参数资料
型号: ISL6327CRZ-T
厂商: Intersil
文件页数: 21/29页
文件大小: 0K
描述: IC REG CTRLR BUCK PWM 48-QFN
标准包装: 4,000
PWM 型: 控制器
输出数: 6
频率 - 最大: 1MHz
占空比: 25%
电源电压: 4.75 V ~ 5.25 V
降压:
升压:
回扫:
反相:
倍增器:
除法器:
Cuk:
隔离:
工作温度: 0°C ~ 70°C
封装/外壳: 48-VFQFN 裸露焊盘
包装: 带卷 (TR)
ISL6327
Thermal Monitoring (VR_HOT/VR_FAN)
There are two thermal signals to indicate the temperature
status of the voltage regulator: VR_HOT and VR_FAN. Both
VR_FAN and VR_HOT are open-drain outputs, and external
pull-up resistors are required. Those signals are valid only
after the controller is enabled.
VR_FAN signal indicates that the temperature of the voltage
regulator is high and more cooling airflow is needed.
VR_HOT signal can be used to inform the system that the
100
90
80
70
60
50
40
30
temperature of the voltage regulator is too high and the CPU
should reduce its power consumption. VR_HOT signal may
20
0
20
40
60
80
100
120
140
be tied to the CPU’s PROCHOT# signal.
The diagram of thermal monitoring function block is shown in
Figure 12. 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 TM pin. As the temperature of the power
stage increases, the resistance of the NTC will reduce,
resulting in the reduced voltage at TM pin. Figure 13 shows
the TM voltage over the temperature for a typical design with
a recommended 6.8k Ω NTC (P/N: NTHS0805N02N6801
from Vishay) and 1k Ω resistor RTM1. We recommend using
those resistors for the accurate temperature compensation.
TEMPERATURE (°C)
FIGURE 13. THE RATIO OF TM VOLTAGE TO NTC
TEMPERATURE WITH RECOMMENDED PARTS
TM
0.39*VCC
0.33*VCC
0.28*VCC
VR_FAN
There are two comparators with hysteresis to compare the
TM pin voltage to the fixed thresholds for VR_FAN and
VR_HOT
TEMPERATURE
VR_HOT signals respectively. VR_FAN signal is set to high
T1
T2
T3
when TM voltage is lower than 33% of VCC voltage, and is
pulled to GND when TM voltage increases to above 39% of
V CC voltage. VR_HOT is set to high when TM voltage goes
below 28% of VCC voltage, and is pulled to GND when TM
voltage goes back to above 33% of VCC voltage. Figure 14
shows the operation of those signals.
FIGURE 14. VR_HOT AND VR_FAN SIGNAL vs TM VOLTAGE
Based on the NTC temperature characteristics and the
desired threshold of VR_HOT signal, the pull-up resistor
RTM1 of TM pin is given by Equation 18:
R TM1 = 2.75xR NTC ( T3 )
(EQ. 18)
VCC
VR_FAN
R NTC(T3) is the NTC resistance at the VR_HOT threshold
temperature T3.
The NTC resistance at the set point T2 and release point T1 of
VR_FAN signal can be calculated using Equations 19 and 20:
R TM1
TM
0.33V CC
VR_HOT
R NTC ( T2 ) = 1.267xR NTC ( T3 )
R NTC ( T1 ) = 1.644xR NTC ( T3 )
(EQ. 19)
(EQ. 20)
o c
R NTC
0.28V CC
With the NTC resistance value obtained from Equations 19
and 20, the temperature value T2 and T1 can be found from
the NTC datasheet.
Temperature Compensation
FIGURE 12. BLOCK DIAGRAM OF THERMAL MONITORING
FUNCTION
21
ISL6327 supports inductor DCR sensing, or resistive
sensing techniques. The inductor DCR have the positive
temperature coefficient, which is about +0.38%/°C. Because
the voltage across inductor is sensed for the output current
information, the sensed current has the same positive
temperature coefficient as the inductor DCR.
FN9276.4
May 5, 2008
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