Texas Instruments TMS320DM646X DMSOC User Manual

Page 37

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Use Cases

3.1.4

Example Using TC5516100FT-12

This section takes you through the configuration steps required to implement Toshiba’s TC55V1664FT-12
ASRAM with the EMIF. The following assumptions are made:

ASRAM is connected to chip select space 3 (EM_CS[3])

EMIF clock speed is 100 MHZ (t

cyc

= 10 nS)

Table 20

lists the data sheet specifications for the EMIF and

Table 21

lists the data sheet specifications

for the ASRAM.

Table 20. EMIF Timing Requirements for TC5516100FT-12 Example

Parameter

Description

Min

Max

Units

t

SU

Data Setup time, data valid before EM_OE high

5

nS

t

H

Data Hold time, data valid after EM_OE high

0

nS

Table 21. ASRAM Timing Requirements for TC5516100FT-12 Example

Parameter

Description

Min

Max

Units

t

ACC

Address Access time

12

nS

t

OH

Output data Hold time for address change

3

nS

t

RC

Read cycle time

12

nS

t

WP

Write Pulse width

8

nS

t

AW

Address valid to end of Write

9

nS

t

DS

Data Setup time

7

nS

t

WR

Write Recovery time

0

nS

t

DH

Data Hold time

0

nS

t

WC

Write Cycle time

12

nS

t

COD

Output Disable time from chip enable

7

Table 22

lists the values of the PCB board delays. The delays were estimated using the rule that there is

180 pS of delay for every 1 inch of trace.

Table 22. Measured PCB Delays for TC5516100FT-12 Example

Parameter

Description

Delay (ns)

Read Access

t

EM_CS

Delay on EM_CS from EMIF to ASRAM. EM_CS is driven by EMIF.

0.36

t

EM_A

Delay on EM_A from EMIF to ASRAM. EM_A is driven by EMIF.

0.27

t

EM_OE

Delay on EM_OE from EMIF to ASRAM. EM_OE is driven by EMIF.

0.36

t

EM_D

Delay on EM_D from ASRAM to EMIF. EM_D is driven by ASRAM.

0.45

Write Access

t

EM_CS

Delay on EM_CS from EMIF to ASRAM. EM_CS is driven by EMIF.

0.36

t

EM_A

Delay on EM_A from EMIF to ASRAM. EM_A is driven by EMIF.

0.27

t

EM_WE

Delay on EM_WE from EMIF to ASRAM. EM_WE is driven by EMIF.

0.36

t

EM_D

Delay on EM_D from EMIF to ASRAM. EM_D is driven by EMIF.

0.45

37

SPRUEQ7C – February 2010

Asynchronous External Memory Interface (EMIF)

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