ISL6326BIRZ-T Intersil, ISL6326BIRZ-T Datasheet - Page 22

IC CTRLR PWM 4PHASE BUCK 40-QFN

ISL6326BIRZ-T

Manufacturer Part Number
ISL6326BIRZ-T
Description
IC CTRLR PWM 4PHASE BUCK 40-QFN
Manufacturer
Intersil
Datasheet

Specifications of ISL6326BIRZ-T

Pwm Type
Voltage Mode
Number Of Outputs
1
Frequency - Max
275kHz
Duty Cycle
25%
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
-40°C ~ 85°C
Package / Case
40-VFQFN, 40-VFQFPN
Frequency-max
275kHz
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
The diagram of thermal monitoring function block is shown in
Figure 11. One NTC resistor should be placed close to the
power stage of the voltage regulator to sense the operational
temperature, and one pull-up resistor is needed to form the
voltage divider for the TM pin. As the temperature of the
power stage increases, the resistance of the NTC will
reduce, resulting in the reduced voltage at the TM pin.
Figure 12 shows the TM voltage over the temperature for a
typical design with a recommended 6.8kΩ NTC (P/N:
NTHS0805N02N6801 from Vishay) and 1kΩ resistor RTM1.
We recommend using those resistors for the accurate
temperature compensation.
There are two comparators with hysteresis to compare the
TM pin voltage to the fixed thresholds for VR_FAN and
VR_HOT signals respectively. The VR_FAN signal is set to
high when the TM voltage is lower than 33% of VCC voltage,
and is pulled to GND when the TM voltage increases to
above 39% of VCC voltage. The VR_FAN signal is set to
high when the TM voltage goes below 28% of VCC voltage,
and is pulled to GND when the TM voltage goes back to
above 33% of VCC voltage. Figure 13 shows the operation
of those signals.
FIGURE 11. BLOCK DIAGRAM OF THERMAL MONITORING
o
c
VCC
R
R
TM
TM1
NTC
FUNCTION
0.33V
0.28V
CC
CC
22
VR_FAN
VR_HOT
ISL6326B
Based on the NTC temperature characteristics and the
desired threshold of the VR_HOT signal, the pull-up resistor
RTM1 of TM pin is given by:
R
temperature T3.
The NTC resistance at the set point T2 and release point T1
of VR_FAN signal can be calculated as:
With the NTC resistance value obtained from Equations 19
and 20, the temperature value T2 and T1 can be found from
the NTC datasheet.
R
R
R
FIGURE 13. VR_HOT AND VR_FAN SIGNAL vs TM VOLTAGE
NTC(T3)
TM1
NTC T2
NTC T1
FIGURE 12. THE RATIO OF TM VOLTAGE TO NTC
VR_HOT
VR_FAN
0.39*Vcc
0.33*Vcc
0.28*Vcc
100%
90%
80%
70%
60%
50%
40%
30%
20%
(
(
TM
=
2.75xR
)
)
is the NTC resistance at the VR_HOT threshold
0
=
=
1.267xR
1.644xR
TEMPERATURE WITH RECOMMENDED PARTS
NTC T3
20
(
NTC T3
NTC T3
V
40
)
TM
Tem perature (
(
(
/ V
)
)
CC
60
T1
vs. Tem perature
T2
80
o
T3
C)
100
Temperature
120
April 21, 2006
(EQ. 18)
(EQ. 19)
(EQ. 20)
FN9286.0
140

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