XRP7708EVB Exar Corporation, XRP7708EVB Datasheet - Page 24

EVAL BOARD FOR XRP7708

XRP7708EVB

Manufacturer Part Number
XRP7708EVB
Description
EVAL BOARD FOR XRP7708
Manufacturer
Exar Corporation
Type
PMIC Solutionsr
Datasheets

Specifications of XRP7708EVB

Main Purpose
DC/DC, Step Down
Outputs And Type
*
Voltage - Output
*
Current - Output
*
Voltage - Input
*
Regulator Topology
Buck
Frequency - Switching
*
Board Type
Fully Populated
Utilized Ic / Part
XRP7708
Board Size
6 mm x 6 mm x 0.8 mm
Interface Type
I2C
Maximum Operating Temperature
+ 125 C
Operating Supply Voltage
6.5 V to 20 V
Product
Power Management Development Tools
Sense Voltage (max)
5 mV
Dimensions
6 mm x 6 mm x 0.8 mm
Silicon Manufacturer
Exar
Silicon Core Number
XRP7708
Kit Application Type
Power Management - Voltage Regulator
Application Sub Type
Step Down DC/DC Controller
For Use With/related Products
XRP7708
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Power - Output
-
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Other names
1016-1346
Here,
Select ESR such that output voltage ripple (Vrip) specification is met. There are two components in
Vrip. First component arises from the charge transferred to and from Cout during each cycle. The
second component of Vrip is due to the inductor ripple current flowing through the output
capacitor’s ESR. It can be calculated for Vrip:
Where:
Irip is the inductor ripple current
fs is the switching frequency
Cout is the output capacitance
Note that a smaller inductor results in a higher Irip, therefore requiring a larger Cout and/or lower
ESR in order to meet Vrip.
Select the input capacitor for Voltage, Capacitance, ripple current, ESR and ESL. Voltage rating is
nominally selected to be at least twice the input voltage. The RMS value of input capacitor current,
assuming a low inductor ripple current, can be approximated as:
Where:
Iin is the RMS input current
Iout is the DC output current
D is the duty cycle
In general, the total input voltage ripple should be kept below 1.5% of VIN. The input voltage
ripple also has two major components: the voltage drop on the main capacitor
voltage drop due to ESR -
calculated from:
Total input voltage ripple is the sum of the above:
© 2010 Exar Corporation
Δ
Input Capacitor Selection
V
=
V
os
V
out
is the overshoot voltage deviation.
Δ
V
ESR
. The contribution to Input voltage ripple by each term can be
Q
Q
Δ
u
u
Δ
V
a
a
V
ESR
d
d
Cin
C
C
=
=
h
h
ESR
I
a
a
out
2
24/27
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n
V
n
n
out
(
f
e
e
I
s
C
out
(
l
l
V
in
D
in
D
8
+
V
1
i
i
in
0
2
g
g
5 .
V
i
i
out
t
I
t
1
rip
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a
)
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l
)
P
P
W
W
M
M
S
S
t
t
e
e
p
p
D
D
o
o
w
w
n
n
Δ
X
X
C
C
V
R
R
o
Cin
o
n
P
n
P
Rev. 1.0.3
t
t
and the
7
7
r
r
o
7
o
7
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