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MP24892 データシート(PDF) 8 Page - Monolithic Power Systems

部品番号 MP24892
部品情報  Step Down White LED Driver with Wide 6V??5V Input Voltage
PDF  9 Pages
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メーカー  MPS [Monolithic Power Systems]
ホームページ  http://www.monolithicpower.com
Logo MPS - Monolithic Power Systems

MP24892 データシート(HTML) 8 Page - Monolithic Power Systems

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MP24892 – STEP DOWN WLED DRIVER WITH WIDE 6V–45V INPUT VOLTAGE
MP24892 Rev. 1.0
www.MonolithicPower.com
8
11/3/2011
MPS Proprietary Information. Patent Protected. Unauthorized Photocopy and Duplication Prohibited.
© 2011 MPS. All Rights Reserved.
APPLICATION INFORMATION
Setting the LED Current
The LED current is set by the current sense
resistor between the IN pin and RS pin.
RSENSE=202mV/ILED
For RSET=0.36Ω, the LED current is set to 550mA
Selecting the Inductor
A lower inductance value results in a higher
switching frequency, which causes greater
switching losses. Select a switching frequency
between 200kHz to 600kHz for most application.
Estimate the inductor value using the equation
below, where fSW is the switching frequency:
OUT
OUT
IN
LED
SW
V
(1-
) V
V
L
0.3 I
f

For higher efficiency, select an inductor with the
lowest DC resistance possible.
Selecting the Diode
The output diode supplies current to the inductor
when the internal MOSFET is off. To reduce
losses due to diode forward voltage and recovery
time, use a Schottky diode rated for a reverse
voltage greater than the input voltage. The
average
current
rating
must
exceed
the
maximum expected load current, and the peak
current rating must exceed the peak inductor
current.
Selecting the Input Capacitor
The input capacitor reduces the surge current
drawn from the input supply and the switching
noise from the device. Use a 10µF–22µF
capacitor with a voltage rating that exceeds the
input voltage for most applications. Select a
capacitor with low ESR.
Selecting the Output Capacitor
An output capacitor is not necessary for most
applications, but if the peak-to-peak ripple LED
current must be less than 30% of the average
current, add a capacitor across the LEDs. The
ripple current is inversely proportional to the
capacitor value. Use a 2.2µF capacitor for most
applications.
Selecting Soft-Start Capacitor
The delay time can be estimated as 0.2ms/nF
with the soft-start capacitor. In PWM dimming,
use a capacitor CIN<2.2nF to eliminate its effect
on the LED average current.
Selecting Dimming Control Mode
MP24892 provides two dimming methods: DC
analog dimming and PWM dimming.
1. DC analog dimming mode
Apply a 0.3V-to-2.5V DC voltage to the EN/DIM
pin. This voltage linearly changes the inductor
current reference the inductor current range from
25% to 200%. (see Figure 2)
EN/DIM
VIN
R6
0
C5
1nF
3
6
5
2
IN
GND
GND
EN/DIM
MP24892
TP4
Figure 2: Analog Dimming External Circuit
2. PWM dimming mode
Apply a 100Hz-to-2kHz square waveform to the
EN/DIM pin. The average LED current is
proportional to PWM duty cycle. Because this pin
is pulled up by the 1.25V internal source as the
inductor current reference, use an NPN-transistor
on/off circuit to separate the PWM signal from the
current reference (see Figure 2). The minimum
amplitude of the PWM signal is 1.5V.
EN/DIM
VIN
R6
NC
R4
10k
R7
10k
Q1
R5
NS
C5
1nF
3
6
5
2
IN
GND
GND
EN/DIM
MP24892
TP4
Figure 3: PWM Dimming External Circuit
Layout Consideration
Pay close attention to the PCB board layout and
component placement. Place RSENSE close to the
IN and RS pins to minimize the set current error.
The input loop—including the input capacitor, the
Schottky diode, and the internal MOSFET—
should be as short as possible.



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