yb1509 YOBON TECHNOLOGIES,INC., yb1509 Datasheet - Page 6

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yb1509

Manufacturer Part Number
yb1509
Description
High-power White Driver
Manufacturer
YOBON TECHNOLOGIES,INC.
Datasheet

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
YB1509
Manufacturer:
YOBON
Quantity:
20 000
and going through the I
ground. The higher the I
larger the peak inductor current is built up.
Application Information
Enable/Shutdown
The YB1509 comes with an active-high
enable pin that allows the white LED driver
to be enabled. Forcing the enable pin low
disables the chip and puts it into the
shutdown mode. This pin cannot be left
floating; as it may cause an undetermined
state.
Input/Output Capacitor
It is recommended to use a 10µF capacitor
on the YB1509 input and a 4.7µF capacitor
on the output. Higher capacitance is
allowed to reduce the voltage and current
ripple. Choose low ESR capacitors for the
output to minimize output ripple. Multilayer
ceramic capacitors are good choice for the
input and output capacitor.
Inductor
The appropriate inductor for a given
application is calculated using the following
equation:
Where VD is the schottky diode voltage,
I
T
When using this equation be sure to use
the
YB1509 MRev.1.1
SET
OFF
is the setting for inductor current, and
is the switch off time designed for 1µs.
minimum
L
=
⎜ ⎜
V
OUT
input
V
I
SET
IN,
MIN
SET
voltage
+
V
SET
pin voltage, the
D
⎟ ⎟
T
resistor to
OFF
for
www.yobon.com.tw
the
High-Power White LED Driver
application, such as for battery-powered
application.
Choosing inductor with low ESR decrease
power losses and increase efficiency.
Diode selection
To maintain high efficiency, the average
current rating of the schottky diode should
be large than the peak inductor current.
Schottky diode with a low forward drop and
fast switching speeds are ideal for increase
efficiency in portable application. Choose a
reverse breakdown of the schottky diode
large than the output voltage.
Thermal Consideration:
When YB1509 is set to handle high switch
current
dissipation and thus generating heat.
Always beware the amount of power
dissipated during operation. To resolve the
thermal built up issue, reduce resistance at
I
Layout consideration
The input capacitor C
close to the IC. This will reduce copper
trace resistance which effect input voltage
ripple of the IC. The output capacitor, C
should also be placed close to the IC. Any
copper trace connections for the C
capacitor
resistance, which directly effect output
voltage ripple. The feedback resister
should be kept close to the FB pin to
minimize copper trace connections that can
inject noise into the system. The ground
SET
which lower the peak switch current.
will
can
result
increase
in
IN
must be placed
internal
the
YB1509
power
series
OUT
OUT
6
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