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ISL6527IBZ Datasheet(PDF) 7 Page - Renesas Technology Corp

Part # ISL6527IBZ
Description  Single Synchronous Buck Pulse-Width Modulation (PWM) Controller
PDF  17 Pages
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Manufacturer  RENESAS [Renesas Technology Corp]
Direct Link  http://www.renesas.com
Logo RENESAS - Renesas Technology Corp

ISL6527IBZ Datasheet(HTML) 7 Page - Renesas Technology Corp

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ISL6527, ISL6527A
FN9056 Rev 11.00
Page 7 of 17
Sep 29, 2015
Functional Description
Initialization
The ISL6527, ISL6527A automatically initialize upon receipt of
power. Special sequencing of the input supplies is not
necessary. The Power-On Reset (POR) function continually
monitors the the output voltage of the Charge Pump. During
POR, the Charge Pump operates on a free running oscillator.
Once the POR level is reached, the Charge Pump oscillator is
synched to the PWM oscillator. The POR function also initiates
the soft-start operation after the Charge Pump Output Voltage
exceeds its POR threshold.
Soft-Start
The POR function initiates the digital soft-start sequence. The
PWM error amplifier reference is clamped to a level
proportional to the soft-start voltage. As the soft-start voltage
slews up, the PWM comparator generates PHASE pulses of
increasing width that charge the output capacitor(s). This
method provides a rapid and controlled output voltage rise. The
soft-start sequence typically takes about 6.5ms when VREF_IN
is 1.5V
If VREF_IN is less that 1.5V, the soft-start rise time will be
proportionally smaller as shown in Equation 2:
Figure 1 shows the soft-start sequence for a typical
application. At T0, the +3.3V VCC voltage starts to ramp. At
time t1, the Charge Pump begins operation and the +5V
CPVOUT IC bias voltage starts to ramp up. Once the voltage
on CPVOUT crosses the POR threshold at time t2, the output
begins the soft-start sequence. The triangle waveform from
the PWM oscillator is compared to the rising error amplifier
output voltage. As the error amplifier voltage increases, the
pulse-width on the UGATE pin increases to reach the
steady-state duty cycle at time t3.
.
Shoot-Through Protection
A shoot-through condition occurs when both the upper
MOSFET and lower MOSFET are turned on simultaneously,
effectively shorting the input voltage to ground. To protect the
regulator from a shoot-through condition, the ISL6527,
ISL6527A incorporate specialized circuitry, which insures that
the complementary MOSFETs are not ON simultaneously.
The adaptive shoot-through protection utilized by the
ISL6527, ISL6527A looks at the lower gate drive pin, LGATE,
and the upper gate drive pin, UGATE, to determine whether a
MOSFET is ON or OFF. If the voltage from UGATE or from
LGATE to GND is less than 0.8V, then the respective
MOSFET is defined as being OFF and the complementary
MOSFET is turned ON. This method of shoot-through
protection allows the regulator to sink or source current.
Since the voltage of the lower MOSFET gate and the upper
MOSFET gate are being measured to determine the state of
the MOSFET, the designer is encouraged to consider the
repercussions of introducing external components between
the gate drivers and their respective MOSFET gates before
actually implementing such measures. Doing so may interfere
with the shoot-through protection.
PROTECTION/DISABLE
OCSET Current Source
IOCSET
Commercial
182022
µA
Industrial
16
20
22
µA
Disable Threshold
VOCSET/SD
--
0.8
V
NOTE:
4. Limits should be considered typical and are not production tested.
Electrical Specifications
Recommended Operating Conditions, unless otherwise noted VCC = 3.3V ±5% and TA = +25°C (Continued)
PARAMETER
SYMBOL
TEST CONDITIONS
MIN
TYP
MAX
UNITS
RiseTime
tSS
VREFIN
1.5V
---------------------
=
(EQ. 2)
FIGURE 1. SOFT-START INTERVAL
0V
TIME
t2
t3
t0
VCC (3.3V)
VOUT (2.50V)
(1V/DIV)
t1
CPVOUT (5V)



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