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ADP2450ACPZ-5-R7 数据表(PDF) 28 Page - Analog Devices

部件名 ADP2450ACPZ-5-R7
功能描述  Power Management IC for Circuit Breaker Applications
PDF  40 Pages
Scroll/Zoom Zoom In 100%  Zoom Out
制造商  AD [Analog Devices]
网页  http://www.analog.com
标志 AD - Analog Devices

ADP2450ACPZ-5-R7 数据表(HTML) 28 Page - Analog Devices

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ADP2450
Data Sheet
Rev. B | Page 28 of 40
The peak inductor current (
IPEAK) is calculated with the
following equation:
2
2
L
PEAK
OUT
I
II

The saturation current of the inductor must be larger than the
peak inductor current. For ferrite core inductors with a quick
saturation characteristic, the saturation current rating of the
inductor must be greater than the current-limit threshold of the
switch. This greater saturation current rating prevents the
inductor from reaching saturation.
The rms current of the inductor (
IL_RMS) is calculated with the
following equation:
2
2
_2
12
L
LRMS
OUT
I
II

Shielded ferrite core materials are recommended for low core
loss and low electromagnetic interference (EMI).
OUTPUT CAPACITOR OF BUCK REGULATOR
The output capacitor selection affects the output ripple voltage
of the buck regulator.
The output ripple is determined by the ESR and the capacitance
value. Use the following equation to select a capacitor that
meets the output ripple requirements (COUT2_RIPPLE):
2_
2_
8
L
OUT
RIPPLE
SW
OUT
RIPPLE
I
C
fV
 
where:
ΔVOUT2_RIPPLE is the allowable output ripple voltage of the buck
regulator.
2_
OUT
RIPPLE
ESR
L
V
R
I
where RESR is the maximum equivalent series resistance of the
buck regulator output capacitor in ohms (Ω).
Select the output capacitance to be larger than COUT2_RIPPLE and
select the ESR value to be smaller than RESR to meet the output
ripple.
The selected output capacitor voltage rating must be greater
than the output voltage. The rms current rating of the output
capacitor (ICOUT2_RMS) must be greater than the value that is
calculated using the following equation:
2_
12
L
COUT
RMS
I
I
OUTPUT VOLTAGE SETTING
Both the output voltage of boost shunt controller (VOUT1) and
buck regulator (VOUT2) are set by the external resistor dividers,
as shown in Figure 70 and Figure 71.
Boost Shunt Controller Output Voltage
The resistor values are calculated using the following equation:
1
1
1
1.2
1
TOP
OUT
BOT
R
V
R

 


where:
RTOP1 is the top side feedback resistor of VOUT1.
RBOT1 is the bottom side feedback resistor of VOUT1.
To limit the output voltage accuracy degradation due to the FB1
bias current (0.1 μA maximum) to less than 0.5% (maximum),
ensure that RBOT1 < 60 kΩ.
ADP2450
FB1
VOUT1
RTOP1
RBOT1
GND
Figure 70. Boost Shunt Controller Output Voltage Setting
Buck Regulator Output Voltage
The buck regulator has the following two output voltage
settings: adjustable output and fixed output.
For adjustable output voltage, connect the external resistor
divider as shown Figure 71. The resistor values are calculated
using the following equation:
2
2
2
0.6
1
TOP
OUT
BOT
R
V
R

 


where:
RTOP2 is the top side feedback resistor of VOUT2.
RBOT2 is the bottom side feedback resistor of VOUT2.
ADP2450
FB2
VOUT2
RTOP2
RBOT2
GND
Figure 71. Buck Regulator Adjustable Output Voltage Setting
To limit the output voltage accuracy degradation due to FB2
bias current (0.1 μA maximum) to less than 0.5% (maximum),
ensure that RBOT2 < 30 kΩ.
For fixed output voltage, connect FB2 to VOUT2 directly.



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