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4470 Datasheet PDF : 18 Pages
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MP4470/4470A–HIGH-EFFICIENCY, FAST-TRANSIENT, SYNCHRONOUS, STEP-DOWN CONVERTER
OPERATION
PWM Operation
The MP4470/4470A is a fully-integrated,
synchronous, rectified, step-down, switch-mode
converter. At the beginning of each cycle, the
high-side MOSFET (HS-FET) turns ON when the
feedback voltage (VFB) drops below the reference
voltage (VREF), which indicates an insufficient
output voltage. The ON period is determined by
the input voltage and the frequency-set resistor
as:
( ) ( ) tON
ns
= 96 × RFREQ
VIN
kΩ
+ tDELAY (ns)
(1)
After the ON period elapses, the HS-FET turns
OFF. It is turned ON again when VFB drops below
VREF. By repeating this operation, the converter
regulates the output voltage. The integrated low-
side MOSFET (LS-FET) turns ON when the HS-
FET is OFF to minimize conduction loss. A dead
short occurs between input and GND if both the
HS-FET and the LS-FET turn on at the same
time (shoot-through). An internal dead-time (DT)
generated between HS-FET OFF and LS-FET
ON, or LS-FET OFF and HS-FET ON prevents
shoot-through.
Heavy-Load Operation
tON
Figure 2: Heavy-Load Operation
In continuous-conduction mode (CCM), when the
output current is HIGH, the HS-FET and LS-FET
repeatedly turn ON/OFF as shown in MPS. All
Rights Reserved. The inductor current never
goes to zero. In CCM, the switching frequency
(fSW) is fairly constant.
Light-Load Operation
At light-load or no-load conditions, the output
drops very slowly and the MP4470/4470A
reduces the switching frequency automatically to
maintain high efficiency. Figure 3 shows the light-
load operation. VFB does not reach VREF as the
inductor current approaches zero. The LS-FET
driver enters a tri-state (high Z) whenever the
inductor current reaches zero. A current
modulator takes control of the LS-FET and limits
the inductor current to less than -1mA. Hence,
the output capacitors discharge slowly to GND
through the LS-FET to greatly improve the light-
load efficiency. At light loads, the HS-FET does
not turn ON as frequently as at heavy loads. This
is called skip mode.
tON
Figure 3: Light-Load Operation
As the output current increases from light-load
condition, the current modulator’s regulatory time
period becomes shorter. The HS-FET turns ON
more frequently, thus increasing the switching
frequency increases. The output current reaches
its critical level when the current modulator time
is zero. The critical output current level is:
IOUT
=
(VIN VOUT) × VOUT
2 × L × FSW × VIN
(2)
It enters PWM mode once the output current
exceeds the critical level. After that, the switching
frequency stays fairly constant over the output
current range.
Switching Frequency
The input voltage is feed-forwarded to the on-
time one-shot timer through the resistor, RFREQ.
The duty ratio remains at VOUT/VIN. Hence, the
switching frequency is fairly constant over the
input voltage range. The switching frequency can
be set as:
MP4470/4470A Rev. 1.1
www.MonolithicPower.com
9
8/26/2013
MPS Proprietary Information. Patent Protected. Unauthorized Photocopy and Duplication Prohibited.
© 2013 MPS. All Rights Reserved.

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