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MP2176GL Scheda tecnica(PDF) 13 Page - Monolithic Power Systems

Il numero della parte MP2176GL
Spiegazioni elettronici  6V, 6A, High-Efficiency, Synchronous Step-Down Converter
PDF  23 Pages
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Produttore elettronici  MPS [Monolithic Power Systems]
Homepage  http://www.monolithicpower.com
Logo MPS - Monolithic Power Systems

MP2176GL Scheda tecnica(HTML) 13 Page - Monolithic Power Systems

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MP2176 – 6V, 6A, SYNCHRONOUS, STEP-DOWN CONVERTER
MP2176 Rev. 1.0
www.MonolithicPower.com
13
4/17/2018
MPS Proprietary Information. Patent Protected. Unauthorized Photocopy and Duplication Prohibited.
© 2018 MPS. All Rights Reserved.
OPERATION
Pulse-Width Modulation (PWM) Operation
The MP2176 is a fully integrated, synchronous,
rectified, step-down, switch-mode converter.
Constant-on-time (COT) control is employed to
provide fast transient response and ease loop
stabilization. At the beginning of each cycle, the
high-side MOSFET (HS-FET) is turned on when
the
feedback
voltage
(VFB)
is
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
is
determined
with
Equation (1):
FREQ
ON
IN
4.8 R
(k )
t
(ns)
V (V) 0.49

(1)
After the on period elapses, the HS-FET is
turned off. The HS-FET is turned on again
when VFB drops below VREF. By repeating
operation in this way, the converter regulates
the output voltage. The integrated low-side
MOSFET (LS-FET) is turned on when the HS-
FET is in its off state to minimize conduction
loss. There is a dead short between the input
and GND if both the HS-FET and LS-FET are
turned on at the same time. This is called
shoot-through. To avoid shoot-through, a dead
time (DT) is generated internally between the
HS-FET off and LS-FET on period or the LS-
FET off and HS-FET on period.
Figure 2: PWM Operation
The MP2176 always operates in continuous
conduction mode (CCM), which means that the
inductor current can go negative in light-load
operation (see Figure 2). When VFB is below
VREF, the HS-FET is turned on for a fixed
interval determined by the one-shot on-timer.
When the HS-FET is turned off, the LS-
MOSFET is turned on until the next period
begins. When the MP2176 operates in CCM,
the switching frequency is fairly constant. This
is called pulse-width modulation (PWM) mode.
Switching Frequency
Selecting the switching frequency is a trade-off
between efficiency and component size. Low-
frequency operation increases efficiency by
reducing
MOSFET
switching
losses,
but
requires a larger inductance and capacitance to
maintain a low output voltage ripple.
For the MP2176, the on time can be set using
FREQ. In this way, the frequency is set in
steady-state operation in CCM.
Adaptive COT control is used in the MP2176,
and there is no dedicated oscillator in the IC.
Connect FREQ to IN through a resistor (RFREQ),
and the input voltage is forward fed to the one-
shot on-time timer through RFREQ. In steady-
state operation at CCM, the duty ratio is kept as
VOUT/VIN. Therefore, the switching frequency is
fairly constant over the input voltage range. The
switching frequency can be set with Equation
(2):
6
SW
FREQ
IN
DELAY
IN
OUT
10
f
(kHz)
4.8 R
(k )
V (V)
t
(ns)
V (V) 0.49
V
(V)


(2)
Where tDELAY is the comparator delay (about
40ns).
Generally, the MP2176 is set for 300kHz -
1MHz applications and is optimized to operate
at
a
high
switching
frequency
with
high
efficiency. With a high switching frequency,
small LC filter components can be used to save
system PCB space.
Jitter and FB Ramp Slope
Figure 3 shows jitter occurring in PWM mode.
When there is noise in the VFB downward slope,
the on time of the HS-FET deviates from its
intended location and produces jitter. Note that
t
here is a relationship between a system’s
stability and the steepness of the VFB ripple’s
downward slope. The slope steepness of the
VFB ripple dominates in noise immunity. The
magnitude of the VFB ripple does affect noise
immunity directly.



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