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LT3511IMS-TRPBF データシートの表示(PDF) - Linear Technology

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LT3511IMS-TRPBF
Linear
Linear Technology Linear
LT3511IMS-TRPBF Datasheet PDF : 26 Pages
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LT3511
Applications Information
Example:
NPS
<
150V – 72V – 40V
15V + 0.5V
NPS < 2.45
NPS = 2
The choice of turns ratio is critical in determining output
power as shown earlier in the Output Power section. At
this point, a third winding can be added to the transformer
to drive the BIAS pin of the LT3511 for higher efficiencies.
Choose a turns ratio that sets the third winding voltage
to regulate between 3.3V and 6V for maximum efficiency.
Choose a third winding ratio to drive BIAS winding with
5V. (Optional)
Example:
NTHIRD = VTHIRD = 5V = 0.33
NS
VOUT 15V
The turns ratio of the transformer chosen is as follows
NPRIMARY: NSECONDARY: NTHIRD = 2:1:0.33.
Step 2: Calculate maximum power output at minimum
VIN.
POUT(VIN(MIN)) = η • VIN(MIN) • IIN = η • VIN(MIN) • D •
IPEAK • 0.5
D=
(VOUT + VF ) NPS
(VOUT + VF ) NPS + VIN(MIN)
η = Efficiency = ~75%
IPEAK = Peak switch current = 0.26A
Example:
D = 0.46
POUT(VIN(MIN)) = 1.62
IOUT(VIN(MIN)) = POUT(VIN(MIN))/VOUT = 0.11A
The chosen turns ratio satisfies the output current re-
quirement of 100mA. If the output current was too low,
the minimum input voltage could be adjusted higher. The
turns ratio in this example is set to its highest ratio given
switch voltage requirements and margin for leakage in-
ductance voltage spike.
16
Step 3: Determine primary inductance, switching fre-
quency and saturation current.
Primary inductance for the transformer must be set
above a minimum value to satisfy the minimum off time
requirement.
( ) LPRI
tOFF(MIN) NPS VOUT
IPEAK(MIN)
+
VF
tOFF(MIN) = 400ns
IPEAK(MIN) = 55mA
Example:
LPRI
400ns
2 (15
0.055
+
0.5)
LPRI 225µH
In addition, primary inductance will determine switching
frequency.
fSW
=
1
tON + tOFF
=
LPRI IPEAK
VIN
1
+
LPRI IPEAK
NPS (VOUT +
VF
)
IPEAK
=
VOUT
η
IOUT
VIN D
2
Example:
Let’s calculate switching frequency at our nominal VIN
of 48V.
D
=
(15 + 0.5) 2
(15 + 0.5) 2 + 48
=
0.39
IPEAK
=
15V
0.75
0.1A
48V
2
0.39
=
0.21A
Let’s choose LPRI = 350μH. Remember, most transform-
ers specify primary inductance with a tolerance of ±20%.
fSW = 256kHz
Finally, the transformer needs to be rated for the correct
saturation current level across line and load conditions.
In the given example, the worst-case condition for switch
current is at minimum VIN and maximum load.
3511fa

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