XRP7410EVB Exar Corporation, XRP7410EVB Datasheet - Page 5

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XRP7410EVB

Manufacturer Part Number
XRP7410EVB
Description
Power Management Modules & Development Tools Eval Board for XRP7410 Series
Manufacturer
Exar Corporation
Datasheet

Specifications of XRP7410EVB

Lead Free Status / RoHS Status
Lead free / RoHS Compliant
TYPICAL PERFORMANCE CHARACTERISTICS
The typical performance characteristics follow and begin with an illustration of the efficiencies that
can be obtained with the XRP7603 driving 1 or 6 white LEDs in series for up to 500mA output
current. For the 6 LED applications with a 24V input, the duty cycle is high and an efficiency of
94% can be obtained. For 12V input and 1 LED at 500mA output, the duty cycle is much lower, but
the efficiency is still over 80%. Note: to improve line regulation a small 22pF ceramic capacitor C6
should be placed from VFB to GND to filter out any noise obtained on the sensitive FB pin.
Scope photos of output ripple are shown for the typical application circuit for 6V input at 150mVpp
ripple and at 29V input with over 400mVpp output ripple, both shown with no output capacitor. For
comparison, an output ripple scope photo is shown with only 70mVpp when a 1uF capacitor is used
at the output. For applications sensitive to output ripple, adding this relatively small 1206 sized 1uF
50V ceramic capacitor to the output provides a very good reduction in output ripple but since the
value is only 1uF the circuit will still provide good PWM output response.
Vin startup scope photos are shown for 6V, 12V and 29V input with no problems in startup as
shown in the Vout, VFB and especially the inductor current signal ILX.
The last scope photos are for the output short circuit which causes a hiccup mode. The output can
be shorted which causes a controlled automatic reset or hiccup mode of about 50 to 100msec
period.
All data taken at V
section of this datasheet.
© 2009 Exar Corporation
100
90
80
70
60
50
5.0
Fig. 4: Efficiency vs Input Voltage
Efficiency versus Vin at Iout = 350mA
IN
10.0
1 LED
= 12V, T
15.0
2 LED
Vin (V)
A
= 25°C, unless otherwise specified - Schematic and BOM from Application Information
20.0
3 LED
5
5
0
0
0
0
25.0
m
m
6 LED
A
A
2
2
30.0
9
9
V
V
N
N
5/13
o
o
n
n
-
-
S
S
y
y
n
n
0.360
0.350
0.340
0.330
0.320
c
c
Fig. 5: Output Current vs Input Voltage
.
.
5.0
B
B
u
u
c
c
k
k
1 LED
10.0
H
H
i
i
g
g
Iout versus Vin
15.0
h
h
2 LED
Vin (V)
P
P
o
o
w
w
20.0
3 LED
e
e
r
r
X
L
L
X
25.0
E
E
6 LED
R
R
D
D
P
P
Rev. 1.0.0
D
D
7
7
30.0
r
r
6
6
i
i
v
v
0
0
e
e
3
3
r
r

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