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5.2
Enable functionality
The device features an enable functionality which allows powering up the device using the ENA pin. For
example, the ENA pin can be connected to the outside of the ECU or to a wake output of a CAN transceiver.
The ENA pin is level-sensitive with a duration-based deglitching. "High" indicates the enabled state. If the
voltage at the ENA pin is above the enable detection threshold
V
ENA,high
for a minimum time of
t
ENA,det
, then the
device considers the enable signal "high", see
. A signal above the detection threshold for a duration
shorter than
t
ENA,filt
is not a valid "high" signal.
If the voltage at the ENA pin is below
V
ENA,low
for a minimum time of
t
ENA,det
, then the device considers the
enable signal "low". A signal below the detection threshold for a duration shorter than
t
ENA,filt
is not a valid
"low" signal.
The device incorporates an enable event detection, where a "low" to "high" transition or a "high" to "low"
transition of the enable signal is considered an enable event. Upon detection of an enable event the device
generates an interrupt
.
. Depending on the device state, an enable event can trigger a state
State transitions and trigger signals
), for example to power up the device.
An enable event does not disable the device automatically. It is up to the microcontroller to react to the
generated interrupt and react accordingly.
stores the state of the enable signal, which the microcontroller can use to determine the
current state of the enable signal. This information can be used to differentiate between an enable or disable
condition on ECU level.
t
ENA
t
ENA,filt
Enable
Signal
t
ENA,det
Figure 4
Enable signal – enable event timing
5.2.1
ENA pin configurability
The functionality of the ENA pin can be configured by the microcontroller as edge-triggered or level-sensitive in
register
.
OPTIREG
™
PMIC TLF30681QVS01
Power management IC
Central functions
Datasheet
35
Rev. 1.0
2020-04-08