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  • OptiFlash Memory Technology

    • SPRADF0A November   2023  – November 2023 AM263P2 , AM263P2-Q1 , AM263P4 , AM263P4-Q1

       

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  • OptiFlash Memory Technology
  1.   1
  2.   Abstract
  3.   Trademarks
  4. 1Why External on-PCB Flash?
  5. 2OptiFlash Detailed Overview
    1. 2.1 OptiFlash System KPIs Key Performance Indices
  6. 3Summary
  7. 4References
  8. 5Revision History
  9. IMPORTANT NOTICE
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Application Note

OptiFlash Memory Technology

Abstract

What is OptiFlash memory technology?

OptiFlash memory technology is a TI patented technology that enables cost effective and scalable high-performance Microcontrollers (MCU) with external flash. With traditional MCUs the ratio of Flash:SRAM typically ranges between 8:1 to perhaps even 12:1. However, with TI’s AM26x MCUs equipped with OptiFlash and large on-chip SRAM (OCSRAM) and tightly coupled memory (TCM), it is possible to implement a cost optimized system, where the OCSRAM scales efficiently with external on-PCB Flash. Below figure depicts a TI Sitara™ AM26x MCU interfacing to external flash via OptiFlash compared to a traditional MCU architecture.

GUID-4767EA9A-2B25-4957-A571-1755077B36CA-low.png

Trademarks

Sitara™ is a trademark of Texas Instruments.

All trademarks are the property of their respective owners.

1 Why External on-PCB Flash?

MCU memory needs and CPU performance levels requirements are continuously increasing. MCU industry product roadmaps with up to 5K DMIPs and 64MB of on-chip flash are common, but it is well understood that embedded flash technologies are not expected to scale beyond 22 nm due to the high voltage (HV) gate oxide-based transistors required for programing and erasing flash bits. For example, on 28nm, 18 additional masks or reticles are required (vs. the CMOS only process technology).1, 2.

In comparison, typical 8MB Octal Serial Peripheral Interface (OSPI) flash can vary in cost from ~$0.50 - ~0.80. Figure 1-1 shows the AM263P CPU + TCM architecture with the flash sub-system (FSS) that includes OptiFlash.

GUID-E271E5C4-FF5E-4FB6-A841-DF6D89FB20BA-low.png Figure 1-1 AM263P CPU + TCM Architecture

The additional cost of embedded flash technology results in either high-cost MCUs or architectures that reduce the amount of OCSRAM to achieve a specific cost point.

Since OCSRAM or TCM is always required for highly deterministic, low latency applications (such as real-time control), MCU architectures with a larger OCSRAM to Flash ration perform better. For example, the AM263P TCM has an access time of 2.5 ns and OCSRAM worst-case accesses can vary between 60 ns-90 ns.

Finally, alternative non-volatile memory (NVM) technologies such as, phase-change SRAM (PC-SRAM) or magnetic RAM (MRAM), are not yet ready for use in volume production of high reliability, low defective parts per million (DPPM) applications such as automotive and industrial.

GUID-71C6DB47-DFCE-46AF-B7C0-62F7885387D5-low.png Figure 1-2 OptiFlash Architecture Diagram

 

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