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MPC555 / MPC556
ELECTRICAL CHARACTERISTICS
MOTOROLA
USER’S MANUAL
Rev. 15 October 2000
G-22
27b
WE[0:3]/BE[0:3] Negated to A[0:31] In-
valid
-GPCM- Write Access, TRLX =
’1’, CSNT = '1’.
CS Negated to A[0:31] Invalid
-GPCM- Write Access,
TRLX = ’1’, CSNT = '1’, ACS = 10,
ACS = =’11’, EBDF = 0
38
29
ns
27c
WE[0:3]/BE[0:3] Negated to A[0:31] In-
valid
-GPCM- Write Access,
TRLX = ’0’, CSNT = '1’.
CS Negated to A[0:31] Invalid
-GPCM- Write Access,
TRLX = ’0’, CSNT = '1’,
ACS = 10,ACS = =’11’, EBDF = 1
5
4
ns
27d
WE[0:3]/BE[0:3] Negated to A[0:31] In-
valid
-GPCM- Write Access,
TRLX = ’1’, CSNT = '1’.
CS Negated to A[0:31] Invalid
-GPCM- Write Access,
TRLX = ’1’, CSNT = '1’,
ACS = 10,ACS = =’11’, EBDF = 1
30
24
ns
28
A[0:31], TSIZ[0:1], RD/WR, BURST,
BDIP Valid to CLKOUT Rising Edge.
(Slave Mode Setup Time)
11
9
ns
28a
Slave Mode
D[0:31] Valid to CLKOUT Rising Edge
7
ns
29
TS Valid to CLKOUT Rising Edge
(Setup Time)
9
7
ns
30
CLKOUT Rising Edge to TS Valid
(Hold Time).
2
2
ns
NOTES:
1. Expressions are approximate equations only.
2. This is the maximum frequency at which ENGCLK will meet output drive and rise/fall time specifications.
3. The timing for BR ouput is relevant when the MPC555 /
MPC556 is selected to work with external bus arbiter.
The timing for BG output is relevant when the MPC555
/ MPC556 is selected to work with internal bus arbiter.
4. The setup times required for TA, TEA, and BI are relevant only when they are supplied by the external device
(and not the memory controller).
5. The timing required for BR input is relevant when the MPC500 family microcontroller is selected to work with
internal bus arbiter. The timing for BG is relevant when the MPC500 is selected to work with external bus arbiter.
6. The D[0:31] input timings 17 and 18 refer to the rising edge of the CLKOUT in which the TA input signal is as-
serted.
7. The timing 27 refers to CS when ACS = ‘00’ and to WE[0:3] when CSNT = ‘0’.
Table G-11 Bus Operation Timing (Continued)
(T
A
= T
L
to T
H
)
Characteristic
Expression
1
33 MHz
40 MHz
Unit
Min
Max
Min
Max
F
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S
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Freescale Semiconductor, Inc.
For More Information On This Product,
Go to: www.freescale.com
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