber quickly damps the voltage spike
ringing and provides better load regulation and EMI per-
formance. Figure 5 shows the flyback waveforms with the
DZ and RC snubbers.
For the DZ snubber, proper care must be taken when
choosing both the diode and the Zener diode. Schottky
diodes are typically the best choice, but some PN diodes
can be used if they turn on fast enough to limit the leakage
inductance spike. Choose a diode that has a reverse-volt-
age rating higher than the maximum SW pin voltage. The
Zener diode breakdown voltage should be chosen to bal-
ance power loss and switch voltage protection. The best
compromise is to choose the largest voltage breakdown.
Use the following equation to make the proper choice:
VZENER(MAX) ≤ 65V – VIN(MAX)
For an application with a maximum input voltage of 32V,
choose a 20V Zener diode, the VZENER(MAX) of which is
around 21V and below the 33V maximum.
The power loss in the clamp will determine the power
rating of the Zener diode. Power loss in the clamp is
highest at maximum load and minimum input voltage.
The switch current is highest at this point along with the
energy stored in the leakage inductance. A 0.25W Zener
will satisfy most applications when the highest VZENER
is chosen.
For more information www.analog.com
Rev. B
13

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