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L9780 数据表(PDF) 13 Page - STMicroelectronics

部件名 L9780
功能描述  Wide range air fuel sensor control interface
PDF  56 Pages
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制造商  STMICROELECTRONICS [STMicroelectronics]
网页  http://www.st.com
标志 STMICROELECTRONICS - STMicroelectronics

L9780 数据表(HTML) 13 Page - STMicroelectronics

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L9780
Main functionalities
55
4.4
Power on reset
A power on reset (POR) circuit is present into the device; this circuit monitors VCCA,
VCCCP, VCCD, GNDA, GNDCP, GNDD voltage levels. If one of the supplies falls below (or
one of the grounds exceeds) the defined POR threshold (defined in Table 10) all the outputs
are driven in inactive state, all the registers are set at their default state and the time state
machine and all the timers are fixed in the reset state. All these actions are applied after a
typical filter time of 15 μs (possible range is defined in Table 15). When the supply that has
caused POR condition reaches POR value plus hysteresis (or the ground decreases under
POR threshold) all the outputs are re-enabled.
During reset condition an internal switch connects the charge pump output voltage (CP pin)
to GNDA.
4.5
Pin INRC functionalities: INRC amplifier, clean currents, pull-
down current
Pin INRC in the application is connected to the sensor reference cell; the voltage generated
by this cell and applied on L9780 INRC pin is a function of the
parameter of the sensor and
gives information about how much the λ parameter is far from the target value. The final
purpose is to obtain λ =1, that in terms of electrical parameters means to have 450 mV as
output of the reference cell (and applied on INRC pin). In the device this pin is the input of
an amplifier (INRC amplifier) with gain selectable via SPI (using bit INRCGAIN). The output
of this amplifier is one of the multiplexed inputs of the A/D converter (in order to give the μP
the estimation of the λ parameter of the sensor via SPI) and is also internally connected by
a switch (INRC switch) to C1A or C1B pin and the external compensation network. The
selection of channel A or B is possible using bit COMPSEL. Electrical parameters of INRC
amplifier and INRC switches are specified in Table 10.
On INRC pin is present a diagnostic circuitry able to detect short to battery/ground
conditions and communicate it via SPI (bits STBS2 and STGRC of SPI output register);
short to battery detection is always enabled, while the short to ground detection is disabled
by default; it can be enabled using bit STGINRC. INRC short to battery/ground thresholds
typical values are 3.2 V and 200 mV (possible ranges are defined in Table 13). The
consequences of the detection of each one of these faults are described in Section 5.1 and
5.2.
The INRC pin is connected to the clean current generator: it is a pull-up current source used
to clean the air reference of the sensor; the generated current value is selectable via SPI
(using bits CCS[3..0]). Possible clean current values are specified in Table 10.
On the same pin a 500 μA pull-down current source is also available, used in order to
prevent the presence of false short to battery detection due to capacitive commutations. The
activation of this current is selectable via SPI (bit INRCPD); pull-down current range is
specified in Table 10.
A detailed bit description is present in Section 6.3 and 6.4.



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