LM2734YMKX National Semiconductor, LM2734YMKX Datasheet - Page 7

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LM2734YMKX

Manufacturer Part Number
LM2734YMKX
Description
IC,SMPS CONTROLLER,CURRENT-MODE,BICMOS,TSOP,6PIN,PLASTIC
Manufacturer
National Semiconductor
Datasheets

Specifications of LM2734YMKX

Rohs Compliant
NO

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Block Diagram
Application Information
THEORY OF OPERATION
The LM2734 is a constant frequency PWM buck regulator IC
that delivers a 1A load current. The regulator has a preset
switching frequency of either 550kHz (LM2734Y) or 1.6MHz
(LM2734X). These high frequencies allow the LM2734 to
operate with small surface mount capacitors and inductors,
resulting in DC/DC converters that require a minimum
amount of board space. The LM2734 is internally compen-
sated, so it is simple to use, and requires few external
components. The LM2734 uses current-mode control to
regulate the output voltage.
The following operating description of the LM2734 will refer
to the Simplified Block Diagram (Figure 1) and to the wave-
forms in Figure 2. The LM2734 supplies a regulated output
voltage by switching the internal NMOS control switch at
constant frequency and variable duty cycle. A switching
cycle begins at the falling edge of the reset pulse generated
by the internal oscillator. When this pulse goes low, the
output control logic turns on the internal NMOS control
switch. During this on-time, the SW pin voltage (V
up to approximately V
creases with a linear slope. I
sense amplifier, which generates an output proportional to
the switch current. The sense signal is summed with the
regulator’s corrective ramp and compared to the error am-
plifier’s output, which is proportional to the difference be-
tween the feedback voltage and V
comparator output goes high, the output switch turns off until
the next switching cycle begins. During the switch off-time,
inductor current discharges through Schottky diode D1,
which forces the SW pin to swing below ground by the
IN
, and the inductor current (I
L
is measured by the current-
REF
. When the PWM
SW
) swings
L
) in-
FIGURE 1.
7
forward voltage (V
adjusts the duty cycle (D) to maintain a constant output
voltage.
BOOST FUNCTION
Capacitor C
generate a voltage V
voltage to the internal NMOS control switch. To properly
drive the internal NMOS switch during its on-time, V
needs to be at least 1.6V greater than V
LM2734 will operate with this minimum voltage, it may not
have sufficient gate drive to supply large values of output
FIGURE 2. LM2734 Waveforms of SW Pin Voltage and
BOOST
D
and diode D2 in Figure 3 are used to
) of the catch diode. The regulator loop
Inductor Current
BOOST
. V
BOOST
- V
SW
SW
is the gate drive
. Although the
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BOOST

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