XRP7714ILB-F Exar Corporation, XRP7714ILB-F Datasheet - Page 25

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XRP7714ILB-F

Manufacturer Part Number
XRP7714ILB-F
Description
IC CTRLR PWM/LDO STP-DWN 40TQFN
Manufacturer
Exar Corporation
Type
Step-Down (Buck)r
Datasheet

Specifications of XRP7714ILB-F

Number Of Outputs
4
Package / Case
40-WFQFN Exposed Pad
Internal Switch(s)
No
Synchronous Rectifier
Yes
Voltage - Output
0.9 ~ 5.1 V
Frequency - Switching
300kHz ~ 1.5MHz
Voltage - Input
4.75 ~ 25 V
Operating Temperature
-40°C ~ 125°C
Mounting Type
Surface Mount
Switching Frequency
300 KHz
Operating Supply Voltage
4.75 V to 25 V
Supply Current
28 mA to 50 mA
Maximum Operating Temperature
+ 125 C
Minimum Operating Temperature
- 40 C
Mounting Style
SMD/SMT
Output Voltage
0.9 V to 5.1 V
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
For Use With
1016-1350 - EVAL BAORD FOR XRP77141016-1344 - IN-SOCKET PROG BRD VIA USB/GUI
Current - Output
-
Power - Output
-
Lead Free Status / Rohs Status
Lead free / RoHS Compliant
Other names
1016-1351

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
XRP7714ILB-F
Manufacturer:
EXAR/艾科嘉
Quantity:
20 000
When trying to optimize control loop bandwidth, particularly at switching frequencies below
600kHz, an effective ESR in the range of 7 to 20mohm can help significantly. The Digital Power
Studio design tool is used to verify what will work best in your application.
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:
Selecting MOSFETs with lower Rdson reduces conduction losses at the expense of increased
switching losses. A simplified expression for conduction losses is given by:
MOSFET’s junction temperature can be estimated from:
This assumes that the switching loss is the same as the conduction loss.
thermal resistance from junction to ambient.
© 2010 Exar Corporation
Power MOSFETs Selection
Input Capacitor Selection
Δ
V
ESR
. The contribution to Input voltage ripple by each term can be
Q
Q
Δ
u
u
Δ
V
a
a
V
T
P
ESR
Δ
d
d
cond
Cin
j
V
= 2
C
C
Tot
=
=
=
h
h
ESR
P
=
I
a
I
cond
a
out
out
Δ
25/27
n
n
V
V
2
R
n
n
out
Cin
(
f
thja
e
e
I
s
R
C
out
(
l
l
V
+
dson
+
in
D
in
D
Δ
+
V
T
1
V
ambient
i
i
in
0
2
g
g
V
ESR
V
5 .
V
i
out
i
in
out
t
I
t
rip
a
a
)
l
l
)
P
P
W
W
M
M
S
S
t
t
e
e
R
p
p
thja
D
D
is the total MOSFET
o
o
w
w
n
n
Δ
X
X
C
C
V
R
R
o
Cin
o
n
P
n
P
Rev. 1.1.3
t
t
and the
7
7
r
r
o
7
o
7
l
l
1
1
l
l
e
e
4
4
r
r

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