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MP3391EF 数据表(PDF) 10 Page - Monolithic Power Systems

部件名 MP3391EF
功能描述  8-Channel, 120mA/ch Step-Up WLED Driver Controller
PDF  18 Pages
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制造商  MPS [Monolithic Power Systems]
网页  http://www.monolithicpower.com
标志 MPS - Monolithic Power Systems

MP3391EF 数据表(HTML) 10 Page - Monolithic Power Systems

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MP3391—8-CHANNEL, 120mA/CH STEP-UP WLED DRIVER CONTROLLER
MP3391 Rev. 1.11
www.MonolithicPower.com
10
3/14/2013
MPS Proprietary Information. Patent Protected. Unauthorized Photocopy and Duplication Prohibited.
© 2013 MPS. All Rights Reserved.
OPERATION
The MP3391 employs a programmable constant
frequency, peak current mode step-up converter
and 8-channels regulated current sources to
regulate the array of 8 strings white LEDs. The
number of LED string is selected by NUMSEL pin
for 8/6/4 LED strings. The operation of the
MP3391 can be understood by referring to the
block diagram of Figure 1.
Internal Regulator
The MP3391 includes two internal linear
regulators (VCC and VDD). VCC regulator offers
a 5V power supply for the internal control circuitry.
VDD regulator offers a 10V power supply for the
external MOSFET switch gate driver. The VCC
and VDD voltage drops to 0V when the chip
shuts down. The MP3391 features Under Voltage
Lockout. The chip is disabled until VCC exceeds
the UVLO threshold. And the hysteresis of UVLO
is approximately 200mV.
System Startup
When the MP3391 is enabled, the chip monitors
the OVP pin to see if the Schottky diode is not
connected or the boost output is short to GND. If
the OVP voltage is lower than 80mV, the chip will
be disabled. The MP3391 will also check other
safety limits, including UVLO and OTP after the
OVP test is passed. If they are all in function, it
then starts boosting the step-up converter with an
internal soft-start.
It is recommended on the start up sequence that
the enable signal comes after input voltage and
PWM dimming signal established.
Step-up Converter
The
converter
operation
frequency
is
programmable (from 150kHz to 500kHz) with a
external set resistor on OSC pin, which is helpful
for optimizing the external components sizes and
improving the efficiency.
At the beginning of each cycle, the external
MOSFET is turned with the internal clock. To
prevent sub-harmonic oscillations at duty cycles
greater than 50 percent, a stabilizing ramp is
added to the output of the current sense amplifier
and the result is fed into the PWM comparator.
When this result voltage reaches the output
voltage of the error amplifier (VCOMP) the external
MOSFET is turned off.
The voltage at the output of the internal error
amplifier is an amplified signal of the difference
between the reference voltage and the feedback
voltage. The converter automatically chooses the
lowest active LEDX pin voltage for providing
enough bus voltage to power all the LED arrays.
If the feedback voltage drops below the 450mV
reference, the output of the error amplifier
increases. It results in more current flowing
through the power FET, thus increasing the
power delivered to the output. In this way it forms
a close loop to make the output voltage in
regulation.
At light-load or Vout near to Vin operation, the
converter runs into the pulse-skipping mode, the
FET is turned on for a minimum on-time of
approximately 100ns, and then the converter
discharges the power to the output in the remain
period. The external MOSFET will keep off until
the output voltage needs to be boosted again.
Dimming Control
The MP3391 provides two PWM dimming
methods: external PWM signal or DC input PWM
Dimming mode (see Figure 2). Both methods
results in PWM chopping of the current in the
LEDs for all 8 channels to provide LED control.
Figure 2—PWM Dimming Method
When bias the BOSC pin to a DC level, applying
a PWM signal to the DBRT pin to achieve the
PWM dimming. A DC analog signal can be
directly applied to the DBRT pin to modulate the
LED current with a capacitor on BOSC pin. And
the DC signal is then converted to a DPWM
dimming
signal
at
the
setting
oscillation
frequency.
The brightness of the LED array is proportional to
the duty cycle of the DPWM signal. The DPWM
signal frequency is set by the cap at the BOSC
pin.



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