bd9137muv ROHM Co. Ltd., bd9137muv Datasheet - Page 9

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bd9137muv

Manufacturer Part Number
bd9137muv
Description
High Efficiency Step-down Switching Regulator
Manufacturer
ROHM Co. Ltd.
Datasheet
●Selection of components externally connected
I
L
1. Selection of inductor (L)
※Current exceeding the current rating of the inductor results in magnetic saturation of the inductor, which decreases efficiency.
The inductor must be selected allowing sufficient margin with which the peak current may not exceed its current rating.
※Select the inductor of low resistance component (such as DCR and ACR) to minimize dissipation in the inductor for better
efficiency.
2. Selection of output capacitor (C
If V
Fig.27 Output ripple current
CC
Fig.28 Output capacitor
V
V
CC
CC
=5.0V, V
IL
L
L
L=
OUT
Co
V
(5-2.5)×2.5
0.6×5×1M
=2.5V, f=1MHz, ΔI
OUT
ΔI
ESR
Co
L
V
OUT
O
=2.08μ → 2.2[μH]
)
L
=0.2×3A=0.6A, for example,(BD9137MUV)
Output capacitor should be selected with the consideration on the stability region
and the equivalent series resistance required to smooth ripple voltage.
Output ripple voltage is determined by the equation (4):
ΔV
(ΔI
※Rating of the capacitor should be determined allowing sufficient margin against
output voltage. A 22μF to 100μF ceramic capacitor is recommended.
Less ESR allows reduction in output ripple voltage.
L
OUT
: Output ripple current, ESR: Equivalent series resistance of output capacitor)
=ΔI
L
×ESR [V]・・・(4)
The inductance significantly depends on output ripple current.
As seen in the equation (1), the ripple current decreases as the
inductor and/or switching frequency increases.
Appropriate ripple current at output should be 20% more or less of the
maximum output current.
9/16
ΔI
ΔI
(ΔI
L
L
L=
L
=
=0.2×I
: Output ripple current, and f: Switching frequency)
(V
(V
CC
CC
OUT
L×V
ΔI
-V
-V
OUT
max. [A]・・・(2)
OUT
L
×V
CC
)×V
)×V
×f
CC
×f
OUT
OUT
[A]・・・(1)
[H]・・・(3)

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