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AN557 Folha de dados(PDF) 45 Page - STMicroelectronics

Nome de Peças AN557
Descrição Electrónicos  EASY APPLICATION DESIGN WITH THE L4970A
PDF  52 Pages
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Fabricante Electrônico  STMICROELECTRONICS [STMicroelectronics]
Página de início  http://www.st.com
Logo STMICROELECTRONICS - STMicroelectronics

AN557 Folha de dados(HTML) 45 Page - STMicroelectronics

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AN557 APPLICATION NOTE
Infact we have:
therefore:
The inductor can be calculated using the usual for-
mula, that is:
with
∆IL = 10% Iomax, L = 30µH
When one operates with input voltage below of 5V,
it’ very difficult to obtain a good efficiency. In our
case having the conduction losses and switching
losses of the internal power transistor fixed by both
external operating electrical condition and the
electrical characteristics of the itself power transis-
tor, since integrate, it’s necessary to optimize the
losses of the catch diode, using new type at lower
forward voltage drop, as soon as available on the
market or by appropriately over-dimensioning. In
some case a Power MOS used as a synchro-nou-
os switch can contribute to elevate the overall effi-
ciency of the system.
Following are citated the principle results obtained
by using our evaluation board: The same solution,
obviously can be applied also to the other types of
the family, adjusting if needed the compensation
network and the coil.
Figure 62. Efficiency vs. Input Voltage
Efficiency vs. Input Voltage
Figure 63. Load Transient Response
Figure 64. Load Transient Response
Output voltage ripple vs inductor value.
Co = 1000µF/10V - EKR; ESR = 10mΩ
V
o
V
i
T
on
T
---------
=
T
on
V
o
V
i
------ T
=
L
V
i
V
o
() V
o
V
i
I
L
fsw
⋅⋅
----------------------------------
=
0
5
10
15
20
25
30
35
Vi(V)
60
65
70
75
80
85
(%)
Io=5A
Io=7A
Io=10A
Vo=3.3V
fsw=100KHz
D93IN002
η
Vi (V)
Io = 10A
η% Io = 7A η% Io = 4A η%
12
70.9
76.2
82
15
72.1
76.7
82
20
72.9
77.3
81.2
25
72.9
77.2
80.6
30
71.9
76.4
79.6
35
68.3
75.9
78.5
L
L = 30
µHL = 50µHL = 60µH L = 100µH
∆VOmax
80mV
60mV
40mV
25mV



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