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TNETV2501INPGF Datasheet(PDF) 131 Page - Texas Instruments |
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TNETV2501INPGF Datasheet(HTML) 131 Page - Texas Instruments |
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131 / 197 page ![]() Functional Overview 131 December 2002 − Revised November 2008 SPRS206K 15 11 10 9 8 Reserved RTOS DLOG BERR R, 0 R/W, 0 R/W, 0 R/W, 0 76 54 32 10 I2C TINT1 DMAC3 DMAC2 INT4 DMAC0 XINT0 INT1 R/W, 0 R/W, 0 R/W, 0 R/W, 0 R/W, 0 R/W, 0 R/W, 0 R/W, 0 LEGEND: R = Read, W = Write, n = value at reset Figure 3−52. IFR1, IER1, DBIFR1, and DBIER1 Registers Layout 3.16.2 Interrupt Timing The external interrupts (NMI and INT) are synchronized to the CPU by way of a two-flip-flop synchronizer. The interrupt inputs are sampled on falling edges of the CPU clock. A sequence on the interrupt pin of 1–0–0–0 on consecutive cycles is required for an interrupt to be detected. Therefore, the minimum low pulse duration on the external interrupts on the 5501 is three CPU clock periods. TIM0, TIM1, WDTOUT, and HPI.HAS can be configured to generate interrupts to the CPU. When they are used for this function, these pins will generate the interrupt associated with that module, i.e., TIM0 will generate TINT0, HPI.HAS will generate DSPINT, etc. Three SYSCLK1 clock cycles must be allowed to pass between consecutive interrupts generated using the HPI.HAS signal; otherwise, the last interrupt will be ignored (i.e., a sequence of 0−1−1−1−0 on consecutive cycles is required for consecutive interrupts). For more information on configuring TIM0, TIM1, WDTOUT, and HPI.HAS as interrupt pins, please refer to the TMS320VC5501/5502 DSP Timers Reference Guide (literature number SPRU618) for the timer pins and to the TMS320VC5501/5502 DSP Host Port Interface (HPI) Reference Guide (literature number SPRU620) for the HPI pin. 3.16.3 Interrupt Acknowledge The IACK pin is used to indicate the receipt of an interrupt and that the program counter is fetching the interrupt vector location designated on the address bus. As the CPU fetches the first word or the software vector, it generates the IACK signal, which clears the appropriate interrupt flag bit. The IACK signal will go low for a total of one CPU clock pulse and then go high again. For maskable interrupts, note that the CPU will not jump to an interrupt service routine if the appropriate interrupt enable bit is not set; consequently, the IACK pin will not go low when the interrupt is generated. |
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