Datasheet
Signal Description
2-20  MCF5206e USER’S MANUAL MOTOROLA
2.16 TEST SIGNALS
2.16.1  Motorola Test Mode (MTMOD)
This input signal chooses between the debug and JTAG signals that are multiplexed 
together. When MTMOD=1, the MCF5206e is in Debug mode and when MTMOD=0, the 
MCF5206e is in JTAG mode.
2.16.2 High Impedance (HIZ)
The assertion of the HIZ input signal forces all output drivers to a high-impedance state 
(three-state). The timing on HIZ is independent of the clock. Note that HIZ does not 
override JTAG operation; TDO/DSO can be forced to a high-impedance state by asserting 
TRST.
If RSTI
 and HIZ are asserted simultaneously, the MCF5206e enters master reset mode. 
In this reset mode, the entire MCF5206e (including the DRAM controller refresh circuitry) 
is reset. You must use master reset for all power-on resets.
If RSTI
 is asserted while HIZ is negated, the MCF5206e enters normal reset mode. In this 
reset mode, the DRAM controller refresh circuitry is not reset and continues to generate 
refresh cycles at the programmed rate.
2.17 SIGNAL SUMMARY
Table 2-12 provides a summary of the electrical characteristics of the MCF5206e signals.
Table 2-12. MCF5206e Signal Summary
SIGNAL NAME MNEMONIC INPUT/OUTPUT ACTIVE STATE RESET STATE
Address[27:24]/Chip Select[7:4]/
Write Enable[0:3]
A[27:24]/
CS
[7:4]/
WE[0:3]
In,Out/
Out/
Out
-/
Low/
Low
Three-stated/
Negated/
Negated
Address A[23:0] In,Out - Three-stated
Data D[31:0] In,Out - Three-stated
Chip Select[3:0] CS
[3:0] Out Low Negated
Interrupt Priority Level/ Interrupt 
Request
IPL[2]/IRQ[7]
IPL
[1]/IRQ[4]
IPL
[0]/IRQ[1]
In/In Low -
Read/Write R/W In,Out - Three-stated
Size SIZ[1:0] In,Out - Three-stated
Transfer Type  TT[1:0] Out - Three-stated
Access Type & Mode  ATM Out - Three-stated
Transfer Start  TS
In,Out Low Three-stated
Transfer Acknowledge TA
In,Out Low Three-stated
Asynchronous Transfer 
Acknowledge 
ATA
In Low -
Transfer Error Acknowledge TEA
In Low -
Bus Request  BR
Out Low Negated
Bus Grant  BG
In Low -
Fr
eescale S
emiconduct
or
, I
Freescale Semiconductor, Inc.
For More Information On This Product,
 Go to: www.freescale.com
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