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LP1110 Datasheet(PDF) 6 Page - Lowpower Semiconductor inc

Part # LP1110
Description  Dual Bootstrapped, 12V MOSFET Driver with Output Enable
PDF  8 Pages
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Manufacturer  POWER [Lowpower Semiconductor inc]
Direct Link  http://www.lowpowersemi.com
Logo POWER - Lowpower Semiconductor inc

LP1110 Datasheet(HTML) 6 Page - Lowpower Semiconductor inc

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LP1110-00
Oct.-2017
Email: marketing@lowpowersemi.com
www.lowpowersemi.com
Page 6 of 8
Preliminary Datasheet LP1110
Operation Information
The LP1110 is a single phase MOSFET driver for
driving two N-channel MOSFETs in a synchronous
buck converter topology. The LP1110 will operate
from 5.0V or 12V, but have been optimized for high
current multi-phase buck regulators that convert 12 V
rail directly to the core voltage required by complex
logic chips.
A single PWM input signal is all that is required to
properly drive the high-side and the low-side
MOSFETs. Each driver is capable of driving a 3nF
load at frequencies up to 1 MHz.
Low-Side Driver
The low-side driver is designed to drive a ground-
referenced low RDS(on) N-Channel MOSFET. The
voltage rail for the low-side driver is internally
connected to the VCC supply and PGND.
High-Side Driver
The high−side driver is designed to drive a floating
low RDS(on) N-channel MOSFET. The gate voltage
for the high-side driver is developed by a bootstrap
circuit referenced to Switch Node (SWN) pin.
The bootstrap circuit is comprised of an external
diode, and an external bootstrap capacitor. When the
LP1110 are starting up, the SWN pin is at ground, so
the bootstrap capacitor will charge up to VCC
through the bootstrap diode. When the PWM input
goes high, the high-side driver will begin to turn on
the high-side MOSFET using the stored charge of
the bootstrap capacitor. As the high-side MOSFET
turns on, the SWN pin will rise. When the high-side
MOSFET is fully on, the switch node will be at 12 V,
and the BST pin will be at 12 V plus the charge of the
bootstrap capacitor (approaching 24V).The bootstrap
capacitor is recharged when the switchnode goes
low during the next cycle.
Safety Timer and Overlap Protection Circuit
It is very important that MOSFETs in a synchronous
buck regulator do not both conduct at the same time.
Excessive shoot-through or cross conduction can
damage the MOSFETs, and even a small amount of
cross conduction will cause a decrease in the power
conversion efficiency.
The LP1110 prevents cross conduction by
monitoring the status of the external MOSFETs and
applying the appropriate amount of “dead-time” or
the time between the turn-off of one MOSFET and
the turn-on of the other MOSFET. When the PWM
input pin goes high, DRVL will go low after a
propagation delay (tpdlDRVL). The time it takes for
the low-side MOSFET to turn off (tfDRVL) is
dependent on the total charge on the low-side
MOSFET gate. The LP1110 monitors the gate
voltage of both MOSFETs and the switch node
voltage to determine the conduction status of the
MOSFETs. Once the low−side MOSFET is turned off,
an internal timer will delay (tpdhDRVH) the turn-on of
the high-side MOSFET.
Likewise, when the PWM input pin goes low, DRVH
will go low after the propagation delay (tpdlDRVH).
The time to turn off the high-side MOSFET (tfDRVH)
is dependent on the total gate charge of the high−
side MOSFET. A timer will be triggered once the
high-side MOSFET has stopped conducting, to delay
(tpdhDRVL) the turn-on of the low-side MOSFET.



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