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AS8525 Datasheet(PDF) 20 Page - ams AG

Part # AS8525
Description  LIN Transceiver with Voltage Regulators, Programmable Gain High Side Amplifier, and Voltage Attenuator
PDF  38 Pages
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Manufacturer  AMSCO [ams AG]
Direct Link  http://www.ams.com
Logo AMSCO - ams AG

AS8525 Datasheet(HTML) 20 Page - ams AG

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Revision 2.3
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AS8525
Datasheet - Detailed Descr i p ti on
7.8 VCC Under-Voltage Reset
When VCC drops below VUVR_ON, the RESET_VCC_N switches back to low level. This event generates a reset output. The reset output is
released again only a reset period (tRes) later after VCC rises above VUVR_OFF. If the time difference between the VCC falling below VUVR_ON
and rising above VUVR_OFF is less than trr, there will be no reset output. The reset output is affected in the conditions like over-temperature
shutdown and temporary shutdown only through VCC under-voltage.
VCC under-voltage reset thresholds (VUVR_ON and VUVR_OFF) can be chosen by OTP.
7.9 Window Watchdog (WWD)
The Window Watchdog ensures that the Microcontroller is properly functioning in the normal mode of the device. The Watchdog is started after a
reset and the Microcontroller needs to send a trigger in the window of WD_TSV (service time). If the trigger occurs early, in the period WD_TCL,
or after WD_TSV, a reset output is generated.
The Microcontroller can access the trigger bit for the watchdog through SPI. The WWD can be enabled and the window times can be
programmed through OTP bits.
Figure 7. Window Watchdog Functionality
7.10 Timeout Watchdog (TWD)
The Timeout Watchdog ensures that the Microcontroller is in proper functional state in the device standby mode. The Watchdog timer will be
started upon a rising edge on INT and will generate a reset output if the Microcontroller doesn’t send a trigger before the timeout.
The Microcontroller can access the trigger bit for the watchdog through SPI. The TWD can be enabled by OTP and the timeout interval can be
programmed through SPI.
Period
Non-Service time (WD_TCL)
Service time (WD_TSV)
Trigger
restart
period
Trigger
via SPI
Last trigger
Earliest point for
correct trigger
(No RESET)
50 %
100 %
Wrong trigger
(RESET generation)
Correct trigger
(No RESET)
Latest point for
correct trigger
(No RESET)
Wrong trigger
(RESET generation)



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