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AM3703CUS bảng dữ liệu(HTML) 163 Page - Texas Instruments

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AM3715, AM3703
www.ti.com
SPRS616F
– JUNE 2010 – REVISED AUGUST 2011
–
H = (1 + 0.5 * OEExtraDelay) * GPMC_FCLK(14) if ((OEOnTime
– ClkActivationTime – 1) is a multiple of 3)
–
H = (2 + 0.5 * OEExtraDelay) * GPMC_FCLK(14) if ((OEOnTime
– ClkActivationTime – 2) is a multiple of 3)
For OE rising edge (OE deactivated):
–
Case GpmcFCLKDivider = 0:
–
H = 0.5 * OEExtraDelay * GPMC_FCLK(14)
–
Case GpmcFCLKDivider = 1:
–
H = 0.5 * OEExtraDelay * GPMC_FCLK(14) if (ClkActivationTime and OEOffTime are odd) or (ClkActivationTime and OEOffTime
are even)
–
H = (1 + 0.5 * OEExtraDelay) * GPMC_FCLK(14) otherwise
–
Case GpmcFCLKDivider = 2:
–
H = 0.5 * OEExtraDelay * GPMC_FCLK(14) if ((OEOffTime
– ClkActivationTime) is a multiple of 3)
–
H = (1 + 0.5 * OEExtraDelay) * GPMC_FCLK(14) if ((OEOffTime
– ClkActivationTime – 1) is a multiple of 3)
–
H = (2 + 0.5 * OEExtraDelay) * GPMC_FCLK(14) if ((OEOffTime
– ClkActivationTime – 2) is a multiple of 3)
(9) For WE falling edge (WE activated):
–
Case GpmcFCLKDivider = 0:
–
I = 0.5 * WEExtraDelay * GPMC_FCLK(14)
–
Case GpmcFCLKDivider = 1:
–
I = 0.5 * WEExtraDelay * GPMC_FCLK(14) if (ClkActivationTime and WEOnTime are odd) or (ClkActivationTime and WEOnTime
are even)
–
I = (1 + 0.5 * WEExtraDelay) * GPMC_FCLK(14) otherwise
–
Case GpmcFCLKDivider = 2:
–
I = 0.5 * WEExtraDelay * GPMC_FCLK(14) if ((WEOnTime
– ClkActivationTime) is a multiple of 3)
–
I = (1 + 0.5 * WEExtraDelay) * GPMC_FCLK(14) if ((WEOnTime
– ClkActivationTime – 1) is a multiple of 3)
–
I = (2 + 0.5 * WEExtraDelay) * GPMC_FCLK(14) if ((WEOnTime
– ClkActivationTime – 2) is a multiple of 3)
For WE rising edge (WE deactivated):
–
Case GpmcFCLKDivider = 0:
–
I = 0.5 * WEExtraDelay * GPMC_FCLK (14)
–
Case GpmcFCLKDivider = 1:
–
I = 0.5 * WEExtraDelay * GPMC_FCLK(14) if (ClkActivationTime and WEOffTime are odd) or (ClkActivationTime and WEOffTime
are even)
–
I = (1 + 0.5 * WEExtraDelay) * GPMC_FCLK(14) otherwise
–
Case GpmcFCLKDivider = 2:
–
I = 0.5 * WEExtraDelay * GPMC_FCLK(14) if ((WEOffTime
– ClkActivationTime) is a multiple of 3)
–
I = (1 + 0.5 * WEExtraDelay) * GPMC_FCLK(14) if ((WEOffTime
– ClkActivationTime – 1) is a multiple of 3)
–
I = (2 + 0.5 * WEExtraDelay) * GPMC_FCLK(14) if ((WEOffTime
– ClkActivationTime – 2) is a multiple of 3)
(10) J = GPMC_FCLK(14)
(11) In gpmc_ncsx, x is equal to 0, 1, 2, 3, 4, 5, 6, or 7. In gpmc_waitx, x is equal to 0, 1, 2, or 3.
(12) P = gpmc_clk period in ns
(13) For read: K = (ADVRdOffTime
– ADVOnTime) * (TimeParaGranularity + 1) * GPMC_FCLK(14)
For write: K = (ADVWrOffTime
– ADVOnTime) * (TimeParaGranularity + 1) * GPMC_FCLK(14)
(14) GPMC_FCLK is general-purpose memory controller internal functional clock period in ns.
(15) Related to the gpmc_clk output clock maximum and minimum frequencies programmable in the GPMC module by setting the
GPMC_CONFIG1_CSx configuration register bit field GpmcFCLKDivider.
(16) The jitter probability density can be approximated by a Gaussian function.
(17) M = (RdCycleTime
– AccessTime) * (TimeParaGranularity + 1) * GPMC_FCLK(14)
Above M parameter expression is given as one example of GPMC programming. IO DIR signal will go from IN to OUT after both
RdCycleTime and BusTurnAround completion. Behavior of IO direction signal does depend on kind of successive Read/Write accesses
performed to Memory and multiplexed or nonmultiplexed memory addressing scheme, bus keeping feature enabled or not. IO DIR
behaviour is automatically handled by GPMC controller. For a full description of the gpmc_io_dir feature, see the AM/DM37x Multimedia
Device Technical Reference Manual (literature number SPRUGN4).
(18) See Section 4.3.4, Processor Clocks.
Copyright
© 2010–2011, Texas Instruments Incorporated
Timing Requirements and Switching Characteristics
163
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Product Folder Link(s): AM3715 AM3703



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