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MP1495S датащи(PDF) 12 Page - Monolithic Power Systems

номер детали MP1495S
подробное описание детали  High Efficiency 3A, 16V, 500kHz Synchronous Step-Down Converter
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производитель  MPS [Monolithic Power Systems]
домашняя страница  http://www.monolithicpower.com
Logo MPS - Monolithic Power Systems

MP1495S датащи(HTML) 12 Page - Monolithic Power Systems

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MP1495S
– SYNCHRONOUS STEP-DOWN CONVERTER
MP1495S Rev. 1.0
www.MonolithicPower.com
12
12/13/2013
MPS Proprietary Information. Patent Protected. Unauthorized Photocopy and Duplication Prohibited.
© 2013 MPS. All Rights Reserved.
APPLICATION INFORMATION
Setting the Output Voltage
The external resistor divider sets the output
voltage. The feedback resistor R1 also sets the
feedback
loop
bandwidth
with
the
internal
compensation capacitor (see Typical Application
on page 1). Choose R1 around 40k
Ω, then R2 is:
OUT
R1
R2
V
1
0.807V
Use the T-type network when VOUT is low, as
shown in Figure 4.
Figure 4: T-Type Network
Table 1 lists the recommended T-type resistor
value for common output voltages.
Table 1: Resistor Selection for Common Output
Voltages
VOUT
(V)
R1
(kΩ)
R2
(kΩ)
Rt
(kΩ)
Cf
(pF)
L
(
μH)
1.0
20.5
84.5
82
15
1.8
1.2
30.1
61.9
82
15
1.8
1.8
40.2
32.4
56
15
3.3
2.5
40.2
19.1
33
15
3.3
3.3
40.2
13
33
15
4.7
5
40.2
7.68
33
15
4.7
Selecting the Inductor
For
most
applications,
use
a
1µH-to-22µH
inductor with a DC current rating that is at least
25% percent higher than the maximum load
current. Select an inductor with a DC resistance
less than 15mΩ for highest efficiency. For most
designs, the inductance value can be derived
from the following equation.
OUT
IN
OUT
1
IN
L
OSC
V
(V
V
)
L
V
I
f

  
Where ΔI
L is the inductor ripple current.
Choose
an
inductor
ripple
current
to
be
approximately 30% of the maximum load current.
The maximum inductor peak current is:
2
I
I
I
L
LOAD
)
MAX
(
L
Use a larger inductor for light-load conditions
(below 100mA) for improved efficiency.
Setting the AAM Voltage
The AAM voltage sets the transition point from
AAM to CCM. Select a voltage that balances
efficiency,
stability,
ripple,
and
transient:
A
relatively low AAM voltage improves stability and
ripple, but degrades transient and efficiency
during AAM mode; a relatively high AAM voltage
improves the transient and efficiency during
AAM, but degrades stability and ripple.
AAM voltage is set from the tap of a resistor
divider from the VCC (5V) pin, as shown in Figure
5.
Figure 5: AAM Network
Generally, choose R5 to be around 100
kΩ, then
R6 is:
AAM
CC
AAM
V
R6
R5
VV

Figure 6: AAM Selection for Common Output
Voltages (VIN=4.5V to 16V)


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