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LP3220S Datenblatt(PDF) 6 Page - Lowpower Semiconductor inc

Teilenummer LP3220S
Bauteilbeschribung  1.5MHz, 1.0A Step-Down Converter
PDF  10 Pages
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Hersteller  POWER [Lowpower Semiconductor inc]
Direct Link  http://www.lowpowersemi.com
Logo POWER - Lowpower Semiconductor inc

LP3220S Datenblatt(HTML) 6 Page - Lowpower Semiconductor inc

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LP3220S-00
Jun.-2017
Email: marketing@lowpowersemi.com
www.lowpowersemi.com
Page 6 of 10
Preliminary Datasheet
LP3220S
Functional Description
The LP3220S is a high output current monolithic switch-mode
step-down DC-DC converter. The device operates at a fixed
1.5MHz switching frequency, and uses a slope compensated
current mode architecture.
This step-down DC-DC converter can supply up to 1A output
current from at VIN = 3V and has an input voltage range from
2.2V to 6.0V. It minimizes external component size and
optimizes efficiency at the heavy load range. The slope
compensation allows the device to remain stable over a wider
range of inductor values so that smaller values (1μH to 4.7μH)
with lower DCR can be used to achieve higher efficiency.
Apart from the small bypass input capacitor, only a small L-C
filter is required at the output. The device can be programmed
with external feedback to any voltage, ranging from 0.61V to
near the input volt-age. It uses internal MOSFETs to achieve
high efficiency and can generate very low output voltages by
using an internal reference of 0.6V. At dropout, the converter
duty cycle increases to 100% and the output voltage tracks
the input voltage minus the low RDS(ON) drop of the P-channel
high-side MOSFET and the inductor DCR.
The internal error amplifier and compensation provides
excellent transient response, load and line regulation. Internal
soft start eliminates any output voltage over-shoot when the
enable or the input voltage is applied.
Current Mode PWM Control
Slope compensated current mode PWM control provides
stable switching and cycle-by-cycle current limit for excellent
load and line response with protection of the internal main
switch (P-channel MOSFET) and synchronous rectifier
(N-channel MOSFET). During normal operation, the internal
P-channel MOSFET is turned on for a specified time to ramp
the inductor current at each rising edge of the internal
oscillator, and switched off when the peak inductor current is
above the error current. The current comparator limits the
peak inductor current. When the main switch is off, the
synchronous rectifier turns on immediately and stays on until
either the inductor current starts to reverse, as indicated by
the current reversal comparator or the beginning of the next
clock cycle.
Control Loop
The LP3220S is a peak current mode step-down converter.
The current through the P-channel MOSFET (high side) is
sensed for current loop control, as well as short circuit and
overload protection. A slope compensation signal is added to
the sensed current to maintain stability for duty cycles greater
than 50%. The peak current mode loop appears as a
voltage-programmed current source in parallel with the output
capacitor. The output of the voltage error amplifier programs
the current mode loop for the necessary peak switch current
to force a constant output voltage for all load and line
conditions. Internal loop compensation terminates the
trans-conductance voltage error amplifier output. The error
amplifier reference is fixed at 0.6V.
Soft Start / Enable
Soft start limits the current surge seen at the input and
eliminates output voltage overshoot. The enable pin is active
high. When pulled low, the enable input (EN) forces the
LP3220S into a low-power, non-switching state. The total
input current during shutdown is less than 1μA.
Current Limit and Over-Temperature Protection
For overload conditions, the peak input current is limited to 2A.
To minimize power dissipation and stresses under current
limit and short-circuit conditions, switching is terminated after
entering current limit for a series of pulses. The termination
lasts for seven consecutive clock cycles after a current limit
has been sensed during a series of consecutive clock cycles.
Thermal protection completely disables switching when
internal dissipation becomes excessive. The junction
over-temperature threshold is 150℃ with 15℃ of hysteresis.
Once an over-temperature or over-current fault conditions is
removed, the output voltage automatically recovers.



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