Continue to Site

Welcome to EDAboard.com

Welcome to our site! EDAboard.com is an international Electronics Discussion Forum focused on EDA software, circuits, schematics, books, theory, papers, asic, pld, 8051, DSP, Network, RF, Analog Design, PCB, Service Manuals... and a whole lot more! To participate you need to register. Registration is free. Click here to register now.

Boot-from-NAND Using Micron® MT29F1G08ABA NAND Flash with the Texas Instruments™ (TI)

Status
Not open for further replies.

tarak

Newbie level 5
Joined
Mar 15, 2007
Messages
10
Helped
1
Reputation
2
Reaction score
0
Trophy points
1,281
Activity points
1,333
Boot-from-NAND Using Micron® MT29F1G08ABA NAND Flash with the Texas Instruments™ (TI)

flash memory
 

Re: flash memory

https://download.micron.com/pdf/technotes/nand/tn2916.pdf

Micron Technical Note:
Boot-from-NAND Using Micron® MT29F1G08ABA NAND Flash
with the Texas Instruments™ (TI) OMAP2420 Processor
NAND Flash memory devices are designed for applications requiring nonvolatile, highdensity,
solid-state storage media. Historically, NAND Flash has been used extensively in
applications such as mass storage cards and digital cameras. With its low cost and high
performance, NAND Flash is beginning to make its way into more complex embedded
systems where NOR Flash has dominated in the past—for example, in mobile phones.
In complex embedded systems, one of the challenges associated with a change from
NOR Flash to NAND Flash has been the boot process. NOR Flash has been a popular
choice for these systems because it contains a traditional memory interface (including
both address and data buses), making it capable of execute-in-place (XIP) operation. XIP
memory enables the system CPU to execute code directly from the memory device
because the boot code is stored on and executed from a single device.
NAND Flash is a page-oriented memory device that does not inherently support XIP, at
least not in the same manner as a typical XIP memory device. Operating system and
boot code can be stored in NAND Flash memory, but the code must be copied (or shadowed)
to DRAM before it can be executed. This requires system designers to modify the
boot process for their systems when using NAND Flash. The payoff for this modification
is that the system benefits from the lower cost of NAND Flash as the storage solution and
the higher performance of DRAM as the XIP memory.

Btw: no need to upload the document - give the link instead, write a description, post in the correct section
 

Status
Not open for further replies.

Part and Inventory Search

Welcome to EDABoard.com

Sponsor

Back
Top