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MA2007 Datasheet(PDF) 4 Page - Major-Power Technology Co., LTD.

Part # MA2007
Description  750KHz Asynchronous Boost Converter
PDF  6 Pages
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Manufacturer  MPOWER [Major-Power Technology Co., LTD.]
Direct Link  http://major-power.com.tw/
Logo MPOWER - Major-Power Technology Co., LTD.

MA2007 Datasheet(HTML) 4 Page - Major-Power Technology Co., LTD.

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MA2007
Major Power Technology Co., Ltd.
Rev.1.0
Jun/08, 2015
APPLICATION CIRCUIT
1. EC ( Recommend Circuit )
VIN 3~4.2V
5V/1A
GND
OFF ON
FB
SW
EN
CS
22
μF
VOUT +
VCC
R3
L1
R1
R2
22
μF
4.7
μH
B340
C1
C2
75K
10K
0.08
D1
C3
VOUT-
2. MLCC
VIN 3~4.2V
5V/1A
GND
OFF ON
FB
SW
EN
CS
22
μF
VOUT +
VCC
R3
L1
R1
R2
22
μF
4.7
μH
B340
C1
C2
75K
10K
0.08
D1
VOUT-
VOUT=VFB × (1+R1/R2), VFB = 0.6V, R2 suggest 5k~30K
ISEN =VCS/R3≒ 1.25A (VCS =0.1V, R3=80m
Ω)
Figure 3. Typical Application Circuit
The MA2007 uses a 750KHz fixed-frequency, current-mode regulation architecture to
regulate the output voltage. The MA2007 measures the output voltage through an external
resistive voltage divider and compares that to the internal 0.6V reference to generate the
error voltage. The current-mode regulator compares the error voltage to the inductor current
to regulate the output voltage. The use of current-mode regulation improves transient
response and control loop stability.
At the beginning of each cycle, the N-Channel MOSFET switch is turned on, forcing the
inductor current to rise. The current at the source of the switch is internally measured and
converted to a voltage by the current sense amplifier. That voltage is compared to the
error voltage. When the inductor current rises sufficiently, the PWM comparator turns off the
switch, forcing the inductor current to the output capacitor through the SBD, which forces
the inductor current to decrease. The peak inductor current is controlled by the error
voltage, which in turn is controlled by the output voltage. Thus the output voltage controls
the inductor current to satisfy the load.



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