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3.1.4.1. Considerations for Designing DDR4 x72 Interface Together with an AVST x8/x16/x32 Configuration Scheme
The AVST x8 configuration scheme uses the dedicated SDM I/O pins and does not impact the number of DDR4 x72 interfaces that can be implemented on the device. An AVST x32 configuration scheme uses all four of the I/O lanes in the top sub-bank in Bank 3A. This breaks the contiguity requirement and reduces the maximum number of DDR4 x72 interfaces that can be supported on the device.
However, the AVST x16 configuration scheme only uses three I/O Lanes. I/O Lane 2 in the top sub-bank in Bank 3A is available for EMIF purposes and maintains the contiguity requirement. This I/O Lane can be used as a DQ Lane for EMIF purposes.
To implement a DDR4 x72 interface using the top sub-bank in Bank 3A together with an AVST x16 configuration scheme, you must use the address/command scheme with four IO Lanes. The following figure shows the I/O lane assignment for implementing a DDR4 x 72 interface in such a scenario.
The following table shows the maximum number of DDR4 x72 interfaces that can be supported with different AVST configuration schemes.
Device/Package | 1× DDR4 x72 | 2× DDR4 x72 | 3× DDR4 x72 | 4× DDR4 x72 | 6× DDR4 x72 | 8× DDR4 x72 |
---|---|---|---|---|---|---|
AGF014/AGF012, R24A/R24B | AVST 8, 16, 32 | AVST 8, 16, 32 | AVST 8, 16, 32 | AVST 8, 16 | N/A | N/A |
AGF027/AGF022, R24C | AVST 8, 16, 32 | AVST 8, 16, 32 | AVST 8, 16, 32 | AVST 8, 16 | N/A | N/A |
AGF027/AGF022, R25A | AVST 8, 16, 32 | AVST 8, 16, 32 | N/A | N/A | N/A | N/A |
AGF027/AGF022, R31C | AVST 8, 16, 32 | AVST 8, 16, 32 | AVST 8, 16, 32 | AVST 8 | N/A | N/A |
AGI027/AGI022, R29A | AVST 8, 16, 32 | AVST 8, 16, 32 | AVST 8, 16, 32 | AVST 8 | N/A | N/A |
AGI027/AGI022, R31B | AVST 8, 16, 32 | AVST 8, 16, 32 | AVST 8, 16, 32 | AVST 8 | N/A | N/A |
AGF019/AGF023, R25A | AVST 8, 16, 32 | AVST 8, 16 | N/A | N/A | N/A | N/A |
AGF006/AGF008, R16A | AVST 8, 16, 32 | N/A | N/A | N/A | N/A | N/A |
Device/Package | 1× DDR4 x72 | 2× DDR4 x72 | 3× DDR4 x72 | 4× DDR4 x72 | 6× DDR4 x72 | 8× DDR4 x72 |
---|---|---|---|---|---|---|
AGF014/AGF012, R24A/R24B | AVST 8, 16, 32 | AVST 8, 16, 32 | AVST 8, 16, 32 | AVST 8 | N/A | N/A |
AGF027/AGF022, R24C | AVST 8, 16, 32 | AVST 8, 16, 32 | AVST 8, 16, 32 | AVST 8 | N/A | N/A |
AGF027/AGF022, R25A | AVST 8, 16, 32 | AVST 8, 16, 32 | AVST 8, 16, 32 | AVST 8, 16, 32 | N/A | N/A |
AGF027/AGF022, R31C | AVST 8, 16, 32 | AVST 8, 16, 32 | AVST 8, 16, 32 | AVST 8 | N/A | N/A |
AGI027/AGI022, R29A | AVST 8, 16, 32 | AVST 8, 16, 32 | AVST 8, 16, 32 | AVST 8 | N/A | N/A |
AGI027/AGI022, R31B | AVST 8, 16, 32 | AVST 8, 16, 32 | AVST 8, 16, 32 | AVST 8 | N/A | N/A |
AGF019/AGF023, R25A | AVST 8, 16, 32 | AVST 8, 16, 32 | AVST 8, 16, 32 | N/A | N/A | N/A |
AGF006/AGF008, R16A | AVST 8, 16, 32 | AVST 8, 16, 32 | N/A | N/A | N/A | N/A |