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PDF MP3386 Data sheet ( Hoja de datos )

Número de pieza MP3386
Descripción 6 String White LED Driver
Fabricantes MPS 
Logotipo MPS Logotipo



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The Future of Analog IC Technology
MP3386
50V, 6 String White LED Driver
DESCRIPTION
The MP3386 is a step-up converter with 6-
channel current sources designed for driving the
white LED arrays for large size LCD panel
backlighting applications.
The MP3386 uses current mode, fixed frequency
architecture. The switching frequency can be
selected at 1.25MHz or 625kHz. It generates an
output voltage up to 50V from a 4.5V to 25V input
supply. The MP3386 regulates the current in each
LED string to the user programmed value set by an
external current setting resistor.
The MP3386 applies 6 internal current sources in
each LED string terminal to get current balance.
And the current matching achieves 3% regulation
accuracy between strings. Its low 600mV
regulation voltage on LED current sources reduces
power loss and improves efficiency.
The MP3386 features external PWM dimming or
DC input PWM dimming, which allows the flexible
control of the backlighting luminance under wide
range of the ambient brightness, and also avoids
the possibility of PWM dimming audible noise. The
dimming PWM signal can be generated internally,
and the dimming frequency is programmed by an
external setting capacitor.
FEATURES
High Efficiency and Small Size
4.5V to 25V Input Voltage Range
50V Maximum Step-up Voltage
Balanced Driver for 6 Strings of WLED
3% Current Matching Accuracy Between
Strings
Selectable Switching Frequency: 1.25MHz or
625kHz
PWM or DC Input Burst PWM Dimming
Programmable Over-voltage Protection
Threshold
Under Voltage Lockout
Open and Short LED Protection
Thermal Shutdown
Small QFN24 (4x4mm) and 28-pin SOIC
Package
APPLICATIONS
Notebook & Netbook PC
Small LCD TV
Handy Terminals Display
Automotive System and Tablet Computer
All MPS parts are lead-free and adhere to the RoHS directive. For MPS green
status, please visit MPS website under Quality Assurance.
“MPS” and “The Future of Analog IC Technology” are Registered Trademarks
of Monolithic Power Systems, Inc.
TYPICAL APPLICATION
VIN
4.5V~25V
C1
M1
L1
D1
C2
R1
Enable
PWM
DIMMING
C3
24
VCC
1 EN
23
VIN
C4
22 21 20
COMP VFAULT SW1
19
SW2
PGND1 18
NC 2 OSC
PGND2 17
3 FSET
4 PWMO
MP3386
OVP 16
VOUT 15
C5 C6
5 GND
NC 14
6 PWMI
LED1 13
LED6
7
LED5
8
LED4
9
LED3
10
ISET
11
LED2
12
RSET
R2
MP3386 Rev. 1.0
1/19/2012
www.MonolithicPower.com
MPS Proprietary Information. Patent Protected. Unauthorized Photocopy and Duplication Prohibited.
© 2012 MPS. All Rights Reserved.
1

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MP3386 pdf
MP3386- 50V, 6 STRINGS WHITE LED DRIVERS
PIN FUNCTIONS
QFN24
Pin #
1
SOIC28
Pin #
5
Name Description
EN Enable Control Input. Do not let this pin floating.
Switching Frequency Selection Input. When float this pin or connect this pin to
2 6 OSC VCC, the step-up converter switching frequency is 1.25MHz. When connect this
pin to GND, the step-up converter switching frequency is 625kHz.
Dimming PWM Frequency Set. Connect a capacitor between FSET and GND to
3 7 FSET set the DPWM frequency by the equation: fDPWM=3.5uF/CFSET. The frequency of
DPWM is recommended to be set from 100Hz to 2kHz.
PWM Filter Output. To use external PWM dimming mode, connect a capacitor
between PWMO and GND to form a low-pass filter with an internal 400k
resistor. It filters the external PWM logic signal on PWMI pin into a DC signal
4
8
PWMO
whose level is inversely proportional to the duty-cycle of the input PWM signal
and then the DC signal is translated into a duty-cycle of the dimming PWM. To
use DC input PWM dimming mode, directly apply a DC voltage from 0.2V to
1.2V on PWMO pin for dimming PWM duty cycle control. The DC input PWM
dimming polarity is negative.
5 9 GND Analog Ground.
PWM Signal Input. To use external PWM dimming mode, apply a PWM signal
on this pin for brightness control. This signal is filtered and its duty cycle is
6 10 PWMI converted into a DC signal to calculate the DPWM duty cycle. And the DPWM
duty cycle equals to the input PWM duty cycle. To use DC input PWM dimming
mode, float this pin.
LED String 6 Current Input. This pin is the open-drain output of an internal
7 11 LED6 dimming control switch. Connect the LED String 6 cathode to this pin. If this
string is not used, connect Vout to this pin.
LED String 5 Current Input. This pin is the open-drain output of an internal
8 12 LED5 dimming control switch. Connect the LED String 5 cathode to this pin. If this
string is not used, connect Vout to this pin.
LED String 4 Current Input. This pin is the open-drain output of an internal
9 13 LED4 dimming control switch. Connect the LED String 4 cathode to this pin. If this
string is not used, connect Vout to this pin.
LED String 3 Current Input. This pin is the open-drain output of an internal
10 14 LED3 dimming control switch. Connect the LED String 3 cathode to this pin. If this
string is not used, connect Vout to this pin.
11
16
ISET
LED Current Set. Tie a current setting resistor from this pin to ground to
program the current in each LED string. ILED = 1.21V / RSET
LED String 4 Current Input. This pin is the open-drain output of an internal
12 18 LED2 dimming control switch. Connect the LED String 4 cathode to this pin. If this
string is not used, connect Vout to this pin.
LED String 3 Current Input. This pin is the open-drain output of an internal
13 19 LED1 dimming control switch. Connect the LED String 3 cathode to this pin. If this
string is not used, connect Vout to this pin.
15, 17,
14 20, 25, NC No Connection.
27
15 21 Vout Voltage Output. Connect this pin to output.
MP3386 Rev. 1.0
1/19/2012
www.MonolithicPower.com
MPS Proprietary Information. Patent Protected. Unauthorized Photocopy and Duplication Prohibited.
© 2012 MPS. All Rights Reserved.
5

