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LPC47M14X датащи(PDF) 178 Page - SMSC Corporation |
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LPC47M14X датащи(HTML) 178 Page - SMSC Corporation |
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178 / 205 page ![]() SMSC DS – LPC47M14X Page 178 Rev. 03/19/2001 t3 Vc c Al l H o s t A cce s s e s t2 t1 FIGURE 9 – POWER-UP TIMING NAME DESCRIPTION MIN TYP MAX UNITS t1 Vcc Slew from 2.7V to 0V 300 µs t2 Vcc Slew from 0V to 2.7V 100 µs t3 All Host Accesses After Powerup (Note 1) 125 500 µs Note 1: Internal write-protection period after Vcc passes 2.7 volts on power-up USB Hub Interface Timing The USB Hub uses a differential output driver to drive the USB data signal onto the USB cable. The output rise time and fall times are measured between 10% and 90% of the signal (see FIGURE 10). Rise and fall time requirements apply to differential transitions as well as to transitions between differential and single-ended signaling. The rise and fall times for full-speed buffers are much more stringent than that of low speed buffers. These values, listed in Table 77, are measured with a load of 50pF and are matched to within ±10% to minimize RFI emissions and signal skew. The rise and fall times for low-speed buffers are measure with the loads shown in FIGURE 12. A downstream port is allowed 150pF of input/output capacitance (CIND). A low-speed device (including cable) may have a capacitance of as little as 200pF and as much as 450pF. This gives a range of 200pF to 600pF as the capacitive load that the downstream low-speed buffer must support. Upstream buffers on low-speed devices must be designed to drive the capacitance of the attached cable plus an additional 150pF. In all cases, the edges must be matched to within ±20% to minimize RFI emissions and signal skew. Table 77 – Electrical Source Characteristics The values listed below satisfy speeds up to 12Mbps (Full Speed) PARAMETER SYM CONDITIONS (NOTES 1, 2, 3) MIN MAX UNIT DRIVER CHARACTERISTICS: DRIVER CHARACTERISTICS (Full-Speed) Transition Time: Rise Time Fall Time TR TF Note 4,5 and FIGURE 10 & FIGURE 11 CL = 50 pF CL = 50 pF 4 4 20 20 ns ns |
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