ISL6244CR Intersil, ISL6244CR Datasheet - Page 12

IC CTRLR PWM 2-4-PHASE 32-QFN

ISL6244CR

Manufacturer Part Number
ISL6244CR
Description
IC CTRLR PWM 2-4-PHASE 32-QFN
Manufacturer
Intersil
Datasheet

Specifications of ISL6244CR

Pwm Type
Voltage/Current Mode
Number Of Outputs
4
Frequency - Max
4MHz
Duty Cycle
75%
Voltage - Supply
4.75 V ~ 5.25 V
Buck
Yes
Boost
No
Flyback
No
Inverting
No
Doubler
No
Divider
No
Cuk
No
Isolated
No
Operating Temperature
0°C ~ 70°C
Package / Case
32-VQFN Exposed Pad, 32-HVQFN, 32-SQFN, 32-DHVQFN
Frequency-max
4MHz
Lead Free Status / RoHS Status
Contains lead / RoHS non-compliant

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
ISL6244CRZ
Manufacturer:
HARRIS
Quantity:
24
Part Number:
ISL6244CRZ
Quantity:
8
Two considerations designers face are MOSFET selection
and inductor design. Both are significantly improved when
channel currents track at any load level. The need for
complex drive schemes for multiple MOSFETs, exotic
magnetic materials, and expensive heat sinks is avoided,
resulting in a cost-effective and easy to implement solution
relative to single-phase conversion. Channel-current
balance insures the thermal advantage of multi-phase
conversion is realized. Heat dissipation is spread over
multiple channels and a greater area than single phase
approaches.
Voltage Regulation
The output of the error amplifier, V
sawtooth waveform to modulate the pulse width of the PWM
signals. The PWM signals control the timing of the Intersil
MOSFET drivers and regulate the converter output to the
specified reference voltage. Three distinct inputs to the error
amplifier determine the voltage level of V
and external circuitry which control voltage regulation is
illustrated in Figure 17.
Most multi-phase controllers simply have the output voltage
fed back to the inverting input of the error amplifier through a
resistor. The ISL6244 features an internal differential
remote-sense amplifier in the feedback path. The amplifier
removes the voltage error encountered when measuring the
output voltage relative to the local controller ground
reference point, resulting in a more accurate means of
sensing output voltage. Connect the microprocessor sense
pins to the non-inverting input, VSEN, and inverting input,
RGND, of the remote-sense amplifier. The remote-sense
amplifier output, V
resistor to the inverting input of the error amplifier.
FIGURE 16. CHANNEL-1 PWM FUNCTION AND CURRENT-
V
COMP
NOTE: *Channels 3 and 4 are optional.
BALANCE ADJUSTMENT
+
I
ER
-
+
f(jω)
I
DIFF
1
-
, is then tied through an external
I
AVG
SAWTOOTH SIGNAL
12
÷
N
COMP
+
-
, is compared to the
COMP
Σ
. The internal
PWM1
I
I
I
4
3
2
*
*
ISL6244
A digital to analog converter (DAC) generates a reference
voltage based on the state of logic signals at pins VID4
through VID0. The DAC decodes a 5-bit logic signal (VID)
into one of the discrete voltages shown in Table 1. Each VID
input offers a 20µA pull-up to an internal 2.5V source for use
with open-drain outputs. External pull-up resistors or active-
high output stages can augment the pull-up current sources,
but a slight accuracy error can occur if they are pulled above
2.9V. The DAC-selected reference voltage is connected to
the non-inverting input of the error amplifier.
The ISL6244 features a second non-inverting input to the
error amplifier which allows the user to directly offset the
DAC reference voltage in the positive direction only. The
offset voltage is created by an internal current source which
feeds out the OFS pin into a user selected external resistor
to ground.
The resulting voltage across the resistor, V
divided down by five to create the offset voltage. This
method of offsetting the DAC voltage is more accurate than
external methods of level-shifting the FB pin.
REMOTE
FIGURE 17. OUTPUT-VOLTAGE AND LOAD-LINE
POINTS
SENSE
R
FB
R
V
EXTERNAL CIRCUIT
V
OFS
GND
+
-
OUT
DROOP
R
C
REGULATION
C
+
V
-
C
OFS
COMP
RGND
VDIFF
VSEN
IOUT
OFS
FB
ISL6244 INTERNAL CIRCUIT
I
REFERENCE
VOLTAGE
AVG
ERROR AMPLIFIER
DIFFERENTIAL
REMOTE-SENSE
AMPLIFIER
100µA
1/5
+
-
OFS
+
+
-
December 28, 2004
, is internally
OFFSET
VOLTAGE
V
COMP
FN9106.3

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