(15)
| NO. |
PARAMETER |
DESCRIPTION |
MIN |
MAX |
UNIT |
| GNF0 |
tw(wenV) |
Pulse duration, GPMC0_WEn valid |
A(1) |
|
ns |
| GNF1 |
td(csnV-wenV) |
Delay time, GPMC0_CSn[x](13) valid to GPMC0_WEn valid |
B(2) – 2 |
B(2) + 2 |
ns |
| GNF2 |
tw(cleH-wenV) |
Delay time, GPMC0_BE0n_CLE high to GPMC0_WEn valid |
C(3) – 2 |
C(3) + 2 |
ns |
| GNF3 |
tw(wenV-dV) |
Delay time, GPMC0_AD[31:0] valid to GPMC0_WEn valid |
D(4) – 2 |
D(4) + 2 |
ns |
| GNF4 |
tw(wenIV-dIV) |
Delay time, GPMC0_WEn invalid to GPMC0_AD[31:0] invalid |
E(5) – 2 |
E(5) + 2 |
ns |
| GNF5 |
tw(wenIV-cleIV) |
Delay time, GPMC0_WEn invalid to GPMC0_BE0n_CLE invalid |
F(6) – 2 |
F(6) + 2 |
ns |
| GNF6 |
tw(wenIV-csnIV) |
Delay time, GPMC0_WEn invalid to GPMC0_CSn[x](13) invalid |
G(7) – 2 |
G(7) + 2 |
ns |
| GNF7 |
tw(aleH-wenV) |
Delay time, GPMC0_ADVn_ALE high to GPMC0_WEn valid |
C(3) – 2 |
C(3) + 2 |
ns |
| GNF8 |
tw(wenIV-aleIV) |
Delay time, GPMC0_WEn invalid to GPMC0_ADVn_ALE invalid |
F(6) – 2 |
F(6) + 2 |
ns |
| GNF9 |
tc(wen) |
Cycle time, write |
|
H(8) |
ns |
| GNF10 |
td(csnV-oenV) |
Delay time, GPMC0_CSn[x](13) valid to GPMC0_OEn_REn valid |
I(9) – 2 |
I(9) + 2 |
ns |
| GNF13 |
tw(oenV) |
Pulse duration, GPMC0_OEn_REn valid |
|
K(10) |
ns |
| GNF14 |
tc(oen) |
Cycle time, read |
L(11) |
|
ns |
| GNF15 |
tw(oenIV-csnIV) |
Delay time, GPMC0_OEn_REn invalid to GPMC0_CSn[x](13) invalid |
M(12) – 2 |
M(12) + 2 |
ns |
(1) A = (WEOffTime - WEOnTime) × (TimeParaGranularity + 1) × GPMC_FCLK
(14)
(2) B = ((WEOnTime - CSOnTime) × (TimeParaGranularity + 1) + 0.5 × (WEExtraDelay - CSExtraDelay)) × GPMC_FCLK
(14)
(3) C = ((WEOnTime - ADVOnTime) × (TimeParaGranularity + 1) + 0.5 × (WEExtraDelay - ADVExtraDelay)) × GPMC_FCLK
(14)
(4) D = (WEOnTime × (TimeParaGranularity + 1) + 0.5 × WEExtraDelay) × GPMC_FCLK
(14)
(5) E = ((WrCycleTime - WEOffTime) × (TimeParaGranularity + 1) - 0.5 × WEExtraDelay) × GPMC_FCLK
(14)
(6) F = ((ADVWrOffTime - WEOffTime) × (TimeParaGranularity + 1) + 0.5 × (ADVExtraDelay - WEExtraDelay)) × GPMC_FCLK
(14)
(7) G = ((CSWrOffTime - WEOffTime) × (TimeParaGranularity + 1) + 0.5 × (CSExtraDelay - WEExtraDelay)) × GPMC_FCLK
(14)
(8) H = WrCycleTime × (1 + TimeParaGranularity) × GPMC_FCLK
(14)
(9) I = ((OEOnTime - CSOnTime) × (TimeParaGranularity + 1) + 0.5 × (OEExtraDelay - CSExtraDelay)) × GPMC_FCLK
(14)
(10) K = (OEOffTime - OEOnTime) × (1 + TimeParaGranularity) × GPMC_FCLK
(14)
(11) L = RdCycleTime × (1 + TimeParaGranularity) × GPMC_FCLK
(14)
(12) M = ((CSRdOffTime - OEOffTime) × (TimeParaGranularity + 1) + 0.5 × (CSExtraDelay - OEExtraDelay)) × GPMC_FCLK
(14)
(13) In GPMC_CSn[x], x is equal to 0, 1, 2 or 3.
(14) GPMC_FCLK is general-purpose memory controller internal functional clock period in ns.
(15) 100MHz GPMC_FCLK selected - CTRLMMR_GPMC_CLKSEL[0] CLK_SEL = 1 = MAIN_PLL2_HSDIV7_CLKOUT (100/60 MHz)