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L99VR02JTR Datasheet(PDF) 22 Page - STMicroelectronics

Part # L99VR02JTR
Description  Automotive linear voltage regulator with configurable output voltage having 500 mA current capability
PDF  38 Pages
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Manufacturer  STMICROELECTRONICS [STMicroelectronics]
Direct Link  http://www.st.com
Logo STMICROELECTRONICS - STMicroelectronics

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4.6
Autonomous watchdog
The watchdog input Wi monitor a supplied microcontroller. If pulses are missing, the RST output pin is set low.
The watchdog timeout can be set within a wide range with the external capacitor, Ctw. The watchdog circuit
discharges the capacitor Ctw, with the constant current ICWd. If the lower threshold Vwlth is reached, a watchdog
reset is generated. To avoid it, the microcontroller must generate a positive edge during the discharge of the
capacitor before the voltage reaches the threshold Vwlth. To calculate the sawtooth period “Twop”, taking care that
the microcontroller triggers the positive edge during the discharge phase of Ctw (Td). The following equations can
be used:
Vwℎtℎ−Vwltℎ ×Ctw=ICWd×Td
Vwℎtℎ−Vwltℎ ×Ctw=ICWc×Twol
Twop=Td+Twol
Every Wi positive edge switches the current source from discharging to charging. The same happens when the
lower threshold is reached. When the voltage reaches the upper threshold, Vwhth, the current switches from
charging to discharging. The result is a saw-tooth voltage at the watchdog timer capacitor Ctw. If a microcontroller
operates in low power mode, it is not able to generate any pulse to refresh the voltage regulator watchdog,
triggering so the microcontroller reset. In such a case, the watchdog functionality is automatically deactivated
anytime the microcontroller current consumption falls under the Iw_off threshold. This to avoid generating the
microcontroller reset. On the other hand, when the current consumption rises above the Iw_on threshold the
watchdog functionality is once again activated. Once the regulator is enabled for the first time, if IO < Iw_off, the
watchdog is not activated. While if IO > Iw_off, the watchdog is activated.
Figure 38. Watchdog timing diagram
Wi
VCW
IO
RST
Vwhth
Vwlth
Iw_off
Iw_on
Twol
Twop
Since the RST output pin is shared by the watchdog circuit and the output voltage monitoring circuit, for
applications where the watchdog is not needed, to prevent the watchdog from generating RST pulses without
anyhow losing the reset functionality of the VO monitoring, the Vcw pin has to be connected to VO. Vcw pin must
be always tied to ground by an external capacitor (Ctw) when watchdog function is used.
Note:
when the watchdog timer is used and the regulator recovers from a thermal shut-down event or recovers from
an output under-voltage event (including the recovery from output under-voltage event at the regulator output
turning on), the reset pin might be pulled back high with a delay longer than Trd, in the range between Trd
and Trd +Twol due to the watchdog that might affect the RST pin release. The watchdog will not affect the
RST pin release in the case where recovering from a thermal shut-down event or recovering from an output
under-voltage event (including the recovery from output under-voltage event at the regulator output turning on)
the IO drops below Iw_off before Trd. The output current IO consists in the load current, the current drawn from
the RST pin and the TW pin through the pull-down resistors connected to VO when the RST and the TW pins are
asserted low and the current needed to charge/discharge the output capacitor CO.
Note:
When the watchdog timer is used, in the case of an output under-voltage event not making the VO drop to
zero volt, since the watchdog will still be running during the output under-voltage condition, the first watchdog
timeout after the reset pin is released coming out of the output under-voltage event might occur before expected
(0 ≤ timeout ≤ Twop - Twol).
L99VR02J
Autonomous watchdog
DS14076 - Rev 1
page 22/38



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