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MPC8535EBVTATH Datasheet(PDF) 100 Page - Freescale Semiconductor, Inc |
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MPC8535EBVTATH Datasheet(HTML) 100 Page - Freescale Semiconductor, Inc |
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100 / 126 page ![]() MPC8535E PowerQUICC™ III Integrated Processor Hardware Specifications, Rev. 2 PCI Express Freescale Semiconductor 100 VTX-DE-RATIO De- Emphasized Differential Output Voltage (Ratio) –3.0 –3.5 –4.0 dB Ratio of the VTX-DIFFp-p of the second and following bits after a transition divided by the VTX-DIFFp-p of the first bit after a transition. See Note 2. TTX-EYE Minimum TX Eye Width 0.70 — — UI The maximum Transmitter jitter can be derived as TTX-MAX-JITTER = 1 – TTX-EYE= 0.3 UI. See Notes 2 and 3. TTX-EYE-MEDIAN-to- MAX-JITTER Maximum time between the jitter median and maximum deviation from the median. — — 0.15 UI Jitter is defined as the measurement variation of the crossing points (VTX-DIFFp-p = 0 V) in relation to a recovered TX UI. A recovered TX UI is calculated over 3500 consecutive unit intervals of sample data. Jitter is measured using all edges of the 250 consecutive UI in the center of the 3500 UI used for calculating the TX UI. See Notes 2 and 3. TTX-RISE, TTX-FALL D+/D- TX Output Rise/Fall Time 0.125 — — UI See Notes 2 and 5 VTX-CM-ACp RMS AC Peak Common Mode Output Voltage —— 20 mV VTX-CM-ACp = RMS(|VTXD+ +VTXD-|/2 – VTX-CM-DC) VTX-CM-DC = DC(avg) of |VTX-D+ +VTX-D-|/2 See Note 2 VTX-CM-DC-ACTIVE- IDLE-DELTA Absolute Delta of DC Common Mode Voltage During L0 and Electrical Idle 0 — 100 mV |VTX-CM-DC (during L0) – VTX-CM-Idle-DC (During Electrical Idle)|<=100 mV VTX-CM-DC = DC(avg) of |VTX-D+ +VTX-D-|/2 [L0] VTX-CM-Idle-DC = DC(avg) of |VTX-D+ + VTX-D-|/2 [Electrical Idle] See Note 2. VTX-CM-DC-LINE-DELTA Absolute Delta of DC Common Mode between D+ and D– 0— 25 mV |VTX-CM-DC-D+ – VTX-CM-DC-D-| <= 25 mV VTX-CM-DC-D+ = DC(avg) of |VTX-D+| VTX-CM-DC-D- = DC(avg) of |VTX-D-| See Note 2. VTX-IDLE-DIFFp Electrical Idle differential Peak Output Voltage 0— 20 mV VTX-IDLE-DIFFp = |VTX-IDLE-D+ -VTX-IDLE-D-| <= 20 mV See Note 2. VTX-RCV-DETECT The amount of voltage change allowed during Receiver Detection — — 600 mV The total amount of voltage change that a transmitter can apply to sense whether a low impedance Receiver is present. See Note 6. VTX-DC-CM The TX DC Common Mode Voltage 0 — 3.6 V The allowed DC Common Mode voltage under any conditions. See Note 6. ITX-SHORT TX Short Circuit Current Limit — — 90 mA The total current the Transmitter can provide when shorted to its ground TTX-IDLE-MIN Minimum time spent in Electrical Idle 50 — — UI Minimum time a Transmitter must be in Electrical Idle Utilized by the Receiver to start looking for an Electrical Idle Exit after successfully receiving an Electrical Idle ordered set Table 71. Differential Transmitter (TX) Output Specifications (continued) Symbol Parameter Min Nom Max Units Comments |
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