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MP4652 Datasheet(PDF) 9 Page - Monolithic Power Systems

Part # MP4652
Description  HIGH PERFORMANCE OFF-LINE TV LED DRIVER
Download  19 Pages
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Manufacturer  MPS [Monolithic Power Systems]
Direct Link  http://www.monolithicpower.com
Logo MPS - Monolithic Power Systems

MP4652 Datasheet(HTML) 9 Page - Monolithic Power Systems

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MP4652—HIGH PERFORMANCE OFF-LINE TV LED DRIVER
MP4652 Rev.1.01
www.MonolithicPower.com
9
9/23/2011
MPS Proprietary Information. Patent Protected. Unauthorized Photocopy and Duplication Prohibited.
© 2011 MPS. All Rights Reserved.
OPERATION
Steady State and Enable Control
The MP4652 is a high-performance, off-line LED
driver specifically designed for high-power
isolated applications such as LED backlighting
for TVs. Powered by a 9V to 30V input supply,
the MP4652 outputs two 180-degree phase-
shifted gate driver signals for external power
stages. Its enhanced 9V gate driver provides
adequate driver capability to the external
MOSFETs and directly drives the external
MOSFETs through a gate drive transformer. The
MP4652 can be used to control LLC, half-bridge,
flyback, and other power stages.
The MP4652 can accurately regulate the LED
output current using both PWM control and a
compensation network on the COMP pin. PWM
control uses an external resistor connected from
FSET pin to GND to set the operating frequency.
The LED current feeds back to the FB pin with a
sample-hold circuit and compared against an
internal
0.6V
reference
voltage.
The
compensation network on the COMP pin, which
connects to the output of the error amplifier, then
accurately regulates the output LED current. The
voltage on COMP pin is compared with the
internal oscillator and generates duty cycle
modulated signals to control the external power
switches. This PWM control makes MP4652
suitable for half-bridge, flyback, and other power
stages.
The MP4652 FSET pin can also take voltage
feedback from a frequency-controlled external
circuit to adjust the device frequency. Connect
this feedback circuit to FSET using a resistor.
This frequency control makes MP4652 suitable
for LLC and other frequency-controlled power
stages.
The system power is controlled by EN pin. When
the chip is enabled, the built-in regulator for VCC
powers up the internal circuit. When VCC exceeds
its UVLO point, IC starts to operate and outputs the
gate drive signals.
Brightness Control
MP4652 implements PWM dimming on the LED
current by using either a DC input voltage or a
direct PWM input signal. The MP4652 has a
built-in burst oscillator that can generate a
triangle waveform on the BFS pin.
When using a DC input voltage for PWM
dimming, connect a capacitor in parallel to a
resistor on BFS pin to set the burst frequency
and apply the DC voltage to the PWMIN pin to
program the PWM dimming duty cycle.
The burst frequency can also be synchronized to
an
external
frequency
by
applying
a
synchronizing narrow-pulse signal on the SYNC
pin. The synchronizing frequency should be
higher than the burst frequency set by the BFS
pin. Please refer to SYNC pin description for
details.
When using a direct PWM input signal for PWM
dimming, use a 20kΩ pull-up resistor between
the BFS pin to VCC and apply the PWM signal
on PWMIN pin.
Continuous Fast PWM Dimming
The MP4652 implements fast and continuous
PWM dimming on the LED current, as shown in
Figure 2. The PWM dimming signal (controlled by
a DC input voltage or a direct PWM signal)
outputs from the PWMOUT pin to drive the
external dimming MOSFET in series with the
LED string. Therefore, the LED current quickly
rises when the PWM dimming signal goes high,
and quickly falls when PWM dimming signal falls.
This fast PWM dimming feature helps the
MP4652 achieve a high PWM dimming ratio.
The MP4652 provides continuous PWM dimming
to the system. It outputs continuous gate driver
signals to the power stage during both PWM on
and PWM off intervals. This makes the power
flow continuous for magnetic components—such
as transformers and inductors—which can
eliminate audible noise.
With this fast and continuous PWM dimming
feature, the MP4652 can achieve 1000:1 high


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