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MJD44H11 データシートの表示(PDF) - Powerex

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MJD44H11
Powerex
Powerex Powerex
MJD44H11 Datasheet PDF : 7 Pages
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Powerex, Inc., 200 E. Hillis Street, Youngwood, Pennsylvania 15697-1800 (724) 925-7272
M57161L-01
Hybrid IC for IGBT Gate Driver
M57161L-01
some cases it may not exceed VSC before the tTRIP
delay expires. If this happens the driver will
erroneously indicate that a short circuit has occurred.
To avoid this condition the M57161L-01 has
provisions for extending the tTRIP delay by connecting
a capacitor (CTRIP) between pins 28 and 18. If tTRIP is
extended care must be exercised not to exceed the
short-circuit withstanding capability of the IGBT
module. Normally this will be satisfied for Powerex F-
Series IGBT modules as long as the total shut-down
time (td) does not exceed 10µs. The total shut down
time (td) consists of the tTRIP delay plus a propagation
delay of approximately 2.5µs. A curve showing the
relationship between td, tTRIP and CTRIP is shown in
Figure 3. The CTRIP capacitor must be selected so
that the gate voltage exceeds VSC before the short-
circuit detection time tTRIP expires.
Figure 3 CTRIP versus tTRIP and td
12
10
8
6
4
2
0
0
td
t(TRIP)
50
100
150
200
250
CTRIP (pF)
4. Undervoltage Lock-out
The M57161L-01 hybrid gate driver is
designed to operate from a single 15V control power
supply, VD. For proper operation this supply should
be between 14.3V and 15.7V. If the VD supply
becomes low, then the on-state drive voltage for the
Figure 4 Supply Voltage versus
On-State Gate Voltage
20
IGBT will also decrease. In order to prevent
15
dangerously low drive voltages the M57161L-01 has
10
an undervoltage protection circuit. If the output
voltage of the DC-DC converter at pin 19 (VCC)
becomes less than the data sheet specified trip level
(VCL), the output will turn off and a fault signal will be
generated. Figure 4 shows the effect of the UV lock-
5
0
10 11 12 13 14 15 16 17 18
out on the gate voltage as a function of input voltage.
VD (V)
In order for normal operation to resume, the VCC
voltage must exceed the undervoltage trip level (VCL). Operation of the undervoltage protection circuit may also
occur during power up and power down. The system controller's program should take this fault into account.
5. Application Circuit for M57161L-01
An example application circuit for the M57161L-01 hybrid gate driver is shown in Figure 5. The input circuit
between pins 5 and 6 consists of the built-in optocoupler’s LED in series with a 390resistor. This combination is
designed to provide approximately 10mA of drive current for the optocoupler when a control signal of 5V is
applied. If another control voltage is desired then an external current limiting resistor can be added. The value of
the external resistor can be calculated by assuming the forward voltage drop of the optocoupler’s photodiode is
2V. For example, if 15V drive is desired the required external resistor would be: (15V-2V)÷10mA - 390= 910.
The hybrid circuit operates from a single 15V control power supply (VD) that is connected at Pins 1,2 and 3,4.
The control power supply must be decoupled with a capacitor connected as close as possible to the driver’s pins.
This decoupling capacitor is included to provide a stable, well-filtered voltage for the primary side of the driver’s
built-in DC-DC converter. When selecting the input decoupling capacitor it is important to insure that it has a
5

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