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AM652X Fiches technique(PDF) 183 Page - Texas Instruments

No de pièce AM652X
Description  Sitara Processors
PDF  299 Pages
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Fabricant  TI1 [Texas Instruments]
Site Internet  http://www.ti.com
Logo TI1 - Texas Instruments

AM652X Fiches technique(HTML) 183 Page - Texas Instruments

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183
AM6548, AM6528, AM6546
AM6526, AM6527
www.ti.com
SPRSP08E – NOVEMBER 2017 – REVISED OCTOBER 2018
Submit Documentation Feedback
Product Folder Links: AM6548 AM6528 AM6546 AM6526 AM6527
Specifications
Copyright © 2017–2018, Texas Instruments Incorporated
5.11.5.10.3 GPMC and NAND Flash—Asynchronous Mode
Table 5-52 and Table 5-53 assume testing over the recommended operating conditions and electrical
characteristic conditions below (see Figure 5-54 through Figure 5-57).
Table 5-52. GPMC and NAND Flash Timing Requirements—Asynchronous Mode
NO.
PARAMETER
DESCRIPTION
MODE(4)
MIN
MAX
UNIT
GNF12(1)
tacc(d)
Access time, input data GPMC_AD[15:0] (3)
div_by_1_mode;
GPMC_FCLK_MUX_133;
TIMEPARAGRANULARITY_X1
J (2)
ns
(1) The GNF12 parameter illustrates the amount of time required to internally sample input data. It is expressed in number of GPMC
functional clock cycles. From start of the read cycle and after GNF12 functional clock cycles, input data is internally sampled by the
active functional clock edge. The GNF12 value must be stored inside AccessTime register bit field.
(2) J = AccessTime × (TimeParaGranularity + 1) × GPMC_FCLK(3)
(3) GPMC_FCLK is general-purpose memory controller internal functional clock period in ns.
(4) For div_by_1_mode:
GPMC_CONFIG1_i Register: GPMCFCLKDIVIDER = 0h:
GPMC_CLK frequency = GPMC_FCLK frequency
For GPMC_FCLK_MUX_133:
gpmc_fclk_sel[1:0] = 00 = CPSWHSDIV_CLKOUT3 = 2000/15 = 133.33 MHz
For TIMEPARAGRANULARITY_X1:
GPMC_CONFIG1_i Register: TIMEPARAGRANULARITY = 0h = x1 latencies (affecting RD/WRCYCLETIME,
RD/WRACCESSTIME, PAGEBURSTACCESSTIME, CSONTIME, CSRD/WROFFTIME, ADVONTIME, ADVRD/WROFFTIME,
OEONTIME, OEOFFTIME, WEONTIME, WEOFFTIME, CYCLE2CYCLEDELAY, BUSTURNAROUND, TIMEOUTSTARTVALUE,
WRDATAONADMUXBUS)
Table 5-53. GPMC and NAND Flash Switching Characteristics—Asynchronous Mode
NO.
PARAMETER
MODE(15)
MIN
MAX
UNIT
tR(d)
Rise time, output data GPMC_AD[15:0]
div_by_1_mode;
GPMC_FCLK_MUX_133;
TIMEPARAGRANULARITY_X1
2
ns
tF(d)
Fall time, output data GPMC_AD[15:0]
div_by_1_mode;
GPMC_FCLK_MUX_133;
TIMEPARAGRANULARITY_X1
2
ns
GNF0
tw(wenV)
Pulse duration, output write enable GPMC_WEn
valid
div_by_1_mode;
GPMC_FCLK_MUX_133;
TIMEPARAGRANULARITY_X1
A(1)
ns
GNF1
td(csnV-wenV)
Delay time, output chip select GPMC_CSn[x](13)
valid to output write enable GPMC_WEn valid
div_by_1_mode;
GPMC_FCLK_MUX_133;
TIMEPARAGRANULARITY_X1
-2+B (2)
2+B (2)
ns
GNF2
tw(cleH-wenV)
Delay time, output lower-byte enable and
command latch enable GPMC_BE0n_CLE high to
output write enable GPMC_WEn valid
div_by_1_mode;
GPMC_FCLK_MUX_133;
TIMEPARAGRANULARITY_X1
-2+C (3)
2+C (3)
ns
GNF3
tw(wenV-dV)
Delay time, output data GPMC_AD[15:0] valid to
output write enable GPMC_WEn valid
div_by_1_mode;
GPMC_FCLK_MUX_133;
TIMEPARAGRANULARITY_X1
-2+D (4) 2.8+D (4)
ns
GNF4
tw(wenIV-dIV)
Delay time, output write enable GPMC_WEn
invalid to output data GPMC_AD[15:0] invalid
div_by_1_mode;
GPMC_FCLK_MUX_133;
TIMEPARAGRANULARITY_X1
-2+E (5) 2.8+E (5)
ns
GNF5
tw(wenIV-cleIV)
Delay time, output write enable GPMC_WEn
invalid to output lower-byte enable and command
latch enable GPMC_BE0n_CLE invalid
div_by_1_mode;
GPMC_FCLK_MUX_133;
TIMEPARAGRANULARITY_X1
-2+F (6)
2+F (6)
ns
GNF6
tw(wenIV-csnIV)
Delay time, output write enable GPMC_WEn
invalid to output chip select GPMC_CSn[x](13)
invalid
div_by_1_mode;
GPMC_FCLK_MUX_133;
TIMEPARAGRANULARITY_X1
-2+G (7)
2+G (7)
ns
GNF7
tw(aleH-wenV)
Delay time, output address valid and address latch
enable GPMC_ADVn_ALE high to output write
enable GPMC_WEn valid
div_by_1_mode;
GPMC_FCLK_MUX_133;
TIMEPARAGRANULARITY_X1
-2+C (3)
2+C (3)
ns



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