参数资料
型号: FAN7389MX
厂商: Fairchild Semiconductor
文件页数: 14/17页
文件大小: 0K
描述: IC GATE-DRIVE 3PH HALFBRDG 24SOP
标准包装: 1,000
配置: 3 相桥
输入类型: 非反相
延迟时间: 500ns
电流 - 峰: 350mA
配置数: 1
输出数: 3
高端电压 - 最大(自引导启动): 600V
电源电压: 10 V ~ 20 V
工作温度: -40°C ~ 125°C
安装类型: 表面贴装
封装/外壳: 24-SOIC(0.295",7.50mm 宽)
供应商设备封装: 24-SOP
包装: 带卷 (TR)
2.4 Fault-Out ( FO ) and Over-Current Protection
FAN7389 provides an integrated fault output ( FO ) and
an adjustable fault-clear timer (t FLTCLR ). There are two
situations that cause the gate driver to report a fault via
the FO pin. The first is an under-voltage condition of
low-side gate driver supply voltage (V DD ) and the
second is when the current-sense pin (CS) recognizes a
fault. Once the fault condition occurs, the FO pin is
internally pulled to COM, the fault-clear timer is
activated, and all outputs (HO1,2,3 and LO1,2,3) of the
gate driver are turned off. The fault output stays LOW
until the fault condition has been removed and the fault-
clear timer expires. Once the fault-clear timer expires,
the voltage on the FO pin returns to pull-up voltage.
The fault-clear time (t FLTCLR ) is determined by an internal
C RCIN × V RCIN , TH
current source (I RCIN =5 μ A) and an external C RCIN at the
RCIN pin, as shown in this equation:
t FLTCLR = [ s ] (1)
I RCIN
The R DSRCIN of the MOSFET is a characteristic
discharge curve with respect to the external capacitor
C RCIN . The time constant is defined by the external
capacitor C RCIN and the R DSRCIN of the MOSFET.
The output of current-sense comparator (CS_COMP)
passes a noise filter, which inhibits an over-current
shutdown caused by parasitic voltage spikes of V CS .
This corresponds to a voltage level at the comparator of
V CSTH+ - V CSHYS = 500 mV - 60 mV =440 mV,
where V CSHYS =60 mV is the hysteresis of the current
comparator (CS_COMP) as shown in Figure 41.
Figure 42. R CIN and Fault-Clear Waveform Definition
2.5 Recommended R CIN
Figure 43 shows timing of t CSOFF and t CSFO versus C RCIN .
It is strongly recommended that the capacitor on R CIN
pin should be less than 5 nF in order to properly protect
power devices in over-current situations.
1200
1100
1000
900
800
700
600
500
400
300
t CSOFF
t CSFO
200
0
1
2
3
4
5
6
7
8
9
10
11
12
C RCIN [nF]
Figure 43. Timing of t CSOFF and t CSFO vs. C RCIN
Figure 41. Over-Current Protection
Figure 42 shows the waveform definitions of RCIN, FO
and the low-side driver, which uses a soft turn-off
method when an under-voltage condition of the low-side
gate driver supply voltage (V DD ) or the current-sense pin
(CS) recognizes a fault. Once a fault condition occurs,
the FO pin is internally pulled to COM and all outputs
(HO1,2,3 and LO1,2,3) of the gate driver are turned off.
Low-side outputs decline linearly by the internal sink
current source (I SOFT =40 mA) for soft turn-off, as shown
in Figure 42.
? 2010 Fairchild Semiconductor Corporation
FAN7389 ? Rev. 1.0.3
14
3. Noise Filter
3.1 Input Noise Filter
Figure 44 shows the input noise filter method, which has
symmetry duration between the input signal (t INPUT ) and
the output signal (t OUTPUT ) and helps to reject noise
spikes and short pulses. This input filter is applied to the
HINx, LINx, and EN inputs. The upper pair of waveforms
(Example A) shows an input signal duration (t INPUT )
much longer than input filter time (t FLTIN ); it is
approximately the same duration between the input
signal time (t INPUT ) and the output signal time (t OUTPUT ).
The lower pair of waveforms (Example B) shows an
input signal time (t INPUT ) slightly longer than input filter
time (t FLTIN ); it is approximately the same duration
between input signal time (t INPUT ) and the output signal
time (t OUTPUT ).
www.fairchildsemi.com
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