ISL6266AHRZ Intersil, ISL6266AHRZ Datasheet - Page 20

IC CORE CTRLR 2PHASE 48-QFN

ISL6266AHRZ

Manufacturer Part Number
ISL6266AHRZ
Description
IC CORE CTRLR 2PHASE 48-QFN
Manufacturer
Intersil
Datasheet

Specifications of ISL6266AHRZ

Applications
Converter, Intel IMVP-6
Voltage - Input
5 ~ 25 V
Number Of Outputs
1
Voltage - Output
0.3 ~ 1.5 V
Operating Temperature
-10°C ~ 100°C
Mounting Type
Surface Mount
Package / Case
48-VQFN
Lead Free Status / RoHS Status
Lead free / RoHS Compliant

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Manufacturer:
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While transitioning to single-phase operation, the controller
smoothly transitions current from the idling-phase to the active-
phase, and detects the idling-phase zero-current condition.
During transitions into automatic-DCM or forced-CCM mode,
the timing is carefully adjusted to eliminate output voltage
excursions. When a phase is added, the current balance
between phases is quickly restored.
When commanded into 1-phase CCM operation according
to Table 2, both MOSFETs of Phase 2 will be off. The
controller will thus eliminate switching losses associated with
the unneeded channel.
When commanded to single-phase DCM mode, both
MOSFETs associated with Phase 2 are off, and the
ISL6266A turns off the lower MOSFET of Channel 1
whenever the Channel 1 current decays to zero. As load is
further reduced, the Phase 1 channel switching frequency
decreases to maintain high efficiency. The operation of the
inactive for 1-phase DCM and 1-phase CCM described
previously refers to the ISL6266A only. See “ISL6266
Features” on page 21 for information on the ISL6266.
Overcurrent fault
Way-Overcurrent fault
Overvoltage fault (1.7V)
Overvoltage fault (+200mV)
Undervoltage fault
(-300mV)
Current imbalance fault
(7.5mV)
Over-temperature fault
(NTC <1.18V)
FIGURE 35. DEEPER SLEEP TRANSITION SHOWING
V
OUT
AND V
SOFT
DPRSLPVR'S EFFECT ON EXIT SLEW RATE
DPRSLPVR
VID#
-2.5mV/µs
20
FAULT DURATION PRIOR
2.5mV/µs
TABLE 3. FAULT-PROTECTION SUMMARY OF ISL6266, ISL6266A
TO PROTECTION
Immediately
Immediately
120µs
<2µs
1ms
1ms
1ms
10mV/µs
ISL6266, ISL6266A
Low-side MOSFET on until V
three-state, PGOOD latched low (0V to 1.7V always)
PWM1, PWM2 three-state, PGOOD latched low
PWM1, PWM2 three-state, PGOOD latched low
VR_TT# goes low
PWM1, PWM2 three-state, PGOOD latched low
PWM1, PWM2 three-state, PGOOD latched low
PWM1, PWM2 three-state, PGOOD latched low
PROTECTION ACTIONS
The ISL6266A can be configured to operate as a single
phase regulator using the same layout as a two phase
design to accommodate lower power CPUs. To accomplish
this, the designer must connect ISEN1 and ISEN2 to
VCC_PRM (reference AN1376 for signal names). Channel 2
components can be removed as well as current balance
circuitry. The ISL6266A will power-up and regulate in DCM
or CCM based on the state of PSI#, as outlined in Table 2.
The OCP threshold will also change based on the state of
PSI#, as outlined in “Protection” on page 20.
Dynamic Operation
Figure 35 shows that the ISL6266A responds to changes in
VID command voltage by slewing to new voltages with a
dV/dt set by the SOFT capacitor and by the state of
DPRSLPVR. With C
the output voltage will move at ±2.8mV/µs for large changes
in voltage. For DPRSLPVR LOW, the large signal dV/dt will
be ±10mV/µs. As the output voltage approaches the VID
command value, the dV/dt moderates to prevent overshoot.
Keeping DPRSLPVR HIGH for voltage transitions into and
out of Deeper Sleep will result in low dV/dt output voltage
changes with resulting minimized audio noise. For fastest
recovery from Deeper Sleep to Active mode, holding
DPRSLPVR LOW results in maximum dV/dt. Therefore, the
ISL6266A is IMVP-6+ compliant for DPRSTP# and
DPRSLPVR logic.
Intersil's R
As a result, high-speed input voltage steps do not result in
significant output voltage perturbations. In response to load
current step increases, the ISL6266A will transiently raise
the switching frequency so that response time is decreased
and current is shared by two channels.
Protection
The ISL6266A provides overcurrent, overvoltage,
undervoltage protection and over-temperature protection, as
shown in Table 3.
3
CORE
Technology™ has intrinsic voltage feedforward.
<0.85V, then PWM
SOFT
= 15nF and DPRSLPVR HIGH,
VR_ON toggle or VDD toggle
VR_ON toggle or VDD toggle
VDD toggle
VR_ON toggle or VDD toggle
VR_ON toggle or VDD toggle
VR_ON toggle or VDD toggle
N/A
FAULT RESET
June 14, 2010
FN6398.3

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