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MAXM17536 Datenblatt(PDF) 16 Page - Maxim Integrated Products

Teilenummer MAXM17536
Bauteilbeschribung  4.5V to 60V, 4A High-Efficiency, DC-DC Step-Down SiP Power Module with Integrated Inductor
PDF  22 Pages
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Hersteller  MAXIM [Maxim Integrated Products]
Direct Link  https://www.maximintegrated.com/en.html
Logo MAXIM - Maxim Integrated Products

MAXM17536 Datenblatt(HTML) 16 Page - Maxim Integrated Products

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Setting the Switching Frequency (RT)
The switching frequency of the MAXM17536 can be
programmed from 100kHz to 2.2MHz by using a resistor
connected from RT to SGND. The switching frequency
(fSW) is related to the resistor connected at the RT pin
(RRT) by the following equation:
RRT
19 ×103f
SW
− 1.7
where RRT is in kΩ and fSW is in kHz. Leaving the RT pin
open causes the device to operate at the default switching
frequency of 450kHz. See the Electrical Characteristics
table for RT resistor value recommendations for a few
common frequencies.
Operating Input-Voltage Range
The minimum and maximum operating input voltages for
a given output voltage should be calculated as follows:
OUT
OUT(MAX)
IN(MIN)
OUT(MAX)
9
SW(MAX)
V
(I
0.076)
V
(I
0.04)
1 (f
230 10 )
+
×
=
××
VIN(MAX)
=
VOUT
fSW(MAX) × tON(MIN)
where,
VOUT = Steady-state output voltage,
IOUT(MAX) = Maximum load current,
fSW(MAX) = Maximum switching frequency,
tON(MIN) = Worst-case minimum switch on-time (160ns).
Also, for duty cycle > 0.5:
6
IN(MIN)
OUT
SW
V
(4.04 V
) (35 10
f
)
=
×
−×
×
where fSW is the switching frequency in Hz.
Choose the greater of the two VIN(MIN) values obtained from
the above equations as the minimum operating input voltage.
The Component Selection Table, Table 1 provides the
operating input-voltage range and the optimum switching-
frequency range for the different selected output voltages.
External Frequency Synchronization (SYNC)
The internal oscillator of the MAXM17536 can be
synchronized to an external clock signal on the MODE/
SYNC pin. The external synchronization clock frequency
must be between 1.1 x fSW and 1.4 x fSW, where fSW is the
frequency programmed by the RT resistor. When an
external clock is applied to the MODE/SYNC pin, the
internal oscillator frequency changes to the external
clock frequency (from the original frequency based on
the RT setting) after detecting 16 external clock edges.
The converter operates in PWM mode during synchro-
nization operation. When the external clock is applied
to the MODE/SYNC pin, the mode of operation changes
to PWM from the initial state of PFM/DCM. When the
external clock is removed on-the-fly then the internal
oscillator frequency changes to the RT set frequency and
the converter still continues to operate in PWM mode.
The minimum external clock pulse-width high should be
greater than 50ns. See the MODE/SYNC section in the
Electrical Characteristics table for details.
DL-to-OUT Short Detection
In the MAXM17536, DL and OUT pins are adjacent to
each other. To prevent damage to the low-side FET in
case the DL pin is shorted to the OUT pins, the DL-to-
OUT short detection feature has been implemented. If the
MAXM17536 detects that the DL pin is shorted to the OUT
pins before startup, the startup sequence is not initiated
and output voltage is not soft-started.
Overcurrent Protection
The MAXM17536 is provided with a robust overcurrent
protection (OCP) scheme that protects the modules under
overload and output short-circuit conditions. A cycle-by-
cycle peak current limit turns off the high-side MOSFET
whenever the high-side switch current exceeds an internal
limit of 7.8A (typ). The module enters hiccup mode of
operation, either if one occurrence of the runaway current
limit 8.8A (typ), or if the FB node goes below 64.5% of its
nominal regulation threshold after soft-start is complete.
In hiccup mode, the module is protected by suspending
switching for a hiccup timeout period of 32,768 switching
cycles. Once the hiccup timeout period expires, soft-start
is attempted again. Hiccup mode of operation ensures low
power dissipation under output overload or short-circuit
conditions. Note that when soft-start is attempted under
overload condition, if feedback voltage does not exceed
64.5% of desired output voltage, the device switches at
half the programmed switching frequency.
www.maximintegrated.com
Maxim Integrated │ 16
MAXM17536
4.5V to 60V, 4A High-Efficiency, DC-DC Step-Down
SiP Power Module with Integrated Inductor



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