参数资料
型号: LT1640HCS8#PBF
厂商: Linear Technology
文件页数: 9/16页
文件大小: 192K
描述: IC CONTRLR HOTSWAP NEGVOLT 8SOIC
标准包装: 100
类型: 热交换控制器
应用: 通用
内部开关:
电源电压: -10 V ~ -80 V
工作温度: 0°C ~ 70°C
安装类型: 表面贴装
封装/外壳: 8-SOIC(0.154",3.90mm 宽)
供应商设备封装: 8-SOIC
包装: 管件
9
LT1640L/LT1640H
1640lhfb
APPLICATIONS INFORMATION
U
U
U
V
EE
V
DD
LT1640L
PWRGD
SENSE
C1
150nF
25V
C
L
100礔
100V
Q1
IRF530
R2
10&
5%
R3
18k
5%
C2
3.3nF
100V
R4
562k
1%
R5
9.09k
1%
R6
10k
1%
R1
0.02&
5%
4
3
2
OV = 71V
GND
48V
UV = 37V
OV
UV
5
C3
6
8
1
GATE
DRAIN
1640 F08
+
7
1N4148
GND
(SHORT PIN)
*
* DIODES INC. SMAT70A
R7
4
3
2
1
Figure 8. Extending the Short-Circuit Protection Delay
Figure 7. Start-Up Into a Short Circuit
1640 F07
Electronic Circuit Breaker
The LT1640 features an electronic circuit breaker function
that protects against short circuits or excessive supply
currents. By placing a sense resistor between the V
EE
 and
SENSE pin, the circuit breaker will be tripped whenever the
voltage across the sense resistor is greater than 50mV for
more than 3祍 as shown in Figure 7.
Note that the circuit breaker threshold should be set
sufficiently high to account for the sum of the load current
and the inrush current. If the load current can be controlled
by the PWRGD/PWRGD pin (as in Figure 6a), the threshold
can be set lower, since it will never need to accommodate
inrush current and load current simultaneously.
When the circuit breaker trips, the GATE pin is immediately
pulled to V
EE
 and the external N-channel turns off. The
GATE pin will remain low until the circuit breaker is reset
by pulling UV low, then high or cycling power to the part.
If more than 3祍 deglitching time is needed to reject
current noise, an external resistor and capacitor can be
added to the sense circuit as shown in Figure 8. R7 and C3
act as a lowpass filter that will slow down the SENSE pin
voltage from rising too fast. Since the SENSE pin will
source current, typically 20礎, there will be a voltage drop
on R7. This voltage will be counted into the circuit breaker
trip voltage just as the voltage across the sense resistor.
A small resistor is recommended for R7. A 100& for R7
will cause a 2mV error. The following equation can be used
to estimate the delay time at the SENSE pin:
t    R  C  In
V t    V t
V   V t
O
i
O
=
?/DIV>
?/DIV>
?/DIV>
?/DIV>
?/DIV>
?/DIV>
  "   "

( )  (   )
  (   )
1
Where V(t) is the circuit breaker trip voltage, typically
50mV. V(t
O
) is the voltage drop across the sense resistor
before the short or over current condition occurs. V
i
 is the
voltage across the sense resistor when the short current
or over current is applied on it.
Example: A system has a 1A current load and a 0.02&
sense resistor is used. An extended delay circuit needs to
be designed for a 50祍 delay time after the load jumps to
5A. In this case:
V(t) = 50mV
V(t
O
) = 20mV
V
i
 = 5A " 0.02& = 100mV
If R7 = 100&, then C3 = 1礔.
INRUSH
CURRENT
2A/DIV
GATE  V
EE
4V/DIV
V
EE
50V/DIV
4ms/DIV
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