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SC441AEVB датащи(PDF) 15 Page - Semtech Corporation

номер детали SC441AEVB
подробное описание детали  High Efficiency Integrated Driver for 4-Strings of 150mA LEDs
PDF  20 Pages
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производитель  SEMTECH [Semtech Corporation]
домашняя страница  http://www.semtech.com
Logo SEMTECH - Semtech Corporation

SC441AEVB датащи(HTML) 15 Page - Semtech Corporation

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SC441A
5
© 2009 Semtech Corporation
www.semtech.com
Applications Information (continued)
theneededdimmingstepsandresolutions,itisuncommon
to run into the above D_max before reaching 00%. While
most applications will not run into D_max, the designer
should be aware of possible parasitic elements from PWM
dimming interface to the PWM pin of SC44A. Usually,
simply checking signal D_max at PWM pin of SC44A is
sufficient.
Linear Dimming
The linear dimming control is available for SC44A
by applying an external control voltage on IOSET pin
through an external resistor-like circuit (shown below).
External environment brightness compensation can also
be achieved when the control voltage is generated by a
light sensor circuit.
The IOSET voltage is 0.5V when linear dimming is used and
the minimum IOSET current must be higher than 27µA
(i.e. 5mA per LED string). The external control voltage
slew rate must slow at V/0ms.
LED Strings Connection
Generally, LED strings are connected to IO ~ IO4 pins
through a mechanical connector which, generally, can-
not support an electrical connection thereby resulting in
significant noise. Consequently, the SC44A LED short-
circuit protection may false trip when the noise level is
large. Certain ceramic decoupling capacitor on pins IO
~ IO4 to GND are useful to prevent the SC44A from noise
influence.
As a general guideline, the decoupling capacitance should
be limited as follows.
Where, I_LED is the LED current per string, Vo is the Boost
output voltage and C_dcple is the suggested decoupling
capacitor value.
For example, if I_LED=0mA, Vo=3.5V, the calculated
upper bound of C_dcple is about 444pF. One could use
390pF or less in the circuit. If I_LED=00mA, Vo=3.5V,
the calculated upper bound of C_dcple is about 4.44nF.
5
5
4
4
3
3
2
2
1
1
D
D
C
C
B
B
A
A
V_EXT
R_EXT
R_IOSET
IOSET
One may use 3.9nF or less in the circuit. In some appli-
cations, circuit designers tend to select the decoupling
capacitors in the range of (00pF ~ nF). For some low
LED current (e.g. 0mA) applications, it is recommended
to add M-0Mohm resistor from IO pin to GND in order
to reduce IO pin voltage during PWM dimming.
Parallel Operation
When two or more SC44As are operating in parallel for
a large-sized panel application, audible noise may be
observed due to non-synchronous switching frequency.
The ripple voltage on the input voltage rail will be mod-
ulated by the beat frequency resulting in audible noise.
This situation can be resolved by adding an input induc-
tor between input voltage rail and the SC44A VIN pin.
This situation can also be improved by adding more input
decoupling capacitors.
Inductor Selection
The inductance value of the inductor affects the convert-
er’s steady state operation, transient response, and its
loop stability. Special attention needs to be paid to three
specifications of the inductor, its value, its DC resistance
and saturation current. The inductor’s inductance value
also determines the inductor ripple current. The converter
can operate in either CCM or DCM depending on its work-
ing conditions. The inductor DC current or input current
can be calculated as,
I
IN - Input current;
I
OUT – Output current;
V
OUT – Boost output voltage;
V
IN – Input voltage;
η – Efficiency of the boost converter.
Then the duty ratio is,
V
D – Forward conduction drop of the output rectifying
diode
WhentheboostconverterrunsinDCM(L<L
boundary), it takes
the advantages of small inductance and quick transient
response while avoiding the bandwidth limiting instability
of the RHP zero found in CCM boost converters.
o
LED
dcple
V
uS
I
C
6
.
0
*



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