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PDF L6728 Data sheet ( Hoja de datos )

Número de pieza L6728
Descripción Single phase PWM controller
Fabricantes STMicroelectronics 
Logotipo STMicroelectronics Logotipo



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L6728
Single phase PWM controller with Power Good
Features
Flexible power supply from 5 V to 12 V
Power conversion input as low as 1.5 V
0.8 V internal reference
0.8 % output voltage accuracy
High-current integrated drivers
Power Good output
Sensorless and programmable OCP across
low-side RDS(on)
OV / UV protections
VSEN disconnection protection
Oscillator internally fixed at 300 kHz
LSless to manage pre-bias start-up
Adjustable output voltage
Disable function
Internal soft-start
DFN10 package
Applications
Memory and termination supply
Subsystem power supply (MCH, IOCH, PCI...)
CPU and DSP power supply
Distributed power supply
General DC-DC converters
DFN10
Description
L6728 is a single-phase step-down controller with
integrated high-current drivers that provides
complete control logic and protection to realize in
a simple way general DC-DC converters by using
a compact DFN10 package.
Device flexibility allows managing conversions
with power input VIN as low as 1.5 V and device
supply voltage ranging from 5 V to 12 V.
L6728 provides simple control loop with voltage
mode EA. The integrated 0.8 V reference allows
regulating output voltages with ±0.8 % accuracy
over line and temperature variations. Oscillator is
internally fixed to 300 kHz.
L6728 provides programmable dual level over
current protection as well as over and under
voltage protection. Current information is
monitored across the low-side MOSFET RDS(on)
saving the use of expensive and space-
consuming sense resistors.
PGOOD output easily provides real-time
information on output voltage status, through
VSEN dedicated output monitor.
Table 1.
Device summary
Order codes
L6728
L6728TR
Package
DFN10
Packaging
Tube
Tape and reel
June 2008
Rev 3
1/31
www.st.com
1

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L6728 pdf
L6728
Pin description and connection diagrams
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2 Pin description and connection diagrams
Figure 3. Pin connection (top view)
2.1
Pin descriptions
Table 2. Pins description
Pin #
Name
Function
HS driver supply.
1 BOOT Connect through a capacitor (100 nF) to the floating node (LS-Drain) pin
and provide necessary bootstrap diode from VCC.
HS driver return path, current-reading and adaptive-dead-time monitor.
2
PHASE
Connect to the LS drain to sense RDS(on) drop to measure the output
current. This pin is also used by the adaptive-dead-time control circuitry to
monitor when HS MOSFET is OFF.
3 UGATE HS driver output. Connect directly to HS MOSFET gate.
LGATE. LS driver output. Connect directly to LS MOSFET gate.
OC. Over Current threshold set. During a short period of time following
VCC rising over UVLO threshold, a 10 µA current is sourced from this pin.
4 LGATE / OC Connect to GND with an ROCSET resistor greater than 5 kto program OC
Threshold. The resulting voltage at this pin is sampled and held internally
as the OC set point. Maximum programmable OC threshold is 0.55 V. A
voltage greater than 0.6 V activates an internal clamp and causes OC
threshold to be set at the maximum value.
All internal references, logic and drivers are connected to this pin.
5 GND
Connect to the PCB ground plane.
Device and drivers power supply.
6 VCC
Operative range from 5 V to 12 V. Filter with at least 1 nF MLCC to GND.
COMP. Error amplifier output. Connect with an RF - CF // CP to FB to
compensate the device control loop.
7 COMP / DIS
DIS. The device can be disabled by pushing this pin lower than 0.75 V(typ).
Setting free the pin, the device enables again.
Error amplifier inverting input.
8 FB Connect with a resistor RFB to the output regulated voltage. Output resistor
divider may be used to regulate voltages higher than the reference.
5/31

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L6728 arduino
L6728
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7 Soft-start
Soft-start
L6728 implements a soft-start to smoothly charge the output filter avoiding high in-rush
currents to be required from the input power supply. The device gradually increases the
internal reference from 0 V to 0.8 V in 4.5 ms (typ.), in closed loop regulation, linearly
charging the output capacitors to the final regulation voltage.
In the event of an over current triggering during soft start, the over current logic will override
the soft start sequence and will shut down the PWM logic and both the high side and low
side gates. This condition is latched, cycle VCC to recover.
The device begins soft start phase only when VCC power supply is above UVLO threshold
and over current threshold setting phase has been completed.
7.1 Low-side-less start up (LSLess)
In order to avoid any kind of negative undershoot and dangerous return from the load during
start-up, L6728 performs a special sequence in enabling LS driver to switch: during the soft-
start phase, the LS driver results disabled (LS = OFF) until the HS starts to switch. This
avoid the dangerous negative spike on the output voltage that can happen if starting over a
pre-biased output.
If the output voltage is pre-biased to a voltage higher than the final one, the HS would never
start to switch. In this case, at the end of soft start time, LS is enabled and discharge the
output to the final regulation value.
This particular feature of the device masks the LS turn-on only from the control loop point of
view: protections by-pass this turning ON the LS MOSFET in case of need.
Figure 4. LSLess start up (left) vs non-LSLess start up (right)
11/31

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