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MPC8544E датащи(PDF) 15 Page - Freescale Semiconductor, Inc |
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MPC8544E датащи(HTML) 15 Page - Freescale Semiconductor, Inc |
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15 / 117 page ![]() MPC8544E PowerQUICC III Integrated Processor Hardware Specifications, Rev. 5 Freescale Semiconductor 15 Input Clocks 4.2 Real-Time Clock Timing The RTC input is sampled by the platform clock (CCB clock). The output of the sampling latch is then used as an input to the counters of the PIC and the TimeBase unit of the e500. There is no jitter specification. The minimum pulse width of the RTC signal should be greater than 2 × the period of the CCB clock. That is, minimum clock high time is 2 × t CCB, and minimum clock low time is 2 × tCCB. There is no minimum RTC frequency; RTC may be grounded if not needed. 4.3 eTSEC Gigabit Reference Clock Timing Table 7 provides the eTSEC gigabit reference clocks (EC_GTX_CLK125) AC timing specifications for the MPC8544E. 4.4 Platform to FIFO Restrictions Please note the following FIFO maximum speed restrictions based on platform speed. For FIFO GMII mode: FIFO TX/RX clock frequency ≤ platform clock frequency ÷ 4.2 For example, if the platform frequency is 533 MHz, the FIFO Tx/Rx clock frequency should be no more than 127 MHz. For FIFO encoded mode: FIFO TX/RX clock frequency ≤ platform clock frequency ÷ 3.2 For example, if the platform frequency is 533 MHz, the FIFO Tx/Rx clock frequency should be no more than 167 MHz. Table 7. EC_GTX_CLK125 AC Timing Specifications Parameter/Condition Symbol Min Typ Max Unit Notes EC_GTX_CLK125 frequency fG125 —125 — MHz — EC_GTX_CLK125 cycle time tG125 —8— ns — EC_GTX_CLK rise and fall time LVDD, TVDD = 2.5 V LVDD, TVDD = 3.3 V tG125R/tG125F —— 0.75 1.0 ns 1 EC_GTX_CLK125 duty cycle GMII, TBI 1000Base-T for RGMII, RTBI tG125H/tG125 45 47 — 55 53 %2 Notes: 1. Rise and fall times for EC_GTX_CLK125 are measured from 0.5 and 2.0 V for L/TVDD = 2.5 V, and from 0.6 and 2.7 V for L/TVDD = 3.3 V. 2. EC_GTX_CLK125 is used to generate the GTX clock for the eTSEC transmitter with 2% degradation. EC_GTX_CLK125 duty cycle can be loosened from 47%/53% as long as the PHY device can tolerate the duty cycle generated by the eTSEC GTX_CLK. See Section 8.7.4, “RGMII and RTBI AC Timing Specifications,” for duty cycle for 10Base-T and 100Base-T reference clock. |
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