MOTOROLA
Chapter 28. SCC Ethernet Mode
28-5
Part V. The Communications Processor Module
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Chapter 34, ÒParallel I/O Ports,Ó shows how to conÞgure the preferred Ethernet pin
functions to be active.
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Chapter 35, ÒCPM Interrupt Controller,Ó deÞnes SCC interrupt priorities and how
interrupts are generated to the core.
28.4 Connecting the MPC860 to Ethernet
The basic interface to the external EEST chip consists of the following Ethernet signals:
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Receive clock (RCLK)Ña CLKx signal routed through the bank of clocks on the
MPC860.
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Transmit clock (TCLK)Ña CLKx signal routed through the bank of clocks on the
MPC860. Note that RCLK and TCLK should not be connected to the same CLKx
since the EEST provides separate transmit and receive clock signals.
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Transmit data (TXD)Ñthe MPC860 TXD signal.
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Receive data (RXD)Ñthe MPC860 RXD signal.
The following signals take on different functionality when the SCC is in Ethernet mode:
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Transmit enable (TENA)ÑRTS becomes TENA. The polarity of TENA is active
high, whereas the polarity of RTS is active low.
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Receive enable (RENA)ÑCD becomes RENA.
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Collision (CLSN)ÑCTS becomes CLSN. The carrier sense signal is referenced in
Ethernet descriptions because it indicates when the LAN is in use. Carrier sense is
deÞned as the logical OR of RENA and CLSN.
Figure 28-3 shows the basic components and signals required to make an Ethernet
connection between the MPC860 and EEST.
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