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MIC2172 датащи(PDF) 13 Page - Micrel Semiconductor

номер детали MIC2172
подробное описание детали  100kHz 1.25A Switching Regulators Preliminary Information
PDF  16 Pages
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производитель  MICREL [Micrel Semiconductor]
домашняя страница  http://www.micrel.com
Logo MICREL - Micrel Semiconductor

MIC2172 датащи(HTML) 13 Page - Micrel Semiconductor

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1997
4-25
MIC2172/3172
Micrel
4
Then:
δ
2
× 1.25
1.25
× 4
δ ≥ 0.5 (50%) Use 0.55.
The slightly higher duty cycle value is used to overcome
circuit inefficiencies. A few iterations of equation (8) may be
required if the duty cycle is found to be greater than 50%.
Calculate the maximum transformer turns ratio a, or
N
PRI/NSEC, that will guarantee safe operation of the MIC2172/
3172 power switch.
(9)
a
V
CE FCE – VIN(max)
V
SEC
Where:
a = transformer maximum turns ratio
V
CE = power switch collector to emitter
maximum voltage
F
CE = safety derating factor (0.8 for most
commercial and industrial applications)
V
IN(max) = maximum input voltage
V
SEC = transformer secondary voltage (VOUT + VF)
For the practical example:
V
CE = 65V max. for the MIC2172/3172
F
CE = 0.8
V
SEC = 5.6V
Then:
a
65
× 0.8 – 6.0
5.6
a
≤ 8.2143
Next, calculate the maximum primary inductance required to
store the needed output energy with a power switch duty
cycle of 55%.
(10)
L
PRI
0.5 f
SW VIN(min)
2 T
ON
2
P
OUT
Where:
L
PRI = maximum primary inductance
f
SW = device switching frequency (100kHz)
V
IN(min) = minimum input voltage
T
ON = power switch on time
Then:
L
PRI
0.5
× 1× 105 × 4.02 5.5 × 10-6
()2
1.25
L
PRI ≤ 19.23µH
Use an 18
µH primary inductance to overcome circuit ineffi-
ciencies.
To complete the design the inductance value of the second-
ary is found which will guarantee that the energy stored in the
transformer during the power switch on time will be com-
pleted discharged into the output during the off-time. This is
necessary when operating in discontinuous-mode.
(11)
L
SEC
0.5 f
SW VSEC
2 T
OFF
2
P
OUT
Where:
L
SEC = maximum secondary inductance
T
OFF = power switch off time
Then:
L
SEC
0.5
× 1× 105 × 5.62 × 4.5 × 10-6
()2
1.25
L
SEC ≤ 25.4µH
Figure 12. MIC3172 5V 0.25A Flyback Converter
C4
470µF
D2
1N5818
C1
22µF
C2
1µF
R3
1k
R4*
VOUT
5V, 0.25A
* Optional voltage clipper (may be req’d if T1 leakage inductance too high)
C3*
D1*
R1
3.74k
1%
R2
1.24k
1%
VIN
4V to 6V
T1
Enable
Shutdown
1:1.25
LPRI = 100µH
MIC3172
VIN
VSW
FB
EN
GND
P1 P2
S
COMP



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