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MP3378EGF bảng dữ liệu(PDF) 17 Page - Monolithic Power Systems

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Giải thích chi tiết về linh kiện  4-Channel WLED Controller with High-Efficiency Buck Converter
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nhà sản xuất  MPS [Monolithic Power Systems]
Trang chủ  http://www.monolithicpower.com
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MP3378E
– 4-CHANNEL WLED CONTROLLER WITH BUCK CONVERTER
MP3378E Rev. 1.02
www.MonolithicPower.com
17
5/26/2017
MPS Proprietary Information. Patent Protected. Unauthorized Photocopy and Duplication Prohibited.
© 2017 MPS. All Rights Reserved.
APPLICATION INFORMATION
WLED CONTROLLER SECTION:
Selecting the Switching Frequency
The switching frequency of the step-up converter
is recommended to be between 300kHz to
500kHz for most applications. An oscillator
resistor on OSC sets the internal oscillator
frequency for the step-up converter, according to
Equation (1):
 
SW1
67320
F
KHz
Rosc K
Ω
(1)
When ROSC=224kΩ, the switching frequency is
set to 300kHz.
Setting the LED Current
Each LED string current can be set through the
current setting resistor on ISET using Equation
(2):
 
SET
795 1.23
ILED(mA)
RK
Ω
(2)
When RSET=8.06kΩ, the LED current is set to
120mA. Do NOT leave ISET 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. Ceramic capacitors
with X5R or X7R dielectrics are recommended
because of 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
A larger value inductor results in less ripple
current,
lower
peak
inductor
currents,
and
reduced stress on the N-channel MOSFET.
However, the larger value inductor has a larger
physical size, a higher series resistance, and a
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 values using
Equation (3) and Equation (4):
2
OUT1
SW1
LOAD1
η V
D (1 D)
L1
2 f
I
  

(3)
IN1
OUT1
V
D1
V

(4)
Where VIN1 and VOUT1 are the input and output
voltages, fSW1 is the switching frequency, ILOAD1 is
the total
LED load current, and η is the efficiency.
Usually, the switching current is used for peak-
current-mode control. To avoid hitting the current
limit, the voltage across the sensing resistor
(RSENSE) must be less than 80% of the worst-case
current-limit voltage (VSENSE). See Equation (5)
and Equation (6):
SENSE
SENSE
L1(PEAK)
0.8 V
R
I
(5)
OUT1
LOAD1
IN1
OUT1
IN1
L1(PEAK)
IN1
SW1
OUT1
V
I
V
(V
V )
I
ηV
2 L1 F
V

 
(6)
Where IL1(PEAK) is the peak value of the inductor
current. VSENSE is shown in Figure 4.
Figure 4: VSENSE vs. Duty Cycle



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