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MP3393EY 数据表(PDF) 14 Page - Monolithic Power Systems

部件名 MP3393EY
功能描述  8-String Step-Up White LED Driver with External Transistor
PDF  19 Pages
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制造商  MPS [Monolithic Power Systems]
网页  http://www.monolithicpower.com
标志 MPS - Monolithic Power Systems

MP3393EY 数据表(HTML) 14 Page - Monolithic Power Systems

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MP3393—8-STRING WHITE LED DRIVER WITH STEP-UP CONTROLLER
MP3393 Rev. 1.05
www.MonolithicPower.com
14
3/26/2013
MPS Proprietary Information. Patent Protected. Unauthorized Photocopy and Duplication Prohibited.
© 2013 MPS. All Rights Reserved.
Where
• hFE-MIN is minimum value of current transfer
ratio on BJT manufacturer’s datasheet.
• ICTL-MIN is minimum threshold of maximum
sink current of CTRLx pin. It is 5.5mA on EC
table.
Selecting the Power MOSFET
The MP3393 is capable of driving a wide variety
of N-Channel power MOSFETS. The critical
parameters of selection of a MOSFET are:
1. Maximum drain-to-source voltage, VDS(MAX)
2. Maximum current, ID(MAX)
3. On-resistance, RDS(ON)
4. Gate source charge QGS and gate drain
charge QGD
5. Total gate charge, QG
Ideally, the off-state voltage across the MOSFET
equals the output voltage. Given the turn-off
voltage spike, VDS(MAX) should exceed 1.5×VOUT.
The maximum current through the power
MOSFET happens when the input voltage is at a
minimum and the output power is at a maximum
The
maximum
RMS
current
through
the
MOSFET is given by
RMS(MAX)
IN(MAX)
MAX
II
D
Where:
OUT
IN(MIN)
MAX
OUT
VV
D
V
The current rating of the MOSFET should be
greater than 1.5×IRMS.
The ON resistance of the MOSFET determines
the conduction loss, which is given by:
k
R
I
P
(on)
DS
2
RMS
cond
×
×
=
Where k is the temperature coefficient of the
MOSFET
The switching loss is related to QGD and QGS1,
which determine the commutation time: QGS1 is
the charge when the gate driver charges VG from
VTH to VPLT; QGD is the charge during the period
when VG stays at the plateau voltage. QGS1 can
be read in the chart of VGS vs. QG of the MOSFET
datasheet. These two parameters are needed to
estimate the turn-on and turn-off losses to
estimate the total switching loss, PSW.
SW
IN
DS
PLT
DR
G
GD
SW
IN
DS
TH
DR
G
GS1
SW
f
I
V
V
V
R
Q
f
I
V
V
V
R
Q
P
×
×
×
×
+
×
×
×
×
=
Where
• VTH is the threshold voltage,
• VPLT is the plateau voltage,
• RG is the gate resistance,
• VDS is the drain-source voltage.
Please note that the switching loss is the most
difficult part in the loss estimation. The equation
above
only
provides
a
simple
estimate
expression.
The total gate charge, QG, is used to calculate
the gate drive loss, where:
SW
DR
G
DR
f
V
Q
P
×
×
=
Where VDR is the drive voltage
Selecting the Output Capacitor
The output capacitor limits the output voltage
ripple and ensures feedback loop stability. Select
a capacitor with low impedance at the switching
frequency. For best results, use ceramic
capacitors with X7R dielectrics for their low ESR
characteristics. For most applications, use a
4.7μF ceramic capacitor in parallel with an
electrolytic capacitor. Select the electrolytic
capacitor using the following equation:
OUT
OUT
SW
V
I* D
C
f* P
=
Where
• COUT is the value of output electrolytic
capacitor,
• IOUT is total output current, and
• PV is ΔVOUT/VOUT.
Aim for a PV in the range of 0.05% to 0.1%.
Setting the Over-Voltage Protection
The MP3393 uses OVP to achieve open-string
protection. In some cases, an LED string open-
failure results in low feedback voltage. The chip
then keeps boosting the output voltage higher. If



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