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MP3378EGF 数据表(PDF) 13 Page - Monolithic Power Systems

部件名 MP3378EGF
功能描述  4-Channel WLED Controller with High-Efficiency Buck Converter
PDF  23 Pages
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制造商  MPS [Monolithic Power Systems]
网页  http://www.monolithicpower.com
标志 MPS - Monolithic Power Systems

MP3378EGF 数据表(HTML) 13 Page - Monolithic Power Systems

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MP3378E
– 4-CHANNEL WLED CONTROLLER WITH BUCK CONVERTER
MP3378E Rev. 1.02
www.MonolithicPower.com
13
5/26/2017
MPS Proprietary Information. Patent Protected. Unauthorized Photocopy and Duplication Prohibited.
© 2017 MPS. All Rights Reserved.
OPERATION
WLED CONTROLLER SECTION:
The WLED controller employs a programmable,
constant frequency, peak current mode, step-up
converter with four channels that regulate
current sources to drive an array of up to four
strings of white LEDs.
Internal 6V Regulator
When VIN1 is greater than 6.5V, VCC1 outputs
a 6V power supply to the external MOSFET
switch gate driver and the internal control
circuitry. The VCC1 voltage drops to 0V when
the WLED controller shuts down.
System Start-Up
When enabled, the WLED controller checks the
topology connection first. The WLED controller
monitors the over-voltage protection (OVP) to
see if the schottky diode is connected, or if the
boost output is shorted to GND. An OVP
voltage of less than 75mV will disable the
WLED controller. Once all of the protection
tests pass, the WLED controller then boosts the
step-up converter with an internal soft start.
It is recommended that the enable signal occurs
after the establishment of the input voltage and
the PWM dimming signal during the start-up
sequence to avoid a large inrush current. The
PWM pin should be used for dimming function
and can not be used for turning on/off the
WLED controller.
If the PWM is used for turning on/off WLED
controller in some applications, a resistor RD is
recommended to parallel with COMP pin as
shown in figure 2. The recommended value for
RD is 1M Ω -10M Ω , considering the PWM
frequency.
MP3378E
COMP
RCOMP
CCOMP
RD
Figure 2 COMP Connection for turning on/off
WLED Controller with PWM signal
Step-Up Converter
The
converter
operating
frequency
is
programmable through an external resistor on
OSC. The operating frequency is recommended
between
300kHz
to
500kHz.
This
helps
optimize efficiency and the size of the external
components.
At the beginning of each switching cycle, the
internal clock turns on the external MOSFET (in
normal operation, the minimum turn-on time is
200ns). A stabilizing ramp added to the output
of the current sense amplifier prevents sub
harmonic oscillations for duty cycles greater
than 50 percent. This result is fed into the PWM
comparator. When this resulted voltage reaches
the output voltage of the error amplifier (VCOMP),
the external MOSFET turns off.
The output voltage of the internal error amplifier
is an amplified signal of the difference between
the reference voltage and the feedback voltage.
Automatically, the converter chooses the lowest
active LEDX voltage to provide a high enough
bus voltage to power all the LED arrays.
If
the feedback voltage drops
below the
reference, the output of the error amplifier
increases. This results in more current flowing
through the MOSFET, increasing the power
delivered to the output. This forms a closed
loop that regulates the output voltage.
Under light-load operation, especially in the
case of VOUT1≈VIN1, the converter runs in pulse-
skipping mode, where the MOSFET turns on for
a minimum on time of approximately 200ns
before the converter discharges the power to
the output for the remaining period. The
external MOSFET remains off until the output
voltage needs to be boosted again.
Dimming Control
Two dimming methods, PWM and analog
dimming mode, are allowed.
For PWM dimming, apply a PWM signal to
PWM. The LED current is chopped by this
PWM signal, and the average LED current is
equal to ISET*DDIM, where DDIM is the duty cycle
of the PWM dimming signal, and ISET is the LED
current amplitude.



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