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ST8024 Просмотр технического описания (PDF) - STMicroelectronics

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ST8024
ST-Microelectronics
STMicroelectronics 
ST8024 Datasheet PDF : 31 Pages
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ST8024
Figure 4. Voltage supervisor
Functional description
5.2.2
5.2.3
5.3
With an external divider on pin PORADJ
If an external resistor bridge is connected to pin PORADJ (R1 and R2 in Figure 1), then the
following occurs:
– The internal threshold voltage Vth2 is overridden by the external voltage and by the
hysteresis, therefore:
Vth2(ext)(rise) = (1 + R1/R2) x (Vbridge + Vhys(ext)/2)
Vth2(ext)(fall) = (1 + R1/R2) x (Vbridge - Vhys(ext)/2)
where Vbridge = 1.25 V typ. and Vhys(ext) = 60 mV typ.
– The reset pulse width tW is doubled to approximately 16 ms.
Input PORADJ is biased internally with a pull-down current source of 4 µA which is removed
when the voltage on pin PORADJ exceeds 1 V.
This ensures that after detection of the external bridge by the IC during power-on, the input
current on pin PORADJ does not cause inaccuracy of the bridge voltage.
The minimum threshold voltage should be higher than 2 V. The maximum threshold voltage
may be up to VDD.
Application examples
The voltage supervisor is used as power-on reset and as supply dropout detection during a
card session. Supply dropout detection is to ensure that a proper deactivation sequence is
followed before the voltage is too low. For the internal voltage supervisor to function, the
system microcontroller should operate down to 2.35 V to ensure a proper deactivation
sequence. If this is not possible, external resistor values can be chosen to overcome the
problem.
Clock circuitry
The card clock signal (CLK) is derived from a clock signal input to pin XTAL1 or from a
crystal operating at up to 26 MHz connected between pins XTAL1 and XTAL2.
The clock frequency can be fXTAL, 1/2 x fXTAL, 1/4 x fXTAL or 1/8 x fXTAL. Frequency selection
is made via inputs CLKDIV1 and CLKDIV2 (see Table 21).
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