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LTC4232 bảng dữ liệu(PDF) 12 Page - Analog Devices

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LT4200
12
Rev. 0
For more information www.analog.com
APPLICATIONS INFORMATION
140mA GATE-to-OUT current. The voltage on the GATE is
regulated in order to limit the current to 57A. At this point,
a circuit breaker time delay starts by charging the external
timing capacitor with a 100µA pull-up current from the
TIMER pin. If the TIMER pin reaches its 1.235V threshold,
the internal switch turns off (with a 250µA current from
GATE to ground). Included in the Typical Performance
Characteristics curves is a graph of the safe operating
area for the MOSFET. From this graph, one can determine
the MOSFET’s maximum time in current limit for a given
output power.
Tying the TIMER pin to INTVCC will force the part to use
the internally generated (circuit breaker) delay of 0.5ms.
In either case the FLT# pin is pulled low to indicate an
overcurrent fault has turned off the pass MOSFET. For a
given circuit breaker time delay, the equation for setting
the timing capacitor’s value is given by Equation 3.
CT = tCB • 0.083[µF/ms]
(3)
After the switch is turned off, the TIMER pin begins dis-
charging the timing capacitor with a 2µA pull-down cur-
rent. When the TIMER pin reaches its 0.21V threshold, it
completes one timer cycle. After eight TIMER pin cycles
(ramping to 1.235V and then below 0.21V) plus the 48ms
debounce time, the switch is allowed to turn on again if
the overcurrent fault latch has been cleared. Bringing the
UV pin below 0.6V for a minimum of 1µs and then high
will clear the fault latch. If the TIMER pin is tied to INTVCC
then the switch is allowed to turn on again (after an inter-
nal 900ms cool down time plus the 48ms debounce time),
if the overcurrent fault latch is cleared.
Tying the FLT# pin to the UV pin allows the part to self-
clear the fault and turn the MOSFET on as soon as TIMER
pin has ramped below 0.21V for the eighth time followed
by the 48ms debounce time. In this auto-retry mode, the
LT4200 repeatedly tries to turn on after an overcurrent at
a period determined by the capacitor on the TIMER pin.
The auto retry mode also functions when the TIMER pin
is tied to INTVCC.
The waveform in Figure 4 shows how the output latches
off following a short-circuit. The current in the MOSFET
is 6.8A as the TIMER pin ramps up.
∆VGATE
10V/DIV
IOUT
5A/DIV
VOUT
10V/DIV
TIMER
2V/DIV
1ms/DIV
4200 F04
Figure 4. Short-Circuit Waveform
Current Limit Adjustment
The default value of the active current limit is 57A. The
current limit threshold can be adjusted lower by placing
a resistor between the ISET pin and ground. As shown
in the Functional Diagram the voltage at the ISET pin (via
the clamp circuit) sets the CS amplifier’s built-in offset
voltage. This offset voltage directly determines the active
current limit value. With the ISET pin open, the voltage
at the ISET pin is determined by a positive temperature
coefficient reference. This voltage is set to 0.618V which
corresponds to a 57A current limit at room temperature.
An external resistor RSET placed between the ISET pin
and ground forms a resistive divider with the internal 20k
RISET sourcing resistor. The divider acts to lower the volt-
age at the ISET pin and therefore lower the current limit
threshold. The overall current limit threshold precision
is reduced to ±15% when using a 20k resistor to halve
the threshold.
The RSET resistor for a desired current limit level can be
calculated using the Equation 4.
RSET =
20kΩ
57
ILIM
− 1
⎛
⎝⎜
⎞
⎠⎟
(4)
where:
RSET = value of the resistor in Ω
ILIM = Current Limit in A, 5.2 < ILIM < 57
Using a switch (connected to ground) in series with RSET
allows the active current limit to change only when the
switch is closed. This feature can be used to program a



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