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LP3950 Datenblatt(PDF) 25 Page - National Semiconductor (TI)

[Old version datasheet] Texas Instruments acquired National semiconductor. Click here to check the latest version.
Teilenummer LP3950
Bauteilbeschribung  Color LED Driver with Audio Synchronizer
PDF  31 Pages
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Hersteller  NSC [National Semiconductor (TI)]
Direct Link  http://www.national.com
Logo NSC - National Semiconductor (TI)

LP3950 Datenblatt(HTML) 25 Page - National Semiconductor (TI)

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Recommended External
Components
OUTPUT CAPACITOR, C
OUT
The output capacitor C
OUT directly affects the magnitude of
the output ripple voltage. In general, the higher the value of
C
OUT, the lower the output ripple magnitude. Multilayer ce-
ramic capacitors with low ESR (Equivalent Series Resis-
tance) are the best choice. At the lighter loads, the low ESR
ceramics offer a much lower V
OUT ripple than the higher
ESR tantalums of the same value. At the higher loads, the
ceramics offer a slightly lower V
OUT ripple magnitude than
the tantalums of the same value. However, the dv/dt of the
V
OUT ripple with the ceramics is much lower that the tantal-
ums under all load conditions. Capacitor voltage rating must
be sufficient, 10V is recommended.
Some ceramic capacitors, especially those in small
packages, exhibit a strong capacitance reduction with
the increased applied voltage. The capacitance value
can fall to below half of the nominal capacitance. Too
low output capacitance can make the boost converter
unstable.
INPUT CAPACITOR, C
IN
The input capacitor C
IN directly affects the magnitude of the
input ripple voltage and to a lesser degree the V
OUT ripple. A
higher value C
IN will give a lower VIN ripple. Capacitor volt-
age rating must be sufficient, 10V is recommended.
OUTPUT DIODE, D
1
A Schottky diode should be used for the output diode. To
maintain high efficiency the average current rating of the
schottky diode should be larger than the peak inductor cur-
rent (
A1.0A). Schottky diodes with a low forward drop and
fast switching speeds are ideal for increasing efficiency in
portable applications. Choose a reverse breakdown of the
schottky diode larger than the output voltage. Do not use
ordinary rectifier diodes, since slow switching speeds and
long recovery times cause the efficiency and the load regu-
lation to suffer.
INDUCTOR, L
1
LP3950’s high switching frequency enables the use of a
small surface mount inductor. A 4.7 µH shielded inductor is
suggested for 2.0 MHz switching frequency. Values below
2.2 µH should not be used at 2.0 MHz. At lower switching
frequencies 4.7 µH inductors should always be used. The
inductor should have a saturation current rating higher than
the peak current it will experience during circuit operation
(
A1.0A). Less than 300 m
Ω ESR is suggested for high
efficiency. Open core inductors cause flux linkage with circuit
components and, thus, may interfere with the normal opera-
tion of the circuit. This should be avoided. For high efficiency,
choose an inductor with a high frequency core material such
as ferrite to reduce the core losses. To minimize radiated
noise, use a toroid, pot core or shielded core inductor. The
inductor should be connected to the SW pin as close to the
IC as possible. Examples of suitable inductors are TDK type
VLF4012AT- 4R7M1R1 and Coilcraft type MSS4020-
472MLD.
List of Recommended External Components
Symbol
Symbol Explanation
Value
Unit
Type
C
VDD1
V
DD1 Bypass Capacitor
100
nF
Ceramic, X5R
C
VDD2
V
DD2 Bypass Capacitor
100
nF
Ceramic, X5R
C
OUT
Output Capacitor from FB to GND
10 ± 10%
µF
Ceramic, X5R
C
IN
Input Capacitor from Battery Voltage to GND
10 ± 10%
µF
Ceramic, X5R
C
VDDIO
V
DD_IO Bypass Capacitor
100
nF
Ceramic, X5R
C
VDDA
V
DDA Bypass Capacitor
100
nF
Ceramic, X5R
C
1,2,3
Audio Input Capacitors
10
nF
Ceramic, X5R
R
T
Oscillator Frequency Bias Resistor
82
k
1% (Note 19)
R
SO
SO Output Pull-up Resistor
100
k
C
VREF
Reference Voltage Capacitor, between V
REF and GND
100
nF
Ceramic, X5R
L
1
Boost Converter Inductor
4.7
µH
Shielded, Low ESR, I
SAT A1.0A
D
1
Rectifying Diode, V
F @ Maxload
0.3
V
Schottky Diode
RGB LED
User Defined
Red, Green, Blue or White LEDs
R
RX,RGX,RBX
Current Limit Resistors
Note 19: Resistor RT tolerance change will change the timing accuracy of RGB block. Also the boost converter switching frequency will be affected.
PCB Design Guidelines
Printed circuit board layout is critical to low noise operation
and good performance of the LP3950. Bypass capacitors
should be close to the V
DD pins of the integrated circuit.
Special attention must be given to the routing of the switch-
ing loops. Lengths of these loops should be minimized. It is
essential to place the input capacitor, the output capacitor,
the inductor and the schottky diode very close to the inte-
grated circuit and use wide routings for those components.
Sensitive components should be placed far from those com-
ponents with high pulsating current. A ground plane is rec-
ommended.
The power switch loop (the switch is on) has the greatest
affect on noise generation. The loop is formed by the input
www.national.com
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