MOTOROLA
Chapter 7. 60x Signals
7-13
Part III. The Hardware Interface
7.2.6.2 Data Bus Busy (DBB)
The data bus busy (DBB) signal is both an input and output signal on the MPC8260
7.2.6.2.1 Data Bus Busy (DBB)ÑOutput
Following are the state meaning and timing comments for the DBB output signal.
State Meaning
AssertedÑIndicates that the MPC8260 is the data bus master. The
MPC8260 always assumes data bus mastership if it needs the data
bus and determines a qualiÞed data bus grant (see DBG).
NegatedÑIndicates that the MPC8260 is not using the data bus.
Timing Comments
AssertionÑOccurs during the bus clock cycle following a qualiÞed
DBG.
NegationÑOccurs for a minimum of one-half bus clock cycle
following the assertion of the Þnal TA following TEA or certain
ARTRY cases.
High ImpedanceÑOccurs after DBB is negated.
7.2.6.2.2 Data Bus Busy (DBB)ÑInput
Following are the state meaning and timing comments for the DBB input signal.
State Meaning
AssertedÑIndicates that another device is bus master.
NegatedÑIndicates that the data bus is free (with proper
qualiÞcation, see DBG) for use by the MPC8260.
Timing Comments
AssertionÑMust occur when the MPC8260 must be prevented from
using the data bus.
NegationÑMay occur whenever the data bus is available.
7.2.7 Data Transfer Signals
Data transfer signals are used in the same way in both internal only and external master
modes. Like the address transfer signals, the data transfer signals are used to transmit data
and to generate and monitor parity for the data transfer. For a detailed description of how
data transfer signals interact, see Section 7.2.7, ÒData Transfer Signals.Ó
7.2.7.1 Data Bus (D[0Ð63])
The data bus (D[0Ð63]) states have the same meanings in both internal only mode external
master mode. The data bus consists of 64 signals that are both inputs and outputs on the
MPC8260. Following are the state meaning and timing comments for the data bus.
State Meaning
The data bus holds 8 byte lanes assigned as shown in Table 7-1.
Timing Comments
The number of times the data bus is driven depends on the transfer
size, port size, and whether the transfer is a single-beat or burst
operation.
Summary of Contents for MPC8260 PowerQUICC II
Page 1: ...MPC8260UM D 4 1999 Rev 0 MPC8260 PowerQUICC II UserÕs Manual ª ª ...
Page 66: ...lxvi MPC8260 PowerQUICC II UserÕs Manual MOTOROLA ...
Page 88: ...1 18 MPC8260 PowerQUICC II UserÕs Manual MOTOROLA Part I Overview ...
Page 120: ...2 32 MPC8260 PowerQUICC II UserÕs Manual MOTOROLA Part I Overview ...
Page 138: ...Part II iv MPC8260 PowerQUICC II UserÕs Manual MOTOROLA Part II Configuration and Reset ...
Page 184: ...4 46 MPC8260 PowerQUICC II UserÕs Manual MOTOROLA Part II ConÞguration and Reset ...
Page 202: ...Part III vi MPC8260 PowerQUICC II UserÕs Manual MOTOROLA Part III The Hardware Interface ...
Page 266: ...8 34 MPC8260 PowerQUICC II UserÕs Manual MOTOROLA Part III The Hardware Interface ...
Page 382: ...10 106 MPC8260 PowerQUICC II UserÕs Manual MOTOROLA Part III The Hardware Interface ...
Page 392: ...11 10 MPC8260 PowerQUICC II UserÕs Manual MOTOROLA Part III The Hardware Interface ...
Page 430: ...Part IV viii MOTOROLA Part IV Communications Processor Module ...
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Page 980: ...A 4 MPC8260 PowerQUICC II UserÕs Manual MOTOROLA Appendixes ...
Page 1002: ...Index 22 MPC8260 PowerQUICC II UserÕs Manual MOTOROLA INDEX ...
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