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MP4541 Datasheet(PDF) 12 Page - Monolithic Power Systems

No. de pieza MP4541
Descripción Electrónicos  80V, 0.8A, High-Efficiency,Synchronous, Step-Down Converter with Integrated Power MOSFETS
PDF  20 Pages
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Fabricante Electrónico  MPS [Monolithic Power Systems]
Página de inicio  http://www.monolithicpower.com
Logo MPS - Monolithic Power Systems

MP4541 Datasheet(HTML) 12 Page - Monolithic Power Systems

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MP4541
– 80V, 0.8A, SYNCHRONOUS STEP-DOWN CONVERTER
MP4541 Rev. 1.0
MonolithicPower.com
12
5/28/2021
MPS Proprietary Information. Patent Protected. Unauthorized Photocopy and Duplication Prohibited.
© 2021 MPS. All Rights Reserved.
OPERATION
The MP4541 is a synchronous step-down
switching
converter
with
integrated
power
MOSFETs. It provides high efficiency and
constant-on-time (COT) control for fast loop
response and easy loop stabilization. The
MP4541 features a wide 8V to 80V input voltage
range, internal soft-start (SS) control, and
precise current limiting. Its ultra-low quiescent
current (IQ) enables high efficiency under light-
load conditions.
Constant-On-Time (COT) Control
The MP4541 includes constant-on-time (COT)
control mode. At the beginning of each cycle, the
high-side MOSFET (HS-FET) turns on for a fixed
amount of time when the FB
pin’s voltage (VFB)
drops below the reference voltage (VREF). This
fixed on time is determined by a one-shot on-
timer. The on time is determined by both the
output voltage (VOUT) and input voltage (VIN) to
maintain a constant switching frequency (fSW)
across the entire input voltage range.
Once the on period is complete, the HS-FET
turns off until the next period. By repeating this
operation, the converter can regulate VOUT.
The integrated low-side MOSFET (LS-FET)
turns on when the HS-FET is off to minimize
conduction loss. A dead short occurs between
the VIN pin and GND pin if 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 is generated internally between the
HS-FET and LS-FET on and off periods. The
dead time occurs between the HS-FET off time
and the LS-FET on time, or vice versa.
Heavy-Load Operation
The MP4541 operates in continuous conduction
mode (CCM) when the output current (IOUT) is
high and the inductor current is above 0A. In
CCM, the HS-FET turns on, then turns off once
the on period is complete. Once the HS-FET
turns off, the LS-FET turns on to conduct the
inductor current.
Pulse-width modulation (PWM) operation occurs
when fSW remains constant while the part is in
CCM.
Light-Load Operation
The MP4541 can work in pulse-skip mode (PSM)
under light-load conditions. In PSM, the LS-FET
goes into tri-state (Hi-Z) when the inductor
current drops close to 0A, and the output
capacitors discharge slowly to GND through the
FB
pin’s feedback resistor. If VOUT drops and the
internal EA output voltage rises, the MP4541
starts the next switching cycle by turning on the
HS-FET. The MP4541 automatically reduces fSW
and IQ when the device is not switching. This
improves the device
’s efficiency when IOUT is low.
When the MP4541 is in PSM under light-load
conditions, the HS-FET does not turn on as
frequently
as
it
does
under
heavy-load
conditions. The frequency at which the HS-FET
turns on is a function of IOUT. As IOUT increases,
the HS-FET turns on more frequently. In turn, fSW
also increases. IOUT exceeds the upper boundary
threshold when the valley inductor current
reaches 0A. IOUT can be calculated with Equation
(1):
IN
OUT
OUT
OUT
SW
IN
(V
V
) V
I
2 L f
V

 
(1)
Where fSW is the switching frequency.
The MP4541 returns to CCM once IOUT exceeds
the upper boundary threshold. After this point,
fSW remains constant across the entire IOUT range.
Switching Frequency (fSW)
Selecting a switching frequency (fSW) is a tradeoff
between efficiency and component size. Low-
frequency operation increases efficiency by
reducing MOSFET switching loss, but requires a
larger inductance and capacitance to maintain
the low output voltage ripple.
The MP4541 offers configurable COT control.
When the FREQ pin is connected to the GND pin
via a resistor (RFREQ), VIN is internally fed-forward
to the one-shot on-timer. When the MP4541 is in
steady state operation in CCM, the duty ratio is
set to VOUT / VIN. Therefore, fSW remains constant
across the entire input voltage range. fSW can be
estimated with Equation (2):
6
SW
FREQ
10
f
+57 (kHz)
34.5 R
(k
Ω)

 

(2)



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