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MP2120 датащи(PDF) 8 Page - Monolithic Power Systems

номер детали MP2120
подробное описание детали  2.5A, 5.5V Synchronous Step-Down Switching Regulator
PDF  11 Pages
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производитель  MPS [Monolithic Power Systems]
домашняя страница  http://www.monolithicpower.com
Logo MPS - Monolithic Power Systems

MP2120 датащи(HTML) 8 Page - Monolithic Power Systems

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MP2120 – 2.5A, 5.5V SYNCHRONOUS STEP-DOWN CONVERTER
MP2120 Rev. 0.92
www.MonolithicPower.com
8
9/7/2011
MPS Proprietary Information. Unauthorized Photocopy and Duplication Prohibited.
© 2011 MPS. All Rights Reserved.
APPLICATION INFORMATION
Output Voltage Setting
The external resistor divider sets the output
voltage (see Page 1). The feedback resistor R1
also sets the feedback loop bandwidth with the
internal compensation (refer to description
function). The relation between R1 and feedback
loop bandwidth (fC), output capacitance (CO) is as
following:
6
CO
1.24 10
R1(K )
f(KHz) C (uF)

The feedback loop bandwidth (fC) is no higher
than 1/10 of switching frequency of MP2120. In
the case of ceramic capacitor as CO, it’s usually
set to be in the range of 50 kHz and 150 kHz for
optimal transient performance and good phase
margin. If electrolytic capacitor is used, the loop
bandwidth is no higher than 1/4 of the ESR zero
frequency (fESR). fESR is given by:
ESR
ESR
O
1
f
2R
C

For example, choose fC=70 kHz with ceramic
capacitor, CO=47uF, R1 is estimated to be
400kΩ. R2 is then given by:
OUT
R1
R2 =
V
-1
0.8V
Table 1—Resistor Selection vs. Output
Voltage Setting
VOUT
(V)
R1
(kΩ)
R2
(kΩ)
L
(μH)
COUT
(ceramic)
1.2
400
806
0.47μH-1μH
47μF
1.5
400
453
0.47μH-1μH
47μF
1.8
400
316
0.47μH-1μH
47μF
2.5
400
187
0.47μH-1μH
47μF
3.3
400
127
0.47μH-1μH
47μF
Inductor Selection
A 0.47µH to 1µH inductor with DC current rating
at least 25% higher than the maximum load
current is recommended for most applications.
For best efficiency, the inductor DC resistance
shall be <10mΩ. For most designs, the
inductance value can be derived from the
following equation:
OUT
IN
OUT
IN
L
OSC
Vx(V - V
)
L=
VxΔIxf
where ∆IL is Inductor Ripple Current. Choose
inductor ripple current approximately 30% of the
maximum load current.
The maximum inductor peak current is:
L
L(MAX)
LOAD
ΔI
I= I
+
2
Under light load conditions, larger inductance is
recommended for improved efficiency.
Input Capacitor Selection
The input capacitor reduces the surge current
drawn from the input and the switching noise
from the device. The input capacitor impedance
at the switching frequency shall be less than
input
source
impedance
to
prevent
high
frequency switching current passing to the input
source. Ceramic capacitors with X5R or X7R
dielectrics are highly recommended because of
their low ESR and small temperature coefficients.
For most applications, a 47µF capacitor is
sufficient.
Output Capacitor Selection
The output capacitor keeps output voltage ripple
small and ensures a stable regulation loop. The
output capacitor impedance shall be low at the
switching frequency. Ceramic capacitors with
X5R or X7R dielectrics are recommended. If
electrolytic capacitor is used, pay attention to
output ripple voltage, extra heating, and the
selection of feedback resistor R1 (refer to “Output
Voltage Setting” section) due to large ESR of
electrolytic capacitor. The output ripple ∆VOUT is
approximately:

OUT
IN
OUT
OUT
IN
OSC
OSC
3
Vx(V - V
)
1
V
x(ESR +
)
V xf
xL
8xf
xC



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