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XD[15:0]
XA[18:0]
XZCS6
XZCS7
XZCS6AND7
XZCS2
XWE
XR/W
XREADY
XMP/MC
XHOLD
XHOLDA
XCLKOUT
(E)
XRD
XINTF Zone 0
(8K x 16)
XINTF Zone 1
(8K x 16)
XINTF Zone 2
(512K x 16)
XINTF Zone 6
(512K x 16)
XINTF Zone 7
(16K x 16)
(mapped here if MP/
= 1)
MC
0x40 0000
0x3F C000
0x18 0000
0x10 0000
0x00 6000
0x00 4000
0x00 2000
0x00 0000
Data Space
Prog Space
0x08 0000
XZCS0AND1
XZCS0
XZCS1
TMS320F2810, TMS320F2811, TMS320F2812
TMS320C2810, TMS320C2811, TMS320C2812
SPRS174T – APRIL 2001 – REVISED MAY 2012
www.ti.com
3.5
External Interface, XINTF (2812 Only)
This section gives a top-level view of the external interface (XINTF) that is implemented on the 2812
devices.
The external interface is a non-multiplexed asynchronous bus, similar to the C240x external interface. The
external interface on the 2812 is mapped into five fixed zones shown in
Figure 3-5
.
Figure 3-5
shows the 2812 XINTF signals.
A.
The mapping of XINTF Zone 7 is dependent on the XMP/MC device input signal and the MP/MC mode bit (bit 8 of
XINTCNF2 register). Zones 0, 1, 2, and 6 are always enabled.
B.
Each zone can be programmed with different wait states, setup and hold timing, and is supported by zone chip
selects (XZCS0AND1, XZCS2, XZCS6AND7), which toggle when an access to a particular zone is performed. These
features enable glueless connection to many external memories and peripherals.
C.
The chip selects for Zone 0 and Zone 1 are ANDed internally together to form one chip select (XZCS0AND1). Any
external memory that is connected to XZCS0AND1 is dually mapped to both Zone 0 and Zone 1.
D.
The chip selects for Zone 6 and Zone 7 are ANDed internally together to form one chip select (XZCS6AND7). Any
external memory that is connected to XZCS6AND7 is dually mapped to both Zone 6 and Zone 7. This means that if
Zone 7 is disabled (via the MP/MC mode), then any external memory is still accessible via Zone 6 address space.
E.
XCLKOUT is also pinned out on the 2810 and 2811.
Figure 3-5. External Interface Block Diagram
42
Functional Overview
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