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SC1406TS Datasheet(PDF) 8 Page - Semtech Corporation

No. de pieza SC1406TS
Descripción Electrónicos  PORTABLE PENTIUM II & III POWER SUPPLY CONTROLLER
PDF  11 Pages
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Fabricante Electrónico  SEMTECH [Semtech Corporation]
Página de inicio  http://www.semtech.com
Logo SEMTECH - Semtech Corporation

SC1406TS Datasheet(HTML) 8 Page - Semtech Corporation

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SC1406
© 1999 SEMTECH CORP.
652 MITCHELL ROAD
NEWBURY PARK CA 91320
PORTABLE PENTIUM
® II & III
POWER SUPPLY CONTROLLER
PRELIMINARY - August 27, 1999
8
Pentium is a registered trademark of Intel Corporation
FUNCTIONAL DESCRIPTION
SUPPLY
The chip is optimized to operate from a 3.3V + 5% rail
but is also designed to work up to 6V maximum supply
voltage. If V
CC is out of the 3.3V + 5% voltage range,
the quiescent current will increase somewhat and
slight degradation of line regulation is expected.
UNDER VOLTAGE LOCK-OUT CIRCUIT
The under voltage lockout circuit consists of two com-
parators, the low battery and low V
CC (low supply volt-
age) comparators. The output of the comparator
gated with the Enable signal turns on or off the inter-
nal bias, enables or disables the CO output, and
initiates or resets the soft start timers.
POWER GOOD GENERATOR
If the chip is enabled but not in UVLO condition, and
the core voltage gets within +10% of the VID pro-
grammed value, then a high level Power Good signal
is generated on the PWRGD pin to trigger the CPU
power up sequence. If the chip is either disabled or
enabled in UVLO condition, then PWRGD stays low.
This condition is satisfied by the presence of an inter-
nal 100k
Ω pull-down resistor connected from PWRGD
to ground.
During soft start, PWRGD stays low independently
from the status of Vcore voltage. During this time,
PWRGD status is “don’t care”.
BAND GAP REFERENCE
A better than +1% precision band gap reference acts
as the internal reference voltage standard of the chip,
which all critical biasing voltages and currents are de-
rived from.
CORE CONVERTER CONTROLLER
Precision VID DAC Reference
The 5-bit digital to analog converter (DAC) serves as
the programmable reference source of the core com-
parator. Programming is accomplished by CMOS logic
level VID code applied to the DAC inputs. The VID
code vs. the DAC output is shown in the Output Volt-
age Table. The accuracy of the VID DAC is main-
tained on the same level as the band gap reference.
There is a 10µA pull-up current on each DAC input
while EN is high.
Core Comparator
This is an ultra-fast hysteretic comparator with a typi-
cal propagation delay of approximately 20ns at a
20mV overdrive. Its hysteresis is determined by the
resistance ratio of two external resistors, R
HYS and ROH,
and the high accuracy internal reference voltage, V
REF.
This chip can be used in standard hysteretic mode
controller configuration and in DSPS (Dynamic Set
Point Switching) hysteretic controller scheme.
In standard hysteretic controller configuration, the
core comparator compares the output voltage of the
core converter, V
CORE to the VID code programmed
DAC voltage, V
DAC.
V
CORE(t) = VDAC + VHYST(t)
The core voltage ramps up and down between the two
thresholds determined by the hysteresis of the com-
parator:
V
HCORE = VDAC + VHYST
V
LCORE = VDAC - VHYST
In DSPS hysteretic controller configuration, the
core comparator compares the core voltage, V
CORE,
not to the DAC voltage, V
DAC directly but rather to a
voltage less than the DAC voltage by a DSPS voltage,
V
DSPS.VCORE(t) = VDAC - VDSPS(t) + VHYST(t)
The DSPS voltage is a function of the load current. It
is generated from the current sense voltage, V
CS ,
developed across a sense resistor, R
CS, which is in-
serted in series with the main buck inductor and also
used for current sensing for the cycle-by-cycle current
limiting. The sense voltage is scaled up by the DSPS
gain, A
DSPS, which is set by the resistance ratio of two
external resistors, R
DAC and RCORE.
V
HYS =
R
OH
R
HYS
V
REF = 1.7V
V
DSPS(t) = ADSPS • VCS(t) = (1 +
) • R
CS • iCORE(t)
R
DAC
R
CORE



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