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MPC8535EBVTATH Datasheet(PDF) 90 Page - Freescale Semiconductor, Inc |
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MPC8535EBVTATH Datasheet(HTML) 90 Page - Freescale Semiconductor, Inc |
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90 / 126 page ![]() MPC8535E PowerQUICC™ III Integrated Processor Hardware Specifications, Rev. 2 High-Speed Serial Interfaces Freescale Semiconductor 90 Figure 55 shows the PCI input AC timing conditions. Figure 55. PCI Input AC Timing Measurement Conditions Figure 56 shows the PCI output AC timing conditions. Figure 56. PCI Output AC Timing Measurement Condition 2.20 High-Speed Serial Interfaces The MPC8535E features two Serializer/Deserializer (SerDes) interfaces to be used for high-speed serial interconnect applications. The SerDes1 interface is dedicated for PCI Express data transfers. The SerDes2 can be used for SGMII or SATA. This section describes the common portion of SerDes DC electrical specifications, which is the DC requirement for SerDes Reference Clocks. The SerDes data lane’s transmitter and receiver reference circuits are also shown. 2.20.1 Signal Terms Definition The SerDes utilizes differential signaling to transfer data across the serial link. This section defines terms used in the description and specification of differential signals. Figure 57 shows how the signals are defined. For illustration purposes, only one SerDes lane is used for description. The figure shows waveform for either a transmitter output (SDn_TX and SDn_TX) or a receiver input (SDn_RX and SDn_RX). Each signal swings between A Volts and B Volts where A > B. Using this waveform, the definitions are as follows. To simplify illustration, the following definitions assume that the SerDes transmitter and receiver operate in a fully symmetrical differential signaling environment. 1. Single-Ended Swing The transmitter output signals and the receiver input signals SDn_TX, SDn_TX, SDn_RX and SDn_RX each have a peak-to-peak swing of A - B Volts. This is also referred as each signal wire’s Single-Ended Swing. 2. Differential Output Voltage, VOD (or Differential Output Swing): The Differential Output Voltage (or Swing) of the transmitter, VOD, is defined as the difference of the two complimentary output voltages: VSDn_TX - VSDn_TX. The VOD value can be either positive or negative. 3. Differential Input Voltage, VID (or Differential Input Swing): tPCIVKH CLK Input tPCIXKH CLK Output Delay tPCKHOV High-Impedance tPCKHOZ Output |
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