参数资料
型号: ISL6322GCRZ
厂商: Intersil
文件页数: 25/39页
文件大小: 0K
描述: IC CTRLR PWM BUCK 48-QFN
标准包装: 43
应用: 控制器,Intel VR10、VR11、AMD CPU
输入电压: 5 V ~ 12 V
输出数: 1
输出电压: 0.38 V ~ 1.99 V
工作温度: 0°C ~ 70°C
安装类型: 表面贴装
封装/外壳: 48-VFQFN 裸露焊盘
供应商设备封装: 48-QFN(7x7)
包装: 管件
产品目录页面: 1248 (CN2011-ZH PDF)
ISL6322G
? 120 ? 10
? R ISEN ? N ? ? R 1 + R 2 ?
I OCP = ? ---------------------------------------------------------- ? ? ? --------------------- ?
? ? ? ?
R 2
MOSFET should have a gate threshold well below the
maximum voltage rating of the load/microprocessor.
In the event that during normal operation the PVCC or VCC
voltage falls back below the POR threshold, the pre-POR
I OCP > I OCP , min
– 6
DCR
(EQ. 19)
overvoltage protection circuitry reactivates to protect from
any more pre-POR overvoltage events.
Open Sense Line Prevention
In the case that either of the remote sense lines, VSEN or
GND, become open, the ISL6322G is designed to prevent
the controller from regulating. This is accomplished by
means of a small 5μA pull-up current on VSEN, and a pull-
down current on RGND. If the sense lines are opened at any
time, the voltage difference between VSEN and RGND will
increase until an overvoltage event occurs, at which point
overvoltage protection activates and the controller stops
regulating. The ISL6322G will be latched off and cannot be
restarted until the controller is reset.
If an overcurrent trip level lower then I OCP,min is desired,
then a second method for setting the OCP trip level is
available.
The second method for detecting overcurrent events
continuously compares the voltage on the IOUT pin, V IOUT ,
to the overcurrent protection voltage, V OCP , as shown in
Figure 14. The total channel sense current flows out the
IOUT pin and through R IOUT , creating the IOUT pin voltage
which is proportional to the output current. When the IOUT
pin voltage exceeds the V OCP voltage of 2.0V, the
overcurrent protection circuitry activates. Since the IOUT pin
voltage is proportional to the output current, the overcurrent
trip level, I OCP , can be set by selecting the proper value for
DCR ? R IOUT
Overcurrent Protection
The ISL6322G takes advantage of the proportionality
between the load current and the total channel sense
R IOUT , as shown in Equation 20.
V OCP ? R ISEN
I OCP = --------------------------------------
I OCP < I OCP , min
(EQ. 20)
current, I SEN1 +I SEN2 , to detect an overcurrent condition.
Two different methods of detecting overcurrent events are
available on the ISL6322G. The first method continually
compares the average sense current with an OCP reference
current as shown in Figure 14. The value of the OCP
reference current is dependant upon the number of channels
operating. If the controller is operating in 2-phase mode the
OCP reference current is 240μA. If the controller is operating
in single phase mode the OCP reference current is 120μA.
This ensures that the OCP trip current scales properly with
the number of channels firing. Once the total sense current
exceeds the OCP reference current, a comparator triggers
the converter to begin overcurrent protection procedures.
Once the output current exceeds the overcurrent trip level,
V IOUT will exceed V OCP and a comparator will trigger the
converter to begin overcurrent protection procedures.
At the beginning of overcurrent shutdown, the controller sets
all of the UGATE and LGATE signals low and forces PGOOD
low. This turns off all of the upper and lower MOSFETs. The
system remains in this state for a fixed period of 12ms. If the
controller is still enabled at the end of this wait period, it will
attempt a soft-start. If the fault remains, the trip-retry cycles
will continue indefinitely until either the controller is disabled
or the fault is cleared. Note that the energy delivered during
trip-retry cycling is much less than during full-load operation,
so there is no thermal hazard.
This first method for detecting overcurrent events limits the
minimum overcurrent trip threshold because of the fact the
ISL6322G uses set internal R ISEN current sense resistors.
For this first method the minimum overcurrent trip threshold
is dictated by the DCR of the inductors and the number of
active channels. To calculate the minimum overcurrent trip
level, I OCP,min , use Equation 18, where N is the number of
active channels, DCR is the individual inductor ’s DCR, and
R ISEN is the 300 Ω internal current sense resistor.
0A
OUTPUT CURRENT, 50A/DIV
120 ? 10
? R ISEN ? N
I OCP , min = ----------------------------------------------------------
– 6
DCR
(EQ. 18)
OUTPUT VOLTAGE,
500mV/DIV
If the desired overcurrent trip level is greater than the
minimum overcurrent trip level, I OCP,min , then the resistor
divider R-C circuit around the inductor shown in Figure 15
should be used to set the desired trip level.
25
0V
3ms/DIV
FIGURE 15. OVERCURRENT BEHAVIOR IN HICCUP MODE
Individual Channel Overcurrent Limiting
The ISL6322G has the ability to limit the current in each
individual channel without shutting down the entire regulator.
FN6715.0
May 22, 2008
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