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AN1889 Datasheet(PDF) 5 Page - STMicroelectronics

Part # AN1889
Description  The need to choose a high value of the fly-back voltage
PDF  33 Pages
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Manufacturer  STMICROELECTRONICS [STMicroelectronics]
Direct Link  http://www.st.com
Logo STMICROELECTRONICS - STMicroelectronics

AN1889 Datasheet(HTML) 5 Page - STMicroelectronics

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AN1889
ESBT: theory and evolution
5/33
Being the negative base current equal to the collector current, the resulting turn-off time is
by far lower than any traditional power bipolar transistor and comparable with that of a high
voltage Power MOSFET. In fact, thanks to the floating emitter configuration, the high value of
the reverse base current results in a fast removal of the charges stored in the base,
achieving both reduced storage time and, most important, the structure results virtually free
of that tail current that characterizes all power bipolar based devices. It is worth to be noted
that the configuration gives an extra safety margin in reverse safe operating area, by
increasing the ruggedness versus the secondary breakdown, in fact since the emitter is
open the phenomenon of crowding current under the emitter finger (with possible creation of
hot spot) is practically absent. Cascade configuration can be implemented in a single four or
five pins package either as hybrid or as a monolithic single chip solution that combines a
vertical NPN Power transistor and a low voltage standard MOSFET. The choice of a suitable
value of thickness and resistivity for the collector drift layer coupled with the most
appropriate edge termination allows in principle to design devices with blocking voltage up
to 3.5 KV. The integration of a low voltage Power MOSFET inside the monolithic structure
had represented the main challenge in designing the ESBT. In particular the power
MOSFET has been integrated inside the emitter region of the Power bipolar stage realizing
a sort of a sandwich structure: thanks to the adopted solution the silicon area depends only
by the BJT size in spite the whole switch is formed by the series connection of the two
devices.
Figure 2.
ESBT switching operation
Figure 3.
ESBT cross section
VTH
VGATE
t
[µs]
[V]
VTH
VGATE
t [µs]
[V]
ESBT equivalent switching-on circuit
ESBT equivalent switching-off circuit



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