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AN4570 Datasheet(PDF) 23 Page - STMicroelectronics

Part # AN4570
Description  This application note describes how to use the high-density
PDF  46 Pages
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Manufacturer  STMICROELECTRONICS [STMicroelectronics]
Direct Link  http://www.st.com
Logo STMICROELECTRONICS - STMicroelectronics

AN4570 Datasheet(HTML) 23 Page - STMicroelectronics

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AN4570
Interfacing with a non-multiplexed, asynchronous 16-bit SRAM
45
Figure 7. SRAM asynchronous write access timing
3.1.1
Typical use of the FMC to interface with an SRAM
In this application note, the IS61WV51216BLL memory is used as the reference.
The IS61WV51216BLL memory is a non-multiplexed, asynchronous, 16-bit memory. Bank3
is selected to support the SRAM device. Based on these data, the FMC is configured as
follows:
Bank3 is enabled: BCR3_MBKEN bit set to ‘1’
Memory type is SRAM: BCR3_MTYP is set to ‘00’ to select the SRAM memory type
Data bus width is 16 bits: BCR3_MWID is set to ‘01’ to select the 16-bit width
The memory is non-multiplexed: BCR3_MUXEN is reset
All remaining parameters must be kept cleared.
3.2
Timing computation
The SRAM shares the same banks and configuration register as the NOR Flash memory.
As a result, the timing computation method is the same as described in detail in the NOR
Flash section (Section 2.2: Timing computation on page 11).
The FMC is configured on the basis of the SRAM access timings illustrated in Figure 6 and
Figure 7, and taking into account the following:
the maximum read/write access time
the different internal FMC delays
the different internal memory delays
Hence the following equations:
((ADDSET + 1) + (DATAST + 1)) × tHCLK
max (tWC)
DATAST × tHCLK = tPWE1



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