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MP8792GLE Arkusz danych(PDF) 16 Page - MPS Industries, Inc.

Numer części MP8792GLE
Szczegółowy opis  16V, 12A, Synchronous Step-Down Converter with Adjustable Current Limit,Configurable Frequency, and Voltage Tracking
PDF  20 Pages
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Producent  MPSIND [MPS Industries, Inc.]
Strona internetowa  http://www.mpsind.com/index.html
Logo MPSIND - MPS Industries, Inc.

MP8792GLE Arkusz danych(HTML) 16 Page - MPS Industries, Inc.

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MP8792 – 16V, 12A, SYNCHRONOUS STEP-DOWN CONVERTER
MP8792 Rev. 1.0
www.MonolithicPower.com
16
12/2/2019
MPS Proprietary Information. Patent Protected. Unauthorized Photocopy and Duplication Prohibited.
© 2019 MPS. All Rights Reserved.
After 200ns, the LS-FET turns on again. The
MP8792 repeats this operation to discharge the
over-voltage on the output. The device exits this
mode when VFB drops below 105% of VREF.
Over-Temperature Protection (OTP)
The MP8792 has over-temperature protection
(OTP).
The
IC
monitors
the
junction
temperature
internally.
If
the
junction
temperature
exceeds
the
threshold
value
(typically 160°C), the converter shuts off and
discharges the TRK/REF capacitors. This is a
non-latch protection. There is about 30°C
hysteresis.
Once
the
junction
temperature
drops to about 130°C, a soft start is initiated.
The OTP function is effective once the MP8792
is enabled.
Output Voltage Setting and Remote Output
Voltage Sensing
First, choose a value for R1. Then R2 can be
calculated with Equation (4):
REF
21
O
REF
V
R (k )
R (k )
VV
 
(4)
To optimize the load transient response, a feed-
forward capacitor (CFF) is recommended in
parallel with R1. R1 and CFF add an extra zero
frequency (fZ) to the system, which improves
loop response. R1 and CFF are selected so that
the zero frequency formed by R1 and CFF is
between 20kHz and 60kHz. The extra zero
frequency can be estimated with Equation (5):
Z
FF
1
f
2
R1 C

(5)
Power Good (PGOOD)
The MP8792 has a power good (PGOOD)
output.
PGOOD
is the
open
drain
of
a
MOSFET. Connect PGOOD to VCC or another
external voltage source (below 3.6V) through a
pull-up resistor (typically 10
kΩ). After applying
the input voltage, the MOSFET turns on, so
PGOOD is pulled to GND before TRK/REF is
ready. After VFB reaches 92.5% of VREF and
a .08ms delay, PGOOD is pulled high.
When VFB drops to 80% of VREF or exceeds
116% of the nominal VREF, PGOOD is latched
low. PGOOD can only be pulled high again
after a new soft start.
If the input supply fails to power the MP8792,
PGOOD is clamped low even though PGOOD
is tied to an external DC source through a pull-
up resistor. Figure 5 shows the relationship
between the PGOOD voltage and the pull-up
current.
0
0.2
0.4
0.6
0.8
1
1.2
1.4
1.6
1.8
2
0.6
0.7
0.8
0.9
V_PG (V)
Figure 5: PGOOD Clamped Voltage vs. Pull-Up
Current
EN Configuration
The MP8792 turns on when EN goes high, and
it turns off when EN goes low. Do not float EN.
EN can be driven by an analog or digital control
logic signal to enable or disable the device.
The MP8792 provides accurate EN thresholds,
so a resistor divider from VIN to AGND can
program the input voltage at which the MP8792
is enabled. This is highly recommended for an
application where there is no dedicated EN
control logic signal, to avoid possible UVLO
bouncing during start-up and shutdown. The
resistor divider values can be calculated with
Equation (6):
DOWN
DOWN
UP
EN
START
IN
R
R
R
VIH
V
V
)
(
_
(6)
Where VIHEN is typically 1.22V. RUP and RDOWN
should be chosen so that VEN does not exceed
3.6V when VIN reaches its maximum value.
EN can be directly connected to VIN through a
pull-up resistor (RUP). RUP should be chosen so
that the maximum current going to EN is 50
μA.
RUP can be estimated with Equation (7):
)
(
05
.
0
)
(
)
(
mA
V
VIN
k
R
MAX
UP
(7)



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