参数资料
型号: ISL9440BIRZ-T
厂商: Intersil
文件页数: 19/24页
文件大小: 0K
描述: IC REG QD BCK/LINEAR SYNC 32-QFN
产品培训模块: Solutions for Industrial Control Applications
标准包装: 6,000
拓扑: 降压(降压)同步(3),线性(LDO)(1)
功能: 任何功能
输出数: 4
频率 - 开关: 300kHz
电压/电流 - 输出 1: 控制器
电压/电流 - 输出 2: 控制器
电压/电流 - 输出 3: 控制器
带 LED 驱动器:
带监控器:
带序列发生器:
电源电压: 4.5 V ~ 24 V
工作温度: -40°C ~ 85°C
安装类型: 表面贴装
封装/外壳: 32-VFQFN 裸露焊盘
供应商设备封装: *
包装: 带卷 (TR)
ISL9440B, ISL9440C
Where Q GATE is the amount of gate charge required to fully
charge the gate of the upper MOSFET. The Δ V BOOT term is
defined as the allowable droop in the rail of the upper drive.
As an example, suppose an upper MOSFET has a gate
charge (QGATE) of 25nC at 5V and also assume the droop
in the drive voltage over a PWM cycle is 200mV. One will
find that a bootstrap capacitance of at least 0.125μF is
required. The next larger standard value capacitance is
0.22μF. A good quality ceramic capacitor is recommended.
Protection Circuits
The converter output is monitored and protected against
overload, short circuit and undervoltage conditions. A
sustained overload on the output sets the PGOOD low and
initiates hiccup mode.
Undervoltage Lockout
The ISL9440B and ISL9440C include VCC UVLO protection
that will keep the devices in a reset condition until a proper
operating voltage is applied and that will also shut down the
ISL9440B and ISL9440C if the operating voltage drops
below a pre-defined value. All controllers are disabled when
UVLO is asserted. When UVLO is asserted, PGOOD will be
valid and de-asserted.
Overcurrent Protection
All the PWM controllers use the lower MOSFETs
ON-resistance, r DS(ON) , to monitor the current in the
converter. The sensed voltage drop is compared with a
threshold set by a resistor connected from the OCSETx pin
to ground.
during soft-start so care must be taken to ensure that the
peak inductor current does not exceed the overcurrent
threshold during soft-start.
Because of the nature of this current sensing technique, and
to accommodate a wide range of r DS(ON) variations, the
value of the overcurrent threshold should represent an
overload current about 150% to 180% of the maximum
operating current. If more accurate current protection is
desired, place a current sense resistor in series with the
lower MOSFET source and connect R CS to the source of the
MOSFET.
Overvoltage Protection
All switching controllers within the ISL9440B and ISL9440C
have fixed overvoltage set points. The overvoltage set point
is set at 118% of the nominal output voltage, the output
voltage set by the feedback resistors. In the case of an
overvoltage event, the IC will attempt to bring the output
voltage back into regulation by keeping the upper MOSFET
turned off and modulating the lower MOSFET for 2
consecutive PWM cycles. If the overvoltage condition has
not been corrected in 2 cycles and the output voltage is
above 118% of the nominal output voltage, the ISL9440B
and ISL9440C will turn off both the upper MOSFET and the
lower MOSFET. The ISL9440B and ISL9440C will enter
hiccup mode until the output voltage return to 110% of the
nominal output voltage.
Over-Temperature Protection
( I OC ) ( r DS ( ON ) )
( 7 ) ( R CS )
R OCSET = -------------------------------------------
(EQ. 6)
The IC incorporates an over-temperature protection circuit
that shuts the IC down when a die temperature of +150°C
is reached. Normal operation resumes when the die
Where, I OC is the desired overcurrent protection threshold,
and R CS is a value of the current sense resistor connected to
the ISENx pin.
When an overcurrent is detected, the upper MOSFET
remains off and the lower MOSFET remains on until the
current drops below I OC . As a result, the converter skips
PWM pulses. When the overload condition is removed, the
converter will resume normal operation. This action will
protect the converter against overcurrent conditions at
temporary overload or during high di/dt load transient. The
converter remains active and can return to normal operation
immediately after the overcurrent is removed.
When the overload condition persists or at output short
circuit conditions, the overcurrent condition lasts for more
than 2 consecutive cycles. When the overcurrent is detected
for 2 consecutive clock cycles, the IC enters a hiccup mode
by turning off the gate drivers and entering into soft-start.
The IC will cycle 5 times through soft-start before trying to
restart. The IC will continue to cycle through soft-start until
the overcurrent condition is removed. Hiccup mode is active
19
temperatures drops below +130°C through the initiation of
a full soft-start cycle.
Feedback Loop Compensation
To reduce the number of external components and to simplify
the process of determining compensation components, all
PWM controllers have internally compensated error
amplifiers. To make internal compensation possible several
design measures were taken.
First, the ramp signal applied to the PWM comparator is
proportional to the input voltage provided via the VIN pin.
This keeps the modulator gain constant with variation in the
input voltage. Second, the load current proportional signal is
derived from the voltage drop across the lower MOSFET
during the PWM time interval and is subtracted from the
amplified error signal on the comparator input. This creates
an internal current control loop. The resistor connected to
the ISEN pin sets the gain in the current feedback loop.
Equation 7 estimates the required value of the current sense
FN6799.3
June 24, 2010
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