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MP2372DN датащи(PDF) 8 Page - Monolithic Power Systems

номер детали MP2372DN
подробное описание детали  3A, 28V, 925KHz Step-Down Converter
PDF  13 Pages
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производитель  MPS [Monolithic Power Systems]
домашняя страница  http://www.monolithicpower.com
Logo MPS - Monolithic Power Systems

MP2372DN датащи(HTML) 8 Page - Monolithic Power Systems

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MP2372 – 3A, 28V, 925KHZ STEP-DOWN CONVERTER
MP2372 Rev. 0.92
www.MonolithicPower.com
8
12/22/2009
MPS Proprietary Information. Unauthorized Photocopy and Duplication Prohibited.
© 2009 MPS. All Rights Reserved.
Table 2—Diode Selection Guide
Diode
Voltage/Current
Rating
Manufacture
SK33
30V, 3A
Diodes Inc.
SK34
40V, 3A
Diodes Inc.
B330
30V, 3A
Diodes Inc.
B340
40V, 3A
Diodes Inc.
MBRS330
30V, 3A
On Semiconductor
MBRS340
40V, 3A
On Semiconductor
to supply the AC current to the step-down
converter while maintaining the DC input
voltage. Use low ESR capacitors for the best
performance. Ceramic capacitors are preferred,
but tantalum or low-ESR electrolytic capacitors
may also suffice.
Since the input capacitor (C1) absorbs the input
switching current, it requires an adequate ripple
current rating. The RMS current in the input
capacitor can be estimated by:
×
×
=
IN
OUT
IN
OUT
LOAD
1
C
V
V
1
V
V
I
I
The worst-case condition occurs at VIN = 2VOUT,
where:
2
I
I
LOAD
1
C =
For simplification, choose the input capacitor
whose RMS current rating greater than half of
the maximum load current.
The input capacitor can be electrolytic, tantalum
or ceramic. When using electrolytic or tantalum
capacitors, a small, high quality ceramic
capacitor, i.e. 0.1μF, should be placed as close
to the IC as possible. When using ceramic
capacitors, make sure that they have enough
capacitance to provide sufficient charge to
prevent excessive voltage ripple at input. The
input voltage ripple caused by capacitance can
be estimated by:
⎟⎟
⎜⎜
×
×
×
=
Δ
IN
OUT
IN
OUT
S
LOAD
IN
V
V
1
V
V
1
C
f
I
V
Output Capacitor
The output capacitor (C2) is required to
maintain the DC output voltage. Ceramic,
tantalum, or low ESR electrolytic capacitors are
recommended.
Low
ESR
capacitors
are
preferred to keep the output voltage ripple low.
The output voltage ripple can be estimated by:
⎟⎟
⎜⎜
×
×
+
×
⎟⎟
⎜⎜
×
×
=
Δ
2
C
f
8
1
R
V
V
1
L
f
V
V
S
ESR
IN
OUT
S
OUT
OUT
Where L is the inductor value and RESR is the
equivalent series resistance (ESR) value of the
output capacitor.
In the case of ceramic capacitors, the
impedance at the switching frequency is
dominated by the capacitance. The output
voltage ripple is mainly caused by the
capacitance. For simplification, the output
voltage ripple can be estimated by:
⎟⎟
⎜⎜
×
×
×
×
=
IN
OUT
2
S
OUT
OUT
V
V
1
2
C
L
f
8
V
ΔV
In the case of tantalum or electrolytic capacitors,
the ESR dominates the impedance at the
switching frequency. For simplification, the
output ripple can be approximated to:
ESR
IN
OUT
S
OUT
OUT
R
V
V
1
L
f
V
ΔV
×
⎟⎟
⎜⎜
×
×
=
The characteristics of the output capacitor also
affect the stability of the regulation system. The
MP2372 can be optimized for a wide range of
capacitance and ESR values.
Compensation Components
MP2372 employs current mode control for easy
compensation and fast transient response. The
system stability and transient response are
controlled through the COMP pin. COMP pin is
the output of the internal transconductance
error amplifier. A series capacitor-resistor
combination sets a pole-zero combination to
control the characteristics of the control system.
The DC gain of the voltage feedback loop is
given by:
OUT
FB
VEA
CS
LOAD
VDC
V
V
A
G
R
A
×
×
×
=
Where AVEA is
the error amplifier voltage gain, GCS is the current
sense transconductance and RLOAD is the load
resistor value.
The system has two poles of importance. One is
due to the compensation capacitor (C3) and the
output resistor of error amplifier, and the other is



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