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MP3373 数据表(PDF) 15 Page - Monolithic Power Systems

部件名 MP3373
功能描述  8 Strings, Step Up WLED Controller with External Transistor
PDF  20 Pages
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制造商  MPS [Monolithic Power Systems]
网页  http://www.monolithicpower.com
标志 MPS - Monolithic Power Systems

MP3373 数据表(HTML) 15 Page - Monolithic Power Systems

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MP3373, 8 STRINGS, WLED CONTROLLER WITH EXTERNAL TRANSISTOR
MP3373 Rev. 1.02
www.MonolithicPower.com
15
8/16/2016
MPS Proprietary Information. Patent Protected. Unauthorized Photocopy and Duplication Prohibited.
© 2016 MPS. All Rights Reserved.
APPLICATION INFORMATION
Selecting the Switching Frequency
The switching frequency of the step-up converter
is recommended from 100kHz to 1MHz for most
of application. An oscillator resistor on OSC pin
sets the internal oscillator frequency for the step-
up converter according to the below equation:
)
(k
R
16800
(kHz)
F
OSC
SW
For ROSC=100kΩ, the switching frequency is set
to 168 kHz.
Setting the LED Current
The LED string currents are identical and set
through the current sense resistor on the FB pin.
FB
LED
R
200(mV)
1
(mA)
I
Whereβis the gain of transistor,for RFB
= 2Ω,β=100, the LED current is set to 101mA.
The FB pin can not be open.
Selecting the Input Capacitor
The input capacitor reduces the surge current
drawn from the input supply and the switching
noise from the device. The input capacitor
impedance at the switching frequency should be
less than the input source impedance to prevent
the
high-frequency
switching
current
from
passing through to the input. Use ceramic
capacitors with X5R or X7R dielectrics for their
low ESR and small temperature coefficients. For
most applications, use a 4.7μF ceramic capacitor
in parallel with a 220µF electrolytic capacitor.
Selecting the Inductor and Current Sensing
Resistor
The MP3373 requires an inductor to supply a
higher output voltage while being driven by the
input voltage. A larger value inductor results in
less ripple current, resulting in lower peak
inductor current and reducing stress on the N-
channel MOSFET. However, the larger value
inductor has a larger physical size, higher series
resistance, and lower saturation current.
Choose an inductor that does not saturate under
the worst-case load conditions. Select the
minimum inductor value to ensure that the boost
converter works in continuous conduction mode
with high efficiency and good EMI performance.
Calculate the required inductance value using the
equation:
2
OUT
SW
LOAD
η V
D (1D)
L
2
f
I

 

OUT
IN
V
V
1
D
Where VIN and VOUT are the input and output
voltages, fSW is the switching frequency, ILOAD is
the LED load current, and η is the efficiency.
The switching current is usually used for the peak
current mode control. In order to avoid hitting the
current limit, the voltage across the sensing
resistor RSENSE must be less than 75% of the
worst-case current-limit voltage, VSENSE.
L(PEAK)
SENSE
I
VSENSE
0.75
R
OUT
SW
IN
OUT
IN
IN
LOAD
OUT
L(PEAK)
V
F
L
2
)
V
(V
V
ηV
I
V
I
Where IL(PEAK) is the peak value of the inductor
current. VSENSE is shown in Figure 2.
240
260
280
300
320
340
360
380
400
DUTY CYCLE (%)
VSENSE vs. Duty
0
20
40
60
80
100
Duty(%) VLIMIT(mV)
10.00
380.3
20.00
365.6
30.00
350.9
40.00
336.2
50.00
321.5
60.00
306.8
70.00
292.1
80.00
277.4
90.00
262.7
Figure 2: VSENSE vs Duty Cycle
Selecting the Power MOSFET
The MP3373 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)



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