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MP3386 arduino
MP3386- 50V, 6 STRINGS WHITE LED DRIVERS
APPLICATION INFORMATION
Selecting the Switching Frequency
The switching frequency of the step-up converter
is alternative from 1.25MHz and 625kHz. A bi-
level Switching Frequency Selection (OSC) input
sets the internal oscillator frequency for the step-
up converter. Tie OSC pin to GND corresponds
to the frequency 625kHz and tie OSC pin to VCC
or floating corresponds to 1.25MHz.
Setting the LED Current
The LED string currents are identical and set
through the current setting resistor on the ISET
pin.
ILED = 1000 x1.21V / RSET
For RSET=60.4k, the LED current is set to 20mA.
The ISET pin can not be open.
Setting the Over Voltage Protection
The open string protection is achieved through
the over voltage protection (OVP). In some cases,
an LED string failure results in the feedback
voltage always zero. The part then keeps
boosting the output voltage higher and higher. If
the output voltage ever exceeds the programmed
OVP threshold, the protection will be triggered.
To make sure the chip functions properly, the
OVP setting resistor divider must be set with
proper value. The recommended OVP point is
about 1.3 times higher than the output voltage for
normal operation.
VOVP=1.23V x (R1+R2)/R2
Selecting Dimming Control Mode
The MP3386 provides 4 different dimming
methods
1, PWM dimming mode with internal triangle
waveform generator
Apply a 100Hz to 50kHz square waveform to the
PWMI pin. The internal 400kand external
capacitor on PWMO pin filters the dimming signal
to a DC voltage(0.2V~1.2V).Then DC voltage is
modulated to a internal PWM dimming signal
whose frequency is set via the capacitor on
FSET pin according to the equation:
fDPWM = 3.5uF / CFSET
The minimum recommended amplitude of the
PWM signal is 2.1V (See Figure 3)
FSET
C1
MP3388
PWM Dimming
100Hz~50kHz
PWMI
PWMO
VCC
C2
C3
Figure 3—PWM Dimming
with Internal Triangle Waveform Generator
2, Direct PWM dimming with positive logic
An external PWM dimming signal is directly
employed to achieve PWM dimming control.
Connect a 100kresistor from FSET pin to GND
and apply the 100Hz to 2kHz PWM dimming
signal to PWMI pin. The minimum recommended
amplitude of the PWM signal is 1.5V (See Figure
4).
PWM Dimming
100Hz~2kHz
C1
R1
100 k
VCC
FSET
MP3388
PWMI
PWMO
Figure 4—Direct PWM Dimming
with Positive Logic
3, Direct PWM dimming with negative logic
It is similar to method 2. Apply a 100Hz to 2 kHz
external square waveform to the PWMO pin for
negative logic PWM dimming. The minimum
recommended amplitude of the PWM signal is
1.5V (See Figure 5)
MP3386 Rev. 1.0
1/19/2012
www.MonolithicPower.com
MPS Proprietary Information. Patent Protected. Unauthorized Photocopy and Duplication Prohibited.
© 2012 MPS. All Rights Reserved.
11

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