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MPC8540CPX667JC Datenblatt(PDF) 14 Page - Freescale Semiconductor, Inc |
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MPC8540CPX667JC Datenblatt(HTML) 14 Page - Freescale Semiconductor, Inc |
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14 / 104 page ![]() MPC8540 Integrated Processor Hardware Specifications, Rev. 4 14 Freescale Semiconductor Clock Timing 4 Clock Timing 4.1 System Clock Timing Table 7 provides the system clock (SYSCLK) AC timing specifications for the MPC8540. 4.2 TSEC Gigabit Reference Clock Timing Table 7 provides the TSEC gigabit reference clock (EC_GTX_CLK125) AC timing specifications for the MPC8540. Table 7. SYSCLK AC Timing Specifications Parameter/Condition Symbol Min Typical Max Unit Notes SYSCLK frequency fSYSCLK —— 166 MHz 1 SYSCLK cycle time tSYSCLK 6.0 — — ns SYSCLK rise and fall time tKH, tKL 0.6 1.0 1.2 ns 2 SYSCLK duty cycle tKHKL/tSYSCLK 40 — 60 % 3 SYSCLK jitter — — — +/- 150 ps 4, 5 Notes: 1.Caution: The CCB to SYSCLK ratio and e500 core to CCB ratio settings must be chosen such that the resulting SYSCLK frequency, e500 (core) frequency, and CCB frequency do not exceed their respective maximum or minimum operating frequencies. Refer to Section 15.2, “Platform/System PLL Ratio,” and Section 15.3, “e500 Core PLL Ratio,” for ratio settings. 2. Rise and fall times for SYSCLK are measured at 0.6 V and 2.7 V. 3. Timing is guaranteed by design and characterization. 4. This represents the total input jitter—short term and long term—and is guaranteed by design. 5. For spread spectrum clocking, guidelines are +/-1% of the input frequency with a maximum of 60 kHz of modulation regardless of the input frequency. Table 8. EC_GTX_CLK125 AC Timing Specifications Parameter/Condition Symbol Min Typical Max Unit Notes EC_GTX_CLK125 frequency fG125 —125 — MHz EC_GTX_CLK125 cycle time tG125 —8— ns EC_GTX_CLK125 rise and fall time LVDD=2.5 LVDD=3.3 tG125R, tG125F —— 0.75 1 ns 2 EC_GTX_CLK125 duty cycle GMII, TBI RGMII, RTBI tG125H/tG125 45 47 — 55 53 %1,3 Notes: 1. Timing is guaranteed by design and characterization. 2. Rise and fall times for EC_GTX_CLK125 are measured from 0.5V and 2.0V for LVDD=2.5V, and from 0.6 and 2.7V for LVDD=3.3V. 3. EC_GTX_CLK125 is used to generate GTX clock for TSEC transmitter with 2% degradation EC_GTX_CLK125 duty cycle can be loosened from 47/53% as long as PHY device can tolerate the duty cycle generated by GTX_CLK of TSEC. |
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