參數(shù)資料
型號(hào): ADP3050AR-5
廠商: ANALOG DEVICES INC
元件分類: 穩(wěn)壓器
英文描述: Circular Connector Cable Assembly; Connector Type A:Circular Receptacle; Connector Type B:Stripped End Leads; Cable Length:10ft RoHS Compliant: Yes
中文描述: 2.1 A SWITCHING REGULATOR, 240 kHz SWITCHING FREQ-MAX, PDSO8
封裝: MS-012AA, SOIC-8
文件頁(yè)數(shù): 15/16頁(yè)
文件大?。?/td> 191K
代理商: ADP3050AR-5
ADP3050
15
REV. 0
R2
R1
CC
RC
OUTPUT
GROUND
INPUT
C1
L1
C3
D1
D2
C2
ADP3050
Figure 25. Recommended Board Layout
TYPICAL APPLICATIONS
5 V to 3.3 V Buck (Step-Down) Regulator
The circuit in Figure 26 shows the ADP3050 in a buck configu-
ration. It is used to generate 3.3 V regulated output from 5 V
input voltage with the following specifications:
V
IN
= 4.5 V to 5.5 V
V
OUT
= 3.3 V
I
OUT
= 0.75 A
I
RIPPLE
= 0.4 A 0.75 A = 0.3 A
V
OUT RIPPLE
= 50 mV
U1
ADP3050-3.3
V
IN
1
2
3
4
SWITCH
BOOST
BIAS
FB
IN
GND
SD
COMP
8
7
6
5
C3
0.22 F
D1
1N5817
GND
5V
C1
22 F
+
C2
0.01 F
L1
22 H
V
OUT
3.3V
R1
7.5k
C4
1nF
D2
1N4148
+C5
100 F
SD
Figure 26. 5 V to 3.3 V Buck Regulator
INVERTING (BUCK-BOOST) REGULATOR
The circuit in Figure 27 shows the ADP3050 in a buck-boost
configuration, which produces a negative output voltage from a
positive input voltage. This topology looks quite similar to the
buck shown in Figure 26 above (except the IC and the output
filter are now referenced to the negative output instead of
ground), but its operation is quite different. For this topology,
the feedback pin is grounded and the GND pin is tied to the
negative output, allowing the feedback network of the IC to
regulate the negative output voltage.
U1
ADP3050-5
V
IN
1
2
3
4
SWITCH
BOOST
BIAS
FB
IN
GND
SD
COMP
8
7
6
5
C3
0.22 F
D1
1N5818
GND
12V
C1
22 F
+
C2
0.01 F
R1
5.1k
C4
3.3nF
D2
1N4148
+
C5
100 F
SD
5V @ 0.5A
V
OUT
L1
47 H
NC
Figure 27. Inverting (Buck-Boost) Regulator
The design procedure used for the standard buck converter cannot
be used for a buck-boost converter due to fundamental differences
in how the output voltage is generated. The switch currents in the
buck-boost are much higher than in the standard buck converter,
thus lowering the available load current. To calculate the maximum
output current for a given maximum switch current use the following
equation:
I
V
+
V
V
I
V
×
V
(
f
L
V
V
OUT
IN
IN
OUT
SW
IN
OUT
SW
IN
OUT
(MAX)
(MAX)
=
×
×
×
×
+
)
2
(15)
where I
SW(MAX)
is the switch current limit rating of the ADP3050
and
V
IN
is the minimum input voltage. The inductor ripple current
can be estimated using the following equation:
I
V
L
f
V
V
V
RIPPLE
IN
SW
OUT
IN
OUT
=
×
×
+
(MAX)
(MAX)
1
(16)
For the circuit in Figure 27, the maximum ripple current (at the
maximum input voltage) is:
I
A
RIPPLE
=
×
×
×
×
+
=
12
47
10
1
200
10
5
12
5
0.
6
3
High ripple currents are present in both the input and output
capacitors, and their ripple current ratings must be large enough
to sustain the large switching currents present in this topology.
The capacitors should have a ripple current rating of at least:
I
I
V
V
RMS
OUT
OUT
IN
(CIN, COUT)
×
(17)
The peak current seen by the diode, switch, and inductor can be
found by rearranging the load current equation:
I
V
V
V
I
I
PEAK
IN
OUT
IN
OUT
RIPPLE
=
+
×
+
×
1
2
(18)
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