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L6375D 数据表(PDF) 9 Page - STMicroelectronics

部件名 L6375D
功能描述  0.5A high-side driver industrial intelligent power switch
PDF  16 Pages
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制造商  STMICROELECTRONICS [STMicroelectronics]
网页  http://www.st.com
标志 STMICROELECTRONICS - STMicroelectronics

L6375D 数据表(HTML) 9 Page - STMicroelectronics

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L6375D
Electrical specifications
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2.8
Over current operation
In order to implement a short circuit protection the output power MOS is driven in linear
mode to limit the output current to the Isc (1.1A typical value). This condition (current limited
to the Isc value) lasts for a Ton time interval, that can be set by means of a capacitor (Cdon)
connected to the ON DELAY pin according to the following formula:
Ton = 1.28 µsec/pF
for
50pF< Cdon < 2nF
After the Ton interval has expired the output power MOS is switched off for the Toff time
interval with:
Toff = 64 ·Ton.
When also the Toff interval has expired, the out-put power MOS is switched ON. At this point
in time two conditions may occur
a)
The overloadis still present, and then the output power MOS is again driven in
linear mode (limiting the output current to ISC) for another TON, starting a new
cycle, or
b)
the over load the overload condition is removed, and the output power MOS is no
longer driven in linear mode. All these occurrences are presented on the DIAG2
pin (see fig 2).
We call this unique feature Non Dissipative Short Circuit Protection and it ensures a very
safe operation even in permanent overload conditions. Note that choosing the most
appropriate value for the Ton interval (i.e. the value of the Cdon capacitor) a delay (the Ton
itself) will prevent that a misleading Short Circuit information is presented on the DIAG2
output, when driving capacitive loads (that acts like short circuit in the very beginning)
or Incandescent Lamp (a cold filament has a very low resistive value). The Non Dissipative
Short Circuit Protection can be disabled (keeping Ton = 0 but with the output current still
limited to Isc, and Diagnostic disabled) simply shorting to ground the the ON DELAY pin.
Figure 4.
Non dissipative short circuit protection operation



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