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L6726ATR Fiches technique(PDF) 21 Page - STMicroelectronics

No de pièce L6726ATR
Description  Single phase PWM controller
PDF  35 Pages
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Fabricant  STMICROELECTRONICS [STMicroelectronics]
Site Internet  http://www.st.com
Logo STMICROELECTRONICS - STMicroelectronics

L6726ATR Fiches technique(HTML) 21 Page - STMicroelectronics

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L6726A
Application Information
Doc ID 12754 Rev 4
21/35
9
Application Information
9.1
Output inductor
Inductor value is defined by a compromise between dynamic response, ripple, efficiency,
cost and size. Usually, inductance is calculated to maintain inductor ripple current (
ΔI
L)
between 20% and 30% of maximum output current. Given the switching frequency (FSW),
the input voltage (VIN), the output voltage (VOUT) and the desired ripple current (ΔIL),
inductance can be calculated as follows:
Figure 12 shows the ripple current vs. the output voltage for different inductance, with
VIN = 5 V and VIN = 12 V.
Increasing inductance reduces inductor ripple current (and output voltage ripple
accordingly) but, at the same time, increases the converter response time to load transients.
Higher inductance means that the inductor needs more time to change its current from initial
to final value. Until the inductor has not finished its charging, the additional output current is
supplied by output capacitors. Minimizing the response time lead to minimize the output
capacitance required. If the compensation network is designed with high bandwidth, during
an heavy load transient the device is able to saturate duty cycle (0% or 80%). When this
condition is reached, the response time is limited only by the time required to charge the
inductor.
Figure 12.
Inductor current ripple vs output voltage
L
V
IN
V
OUT
F
SW
ΔI
L
------------------------------
V
OUT
V
IN
--------------
=
0
2
4
6
8
10
12
0
1234
5
In
d
u
c
to
r
cu
rr
e
n
t
ri
p
p
le
[A
]
Ou tp u t vo ltag e [V ]
Vin=12V, L=1 uH
Vin=12V, L=2 uH
Vin=5V, L=50 0nH
Vin=5V, L=1.5uH



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