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AS8650 Folha de dados(PDF) 26 Page - ams AG |
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AS8650 Folha de dados(HTML) 26 Page - ams AG |
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26 / 46 page ![]() www.austriamicrosystems.com/AS8650 Revision 1.0 26 - 46 AS8650 Datasheet - Detailed Descr i p ti on 7.14.3 Time-out Watchdog Behavior Whenever the AS8650 operates in Standby mode, active watchdog operates in Time-out watchdog mode. The watchdog has to be triggered within the actual programmed period time Twd_tout_period. The device provides 8 different possible periods for programming through digital interface. If the microcontroller fails to trigger the watchdog within trigger range then the system reset is generated on RESET pin and watchdog enters into Start-up watchdog mode. The time-out watchdog function is illustrated in Figure 13. Figure 13. Time-out Watchdog Triggering 7.15 Interrupt Generation The pin INTN is an interrupt output. The INTN is forced LOW if one bit in the Interrupt register is set. The Interrupt register bits are cleared when the microcontroller clears the corresponding interrupt source register. The Interrupt register will also be cleared during a system reset (RESET LOW). As there are microcontrollers with level sensitive or edge sensitive interrupt port, pin INTN will be HIGH for at least TINTN after any of the interrupt source register is cleared. The Interrupt source register is cleared through write operation by overwriting 1 in to respective set bits position. Without further interrupts within TINTN pin INTN stays HIGH, otherwise it will revert to LOW again. The Interrupt register indicates the cause of an interrupt event. There are two levels of interrupt registers. First level register indicates the source region of interrupt and the second level register indicates the exact source of interrupt. With this structured interrupt, the microcontroller can trace source of interrupt by two read operations instead of polling for source of interrupt and also interrupts can be prioritized by microcontroller. The interrupt register structure is given in Figure 14. The register is cleared through digital interface write operation and upon any reset event. The hardware ensures no interrupt event is lost in case there is a new interrupt forced while reading the register. TRIGGER WINDOW NON-TRIGGER WINDOW Twd_no_trig Twd_trig Twwd_period Trigger restarts period 50% 100% Last Trigger Point Earliest Trigger Point Latest Trigger Point TRIGGER WINDOW NON-TRIGGER WINDOW 50% 100% Earliest Trigger Point Latest Trigger Point Trigger restarts period ( with new period if desired) New Period SPI TRIGGER SPI TRIGGER Unwanted Trigger (RESET generated, watchdog enter Start-up mode) |
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